1 /*- 2 * Copyright (c) 1999-2002, 2007-2009 Robert N. M. Watson 3 * Copyright (c) 2001-2005 McAfee, Inc. 4 * Copyright (c) 2006 SPARTA, Inc. 5 * All rights reserved. 6 * 7 * This software was developed by Robert Watson for the TrustedBSD Project. 8 * 9 * This software was developed for the FreeBSD Project in part by McAfee 10 * Research, the Security Research Division of McAfee, Inc. under 11 * DARPA/SPAWAR contract N66001-01-C-8035 ("CBOSS"), as part of the DARPA 12 * CHATS research program. 13 * 14 * This software was enhanced by SPARTA ISSO under SPAWAR contract 15 * N66001-04-C-6019 ("SEFOS"). 16 * 17 * Redistribution and use in source and binary forms, with or without 18 * modification, are permitted provided that the following conditions 19 * are met: 20 * 1. Redistributions of source code must retain the above copyright 21 * notice, this list of conditions and the following disclaimer. 22 * 2. Redistributions in binary form must reproduce the above copyright 23 * notice, this list of conditions and the following disclaimer in the 24 * documentation and/or other materials provided with the distribution. 25 * 26 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 27 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 28 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 29 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 30 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 31 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 32 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 33 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 34 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 35 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 36 * SUCH DAMAGE. 37 * 38 * $FreeBSD$ 39 */ 40 41 /* 42 * Developed by the TrustedBSD Project. 43 * 44 * Biba fixed label mandatory integrity policy. 45 */ 46 47 #include <sys/param.h> 48 #include <sys/conf.h> 49 #include <sys/extattr.h> 50 #include <sys/kernel.h> 51 #include <sys/ksem.h> 52 #include <sys/malloc.h> 53 #include <sys/mman.h> 54 #include <sys/mount.h> 55 #include <sys/priv.h> 56 #include <sys/proc.h> 57 #include <sys/sbuf.h> 58 #include <sys/systm.h> 59 #include <sys/sysproto.h> 60 #include <sys/sysent.h> 61 #include <sys/systm.h> 62 #include <sys/vnode.h> 63 #include <sys/file.h> 64 #include <sys/socket.h> 65 #include <sys/socketvar.h> 66 #include <sys/pipe.h> 67 #include <sys/sx.h> 68 #include <sys/sysctl.h> 69 #include <sys/msg.h> 70 #include <sys/sem.h> 71 #include <sys/shm.h> 72 73 #include <fs/devfs/devfs.h> 74 75 #include <net/bpfdesc.h> 76 #include <net/if.h> 77 #include <net/if_types.h> 78 #include <net/if_var.h> 79 80 #include <netinet/in.h> 81 #include <netinet/in_pcb.h> 82 #include <netinet/ip_var.h> 83 84 #include <vm/uma.h> 85 #include <vm/vm.h> 86 87 #include <security/mac/mac_policy.h> 88 #include <security/mac_biba/mac_biba.h> 89 90 SYSCTL_DECL(_security_mac); 91 92 SYSCTL_NODE(_security_mac, OID_AUTO, biba, CTLFLAG_RW, 0, 93 "TrustedBSD mac_biba policy controls"); 94 95 static int biba_label_size = sizeof(struct mac_biba); 96 SYSCTL_INT(_security_mac_biba, OID_AUTO, label_size, CTLFLAG_RD, 97 &biba_label_size, 0, "Size of struct mac_biba"); 98 99 static int biba_enabled = 1; 100 SYSCTL_INT(_security_mac_biba, OID_AUTO, enabled, CTLFLAG_RW, &biba_enabled, 101 0, "Enforce MAC/Biba policy"); 102 TUNABLE_INT("security.mac.biba.enabled", &biba_enabled); 103 104 static int destroyed_not_inited; 105 SYSCTL_INT(_security_mac_biba, OID_AUTO, destroyed_not_inited, CTLFLAG_RD, 106 &destroyed_not_inited, 0, "Count of labels destroyed but not inited"); 107 108 static int trust_all_interfaces = 0; 109 SYSCTL_INT(_security_mac_biba, OID_AUTO, trust_all_interfaces, CTLFLAG_RD, 110 &trust_all_interfaces, 0, "Consider all interfaces 'trusted' by MAC/Biba"); 111 TUNABLE_INT("security.mac.biba.trust_all_interfaces", &trust_all_interfaces); 112 113 static char trusted_interfaces[128]; 114 SYSCTL_STRING(_security_mac_biba, OID_AUTO, trusted_interfaces, CTLFLAG_RD, 115 trusted_interfaces, 0, "Interfaces considered 'trusted' by MAC/Biba"); 116 TUNABLE_STR("security.mac.biba.trusted_interfaces", trusted_interfaces, 117 sizeof(trusted_interfaces)); 118 119 static int max_compartments = MAC_BIBA_MAX_COMPARTMENTS; 120 SYSCTL_INT(_security_mac_biba, OID_AUTO, max_compartments, CTLFLAG_RD, 121 &max_compartments, 0, "Maximum supported compartments"); 122 123 static int ptys_equal = 0; 124 SYSCTL_INT(_security_mac_biba, OID_AUTO, ptys_equal, CTLFLAG_RW, &ptys_equal, 125 0, "Label pty devices as biba/equal on create"); 126 TUNABLE_INT("security.mac.biba.ptys_equal", &ptys_equal); 127 128 static int interfaces_equal = 1; 129 SYSCTL_INT(_security_mac_biba, OID_AUTO, interfaces_equal, CTLFLAG_RW, 130 &interfaces_equal, 0, "Label network interfaces as biba/equal on create"); 131 TUNABLE_INT("security.mac.biba.interfaces_equal", &interfaces_equal); 132 133 static int revocation_enabled = 0; 134 SYSCTL_INT(_security_mac_biba, OID_AUTO, revocation_enabled, CTLFLAG_RW, 135 &revocation_enabled, 0, "Revoke access to objects on relabel"); 136 TUNABLE_INT("security.mac.biba.revocation_enabled", &revocation_enabled); 137 138 static int biba_slot; 139 #define SLOT(l) ((struct mac_biba *)mac_label_get((l), biba_slot)) 140 #define SLOT_SET(l, val) mac_label_set((l), biba_slot, (uintptr_t)(val)) 141 142 static uma_zone_t zone_biba; 143 144 static __inline int 145 biba_bit_set_empty(u_char *set) { 146 int i; 147 148 for (i = 0; i < MAC_BIBA_MAX_COMPARTMENTS >> 3; i++) 149 if (set[i] != 0) 150 return (0); 151 return (1); 152 } 153 154 static struct mac_biba * 155 biba_alloc(int flag) 156 { 157 158 return (uma_zalloc(zone_biba, flag | M_ZERO)); 159 } 160 161 static void 162 biba_free(struct mac_biba *mb) 163 { 164 165 if (mb != NULL) 166 uma_zfree(zone_biba, mb); 167 else 168 atomic_add_int(&destroyed_not_inited, 1); 169 } 170 171 static int 172 biba_atmostflags(struct mac_biba *mb, int flags) 173 { 174 175 if ((mb->mb_flags & flags) != mb->mb_flags) 176 return (EINVAL); 177 return (0); 178 } 179 180 static int 181 biba_dominate_element(struct mac_biba_element *a, struct mac_biba_element *b) 182 { 183 int bit; 184 185 switch (a->mbe_type) { 186 case MAC_BIBA_TYPE_EQUAL: 187 case MAC_BIBA_TYPE_HIGH: 188 return (1); 189 190 case MAC_BIBA_TYPE_LOW: 191 switch (b->mbe_type) { 192 case MAC_BIBA_TYPE_GRADE: 193 case MAC_BIBA_TYPE_HIGH: 194 return (0); 195 196 case MAC_BIBA_TYPE_EQUAL: 197 case MAC_BIBA_TYPE_LOW: 198 return (1); 199 200 default: 201 panic("biba_dominate_element: b->mbe_type invalid"); 202 } 203 204 case MAC_BIBA_TYPE_GRADE: 205 switch (b->mbe_type) { 206 case MAC_BIBA_TYPE_EQUAL: 207 case MAC_BIBA_TYPE_LOW: 208 return (1); 209 210 case MAC_BIBA_TYPE_HIGH: 211 return (0); 212 213 case MAC_BIBA_TYPE_GRADE: 214 for (bit = 1; bit <= MAC_BIBA_MAX_COMPARTMENTS; bit++) 215 if (!MAC_BIBA_BIT_TEST(bit, 216 a->mbe_compartments) && 217 MAC_BIBA_BIT_TEST(bit, b->mbe_compartments)) 218 return (0); 219 return (a->mbe_grade >= b->mbe_grade); 220 221 default: 222 panic("biba_dominate_element: b->mbe_type invalid"); 223 } 224 225 default: 226 panic("biba_dominate_element: a->mbe_type invalid"); 227 } 228 229 return (0); 230 } 231 232 static int 233 biba_subject_dominate_high(struct mac_biba *mb) 234 { 235 struct mac_biba_element *element; 236 237 KASSERT((mb->mb_flags & MAC_BIBA_FLAG_EFFECTIVE) != 0, 238 ("biba_effective_in_range: mb not effective")); 239 element = &mb->mb_effective; 240 241 return (element->mbe_type == MAC_BIBA_TYPE_EQUAL || 242 element->mbe_type == MAC_BIBA_TYPE_HIGH); 243 } 244 245 static int 246 biba_range_in_range(struct mac_biba *rangea, struct mac_biba *rangeb) 247 { 248 249 return (biba_dominate_element(&rangeb->mb_rangehigh, 250 &rangea->mb_rangehigh) && 251 biba_dominate_element(&rangea->mb_rangelow, 252 &rangeb->mb_rangelow)); 253 } 254 255 static int 256 biba_effective_in_range(struct mac_biba *effective, struct mac_biba *range) 257 { 258 259 KASSERT((effective->mb_flags & MAC_BIBA_FLAG_EFFECTIVE) != 0, 260 ("biba_effective_in_range: a not effective")); 261 KASSERT((range->mb_flags & MAC_BIBA_FLAG_RANGE) != 0, 262 ("biba_effective_in_range: b not range")); 263 264 return (biba_dominate_element(&range->mb_rangehigh, 265 &effective->mb_effective) && 266 biba_dominate_element(&effective->mb_effective, 267 &range->mb_rangelow)); 268 269 return (1); 270 } 271 272 static int 273 biba_dominate_effective(struct mac_biba *a, struct mac_biba *b) 274 { 275 KASSERT((a->mb_flags & MAC_BIBA_FLAG_EFFECTIVE) != 0, 276 ("biba_dominate_effective: a not effective")); 277 KASSERT((b->mb_flags & MAC_BIBA_FLAG_EFFECTIVE) != 0, 278 ("biba_dominate_effective: b not effective")); 279 280 return (biba_dominate_element(&a->mb_effective, &b->mb_effective)); 281 } 282 283 static int 284 biba_equal_element(struct mac_biba_element *a, struct mac_biba_element *b) 285 { 286 287 if (a->mbe_type == MAC_BIBA_TYPE_EQUAL || 288 b->mbe_type == MAC_BIBA_TYPE_EQUAL) 289 return (1); 290 291 return (a->mbe_type == b->mbe_type && a->mbe_grade == b->mbe_grade); 292 } 293 294 static int 295 biba_equal_effective(struct mac_biba *a, struct mac_biba *b) 296 { 297 298 KASSERT((a->mb_flags & MAC_BIBA_FLAG_EFFECTIVE) != 0, 299 ("biba_equal_effective: a not effective")); 300 KASSERT((b->mb_flags & MAC_BIBA_FLAG_EFFECTIVE) != 0, 301 ("biba_equal_effective: b not effective")); 302 303 return (biba_equal_element(&a->mb_effective, &b->mb_effective)); 304 } 305 306 static int 307 biba_contains_equal(struct mac_biba *mb) 308 { 309 310 if (mb->mb_flags & MAC_BIBA_FLAG_EFFECTIVE) { 311 if (mb->mb_effective.mbe_type == MAC_BIBA_TYPE_EQUAL) 312 return (1); 313 } 314 315 if (mb->mb_flags & MAC_BIBA_FLAG_RANGE) { 316 if (mb->mb_rangelow.mbe_type == MAC_BIBA_TYPE_EQUAL) 317 return (1); 318 if (mb->mb_rangehigh.mbe_type == MAC_BIBA_TYPE_EQUAL) 319 return (1); 320 } 321 322 return (0); 323 } 324 325 static int 326 biba_subject_privileged(struct mac_biba *mb) 327 { 328 329 KASSERT((mb->mb_flags & MAC_BIBA_FLAGS_BOTH) == MAC_BIBA_FLAGS_BOTH, 330 ("biba_subject_privileged: subject doesn't have both labels")); 331 332 /* If the effective is EQUAL, it's ok. */ 333 if (mb->mb_effective.mbe_type == MAC_BIBA_TYPE_EQUAL) 334 return (0); 335 336 /* If either range endpoint is EQUAL, it's ok. */ 337 if (mb->mb_rangelow.mbe_type == MAC_BIBA_TYPE_EQUAL || 338 mb->mb_rangehigh.mbe_type == MAC_BIBA_TYPE_EQUAL) 339 return (0); 340 341 /* If the range is low-high, it's ok. */ 342 if (mb->mb_rangelow.mbe_type == MAC_BIBA_TYPE_LOW && 343 mb->mb_rangehigh.mbe_type == MAC_BIBA_TYPE_HIGH) 344 return (0); 345 346 /* It's not ok. */ 347 return (EPERM); 348 } 349 350 static int 351 biba_high_effective(struct mac_biba *mb) 352 { 353 354 KASSERT((mb->mb_flags & MAC_BIBA_FLAG_EFFECTIVE) != 0, 355 ("biba_equal_effective: mb not effective")); 356 357 return (mb->mb_effective.mbe_type == MAC_BIBA_TYPE_HIGH); 358 } 359 360 static int 361 biba_valid(struct mac_biba *mb) 362 { 363 364 if (mb->mb_flags & MAC_BIBA_FLAG_EFFECTIVE) { 365 switch (mb->mb_effective.mbe_type) { 366 case MAC_BIBA_TYPE_GRADE: 367 break; 368 369 case MAC_BIBA_TYPE_EQUAL: 370 case MAC_BIBA_TYPE_HIGH: 371 case MAC_BIBA_TYPE_LOW: 372 if (mb->mb_effective.mbe_grade != 0 || 373 !MAC_BIBA_BIT_SET_EMPTY( 374 mb->mb_effective.mbe_compartments)) 375 return (EINVAL); 376 break; 377 378 default: 379 return (EINVAL); 380 } 381 } else { 382 if (mb->mb_effective.mbe_type != MAC_BIBA_TYPE_UNDEF) 383 return (EINVAL); 384 } 385 386 if (mb->mb_flags & MAC_BIBA_FLAG_RANGE) { 387 switch (mb->mb_rangelow.mbe_type) { 388 case MAC_BIBA_TYPE_GRADE: 389 break; 390 391 case MAC_BIBA_TYPE_EQUAL: 392 case MAC_BIBA_TYPE_HIGH: 393 case MAC_BIBA_TYPE_LOW: 394 if (mb->mb_rangelow.mbe_grade != 0 || 395 !MAC_BIBA_BIT_SET_EMPTY( 396 mb->mb_rangelow.mbe_compartments)) 397 return (EINVAL); 398 break; 399 400 default: 401 return (EINVAL); 402 } 403 404 switch (mb->mb_rangehigh.mbe_type) { 405 case MAC_BIBA_TYPE_GRADE: 406 break; 407 408 case MAC_BIBA_TYPE_EQUAL: 409 case MAC_BIBA_TYPE_HIGH: 410 case MAC_BIBA_TYPE_LOW: 411 if (mb->mb_rangehigh.mbe_grade != 0 || 412 !MAC_BIBA_BIT_SET_EMPTY( 413 mb->mb_rangehigh.mbe_compartments)) 414 return (EINVAL); 415 break; 416 417 default: 418 return (EINVAL); 419 } 420 if (!biba_dominate_element(&mb->mb_rangehigh, 421 &mb->mb_rangelow)) 422 return (EINVAL); 423 } else { 424 if (mb->mb_rangelow.mbe_type != MAC_BIBA_TYPE_UNDEF || 425 mb->mb_rangehigh.mbe_type != MAC_BIBA_TYPE_UNDEF) 426 return (EINVAL); 427 } 428 429 return (0); 430 } 431 432 static void 433 biba_set_range(struct mac_biba *mb, u_short typelow, u_short gradelow, 434 u_char *compartmentslow, u_short typehigh, u_short gradehigh, 435 u_char *compartmentshigh) 436 { 437 438 mb->mb_rangelow.mbe_type = typelow; 439 mb->mb_rangelow.mbe_grade = gradelow; 440 if (compartmentslow != NULL) 441 memcpy(mb->mb_rangelow.mbe_compartments, compartmentslow, 442 sizeof(mb->mb_rangelow.mbe_compartments)); 443 mb->mb_rangehigh.mbe_type = typehigh; 444 mb->mb_rangehigh.mbe_grade = gradehigh; 445 if (compartmentshigh != NULL) 446 memcpy(mb->mb_rangehigh.mbe_compartments, compartmentshigh, 447 sizeof(mb->mb_rangehigh.mbe_compartments)); 448 mb->mb_flags |= MAC_BIBA_FLAG_RANGE; 449 } 450 451 static void 452 biba_set_effective(struct mac_biba *mb, u_short type, u_short grade, 453 u_char *compartments) 454 { 455 456 mb->mb_effective.mbe_type = type; 457 mb->mb_effective.mbe_grade = grade; 458 if (compartments != NULL) 459 memcpy(mb->mb_effective.mbe_compartments, compartments, 460 sizeof(mb->mb_effective.mbe_compartments)); 461 mb->mb_flags |= MAC_BIBA_FLAG_EFFECTIVE; 462 } 463 464 static void 465 biba_copy_range(struct mac_biba *labelfrom, struct mac_biba *labelto) 466 { 467 468 KASSERT((labelfrom->mb_flags & MAC_BIBA_FLAG_RANGE) != 0, 469 ("biba_copy_range: labelfrom not range")); 470 471 labelto->mb_rangelow = labelfrom->mb_rangelow; 472 labelto->mb_rangehigh = labelfrom->mb_rangehigh; 473 labelto->mb_flags |= MAC_BIBA_FLAG_RANGE; 474 } 475 476 static void 477 biba_copy_effective(struct mac_biba *labelfrom, struct mac_biba *labelto) 478 { 479 480 KASSERT((labelfrom->mb_flags & MAC_BIBA_FLAG_EFFECTIVE) != 0, 481 ("biba_copy_effective: labelfrom not effective")); 482 483 labelto->mb_effective = labelfrom->mb_effective; 484 labelto->mb_flags |= MAC_BIBA_FLAG_EFFECTIVE; 485 } 486 487 static void 488 biba_copy(struct mac_biba *source, struct mac_biba *dest) 489 { 490 491 if (source->mb_flags & MAC_BIBA_FLAG_EFFECTIVE) 492 biba_copy_effective(source, dest); 493 if (source->mb_flags & MAC_BIBA_FLAG_RANGE) 494 biba_copy_range(source, dest); 495 } 496 497 /* 498 * Policy module operations. 499 */ 500 static void 501 biba_init(struct mac_policy_conf *conf) 502 { 503 504 zone_biba = uma_zcreate("mac_biba", sizeof(struct mac_biba), NULL, 505 NULL, NULL, NULL, UMA_ALIGN_PTR, 0); 506 } 507 508 /* 509 * Label operations. 510 */ 511 static void 512 biba_init_label(struct label *label) 513 { 514 515 SLOT_SET(label, biba_alloc(M_WAITOK)); 516 } 517 518 static int 519 biba_init_label_waitcheck(struct label *label, int flag) 520 { 521 522 SLOT_SET(label, biba_alloc(flag)); 523 if (SLOT(label) == NULL) 524 return (ENOMEM); 525 526 return (0); 527 } 528 529 static void 530 biba_destroy_label(struct label *label) 531 { 532 533 biba_free(SLOT(label)); 534 SLOT_SET(label, NULL); 535 } 536 537 /* 538 * biba_element_to_string() accepts an sbuf and Biba element. It converts 539 * the Biba element to a string and stores the result in the sbuf; if there 540 * isn't space in the sbuf, -1 is returned. 541 */ 542 static int 543 biba_element_to_string(struct sbuf *sb, struct mac_biba_element *element) 544 { 545 int i, first; 546 547 switch (element->mbe_type) { 548 case MAC_BIBA_TYPE_HIGH: 549 return (sbuf_printf(sb, "high")); 550 551 case MAC_BIBA_TYPE_LOW: 552 return (sbuf_printf(sb, "low")); 553 554 case MAC_BIBA_TYPE_EQUAL: 555 return (sbuf_printf(sb, "equal")); 556 557 case MAC_BIBA_TYPE_GRADE: 558 if (sbuf_printf(sb, "%d", element->mbe_grade) == -1) 559 return (-1); 560 561 first = 1; 562 for (i = 1; i <= MAC_BIBA_MAX_COMPARTMENTS; i++) { 563 if (MAC_BIBA_BIT_TEST(i, element->mbe_compartments)) { 564 if (first) { 565 if (sbuf_putc(sb, ':') == -1) 566 return (-1); 567 if (sbuf_printf(sb, "%d", i) == -1) 568 return (-1); 569 first = 0; 570 } else { 571 if (sbuf_printf(sb, "+%d", i) == -1) 572 return (-1); 573 } 574 } 575 } 576 return (0); 577 578 default: 579 panic("biba_element_to_string: invalid type (%d)", 580 element->mbe_type); 581 } 582 } 583 584 /* 585 * biba_to_string() converts a Biba label to a string, and places the results 586 * in the passed sbuf. It returns 0 on success, or EINVAL if there isn't 587 * room in the sbuf. Note: the sbuf will be modified even in a failure case, 588 * so the caller may need to revert the sbuf by restoring the offset if 589 * that's undesired. 590 */ 591 static int 592 biba_to_string(struct sbuf *sb, struct mac_biba *mb) 593 { 594 595 if (mb->mb_flags & MAC_BIBA_FLAG_EFFECTIVE) { 596 if (biba_element_to_string(sb, &mb->mb_effective) == -1) 597 return (EINVAL); 598 } 599 600 if (mb->mb_flags & MAC_BIBA_FLAG_RANGE) { 601 if (sbuf_putc(sb, '(') == -1) 602 return (EINVAL); 603 604 if (biba_element_to_string(sb, &mb->mb_rangelow) == -1) 605 return (EINVAL); 606 607 if (sbuf_putc(sb, '-') == -1) 608 return (EINVAL); 609 610 if (biba_element_to_string(sb, &mb->mb_rangehigh) == -1) 611 return (EINVAL); 612 613 if (sbuf_putc(sb, ')') == -1) 614 return (EINVAL); 615 } 616 617 return (0); 618 } 619 620 static int 621 biba_externalize_label(struct label *label, char *element_name, 622 struct sbuf *sb, int *claimed) 623 { 624 struct mac_biba *mb; 625 626 if (strcmp(MAC_BIBA_LABEL_NAME, element_name) != 0) 627 return (0); 628 629 (*claimed)++; 630 631 mb = SLOT(label); 632 return (biba_to_string(sb, mb)); 633 } 634 635 static int 636 biba_parse_element(struct mac_biba_element *element, char *string) 637 { 638 char *compartment, *end, *grade; 639 int value; 640 641 if (strcmp(string, "high") == 0 || strcmp(string, "hi") == 0) { 642 element->mbe_type = MAC_BIBA_TYPE_HIGH; 643 element->mbe_grade = MAC_BIBA_TYPE_UNDEF; 644 } else if (strcmp(string, "low") == 0 || strcmp(string, "lo") == 0) { 645 element->mbe_type = MAC_BIBA_TYPE_LOW; 646 element->mbe_grade = MAC_BIBA_TYPE_UNDEF; 647 } else if (strcmp(string, "equal") == 0 || 648 strcmp(string, "eq") == 0) { 649 element->mbe_type = MAC_BIBA_TYPE_EQUAL; 650 element->mbe_grade = MAC_BIBA_TYPE_UNDEF; 651 } else { 652 element->mbe_type = MAC_BIBA_TYPE_GRADE; 653 654 /* 655 * Numeric grade piece of the element. 656 */ 657 grade = strsep(&string, ":"); 658 value = strtol(grade, &end, 10); 659 if (end == grade || *end != '\0') 660 return (EINVAL); 661 if (value < 0 || value > 65535) 662 return (EINVAL); 663 element->mbe_grade = value; 664 665 /* 666 * Optional compartment piece of the element. If none are 667 * included, we assume that the label has no compartments. 668 */ 669 if (string == NULL) 670 return (0); 671 if (*string == '\0') 672 return (0); 673 674 while ((compartment = strsep(&string, "+")) != NULL) { 675 value = strtol(compartment, &end, 10); 676 if (compartment == end || *end != '\0') 677 return (EINVAL); 678 if (value < 1 || value > MAC_BIBA_MAX_COMPARTMENTS) 679 return (EINVAL); 680 MAC_BIBA_BIT_SET(value, element->mbe_compartments); 681 } 682 } 683 684 return (0); 685 } 686 687 /* 688 * Note: destructively consumes the string, make a local copy before calling 689 * if that's a problem. 690 */ 691 static int 692 biba_parse(struct mac_biba *mb, char *string) 693 { 694 char *rangehigh, *rangelow, *effective; 695 int error; 696 697 effective = strsep(&string, "("); 698 if (*effective == '\0') 699 effective = NULL; 700 701 if (string != NULL) { 702 rangelow = strsep(&string, "-"); 703 if (string == NULL) 704 return (EINVAL); 705 rangehigh = strsep(&string, ")"); 706 if (string == NULL) 707 return (EINVAL); 708 if (*string != '\0') 709 return (EINVAL); 710 } else { 711 rangelow = NULL; 712 rangehigh = NULL; 713 } 714 715 KASSERT((rangelow != NULL && rangehigh != NULL) || 716 (rangelow == NULL && rangehigh == NULL), 717 ("biba_parse: range mismatch")); 718 719 bzero(mb, sizeof(*mb)); 720 if (effective != NULL) { 721 error = biba_parse_element(&mb->mb_effective, effective); 722 if (error) 723 return (error); 724 mb->mb_flags |= MAC_BIBA_FLAG_EFFECTIVE; 725 } 726 727 if (rangelow != NULL) { 728 error = biba_parse_element(&mb->mb_rangelow, rangelow); 729 if (error) 730 return (error); 731 error = biba_parse_element(&mb->mb_rangehigh, rangehigh); 732 if (error) 733 return (error); 734 mb->mb_flags |= MAC_BIBA_FLAG_RANGE; 735 } 736 737 error = biba_valid(mb); 738 if (error) 739 return (error); 740 741 return (0); 742 } 743 744 static int 745 biba_internalize_label(struct label *label, char *element_name, 746 char *element_data, int *claimed) 747 { 748 struct mac_biba *mb, mb_temp; 749 int error; 750 751 if (strcmp(MAC_BIBA_LABEL_NAME, element_name) != 0) 752 return (0); 753 754 (*claimed)++; 755 756 error = biba_parse(&mb_temp, element_data); 757 if (error) 758 return (error); 759 760 mb = SLOT(label); 761 *mb = mb_temp; 762 763 return (0); 764 } 765 766 static void 767 biba_copy_label(struct label *src, struct label *dest) 768 { 769 770 *SLOT(dest) = *SLOT(src); 771 } 772 773 /* 774 * Object-specific entry point implementations are sorted alphabetically by 775 * object type name and then by operation. 776 */ 777 static int 778 biba_bpfdesc_check_receive(struct bpf_d *d, struct label *dlabel, 779 struct ifnet *ifp, struct label *ifplabel) 780 { 781 struct mac_biba *a, *b; 782 783 if (!biba_enabled) 784 return (0); 785 786 a = SLOT(dlabel); 787 b = SLOT(ifplabel); 788 789 if (biba_equal_effective(a, b)) 790 return (0); 791 return (EACCES); 792 } 793 794 static void 795 biba_bpfdesc_create(struct ucred *cred, struct bpf_d *d, 796 struct label *dlabel) 797 { 798 struct mac_biba *source, *dest; 799 800 source = SLOT(cred->cr_label); 801 dest = SLOT(dlabel); 802 803 biba_copy_effective(source, dest); 804 } 805 806 static void 807 biba_bpfdesc_create_mbuf(struct bpf_d *d, struct label *dlabel, 808 struct mbuf *m, struct label *mlabel) 809 { 810 struct mac_biba *source, *dest; 811 812 source = SLOT(dlabel); 813 dest = SLOT(mlabel); 814 815 biba_copy_effective(source, dest); 816 } 817 818 static void 819 biba_cred_associate_nfsd(struct ucred *cred) 820 { 821 struct mac_biba *label; 822 823 label = SLOT(cred->cr_label); 824 biba_set_effective(label, MAC_BIBA_TYPE_LOW, 0, NULL); 825 biba_set_range(label, MAC_BIBA_TYPE_LOW, 0, NULL, MAC_BIBA_TYPE_HIGH, 826 0, NULL); 827 } 828 829 static int 830 biba_cred_check_relabel(struct ucred *cred, struct label *newlabel) 831 { 832 struct mac_biba *subj, *new; 833 int error; 834 835 subj = SLOT(cred->cr_label); 836 new = SLOT(newlabel); 837 838 /* 839 * If there is a Biba label update for the credential, it may 840 * be an update of the effective, range, or both. 841 */ 842 error = biba_atmostflags(new, MAC_BIBA_FLAGS_BOTH); 843 if (error) 844 return (error); 845 846 /* 847 * If the Biba label is to be changed, authorize as appropriate. 848 */ 849 if (new->mb_flags & MAC_BIBA_FLAGS_BOTH) { 850 /* 851 * If the change request modifies both the Biba label 852 * effective and range, check that the new effective will be 853 * in the new range. 854 */ 855 if ((new->mb_flags & MAC_BIBA_FLAGS_BOTH) == 856 MAC_BIBA_FLAGS_BOTH && 857 !biba_effective_in_range(new, new)) 858 return (EINVAL); 859 860 /* 861 * To change the Biba effective label on a credential, the 862 * new effective label must be in the current range. 863 */ 864 if (new->mb_flags & MAC_BIBA_FLAG_EFFECTIVE && 865 !biba_effective_in_range(new, subj)) 866 return (EPERM); 867 868 /* 869 * To change the Biba range on a credential, the new range 870 * label must be in the current range. 871 */ 872 if (new->mb_flags & MAC_BIBA_FLAG_RANGE && 873 !biba_range_in_range(new, subj)) 874 return (EPERM); 875 876 /* 877 * To have EQUAL in any component of the new credential Biba 878 * label, the subject must already have EQUAL in their label. 879 */ 880 if (biba_contains_equal(new)) { 881 error = biba_subject_privileged(subj); 882 if (error) 883 return (error); 884 } 885 } 886 887 return (0); 888 } 889 890 static int 891 biba_cred_check_visible(struct ucred *u1, struct ucred *u2) 892 { 893 struct mac_biba *subj, *obj; 894 895 if (!biba_enabled) 896 return (0); 897 898 subj = SLOT(u1->cr_label); 899 obj = SLOT(u2->cr_label); 900 901 /* XXX: range */ 902 if (!biba_dominate_effective(obj, subj)) 903 return (ESRCH); 904 905 return (0); 906 } 907 908 static void 909 biba_cred_create_init(struct ucred *cred) 910 { 911 struct mac_biba *dest; 912 913 dest = SLOT(cred->cr_label); 914 915 biba_set_effective(dest, MAC_BIBA_TYPE_HIGH, 0, NULL); 916 biba_set_range(dest, MAC_BIBA_TYPE_LOW, 0, NULL, MAC_BIBA_TYPE_HIGH, 917 0, NULL); 918 } 919 920 static void 921 biba_cred_create_swapper(struct ucred *cred) 922 { 923 struct mac_biba *dest; 924 925 dest = SLOT(cred->cr_label); 926 927 biba_set_effective(dest, MAC_BIBA_TYPE_EQUAL, 0, NULL); 928 biba_set_range(dest, MAC_BIBA_TYPE_LOW, 0, NULL, MAC_BIBA_TYPE_HIGH, 929 0, NULL); 930 } 931 932 static void 933 biba_cred_relabel(struct ucred *cred, struct label *newlabel) 934 { 935 struct mac_biba *source, *dest; 936 937 source = SLOT(newlabel); 938 dest = SLOT(cred->cr_label); 939 940 biba_copy(source, dest); 941 } 942 943 static void 944 biba_devfs_create_device(struct ucred *cred, struct mount *mp, 945 struct cdev *dev, struct devfs_dirent *de, struct label *delabel) 946 { 947 struct mac_biba *mb; 948 int biba_type; 949 950 mb = SLOT(delabel); 951 if (strcmp(dev->si_name, "null") == 0 || 952 strcmp(dev->si_name, "zero") == 0 || 953 strcmp(dev->si_name, "random") == 0 || 954 strncmp(dev->si_name, "fd/", strlen("fd/")) == 0) 955 biba_type = MAC_BIBA_TYPE_EQUAL; 956 else if (ptys_equal && 957 (strncmp(dev->si_name, "ttyp", strlen("ttyp")) == 0 || 958 strncmp(dev->si_name, "ptyp", strlen("ptyp")) == 0)) 959 biba_type = MAC_BIBA_TYPE_EQUAL; 960 else 961 biba_type = MAC_BIBA_TYPE_HIGH; 962 biba_set_effective(mb, biba_type, 0, NULL); 963 } 964 965 static void 966 biba_devfs_create_directory(struct mount *mp, char *dirname, int dirnamelen, 967 struct devfs_dirent *de, struct label *delabel) 968 { 969 struct mac_biba *mb; 970 971 mb = SLOT(delabel); 972 973 biba_set_effective(mb, MAC_BIBA_TYPE_HIGH, 0, NULL); 974 } 975 976 static void 977 biba_devfs_create_symlink(struct ucred *cred, struct mount *mp, 978 struct devfs_dirent *dd, struct label *ddlabel, struct devfs_dirent *de, 979 struct label *delabel) 980 { 981 struct mac_biba *source, *dest; 982 983 source = SLOT(cred->cr_label); 984 dest = SLOT(delabel); 985 986 biba_copy_effective(source, dest); 987 } 988 989 static void 990 biba_devfs_update(struct mount *mp, struct devfs_dirent *de, 991 struct label *delabel, struct vnode *vp, struct label *vplabel) 992 { 993 struct mac_biba *source, *dest; 994 995 source = SLOT(vplabel); 996 dest = SLOT(delabel); 997 998 biba_copy(source, dest); 999 } 1000 1001 static void 1002 biba_devfs_vnode_associate(struct mount *mp, struct label *mntlabel, 1003 struct devfs_dirent *de, struct label *delabel, struct vnode *vp, 1004 struct label *vplabel) 1005 { 1006 struct mac_biba *source, *dest; 1007 1008 source = SLOT(delabel); 1009 dest = SLOT(vplabel); 1010 1011 biba_copy_effective(source, dest); 1012 } 1013 1014 static int 1015 biba_ifnet_check_relabel(struct ucred *cred, struct ifnet *ifp, 1016 struct label *ifplabel, struct label *newlabel) 1017 { 1018 struct mac_biba *subj, *new; 1019 int error; 1020 1021 subj = SLOT(cred->cr_label); 1022 new = SLOT(newlabel); 1023 1024 /* 1025 * If there is a Biba label update for the interface, it may be an 1026 * update of the effective, range, or both. 1027 */ 1028 error = biba_atmostflags(new, MAC_BIBA_FLAGS_BOTH); 1029 if (error) 1030 return (error); 1031 1032 /* 1033 * Relabling network interfaces requires Biba privilege. 1034 */ 1035 error = biba_subject_privileged(subj); 1036 if (error) 1037 return (error); 1038 1039 return (0); 1040 } 1041 1042 static int 1043 biba_ifnet_check_transmit(struct ifnet *ifp, struct label *ifplabel, 1044 struct mbuf *m, struct label *mlabel) 1045 { 1046 struct mac_biba *p, *i; 1047 1048 if (!biba_enabled) 1049 return (0); 1050 1051 p = SLOT(mlabel); 1052 i = SLOT(ifplabel); 1053 1054 return (biba_effective_in_range(p, i) ? 0 : EACCES); 1055 } 1056 1057 static void 1058 biba_ifnet_create(struct ifnet *ifp, struct label *ifplabel) 1059 { 1060 char tifname[IFNAMSIZ], *p, *q; 1061 char tiflist[sizeof(trusted_interfaces)]; 1062 struct mac_biba *dest; 1063 int len, type; 1064 1065 dest = SLOT(ifplabel); 1066 1067 if (ifp->if_type == IFT_LOOP || interfaces_equal != 0) { 1068 type = MAC_BIBA_TYPE_EQUAL; 1069 goto set; 1070 } 1071 1072 if (trust_all_interfaces) { 1073 type = MAC_BIBA_TYPE_HIGH; 1074 goto set; 1075 } 1076 1077 type = MAC_BIBA_TYPE_LOW; 1078 1079 if (trusted_interfaces[0] == '\0' || 1080 !strvalid(trusted_interfaces, sizeof(trusted_interfaces))) 1081 goto set; 1082 1083 bzero(tiflist, sizeof(tiflist)); 1084 for (p = trusted_interfaces, q = tiflist; *p != '\0'; p++, q++) 1085 if(*p != ' ' && *p != '\t') 1086 *q = *p; 1087 1088 for (p = q = tiflist;; p++) { 1089 if (*p == ',' || *p == '\0') { 1090 len = p - q; 1091 if (len < IFNAMSIZ) { 1092 bzero(tifname, sizeof(tifname)); 1093 bcopy(q, tifname, len); 1094 if (strcmp(tifname, ifp->if_xname) == 0) { 1095 type = MAC_BIBA_TYPE_HIGH; 1096 break; 1097 } 1098 } else { 1099 *p = '\0'; 1100 printf("mac_biba warning: interface name " 1101 "\"%s\" is too long (must be < %d)\n", 1102 q, IFNAMSIZ); 1103 } 1104 if (*p == '\0') 1105 break; 1106 q = p + 1; 1107 } 1108 } 1109 set: 1110 biba_set_effective(dest, type, 0, NULL); 1111 biba_set_range(dest, type, 0, NULL, type, 0, NULL); 1112 } 1113 1114 static void 1115 biba_ifnet_create_mbuf(struct ifnet *ifp, struct label *ifplabel, 1116 struct mbuf *m, struct label *mlabel) 1117 { 1118 struct mac_biba *source, *dest; 1119 1120 source = SLOT(ifplabel); 1121 dest = SLOT(mlabel); 1122 1123 biba_copy_effective(source, dest); 1124 } 1125 1126 static void 1127 biba_ifnet_relabel(struct ucred *cred, struct ifnet *ifp, 1128 struct label *ifplabel, struct label *newlabel) 1129 { 1130 struct mac_biba *source, *dest; 1131 1132 source = SLOT(newlabel); 1133 dest = SLOT(ifplabel); 1134 1135 biba_copy(source, dest); 1136 } 1137 1138 static int 1139 biba_inpcb_check_deliver(struct inpcb *inp, struct label *inplabel, 1140 struct mbuf *m, struct label *mlabel) 1141 { 1142 struct mac_biba *p, *i; 1143 1144 if (!biba_enabled) 1145 return (0); 1146 1147 p = SLOT(mlabel); 1148 i = SLOT(inplabel); 1149 1150 return (biba_equal_effective(p, i) ? 0 : EACCES); 1151 } 1152 1153 static int 1154 biba_inpcb_check_visible(struct ucred *cred, struct inpcb *inp, 1155 struct label *inplabel) 1156 { 1157 struct mac_biba *subj, *obj; 1158 1159 if (!biba_enabled) 1160 return (0); 1161 1162 subj = SLOT(cred->cr_label); 1163 obj = SLOT(inplabel); 1164 1165 if (!biba_dominate_effective(obj, subj)) 1166 return (ENOENT); 1167 1168 return (0); 1169 } 1170 1171 static void 1172 biba_inpcb_create(struct socket *so, struct label *solabel, 1173 struct inpcb *inp, struct label *inplabel) 1174 { 1175 struct mac_biba *source, *dest; 1176 1177 source = SLOT(solabel); 1178 dest = SLOT(inplabel); 1179 1180 SOCK_LOCK(so); 1181 biba_copy_effective(source, dest); 1182 SOCK_UNLOCK(so); 1183 } 1184 1185 static void 1186 biba_inpcb_create_mbuf(struct inpcb *inp, struct label *inplabel, 1187 struct mbuf *m, struct label *mlabel) 1188 { 1189 struct mac_biba *source, *dest; 1190 1191 source = SLOT(inplabel); 1192 dest = SLOT(mlabel); 1193 1194 biba_copy_effective(source, dest); 1195 } 1196 1197 static void 1198 biba_inpcb_sosetlabel(struct socket *so, struct label *solabel, 1199 struct inpcb *inp, struct label *inplabel) 1200 { 1201 struct mac_biba *source, *dest; 1202 1203 SOCK_LOCK_ASSERT(so); 1204 1205 source = SLOT(solabel); 1206 dest = SLOT(inplabel); 1207 1208 biba_copy(source, dest); 1209 } 1210 1211 static void 1212 biba_ip6q_create(struct mbuf *m, struct label *mlabel, struct ip6q *q6, 1213 struct label *q6label) 1214 { 1215 struct mac_biba *source, *dest; 1216 1217 source = SLOT(mlabel); 1218 dest = SLOT(q6label); 1219 1220 biba_copy_effective(source, dest); 1221 } 1222 1223 static int 1224 biba_ip6q_match(struct mbuf *m, struct label *mlabel, struct ip6q *q6, 1225 struct label *q6label) 1226 { 1227 struct mac_biba *a, *b; 1228 1229 a = SLOT(q6label); 1230 b = SLOT(mlabel); 1231 1232 return (biba_equal_effective(a, b)); 1233 } 1234 1235 static void 1236 biba_ip6q_reassemble(struct ip6q *q6, struct label *q6label, struct mbuf *m, 1237 struct label *mlabel) 1238 { 1239 struct mac_biba *source, *dest; 1240 1241 source = SLOT(q6label); 1242 dest = SLOT(mlabel); 1243 1244 /* Just use the head, since we require them all to match. */ 1245 biba_copy_effective(source, dest); 1246 } 1247 1248 static void 1249 biba_ip6q_update(struct mbuf *m, struct label *mlabel, struct ip6q *q6, 1250 struct label *q6label) 1251 { 1252 1253 /* NOOP: we only accept matching labels, so no need to update */ 1254 } 1255 1256 static void 1257 biba_ipq_create(struct mbuf *m, struct label *mlabel, struct ipq *q, 1258 struct label *qlabel) 1259 { 1260 struct mac_biba *source, *dest; 1261 1262 source = SLOT(mlabel); 1263 dest = SLOT(qlabel); 1264 1265 biba_copy_effective(source, dest); 1266 } 1267 1268 static int 1269 biba_ipq_match(struct mbuf *m, struct label *mlabel, struct ipq *q, 1270 struct label *qlabel) 1271 { 1272 struct mac_biba *a, *b; 1273 1274 a = SLOT(qlabel); 1275 b = SLOT(mlabel); 1276 1277 return (biba_equal_effective(a, b)); 1278 } 1279 1280 static void 1281 biba_ipq_reassemble(struct ipq *q, struct label *qlabel, struct mbuf *m, 1282 struct label *mlabel) 1283 { 1284 struct mac_biba *source, *dest; 1285 1286 source = SLOT(qlabel); 1287 dest = SLOT(mlabel); 1288 1289 /* Just use the head, since we require them all to match. */ 1290 biba_copy_effective(source, dest); 1291 } 1292 1293 static void 1294 biba_ipq_update(struct mbuf *m, struct label *mlabel, struct ipq *q, 1295 struct label *qlabel) 1296 { 1297 1298 /* NOOP: we only accept matching labels, so no need to update */ 1299 } 1300 1301 static int 1302 biba_kld_check_load(struct ucred *cred, struct vnode *vp, 1303 struct label *vplabel) 1304 { 1305 struct mac_biba *subj, *obj; 1306 int error; 1307 1308 if (!biba_enabled) 1309 return (0); 1310 1311 subj = SLOT(cred->cr_label); 1312 1313 error = biba_subject_privileged(subj); 1314 if (error) 1315 return (error); 1316 1317 obj = SLOT(vplabel); 1318 if (!biba_high_effective(obj)) 1319 return (EACCES); 1320 1321 return (0); 1322 } 1323 1324 static int 1325 biba_mount_check_stat(struct ucred *cred, struct mount *mp, 1326 struct label *mplabel) 1327 { 1328 struct mac_biba *subj, *obj; 1329 1330 if (!biba_enabled) 1331 return (0); 1332 1333 subj = SLOT(cred->cr_label); 1334 obj = SLOT(mplabel); 1335 1336 if (!biba_dominate_effective(obj, subj)) 1337 return (EACCES); 1338 1339 return (0); 1340 } 1341 1342 static void 1343 biba_mount_create(struct ucred *cred, struct mount *mp, 1344 struct label *mplabel) 1345 { 1346 struct mac_biba *source, *dest; 1347 1348 source = SLOT(cred->cr_label); 1349 dest = SLOT(mplabel); 1350 1351 biba_copy_effective(source, dest); 1352 } 1353 1354 static void 1355 biba_netatalk_aarp_send(struct ifnet *ifp, struct label *ifplabel, 1356 struct mbuf *m, struct label *mlabel) 1357 { 1358 struct mac_biba *dest; 1359 1360 dest = SLOT(mlabel); 1361 1362 biba_set_effective(dest, MAC_BIBA_TYPE_EQUAL, 0, NULL); 1363 } 1364 1365 static void 1366 biba_netinet_arp_send(struct ifnet *ifp, struct label *ifplabel, 1367 struct mbuf *m, struct label *mlabel) 1368 { 1369 struct mac_biba *dest; 1370 1371 dest = SLOT(mlabel); 1372 1373 biba_set_effective(dest, MAC_BIBA_TYPE_EQUAL, 0, NULL); 1374 } 1375 1376 static void 1377 biba_netinet_firewall_reply(struct mbuf *mrecv, struct label *mrecvlabel, 1378 struct mbuf *msend, struct label *msendlabel) 1379 { 1380 struct mac_biba *source, *dest; 1381 1382 source = SLOT(mrecvlabel); 1383 dest = SLOT(msendlabel); 1384 1385 biba_copy_effective(source, dest); 1386 } 1387 1388 static void 1389 biba_netinet_firewall_send(struct mbuf *m, struct label *mlabel) 1390 { 1391 struct mac_biba *dest; 1392 1393 dest = SLOT(mlabel); 1394 1395 /* XXX: where is the label for the firewall really coming from? */ 1396 biba_set_effective(dest, MAC_BIBA_TYPE_EQUAL, 0, NULL); 1397 } 1398 1399 static void 1400 biba_netinet_fragment(struct mbuf *m, struct label *mlabel, 1401 struct mbuf *frag, struct label *fraglabel) 1402 { 1403 struct mac_biba *source, *dest; 1404 1405 source = SLOT(mlabel); 1406 dest = SLOT(fraglabel); 1407 1408 biba_copy_effective(source, dest); 1409 } 1410 1411 static void 1412 biba_netinet_icmp_reply(struct mbuf *mrecv, struct label *mrecvlabel, 1413 struct mbuf *msend, struct label *msendlabel) 1414 { 1415 struct mac_biba *source, *dest; 1416 1417 source = SLOT(mrecvlabel); 1418 dest = SLOT(msendlabel); 1419 1420 biba_copy_effective(source, dest); 1421 } 1422 1423 static void 1424 biba_netinet_igmp_send(struct ifnet *ifp, struct label *ifplabel, 1425 struct mbuf *m, struct label *mlabel) 1426 { 1427 struct mac_biba *dest; 1428 1429 dest = SLOT(mlabel); 1430 1431 biba_set_effective(dest, MAC_BIBA_TYPE_EQUAL, 0, NULL); 1432 } 1433 1434 static void 1435 biba_netinet6_nd6_send(struct ifnet *ifp, struct label *ifplabel, 1436 struct mbuf *m, struct label *mlabel) 1437 { 1438 struct mac_biba *dest; 1439 1440 dest = SLOT(mlabel); 1441 1442 biba_set_effective(dest, MAC_BIBA_TYPE_EQUAL, 0, NULL); 1443 } 1444 1445 static int 1446 biba_pipe_check_ioctl(struct ucred *cred, struct pipepair *pp, 1447 struct label *pplabel, unsigned long cmd, void /* caddr_t */ *data) 1448 { 1449 1450 if(!biba_enabled) 1451 return (0); 1452 1453 /* XXX: This will be implemented soon... */ 1454 1455 return (0); 1456 } 1457 1458 static int 1459 biba_pipe_check_poll(struct ucred *cred, struct pipepair *pp, 1460 struct label *pplabel) 1461 { 1462 struct mac_biba *subj, *obj; 1463 1464 if (!biba_enabled) 1465 return (0); 1466 1467 subj = SLOT(cred->cr_label); 1468 obj = SLOT(pplabel); 1469 1470 if (!biba_dominate_effective(obj, subj)) 1471 return (EACCES); 1472 1473 return (0); 1474 } 1475 1476 static int 1477 biba_pipe_check_read(struct ucred *cred, struct pipepair *pp, 1478 struct label *pplabel) 1479 { 1480 struct mac_biba *subj, *obj; 1481 1482 if (!biba_enabled) 1483 return (0); 1484 1485 subj = SLOT(cred->cr_label); 1486 obj = SLOT(pplabel); 1487 1488 if (!biba_dominate_effective(obj, subj)) 1489 return (EACCES); 1490 1491 return (0); 1492 } 1493 1494 static int 1495 biba_pipe_check_relabel(struct ucred *cred, struct pipepair *pp, 1496 struct label *pplabel, struct label *newlabel) 1497 { 1498 struct mac_biba *subj, *obj, *new; 1499 int error; 1500 1501 new = SLOT(newlabel); 1502 subj = SLOT(cred->cr_label); 1503 obj = SLOT(pplabel); 1504 1505 /* 1506 * If there is a Biba label update for a pipe, it must be a effective 1507 * update. 1508 */ 1509 error = biba_atmostflags(new, MAC_BIBA_FLAG_EFFECTIVE); 1510 if (error) 1511 return (error); 1512 1513 /* 1514 * To perform a relabel of a pipe (Biba label or not), Biba must 1515 * authorize the relabel. 1516 */ 1517 if (!biba_effective_in_range(obj, subj)) 1518 return (EPERM); 1519 1520 /* 1521 * If the Biba label is to be changed, authorize as appropriate. 1522 */ 1523 if (new->mb_flags & MAC_BIBA_FLAG_EFFECTIVE) { 1524 /* 1525 * To change the Biba label on a pipe, the new pipe label 1526 * must be in the subject range. 1527 */ 1528 if (!biba_effective_in_range(new, subj)) 1529 return (EPERM); 1530 1531 /* 1532 * To change the Biba label on a pipe to be EQUAL, the 1533 * subject must have appropriate privilege. 1534 */ 1535 if (biba_contains_equal(new)) { 1536 error = biba_subject_privileged(subj); 1537 if (error) 1538 return (error); 1539 } 1540 } 1541 1542 return (0); 1543 } 1544 1545 static int 1546 biba_pipe_check_stat(struct ucred *cred, struct pipepair *pp, 1547 struct label *pplabel) 1548 { 1549 struct mac_biba *subj, *obj; 1550 1551 if (!biba_enabled) 1552 return (0); 1553 1554 subj = SLOT(cred->cr_label); 1555 obj = SLOT(pplabel); 1556 1557 if (!biba_dominate_effective(obj, subj)) 1558 return (EACCES); 1559 1560 return (0); 1561 } 1562 1563 static int 1564 biba_pipe_check_write(struct ucred *cred, struct pipepair *pp, 1565 struct label *pplabel) 1566 { 1567 struct mac_biba *subj, *obj; 1568 1569 if (!biba_enabled) 1570 return (0); 1571 1572 subj = SLOT(cred->cr_label); 1573 obj = SLOT(pplabel); 1574 1575 if (!biba_dominate_effective(subj, obj)) 1576 return (EACCES); 1577 1578 return (0); 1579 } 1580 1581 static void 1582 biba_pipe_create(struct ucred *cred, struct pipepair *pp, 1583 struct label *pplabel) 1584 { 1585 struct mac_biba *source, *dest; 1586 1587 source = SLOT(cred->cr_label); 1588 dest = SLOT(pplabel); 1589 1590 biba_copy_effective(source, dest); 1591 } 1592 1593 static void 1594 biba_pipe_relabel(struct ucred *cred, struct pipepair *pp, 1595 struct label *pplabel, struct label *newlabel) 1596 { 1597 struct mac_biba *source, *dest; 1598 1599 source = SLOT(newlabel); 1600 dest = SLOT(pplabel); 1601 1602 biba_copy(source, dest); 1603 } 1604 1605 static int 1606 biba_posixsem_check_openunlink(struct ucred *cred, struct ksem *ks, 1607 struct label *kslabel) 1608 { 1609 struct mac_biba *subj, *obj; 1610 1611 if (!biba_enabled) 1612 return (0); 1613 1614 subj = SLOT(cred->cr_label); 1615 obj = SLOT(kslabel); 1616 1617 if (!biba_dominate_effective(subj, obj)) 1618 return (EACCES); 1619 1620 return (0); 1621 } 1622 1623 static int 1624 biba_posixsem_check_write(struct ucred *active_cred, struct ucred *file_cred, 1625 struct ksem *ks, struct label *kslabel) 1626 { 1627 struct mac_biba *subj, *obj; 1628 1629 if (!biba_enabled) 1630 return (0); 1631 1632 subj = SLOT(active_cred->cr_label); 1633 obj = SLOT(kslabel); 1634 1635 if (!biba_dominate_effective(subj, obj)) 1636 return (EACCES); 1637 1638 return (0); 1639 } 1640 1641 static int 1642 biba_posixsem_check_rdonly(struct ucred *active_cred, struct ucred *file_cred, 1643 struct ksem *ks, struct label *kslabel) 1644 { 1645 struct mac_biba *subj, *obj; 1646 1647 if (!biba_enabled) 1648 return (0); 1649 1650 subj = SLOT(active_cred->cr_label); 1651 obj = SLOT(kslabel); 1652 1653 if (!biba_dominate_effective(obj, subj)) 1654 return (EACCES); 1655 1656 return (0); 1657 } 1658 1659 static void 1660 biba_posixsem_create(struct ucred *cred, struct ksem *ks, 1661 struct label *kslabel) 1662 { 1663 struct mac_biba *source, *dest; 1664 1665 source = SLOT(cred->cr_label); 1666 dest = SLOT(kslabel); 1667 1668 biba_copy_effective(source, dest); 1669 } 1670 1671 /* 1672 * Some system privileges are allowed regardless of integrity grade; others 1673 * are allowed only when running with privilege with respect to the Biba 1674 * policy as they might otherwise allow bypassing of the integrity policy. 1675 */ 1676 static int 1677 biba_priv_check(struct ucred *cred, int priv) 1678 { 1679 struct mac_biba *subj; 1680 int error; 1681 1682 if (!biba_enabled) 1683 return (0); 1684 1685 /* 1686 * Exempt only specific privileges from the Biba integrity policy. 1687 */ 1688 switch (priv) { 1689 case PRIV_KTRACE: 1690 case PRIV_MSGBUF: 1691 1692 /* 1693 * Allow processes to manipulate basic process audit properties, and 1694 * to submit audit records. 1695 */ 1696 case PRIV_AUDIT_GETAUDIT: 1697 case PRIV_AUDIT_SETAUDIT: 1698 case PRIV_AUDIT_SUBMIT: 1699 1700 /* 1701 * Allow processes to manipulate their regular UNIX credentials. 1702 */ 1703 case PRIV_CRED_SETUID: 1704 case PRIV_CRED_SETEUID: 1705 case PRIV_CRED_SETGID: 1706 case PRIV_CRED_SETEGID: 1707 case PRIV_CRED_SETGROUPS: 1708 case PRIV_CRED_SETREUID: 1709 case PRIV_CRED_SETREGID: 1710 case PRIV_CRED_SETRESUID: 1711 case PRIV_CRED_SETRESGID: 1712 1713 /* 1714 * Allow processes to perform system monitoring. 1715 */ 1716 case PRIV_SEEOTHERGIDS: 1717 case PRIV_SEEOTHERUIDS: 1718 break; 1719 1720 /* 1721 * Allow access to general process debugging facilities. We 1722 * separately control debugging based on MAC label. 1723 */ 1724 case PRIV_DEBUG_DIFFCRED: 1725 case PRIV_DEBUG_SUGID: 1726 case PRIV_DEBUG_UNPRIV: 1727 1728 /* 1729 * Allow manipulating jails. 1730 */ 1731 case PRIV_JAIL_ATTACH: 1732 1733 /* 1734 * Allow privilege with respect to the Partition policy, but not the 1735 * Privs policy. 1736 */ 1737 case PRIV_MAC_PARTITION: 1738 1739 /* 1740 * Allow privilege with respect to process resource limits and login 1741 * context. 1742 */ 1743 case PRIV_PROC_LIMIT: 1744 case PRIV_PROC_SETLOGIN: 1745 case PRIV_PROC_SETRLIMIT: 1746 1747 /* 1748 * Allow System V and POSIX IPC privileges. 1749 */ 1750 case PRIV_IPC_READ: 1751 case PRIV_IPC_WRITE: 1752 case PRIV_IPC_ADMIN: 1753 case PRIV_IPC_MSGSIZE: 1754 case PRIV_MQ_ADMIN: 1755 1756 /* 1757 * Allow certain scheduler manipulations -- possibly this should be 1758 * controlled by more fine-grained policy, as potentially low 1759 * integrity processes can deny CPU to higher integrity ones. 1760 */ 1761 case PRIV_SCHED_DIFFCRED: 1762 case PRIV_SCHED_SETPRIORITY: 1763 case PRIV_SCHED_RTPRIO: 1764 case PRIV_SCHED_SETPOLICY: 1765 case PRIV_SCHED_SET: 1766 case PRIV_SCHED_SETPARAM: 1767 1768 /* 1769 * More IPC privileges. 1770 */ 1771 case PRIV_SEM_WRITE: 1772 1773 /* 1774 * Allow signaling privileges subject to integrity policy. 1775 */ 1776 case PRIV_SIGNAL_DIFFCRED: 1777 case PRIV_SIGNAL_SUGID: 1778 1779 /* 1780 * Allow access to only limited sysctls from lower integrity levels; 1781 * piggy-back on the Jail definition. 1782 */ 1783 case PRIV_SYSCTL_WRITEJAIL: 1784 1785 /* 1786 * Allow TTY-based privileges, subject to general device access using 1787 * labels on TTY device nodes, but not console privilege. 1788 */ 1789 case PRIV_TTY_DRAINWAIT: 1790 case PRIV_TTY_DTRWAIT: 1791 case PRIV_TTY_EXCLUSIVE: 1792 case PRIV_TTY_STI: 1793 case PRIV_TTY_SETA: 1794 1795 /* 1796 * Grant most VFS privileges, as almost all are in practice bounded 1797 * by more specific checks using labels. 1798 */ 1799 case PRIV_VFS_READ: 1800 case PRIV_VFS_WRITE: 1801 case PRIV_VFS_ADMIN: 1802 case PRIV_VFS_EXEC: 1803 case PRIV_VFS_LOOKUP: 1804 case PRIV_VFS_CHFLAGS_DEV: 1805 case PRIV_VFS_CHOWN: 1806 case PRIV_VFS_CHROOT: 1807 case PRIV_VFS_RETAINSUGID: 1808 case PRIV_VFS_EXCEEDQUOTA: 1809 case PRIV_VFS_FCHROOT: 1810 case PRIV_VFS_FHOPEN: 1811 case PRIV_VFS_FHSTATFS: 1812 case PRIV_VFS_GENERATION: 1813 case PRIV_VFS_GETFH: 1814 case PRIV_VFS_GETQUOTA: 1815 case PRIV_VFS_LINK: 1816 case PRIV_VFS_MOUNT: 1817 case PRIV_VFS_MOUNT_OWNER: 1818 case PRIV_VFS_MOUNT_PERM: 1819 case PRIV_VFS_MOUNT_SUIDDIR: 1820 case PRIV_VFS_MOUNT_NONUSER: 1821 case PRIV_VFS_SETGID: 1822 case PRIV_VFS_STICKYFILE: 1823 case PRIV_VFS_SYSFLAGS: 1824 case PRIV_VFS_UNMOUNT: 1825 1826 /* 1827 * Allow VM privileges; it would be nice if these were subject to 1828 * resource limits. 1829 */ 1830 case PRIV_VM_MADV_PROTECT: 1831 case PRIV_VM_MLOCK: 1832 case PRIV_VM_MUNLOCK: 1833 case PRIV_VM_SWAP_NOQUOTA: 1834 case PRIV_VM_SWAP_NORLIMIT: 1835 1836 /* 1837 * Allow some but not all network privileges. In general, dont allow 1838 * reconfiguring the network stack, just normal use. 1839 */ 1840 case PRIV_NETATALK_RESERVEDPORT: 1841 case PRIV_NETINET_RESERVEDPORT: 1842 case PRIV_NETINET_RAW: 1843 case PRIV_NETINET_REUSEPORT: 1844 case PRIV_NETIPX_RESERVEDPORT: 1845 case PRIV_NETIPX_RAW: 1846 break; 1847 1848 /* 1849 * All remaining system privileges are allow only if the process 1850 * holds privilege with respect to the Biba policy. 1851 */ 1852 default: 1853 subj = SLOT(cred->cr_label); 1854 error = biba_subject_privileged(subj); 1855 if (error) 1856 return (error); 1857 } 1858 return (0); 1859 } 1860 1861 static int 1862 biba_proc_check_debug(struct ucred *cred, struct proc *p) 1863 { 1864 struct mac_biba *subj, *obj; 1865 1866 if (!biba_enabled) 1867 return (0); 1868 1869 subj = SLOT(cred->cr_label); 1870 obj = SLOT(p->p_ucred->cr_label); 1871 1872 /* XXX: range checks */ 1873 if (!biba_dominate_effective(obj, subj)) 1874 return (ESRCH); 1875 if (!biba_dominate_effective(subj, obj)) 1876 return (EACCES); 1877 1878 return (0); 1879 } 1880 1881 static int 1882 biba_proc_check_sched(struct ucred *cred, struct proc *p) 1883 { 1884 struct mac_biba *subj, *obj; 1885 1886 if (!biba_enabled) 1887 return (0); 1888 1889 subj = SLOT(cred->cr_label); 1890 obj = SLOT(p->p_ucred->cr_label); 1891 1892 /* XXX: range checks */ 1893 if (!biba_dominate_effective(obj, subj)) 1894 return (ESRCH); 1895 if (!biba_dominate_effective(subj, obj)) 1896 return (EACCES); 1897 1898 return (0); 1899 } 1900 1901 static int 1902 biba_proc_check_signal(struct ucred *cred, struct proc *p, int signum) 1903 { 1904 struct mac_biba *subj, *obj; 1905 1906 if (!biba_enabled) 1907 return (0); 1908 1909 subj = SLOT(cred->cr_label); 1910 obj = SLOT(p->p_ucred->cr_label); 1911 1912 /* XXX: range checks */ 1913 if (!biba_dominate_effective(obj, subj)) 1914 return (ESRCH); 1915 if (!biba_dominate_effective(subj, obj)) 1916 return (EACCES); 1917 1918 return (0); 1919 } 1920 1921 static int 1922 biba_socket_check_deliver(struct socket *so, struct label *solabel, 1923 struct mbuf *m, struct label *mlabel) 1924 { 1925 struct mac_biba *p, *s; 1926 int error; 1927 1928 if (!biba_enabled) 1929 return (0); 1930 1931 p = SLOT(mlabel); 1932 s = SLOT(solabel); 1933 1934 SOCK_LOCK(so); 1935 error = biba_equal_effective(p, s) ? 0 : EACCES; 1936 SOCK_UNLOCK(so); 1937 return (error); 1938 } 1939 1940 static int 1941 biba_socket_check_relabel(struct ucred *cred, struct socket *so, 1942 struct label *solabel, struct label *newlabel) 1943 { 1944 struct mac_biba *subj, *obj, *new; 1945 int error; 1946 1947 SOCK_LOCK_ASSERT(so); 1948 1949 new = SLOT(newlabel); 1950 subj = SLOT(cred->cr_label); 1951 obj = SLOT(solabel); 1952 1953 /* 1954 * If there is a Biba label update for the socket, it may be an 1955 * update of effective. 1956 */ 1957 error = biba_atmostflags(new, MAC_BIBA_FLAG_EFFECTIVE); 1958 if (error) 1959 return (error); 1960 1961 /* 1962 * To relabel a socket, the old socket effective must be in the 1963 * subject range. 1964 */ 1965 if (!biba_effective_in_range(obj, subj)) 1966 return (EPERM); 1967 1968 /* 1969 * If the Biba label is to be changed, authorize as appropriate. 1970 */ 1971 if (new->mb_flags & MAC_BIBA_FLAG_EFFECTIVE) { 1972 /* 1973 * To relabel a socket, the new socket effective must be in 1974 * the subject range. 1975 */ 1976 if (!biba_effective_in_range(new, subj)) 1977 return (EPERM); 1978 1979 /* 1980 * To change the Biba label on the socket to contain EQUAL, 1981 * the subject must have appropriate privilege. 1982 */ 1983 if (biba_contains_equal(new)) { 1984 error = biba_subject_privileged(subj); 1985 if (error) 1986 return (error); 1987 } 1988 } 1989 1990 return (0); 1991 } 1992 1993 static int 1994 biba_socket_check_visible(struct ucred *cred, struct socket *so, 1995 struct label *solabel) 1996 { 1997 struct mac_biba *subj, *obj; 1998 1999 if (!biba_enabled) 2000 return (0); 2001 2002 subj = SLOT(cred->cr_label); 2003 obj = SLOT(solabel); 2004 2005 SOCK_LOCK(so); 2006 if (!biba_dominate_effective(obj, subj)) { 2007 SOCK_UNLOCK(so); 2008 return (ENOENT); 2009 } 2010 SOCK_UNLOCK(so); 2011 2012 return (0); 2013 } 2014 2015 static void 2016 biba_socket_create(struct ucred *cred, struct socket *so, 2017 struct label *solabel) 2018 { 2019 struct mac_biba *source, *dest; 2020 2021 source = SLOT(cred->cr_label); 2022 dest = SLOT(solabel); 2023 2024 biba_copy_effective(source, dest); 2025 } 2026 2027 static void 2028 biba_socket_create_mbuf(struct socket *so, struct label *solabel, 2029 struct mbuf *m, struct label *mlabel) 2030 { 2031 struct mac_biba *source, *dest; 2032 2033 source = SLOT(solabel); 2034 dest = SLOT(mlabel); 2035 2036 SOCK_LOCK(so); 2037 biba_copy_effective(source, dest); 2038 SOCK_UNLOCK(so); 2039 } 2040 2041 static void 2042 biba_socket_newconn(struct socket *oldso, struct label *oldsolabel, 2043 struct socket *newso, struct label *newsolabel) 2044 { 2045 struct mac_biba source, *dest; 2046 2047 SOCK_LOCK(oldso); 2048 source = *SLOT(oldsolabel); 2049 SOCK_UNLOCK(oldso); 2050 2051 dest = SLOT(newsolabel); 2052 2053 SOCK_LOCK(newso); 2054 biba_copy_effective(&source, dest); 2055 SOCK_UNLOCK(newso); 2056 } 2057 2058 static void 2059 biba_socket_relabel(struct ucred *cred, struct socket *so, 2060 struct label *solabel, struct label *newlabel) 2061 { 2062 struct mac_biba *source, *dest; 2063 2064 SOCK_LOCK_ASSERT(so); 2065 2066 source = SLOT(newlabel); 2067 dest = SLOT(solabel); 2068 2069 biba_copy(source, dest); 2070 } 2071 2072 static void 2073 biba_socketpeer_set_from_mbuf(struct mbuf *m, struct label *mlabel, 2074 struct socket *so, struct label *sopeerlabel) 2075 { 2076 struct mac_biba *source, *dest; 2077 2078 source = SLOT(mlabel); 2079 dest = SLOT(sopeerlabel); 2080 2081 SOCK_LOCK(so); 2082 biba_copy_effective(source, dest); 2083 SOCK_UNLOCK(so); 2084 } 2085 2086 static void 2087 biba_socketpeer_set_from_socket(struct socket *oldso, 2088 struct label *oldsolabel, struct socket *newso, 2089 struct label *newsopeerlabel) 2090 { 2091 struct mac_biba source, *dest; 2092 2093 SOCK_LOCK(oldso); 2094 source = *SLOT(oldsolabel); 2095 SOCK_UNLOCK(oldso); 2096 dest = SLOT(newsopeerlabel); 2097 2098 SOCK_LOCK(newso); 2099 biba_copy_effective(&source, dest); 2100 SOCK_UNLOCK(newso); 2101 } 2102 2103 static void 2104 biba_syncache_create(struct label *label, struct inpcb *inp) 2105 { 2106 struct mac_biba *source, *dest; 2107 2108 source = SLOT(inp->inp_label); 2109 dest = SLOT(label); 2110 biba_copy_effective(source, dest); 2111 } 2112 2113 static void 2114 biba_syncache_create_mbuf(struct label *sc_label, struct mbuf *m, 2115 struct label *mlabel) 2116 { 2117 struct mac_biba *source, *dest; 2118 2119 source = SLOT(sc_label); 2120 dest = SLOT(mlabel); 2121 biba_copy_effective(source, dest); 2122 } 2123 2124 static int 2125 biba_system_check_acct(struct ucred *cred, struct vnode *vp, 2126 struct label *vplabel) 2127 { 2128 struct mac_biba *subj, *obj; 2129 int error; 2130 2131 if (!biba_enabled) 2132 return (0); 2133 2134 subj = SLOT(cred->cr_label); 2135 2136 error = biba_subject_privileged(subj); 2137 if (error) 2138 return (error); 2139 2140 if (vplabel == NULL) 2141 return (0); 2142 2143 obj = SLOT(vplabel); 2144 if (!biba_high_effective(obj)) 2145 return (EACCES); 2146 2147 return (0); 2148 } 2149 2150 static int 2151 biba_system_check_auditctl(struct ucred *cred, struct vnode *vp, 2152 struct label *vplabel) 2153 { 2154 struct mac_biba *subj, *obj; 2155 int error; 2156 2157 if (!biba_enabled) 2158 return (0); 2159 2160 subj = SLOT(cred->cr_label); 2161 2162 error = biba_subject_privileged(subj); 2163 if (error) 2164 return (error); 2165 2166 if (vplabel == NULL) 2167 return (0); 2168 2169 obj = SLOT(vplabel); 2170 if (!biba_high_effective(obj)) 2171 return (EACCES); 2172 2173 return (0); 2174 } 2175 2176 static int 2177 biba_system_check_auditon(struct ucred *cred, int cmd) 2178 { 2179 struct mac_biba *subj; 2180 int error; 2181 2182 if (!biba_enabled) 2183 return (0); 2184 2185 subj = SLOT(cred->cr_label); 2186 2187 error = biba_subject_privileged(subj); 2188 if (error) 2189 return (error); 2190 2191 return (0); 2192 } 2193 2194 static int 2195 biba_system_check_swapoff(struct ucred *cred, struct vnode *vp, 2196 struct label *label) 2197 { 2198 struct mac_biba *subj; 2199 int error; 2200 2201 if (!biba_enabled) 2202 return (0); 2203 2204 subj = SLOT(cred->cr_label); 2205 2206 error = biba_subject_privileged(subj); 2207 if (error) 2208 return (error); 2209 2210 return (0); 2211 } 2212 2213 static int 2214 biba_system_check_swapon(struct ucred *cred, struct vnode *vp, 2215 struct label *vplabel) 2216 { 2217 struct mac_biba *subj, *obj; 2218 int error; 2219 2220 if (!biba_enabled) 2221 return (0); 2222 2223 subj = SLOT(cred->cr_label); 2224 obj = SLOT(vplabel); 2225 2226 error = biba_subject_privileged(subj); 2227 if (error) 2228 return (error); 2229 2230 if (!biba_high_effective(obj)) 2231 return (EACCES); 2232 2233 return (0); 2234 } 2235 2236 static int 2237 biba_system_check_sysctl(struct ucred *cred, struct sysctl_oid *oidp, 2238 void *arg1, int arg2, struct sysctl_req *req) 2239 { 2240 struct mac_biba *subj; 2241 int error; 2242 2243 if (!biba_enabled) 2244 return (0); 2245 2246 subj = SLOT(cred->cr_label); 2247 2248 /* 2249 * Treat sysctl variables without CTLFLAG_ANYBODY flag as biba/high, 2250 * but also require privilege to change them. 2251 */ 2252 if (req->newptr != NULL && (oidp->oid_kind & CTLFLAG_ANYBODY) == 0) { 2253 if (!biba_subject_dominate_high(subj)) 2254 return (EACCES); 2255 2256 error = biba_subject_privileged(subj); 2257 if (error) 2258 return (error); 2259 } 2260 2261 return (0); 2262 } 2263 2264 static void 2265 biba_sysvmsg_cleanup(struct label *msglabel) 2266 { 2267 2268 bzero(SLOT(msglabel), sizeof(struct mac_biba)); 2269 } 2270 2271 static void 2272 biba_sysvmsg_create(struct ucred *cred, struct msqid_kernel *msqkptr, 2273 struct label *msqlabel, struct msg *msgptr, struct label *msglabel) 2274 { 2275 struct mac_biba *source, *dest; 2276 2277 /* Ignore the msgq label */ 2278 source = SLOT(cred->cr_label); 2279 dest = SLOT(msglabel); 2280 2281 biba_copy_effective(source, dest); 2282 } 2283 2284 static int 2285 biba_sysvmsq_check_msgrcv(struct ucred *cred, struct msg *msgptr, 2286 struct label *msglabel) 2287 { 2288 struct mac_biba *subj, *obj; 2289 2290 if (!biba_enabled) 2291 return (0); 2292 2293 subj = SLOT(cred->cr_label); 2294 obj = SLOT(msglabel); 2295 2296 if (!biba_dominate_effective(obj, subj)) 2297 return (EACCES); 2298 2299 return (0); 2300 } 2301 2302 static int 2303 biba_sysvmsq_check_msgrmid(struct ucred *cred, struct msg *msgptr, 2304 struct label *msglabel) 2305 { 2306 struct mac_biba *subj, *obj; 2307 2308 if (!biba_enabled) 2309 return (0); 2310 2311 subj = SLOT(cred->cr_label); 2312 obj = SLOT(msglabel); 2313 2314 if (!biba_dominate_effective(subj, obj)) 2315 return (EACCES); 2316 2317 return (0); 2318 } 2319 2320 static int 2321 biba_sysvmsq_check_msqget(struct ucred *cred, struct msqid_kernel *msqkptr, 2322 struct label *msqklabel) 2323 { 2324 struct mac_biba *subj, *obj; 2325 2326 if (!biba_enabled) 2327 return (0); 2328 2329 subj = SLOT(cred->cr_label); 2330 obj = SLOT(msqklabel); 2331 2332 if (!biba_dominate_effective(obj, subj)) 2333 return (EACCES); 2334 2335 return (0); 2336 } 2337 2338 static int 2339 biba_sysvmsq_check_msqsnd(struct ucred *cred, struct msqid_kernel *msqkptr, 2340 struct label *msqklabel) 2341 { 2342 struct mac_biba *subj, *obj; 2343 2344 if (!biba_enabled) 2345 return (0); 2346 2347 subj = SLOT(cred->cr_label); 2348 obj = SLOT(msqklabel); 2349 2350 if (!biba_dominate_effective(subj, obj)) 2351 return (EACCES); 2352 2353 return (0); 2354 } 2355 2356 static int 2357 biba_sysvmsq_check_msqrcv(struct ucred *cred, struct msqid_kernel *msqkptr, 2358 struct label *msqklabel) 2359 { 2360 struct mac_biba *subj, *obj; 2361 2362 if (!biba_enabled) 2363 return (0); 2364 2365 subj = SLOT(cred->cr_label); 2366 obj = SLOT(msqklabel); 2367 2368 if (!biba_dominate_effective(obj, subj)) 2369 return (EACCES); 2370 2371 return (0); 2372 } 2373 2374 static int 2375 biba_sysvmsq_check_msqctl(struct ucred *cred, struct msqid_kernel *msqkptr, 2376 struct label *msqklabel, int cmd) 2377 { 2378 struct mac_biba *subj, *obj; 2379 2380 if (!biba_enabled) 2381 return (0); 2382 2383 subj = SLOT(cred->cr_label); 2384 obj = SLOT(msqklabel); 2385 2386 switch(cmd) { 2387 case IPC_RMID: 2388 case IPC_SET: 2389 if (!biba_dominate_effective(subj, obj)) 2390 return (EACCES); 2391 break; 2392 2393 case IPC_STAT: 2394 if (!biba_dominate_effective(obj, subj)) 2395 return (EACCES); 2396 break; 2397 2398 default: 2399 return (EACCES); 2400 } 2401 2402 return (0); 2403 } 2404 2405 static void 2406 biba_sysvmsq_cleanup(struct label *msqlabel) 2407 { 2408 2409 bzero(SLOT(msqlabel), sizeof(struct mac_biba)); 2410 } 2411 2412 static void 2413 biba_sysvmsq_create(struct ucred *cred, struct msqid_kernel *msqkptr, 2414 struct label *msqlabel) 2415 { 2416 struct mac_biba *source, *dest; 2417 2418 source = SLOT(cred->cr_label); 2419 dest = SLOT(msqlabel); 2420 2421 biba_copy_effective(source, dest); 2422 } 2423 2424 static int 2425 biba_sysvsem_check_semctl(struct ucred *cred, struct semid_kernel *semakptr, 2426 struct label *semaklabel, int cmd) 2427 { 2428 struct mac_biba *subj, *obj; 2429 2430 if (!biba_enabled) 2431 return (0); 2432 2433 subj = SLOT(cred->cr_label); 2434 obj = SLOT(semaklabel); 2435 2436 switch(cmd) { 2437 case IPC_RMID: 2438 case IPC_SET: 2439 case SETVAL: 2440 case SETALL: 2441 if (!biba_dominate_effective(subj, obj)) 2442 return (EACCES); 2443 break; 2444 2445 case IPC_STAT: 2446 case GETVAL: 2447 case GETPID: 2448 case GETNCNT: 2449 case GETZCNT: 2450 case GETALL: 2451 if (!biba_dominate_effective(obj, subj)) 2452 return (EACCES); 2453 break; 2454 2455 default: 2456 return (EACCES); 2457 } 2458 2459 return (0); 2460 } 2461 2462 static int 2463 biba_sysvsem_check_semget(struct ucred *cred, struct semid_kernel *semakptr, 2464 struct label *semaklabel) 2465 { 2466 struct mac_biba *subj, *obj; 2467 2468 if (!biba_enabled) 2469 return (0); 2470 2471 subj = SLOT(cred->cr_label); 2472 obj = SLOT(semaklabel); 2473 2474 if (!biba_dominate_effective(obj, subj)) 2475 return (EACCES); 2476 2477 return (0); 2478 } 2479 2480 static int 2481 biba_sysvsem_check_semop(struct ucred *cred, struct semid_kernel *semakptr, 2482 struct label *semaklabel, size_t accesstype) 2483 { 2484 struct mac_biba *subj, *obj; 2485 2486 if (!biba_enabled) 2487 return (0); 2488 2489 subj = SLOT(cred->cr_label); 2490 obj = SLOT(semaklabel); 2491 2492 if (accesstype & SEM_R) 2493 if (!biba_dominate_effective(obj, subj)) 2494 return (EACCES); 2495 2496 if (accesstype & SEM_A) 2497 if (!biba_dominate_effective(subj, obj)) 2498 return (EACCES); 2499 2500 return (0); 2501 } 2502 2503 static void 2504 biba_sysvsem_cleanup(struct label *semalabel) 2505 { 2506 2507 bzero(SLOT(semalabel), sizeof(struct mac_biba)); 2508 } 2509 2510 static void 2511 biba_sysvsem_create(struct ucred *cred, struct semid_kernel *semakptr, 2512 struct label *semalabel) 2513 { 2514 struct mac_biba *source, *dest; 2515 2516 source = SLOT(cred->cr_label); 2517 dest = SLOT(semalabel); 2518 2519 biba_copy_effective(source, dest); 2520 } 2521 2522 static int 2523 biba_sysvshm_check_shmat(struct ucred *cred, struct shmid_kernel *shmsegptr, 2524 struct label *shmseglabel, int shmflg) 2525 { 2526 struct mac_biba *subj, *obj; 2527 2528 if (!biba_enabled) 2529 return (0); 2530 2531 subj = SLOT(cred->cr_label); 2532 obj = SLOT(shmseglabel); 2533 2534 if (!biba_dominate_effective(obj, subj)) 2535 return (EACCES); 2536 if ((shmflg & SHM_RDONLY) == 0) { 2537 if (!biba_dominate_effective(subj, obj)) 2538 return (EACCES); 2539 } 2540 2541 return (0); 2542 } 2543 2544 static int 2545 biba_sysvshm_check_shmctl(struct ucred *cred, struct shmid_kernel *shmsegptr, 2546 struct label *shmseglabel, int cmd) 2547 { 2548 struct mac_biba *subj, *obj; 2549 2550 if (!biba_enabled) 2551 return (0); 2552 2553 subj = SLOT(cred->cr_label); 2554 obj = SLOT(shmseglabel); 2555 2556 switch(cmd) { 2557 case IPC_RMID: 2558 case IPC_SET: 2559 if (!biba_dominate_effective(subj, obj)) 2560 return (EACCES); 2561 break; 2562 2563 case IPC_STAT: 2564 case SHM_STAT: 2565 if (!biba_dominate_effective(obj, subj)) 2566 return (EACCES); 2567 break; 2568 2569 default: 2570 return (EACCES); 2571 } 2572 2573 return (0); 2574 } 2575 2576 static int 2577 biba_sysvshm_check_shmget(struct ucred *cred, struct shmid_kernel *shmsegptr, 2578 struct label *shmseglabel, int shmflg) 2579 { 2580 struct mac_biba *subj, *obj; 2581 2582 if (!biba_enabled) 2583 return (0); 2584 2585 subj = SLOT(cred->cr_label); 2586 obj = SLOT(shmseglabel); 2587 2588 if (!biba_dominate_effective(obj, subj)) 2589 return (EACCES); 2590 2591 return (0); 2592 } 2593 2594 static void 2595 biba_sysvshm_cleanup(struct label *shmlabel) 2596 { 2597 2598 bzero(SLOT(shmlabel), sizeof(struct mac_biba)); 2599 } 2600 2601 static void 2602 biba_sysvshm_create(struct ucred *cred, struct shmid_kernel *shmsegptr, 2603 struct label *shmlabel) 2604 { 2605 struct mac_biba *source, *dest; 2606 2607 source = SLOT(cred->cr_label); 2608 dest = SLOT(shmlabel); 2609 2610 biba_copy_effective(source, dest); 2611 } 2612 2613 static int 2614 biba_vnode_associate_extattr(struct mount *mp, struct label *mplabel, 2615 struct vnode *vp, struct label *vplabel) 2616 { 2617 struct mac_biba mb_temp, *source, *dest; 2618 int buflen, error; 2619 2620 source = SLOT(mplabel); 2621 dest = SLOT(vplabel); 2622 2623 buflen = sizeof(mb_temp); 2624 bzero(&mb_temp, buflen); 2625 2626 error = vn_extattr_get(vp, IO_NODELOCKED, MAC_BIBA_EXTATTR_NAMESPACE, 2627 MAC_BIBA_EXTATTR_NAME, &buflen, (char *) &mb_temp, curthread); 2628 if (error == ENOATTR || error == EOPNOTSUPP) { 2629 /* Fall back to the mntlabel. */ 2630 biba_copy_effective(source, dest); 2631 return (0); 2632 } else if (error) 2633 return (error); 2634 2635 if (buflen != sizeof(mb_temp)) { 2636 printf("biba_vnode_associate_extattr: bad size %d\n", 2637 buflen); 2638 return (EPERM); 2639 } 2640 if (biba_valid(&mb_temp) != 0) { 2641 printf("biba_vnode_associate_extattr: invalid\n"); 2642 return (EPERM); 2643 } 2644 if ((mb_temp.mb_flags & MAC_BIBA_FLAGS_BOTH) != 2645 MAC_BIBA_FLAG_EFFECTIVE) { 2646 printf("biba_vnode_associate_extattr: not effective\n"); 2647 return (EPERM); 2648 } 2649 2650 biba_copy_effective(&mb_temp, dest); 2651 return (0); 2652 } 2653 2654 static void 2655 biba_vnode_associate_singlelabel(struct mount *mp, struct label *mplabel, 2656 struct vnode *vp, struct label *vplabel) 2657 { 2658 struct mac_biba *source, *dest; 2659 2660 source = SLOT(mplabel); 2661 dest = SLOT(vplabel); 2662 2663 biba_copy_effective(source, dest); 2664 } 2665 2666 static int 2667 biba_vnode_check_chdir(struct ucred *cred, struct vnode *dvp, 2668 struct label *dvplabel) 2669 { 2670 struct mac_biba *subj, *obj; 2671 2672 if (!biba_enabled) 2673 return (0); 2674 2675 subj = SLOT(cred->cr_label); 2676 obj = SLOT(dvplabel); 2677 2678 if (!biba_dominate_effective(obj, subj)) 2679 return (EACCES); 2680 2681 return (0); 2682 } 2683 2684 static int 2685 biba_vnode_check_chroot(struct ucred *cred, struct vnode *dvp, 2686 struct label *dvplabel) 2687 { 2688 struct mac_biba *subj, *obj; 2689 2690 if (!biba_enabled) 2691 return (0); 2692 2693 subj = SLOT(cred->cr_label); 2694 obj = SLOT(dvplabel); 2695 2696 if (!biba_dominate_effective(obj, subj)) 2697 return (EACCES); 2698 2699 return (0); 2700 } 2701 2702 static int 2703 biba_vnode_check_create(struct ucred *cred, struct vnode *dvp, 2704 struct label *dvplabel, struct componentname *cnp, struct vattr *vap) 2705 { 2706 struct mac_biba *subj, *obj; 2707 2708 if (!biba_enabled) 2709 return (0); 2710 2711 subj = SLOT(cred->cr_label); 2712 obj = SLOT(dvplabel); 2713 2714 if (!biba_dominate_effective(subj, obj)) 2715 return (EACCES); 2716 2717 return (0); 2718 } 2719 2720 static int 2721 biba_vnode_check_deleteacl(struct ucred *cred, struct vnode *vp, 2722 struct label *vplabel, acl_type_t type) 2723 { 2724 struct mac_biba *subj, *obj; 2725 2726 if (!biba_enabled) 2727 return (0); 2728 2729 subj = SLOT(cred->cr_label); 2730 obj = SLOT(vplabel); 2731 2732 if (!biba_dominate_effective(subj, obj)) 2733 return (EACCES); 2734 2735 return (0); 2736 } 2737 2738 static int 2739 biba_vnode_check_deleteextattr(struct ucred *cred, struct vnode *vp, 2740 struct label *vplabel, int attrnamespace, const char *name) 2741 { 2742 struct mac_biba *subj, *obj; 2743 2744 if (!biba_enabled) 2745 return (0); 2746 2747 subj = SLOT(cred->cr_label); 2748 obj = SLOT(vplabel); 2749 2750 if (!biba_dominate_effective(subj, obj)) 2751 return (EACCES); 2752 2753 return (0); 2754 } 2755 2756 static int 2757 biba_vnode_check_exec(struct ucred *cred, struct vnode *vp, 2758 struct label *vplabel, struct image_params *imgp, 2759 struct label *execlabel) 2760 { 2761 struct mac_biba *subj, *obj, *exec; 2762 int error; 2763 2764 if (execlabel != NULL) { 2765 /* 2766 * We currently don't permit labels to be changed at 2767 * exec-time as part of Biba, so disallow non-NULL Biba label 2768 * elements in the execlabel. 2769 */ 2770 exec = SLOT(execlabel); 2771 error = biba_atmostflags(exec, 0); 2772 if (error) 2773 return (error); 2774 } 2775 2776 if (!biba_enabled) 2777 return (0); 2778 2779 subj = SLOT(cred->cr_label); 2780 obj = SLOT(vplabel); 2781 2782 if (!biba_dominate_effective(obj, subj)) 2783 return (EACCES); 2784 2785 return (0); 2786 } 2787 2788 static int 2789 biba_vnode_check_getacl(struct ucred *cred, struct vnode *vp, 2790 struct label *vplabel, acl_type_t type) 2791 { 2792 struct mac_biba *subj, *obj; 2793 2794 if (!biba_enabled) 2795 return (0); 2796 2797 subj = SLOT(cred->cr_label); 2798 obj = SLOT(vplabel); 2799 2800 if (!biba_dominate_effective(obj, subj)) 2801 return (EACCES); 2802 2803 return (0); 2804 } 2805 2806 static int 2807 biba_vnode_check_getextattr(struct ucred *cred, struct vnode *vp, 2808 struct label *vplabel, int attrnamespace, const char *name) 2809 { 2810 struct mac_biba *subj, *obj; 2811 2812 if (!biba_enabled) 2813 return (0); 2814 2815 subj = SLOT(cred->cr_label); 2816 obj = SLOT(vplabel); 2817 2818 if (!biba_dominate_effective(obj, subj)) 2819 return (EACCES); 2820 2821 return (0); 2822 } 2823 2824 static int 2825 biba_vnode_check_link(struct ucred *cred, struct vnode *dvp, 2826 struct label *dvplabel, struct vnode *vp, struct label *vplabel, 2827 struct componentname *cnp) 2828 { 2829 struct mac_biba *subj, *obj; 2830 2831 if (!biba_enabled) 2832 return (0); 2833 2834 subj = SLOT(cred->cr_label); 2835 obj = SLOT(dvplabel); 2836 2837 if (!biba_dominate_effective(subj, obj)) 2838 return (EACCES); 2839 2840 obj = SLOT(vplabel); 2841 2842 if (!biba_dominate_effective(subj, obj)) 2843 return (EACCES); 2844 2845 return (0); 2846 } 2847 2848 static int 2849 biba_vnode_check_listextattr(struct ucred *cred, struct vnode *vp, 2850 struct label *vplabel, int attrnamespace) 2851 { 2852 struct mac_biba *subj, *obj; 2853 2854 if (!biba_enabled) 2855 return (0); 2856 2857 subj = SLOT(cred->cr_label); 2858 obj = SLOT(vplabel); 2859 2860 if (!biba_dominate_effective(obj, subj)) 2861 return (EACCES); 2862 2863 return (0); 2864 } 2865 2866 static int 2867 biba_vnode_check_lookup(struct ucred *cred, struct vnode *dvp, 2868 struct label *dvplabel, struct componentname *cnp) 2869 { 2870 struct mac_biba *subj, *obj; 2871 2872 if (!biba_enabled) 2873 return (0); 2874 2875 subj = SLOT(cred->cr_label); 2876 obj = SLOT(dvplabel); 2877 2878 if (!biba_dominate_effective(obj, subj)) 2879 return (EACCES); 2880 2881 return (0); 2882 } 2883 2884 static int 2885 biba_vnode_check_mmap(struct ucred *cred, struct vnode *vp, 2886 struct label *vplabel, int prot, int flags) 2887 { 2888 struct mac_biba *subj, *obj; 2889 2890 /* 2891 * Rely on the use of open()-time protections to handle 2892 * non-revocation cases. 2893 */ 2894 if (!biba_enabled || !revocation_enabled) 2895 return (0); 2896 2897 subj = SLOT(cred->cr_label); 2898 obj = SLOT(vplabel); 2899 2900 if (prot & (VM_PROT_READ | VM_PROT_EXECUTE)) { 2901 if (!biba_dominate_effective(obj, subj)) 2902 return (EACCES); 2903 } 2904 if (((prot & VM_PROT_WRITE) != 0) && ((flags & MAP_SHARED) != 0)) { 2905 if (!biba_dominate_effective(subj, obj)) 2906 return (EACCES); 2907 } 2908 2909 return (0); 2910 } 2911 2912 static int 2913 biba_vnode_check_open(struct ucred *cred, struct vnode *vp, 2914 struct label *vplabel, accmode_t accmode) 2915 { 2916 struct mac_biba *subj, *obj; 2917 2918 if (!biba_enabled) 2919 return (0); 2920 2921 subj = SLOT(cred->cr_label); 2922 obj = SLOT(vplabel); 2923 2924 /* XXX privilege override for admin? */ 2925 if (accmode & (VREAD | VEXEC | VSTAT_PERMS)) { 2926 if (!biba_dominate_effective(obj, subj)) 2927 return (EACCES); 2928 } 2929 if (accmode & VMODIFY_PERMS) { 2930 if (!biba_dominate_effective(subj, obj)) 2931 return (EACCES); 2932 } 2933 2934 return (0); 2935 } 2936 2937 static int 2938 biba_vnode_check_poll(struct ucred *active_cred, struct ucred *file_cred, 2939 struct vnode *vp, struct label *vplabel) 2940 { 2941 struct mac_biba *subj, *obj; 2942 2943 if (!biba_enabled || !revocation_enabled) 2944 return (0); 2945 2946 subj = SLOT(active_cred->cr_label); 2947 obj = SLOT(vplabel); 2948 2949 if (!biba_dominate_effective(obj, subj)) 2950 return (EACCES); 2951 2952 return (0); 2953 } 2954 2955 static int 2956 biba_vnode_check_read(struct ucred *active_cred, struct ucred *file_cred, 2957 struct vnode *vp, struct label *vplabel) 2958 { 2959 struct mac_biba *subj, *obj; 2960 2961 if (!biba_enabled || !revocation_enabled) 2962 return (0); 2963 2964 subj = SLOT(active_cred->cr_label); 2965 obj = SLOT(vplabel); 2966 2967 if (!biba_dominate_effective(obj, subj)) 2968 return (EACCES); 2969 2970 return (0); 2971 } 2972 2973 static int 2974 biba_vnode_check_readdir(struct ucred *cred, struct vnode *dvp, 2975 struct label *dvplabel) 2976 { 2977 struct mac_biba *subj, *obj; 2978 2979 if (!biba_enabled) 2980 return (0); 2981 2982 subj = SLOT(cred->cr_label); 2983 obj = SLOT(dvplabel); 2984 2985 if (!biba_dominate_effective(obj, subj)) 2986 return (EACCES); 2987 2988 return (0); 2989 } 2990 2991 static int 2992 biba_vnode_check_readlink(struct ucred *cred, struct vnode *vp, 2993 struct label *vplabel) 2994 { 2995 struct mac_biba *subj, *obj; 2996 2997 if (!biba_enabled) 2998 return (0); 2999 3000 subj = SLOT(cred->cr_label); 3001 obj = SLOT(vplabel); 3002 3003 if (!biba_dominate_effective(obj, subj)) 3004 return (EACCES); 3005 3006 return (0); 3007 } 3008 3009 static int 3010 biba_vnode_check_relabel(struct ucred *cred, struct vnode *vp, 3011 struct label *vplabel, struct label *newlabel) 3012 { 3013 struct mac_biba *old, *new, *subj; 3014 int error; 3015 3016 old = SLOT(vplabel); 3017 new = SLOT(newlabel); 3018 subj = SLOT(cred->cr_label); 3019 3020 /* 3021 * If there is a Biba label update for the vnode, it must be a 3022 * effective label. 3023 */ 3024 error = biba_atmostflags(new, MAC_BIBA_FLAG_EFFECTIVE); 3025 if (error) 3026 return (error); 3027 3028 /* 3029 * To perform a relabel of the vnode (Biba label or not), Biba must 3030 * authorize the relabel. 3031 */ 3032 if (!biba_effective_in_range(old, subj)) 3033 return (EPERM); 3034 3035 /* 3036 * If the Biba label is to be changed, authorize as appropriate. 3037 */ 3038 if (new->mb_flags & MAC_BIBA_FLAG_EFFECTIVE) { 3039 /* 3040 * To change the Biba label on a vnode, the new vnode label 3041 * must be in the subject range. 3042 */ 3043 if (!biba_effective_in_range(new, subj)) 3044 return (EPERM); 3045 3046 /* 3047 * To change the Biba label on the vnode to be EQUAL, the 3048 * subject must have appropriate privilege. 3049 */ 3050 if (biba_contains_equal(new)) { 3051 error = biba_subject_privileged(subj); 3052 if (error) 3053 return (error); 3054 } 3055 } 3056 3057 return (0); 3058 } 3059 3060 static int 3061 biba_vnode_check_rename_from(struct ucred *cred, struct vnode *dvp, 3062 struct label *dvplabel, struct vnode *vp, struct label *vplabel, 3063 struct componentname *cnp) 3064 { 3065 struct mac_biba *subj, *obj; 3066 3067 if (!biba_enabled) 3068 return (0); 3069 3070 subj = SLOT(cred->cr_label); 3071 obj = SLOT(dvplabel); 3072 3073 if (!biba_dominate_effective(subj, obj)) 3074 return (EACCES); 3075 3076 obj = SLOT(vplabel); 3077 3078 if (!biba_dominate_effective(subj, obj)) 3079 return (EACCES); 3080 3081 return (0); 3082 } 3083 3084 static int 3085 biba_vnode_check_rename_to(struct ucred *cred, struct vnode *dvp, 3086 struct label *dvplabel, struct vnode *vp, struct label *vplabel, 3087 int samedir, struct componentname *cnp) 3088 { 3089 struct mac_biba *subj, *obj; 3090 3091 if (!biba_enabled) 3092 return (0); 3093 3094 subj = SLOT(cred->cr_label); 3095 obj = SLOT(dvplabel); 3096 3097 if (!biba_dominate_effective(subj, obj)) 3098 return (EACCES); 3099 3100 if (vp != NULL) { 3101 obj = SLOT(vplabel); 3102 3103 if (!biba_dominate_effective(subj, obj)) 3104 return (EACCES); 3105 } 3106 3107 return (0); 3108 } 3109 3110 static int 3111 biba_vnode_check_revoke(struct ucred *cred, struct vnode *vp, 3112 struct label *vplabel) 3113 { 3114 struct mac_biba *subj, *obj; 3115 3116 if (!biba_enabled) 3117 return (0); 3118 3119 subj = SLOT(cred->cr_label); 3120 obj = SLOT(vplabel); 3121 3122 if (!biba_dominate_effective(subj, obj)) 3123 return (EACCES); 3124 3125 return (0); 3126 } 3127 3128 static int 3129 biba_vnode_check_setacl(struct ucred *cred, struct vnode *vp, 3130 struct label *vplabel, acl_type_t type, struct acl *acl) 3131 { 3132 struct mac_biba *subj, *obj; 3133 3134 if (!biba_enabled) 3135 return (0); 3136 3137 subj = SLOT(cred->cr_label); 3138 obj = SLOT(vplabel); 3139 3140 if (!biba_dominate_effective(subj, obj)) 3141 return (EACCES); 3142 3143 return (0); 3144 } 3145 3146 static int 3147 biba_vnode_check_setextattr(struct ucred *cred, struct vnode *vp, 3148 struct label *vplabel, int attrnamespace, const char *name) 3149 { 3150 struct mac_biba *subj, *obj; 3151 3152 if (!biba_enabled) 3153 return (0); 3154 3155 subj = SLOT(cred->cr_label); 3156 obj = SLOT(vplabel); 3157 3158 if (!biba_dominate_effective(subj, obj)) 3159 return (EACCES); 3160 3161 /* XXX: protect the MAC EA in a special way? */ 3162 3163 return (0); 3164 } 3165 3166 static int 3167 biba_vnode_check_setflags(struct ucred *cred, struct vnode *vp, 3168 struct label *vplabel, u_long flags) 3169 { 3170 struct mac_biba *subj, *obj; 3171 3172 if (!biba_enabled) 3173 return (0); 3174 3175 subj = SLOT(cred->cr_label); 3176 obj = SLOT(vplabel); 3177 3178 if (!biba_dominate_effective(subj, obj)) 3179 return (EACCES); 3180 3181 return (0); 3182 } 3183 3184 static int 3185 biba_vnode_check_setmode(struct ucred *cred, struct vnode *vp, 3186 struct label *vplabel, mode_t mode) 3187 { 3188 struct mac_biba *subj, *obj; 3189 3190 if (!biba_enabled) 3191 return (0); 3192 3193 subj = SLOT(cred->cr_label); 3194 obj = SLOT(vplabel); 3195 3196 if (!biba_dominate_effective(subj, obj)) 3197 return (EACCES); 3198 3199 return (0); 3200 } 3201 3202 static int 3203 biba_vnode_check_setowner(struct ucred *cred, struct vnode *vp, 3204 struct label *vplabel, uid_t uid, gid_t gid) 3205 { 3206 struct mac_biba *subj, *obj; 3207 3208 if (!biba_enabled) 3209 return (0); 3210 3211 subj = SLOT(cred->cr_label); 3212 obj = SLOT(vplabel); 3213 3214 if (!biba_dominate_effective(subj, obj)) 3215 return (EACCES); 3216 3217 return (0); 3218 } 3219 3220 static int 3221 biba_vnode_check_setutimes(struct ucred *cred, struct vnode *vp, 3222 struct label *vplabel, struct timespec atime, struct timespec mtime) 3223 { 3224 struct mac_biba *subj, *obj; 3225 3226 if (!biba_enabled) 3227 return (0); 3228 3229 subj = SLOT(cred->cr_label); 3230 obj = SLOT(vplabel); 3231 3232 if (!biba_dominate_effective(subj, obj)) 3233 return (EACCES); 3234 3235 return (0); 3236 } 3237 3238 static int 3239 biba_vnode_check_stat(struct ucred *active_cred, struct ucred *file_cred, 3240 struct vnode *vp, struct label *vplabel) 3241 { 3242 struct mac_biba *subj, *obj; 3243 3244 if (!biba_enabled) 3245 return (0); 3246 3247 subj = SLOT(active_cred->cr_label); 3248 obj = SLOT(vplabel); 3249 3250 if (!biba_dominate_effective(obj, subj)) 3251 return (EACCES); 3252 3253 return (0); 3254 } 3255 3256 static int 3257 biba_vnode_check_unlink(struct ucred *cred, struct vnode *dvp, 3258 struct label *dvplabel, struct vnode *vp, struct label *vplabel, 3259 struct componentname *cnp) 3260 { 3261 struct mac_biba *subj, *obj; 3262 3263 if (!biba_enabled) 3264 return (0); 3265 3266 subj = SLOT(cred->cr_label); 3267 obj = SLOT(dvplabel); 3268 3269 if (!biba_dominate_effective(subj, obj)) 3270 return (EACCES); 3271 3272 obj = SLOT(vplabel); 3273 3274 if (!biba_dominate_effective(subj, obj)) 3275 return (EACCES); 3276 3277 return (0); 3278 } 3279 3280 static int 3281 biba_vnode_check_write(struct ucred *active_cred, 3282 struct ucred *file_cred, struct vnode *vp, struct label *vplabel) 3283 { 3284 struct mac_biba *subj, *obj; 3285 3286 if (!biba_enabled || !revocation_enabled) 3287 return (0); 3288 3289 subj = SLOT(active_cred->cr_label); 3290 obj = SLOT(vplabel); 3291 3292 if (!biba_dominate_effective(subj, obj)) 3293 return (EACCES); 3294 3295 return (0); 3296 } 3297 3298 static int 3299 biba_vnode_create_extattr(struct ucred *cred, struct mount *mp, 3300 struct label *mplabel, struct vnode *dvp, struct label *dvplabel, 3301 struct vnode *vp, struct label *vplabel, struct componentname *cnp) 3302 { 3303 struct mac_biba *source, *dest, mb_temp; 3304 size_t buflen; 3305 int error; 3306 3307 buflen = sizeof(mb_temp); 3308 bzero(&mb_temp, buflen); 3309 3310 source = SLOT(cred->cr_label); 3311 dest = SLOT(vplabel); 3312 biba_copy_effective(source, &mb_temp); 3313 3314 error = vn_extattr_set(vp, IO_NODELOCKED, MAC_BIBA_EXTATTR_NAMESPACE, 3315 MAC_BIBA_EXTATTR_NAME, buflen, (char *) &mb_temp, curthread); 3316 if (error == 0) 3317 biba_copy_effective(source, dest); 3318 return (error); 3319 } 3320 3321 static void 3322 biba_vnode_relabel(struct ucred *cred, struct vnode *vp, 3323 struct label *vplabel, struct label *newlabel) 3324 { 3325 struct mac_biba *source, *dest; 3326 3327 source = SLOT(newlabel); 3328 dest = SLOT(vplabel); 3329 3330 biba_copy(source, dest); 3331 } 3332 3333 static int 3334 biba_vnode_setlabel_extattr(struct ucred *cred, struct vnode *vp, 3335 struct label *vplabel, struct label *intlabel) 3336 { 3337 struct mac_biba *source, mb_temp; 3338 size_t buflen; 3339 int error; 3340 3341 buflen = sizeof(mb_temp); 3342 bzero(&mb_temp, buflen); 3343 3344 source = SLOT(intlabel); 3345 if ((source->mb_flags & MAC_BIBA_FLAG_EFFECTIVE) == 0) 3346 return (0); 3347 3348 biba_copy_effective(source, &mb_temp); 3349 3350 error = vn_extattr_set(vp, IO_NODELOCKED, MAC_BIBA_EXTATTR_NAMESPACE, 3351 MAC_BIBA_EXTATTR_NAME, buflen, (char *) &mb_temp, curthread); 3352 return (error); 3353 } 3354 3355 static struct mac_policy_ops mac_biba_ops = 3356 { 3357 .mpo_init = biba_init, 3358 3359 .mpo_bpfdesc_check_receive = biba_bpfdesc_check_receive, 3360 .mpo_bpfdesc_create = biba_bpfdesc_create, 3361 .mpo_bpfdesc_create_mbuf = biba_bpfdesc_create_mbuf, 3362 .mpo_bpfdesc_destroy_label = biba_destroy_label, 3363 .mpo_bpfdesc_init_label = biba_init_label, 3364 3365 .mpo_cred_associate_nfsd = biba_cred_associate_nfsd, 3366 .mpo_cred_check_relabel = biba_cred_check_relabel, 3367 .mpo_cred_check_visible = biba_cred_check_visible, 3368 .mpo_cred_copy_label = biba_copy_label, 3369 .mpo_cred_create_init = biba_cred_create_init, 3370 .mpo_cred_create_swapper = biba_cred_create_swapper, 3371 .mpo_cred_destroy_label = biba_destroy_label, 3372 .mpo_cred_externalize_label = biba_externalize_label, 3373 .mpo_cred_init_label = biba_init_label, 3374 .mpo_cred_internalize_label = biba_internalize_label, 3375 .mpo_cred_relabel = biba_cred_relabel, 3376 3377 .mpo_devfs_create_device = biba_devfs_create_device, 3378 .mpo_devfs_create_directory = biba_devfs_create_directory, 3379 .mpo_devfs_create_symlink = biba_devfs_create_symlink, 3380 .mpo_devfs_destroy_label = biba_destroy_label, 3381 .mpo_devfs_init_label = biba_init_label, 3382 .mpo_devfs_update = biba_devfs_update, 3383 .mpo_devfs_vnode_associate = biba_devfs_vnode_associate, 3384 3385 .mpo_ifnet_check_relabel = biba_ifnet_check_relabel, 3386 .mpo_ifnet_check_transmit = biba_ifnet_check_transmit, 3387 .mpo_ifnet_copy_label = biba_copy_label, 3388 .mpo_ifnet_create = biba_ifnet_create, 3389 .mpo_ifnet_create_mbuf = biba_ifnet_create_mbuf, 3390 .mpo_ifnet_destroy_label = biba_destroy_label, 3391 .mpo_ifnet_externalize_label = biba_externalize_label, 3392 .mpo_ifnet_init_label = biba_init_label, 3393 .mpo_ifnet_internalize_label = biba_internalize_label, 3394 .mpo_ifnet_relabel = biba_ifnet_relabel, 3395 3396 .mpo_inpcb_check_deliver = biba_inpcb_check_deliver, 3397 .mpo_inpcb_check_visible = biba_inpcb_check_visible, 3398 .mpo_inpcb_create = biba_inpcb_create, 3399 .mpo_inpcb_create_mbuf = biba_inpcb_create_mbuf, 3400 .mpo_inpcb_destroy_label = biba_destroy_label, 3401 .mpo_inpcb_init_label = biba_init_label_waitcheck, 3402 .mpo_inpcb_sosetlabel = biba_inpcb_sosetlabel, 3403 3404 .mpo_ip6q_create = biba_ip6q_create, 3405 .mpo_ip6q_destroy_label = biba_destroy_label, 3406 .mpo_ip6q_init_label = biba_init_label_waitcheck, 3407 .mpo_ip6q_match = biba_ip6q_match, 3408 .mpo_ip6q_reassemble = biba_ip6q_reassemble, 3409 .mpo_ip6q_update = biba_ip6q_update, 3410 3411 .mpo_ipq_create = biba_ipq_create, 3412 .mpo_ipq_destroy_label = biba_destroy_label, 3413 .mpo_ipq_init_label = biba_init_label_waitcheck, 3414 .mpo_ipq_match = biba_ipq_match, 3415 .mpo_ipq_reassemble = biba_ipq_reassemble, 3416 .mpo_ipq_update = biba_ipq_update, 3417 3418 .mpo_kld_check_load = biba_kld_check_load, 3419 3420 .mpo_mbuf_copy_label = biba_copy_label, 3421 .mpo_mbuf_destroy_label = biba_destroy_label, 3422 .mpo_mbuf_init_label = biba_init_label_waitcheck, 3423 3424 .mpo_mount_check_stat = biba_mount_check_stat, 3425 .mpo_mount_create = biba_mount_create, 3426 .mpo_mount_destroy_label = biba_destroy_label, 3427 .mpo_mount_init_label = biba_init_label, 3428 3429 .mpo_netatalk_aarp_send = biba_netatalk_aarp_send, 3430 3431 .mpo_netinet_arp_send = biba_netinet_arp_send, 3432 .mpo_netinet_firewall_reply = biba_netinet_firewall_reply, 3433 .mpo_netinet_firewall_send = biba_netinet_firewall_send, 3434 .mpo_netinet_fragment = biba_netinet_fragment, 3435 .mpo_netinet_icmp_reply = biba_netinet_icmp_reply, 3436 .mpo_netinet_igmp_send = biba_netinet_igmp_send, 3437 3438 .mpo_netinet6_nd6_send = biba_netinet6_nd6_send, 3439 3440 .mpo_pipe_check_ioctl = biba_pipe_check_ioctl, 3441 .mpo_pipe_check_poll = biba_pipe_check_poll, 3442 .mpo_pipe_check_read = biba_pipe_check_read, 3443 .mpo_pipe_check_relabel = biba_pipe_check_relabel, 3444 .mpo_pipe_check_stat = biba_pipe_check_stat, 3445 .mpo_pipe_check_write = biba_pipe_check_write, 3446 .mpo_pipe_copy_label = biba_copy_label, 3447 .mpo_pipe_create = biba_pipe_create, 3448 .mpo_pipe_destroy_label = biba_destroy_label, 3449 .mpo_pipe_externalize_label = biba_externalize_label, 3450 .mpo_pipe_init_label = biba_init_label, 3451 .mpo_pipe_internalize_label = biba_internalize_label, 3452 .mpo_pipe_relabel = biba_pipe_relabel, 3453 3454 .mpo_posixsem_check_getvalue = biba_posixsem_check_rdonly, 3455 .mpo_posixsem_check_open = biba_posixsem_check_openunlink, 3456 .mpo_posixsem_check_post = biba_posixsem_check_write, 3457 .mpo_posixsem_check_stat = biba_posixsem_check_rdonly, 3458 .mpo_posixsem_check_unlink = biba_posixsem_check_openunlink, 3459 .mpo_posixsem_check_wait = biba_posixsem_check_write, 3460 .mpo_posixsem_create = biba_posixsem_create, 3461 .mpo_posixsem_destroy_label = biba_destroy_label, 3462 .mpo_posixsem_init_label = biba_init_label, 3463 3464 .mpo_priv_check = biba_priv_check, 3465 3466 .mpo_proc_check_debug = biba_proc_check_debug, 3467 .mpo_proc_check_sched = biba_proc_check_sched, 3468 .mpo_proc_check_signal = biba_proc_check_signal, 3469 3470 .mpo_socket_check_deliver = biba_socket_check_deliver, 3471 .mpo_socket_check_relabel = biba_socket_check_relabel, 3472 .mpo_socket_check_visible = biba_socket_check_visible, 3473 .mpo_socket_copy_label = biba_copy_label, 3474 .mpo_socket_create = biba_socket_create, 3475 .mpo_socket_create_mbuf = biba_socket_create_mbuf, 3476 .mpo_socket_destroy_label = biba_destroy_label, 3477 .mpo_socket_externalize_label = biba_externalize_label, 3478 .mpo_socket_init_label = biba_init_label_waitcheck, 3479 .mpo_socket_internalize_label = biba_internalize_label, 3480 .mpo_socket_newconn = biba_socket_newconn, 3481 .mpo_socket_relabel = biba_socket_relabel, 3482 3483 .mpo_socketpeer_destroy_label = biba_destroy_label, 3484 .mpo_socketpeer_externalize_label = biba_externalize_label, 3485 .mpo_socketpeer_init_label = biba_init_label_waitcheck, 3486 .mpo_socketpeer_set_from_mbuf = biba_socketpeer_set_from_mbuf, 3487 .mpo_socketpeer_set_from_socket = biba_socketpeer_set_from_socket, 3488 3489 .mpo_syncache_create = biba_syncache_create, 3490 .mpo_syncache_create_mbuf = biba_syncache_create_mbuf, 3491 .mpo_syncache_destroy_label = biba_destroy_label, 3492 .mpo_syncache_init_label = biba_init_label_waitcheck, 3493 3494 .mpo_system_check_acct = biba_system_check_acct, 3495 .mpo_system_check_auditctl = biba_system_check_auditctl, 3496 .mpo_system_check_auditon = biba_system_check_auditon, 3497 .mpo_system_check_swapoff = biba_system_check_swapoff, 3498 .mpo_system_check_swapon = biba_system_check_swapon, 3499 .mpo_system_check_sysctl = biba_system_check_sysctl, 3500 3501 .mpo_sysvmsg_cleanup = biba_sysvmsg_cleanup, 3502 .mpo_sysvmsg_create = biba_sysvmsg_create, 3503 .mpo_sysvmsg_destroy_label = biba_destroy_label, 3504 .mpo_sysvmsg_init_label = biba_init_label, 3505 3506 .mpo_sysvmsq_check_msgrcv = biba_sysvmsq_check_msgrcv, 3507 .mpo_sysvmsq_check_msgrmid = biba_sysvmsq_check_msgrmid, 3508 .mpo_sysvmsq_check_msqget = biba_sysvmsq_check_msqget, 3509 .mpo_sysvmsq_check_msqsnd = biba_sysvmsq_check_msqsnd, 3510 .mpo_sysvmsq_check_msqrcv = biba_sysvmsq_check_msqrcv, 3511 .mpo_sysvmsq_check_msqctl = biba_sysvmsq_check_msqctl, 3512 .mpo_sysvmsq_cleanup = biba_sysvmsq_cleanup, 3513 .mpo_sysvmsq_create = biba_sysvmsq_create, 3514 .mpo_sysvmsq_destroy_label = biba_destroy_label, 3515 .mpo_sysvmsq_init_label = biba_init_label, 3516 3517 .mpo_sysvsem_check_semctl = biba_sysvsem_check_semctl, 3518 .mpo_sysvsem_check_semget = biba_sysvsem_check_semget, 3519 .mpo_sysvsem_check_semop = biba_sysvsem_check_semop, 3520 .mpo_sysvsem_cleanup = biba_sysvsem_cleanup, 3521 .mpo_sysvsem_create = biba_sysvsem_create, 3522 .mpo_sysvsem_destroy_label = biba_destroy_label, 3523 .mpo_sysvsem_init_label = biba_init_label, 3524 3525 .mpo_sysvshm_check_shmat = biba_sysvshm_check_shmat, 3526 .mpo_sysvshm_check_shmctl = biba_sysvshm_check_shmctl, 3527 .mpo_sysvshm_check_shmget = biba_sysvshm_check_shmget, 3528 .mpo_sysvshm_cleanup = biba_sysvshm_cleanup, 3529 .mpo_sysvshm_create = biba_sysvshm_create, 3530 .mpo_sysvshm_destroy_label = biba_destroy_label, 3531 .mpo_sysvshm_init_label = biba_init_label, 3532 3533 .mpo_vnode_associate_extattr = biba_vnode_associate_extattr, 3534 .mpo_vnode_associate_singlelabel = biba_vnode_associate_singlelabel, 3535 .mpo_vnode_check_access = biba_vnode_check_open, 3536 .mpo_vnode_check_chdir = biba_vnode_check_chdir, 3537 .mpo_vnode_check_chroot = biba_vnode_check_chroot, 3538 .mpo_vnode_check_create = biba_vnode_check_create, 3539 .mpo_vnode_check_deleteacl = biba_vnode_check_deleteacl, 3540 .mpo_vnode_check_deleteextattr = biba_vnode_check_deleteextattr, 3541 .mpo_vnode_check_exec = biba_vnode_check_exec, 3542 .mpo_vnode_check_getacl = biba_vnode_check_getacl, 3543 .mpo_vnode_check_getextattr = biba_vnode_check_getextattr, 3544 .mpo_vnode_check_link = biba_vnode_check_link, 3545 .mpo_vnode_check_listextattr = biba_vnode_check_listextattr, 3546 .mpo_vnode_check_lookup = biba_vnode_check_lookup, 3547 .mpo_vnode_check_mmap = biba_vnode_check_mmap, 3548 .mpo_vnode_check_open = biba_vnode_check_open, 3549 .mpo_vnode_check_poll = biba_vnode_check_poll, 3550 .mpo_vnode_check_read = biba_vnode_check_read, 3551 .mpo_vnode_check_readdir = biba_vnode_check_readdir, 3552 .mpo_vnode_check_readlink = biba_vnode_check_readlink, 3553 .mpo_vnode_check_relabel = biba_vnode_check_relabel, 3554 .mpo_vnode_check_rename_from = biba_vnode_check_rename_from, 3555 .mpo_vnode_check_rename_to = biba_vnode_check_rename_to, 3556 .mpo_vnode_check_revoke = biba_vnode_check_revoke, 3557 .mpo_vnode_check_setacl = biba_vnode_check_setacl, 3558 .mpo_vnode_check_setextattr = biba_vnode_check_setextattr, 3559 .mpo_vnode_check_setflags = biba_vnode_check_setflags, 3560 .mpo_vnode_check_setmode = biba_vnode_check_setmode, 3561 .mpo_vnode_check_setowner = biba_vnode_check_setowner, 3562 .mpo_vnode_check_setutimes = biba_vnode_check_setutimes, 3563 .mpo_vnode_check_stat = biba_vnode_check_stat, 3564 .mpo_vnode_check_unlink = biba_vnode_check_unlink, 3565 .mpo_vnode_check_write = biba_vnode_check_write, 3566 .mpo_vnode_create_extattr = biba_vnode_create_extattr, 3567 .mpo_vnode_copy_label = biba_copy_label, 3568 .mpo_vnode_destroy_label = biba_destroy_label, 3569 .mpo_vnode_externalize_label = biba_externalize_label, 3570 .mpo_vnode_init_label = biba_init_label, 3571 .mpo_vnode_internalize_label = biba_internalize_label, 3572 .mpo_vnode_relabel = biba_vnode_relabel, 3573 .mpo_vnode_setlabel_extattr = biba_vnode_setlabel_extattr, 3574 }; 3575 3576 MAC_POLICY_SET(&mac_biba_ops, mac_biba, "TrustedBSD MAC/Biba", 3577 MPC_LOADTIME_FLAG_NOTLATE, &biba_slot); 3578