Merge tag 'v3.10.103' into update
[GitHub/mt8127/android_kernel_alcatel_ttab.git] / net / netlabel / netlabel_kapi.c
CommitLineData
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1/*
2 * NetLabel Kernel API
3 *
4 * This file defines the kernel API for the NetLabel system. The NetLabel
5 * system manages static and dynamic label mappings for network protocols such
6 * as CIPSO and RIPSO.
7 *
82c21bfa 8 * Author: Paul Moore <paul@paul-moore.com>
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9 *
10 */
11
12/*
014ab19a 13 * (c) Copyright Hewlett-Packard Development Company, L.P., 2006, 2008
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14 *
15 * This program is free software; you can redistribute it and/or modify
16 * it under the terms of the GNU General Public License as published by
17 * the Free Software Foundation; either version 2 of the License, or
18 * (at your option) any later version.
19 *
20 * This program is distributed in the hope that it will be useful,
21 * but WITHOUT ANY WARRANTY; without even the implied warranty of
22 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See
23 * the GNU General Public License for more details.
24 *
25 * You should have received a copy of the GNU General Public License
26 * along with this program; if not, write to the Free Software
27 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
28 *
29 */
30
31#include <linux/init.h>
32#include <linux/types.h>
5a0e3ad6 33#include <linux/slab.h>
eda61d32 34#include <linux/audit.h>
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35#include <linux/in.h>
36#include <linux/in6.h>
d15c345f 37#include <net/ip.h>
6c2e8ac0 38#include <net/ipv6.h>
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39#include <net/netlabel.h>
40#include <net/cipso_ipv4.h>
41#include <asm/bug.h>
60063497 42#include <linux/atomic.h>
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43
44#include "netlabel_domainhash.h"
45#include "netlabel_unlabeled.h"
eda61d32 46#include "netlabel_cipso_v4.h"
d15c345f 47#include "netlabel_user.h"
23bcdc1a 48#include "netlabel_mgmt.h"
6c2e8ac0 49#include "netlabel_addrlist.h"
d15c345f 50
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51/*
52 * Configuration Functions
53 */
54
55/**
56 * netlbl_cfg_map_del - Remove a NetLabel/LSM domain mapping
57 * @domain: the domain mapping to remove
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58 * @family: address family
59 * @addr: IP address
60 * @mask: IP address mask
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61 * @audit_info: NetLabel audit information
62 *
63 * Description:
64 * Removes a NetLabel/LSM domain mapping. A @domain value of NULL causes the
65 * default domain mapping to be removed. Returns zero on success, negative
66 * values on failure.
67 *
68 */
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69int netlbl_cfg_map_del(const char *domain,
70 u16 family,
71 const void *addr,
72 const void *mask,
73 struct netlbl_audit *audit_info)
eda61d32 74{
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75 if (addr == NULL && mask == NULL) {
76 return netlbl_domhsh_remove(domain, audit_info);
77 } else if (addr != NULL && mask != NULL) {
78 switch (family) {
79 case AF_INET:
80 return netlbl_domhsh_remove_af4(domain, addr, mask,
81 audit_info);
82 default:
83 return -EPFNOSUPPORT;
84 }
85 } else
86 return -EINVAL;
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87}
88
89/**
6c2e8ac0 90 * netlbl_cfg_unlbl_map_add - Add a new unlabeled mapping
eda61d32 91 * @domain: the domain mapping to add
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92 * @family: address family
93 * @addr: IP address
94 * @mask: IP address mask
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95 * @audit_info: NetLabel audit information
96 *
97 * Description:
98 * Adds a new unlabeled NetLabel/LSM domain mapping. A @domain value of NULL
99 * causes a new default domain mapping to be added. Returns zero on success,
100 * negative values on failure.
101 *
102 */
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103int netlbl_cfg_unlbl_map_add(const char *domain,
104 u16 family,
105 const void *addr,
106 const void *mask,
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107 struct netlbl_audit *audit_info)
108{
109 int ret_val = -ENOMEM;
110 struct netlbl_dom_map *entry;
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111 struct netlbl_domaddr_map *addrmap = NULL;
112 struct netlbl_domaddr4_map *map4 = NULL;
113 struct netlbl_domaddr6_map *map6 = NULL;
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114
115 entry = kzalloc(sizeof(*entry), GFP_ATOMIC);
116 if (entry == NULL)
948a7243 117 return -ENOMEM;
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118 if (domain != NULL) {
119 entry->domain = kstrdup(domain, GFP_ATOMIC);
120 if (entry->domain == NULL)
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121 goto cfg_unlbl_map_add_failure;
122 }
123
124 if (addr == NULL && mask == NULL)
125 entry->type = NETLBL_NLTYPE_UNLABELED;
126 else if (addr != NULL && mask != NULL) {
127 addrmap = kzalloc(sizeof(*addrmap), GFP_ATOMIC);
128 if (addrmap == NULL)
129 goto cfg_unlbl_map_add_failure;
130 INIT_LIST_HEAD(&addrmap->list4);
131 INIT_LIST_HEAD(&addrmap->list6);
132
133 switch (family) {
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134 case AF_INET: {
135 const struct in_addr *addr4 = addr;
136 const struct in_addr *mask4 = mask;
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137 map4 = kzalloc(sizeof(*map4), GFP_ATOMIC);
138 if (map4 == NULL)
139 goto cfg_unlbl_map_add_failure;
140 map4->type = NETLBL_NLTYPE_UNLABELED;
141 map4->list.addr = addr4->s_addr & mask4->s_addr;
142 map4->list.mask = mask4->s_addr;
143 map4->list.valid = 1;
144 ret_val = netlbl_af4list_add(&map4->list,
145 &addrmap->list4);
146 if (ret_val != 0)
147 goto cfg_unlbl_map_add_failure;
148 break;
1281bc25 149 }
dfd56b8b 150#if IS_ENABLED(CONFIG_IPV6)
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151 case AF_INET6: {
152 const struct in6_addr *addr6 = addr;
153 const struct in6_addr *mask6 = mask;
6c2e8ac0 154 map6 = kzalloc(sizeof(*map6), GFP_ATOMIC);
ca7daea6 155 if (map6 == NULL)
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156 goto cfg_unlbl_map_add_failure;
157 map6->type = NETLBL_NLTYPE_UNLABELED;
4e3fd7a0 158 map6->list.addr = *addr6;
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159 map6->list.addr.s6_addr32[0] &= mask6->s6_addr32[0];
160 map6->list.addr.s6_addr32[1] &= mask6->s6_addr32[1];
161 map6->list.addr.s6_addr32[2] &= mask6->s6_addr32[2];
162 map6->list.addr.s6_addr32[3] &= mask6->s6_addr32[3];
4e3fd7a0 163 map6->list.mask = *mask6;
6c2e8ac0 164 map6->list.valid = 1;
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165 ret_val = netlbl_af6list_add(&map6->list,
166 &addrmap->list6);
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167 if (ret_val != 0)
168 goto cfg_unlbl_map_add_failure;
169 break;
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170 }
171#endif /* IPv6 */
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172 default:
173 goto cfg_unlbl_map_add_failure;
174 break;
175 }
176
177 entry->type_def.addrsel = addrmap;
178 entry->type = NETLBL_NLTYPE_ADDRSELECT;
179 } else {
180 ret_val = -EINVAL;
181 goto cfg_unlbl_map_add_failure;
eda61d32 182 }
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183
184 ret_val = netlbl_domhsh_add(entry, audit_info);
185 if (ret_val != 0)
6c2e8ac0 186 goto cfg_unlbl_map_add_failure;
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187
188 return 0;
189
6c2e8ac0 190cfg_unlbl_map_add_failure:
47943234 191 kfree(entry->domain);
eda61d32 192 kfree(entry);
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193 kfree(addrmap);
194 kfree(map4);
195 kfree(map6);
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196 return ret_val;
197}
198
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199
200/**
201 * netlbl_cfg_unlbl_static_add - Adds a new static label
202 * @net: network namespace
203 * @dev_name: interface name
204 * @addr: IP address in network byte order (struct in[6]_addr)
205 * @mask: address mask in network byte order (struct in[6]_addr)
206 * @family: address family
207 * @secid: LSM secid value for the entry
208 * @audit_info: NetLabel audit information
209 *
210 * Description:
211 * Adds a new NetLabel static label to be used when protocol provided labels
212 * are not present on incoming traffic. If @dev_name is NULL then the default
213 * interface will be used. Returns zero on success, negative values on failure.
214 *
215 */
216int netlbl_cfg_unlbl_static_add(struct net *net,
217 const char *dev_name,
218 const void *addr,
219 const void *mask,
220 u16 family,
221 u32 secid,
222 struct netlbl_audit *audit_info)
223{
224 u32 addr_len;
225
226 switch (family) {
227 case AF_INET:
228 addr_len = sizeof(struct in_addr);
229 break;
dfd56b8b 230#if IS_ENABLED(CONFIG_IPV6)
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231 case AF_INET6:
232 addr_len = sizeof(struct in6_addr);
233 break;
1281bc25 234#endif /* IPv6 */
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235 default:
236 return -EPFNOSUPPORT;
237 }
238
239 return netlbl_unlhsh_add(net,
240 dev_name, addr, mask, addr_len,
241 secid, audit_info);
242}
243
244/**
245 * netlbl_cfg_unlbl_static_del - Removes an existing static label
246 * @net: network namespace
247 * @dev_name: interface name
248 * @addr: IP address in network byte order (struct in[6]_addr)
249 * @mask: address mask in network byte order (struct in[6]_addr)
250 * @family: address family
251 * @secid: LSM secid value for the entry
252 * @audit_info: NetLabel audit information
253 *
254 * Description:
255 * Removes an existing NetLabel static label used when protocol provided labels
256 * are not present on incoming traffic. If @dev_name is NULL then the default
257 * interface will be used. Returns zero on success, negative values on failure.
258 *
259 */
260int netlbl_cfg_unlbl_static_del(struct net *net,
261 const char *dev_name,
262 const void *addr,
263 const void *mask,
264 u16 family,
265 struct netlbl_audit *audit_info)
266{
267 u32 addr_len;
268
269 switch (family) {
270 case AF_INET:
271 addr_len = sizeof(struct in_addr);
272 break;
dfd56b8b 273#if IS_ENABLED(CONFIG_IPV6)
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274 case AF_INET6:
275 addr_len = sizeof(struct in6_addr);
276 break;
1281bc25 277#endif /* IPv6 */
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278 default:
279 return -EPFNOSUPPORT;
280 }
281
282 return netlbl_unlhsh_remove(net,
283 dev_name, addr, mask, addr_len,
284 audit_info);
285}
286
287/**
288 * netlbl_cfg_cipsov4_add - Add a new CIPSOv4 DOI definition
289 * @doi_def: CIPSO DOI definition
290 * @audit_info: NetLabel audit information
291 *
292 * Description:
293 * Add a new CIPSO DOI definition as defined by @doi_def. Returns zero on
294 * success and negative values on failure.
295 *
296 */
297int netlbl_cfg_cipsov4_add(struct cipso_v4_doi *doi_def,
298 struct netlbl_audit *audit_info)
299{
300 return cipso_v4_doi_add(doi_def, audit_info);
301}
302
303/**
304 * netlbl_cfg_cipsov4_del - Remove an existing CIPSOv4 DOI definition
305 * @doi: CIPSO DOI
306 * @audit_info: NetLabel audit information
307 *
308 * Description:
309 * Remove an existing CIPSO DOI definition matching @doi. Returns zero on
310 * success and negative values on failure.
311 *
312 */
313void netlbl_cfg_cipsov4_del(u32 doi, struct netlbl_audit *audit_info)
314{
315 cipso_v4_doi_remove(doi, audit_info);
316}
317
eda61d32 318/**
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319 * netlbl_cfg_cipsov4_map_add - Add a new CIPSOv4 DOI mapping
320 * @doi: the CIPSO DOI
eda61d32 321 * @domain: the domain mapping to add
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322 * @addr: IP address
323 * @mask: IP address mask
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324 * @audit_info: NetLabel audit information
325 *
326 * Description:
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327 * Add a new NetLabel/LSM domain mapping for the given CIPSO DOI to the NetLabel
328 * subsystem. A @domain value of NULL adds a new default domain mapping.
329 * Returns zero on success, negative values on failure.
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330 *
331 */
6c2e8ac0 332int netlbl_cfg_cipsov4_map_add(u32 doi,
eda61d32 333 const char *domain,
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334 const struct in_addr *addr,
335 const struct in_addr *mask,
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336 struct netlbl_audit *audit_info)
337{
338 int ret_val = -ENOMEM;
6c2e8ac0 339 struct cipso_v4_doi *doi_def;
eda61d32 340 struct netlbl_dom_map *entry;
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341 struct netlbl_domaddr_map *addrmap = NULL;
342 struct netlbl_domaddr4_map *addrinfo = NULL;
eda61d32 343
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344 doi_def = cipso_v4_doi_getdef(doi);
345 if (doi_def == NULL)
346 return -ENOENT;
b1edeb10 347
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348 entry = kzalloc(sizeof(*entry), GFP_ATOMIC);
349 if (entry == NULL)
94a80d63 350 goto out_entry;
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351 if (domain != NULL) {
352 entry->domain = kstrdup(domain, GFP_ATOMIC);
353 if (entry->domain == NULL)
94a80d63 354 goto out_domain;
eda61d32 355 }
eda61d32 356
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357 if (addr == NULL && mask == NULL) {
358 entry->type_def.cipsov4 = doi_def;
359 entry->type = NETLBL_NLTYPE_CIPSOV4;
360 } else if (addr != NULL && mask != NULL) {
361 addrmap = kzalloc(sizeof(*addrmap), GFP_ATOMIC);
362 if (addrmap == NULL)
94a80d63 363 goto out_addrmap;
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364 INIT_LIST_HEAD(&addrmap->list4);
365 INIT_LIST_HEAD(&addrmap->list6);
366
367 addrinfo = kzalloc(sizeof(*addrinfo), GFP_ATOMIC);
368 if (addrinfo == NULL)
94a80d63 369 goto out_addrinfo;
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370 addrinfo->type_def.cipsov4 = doi_def;
371 addrinfo->type = NETLBL_NLTYPE_CIPSOV4;
372 addrinfo->list.addr = addr->s_addr & mask->s_addr;
373 addrinfo->list.mask = mask->s_addr;
374 addrinfo->list.valid = 1;
375 ret_val = netlbl_af4list_add(&addrinfo->list, &addrmap->list4);
376 if (ret_val != 0)
377 goto cfg_cipsov4_map_add_failure;
378
379 entry->type_def.addrsel = addrmap;
380 entry->type = NETLBL_NLTYPE_ADDRSELECT;
381 } else {
382 ret_val = -EINVAL;
94a80d63 383 goto out_addrmap;
b1edeb10 384 }
6c2e8ac0 385
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386 ret_val = netlbl_domhsh_add(entry, audit_info);
387 if (ret_val != 0)
6c2e8ac0 388 goto cfg_cipsov4_map_add_failure;
b1edeb10 389
6c2e8ac0 390 return 0;
b1edeb10 391
6c2e8ac0 392cfg_cipsov4_map_add_failure:
94a80d63
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393 kfree(addrinfo);
394out_addrinfo:
395 kfree(addrmap);
396out_addrmap:
47943234 397 kfree(entry->domain);
94a80d63 398out_domain:
eda61d32 399 kfree(entry);
94a80d63
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400out_entry:
401 cipso_v4_doi_putdef(doi_def);
6c2e8ac0 402 return ret_val;
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403}
404
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405/*
406 * Security Attribute Functions
407 */
408
409/**
410 * netlbl_secattr_catmap_walk - Walk a LSM secattr catmap looking for a bit
411 * @catmap: the category bitmap
412 * @offset: the offset to start searching at, in bits
413 *
414 * Description:
415 * This function walks a LSM secattr category bitmap starting at @offset and
416 * returns the spot of the first set bit or -ENOENT if no bits are set.
417 *
418 */
419int netlbl_secattr_catmap_walk(struct netlbl_lsm_secattr_catmap *catmap,
420 u32 offset)
421{
422 struct netlbl_lsm_secattr_catmap *iter = catmap;
423 u32 node_idx;
424 u32 node_bit;
425 NETLBL_CATMAP_MAPTYPE bitmap;
426
427 if (offset > iter->startbit) {
428 while (offset >= (iter->startbit + NETLBL_CATMAP_SIZE)) {
429 iter = iter->next;
430 if (iter == NULL)
431 return -ENOENT;
432 }
433 node_idx = (offset - iter->startbit) / NETLBL_CATMAP_MAPSIZE;
434 node_bit = offset - iter->startbit -
435 (NETLBL_CATMAP_MAPSIZE * node_idx);
436 } else {
437 node_idx = 0;
438 node_bit = 0;
439 }
440 bitmap = iter->bitmap[node_idx] >> node_bit;
441
442 for (;;) {
443 if (bitmap != 0) {
444 while ((bitmap & NETLBL_CATMAP_BIT) == 0) {
445 bitmap >>= 1;
446 node_bit++;
447 }
448 return iter->startbit +
449 (NETLBL_CATMAP_MAPSIZE * node_idx) + node_bit;
450 }
451 if (++node_idx >= NETLBL_CATMAP_MAPCNT) {
452 if (iter->next != NULL) {
453 iter = iter->next;
454 node_idx = 0;
455 } else
456 return -ENOENT;
457 }
458 bitmap = iter->bitmap[node_idx];
459 node_bit = 0;
460 }
461
462 return -ENOENT;
463}
464
465/**
466 * netlbl_secattr_catmap_walk_rng - Find the end of a string of set bits
467 * @catmap: the category bitmap
468 * @offset: the offset to start searching at, in bits
469 *
470 * Description:
471 * This function walks a LSM secattr category bitmap starting at @offset and
472 * returns the spot of the first cleared bit or -ENOENT if the offset is past
473 * the end of the bitmap.
474 *
475 */
476int netlbl_secattr_catmap_walk_rng(struct netlbl_lsm_secattr_catmap *catmap,
477 u32 offset)
478{
479 struct netlbl_lsm_secattr_catmap *iter = catmap;
480 u32 node_idx;
481 u32 node_bit;
482 NETLBL_CATMAP_MAPTYPE bitmask;
483 NETLBL_CATMAP_MAPTYPE bitmap;
484
485 if (offset > iter->startbit) {
486 while (offset >= (iter->startbit + NETLBL_CATMAP_SIZE)) {
487 iter = iter->next;
488 if (iter == NULL)
489 return -ENOENT;
490 }
491 node_idx = (offset - iter->startbit) / NETLBL_CATMAP_MAPSIZE;
492 node_bit = offset - iter->startbit -
493 (NETLBL_CATMAP_MAPSIZE * node_idx);
494 } else {
495 node_idx = 0;
496 node_bit = 0;
497 }
498 bitmask = NETLBL_CATMAP_BIT << node_bit;
499
500 for (;;) {
501 bitmap = iter->bitmap[node_idx];
502 while (bitmask != 0 && (bitmap & bitmask) != 0) {
503 bitmask <<= 1;
504 node_bit++;
505 }
506
507 if (bitmask != 0)
508 return iter->startbit +
509 (NETLBL_CATMAP_MAPSIZE * node_idx) +
510 node_bit - 1;
511 else if (++node_idx >= NETLBL_CATMAP_MAPCNT) {
512 if (iter->next == NULL)
513 return iter->startbit + NETLBL_CATMAP_SIZE - 1;
514 iter = iter->next;
515 node_idx = 0;
516 }
517 bitmask = NETLBL_CATMAP_BIT;
518 node_bit = 0;
519 }
520
521 return -ENOENT;
522}
523
524/**
525 * netlbl_secattr_catmap_setbit - Set a bit in a LSM secattr catmap
526 * @catmap: the category bitmap
527 * @bit: the bit to set
528 * @flags: memory allocation flags
529 *
530 * Description:
531 * Set the bit specified by @bit in @catmap. Returns zero on success,
532 * negative values on failure.
533 *
534 */
535int netlbl_secattr_catmap_setbit(struct netlbl_lsm_secattr_catmap *catmap,
536 u32 bit,
537 gfp_t flags)
538{
539 struct netlbl_lsm_secattr_catmap *iter = catmap;
540 u32 node_bit;
541 u32 node_idx;
542
543 while (iter->next != NULL &&
544 bit >= (iter->startbit + NETLBL_CATMAP_SIZE))
545 iter = iter->next;
546 if (bit >= (iter->startbit + NETLBL_CATMAP_SIZE)) {
547 iter->next = netlbl_secattr_catmap_alloc(flags);
548 if (iter->next == NULL)
549 return -ENOMEM;
550 iter = iter->next;
551 iter->startbit = bit & ~(NETLBL_CATMAP_SIZE - 1);
552 }
553
554 /* gcc always rounds to zero when doing integer division */
555 node_idx = (bit - iter->startbit) / NETLBL_CATMAP_MAPSIZE;
556 node_bit = bit - iter->startbit - (NETLBL_CATMAP_MAPSIZE * node_idx);
557 iter->bitmap[node_idx] |= NETLBL_CATMAP_BIT << node_bit;
558
559 return 0;
560}
561
562/**
563 * netlbl_secattr_catmap_setrng - Set a range of bits in a LSM secattr catmap
564 * @catmap: the category bitmap
565 * @start: the starting bit
566 * @end: the last bit in the string
567 * @flags: memory allocation flags
568 *
569 * Description:
570 * Set a range of bits, starting at @start and ending with @end. Returns zero
571 * on success, negative values on failure.
572 *
573 */
574int netlbl_secattr_catmap_setrng(struct netlbl_lsm_secattr_catmap *catmap,
575 u32 start,
576 u32 end,
577 gfp_t flags)
578{
579 int ret_val = 0;
580 struct netlbl_lsm_secattr_catmap *iter = catmap;
581 u32 iter_max_spot;
582 u32 spot;
583
584 /* XXX - This could probably be made a bit faster by combining writes
585 * to the catmap instead of setting a single bit each time, but for
586 * right now skipping to the start of the range in the catmap should
587 * be a nice improvement over calling the individual setbit function
588 * repeatedly from a loop. */
589
590 while (iter->next != NULL &&
591 start >= (iter->startbit + NETLBL_CATMAP_SIZE))
592 iter = iter->next;
593 iter_max_spot = iter->startbit + NETLBL_CATMAP_SIZE;
594
595 for (spot = start; spot <= end && ret_val == 0; spot++) {
596 if (spot >= iter_max_spot && iter->next != NULL) {
597 iter = iter->next;
598 iter_max_spot = iter->startbit + NETLBL_CATMAP_SIZE;
599 }
64b5fad5 600 ret_val = netlbl_secattr_catmap_setbit(iter, spot, flags);
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601 }
602
603 return ret_val;
604}
605
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606/*
607 * LSM Functions
608 */
609
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610/**
611 * netlbl_enabled - Determine if the NetLabel subsystem is enabled
612 *
613 * Description:
614 * The LSM can use this function to determine if it should use NetLabel
615 * security attributes in it's enforcement mechanism. Currently, NetLabel is
616 * considered to be enabled when it's configuration contains a valid setup for
617 * at least one labeled protocol (i.e. NetLabel can understand incoming
618 * labeled packets of at least one type); otherwise NetLabel is considered to
619 * be disabled.
620 *
621 */
622int netlbl_enabled(void)
623{
624 /* At some point we probably want to expose this mechanism to the user
625 * as well so that admins can toggle NetLabel regardless of the
626 * configuration */
c783f1ce 627 return (atomic_read(&netlabel_mgmt_protocount) > 0);
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628}
629
d15c345f 630/**
389fb800 631 * netlbl_sock_setattr - Label a socket using the correct protocol
ba6ff9f2 632 * @sk: the socket to label
389fb800 633 * @family: protocol family
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634 * @secattr: the security attributes
635 *
636 * Description:
637 * Attach the correct label to the given socket using the security attributes
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638 * specified in @secattr. This function requires exclusive access to @sk,
639 * which means it either needs to be in the process of being created or locked.
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640 * Returns zero on success, -EDESTADDRREQ if the domain is configured to use
641 * network address selectors (can't blindly label the socket), and negative
642 * values on all other failures.
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643 *
644 */
ba6ff9f2 645int netlbl_sock_setattr(struct sock *sk,
389fb800 646 u16 family,
ba6ff9f2 647 const struct netlbl_lsm_secattr *secattr)
d15c345f 648{
389fb800 649 int ret_val;
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650 struct netlbl_dom_map *dom_entry;
651
652 rcu_read_lock();
653 dom_entry = netlbl_domhsh_getentry(secattr->domain);
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654 if (dom_entry == NULL) {
655 ret_val = -ENOENT;
d15c345f 656 goto socket_setattr_return;
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657 }
658 switch (family) {
659 case AF_INET:
660 switch (dom_entry->type) {
661 case NETLBL_NLTYPE_ADDRSELECT:
662 ret_val = -EDESTADDRREQ;
663 break;
664 case NETLBL_NLTYPE_CIPSOV4:
665 ret_val = cipso_v4_sock_setattr(sk,
666 dom_entry->type_def.cipsov4,
667 secattr);
668 break;
669 case NETLBL_NLTYPE_UNLABELED:
670 ret_val = 0;
671 break;
672 default:
673 ret_val = -ENOENT;
674 }
d15c345f 675 break;
dfd56b8b 676#if IS_ENABLED(CONFIG_IPV6)
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677 case AF_INET6:
678 /* since we don't support any IPv6 labeling protocols right
679 * now we can optimize everything away until we do */
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680 ret_val = 0;
681 break;
389fb800 682#endif /* IPv6 */
d15c345f 683 default:
389fb800 684 ret_val = -EPROTONOSUPPORT;
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685 }
686
687socket_setattr_return:
688 rcu_read_unlock();
689 return ret_val;
690}
691
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692/**
693 * netlbl_sock_delattr - Delete all the NetLabel labels on a socket
694 * @sk: the socket
695 *
696 * Description:
697 * Remove all the NetLabel labeling from @sk. The caller is responsible for
698 * ensuring that @sk is locked.
699 *
700 */
701void netlbl_sock_delattr(struct sock *sk)
702{
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703 switch (sk->sk_family) {
704 case AF_INET:
705 cipso_v4_sock_delattr(sk);
706 break;
707 }
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708}
709
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710/**
711 * netlbl_sock_getattr - Determine the security attributes of a sock
712 * @sk: the sock
713 * @secattr: the security attributes
714 *
715 * Description:
8cc44579 716 * Examines the given sock to see if any NetLabel style labeling has been
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717 * applied to the sock, if so it parses the socket label and returns the
718 * security attributes in @secattr. Returns zero on success, negative values
719 * on failure.
720 *
721 */
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722int netlbl_sock_getattr(struct sock *sk,
723 struct netlbl_lsm_secattr *secattr)
14a72f53 724{
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725 int ret_val;
726
727 switch (sk->sk_family) {
728 case AF_INET:
729 ret_val = cipso_v4_sock_getattr(sk, secattr);
730 break;
dfd56b8b 731#if IS_ENABLED(CONFIG_IPV6)
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732 case AF_INET6:
733 ret_val = -ENOMSG;
734 break;
735#endif /* IPv6 */
736 default:
737 ret_val = -EPROTONOSUPPORT;
738 }
739
740 return ret_val;
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741}
742
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743/**
744 * netlbl_conn_setattr - Label a connected socket using the correct protocol
745 * @sk: the socket to label
746 * @addr: the destination address
747 * @secattr: the security attributes
748 *
749 * Description:
750 * Attach the correct label to the given connected socket using the security
751 * attributes specified in @secattr. The caller is responsible for ensuring
752 * that @sk is locked. Returns zero on success, negative values on failure.
753 *
754 */
755int netlbl_conn_setattr(struct sock *sk,
756 struct sockaddr *addr,
757 const struct netlbl_lsm_secattr *secattr)
758{
759 int ret_val;
760 struct sockaddr_in *addr4;
761 struct netlbl_domaddr4_map *af4_entry;
762
763 rcu_read_lock();
764 switch (addr->sa_family) {
765 case AF_INET:
766 addr4 = (struct sockaddr_in *)addr;
767 af4_entry = netlbl_domhsh_getentry_af4(secattr->domain,
768 addr4->sin_addr.s_addr);
769 if (af4_entry == NULL) {
770 ret_val = -ENOENT;
771 goto conn_setattr_return;
772 }
773 switch (af4_entry->type) {
774 case NETLBL_NLTYPE_CIPSOV4:
775 ret_val = cipso_v4_sock_setattr(sk,
776 af4_entry->type_def.cipsov4,
777 secattr);
778 break;
779 case NETLBL_NLTYPE_UNLABELED:
780 /* just delete the protocols we support for right now
781 * but we could remove other protocols if needed */
782 cipso_v4_sock_delattr(sk);
783 ret_val = 0;
784 break;
785 default:
786 ret_val = -ENOENT;
787 }
788 break;
dfd56b8b 789#if IS_ENABLED(CONFIG_IPV6)
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790 case AF_INET6:
791 /* since we don't support any IPv6 labeling protocols right
792 * now we can optimize everything away until we do */
793 ret_val = 0;
794 break;
795#endif /* IPv6 */
796 default:
389fb800 797 ret_val = -EPROTONOSUPPORT;
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798 }
799
800conn_setattr_return:
801 rcu_read_unlock();
802 return ret_val;
803}
804
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805/**
806 * netlbl_req_setattr - Label a request socket using the correct protocol
807 * @req: the request socket to label
808 * @secattr: the security attributes
809 *
810 * Description:
811 * Attach the correct label to the given socket using the security attributes
812 * specified in @secattr. Returns zero on success, negative values on failure.
813 *
814 */
815int netlbl_req_setattr(struct request_sock *req,
816 const struct netlbl_lsm_secattr *secattr)
817{
818 int ret_val;
819 struct netlbl_dom_map *dom_entry;
820 struct netlbl_domaddr4_map *af4_entry;
821 u32 proto_type;
822 struct cipso_v4_doi *proto_cv4;
823
824 rcu_read_lock();
825 dom_entry = netlbl_domhsh_getentry(secattr->domain);
826 if (dom_entry == NULL) {
827 ret_val = -ENOENT;
828 goto req_setattr_return;
829 }
830 switch (req->rsk_ops->family) {
831 case AF_INET:
832 if (dom_entry->type == NETLBL_NLTYPE_ADDRSELECT) {
833 struct inet_request_sock *req_inet = inet_rsk(req);
834 af4_entry = netlbl_domhsh_getentry_af4(secattr->domain,
835 req_inet->rmt_addr);
836 if (af4_entry == NULL) {
837 ret_val = -ENOENT;
838 goto req_setattr_return;
839 }
840 proto_type = af4_entry->type;
841 proto_cv4 = af4_entry->type_def.cipsov4;
842 } else {
843 proto_type = dom_entry->type;
844 proto_cv4 = dom_entry->type_def.cipsov4;
845 }
846 switch (proto_type) {
847 case NETLBL_NLTYPE_CIPSOV4:
848 ret_val = cipso_v4_req_setattr(req, proto_cv4, secattr);
849 break;
850 case NETLBL_NLTYPE_UNLABELED:
851 /* just delete the protocols we support for right now
852 * but we could remove other protocols if needed */
853 cipso_v4_req_delattr(req);
854 ret_val = 0;
855 break;
856 default:
857 ret_val = -ENOENT;
858 }
859 break;
dfd56b8b 860#if IS_ENABLED(CONFIG_IPV6)
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861 case AF_INET6:
862 /* since we don't support any IPv6 labeling protocols right
863 * now we can optimize everything away until we do */
864 ret_val = 0;
865 break;
866#endif /* IPv6 */
867 default:
868 ret_val = -EPROTONOSUPPORT;
869 }
870
871req_setattr_return:
872 rcu_read_unlock();
873 return ret_val;
874}
875
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876/**
877* netlbl_req_delattr - Delete all the NetLabel labels on a socket
878* @req: the socket
879*
880* Description:
881* Remove all the NetLabel labeling from @req.
882*
883*/
884void netlbl_req_delattr(struct request_sock *req)
885{
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886 switch (req->rsk_ops->family) {
887 case AF_INET:
888 cipso_v4_req_delattr(req);
889 break;
890 }
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891}
892
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893/**
894 * netlbl_skbuff_setattr - Label a packet using the correct protocol
895 * @skb: the packet
896 * @family: protocol family
897 * @secattr: the security attributes
898 *
899 * Description:
900 * Attach the correct label to the given packet using the security attributes
901 * specified in @secattr. Returns zero on success, negative values on failure.
902 *
903 */
904int netlbl_skbuff_setattr(struct sk_buff *skb,
905 u16 family,
906 const struct netlbl_lsm_secattr *secattr)
907{
908 int ret_val;
909 struct iphdr *hdr4;
910 struct netlbl_domaddr4_map *af4_entry;
911
912 rcu_read_lock();
913 switch (family) {
914 case AF_INET:
915 hdr4 = ip_hdr(skb);
916 af4_entry = netlbl_domhsh_getentry_af4(secattr->domain,
917 hdr4->daddr);
918 if (af4_entry == NULL) {
919 ret_val = -ENOENT;
920 goto skbuff_setattr_return;
921 }
922 switch (af4_entry->type) {
923 case NETLBL_NLTYPE_CIPSOV4:
924 ret_val = cipso_v4_skbuff_setattr(skb,
925 af4_entry->type_def.cipsov4,
926 secattr);
927 break;
928 case NETLBL_NLTYPE_UNLABELED:
929 /* just delete the protocols we support for right now
930 * but we could remove other protocols if needed */
931 ret_val = cipso_v4_skbuff_delattr(skb);
932 break;
933 default:
934 ret_val = -ENOENT;
935 }
936 break;
dfd56b8b 937#if IS_ENABLED(CONFIG_IPV6)
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938 case AF_INET6:
939 /* since we don't support any IPv6 labeling protocols right
940 * now we can optimize everything away until we do */
941 ret_val = 0;
942 break;
943#endif /* IPv6 */
944 default:
389fb800 945 ret_val = -EPROTONOSUPPORT;
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946 }
947
948skbuff_setattr_return:
949 rcu_read_unlock();
950 return ret_val;
951}
952
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953/**
954 * netlbl_skbuff_getattr - Determine the security attributes of a packet
955 * @skb: the packet
75e22910 956 * @family: protocol family
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957 * @secattr: the security attributes
958 *
959 * Description:
960 * Examines the given packet to see if a recognized form of packet labeling
961 * is present, if so it parses the packet label and returns the security
962 * attributes in @secattr. Returns zero on success, negative values on
963 * failure.
964 *
965 */
966int netlbl_skbuff_getattr(const struct sk_buff *skb,
75e22910 967 u16 family,
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968 struct netlbl_lsm_secattr *secattr)
969{
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970 switch (family) {
971 case AF_INET:
972 if (CIPSO_V4_OPTEXIST(skb) &&
973 cipso_v4_skbuff_getattr(skb, secattr) == 0)
974 return 0;
975 break;
dfd56b8b 976#if IS_ENABLED(CONFIG_IPV6)
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977 case AF_INET6:
978 break;
979#endif /* IPv6 */
980 }
d15c345f 981
8cc44579 982 return netlbl_unlabel_getattr(skb, family, secattr);
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983}
984
985/**
986 * netlbl_skbuff_err - Handle a LSM error on a sk_buff
987 * @skb: the packet
988 * @error: the error code
dfaebe98 989 * @gateway: true if host is acting as a gateway, false otherwise
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990 *
991 * Description:
992 * Deal with a LSM problem when handling the packet in @skb, typically this is
993 * a permission denied problem (-EACCES). The correct action is determined
994 * according to the packet's labeling protocol.
995 *
996 */
dfaebe98 997void netlbl_skbuff_err(struct sk_buff *skb, int error, int gateway)
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998{
999 if (CIPSO_V4_OPTEXIST(skb))
dfaebe98 1000 cipso_v4_error(skb, error, gateway);
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1001}
1002
1003/**
1004 * netlbl_cache_invalidate - Invalidate all of the NetLabel protocol caches
1005 *
1006 * Description:
1007 * For all of the NetLabel protocols that support some form of label mapping
1008 * cache, invalidate the cache. Returns zero on success, negative values on
1009 * error.
1010 *
1011 */
1012void netlbl_cache_invalidate(void)
1013{
1014 cipso_v4_cache_invalidate();
1015}
1016
1017/**
1018 * netlbl_cache_add - Add an entry to a NetLabel protocol cache
1019 * @skb: the packet
1020 * @secattr: the packet's security attributes
1021 *
1022 * Description:
1023 * Add the LSM security attributes for the given packet to the underlying
1024 * NetLabel protocol's label mapping cache. Returns zero on success, negative
1025 * values on error.
1026 *
1027 */
1028int netlbl_cache_add(const struct sk_buff *skb,
1029 const struct netlbl_lsm_secattr *secattr)
1030{
701a90ba 1031 if ((secattr->flags & NETLBL_SECATTR_CACHE) == 0)
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1032 return -ENOMSG;
1033
1034 if (CIPSO_V4_OPTEXIST(skb))
1035 return cipso_v4_cache_add(skb, secattr);
1036
1037 return -ENOMSG;
1038}
1039
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1040/*
1041 * Protocol Engine Functions
1042 */
1043
1044/**
1045 * netlbl_audit_start - Start an audit message
1046 * @type: audit message type
1047 * @audit_info: NetLabel audit information
1048 *
1049 * Description:
1050 * Start an audit message using the type specified in @type and fill the audit
1051 * message with some fields common to all NetLabel audit messages. This
1052 * function should only be used by protocol engines, not LSMs. Returns a
1053 * pointer to the audit buffer on success, NULL on failure.
1054 *
1055 */
1056struct audit_buffer *netlbl_audit_start(int type,
1057 struct netlbl_audit *audit_info)
1058{
1059 return netlbl_audit_start_common(type, audit_info);
1060}
1061
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1062/*
1063 * Setup Functions
1064 */
1065
1066/**
1067 * netlbl_init - Initialize NetLabel
1068 *
1069 * Description:
1070 * Perform the required NetLabel initialization before first use.
1071 *
1072 */
1073static int __init netlbl_init(void)
1074{
1075 int ret_val;
1076
1077 printk(KERN_INFO "NetLabel: Initializing\n");
1078 printk(KERN_INFO "NetLabel: domain hash size = %u\n",
1079 (1 << NETLBL_DOMHSH_BITSIZE));
1080 printk(KERN_INFO "NetLabel: protocols ="
1081 " UNLABELED"
1082 " CIPSOv4"
1083 "\n");
1084
1085 ret_val = netlbl_domhsh_init(NETLBL_DOMHSH_BITSIZE);
1086 if (ret_val != 0)
1087 goto init_failure;
1088
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1089 ret_val = netlbl_unlabel_init(NETLBL_UNLHSH_BITSIZE);
1090 if (ret_val != 0)
1091 goto init_failure;
1092
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1093 ret_val = netlbl_netlink_init();
1094 if (ret_val != 0)
1095 goto init_failure;
1096
1097 ret_val = netlbl_unlabel_defconf();
1098 if (ret_val != 0)
1099 goto init_failure;
1100 printk(KERN_INFO "NetLabel: unlabeled traffic allowed by default\n");
1101
1102 return 0;
1103
1104init_failure:
1105 panic("NetLabel: failed to initialize properly (%d)\n", ret_val);
1106}
1107
1108subsys_initcall(netlbl_init);