netlabel: fix the horribly broken catmap functions
[linux-2.6-block.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
d484ff15 26 * along with this program; if not, see <http://www.gnu.org/licenses/>.
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27 *
28 */
29
30#include <linux/init.h>
31#include <linux/types.h>
5a0e3ad6 32#include <linux/slab.h>
eda61d32 33#include <linux/audit.h>
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34#include <linux/in.h>
35#include <linux/in6.h>
d15c345f 36#include <net/ip.h>
6c2e8ac0 37#include <net/ipv6.h>
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38#include <net/netlabel.h>
39#include <net/cipso_ipv4.h>
40#include <asm/bug.h>
60063497 41#include <linux/atomic.h>
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42
43#include "netlabel_domainhash.h"
44#include "netlabel_unlabeled.h"
eda61d32 45#include "netlabel_cipso_v4.h"
d15c345f 46#include "netlabel_user.h"
23bcdc1a 47#include "netlabel_mgmt.h"
6c2e8ac0 48#include "netlabel_addrlist.h"
d15c345f 49
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50/*
51 * Configuration Functions
52 */
53
54/**
55 * netlbl_cfg_map_del - Remove a NetLabel/LSM domain mapping
56 * @domain: the domain mapping to remove
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57 * @family: address family
58 * @addr: IP address
59 * @mask: IP address mask
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60 * @audit_info: NetLabel audit information
61 *
62 * Description:
63 * Removes a NetLabel/LSM domain mapping. A @domain value of NULL causes the
64 * default domain mapping to be removed. Returns zero on success, negative
65 * values on failure.
66 *
67 */
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68int netlbl_cfg_map_del(const char *domain,
69 u16 family,
70 const void *addr,
71 const void *mask,
72 struct netlbl_audit *audit_info)
eda61d32 73{
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74 if (addr == NULL && mask == NULL) {
75 return netlbl_domhsh_remove(domain, audit_info);
76 } else if (addr != NULL && mask != NULL) {
77 switch (family) {
78 case AF_INET:
79 return netlbl_domhsh_remove_af4(domain, addr, mask,
80 audit_info);
81 default:
82 return -EPFNOSUPPORT;
83 }
84 } else
85 return -EINVAL;
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86}
87
88/**
6c2e8ac0 89 * netlbl_cfg_unlbl_map_add - Add a new unlabeled mapping
eda61d32 90 * @domain: the domain mapping to add
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91 * @family: address family
92 * @addr: IP address
93 * @mask: IP address mask
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94 * @audit_info: NetLabel audit information
95 *
96 * Description:
97 * Adds a new unlabeled NetLabel/LSM domain mapping. A @domain value of NULL
98 * causes a new default domain mapping to be added. Returns zero on success,
99 * negative values on failure.
100 *
101 */
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102int netlbl_cfg_unlbl_map_add(const char *domain,
103 u16 family,
104 const void *addr,
105 const void *mask,
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106 struct netlbl_audit *audit_info)
107{
108 int ret_val = -ENOMEM;
109 struct netlbl_dom_map *entry;
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110 struct netlbl_domaddr_map *addrmap = NULL;
111 struct netlbl_domaddr4_map *map4 = NULL;
112 struct netlbl_domaddr6_map *map6 = NULL;
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113
114 entry = kzalloc(sizeof(*entry), GFP_ATOMIC);
115 if (entry == NULL)
948a7243 116 return -ENOMEM;
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117 if (domain != NULL) {
118 entry->domain = kstrdup(domain, GFP_ATOMIC);
119 if (entry->domain == NULL)
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120 goto cfg_unlbl_map_add_failure;
121 }
122
123 if (addr == NULL && mask == NULL)
6a8b7f0c 124 entry->def.type = NETLBL_NLTYPE_UNLABELED;
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125 else if (addr != NULL && mask != NULL) {
126 addrmap = kzalloc(sizeof(*addrmap), GFP_ATOMIC);
127 if (addrmap == NULL)
128 goto cfg_unlbl_map_add_failure;
129 INIT_LIST_HEAD(&addrmap->list4);
130 INIT_LIST_HEAD(&addrmap->list6);
131
132 switch (family) {
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133 case AF_INET: {
134 const struct in_addr *addr4 = addr;
135 const struct in_addr *mask4 = mask;
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136 map4 = kzalloc(sizeof(*map4), GFP_ATOMIC);
137 if (map4 == NULL)
138 goto cfg_unlbl_map_add_failure;
6a8b7f0c 139 map4->def.type = NETLBL_NLTYPE_UNLABELED;
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140 map4->list.addr = addr4->s_addr & mask4->s_addr;
141 map4->list.mask = mask4->s_addr;
142 map4->list.valid = 1;
143 ret_val = netlbl_af4list_add(&map4->list,
144 &addrmap->list4);
145 if (ret_val != 0)
146 goto cfg_unlbl_map_add_failure;
147 break;
1281bc25 148 }
dfd56b8b 149#if IS_ENABLED(CONFIG_IPV6)
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150 case AF_INET6: {
151 const struct in6_addr *addr6 = addr;
152 const struct in6_addr *mask6 = mask;
6c2e8ac0 153 map6 = kzalloc(sizeof(*map6), GFP_ATOMIC);
ca7daea6 154 if (map6 == NULL)
6c2e8ac0 155 goto cfg_unlbl_map_add_failure;
6a8b7f0c 156 map6->def.type = NETLBL_NLTYPE_UNLABELED;
4e3fd7a0 157 map6->list.addr = *addr6;
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158 map6->list.addr.s6_addr32[0] &= mask6->s6_addr32[0];
159 map6->list.addr.s6_addr32[1] &= mask6->s6_addr32[1];
160 map6->list.addr.s6_addr32[2] &= mask6->s6_addr32[2];
161 map6->list.addr.s6_addr32[3] &= mask6->s6_addr32[3];
4e3fd7a0 162 map6->list.mask = *mask6;
6c2e8ac0 163 map6->list.valid = 1;
42ca0203
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164 ret_val = netlbl_af6list_add(&map6->list,
165 &addrmap->list6);
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166 if (ret_val != 0)
167 goto cfg_unlbl_map_add_failure;
168 break;
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169 }
170#endif /* IPv6 */
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171 default:
172 goto cfg_unlbl_map_add_failure;
173 break;
174 }
175
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176 entry->def.addrsel = addrmap;
177 entry->def.type = NETLBL_NLTYPE_ADDRSELECT;
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178 } else {
179 ret_val = -EINVAL;
180 goto cfg_unlbl_map_add_failure;
eda61d32 181 }
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182
183 ret_val = netlbl_domhsh_add(entry, audit_info);
184 if (ret_val != 0)
6c2e8ac0 185 goto cfg_unlbl_map_add_failure;
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186
187 return 0;
188
6c2e8ac0 189cfg_unlbl_map_add_failure:
47943234 190 kfree(entry->domain);
eda61d32 191 kfree(entry);
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192 kfree(addrmap);
193 kfree(map4);
194 kfree(map6);
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195 return ret_val;
196}
197
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198
199/**
200 * netlbl_cfg_unlbl_static_add - Adds a new static label
201 * @net: network namespace
202 * @dev_name: interface name
203 * @addr: IP address in network byte order (struct in[6]_addr)
204 * @mask: address mask in network byte order (struct in[6]_addr)
205 * @family: address family
206 * @secid: LSM secid value for the entry
207 * @audit_info: NetLabel audit information
208 *
209 * Description:
210 * Adds a new NetLabel static label to be used when protocol provided labels
211 * are not present on incoming traffic. If @dev_name is NULL then the default
212 * interface will be used. Returns zero on success, negative values on failure.
213 *
214 */
215int netlbl_cfg_unlbl_static_add(struct net *net,
216 const char *dev_name,
217 const void *addr,
218 const void *mask,
219 u16 family,
220 u32 secid,
221 struct netlbl_audit *audit_info)
222{
223 u32 addr_len;
224
225 switch (family) {
226 case AF_INET:
227 addr_len = sizeof(struct in_addr);
228 break;
dfd56b8b 229#if IS_ENABLED(CONFIG_IPV6)
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230 case AF_INET6:
231 addr_len = sizeof(struct in6_addr);
232 break;
1281bc25 233#endif /* IPv6 */
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234 default:
235 return -EPFNOSUPPORT;
236 }
237
238 return netlbl_unlhsh_add(net,
239 dev_name, addr, mask, addr_len,
240 secid, audit_info);
241}
242
243/**
244 * netlbl_cfg_unlbl_static_del - Removes an existing static label
245 * @net: network namespace
246 * @dev_name: interface name
247 * @addr: IP address in network byte order (struct in[6]_addr)
248 * @mask: address mask in network byte order (struct in[6]_addr)
249 * @family: address family
250 * @secid: LSM secid value for the entry
251 * @audit_info: NetLabel audit information
252 *
253 * Description:
254 * Removes an existing NetLabel static label used when protocol provided labels
255 * are not present on incoming traffic. If @dev_name is NULL then the default
256 * interface will be used. Returns zero on success, negative values on failure.
257 *
258 */
259int netlbl_cfg_unlbl_static_del(struct net *net,
260 const char *dev_name,
261 const void *addr,
262 const void *mask,
263 u16 family,
264 struct netlbl_audit *audit_info)
265{
266 u32 addr_len;
267
268 switch (family) {
269 case AF_INET:
270 addr_len = sizeof(struct in_addr);
271 break;
dfd56b8b 272#if IS_ENABLED(CONFIG_IPV6)
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273 case AF_INET6:
274 addr_len = sizeof(struct in6_addr);
275 break;
1281bc25 276#endif /* IPv6 */
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277 default:
278 return -EPFNOSUPPORT;
279 }
280
281 return netlbl_unlhsh_remove(net,
282 dev_name, addr, mask, addr_len,
283 audit_info);
284}
285
286/**
287 * netlbl_cfg_cipsov4_add - Add a new CIPSOv4 DOI definition
288 * @doi_def: CIPSO DOI definition
289 * @audit_info: NetLabel audit information
290 *
291 * Description:
292 * Add a new CIPSO DOI definition as defined by @doi_def. Returns zero on
293 * success and negative values on failure.
294 *
295 */
296int netlbl_cfg_cipsov4_add(struct cipso_v4_doi *doi_def,
297 struct netlbl_audit *audit_info)
298{
299 return cipso_v4_doi_add(doi_def, audit_info);
300}
301
302/**
303 * netlbl_cfg_cipsov4_del - Remove an existing CIPSOv4 DOI definition
304 * @doi: CIPSO DOI
305 * @audit_info: NetLabel audit information
306 *
307 * Description:
308 * Remove an existing CIPSO DOI definition matching @doi. Returns zero on
309 * success and negative values on failure.
310 *
311 */
312void netlbl_cfg_cipsov4_del(u32 doi, struct netlbl_audit *audit_info)
313{
314 cipso_v4_doi_remove(doi, audit_info);
315}
316
eda61d32 317/**
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318 * netlbl_cfg_cipsov4_map_add - Add a new CIPSOv4 DOI mapping
319 * @doi: the CIPSO DOI
eda61d32 320 * @domain: the domain mapping to add
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321 * @addr: IP address
322 * @mask: IP address mask
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323 * @audit_info: NetLabel audit information
324 *
325 * Description:
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326 * Add a new NetLabel/LSM domain mapping for the given CIPSO DOI to the NetLabel
327 * subsystem. A @domain value of NULL adds a new default domain mapping.
328 * Returns zero on success, negative values on failure.
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329 *
330 */
6c2e8ac0 331int netlbl_cfg_cipsov4_map_add(u32 doi,
eda61d32 332 const char *domain,
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333 const struct in_addr *addr,
334 const struct in_addr *mask,
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335 struct netlbl_audit *audit_info)
336{
337 int ret_val = -ENOMEM;
6c2e8ac0 338 struct cipso_v4_doi *doi_def;
eda61d32 339 struct netlbl_dom_map *entry;
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340 struct netlbl_domaddr_map *addrmap = NULL;
341 struct netlbl_domaddr4_map *addrinfo = NULL;
eda61d32 342
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343 doi_def = cipso_v4_doi_getdef(doi);
344 if (doi_def == NULL)
345 return -ENOENT;
b1edeb10 346
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347 entry = kzalloc(sizeof(*entry), GFP_ATOMIC);
348 if (entry == NULL)
94a80d63 349 goto out_entry;
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350 if (domain != NULL) {
351 entry->domain = kstrdup(domain, GFP_ATOMIC);
352 if (entry->domain == NULL)
94a80d63 353 goto out_domain;
eda61d32 354 }
eda61d32 355
6c2e8ac0 356 if (addr == NULL && mask == NULL) {
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357 entry->def.cipso = doi_def;
358 entry->def.type = NETLBL_NLTYPE_CIPSOV4;
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359 } else if (addr != NULL && mask != NULL) {
360 addrmap = kzalloc(sizeof(*addrmap), GFP_ATOMIC);
361 if (addrmap == NULL)
94a80d63 362 goto out_addrmap;
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363 INIT_LIST_HEAD(&addrmap->list4);
364 INIT_LIST_HEAD(&addrmap->list6);
365
366 addrinfo = kzalloc(sizeof(*addrinfo), GFP_ATOMIC);
367 if (addrinfo == NULL)
94a80d63 368 goto out_addrinfo;
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369 addrinfo->def.cipso = doi_def;
370 addrinfo->def.type = NETLBL_NLTYPE_CIPSOV4;
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371 addrinfo->list.addr = addr->s_addr & mask->s_addr;
372 addrinfo->list.mask = mask->s_addr;
373 addrinfo->list.valid = 1;
374 ret_val = netlbl_af4list_add(&addrinfo->list, &addrmap->list4);
375 if (ret_val != 0)
376 goto cfg_cipsov4_map_add_failure;
377
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378 entry->def.addrsel = addrmap;
379 entry->def.type = NETLBL_NLTYPE_ADDRSELECT;
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380 } else {
381 ret_val = -EINVAL;
94a80d63 382 goto out_addrmap;
b1edeb10 383 }
6c2e8ac0 384
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385 ret_val = netlbl_domhsh_add(entry, audit_info);
386 if (ret_val != 0)
6c2e8ac0 387 goto cfg_cipsov4_map_add_failure;
b1edeb10 388
6c2e8ac0 389 return 0;
b1edeb10 390
6c2e8ac0 391cfg_cipsov4_map_add_failure:
94a80d63
JL
392 kfree(addrinfo);
393out_addrinfo:
394 kfree(addrmap);
395out_addrmap:
47943234 396 kfree(entry->domain);
94a80d63 397out_domain:
eda61d32 398 kfree(entry);
94a80d63
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399out_entry:
400 cipso_v4_doi_putdef(doi_def);
6c2e8ac0 401 return ret_val;
eda61d32
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402}
403
02752760
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404/*
405 * Security Attribute Functions
406 */
407
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408#define _CM_F_NONE 0x00000000
409#define _CM_F_ALLOC 0x00000001
410
411/**
412 * _netlbl_secattr_catmap_getnode - Get a individual node from a catmap
413 * @catmap: pointer to the category bitmap
414 * @offset: the requested offset
415 * @cm_flags: catmap flags, see _CM_F_*
416 * @gfp_flags: memory allocation flags
417 *
418 * Description:
419 * Iterate through the catmap looking for the node associated with @offset; if
420 * the _CM_F_ALLOC flag is set in @cm_flags and there is no associated node,
421 * one will be created and inserted into the catmap. Returns a pointer to the
422 * node on success, NULL on failure.
423 *
424 */
425static struct netlbl_lsm_secattr_catmap *_netlbl_secattr_catmap_getnode(
426 struct netlbl_lsm_secattr_catmap **catmap,
427 u32 offset,
428 unsigned int cm_flags,
429 gfp_t gfp_flags)
430{
431 struct netlbl_lsm_secattr_catmap *iter = *catmap;
432 struct netlbl_lsm_secattr_catmap *prev = NULL;
433
434 if (iter == NULL || offset < iter->startbit)
435 goto secattr_catmap_getnode_alloc;
436 while (iter && offset >= (iter->startbit + NETLBL_CATMAP_SIZE)) {
437 prev = iter;
438 iter = iter->next;
439 }
440 if (iter == NULL || offset < iter->startbit)
441 goto secattr_catmap_getnode_alloc;
442
443 return iter;
444
445secattr_catmap_getnode_alloc:
446 if (!(cm_flags & _CM_F_ALLOC))
447 return NULL;
448
449 iter = netlbl_secattr_catmap_alloc(gfp_flags);
450 if (iter == NULL)
451 return NULL;
452 iter->startbit = offset & ~(NETLBL_CATMAP_SIZE - 1);
453
454 if (prev == NULL) {
455 iter->next = *catmap;
456 *catmap = iter;
457 } else {
458 iter->next = prev->next;
459 prev->next = iter;
460 }
461
462 return iter;
463}
464
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465/**
466 * netlbl_secattr_catmap_walk - Walk a LSM secattr catmap looking for a bit
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 set bit or -ENOENT if no bits are set.
473 *
474 */
475int netlbl_secattr_catmap_walk(struct netlbl_lsm_secattr_catmap *catmap,
476 u32 offset)
477{
478 struct netlbl_lsm_secattr_catmap *iter = catmap;
479 u32 node_idx;
480 u32 node_bit;
481 NETLBL_CATMAP_MAPTYPE bitmap;
482
483 if (offset > iter->startbit) {
484 while (offset >= (iter->startbit + NETLBL_CATMAP_SIZE)) {
485 iter = iter->next;
486 if (iter == NULL)
487 return -ENOENT;
488 }
489 node_idx = (offset - iter->startbit) / NETLBL_CATMAP_MAPSIZE;
490 node_bit = offset - iter->startbit -
491 (NETLBL_CATMAP_MAPSIZE * node_idx);
492 } else {
493 node_idx = 0;
494 node_bit = 0;
495 }
496 bitmap = iter->bitmap[node_idx] >> node_bit;
497
498 for (;;) {
499 if (bitmap != 0) {
500 while ((bitmap & NETLBL_CATMAP_BIT) == 0) {
501 bitmap >>= 1;
502 node_bit++;
503 }
504 return iter->startbit +
505 (NETLBL_CATMAP_MAPSIZE * node_idx) + node_bit;
506 }
507 if (++node_idx >= NETLBL_CATMAP_MAPCNT) {
508 if (iter->next != NULL) {
509 iter = iter->next;
510 node_idx = 0;
511 } else
512 return -ENOENT;
513 }
514 bitmap = iter->bitmap[node_idx];
515 node_bit = 0;
516 }
517
518 return -ENOENT;
519}
520
521/**
522 * netlbl_secattr_catmap_walk_rng - Find the end of a string of set bits
523 * @catmap: the category bitmap
524 * @offset: the offset to start searching at, in bits
525 *
526 * Description:
527 * This function walks a LSM secattr category bitmap starting at @offset and
528 * returns the spot of the first cleared bit or -ENOENT if the offset is past
529 * the end of the bitmap.
530 *
531 */
532int netlbl_secattr_catmap_walk_rng(struct netlbl_lsm_secattr_catmap *catmap,
533 u32 offset)
534{
535 struct netlbl_lsm_secattr_catmap *iter = catmap;
536 u32 node_idx;
537 u32 node_bit;
538 NETLBL_CATMAP_MAPTYPE bitmask;
539 NETLBL_CATMAP_MAPTYPE bitmap;
540
541 if (offset > iter->startbit) {
542 while (offset >= (iter->startbit + NETLBL_CATMAP_SIZE)) {
543 iter = iter->next;
544 if (iter == NULL)
545 return -ENOENT;
546 }
547 node_idx = (offset - iter->startbit) / NETLBL_CATMAP_MAPSIZE;
548 node_bit = offset - iter->startbit -
549 (NETLBL_CATMAP_MAPSIZE * node_idx);
550 } else {
551 node_idx = 0;
552 node_bit = 0;
553 }
554 bitmask = NETLBL_CATMAP_BIT << node_bit;
555
556 for (;;) {
557 bitmap = iter->bitmap[node_idx];
558 while (bitmask != 0 && (bitmap & bitmask) != 0) {
559 bitmask <<= 1;
560 node_bit++;
561 }
562
563 if (bitmask != 0)
564 return iter->startbit +
565 (NETLBL_CATMAP_MAPSIZE * node_idx) +
566 node_bit - 1;
567 else if (++node_idx >= NETLBL_CATMAP_MAPCNT) {
568 if (iter->next == NULL)
569 return iter->startbit + NETLBL_CATMAP_SIZE - 1;
570 iter = iter->next;
571 node_idx = 0;
572 }
573 bitmask = NETLBL_CATMAP_BIT;
574 node_bit = 0;
575 }
576
577 return -ENOENT;
578}
579
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580/**
581 * netlbl_secattr_catmap_getlong - Export an unsigned long bitmap
582 * @catmap: pointer to the category bitmap
583 * @offset: pointer to the requested offset
584 * @bitmap: the exported bitmap
585 *
586 * Description:
587 * Export a bitmap with an offset greater than or equal to @offset and return
588 * it in @bitmap. The @offset must be aligned to an unsigned long and will be
589 * updated on return if different from what was requested; if the catmap is
590 * empty at the requested offset and beyond, the @offset is set to (u32)-1.
591 * Returns zero on sucess, negative values on failure.
592 *
593 */
594int netlbl_secattr_catmap_getlong(struct netlbl_lsm_secattr_catmap *catmap,
595 u32 *offset,
596 unsigned long *bitmap)
597{
598 struct netlbl_lsm_secattr_catmap *iter;
599 u32 off = *offset;
600 u32 idx;
601
602 /* only allow aligned offsets */
603 if ((off & (BITS_PER_LONG - 1)) != 0)
604 return -EINVAL;
605
606 if (off < catmap->startbit) {
607 off = catmap->startbit;
608 *offset = off;
609 }
610 iter = _netlbl_secattr_catmap_getnode(&catmap, off, _CM_F_NONE, 0);
611 if (iter == NULL) {
612 *offset = (u32)-1;
613 return 0;
614 }
615
616 if (off < iter->startbit) {
617 off = iter->startbit;
618 *offset = off;
619 } else
620 off -= iter->startbit;
621
622 idx = off / NETLBL_CATMAP_MAPSIZE;
623 *bitmap = iter->bitmap[idx] >> (off % NETLBL_CATMAP_SIZE);
624
625 return 0;
626}
627
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628/**
629 * netlbl_secattr_catmap_setbit - Set a bit in a LSM secattr catmap
41c3bd20 630 * @catmap: pointer to the category bitmap
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631 * @bit: the bit to set
632 * @flags: memory allocation flags
633 *
634 * Description:
635 * Set the bit specified by @bit in @catmap. Returns zero on success,
636 * negative values on failure.
637 *
638 */
41c3bd20 639int netlbl_secattr_catmap_setbit(struct netlbl_lsm_secattr_catmap **catmap,
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640 u32 bit,
641 gfp_t flags)
642{
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643 struct netlbl_lsm_secattr_catmap *iter;
644 u32 idx;
02752760 645
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646 iter = _netlbl_secattr_catmap_getnode(catmap, bit, _CM_F_ALLOC, flags);
647 if (iter == NULL)
648 return -ENOMEM;
02752760 649
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650 bit -= iter->startbit;
651 idx = bit / NETLBL_CATMAP_MAPSIZE;
652 iter->bitmap[idx] |= NETLBL_CATMAP_BIT << (bit % NETLBL_CATMAP_MAPSIZE);
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653
654 return 0;
655}
656
657/**
658 * netlbl_secattr_catmap_setrng - Set a range of bits in a LSM secattr catmap
41c3bd20 659 * @catmap: pointer to the category bitmap
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660 * @start: the starting bit
661 * @end: the last bit in the string
662 * @flags: memory allocation flags
663 *
664 * Description:
665 * Set a range of bits, starting at @start and ending with @end. Returns zero
666 * on success, negative values on failure.
667 *
668 */
41c3bd20 669int netlbl_secattr_catmap_setrng(struct netlbl_lsm_secattr_catmap **catmap,
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670 u32 start,
671 u32 end,
672 gfp_t flags)
673{
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674 int rc = 0;
675 u32 spot = start;
676
677 while (rc == 0 && spot <= end) {
678 if (((spot & (BITS_PER_LONG - 1)) != 0) &&
679 ((end - spot) > BITS_PER_LONG)) {
680 rc = netlbl_secattr_catmap_setlong(catmap,
681 spot,
682 (unsigned long)-1,
683 flags);
684 spot += BITS_PER_LONG;
685 } else
686 rc = netlbl_secattr_catmap_setbit(catmap,
687 spot++,
688 flags);
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689 }
690
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691 return rc;
692}
693
694/**
695 * netlbl_secattr_catmap_setlong - Import an unsigned long bitmap
696 * @catmap: pointer to the category bitmap
697 * @offset: offset to the start of the imported bitmap
698 * @bitmap: the bitmap to import
699 * @flags: memory allocation flags
700 *
701 * Description:
702 * Import the bitmap specified in @bitmap into @catmap, using the offset
703 * in @offset. The offset must be aligned to an unsigned long. Returns zero
704 * on success, negative values on failure.
705 *
706 */
707int netlbl_secattr_catmap_setlong(struct netlbl_lsm_secattr_catmap **catmap,
708 u32 offset,
709 unsigned long bitmap,
710 gfp_t flags)
711{
712 struct netlbl_lsm_secattr_catmap *iter;
713 u32 idx;
714
715 /* only allow aligned offsets */
716 if ((offset & (BITS_PER_LONG - 1)) != 0)
717 return -EINVAL;
718
719 iter = _netlbl_secattr_catmap_getnode(catmap,
720 offset, _CM_F_ALLOC, flags);
721 if (iter == NULL)
722 return -ENOMEM;
723
724 offset -= iter->startbit;
725 idx = offset / NETLBL_CATMAP_MAPSIZE;
726 iter->bitmap[idx] |= bitmap << (offset % NETLBL_CATMAP_MAPSIZE);
727
728 return 0;
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729}
730
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731/*
732 * LSM Functions
733 */
734
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735/**
736 * netlbl_enabled - Determine if the NetLabel subsystem is enabled
737 *
738 * Description:
739 * The LSM can use this function to determine if it should use NetLabel
740 * security attributes in it's enforcement mechanism. Currently, NetLabel is
741 * considered to be enabled when it's configuration contains a valid setup for
742 * at least one labeled protocol (i.e. NetLabel can understand incoming
743 * labeled packets of at least one type); otherwise NetLabel is considered to
744 * be disabled.
745 *
746 */
747int netlbl_enabled(void)
748{
749 /* At some point we probably want to expose this mechanism to the user
750 * as well so that admins can toggle NetLabel regardless of the
751 * configuration */
c783f1ce 752 return (atomic_read(&netlabel_mgmt_protocount) > 0);
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753}
754
d15c345f 755/**
389fb800 756 * netlbl_sock_setattr - Label a socket using the correct protocol
ba6ff9f2 757 * @sk: the socket to label
389fb800 758 * @family: protocol family
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759 * @secattr: the security attributes
760 *
761 * Description:
762 * Attach the correct label to the given socket using the security attributes
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763 * specified in @secattr. This function requires exclusive access to @sk,
764 * which means it either needs to be in the process of being created or locked.
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765 * Returns zero on success, -EDESTADDRREQ if the domain is configured to use
766 * network address selectors (can't blindly label the socket), and negative
767 * values on all other failures.
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768 *
769 */
ba6ff9f2 770int netlbl_sock_setattr(struct sock *sk,
389fb800 771 u16 family,
ba6ff9f2 772 const struct netlbl_lsm_secattr *secattr)
d15c345f 773{
389fb800 774 int ret_val;
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775 struct netlbl_dom_map *dom_entry;
776
777 rcu_read_lock();
778 dom_entry = netlbl_domhsh_getentry(secattr->domain);
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779 if (dom_entry == NULL) {
780 ret_val = -ENOENT;
d15c345f 781 goto socket_setattr_return;
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782 }
783 switch (family) {
784 case AF_INET:
6a8b7f0c 785 switch (dom_entry->def.type) {
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786 case NETLBL_NLTYPE_ADDRSELECT:
787 ret_val = -EDESTADDRREQ;
788 break;
789 case NETLBL_NLTYPE_CIPSOV4:
790 ret_val = cipso_v4_sock_setattr(sk,
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791 dom_entry->def.cipso,
792 secattr);
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793 break;
794 case NETLBL_NLTYPE_UNLABELED:
795 ret_val = 0;
796 break;
797 default:
798 ret_val = -ENOENT;
799 }
d15c345f 800 break;
dfd56b8b 801#if IS_ENABLED(CONFIG_IPV6)
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802 case AF_INET6:
803 /* since we don't support any IPv6 labeling protocols right
804 * now we can optimize everything away until we do */
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805 ret_val = 0;
806 break;
389fb800 807#endif /* IPv6 */
d15c345f 808 default:
389fb800 809 ret_val = -EPROTONOSUPPORT;
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810 }
811
812socket_setattr_return:
813 rcu_read_unlock();
814 return ret_val;
815}
816
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817/**
818 * netlbl_sock_delattr - Delete all the NetLabel labels on a socket
819 * @sk: the socket
820 *
821 * Description:
822 * Remove all the NetLabel labeling from @sk. The caller is responsible for
823 * ensuring that @sk is locked.
824 *
825 */
826void netlbl_sock_delattr(struct sock *sk)
827{
828 cipso_v4_sock_delattr(sk);
829}
830
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831/**
832 * netlbl_sock_getattr - Determine the security attributes of a sock
833 * @sk: the sock
834 * @secattr: the security attributes
835 *
836 * Description:
8cc44579 837 * Examines the given sock to see if any NetLabel style labeling has been
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838 * applied to the sock, if so it parses the socket label and returns the
839 * security attributes in @secattr. Returns zero on success, negative values
840 * on failure.
841 *
842 */
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843int netlbl_sock_getattr(struct sock *sk,
844 struct netlbl_lsm_secattr *secattr)
14a72f53 845{
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846 int ret_val;
847
848 switch (sk->sk_family) {
849 case AF_INET:
850 ret_val = cipso_v4_sock_getattr(sk, secattr);
851 break;
dfd56b8b 852#if IS_ENABLED(CONFIG_IPV6)
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853 case AF_INET6:
854 ret_val = -ENOMSG;
855 break;
856#endif /* IPv6 */
857 default:
858 ret_val = -EPROTONOSUPPORT;
859 }
860
861 return ret_val;
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862}
863
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864/**
865 * netlbl_conn_setattr - Label a connected socket using the correct protocol
866 * @sk: the socket to label
867 * @addr: the destination address
868 * @secattr: the security attributes
869 *
870 * Description:
871 * Attach the correct label to the given connected socket using the security
872 * attributes specified in @secattr. The caller is responsible for ensuring
873 * that @sk is locked. Returns zero on success, negative values on failure.
874 *
875 */
876int netlbl_conn_setattr(struct sock *sk,
877 struct sockaddr *addr,
878 const struct netlbl_lsm_secattr *secattr)
879{
880 int ret_val;
881 struct sockaddr_in *addr4;
6a8b7f0c 882 struct netlbl_dommap_def *entry;
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883
884 rcu_read_lock();
885 switch (addr->sa_family) {
886 case AF_INET:
887 addr4 = (struct sockaddr_in *)addr;
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888 entry = netlbl_domhsh_getentry_af4(secattr->domain,
889 addr4->sin_addr.s_addr);
890 if (entry == NULL) {
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891 ret_val = -ENOENT;
892 goto conn_setattr_return;
893 }
6a8b7f0c 894 switch (entry->type) {
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895 case NETLBL_NLTYPE_CIPSOV4:
896 ret_val = cipso_v4_sock_setattr(sk,
6a8b7f0c 897 entry->cipso, secattr);
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898 break;
899 case NETLBL_NLTYPE_UNLABELED:
900 /* just delete the protocols we support for right now
901 * but we could remove other protocols if needed */
902 cipso_v4_sock_delattr(sk);
903 ret_val = 0;
904 break;
905 default:
906 ret_val = -ENOENT;
907 }
908 break;
dfd56b8b 909#if IS_ENABLED(CONFIG_IPV6)
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910 case AF_INET6:
911 /* since we don't support any IPv6 labeling protocols right
912 * now we can optimize everything away until we do */
913 ret_val = 0;
914 break;
915#endif /* IPv6 */
916 default:
389fb800 917 ret_val = -EPROTONOSUPPORT;
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918 }
919
920conn_setattr_return:
921 rcu_read_unlock();
922 return ret_val;
923}
924
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925/**
926 * netlbl_req_setattr - Label a request socket using the correct protocol
927 * @req: the request socket to label
928 * @secattr: the security attributes
929 *
930 * Description:
931 * Attach the correct label to the given socket using the security attributes
932 * specified in @secattr. Returns zero on success, negative values on failure.
933 *
934 */
935int netlbl_req_setattr(struct request_sock *req,
936 const struct netlbl_lsm_secattr *secattr)
937{
938 int ret_val;
6a8b7f0c 939 struct netlbl_dommap_def *entry;
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940
941 rcu_read_lock();
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942 switch (req->rsk_ops->family) {
943 case AF_INET:
6a8b7f0c 944 entry = netlbl_domhsh_getentry_af4(secattr->domain,
634fb979 945 inet_rsk(req)->ir_rmt_addr);
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946 if (entry == NULL) {
947 ret_val = -ENOENT;
948 goto req_setattr_return;
389fb800 949 }
6a8b7f0c 950 switch (entry->type) {
389fb800 951 case NETLBL_NLTYPE_CIPSOV4:
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952 ret_val = cipso_v4_req_setattr(req,
953 entry->cipso, secattr);
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954 break;
955 case NETLBL_NLTYPE_UNLABELED:
956 /* just delete the protocols we support for right now
957 * but we could remove other protocols if needed */
958 cipso_v4_req_delattr(req);
959 ret_val = 0;
960 break;
961 default:
962 ret_val = -ENOENT;
963 }
964 break;
dfd56b8b 965#if IS_ENABLED(CONFIG_IPV6)
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966 case AF_INET6:
967 /* since we don't support any IPv6 labeling protocols right
968 * now we can optimize everything away until we do */
969 ret_val = 0;
970 break;
971#endif /* IPv6 */
972 default:
973 ret_val = -EPROTONOSUPPORT;
974 }
975
976req_setattr_return:
977 rcu_read_unlock();
978 return ret_val;
979}
980
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981/**
982* netlbl_req_delattr - Delete all the NetLabel labels on a socket
983* @req: the socket
984*
985* Description:
986* Remove all the NetLabel labeling from @req.
987*
988*/
989void netlbl_req_delattr(struct request_sock *req)
990{
991 cipso_v4_req_delattr(req);
992}
993
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994/**
995 * netlbl_skbuff_setattr - Label a packet using the correct protocol
996 * @skb: the packet
997 * @family: protocol family
998 * @secattr: the security attributes
999 *
1000 * Description:
1001 * Attach the correct label to the given packet using the security attributes
1002 * specified in @secattr. Returns zero on success, negative values on failure.
1003 *
1004 */
1005int netlbl_skbuff_setattr(struct sk_buff *skb,
1006 u16 family,
1007 const struct netlbl_lsm_secattr *secattr)
1008{
1009 int ret_val;
1010 struct iphdr *hdr4;
6a8b7f0c 1011 struct netlbl_dommap_def *entry;
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1012
1013 rcu_read_lock();
1014 switch (family) {
1015 case AF_INET:
1016 hdr4 = ip_hdr(skb);
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1017 entry = netlbl_domhsh_getentry_af4(secattr->domain,hdr4->daddr);
1018 if (entry == NULL) {
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1019 ret_val = -ENOENT;
1020 goto skbuff_setattr_return;
1021 }
6a8b7f0c 1022 switch (entry->type) {
948bf85c 1023 case NETLBL_NLTYPE_CIPSOV4:
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1024 ret_val = cipso_v4_skbuff_setattr(skb, entry->cipso,
1025 secattr);
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1026 break;
1027 case NETLBL_NLTYPE_UNLABELED:
1028 /* just delete the protocols we support for right now
1029 * but we could remove other protocols if needed */
1030 ret_val = cipso_v4_skbuff_delattr(skb);
1031 break;
1032 default:
1033 ret_val = -ENOENT;
1034 }
1035 break;
dfd56b8b 1036#if IS_ENABLED(CONFIG_IPV6)
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1037 case AF_INET6:
1038 /* since we don't support any IPv6 labeling protocols right
1039 * now we can optimize everything away until we do */
1040 ret_val = 0;
1041 break;
1042#endif /* IPv6 */
1043 default:
389fb800 1044 ret_val = -EPROTONOSUPPORT;
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1045 }
1046
1047skbuff_setattr_return:
1048 rcu_read_unlock();
1049 return ret_val;
1050}
1051
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1052/**
1053 * netlbl_skbuff_getattr - Determine the security attributes of a packet
1054 * @skb: the packet
75e22910 1055 * @family: protocol family
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1056 * @secattr: the security attributes
1057 *
1058 * Description:
1059 * Examines the given packet to see if a recognized form of packet labeling
1060 * is present, if so it parses the packet label and returns the security
1061 * attributes in @secattr. Returns zero on success, negative values on
1062 * failure.
1063 *
1064 */
1065int netlbl_skbuff_getattr(const struct sk_buff *skb,
75e22910 1066 u16 family,
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1067 struct netlbl_lsm_secattr *secattr)
1068{
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1069 switch (family) {
1070 case AF_INET:
1071 if (CIPSO_V4_OPTEXIST(skb) &&
1072 cipso_v4_skbuff_getattr(skb, secattr) == 0)
1073 return 0;
1074 break;
dfd56b8b 1075#if IS_ENABLED(CONFIG_IPV6)
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1076 case AF_INET6:
1077 break;
1078#endif /* IPv6 */
1079 }
d15c345f 1080
8cc44579 1081 return netlbl_unlabel_getattr(skb, family, secattr);
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1082}
1083
1084/**
1085 * netlbl_skbuff_err - Handle a LSM error on a sk_buff
1086 * @skb: the packet
1087 * @error: the error code
dfaebe98 1088 * @gateway: true if host is acting as a gateway, false otherwise
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1089 *
1090 * Description:
1091 * Deal with a LSM problem when handling the packet in @skb, typically this is
1092 * a permission denied problem (-EACCES). The correct action is determined
1093 * according to the packet's labeling protocol.
1094 *
1095 */
dfaebe98 1096void netlbl_skbuff_err(struct sk_buff *skb, int error, int gateway)
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1097{
1098 if (CIPSO_V4_OPTEXIST(skb))
dfaebe98 1099 cipso_v4_error(skb, error, gateway);
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1100}
1101
1102/**
1103 * netlbl_cache_invalidate - Invalidate all of the NetLabel protocol caches
1104 *
1105 * Description:
1106 * For all of the NetLabel protocols that support some form of label mapping
1107 * cache, invalidate the cache. Returns zero on success, negative values on
1108 * error.
1109 *
1110 */
1111void netlbl_cache_invalidate(void)
1112{
1113 cipso_v4_cache_invalidate();
1114}
1115
1116/**
1117 * netlbl_cache_add - Add an entry to a NetLabel protocol cache
1118 * @skb: the packet
1119 * @secattr: the packet's security attributes
1120 *
1121 * Description:
1122 * Add the LSM security attributes for the given packet to the underlying
1123 * NetLabel protocol's label mapping cache. Returns zero on success, negative
1124 * values on error.
1125 *
1126 */
1127int netlbl_cache_add(const struct sk_buff *skb,
1128 const struct netlbl_lsm_secattr *secattr)
1129{
701a90ba 1130 if ((secattr->flags & NETLBL_SECATTR_CACHE) == 0)
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1131 return -ENOMSG;
1132
1133 if (CIPSO_V4_OPTEXIST(skb))
1134 return cipso_v4_cache_add(skb, secattr);
1135
1136 return -ENOMSG;
1137}
1138
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1139/*
1140 * Protocol Engine Functions
1141 */
1142
1143/**
1144 * netlbl_audit_start - Start an audit message
1145 * @type: audit message type
1146 * @audit_info: NetLabel audit information
1147 *
1148 * Description:
1149 * Start an audit message using the type specified in @type and fill the audit
1150 * message with some fields common to all NetLabel audit messages. This
1151 * function should only be used by protocol engines, not LSMs. Returns a
1152 * pointer to the audit buffer on success, NULL on failure.
1153 *
1154 */
1155struct audit_buffer *netlbl_audit_start(int type,
1156 struct netlbl_audit *audit_info)
1157{
1158 return netlbl_audit_start_common(type, audit_info);
1159}
1160
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1161/*
1162 * Setup Functions
1163 */
1164
1165/**
1166 * netlbl_init - Initialize NetLabel
1167 *
1168 * Description:
1169 * Perform the required NetLabel initialization before first use.
1170 *
1171 */
1172static int __init netlbl_init(void)
1173{
1174 int ret_val;
1175
1176 printk(KERN_INFO "NetLabel: Initializing\n");
1177 printk(KERN_INFO "NetLabel: domain hash size = %u\n",
1178 (1 << NETLBL_DOMHSH_BITSIZE));
1179 printk(KERN_INFO "NetLabel: protocols ="
1180 " UNLABELED"
1181 " CIPSOv4"
1182 "\n");
1183
1184 ret_val = netlbl_domhsh_init(NETLBL_DOMHSH_BITSIZE);
1185 if (ret_val != 0)
1186 goto init_failure;
1187
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1188 ret_val = netlbl_unlabel_init(NETLBL_UNLHSH_BITSIZE);
1189 if (ret_val != 0)
1190 goto init_failure;
1191
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1192 ret_val = netlbl_netlink_init();
1193 if (ret_val != 0)
1194 goto init_failure;
1195
1196 ret_val = netlbl_unlabel_defconf();
1197 if (ret_val != 0)
1198 goto init_failure;
1199 printk(KERN_INFO "NetLabel: unlabeled traffic allowed by default\n");
1200
1201 return 0;
1202
1203init_failure:
1204 panic("NetLabel: failed to initialize properly (%d)\n", ret_val);
1205}
1206
1207subsys_initcall(netlbl_init);