Merge tag 'pci-v6.16-fixes-3' of git://git.kernel.org/pub/scm/linux/kernel/git/pci/pci
[linux-2.6-block.git] / security / selinux / avc.c
CommitLineData
d2912cb1 1// SPDX-License-Identifier: GPL-2.0-only
1da177e4
LT
2/*
3 * Implementation of the kernel access vector cache (AVC).
4 *
0fe53224 5 * Authors: Stephen Smalley, <stephen.smalley.work@gmail.com>
95fff33b 6 * James Morris <jmorris@redhat.com>
1da177e4
LT
7 *
8 * Update: KaiGai, Kohei <kaigai@ak.jp.nec.com>
95fff33b 9 * Replaced the avc_lock spinlock by RCU.
1da177e4
LT
10 *
11 * Copyright (C) 2003 Red Hat, Inc., James Morris <jmorris@redhat.com>
1da177e4
LT
12 */
13#include <linux/types.h>
14#include <linux/stddef.h>
15#include <linux/kernel.h>
16#include <linux/slab.h>
17#include <linux/fs.h>
18#include <linux/dcache.h>
19#include <linux/init.h>
20#include <linux/skbuff.h>
21#include <linux/percpu.h>
fa1aa143 22#include <linux/list.h>
1da177e4
LT
23#include <net/sock.h>
24#include <linux/un.h>
25#include <net/af_unix.h>
26#include <linux/ip.h>
27#include <linux/audit.h>
28#include <linux/ipv6.h>
29#include <net/ipv6.h>
30#include "avc.h"
31#include "avc_ss.h"
c6d3aaa4 32#include "classmap.h"
5c458998 33
dd816621
TW
34#define CREATE_TRACE_POINTS
35#include <trace/events/avc.h>
36
1da177e4
LT
37#define AVC_CACHE_SLOTS 512
38#define AVC_DEF_CACHE_THRESHOLD 512
39#define AVC_CACHE_RECLAIM 16
40
41#ifdef CONFIG_SECURITY_SELINUX_AVC_STATS
044aea9b 42#define avc_cache_stats_incr(field) this_cpu_inc(avc_cache_stats.field)
1da177e4
LT
43#else
44#define avc_cache_stats_incr(field) do {} while (0)
45#endif
46
47struct avc_entry {
48 u32 ssid;
49 u32 tsid;
50 u16 tclass;
51 struct av_decision avd;
fa1aa143 52 struct avc_xperms_node *xp_node;
1da177e4
LT
53};
54
55struct avc_node {
56 struct avc_entry ae;
26036651 57 struct hlist_node list; /* anchored in avc_cache->slots[i] */
95fff33b 58 struct rcu_head rhead;
1da177e4
LT
59};
60
fa1aa143
JVS
61struct avc_xperms_decision_node {
62 struct extended_perms_decision xpd;
63 struct list_head xpd_list; /* list of extended_perms_decision */
64};
65
66struct avc_xperms_node {
67 struct extended_perms xp;
68 struct list_head xpd_head; /* list head of extended_perms_decision */
69};
70
1da177e4 71struct avc_cache {
26036651 72 struct hlist_head slots[AVC_CACHE_SLOTS]; /* head for avc_node->list */
1da177e4
LT
73 spinlock_t slots_lock[AVC_CACHE_SLOTS]; /* lock for writes */
74 atomic_t lru_hint; /* LRU hint for reclaim scan */
75 atomic_t active_nodes;
76 u32 latest_notif; /* latest revocation notification */
77};
78
79struct avc_callback_node {
562c99f2 80 int (*callback) (u32 event);
1da177e4 81 u32 events;
1da177e4
LT
82 struct avc_callback_node *next;
83};
84
1da177e4
LT
85#ifdef CONFIG_SECURITY_SELINUX_AVC_STATS
86DEFINE_PER_CPU(struct avc_cache_stats, avc_cache_stats) = { 0 };
87#endif
88
6b6bc620
SS
89struct selinux_avc {
90 unsigned int avc_cache_threshold;
91 struct avc_cache avc_cache;
92};
93
94static struct selinux_avc selinux_avc;
95
e67b7985 96void selinux_avc_init(void)
6b6bc620
SS
97{
98 int i;
99
100 selinux_avc.avc_cache_threshold = AVC_DEF_CACHE_THRESHOLD;
101 for (i = 0; i < AVC_CACHE_SLOTS; i++) {
102 INIT_HLIST_HEAD(&selinux_avc.avc_cache.slots[i]);
103 spin_lock_init(&selinux_avc.avc_cache.slots_lock[i]);
104 }
105 atomic_set(&selinux_avc.avc_cache.active_nodes, 0);
106 atomic_set(&selinux_avc.avc_cache.lru_hint, 0);
6b6bc620
SS
107}
108
e67b7985 109unsigned int avc_get_cache_threshold(void)
6b6bc620 110{
e67b7985 111 return selinux_avc.avc_cache_threshold;
6b6bc620
SS
112}
113
e67b7985 114void avc_set_cache_threshold(unsigned int cache_threshold)
6b6bc620 115{
e67b7985 116 selinux_avc.avc_cache_threshold = cache_threshold;
6b6bc620
SS
117}
118
cd2bb4cb
OM
119static struct avc_callback_node *avc_callbacks __ro_after_init;
120static struct kmem_cache *avc_node_cachep __ro_after_init;
121static struct kmem_cache *avc_xperms_data_cachep __ro_after_init;
122static struct kmem_cache *avc_xperms_decision_cachep __ro_after_init;
123static struct kmem_cache *avc_xperms_cachep __ro_after_init;
1da177e4 124
5f740953 125static inline u32 avc_hash(u32 ssid, u32 tsid, u16 tclass)
1da177e4
LT
126{
127 return (ssid ^ (tsid<<2) ^ (tclass<<4)) & (AVC_CACHE_SLOTS - 1);
128}
129
1da177e4
LT
130/**
131 * avc_init - Initialize the AVC.
132 *
133 * Initialize the access vector cache.
134 */
135void __init avc_init(void)
136{
4ad858bd
ES
137 avc_node_cachep = KMEM_CACHE(avc_node, SLAB_PANIC);
138 avc_xperms_cachep = KMEM_CACHE(avc_xperms_node, SLAB_PANIC);
139 avc_xperms_decision_cachep = KMEM_CACHE(avc_xperms_decision_node, SLAB_PANIC);
140 avc_xperms_data_cachep = KMEM_CACHE(extended_perms_data, SLAB_PANIC);
1da177e4
LT
141}
142
e67b7985 143int avc_get_hash_stats(char *page)
1da177e4
LT
144{
145 int i, chain_len, max_chain_len, slots_used;
146 struct avc_node *node;
26036651 147 struct hlist_head *head;
1da177e4
LT
148
149 rcu_read_lock();
150
151 slots_used = 0;
152 max_chain_len = 0;
153 for (i = 0; i < AVC_CACHE_SLOTS; i++) {
e67b7985 154 head = &selinux_avc.avc_cache.slots[i];
26036651 155 if (!hlist_empty(head)) {
1da177e4
LT
156 slots_used++;
157 chain_len = 0;
b67bfe0d 158 hlist_for_each_entry_rcu(node, head, list)
1da177e4
LT
159 chain_len++;
160 if (chain_len > max_chain_len)
161 max_chain_len = chain_len;
162 }
163 }
164
165 rcu_read_unlock();
166
167 return scnprintf(page, PAGE_SIZE, "entries: %d\nbuckets used: %d/%d\n"
168 "longest chain: %d\n",
e67b7985 169 atomic_read(&selinux_avc.avc_cache.active_nodes),
1da177e4
LT
170 slots_used, AVC_CACHE_SLOTS, max_chain_len);
171}
172
fa1aa143
JVS
173/*
174 * using a linked list for extended_perms_decision lookup because the list is
175 * always small. i.e. less than 5, typically 1
176 */
5e7f0efd
TW
177static struct extended_perms_decision *
178avc_xperms_decision_lookup(u8 driver, u8 base_perm,
179 struct avc_xperms_node *xp_node)
fa1aa143
JVS
180{
181 struct avc_xperms_decision_node *xpd_node;
182
183 list_for_each_entry(xpd_node, &xp_node->xpd_head, xpd_list) {
5e7f0efd
TW
184 if (xpd_node->xpd.driver == driver &&
185 xpd_node->xpd.base_perm == base_perm)
fa1aa143
JVS
186 return &xpd_node->xpd;
187 }
188 return NULL;
189}
190
191static inline unsigned int
192avc_xperms_has_perm(struct extended_perms_decision *xpd,
193 u8 perm, u8 which)
194{
195 unsigned int rc = 0;
196
197 if ((which == XPERMS_ALLOWED) &&
198 (xpd->used & XPERMS_ALLOWED))
199 rc = security_xperm_test(xpd->allowed->p, perm);
200 else if ((which == XPERMS_AUDITALLOW) &&
201 (xpd->used & XPERMS_AUDITALLOW))
202 rc = security_xperm_test(xpd->auditallow->p, perm);
203 else if ((which == XPERMS_DONTAUDIT) &&
204 (xpd->used & XPERMS_DONTAUDIT))
205 rc = security_xperm_test(xpd->dontaudit->p, perm);
206 return rc;
207}
208
209static void avc_xperms_allow_perm(struct avc_xperms_node *xp_node,
5e7f0efd 210 u8 driver, u8 base_perm, u8 perm)
fa1aa143
JVS
211{
212 struct extended_perms_decision *xpd;
213 security_xperm_set(xp_node->xp.drivers.p, driver);
5e7f0efd
TW
214 xp_node->xp.base_perms |= base_perm;
215 xpd = avc_xperms_decision_lookup(driver, base_perm, xp_node);
fa1aa143
JVS
216 if (xpd && xpd->allowed)
217 security_xperm_set(xpd->allowed->p, perm);
218}
219
220static void avc_xperms_decision_free(struct avc_xperms_decision_node *xpd_node)
221{
222 struct extended_perms_decision *xpd;
223
224 xpd = &xpd_node->xpd;
225 if (xpd->allowed)
226 kmem_cache_free(avc_xperms_data_cachep, xpd->allowed);
227 if (xpd->auditallow)
228 kmem_cache_free(avc_xperms_data_cachep, xpd->auditallow);
229 if (xpd->dontaudit)
230 kmem_cache_free(avc_xperms_data_cachep, xpd->dontaudit);
231 kmem_cache_free(avc_xperms_decision_cachep, xpd_node);
232}
233
234static void avc_xperms_free(struct avc_xperms_node *xp_node)
235{
236 struct avc_xperms_decision_node *xpd_node, *tmp;
237
238 if (!xp_node)
239 return;
240
241 list_for_each_entry_safe(xpd_node, tmp, &xp_node->xpd_head, xpd_list) {
242 list_del(&xpd_node->xpd_list);
243 avc_xperms_decision_free(xpd_node);
244 }
245 kmem_cache_free(avc_xperms_cachep, xp_node);
246}
247
248static void avc_copy_xperms_decision(struct extended_perms_decision *dest,
249 struct extended_perms_decision *src)
250{
5e7f0efd 251 dest->base_perm = src->base_perm;
fa1aa143
JVS
252 dest->driver = src->driver;
253 dest->used = src->used;
254 if (dest->used & XPERMS_ALLOWED)
255 memcpy(dest->allowed->p, src->allowed->p,
256 sizeof(src->allowed->p));
257 if (dest->used & XPERMS_AUDITALLOW)
258 memcpy(dest->auditallow->p, src->auditallow->p,
259 sizeof(src->auditallow->p));
260 if (dest->used & XPERMS_DONTAUDIT)
261 memcpy(dest->dontaudit->p, src->dontaudit->p,
262 sizeof(src->dontaudit->p));
263}
264
265/*
266 * similar to avc_copy_xperms_decision, but only copy decision
267 * information relevant to this perm
268 */
269static inline void avc_quick_copy_xperms_decision(u8 perm,
270 struct extended_perms_decision *dest,
271 struct extended_perms_decision *src)
272{
273 /*
274 * compute index of the u32 of the 256 bits (8 u32s) that contain this
275 * command permission
276 */
277 u8 i = perm >> 5;
278
5e7f0efd 279 dest->base_perm = src->base_perm;
fa1aa143
JVS
280 dest->used = src->used;
281 if (dest->used & XPERMS_ALLOWED)
282 dest->allowed->p[i] = src->allowed->p[i];
283 if (dest->used & XPERMS_AUDITALLOW)
284 dest->auditallow->p[i] = src->auditallow->p[i];
285 if (dest->used & XPERMS_DONTAUDIT)
286 dest->dontaudit->p[i] = src->dontaudit->p[i];
287}
288
289static struct avc_xperms_decision_node
290 *avc_xperms_decision_alloc(u8 which)
291{
292 struct avc_xperms_decision_node *xpd_node;
293 struct extended_perms_decision *xpd;
294
648f2c61
MK
295 xpd_node = kmem_cache_zalloc(avc_xperms_decision_cachep,
296 GFP_NOWAIT | __GFP_NOWARN);
fa1aa143
JVS
297 if (!xpd_node)
298 return NULL;
299
300 xpd = &xpd_node->xpd;
301 if (which & XPERMS_ALLOWED) {
302 xpd->allowed = kmem_cache_zalloc(avc_xperms_data_cachep,
648f2c61 303 GFP_NOWAIT | __GFP_NOWARN);
fa1aa143
JVS
304 if (!xpd->allowed)
305 goto error;
306 }
307 if (which & XPERMS_AUDITALLOW) {
308 xpd->auditallow = kmem_cache_zalloc(avc_xperms_data_cachep,
648f2c61 309 GFP_NOWAIT | __GFP_NOWARN);
fa1aa143
JVS
310 if (!xpd->auditallow)
311 goto error;
312 }
313 if (which & XPERMS_DONTAUDIT) {
314 xpd->dontaudit = kmem_cache_zalloc(avc_xperms_data_cachep,
648f2c61 315 GFP_NOWAIT | __GFP_NOWARN);
fa1aa143
JVS
316 if (!xpd->dontaudit)
317 goto error;
318 }
319 return xpd_node;
320error:
321 avc_xperms_decision_free(xpd_node);
322 return NULL;
323}
324
325static int avc_add_xperms_decision(struct avc_node *node,
326 struct extended_perms_decision *src)
327{
328 struct avc_xperms_decision_node *dest_xpd;
329
fa1aa143
JVS
330 dest_xpd = avc_xperms_decision_alloc(src->used);
331 if (!dest_xpd)
332 return -ENOMEM;
333 avc_copy_xperms_decision(&dest_xpd->xpd, src);
334 list_add(&dest_xpd->xpd_list, &node->ae.xp_node->xpd_head);
379d9af3 335 node->ae.xp_node->xp.len++;
fa1aa143
JVS
336 return 0;
337}
338
339static struct avc_xperms_node *avc_xperms_alloc(void)
340{
341 struct avc_xperms_node *xp_node;
342
648f2c61 343 xp_node = kmem_cache_zalloc(avc_xperms_cachep, GFP_NOWAIT | __GFP_NOWARN);
fa1aa143
JVS
344 if (!xp_node)
345 return xp_node;
346 INIT_LIST_HEAD(&xp_node->xpd_head);
347 return xp_node;
348}
349
350static int avc_xperms_populate(struct avc_node *node,
351 struct avc_xperms_node *src)
352{
353 struct avc_xperms_node *dest;
354 struct avc_xperms_decision_node *dest_xpd;
355 struct avc_xperms_decision_node *src_xpd;
356
357 if (src->xp.len == 0)
358 return 0;
359 dest = avc_xperms_alloc();
360 if (!dest)
361 return -ENOMEM;
362
363 memcpy(dest->xp.drivers.p, src->xp.drivers.p, sizeof(dest->xp.drivers.p));
364 dest->xp.len = src->xp.len;
5e7f0efd 365 dest->xp.base_perms = src->xp.base_perms;
fa1aa143
JVS
366
367 /* for each source xpd allocate a destination xpd and copy */
368 list_for_each_entry(src_xpd, &src->xpd_head, xpd_list) {
369 dest_xpd = avc_xperms_decision_alloc(src_xpd->xpd.used);
370 if (!dest_xpd)
371 goto error;
372 avc_copy_xperms_decision(&dest_xpd->xpd, &src_xpd->xpd);
373 list_add(&dest_xpd->xpd_list, &dest->xpd_head);
374 }
375 node->ae.xp_node = dest;
376 return 0;
377error:
378 avc_xperms_free(dest);
379 return -ENOMEM;
380
381}
382
383static inline u32 avc_xperms_audit_required(u32 requested,
384 struct av_decision *avd,
385 struct extended_perms_decision *xpd,
386 u8 perm,
387 int result,
388 u32 *deniedp)
389{
390 u32 denied, audited;
391
392 denied = requested & ~avd->allowed;
393 if (unlikely(denied)) {
394 audited = denied & avd->auditdeny;
395 if (audited && xpd) {
396 if (avc_xperms_has_perm(xpd, perm, XPERMS_DONTAUDIT))
68cfb283 397 audited = 0;
fa1aa143
JVS
398 }
399 } else if (result) {
400 audited = denied = requested;
401 } else {
402 audited = requested & avd->auditallow;
403 if (audited && xpd) {
404 if (!avc_xperms_has_perm(xpd, perm, XPERMS_AUDITALLOW))
68cfb283 405 audited = 0;
fa1aa143
JVS
406 }
407 }
408
409 *deniedp = denied;
410 return audited;
411}
412
e67b7985 413static inline int avc_xperms_audit(u32 ssid, u32 tsid, u16 tclass,
6b6bc620
SS
414 u32 requested, struct av_decision *avd,
415 struct extended_perms_decision *xpd,
416 u8 perm, int result,
417 struct common_audit_data *ad)
fa1aa143
JVS
418{
419 u32 audited, denied;
420
421 audited = avc_xperms_audit_required(
422 requested, avd, xpd, perm, result, &denied);
423 if (likely(!audited))
424 return 0;
e67b7985 425 return slow_avc_audit(ssid, tsid, tclass, requested,
0188d5c0 426 audited, denied, result, ad);
fa1aa143
JVS
427}
428
1da177e4
LT
429static void avc_node_free(struct rcu_head *rhead)
430{
431 struct avc_node *node = container_of(rhead, struct avc_node, rhead);
fa1aa143 432 avc_xperms_free(node->ae.xp_node);
1da177e4
LT
433 kmem_cache_free(avc_node_cachep, node);
434 avc_cache_stats_incr(frees);
435}
436
e67b7985 437static void avc_node_delete(struct avc_node *node)
1da177e4 438{
26036651 439 hlist_del_rcu(&node->list);
1da177e4 440 call_rcu(&node->rhead, avc_node_free);
e67b7985 441 atomic_dec(&selinux_avc.avc_cache.active_nodes);
1da177e4
LT
442}
443
e67b7985 444static void avc_node_kill(struct avc_node *node)
1da177e4 445{
fa1aa143 446 avc_xperms_free(node->ae.xp_node);
1da177e4
LT
447 kmem_cache_free(avc_node_cachep, node);
448 avc_cache_stats_incr(frees);
e67b7985 449 atomic_dec(&selinux_avc.avc_cache.active_nodes);
1da177e4
LT
450}
451
e67b7985 452static void avc_node_replace(struct avc_node *new, struct avc_node *old)
1da177e4 453{
26036651 454 hlist_replace_rcu(&old->list, &new->list);
1da177e4 455 call_rcu(&old->rhead, avc_node_free);
e67b7985 456 atomic_dec(&selinux_avc.avc_cache.active_nodes);
1da177e4
LT
457}
458
e67b7985 459static inline int avc_reclaim_node(void)
1da177e4
LT
460{
461 struct avc_node *node;
462 int hvalue, try, ecx;
463 unsigned long flags;
26036651 464 struct hlist_head *head;
edf3d1ae 465 spinlock_t *lock;
1da177e4 466
95fff33b 467 for (try = 0, ecx = 0; try < AVC_CACHE_SLOTS; try++) {
e67b7985 468 hvalue = atomic_inc_return(&selinux_avc.avc_cache.lru_hint) &
6b6bc620 469 (AVC_CACHE_SLOTS - 1);
e67b7985
SS
470 head = &selinux_avc.avc_cache.slots[hvalue];
471 lock = &selinux_avc.avc_cache.slots_lock[hvalue];
1da177e4 472
edf3d1ae 473 if (!spin_trylock_irqsave(lock, flags))
1da177e4
LT
474 continue;
475
61844250 476 rcu_read_lock();
b67bfe0d 477 hlist_for_each_entry(node, head, list) {
e67b7985 478 avc_node_delete(node);
906d27d9
EP
479 avc_cache_stats_incr(reclaims);
480 ecx++;
481 if (ecx >= AVC_CACHE_RECLAIM) {
482 rcu_read_unlock();
edf3d1ae 483 spin_unlock_irqrestore(lock, flags);
906d27d9 484 goto out;
1da177e4
LT
485 }
486 }
61844250 487 rcu_read_unlock();
edf3d1ae 488 spin_unlock_irqrestore(lock, flags);
1da177e4
LT
489 }
490out:
491 return ecx;
492}
493
e67b7985 494static struct avc_node *avc_alloc_node(void)
1da177e4
LT
495{
496 struct avc_node *node;
497
648f2c61 498 node = kmem_cache_zalloc(avc_node_cachep, GFP_NOWAIT | __GFP_NOWARN);
1da177e4
LT
499 if (!node)
500 goto out;
501
26036651 502 INIT_HLIST_NODE(&node->list);
1da177e4
LT
503 avc_cache_stats_incr(allocations);
504
e67b7985
SS
505 if (atomic_inc_return(&selinux_avc.avc_cache.active_nodes) >
506 selinux_avc.avc_cache_threshold)
507 avc_reclaim_node();
1da177e4
LT
508
509out:
510 return node;
511}
512
21193dcd 513static void avc_node_populate(struct avc_node *node, u32 ssid, u32 tsid, u16 tclass, struct av_decision *avd)
1da177e4
LT
514{
515 node->ae.ssid = ssid;
516 node->ae.tsid = tsid;
517 node->ae.tclass = tclass;
21193dcd 518 memcpy(&node->ae.avd, avd, sizeof(node->ae.avd));
1da177e4
LT
519}
520
e67b7985 521static inline struct avc_node *avc_search_node(u32 ssid, u32 tsid, u16 tclass)
1da177e4
LT
522{
523 struct avc_node *node, *ret = NULL;
5f740953 524 u32 hvalue;
26036651 525 struct hlist_head *head;
1da177e4
LT
526
527 hvalue = avc_hash(ssid, tsid, tclass);
e67b7985 528 head = &selinux_avc.avc_cache.slots[hvalue];
b67bfe0d 529 hlist_for_each_entry_rcu(node, head, list) {
1da177e4
LT
530 if (ssid == node->ae.ssid &&
531 tclass == node->ae.tclass &&
532 tsid == node->ae.tsid) {
533 ret = node;
534 break;
535 }
536 }
537
1da177e4
LT
538 return ret;
539}
540
541/**
542 * avc_lookup - Look up an AVC entry.
543 * @ssid: source security identifier
544 * @tsid: target security identifier
545 * @tclass: target security class
1da177e4
LT
546 *
547 * Look up an AVC entry that is valid for the
1da177e4
LT
548 * (@ssid, @tsid), interpreting the permissions
549 * based on @tclass. If a valid AVC entry exists,
6382dc33 550 * then this function returns the avc_node.
1da177e4
LT
551 * Otherwise, this function returns NULL.
552 */
e67b7985 553static struct avc_node *avc_lookup(u32 ssid, u32 tsid, u16 tclass)
1da177e4
LT
554{
555 struct avc_node *node;
556
557 avc_cache_stats_incr(lookups);
e67b7985 558 node = avc_search_node(ssid, tsid, tclass);
1da177e4 559
f1c6381a 560 if (node)
257313b2 561 return node;
1da177e4 562
257313b2
LT
563 avc_cache_stats_incr(misses);
564 return NULL;
1da177e4
LT
565}
566
5f740953 567static int avc_latest_notif_update(u32 seqno, int is_insert)
1da177e4
LT
568{
569 int ret = 0;
570 static DEFINE_SPINLOCK(notif_lock);
571 unsigned long flag;
572
573 spin_lock_irqsave(&notif_lock, flag);
574 if (is_insert) {
e67b7985 575 if (seqno < selinux_avc.avc_cache.latest_notif) {
07c81ac2 576 pr_warn("SELinux: avc: seqno %d < latest_notif %d\n",
e67b7985 577 seqno, selinux_avc.avc_cache.latest_notif);
1da177e4
LT
578 ret = -EAGAIN;
579 }
580 } else {
e67b7985
SS
581 if (seqno > selinux_avc.avc_cache.latest_notif)
582 selinux_avc.avc_cache.latest_notif = seqno;
1da177e4
LT
583 }
584 spin_unlock_irqrestore(&notif_lock, flag);
585
586 return ret;
587}
588
589/**
590 * avc_insert - Insert an AVC entry.
591 * @ssid: source security identifier
592 * @tsid: target security identifier
593 * @tclass: target security class
21193dcd 594 * @avd: resulting av decision
fa1aa143 595 * @xp_node: resulting extended permissions
1da177e4
LT
596 *
597 * Insert an AVC entry for the SID pair
598 * (@ssid, @tsid) and class @tclass.
599 * The access vectors and the sequence number are
600 * normally provided by the security server in
601 * response to a security_compute_av() call. If the
21193dcd 602 * sequence number @avd->seqno is not less than the latest
1da177e4 603 * revocation notification, then the function copies
539813e4 604 * the access vectors into a cache entry.
1da177e4 605 */
539813e4
SS
606static void avc_insert(u32 ssid, u32 tsid, u16 tclass,
607 struct av_decision *avd, struct avc_xperms_node *xp_node)
1da177e4
LT
608{
609 struct avc_node *pos, *node = NULL;
5f740953 610 u32 hvalue;
1da177e4 611 unsigned long flag;
d8db60cb
PM
612 spinlock_t *lock;
613 struct hlist_head *head;
1da177e4 614
e67b7985 615 if (avc_latest_notif_update(avd->seqno, 1))
539813e4 616 return;
1da177e4 617
e67b7985 618 node = avc_alloc_node();
d8db60cb 619 if (!node)
539813e4 620 return;
edf3d1ae 621
d8db60cb
PM
622 avc_node_populate(node, ssid, tsid, tclass, avd);
623 if (avc_xperms_populate(node, xp_node)) {
e67b7985 624 avc_node_kill(node);
539813e4 625 return;
d8db60cb
PM
626 }
627
628 hvalue = avc_hash(ssid, tsid, tclass);
e67b7985
SS
629 head = &selinux_avc.avc_cache.slots[hvalue];
630 lock = &selinux_avc.avc_cache.slots_lock[hvalue];
d8db60cb
PM
631 spin_lock_irqsave(lock, flag);
632 hlist_for_each_entry(pos, head, list) {
633 if (pos->ae.ssid == ssid &&
634 pos->ae.tsid == tsid &&
635 pos->ae.tclass == tclass) {
e67b7985 636 avc_node_replace(node, pos);
d8db60cb 637 goto found;
1da177e4 638 }
1da177e4 639 }
d8db60cb
PM
640 hlist_add_head_rcu(&node->list, head);
641found:
642 spin_unlock_irqrestore(lock, flag);
1da177e4
LT
643}
644
2bf49690
TL
645/**
646 * avc_audit_pre_callback - SELinux specific information
647 * will be called by generic audit code
648 * @ab: the audit buffer
649 * @a: audit_data
650 */
651static void avc_audit_pre_callback(struct audit_buffer *ab, void *a)
1da177e4 652{
2bf49690 653 struct common_audit_data *ad = a;
a2c51383 654 struct selinux_audit_data *sad = ad->selinux_audit_data;
5f740953 655 u32 av = sad->audited, perm;
ded34574 656 const char *const *perms;
5f740953 657 u32 i;
a2c51383
OM
658
659 audit_log_format(ab, "avc: %s ", sad->denied ? "denied" : "granted");
660
661 if (av == 0) {
45189a19 662 audit_log_format(ab, " null");
a2c51383
OM
663 return;
664 }
665
a2c51383
OM
666 perms = secclass_map[sad->tclass-1].perms;
667
45189a19 668 audit_log_format(ab, " {");
a2c51383
OM
669 i = 0;
670 perm = 1;
671 while (i < (sizeof(av) * 8)) {
672 if ((perm & av) && perms[i]) {
673 audit_log_format(ab, " %s", perms[i]);
674 av &= ~perm;
675 }
676 i++;
677 perm <<= 1;
678 }
679
680 if (av)
681 audit_log_format(ab, " 0x%x", av);
682
45189a19 683 audit_log_format(ab, " } for ");
1da177e4
LT
684}
685
2bf49690
TL
686/**
687 * avc_audit_post_callback - SELinux specific information
688 * will be called by generic audit code
689 * @ab: the audit buffer
690 * @a: audit_data
691 */
692static void avc_audit_post_callback(struct audit_buffer *ab, void *a)
1da177e4 693{
2bf49690 694 struct common_audit_data *ad = a;
a2c51383 695 struct selinux_audit_data *sad = ad->selinux_audit_data;
30969bc8
PE
696 char *scontext = NULL;
697 char *tcontext = NULL;
698 const char *tclass = NULL;
a2c51383 699 u32 scontext_len;
30969bc8 700 u32 tcontext_len;
a2c51383
OM
701 int rc;
702
e67b7985 703 rc = security_sid_to_context(sad->ssid, &scontext,
a2c51383
OM
704 &scontext_len);
705 if (rc)
706 audit_log_format(ab, " ssid=%d", sad->ssid);
30969bc8 707 else
a2c51383 708 audit_log_format(ab, " scontext=%s", scontext);
a2c51383 709
e67b7985 710 rc = security_sid_to_context(sad->tsid, &tcontext,
30969bc8 711 &tcontext_len);
a2c51383
OM
712 if (rc)
713 audit_log_format(ab, " tsid=%d", sad->tsid);
30969bc8
PE
714 else
715 audit_log_format(ab, " tcontext=%s", tcontext);
a2c51383 716
30969bc8
PE
717 tclass = secclass_map[sad->tclass-1].name;
718 audit_log_format(ab, " tclass=%s", tclass);
a2c51383
OM
719
720 if (sad->denied)
721 audit_log_format(ab, " permissive=%u", sad->result ? 0 : 1);
fede1483 722
30969bc8
PE
723 trace_selinux_audited(sad, scontext, tcontext, tclass);
724 kfree(tcontext);
725 kfree(scontext);
726
fede1483 727 /* in case of invalid context report also the actual context string */
e67b7985 728 rc = security_sid_to_context_inval(sad->ssid, &scontext,
fede1483
OM
729 &scontext_len);
730 if (!rc && scontext) {
aff7ed48
OM
731 if (scontext_len && scontext[scontext_len - 1] == '\0')
732 scontext_len--;
733 audit_log_format(ab, " srawcon=");
734 audit_log_n_untrustedstring(ab, scontext, scontext_len);
fede1483
OM
735 kfree(scontext);
736 }
737
e67b7985 738 rc = security_sid_to_context_inval(sad->tsid, &scontext,
fede1483
OM
739 &scontext_len);
740 if (!rc && scontext) {
aff7ed48
OM
741 if (scontext_len && scontext[scontext_len - 1] == '\0')
742 scontext_len--;
743 audit_log_format(ab, " trawcon=");
744 audit_log_n_untrustedstring(ab, scontext, scontext_len);
fede1483
OM
745 kfree(scontext);
746 }
1da177e4
LT
747}
748
b17ec22f
AV
749/*
750 * This is the slow part of avc audit with big stack footprint.
751 * Note that it is non-blocking and can be called from under
752 * rcu_read_lock().
753 */
e67b7985 754noinline int slow_avc_audit(u32 ssid, u32 tsid, u16 tclass,
6b6bc620 755 u32 requested, u32 audited, u32 denied, int result,
0188d5c0 756 struct common_audit_data *a)
48aab2f7
LT
757{
758 struct common_audit_data stack_data;
899838b2 759 struct selinux_audit_data sad;
48aab2f7 760
994fb065
OM
761 if (WARN_ON(!tclass || tclass >= ARRAY_SIZE(secclass_map)))
762 return -EINVAL;
763
48aab2f7
LT
764 if (!a) {
765 a = &stack_data;
50c205f5 766 a->type = LSM_AUDIT_DATA_NONE;
48aab2f7
LT
767 }
768
899838b2
EP
769 sad.tclass = tclass;
770 sad.requested = requested;
771 sad.ssid = ssid;
772 sad.tsid = tsid;
773 sad.audited = audited;
774 sad.denied = denied;
ca7786a2 775 sad.result = result;
899838b2
EP
776
777 a->selinux_audit_data = &sad;
3f0882c4 778
b61c37f5 779 common_lsm_audit(a, avc_audit_pre_callback, avc_audit_post_callback);
48aab2f7
LT
780 return 0;
781}
782
1da177e4
LT
783/**
784 * avc_add_callback - Register a callback for security events.
785 * @callback: callback function
786 * @events: security events
1da177e4 787 *
562c99f2
WG
788 * Register a callback function for events in the set @events.
789 * Returns %0 on success or -%ENOMEM if insufficient memory
790 * exists to add the callback.
1da177e4 791 */
562c99f2 792int __init avc_add_callback(int (*callback)(u32 event), u32 events)
1da177e4
LT
793{
794 struct avc_callback_node *c;
795 int rc = 0;
796
0b36e44c 797 c = kmalloc(sizeof(*c), GFP_KERNEL);
1da177e4
LT
798 if (!c) {
799 rc = -ENOMEM;
800 goto out;
801 }
802
803 c->callback = callback;
804 c->events = events;
1da177e4
LT
805 c->next = avc_callbacks;
806 avc_callbacks = c;
807out:
808 return rc;
809}
810
1da177e4 811/**
7cffc377 812 * avc_update_node - Update an AVC entry
1da177e4
LT
813 * @event : Updating event
814 * @perms : Permission mask bits
e9fd7292 815 * @driver: xperm driver information
5e7f0efd 816 * @base_perm: the base permission associated with the extended permission
e9fd7292
PM
817 * @xperm: xperm permissions
818 * @ssid: AVC entry source sid
819 * @tsid: AVC entry target sid
820 * @tclass : AVC entry target object class
a5dda683 821 * @seqno : sequence number when decision was made
fa1aa143 822 * @xpd: extended_perms_decision to be added to the node
b17ec22f 823 * @flags: the AVC_* flags, e.g. AVC_EXTENDED_PERMS, or 0.
1da177e4
LT
824 *
825 * if a valid AVC entry doesn't exist,this function returns -ENOENT.
826 * if kmalloc() called internal returns NULL, this function returns -ENOMEM.
6382dc33 827 * otherwise, this function updates the AVC entry. The original AVC-entry object
1da177e4
LT
828 * will release later by RCU.
829 */
5e7f0efd
TW
830static int avc_update_node(u32 event, u32 perms, u8 driver, u8 base_perm,
831 u8 xperm, u32 ssid, u32 tsid, u16 tclass, u32 seqno,
832 struct extended_perms_decision *xpd, u32 flags)
1da177e4 833{
5f740953
CG
834 u32 hvalue;
835 int rc = 0;
1da177e4
LT
836 unsigned long flag;
837 struct avc_node *pos, *node, *orig = NULL;
26036651 838 struct hlist_head *head;
edf3d1ae 839 spinlock_t *lock;
1da177e4 840
e67b7985 841 node = avc_alloc_node();
1da177e4
LT
842 if (!node) {
843 rc = -ENOMEM;
844 goto out;
845 }
846
847 /* Lock the target slot */
848 hvalue = avc_hash(ssid, tsid, tclass);
1da177e4 849
e67b7985
SS
850 head = &selinux_avc.avc_cache.slots[hvalue];
851 lock = &selinux_avc.avc_cache.slots_lock[hvalue];
edf3d1ae
EP
852
853 spin_lock_irqsave(lock, flag);
854
b67bfe0d 855 hlist_for_each_entry(pos, head, list) {
95fff33b
EP
856 if (ssid == pos->ae.ssid &&
857 tsid == pos->ae.tsid &&
a5dda683
EP
858 tclass == pos->ae.tclass &&
859 seqno == pos->ae.avd.seqno){
1da177e4
LT
860 orig = pos;
861 break;
862 }
863 }
864
865 if (!orig) {
866 rc = -ENOENT;
e67b7985 867 avc_node_kill(node);
1da177e4
LT
868 goto out_unlock;
869 }
870
871 /*
872 * Copy and replace original node.
873 */
874
21193dcd 875 avc_node_populate(node, ssid, tsid, tclass, &orig->ae.avd);
1da177e4 876
fa1aa143
JVS
877 if (orig->ae.xp_node) {
878 rc = avc_xperms_populate(node, orig->ae.xp_node);
879 if (rc) {
e67b7985 880 avc_node_kill(node);
fa1aa143
JVS
881 goto out_unlock;
882 }
883 }
884
1da177e4
LT
885 switch (event) {
886 case AVC_CALLBACK_GRANT:
887 node->ae.avd.allowed |= perms;
fa1aa143 888 if (node->ae.xp_node && (flags & AVC_EXTENDED_PERMS))
5e7f0efd 889 avc_xperms_allow_perm(node->ae.xp_node, driver, base_perm, xperm);
1da177e4
LT
890 break;
891 case AVC_CALLBACK_TRY_REVOKE:
892 case AVC_CALLBACK_REVOKE:
893 node->ae.avd.allowed &= ~perms;
894 break;
895 case AVC_CALLBACK_AUDITALLOW_ENABLE:
896 node->ae.avd.auditallow |= perms;
897 break;
898 case AVC_CALLBACK_AUDITALLOW_DISABLE:
899 node->ae.avd.auditallow &= ~perms;
900 break;
901 case AVC_CALLBACK_AUDITDENY_ENABLE:
902 node->ae.avd.auditdeny |= perms;
903 break;
904 case AVC_CALLBACK_AUDITDENY_DISABLE:
905 node->ae.avd.auditdeny &= ~perms;
906 break;
fa1aa143 907 case AVC_CALLBACK_ADD_XPERMS:
6dd1e4c0
ZL
908 rc = avc_add_xperms_decision(node, xpd);
909 if (rc) {
910 avc_node_kill(node);
911 goto out_unlock;
912 }
fa1aa143 913 break;
1da177e4 914 }
e67b7985 915 avc_node_replace(node, orig);
1da177e4 916out_unlock:
edf3d1ae 917 spin_unlock_irqrestore(lock, flag);
1da177e4
LT
918out:
919 return rc;
920}
921
922/**
008574b1 923 * avc_flush - Flush the cache
1da177e4 924 */
e67b7985 925static void avc_flush(void)
1da177e4 926{
26036651 927 struct hlist_head *head;
008574b1 928 struct avc_node *node;
edf3d1ae 929 spinlock_t *lock;
008574b1
EP
930 unsigned long flag;
931 int i;
1da177e4
LT
932
933 for (i = 0; i < AVC_CACHE_SLOTS; i++) {
e67b7985
SS
934 head = &selinux_avc.avc_cache.slots[i];
935 lock = &selinux_avc.avc_cache.slots_lock[i];
edf3d1ae
EP
936
937 spin_lock_irqsave(lock, flag);
61844250 938 /*
75eb39f2 939 * With preemptible RCU, the outer spinlock does not
61844250
PM
940 * prevent RCU grace periods from ending.
941 */
942 rcu_read_lock();
b67bfe0d 943 hlist_for_each_entry(node, head, list)
e67b7985 944 avc_node_delete(node);
61844250 945 rcu_read_unlock();
edf3d1ae 946 spin_unlock_irqrestore(lock, flag);
1da177e4 947 }
008574b1
EP
948}
949
950/**
951 * avc_ss_reset - Flush the cache and revalidate migrated permissions.
952 * @seqno: policy sequence number
953 */
e67b7985 954int avc_ss_reset(u32 seqno)
008574b1
EP
955{
956 struct avc_callback_node *c;
957 int rc = 0, tmprc;
958
e67b7985 959 avc_flush();
1da177e4
LT
960
961 for (c = avc_callbacks; c; c = c->next) {
962 if (c->events & AVC_CALLBACK_RESET) {
562c99f2 963 tmprc = c->callback(AVC_CALLBACK_RESET);
376bd9cb
DG
964 /* save the first error encountered for the return
965 value and continue processing the callbacks */
966 if (!rc)
967 rc = tmprc;
1da177e4
LT
968 }
969 }
970
e67b7985 971 avc_latest_notif_update(seqno, 0);
1da177e4
LT
972 return rc;
973}
974
f62ca0b6
PM
975/**
976 * avc_compute_av - Add an entry to the AVC based on the security policy
f62ca0b6
PM
977 * @ssid: subject
978 * @tsid: object/target
979 * @tclass: object class
980 * @avd: access vector decision
981 * @xp_node: AVC extended permissions node
a554bea8 982 *
f62ca0b6
PM
983 * Slow-path helper function for avc_has_perm_noaudit, when the avc_node lookup
984 * fails. Don't inline this, since it's the slow-path and just results in a
985 * bigger stack frame.
a554bea8 986 */
539813e4
SS
987static noinline void avc_compute_av(u32 ssid, u32 tsid, u16 tclass,
988 struct av_decision *avd,
989 struct avc_xperms_node *xp_node)
a554bea8 990{
fa1aa143 991 INIT_LIST_HEAD(&xp_node->xpd_head);
e67b7985 992 security_compute_av(ssid, tsid, tclass, avd, &xp_node->xp);
539813e4 993 avc_insert(ssid, tsid, tclass, avd, xp_node);
a554bea8
LT
994}
995
5e7f0efd
TW
996static noinline int avc_denied(u32 ssid, u32 tsid, u16 tclass, u32 requested,
997 u8 driver, u8 base_perm, u8 xperm,
998 unsigned int flags, struct av_decision *avd)
a554bea8
LT
999{
1000 if (flags & AVC_STRICT)
1001 return -EACCES;
1002
e67b7985 1003 if (enforcing_enabled() &&
aa8e712c 1004 !(avd->flags & AVD_FLAGS_PERMISSIVE))
a554bea8
LT
1005 return -EACCES;
1006
5e7f0efd 1007 avc_update_node(AVC_CALLBACK_GRANT, requested, driver, base_perm,
6b6bc620 1008 xperm, ssid, tsid, tclass, avd->seqno, NULL, flags);
a554bea8
LT
1009 return 0;
1010}
1011
fa1aa143
JVS
1012/*
1013 * The avc extended permissions logic adds an additional 256 bits of
1014 * permissions to an avc node when extended permissions for that node are
1015 * specified in the avtab. If the additional 256 permissions is not adequate,
1016 * as-is the case with ioctls, then multiple may be chained together and the
1017 * driver field is used to specify which set contains the permission.
1018 */
e67b7985 1019int avc_has_extended_perms(u32 ssid, u32 tsid, u16 tclass, u32 requested,
5e7f0efd
TW
1020 u8 driver, u8 base_perm, u8 xperm,
1021 struct common_audit_data *ad)
fa1aa143
JVS
1022{
1023 struct avc_node *node;
1024 struct av_decision avd;
1025 u32 denied;
1026 struct extended_perms_decision local_xpd;
1027 struct extended_perms_decision *xpd = NULL;
1028 struct extended_perms_data allowed;
1029 struct extended_perms_data auditallow;
1030 struct extended_perms_data dontaudit;
1031 struct avc_xperms_node local_xp_node;
1032 struct avc_xperms_node *xp_node;
1033 int rc = 0, rc2;
1034
1035 xp_node = &local_xp_node;
e6f2f381
OM
1036 if (WARN_ON(!requested))
1037 return -EACCES;
fa1aa143
JVS
1038
1039 rcu_read_lock();
1040
e67b7985 1041 node = avc_lookup(ssid, tsid, tclass);
fa1aa143 1042 if (unlikely(!node)) {
e67b7985 1043 avc_compute_av(ssid, tsid, tclass, &avd, xp_node);
fa1aa143
JVS
1044 } else {
1045 memcpy(&avd, &node->ae.avd, sizeof(avd));
1046 xp_node = node->ae.xp_node;
1047 }
1048 /* if extended permissions are not defined, only consider av_decision */
1049 if (!xp_node || !xp_node->xp.len)
1050 goto decision;
1051
1052 local_xpd.allowed = &allowed;
1053 local_xpd.auditallow = &auditallow;
1054 local_xpd.dontaudit = &dontaudit;
1055
5e7f0efd 1056 xpd = avc_xperms_decision_lookup(driver, base_perm, xp_node);
fa1aa143
JVS
1057 if (unlikely(!xpd)) {
1058 /*
1059 * Compute the extended_perms_decision only if the driver
5e7f0efd 1060 * is flagged and the base permission is known.
fa1aa143 1061 */
5e7f0efd
TW
1062 if (!security_xperm_test(xp_node->xp.drivers.p, driver) ||
1063 !(xp_node->xp.base_perms & base_perm)) {
fa1aa143
JVS
1064 avd.allowed &= ~requested;
1065 goto decision;
1066 }
1067 rcu_read_unlock();
5e7f0efd
TW
1068 security_compute_xperms_decision(ssid, tsid, tclass, driver,
1069 base_perm, &local_xpd);
fa1aa143 1070 rcu_read_lock();
5e7f0efd
TW
1071 avc_update_node(AVC_CALLBACK_ADD_XPERMS, requested, driver,
1072 base_perm, xperm, ssid, tsid, tclass, avd.seqno,
6b6bc620 1073 &local_xpd, 0);
fa1aa143
JVS
1074 } else {
1075 avc_quick_copy_xperms_decision(xperm, &local_xpd, xpd);
1076 }
1077 xpd = &local_xpd;
1078
1079 if (!avc_xperms_has_perm(xpd, xperm, XPERMS_ALLOWED))
1080 avd.allowed &= ~requested;
1081
1082decision:
1083 denied = requested & ~(avd.allowed);
1084 if (unlikely(denied))
5e7f0efd
TW
1085 rc = avc_denied(ssid, tsid, tclass, requested, driver,
1086 base_perm, xperm, AVC_EXTENDED_PERMS, &avd);
fa1aa143
JVS
1087
1088 rcu_read_unlock();
1089
e67b7985 1090 rc2 = avc_xperms_audit(ssid, tsid, tclass, requested,
fa1aa143
JVS
1091 &avd, xpd, xperm, rc, ad);
1092 if (rc2)
1093 return rc2;
1094 return rc;
1095}
a554bea8 1096
f62ca0b6
PM
1097/**
1098 * avc_perm_nonode - Add an entry to the AVC
f62ca0b6
PM
1099 * @ssid: subject
1100 * @tsid: object/target
1101 * @tclass: object class
1102 * @requested: requested permissions
1103 * @flags: AVC flags
1104 * @avd: access vector decision
1105 *
1106 * This is the "we have no node" part of avc_has_perm_noaudit(), which is
1107 * unlikely and needs extra stack space for the new node that we generate, so
1108 * don't inline it.
1109 */
e67b7985 1110static noinline int avc_perm_nonode(u32 ssid, u32 tsid, u16 tclass,
f62ca0b6
PM
1111 u32 requested, unsigned int flags,
1112 struct av_decision *avd)
1113{
1114 u32 denied;
1115 struct avc_xperms_node xp_node;
1116
e67b7985 1117 avc_compute_av(ssid, tsid, tclass, avd, &xp_node);
f62ca0b6
PM
1118 denied = requested & ~(avd->allowed);
1119 if (unlikely(denied))
5e7f0efd 1120 return avc_denied(ssid, tsid, tclass, requested, 0, 0, 0,
f62ca0b6
PM
1121 flags, avd);
1122 return 0;
1123}
1124
1da177e4
LT
1125/**
1126 * avc_has_perm_noaudit - Check permissions but perform no auditing.
1127 * @ssid: source security identifier
1128 * @tsid: target security identifier
1129 * @tclass: target security class
1130 * @requested: requested permissions, interpreted based on @tclass
b17ec22f 1131 * @flags: AVC_STRICT or 0
1da177e4
LT
1132 * @avd: access vector decisions
1133 *
1134 * Check the AVC to determine whether the @requested permissions are granted
1135 * for the SID pair (@ssid, @tsid), interpreting the permissions
1136 * based on @tclass, and call the security server on a cache miss to obtain
1137 * a new decision and add it to the cache. Return a copy of the decisions
1138 * in @avd. Return %0 if all @requested permissions are granted,
1139 * -%EACCES if any permissions are denied, or another -errno upon
1140 * other errors. This function is typically called by avc_has_perm(),
1141 * but may also be called directly to separate permission checking from
1142 * auditing, e.g. in cases where a lock must be held for the check but
1143 * should be released for the auditing.
1144 */
e67b7985 1145inline int avc_has_perm_noaudit(u32 ssid, u32 tsid,
6b6bc620
SS
1146 u16 tclass, u32 requested,
1147 unsigned int flags,
1148 struct av_decision *avd)
1da177e4 1149{
1da177e4 1150 u32 denied;
f62ca0b6 1151 struct avc_node *node;
1da177e4 1152
e6f2f381
OM
1153 if (WARN_ON(!requested))
1154 return -EACCES;
eda4f69c 1155
1da177e4 1156 rcu_read_lock();
e67b7985 1157 node = avc_lookup(ssid, tsid, tclass);
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PM
1158 if (unlikely(!node)) {
1159 rcu_read_unlock();
e67b7985 1160 return avc_perm_nonode(ssid, tsid, tclass, requested,
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PM
1161 flags, avd);
1162 }
1163 denied = requested & ~node->ae.avd.allowed;
1164 memcpy(avd, &node->ae.avd, sizeof(*avd));
1165 rcu_read_unlock();
1da177e4 1166
a554bea8 1167 if (unlikely(denied))
5e7f0efd 1168 return avc_denied(ssid, tsid, tclass, requested, 0, 0, 0,
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PM
1169 flags, avd);
1170 return 0;
1da177e4
LT
1171}
1172
1173/**
1174 * avc_has_perm - Check permissions and perform any appropriate auditing.
1175 * @ssid: source security identifier
1176 * @tsid: target security identifier
1177 * @tclass: target security class
1178 * @requested: requested permissions, interpreted based on @tclass
1179 * @auditdata: auxiliary audit data
1180 *
1181 * Check the AVC to determine whether the @requested permissions are granted
1182 * for the SID pair (@ssid, @tsid), interpreting the permissions
1183 * based on @tclass, and call the security server on a cache miss to obtain
1184 * a new decision and add it to the cache. Audit the granting or denial of
1185 * permissions in accordance with the policy. Return %0 if all @requested
1186 * permissions are granted, -%EACCES if any permissions are denied, or
1187 * another -errno upon other errors.
1188 */
e67b7985 1189int avc_has_perm(u32 ssid, u32 tsid, u16 tclass,
cb4fbe57 1190 u32 requested, struct common_audit_data *auditdata)
1da177e4
LT
1191{
1192 struct av_decision avd;
9ade0cf4 1193 int rc, rc2;
1da177e4 1194
e67b7985 1195 rc = avc_has_perm_noaudit(ssid, tsid, tclass, requested, 0,
6b6bc620 1196 &avd);
9ade0cf4 1197
e67b7985 1198 rc2 = avc_audit(ssid, tsid, tclass, requested, &avd, rc,
d99cf13f 1199 auditdata);
1a37079c
SS
1200 if (rc2)
1201 return rc2;
1202 return rc;
1203}
1204
e67b7985 1205u32 avc_policy_seqno(void)
788e7dd4 1206{
e67b7985 1207 return selinux_avc.avc_cache.latest_notif;
788e7dd4 1208}