audit: use a consistent audit helper to log lsm information
[linux-2.6-block.git] / kernel / audit.c
CommitLineData
85c8721f 1/* audit.c -- Auditing support
1da177e4
LT
2 * Gateway between the kernel (e.g., selinux) and the user-space audit daemon.
3 * System-call specific features have moved to auditsc.c
4 *
6a01b07f 5 * Copyright 2003-2007 Red Hat Inc., Durham, North Carolina.
1da177e4
LT
6 * All Rights Reserved.
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2 of the License, or
11 * (at your option) any later version.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 *
18 * You should have received a copy of the GNU General Public License
19 * along with this program; if not, write to the Free Software
20 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
21 *
22 * Written by Rickard E. (Rik) Faith <faith@redhat.com>
23 *
d7a96f3a 24 * Goals: 1) Integrate fully with Security Modules.
1da177e4
LT
25 * 2) Minimal run-time overhead:
26 * a) Minimal when syscall auditing is disabled (audit_enable=0).
27 * b) Small when syscall auditing is enabled and no audit record
28 * is generated (defer as much work as possible to record
29 * generation time):
30 * i) context is allocated,
31 * ii) names from getname are stored without a copy, and
32 * iii) inode information stored from path_lookup.
33 * 3) Ability to disable syscall auditing at boot time (audit=0).
34 * 4) Usable by other parts of the kernel (if audit_log* is called,
35 * then a syscall record will be generated automatically for the
36 * current syscall).
37 * 5) Netlink interface to user-space.
38 * 6) Support low-overhead kernel-based filtering to minimize the
39 * information that must be passed to user-space.
40 *
85c8721f 41 * Example user-space utilities: http://people.redhat.com/sgrubb/audit/
1da177e4
LT
42 */
43
44#include <linux/init.h>
1da177e4 45#include <asm/types.h>
60063497 46#include <linux/atomic.h>
1da177e4 47#include <linux/mm.h>
9984de1a 48#include <linux/export.h>
5a0e3ad6 49#include <linux/slab.h>
b7d11258
DW
50#include <linux/err.h>
51#include <linux/kthread.h>
1da177e4
LT
52
53#include <linux/audit.h>
54
55#include <net/sock.h>
93315ed6 56#include <net/netlink.h>
1da177e4 57#include <linux/skbuff.h>
131ad62d
MDF
58#ifdef CONFIG_SECURITY
59#include <linux/security.h>
60#endif
1da177e4 61#include <linux/netlink.h>
7dfb7103 62#include <linux/freezer.h>
522ed776 63#include <linux/tty.h>
34e36d8e 64#include <linux/pid_namespace.h>
3dc7e315
DG
65
66#include "audit.h"
1da177e4 67
a3f07114 68/* No auditing will take place until audit_initialized == AUDIT_INITIALIZED.
1da177e4 69 * (Initialization happens after skb_init is called.) */
a3f07114
EP
70#define AUDIT_DISABLED -1
71#define AUDIT_UNINITIALIZED 0
72#define AUDIT_INITIALIZED 1
1da177e4
LT
73static int audit_initialized;
74
1a6b9f23
EP
75#define AUDIT_OFF 0
76#define AUDIT_ON 1
77#define AUDIT_LOCKED 2
1da177e4 78int audit_enabled;
b593d384 79int audit_ever_enabled;
1da177e4 80
ae9d67af
JE
81EXPORT_SYMBOL_GPL(audit_enabled);
82
1da177e4
LT
83/* Default state when kernel boots without any parameters. */
84static int audit_default;
85
86/* If auditing cannot proceed, audit_failure selects what happens. */
87static int audit_failure = AUDIT_FAIL_PRINTK;
88
75c0371a
PE
89/*
90 * If audit records are to be written to the netlink socket, audit_pid
15e47304
EB
91 * contains the pid of the auditd process and audit_nlk_portid contains
92 * the portid to use to send netlink messages to that process.
75c0371a 93 */
c2f0c7c3 94int audit_pid;
15e47304 95static int audit_nlk_portid;
1da177e4 96
b0dd25a8 97/* If audit_rate_limit is non-zero, limit the rate of sending audit records
1da177e4
LT
98 * to that number per second. This prevents DoS attacks, but results in
99 * audit records being dropped. */
100static int audit_rate_limit;
101
102/* Number of outstanding audit_buffers allowed. */
103static int audit_backlog_limit = 64;
ac4cec44
DW
104static int audit_backlog_wait_time = 60 * HZ;
105static int audit_backlog_wait_overflow = 0;
1da177e4 106
c2f0c7c3 107/* The identity of the user shutting down the audit system. */
cca080d9 108kuid_t audit_sig_uid = INVALID_UID;
c2f0c7c3 109pid_t audit_sig_pid = -1;
e1396065 110u32 audit_sig_sid = 0;
c2f0c7c3 111
1da177e4
LT
112/* Records can be lost in several ways:
113 0) [suppressed in audit_alloc]
114 1) out of memory in audit_log_start [kmalloc of struct audit_buffer]
115 2) out of memory in audit_log_move [alloc_skb]
116 3) suppressed due to audit_rate_limit
117 4) suppressed due to audit_backlog_limit
118*/
119static atomic_t audit_lost = ATOMIC_INIT(0);
120
121/* The netlink socket. */
122static struct sock *audit_sock;
123
f368c07d
AG
124/* Hash for inode-based rules */
125struct list_head audit_inode_hash[AUDIT_INODE_BUCKETS];
126
b7d11258 127/* The audit_freelist is a list of pre-allocated audit buffers (if more
1da177e4
LT
128 * than AUDIT_MAXFREE are in use, the audit buffer is freed instead of
129 * being placed on the freelist). */
1da177e4 130static DEFINE_SPINLOCK(audit_freelist_lock);
b0dd25a8 131static int audit_freelist_count;
1da177e4
LT
132static LIST_HEAD(audit_freelist);
133
b7d11258 134static struct sk_buff_head audit_skb_queue;
f3d357b0
EP
135/* queue of skbs to send to auditd when/if it comes back */
136static struct sk_buff_head audit_skb_hold_queue;
b7d11258
DW
137static struct task_struct *kauditd_task;
138static DECLARE_WAIT_QUEUE_HEAD(kauditd_wait);
9ad9ad38 139static DECLARE_WAIT_QUEUE_HEAD(audit_backlog_wait);
1da177e4 140
f368c07d 141/* Serialize requests from userspace. */
916d7576 142DEFINE_MUTEX(audit_cmd_mutex);
1da177e4
LT
143
144/* AUDIT_BUFSIZ is the size of the temporary buffer used for formatting
145 * audit records. Since printk uses a 1024 byte buffer, this buffer
146 * should be at least that large. */
147#define AUDIT_BUFSIZ 1024
148
149/* AUDIT_MAXFREE is the number of empty audit_buffers we keep on the
150 * audit_freelist. Doing so eliminates many kmalloc/kfree calls. */
151#define AUDIT_MAXFREE (2*NR_CPUS)
152
153/* The audit_buffer is used when formatting an audit record. The caller
154 * locks briefly to get the record off the freelist or to allocate the
155 * buffer, and locks briefly to send the buffer to the netlink layer or
156 * to place it on a transmit queue. Multiple audit_buffers can be in
157 * use simultaneously. */
158struct audit_buffer {
159 struct list_head list;
8fc6115c 160 struct sk_buff *skb; /* formatted skb ready to send */
1da177e4 161 struct audit_context *ctx; /* NULL or associated context */
9796fdd8 162 gfp_t gfp_mask;
1da177e4
LT
163};
164
f09ac9db
EP
165struct audit_reply {
166 int pid;
167 struct sk_buff *skb;
168};
169
c0404993
SG
170static void audit_set_pid(struct audit_buffer *ab, pid_t pid)
171{
50397bd1
EP
172 if (ab) {
173 struct nlmsghdr *nlh = nlmsg_hdr(ab->skb);
174 nlh->nlmsg_pid = pid;
175 }
c0404993
SG
176}
177
8c8570fb 178void audit_panic(const char *message)
1da177e4
LT
179{
180 switch (audit_failure)
181 {
182 case AUDIT_FAIL_SILENT:
183 break;
184 case AUDIT_FAIL_PRINTK:
320f1b1e
EP
185 if (printk_ratelimit())
186 printk(KERN_ERR "audit: %s\n", message);
1da177e4
LT
187 break;
188 case AUDIT_FAIL_PANIC:
b29ee87e
EP
189 /* test audit_pid since printk is always losey, why bother? */
190 if (audit_pid)
191 panic("audit: %s\n", message);
1da177e4
LT
192 break;
193 }
194}
195
196static inline int audit_rate_check(void)
197{
198 static unsigned long last_check = 0;
199 static int messages = 0;
200 static DEFINE_SPINLOCK(lock);
201 unsigned long flags;
202 unsigned long now;
203 unsigned long elapsed;
204 int retval = 0;
205
206 if (!audit_rate_limit) return 1;
207
208 spin_lock_irqsave(&lock, flags);
209 if (++messages < audit_rate_limit) {
210 retval = 1;
211 } else {
212 now = jiffies;
213 elapsed = now - last_check;
214 if (elapsed > HZ) {
215 last_check = now;
216 messages = 0;
217 retval = 1;
218 }
219 }
220 spin_unlock_irqrestore(&lock, flags);
221
222 return retval;
223}
224
b0dd25a8
RD
225/**
226 * audit_log_lost - conditionally log lost audit message event
227 * @message: the message stating reason for lost audit message
228 *
229 * Emit at least 1 message per second, even if audit_rate_check is
230 * throttling.
231 * Always increment the lost messages counter.
232*/
1da177e4
LT
233void audit_log_lost(const char *message)
234{
235 static unsigned long last_msg = 0;
236 static DEFINE_SPINLOCK(lock);
237 unsigned long flags;
238 unsigned long now;
239 int print;
240
241 atomic_inc(&audit_lost);
242
243 print = (audit_failure == AUDIT_FAIL_PANIC || !audit_rate_limit);
244
245 if (!print) {
246 spin_lock_irqsave(&lock, flags);
247 now = jiffies;
248 if (now - last_msg > HZ) {
249 print = 1;
250 last_msg = now;
251 }
252 spin_unlock_irqrestore(&lock, flags);
253 }
254
255 if (print) {
320f1b1e
EP
256 if (printk_ratelimit())
257 printk(KERN_WARNING
258 "audit: audit_lost=%d audit_rate_limit=%d "
259 "audit_backlog_limit=%d\n",
260 atomic_read(&audit_lost),
261 audit_rate_limit,
262 audit_backlog_limit);
1da177e4
LT
263 audit_panic(message);
264 }
1da177e4
LT
265}
266
1a6b9f23 267static int audit_log_config_change(char *function_name, int new, int old,
2532386f 268 int allow_changes)
1da177e4 269{
1a6b9f23
EP
270 struct audit_buffer *ab;
271 int rc = 0;
dc9eb698
EP
272 u32 sessionid = audit_get_sessionid(current);
273 uid_t auid = from_kuid(&init_user_ns, audit_get_loginuid(current));
ce29b682 274
1a6b9f23 275 ab = audit_log_start(NULL, GFP_KERNEL, AUDIT_CONFIG_CHANGE);
0644ec0c
KC
276 if (unlikely(!ab))
277 return rc;
2532386f 278 audit_log_format(ab, "%s=%d old=%d auid=%u ses=%u", function_name, new,
dc9eb698 279 old, auid, sessionid);
b122c376
EP
280 rc = audit_log_task_context(ab);
281 if (rc)
282 allow_changes = 0; /* Something weird, deny request */
1a6b9f23
EP
283 audit_log_format(ab, " res=%d", allow_changes);
284 audit_log_end(ab);
6a01b07f 285 return rc;
1da177e4
LT
286}
287
dc9eb698 288static int audit_do_config_change(char *function_name, int *to_change, int new)
1da177e4 289{
1a6b9f23 290 int allow_changes, rc = 0, old = *to_change;
6a01b07f
SG
291
292 /* check if we are locked */
1a6b9f23
EP
293 if (audit_enabled == AUDIT_LOCKED)
294 allow_changes = 0;
6a01b07f 295 else
1a6b9f23 296 allow_changes = 1;
ce29b682 297
1a6b9f23 298 if (audit_enabled != AUDIT_OFF) {
dc9eb698 299 rc = audit_log_config_change(function_name, new, old, allow_changes);
1a6b9f23
EP
300 if (rc)
301 allow_changes = 0;
6a01b07f 302 }
6a01b07f
SG
303
304 /* If we are allowed, make the change */
1a6b9f23
EP
305 if (allow_changes == 1)
306 *to_change = new;
6a01b07f
SG
307 /* Not allowed, update reason */
308 else if (rc == 0)
309 rc = -EPERM;
310 return rc;
1da177e4
LT
311}
312
dc9eb698 313static int audit_set_rate_limit(int limit)
1da177e4 314{
dc9eb698 315 return audit_do_config_change("audit_rate_limit", &audit_rate_limit, limit);
1a6b9f23 316}
ce29b682 317
dc9eb698 318static int audit_set_backlog_limit(int limit)
1a6b9f23 319{
dc9eb698 320 return audit_do_config_change("audit_backlog_limit", &audit_backlog_limit, limit);
1a6b9f23 321}
6a01b07f 322
dc9eb698 323static int audit_set_enabled(int state)
1a6b9f23 324{
b593d384 325 int rc;
1a6b9f23
EP
326 if (state < AUDIT_OFF || state > AUDIT_LOCKED)
327 return -EINVAL;
6a01b07f 328
dc9eb698 329 rc = audit_do_config_change("audit_enabled", &audit_enabled, state);
b593d384
EP
330 if (!rc)
331 audit_ever_enabled |= !!state;
332
333 return rc;
1da177e4
LT
334}
335
dc9eb698 336static int audit_set_failure(int state)
1da177e4 337{
1da177e4
LT
338 if (state != AUDIT_FAIL_SILENT
339 && state != AUDIT_FAIL_PRINTK
340 && state != AUDIT_FAIL_PANIC)
341 return -EINVAL;
ce29b682 342
dc9eb698 343 return audit_do_config_change("audit_failure", &audit_failure, state);
1da177e4
LT
344}
345
f3d357b0
EP
346/*
347 * Queue skbs to be sent to auditd when/if it comes back. These skbs should
348 * already have been sent via prink/syslog and so if these messages are dropped
349 * it is not a huge concern since we already passed the audit_log_lost()
350 * notification and stuff. This is just nice to get audit messages during
351 * boot before auditd is running or messages generated while auditd is stopped.
352 * This only holds messages is audit_default is set, aka booting with audit=1
353 * or building your kernel that way.
354 */
355static void audit_hold_skb(struct sk_buff *skb)
356{
357 if (audit_default &&
358 skb_queue_len(&audit_skb_hold_queue) < audit_backlog_limit)
359 skb_queue_tail(&audit_skb_hold_queue, skb);
360 else
361 kfree_skb(skb);
362}
363
038cbcf6
EP
364/*
365 * For one reason or another this nlh isn't getting delivered to the userspace
366 * audit daemon, just send it to printk.
367 */
368static void audit_printk_skb(struct sk_buff *skb)
369{
370 struct nlmsghdr *nlh = nlmsg_hdr(skb);
c64e66c6 371 char *data = nlmsg_data(nlh);
038cbcf6
EP
372
373 if (nlh->nlmsg_type != AUDIT_EOE) {
374 if (printk_ratelimit())
375 printk(KERN_NOTICE "type=%d %s\n", nlh->nlmsg_type, data);
376 else
377 audit_log_lost("printk limit exceeded\n");
378 }
379
380 audit_hold_skb(skb);
381}
382
f3d357b0
EP
383static void kauditd_send_skb(struct sk_buff *skb)
384{
385 int err;
386 /* take a reference in case we can't send it and we want to hold it */
387 skb_get(skb);
15e47304 388 err = netlink_unicast(audit_sock, skb, audit_nlk_portid, 0);
f3d357b0 389 if (err < 0) {
c9404c9c 390 BUG_ON(err != -ECONNREFUSED); /* Shouldn't happen */
f3d357b0 391 printk(KERN_ERR "audit: *NO* daemon at audit_pid=%d\n", audit_pid);
9db3b9bc 392 audit_log_lost("auditd disappeared\n");
f3d357b0
EP
393 audit_pid = 0;
394 /* we might get lucky and get this in the next auditd */
395 audit_hold_skb(skb);
396 } else
397 /* drop the extra reference if sent ok */
70d4bf6d 398 consume_skb(skb);
f3d357b0
EP
399}
400
b551d1d9
RGB
401/*
402 * flush_hold_queue - empty the hold queue if auditd appears
403 *
404 * If auditd just started, drain the queue of messages already
405 * sent to syslog/printk. Remember loss here is ok. We already
406 * called audit_log_lost() if it didn't go out normally. so the
407 * race between the skb_dequeue and the next check for audit_pid
408 * doesn't matter.
409 *
410 * If you ever find kauditd to be too slow we can get a perf win
411 * by doing our own locking and keeping better track if there
412 * are messages in this queue. I don't see the need now, but
413 * in 5 years when I want to play with this again I'll see this
414 * note and still have no friggin idea what i'm thinking today.
415 */
416static void flush_hold_queue(void)
417{
418 struct sk_buff *skb;
419
420 if (!audit_default || !audit_pid)
421 return;
422
423 skb = skb_dequeue(&audit_skb_hold_queue);
424 if (likely(!skb))
425 return;
426
427 while (skb && audit_pid) {
428 kauditd_send_skb(skb);
429 skb = skb_dequeue(&audit_skb_hold_queue);
430 }
431
432 /*
433 * if auditd just disappeared but we
434 * dequeued an skb we need to drop ref
435 */
436 if (skb)
437 consume_skb(skb);
438}
439
97a41e26 440static int kauditd_thread(void *dummy)
b7d11258 441{
83144186 442 set_freezable();
4899b8b1 443 while (!kthread_should_stop()) {
3320c513
RGB
444 struct sk_buff *skb;
445 DECLARE_WAITQUEUE(wait, current);
446
b551d1d9 447 flush_hold_queue();
f3d357b0 448
b7d11258 449 skb = skb_dequeue(&audit_skb_queue);
9ad9ad38 450 wake_up(&audit_backlog_wait);
b7d11258 451 if (skb) {
f3d357b0
EP
452 if (audit_pid)
453 kauditd_send_skb(skb);
038cbcf6
EP
454 else
455 audit_printk_skb(skb);
3320c513
RGB
456 continue;
457 }
458 set_current_state(TASK_INTERRUPTIBLE);
459 add_wait_queue(&kauditd_wait, &wait);
b7d11258 460
3320c513
RGB
461 if (!skb_queue_len(&audit_skb_queue)) {
462 try_to_freeze();
463 schedule();
b7d11258 464 }
3320c513
RGB
465
466 __set_current_state(TASK_RUNNING);
467 remove_wait_queue(&kauditd_wait, &wait);
b7d11258 468 }
4899b8b1 469 return 0;
b7d11258
DW
470}
471
9044e6bc
AV
472int audit_send_list(void *_dest)
473{
474 struct audit_netlink_list *dest = _dest;
475 int pid = dest->pid;
476 struct sk_buff *skb;
477
478 /* wait for parent to finish and send an ACK */
f368c07d
AG
479 mutex_lock(&audit_cmd_mutex);
480 mutex_unlock(&audit_cmd_mutex);
9044e6bc
AV
481
482 while ((skb = __skb_dequeue(&dest->q)) != NULL)
483 netlink_unicast(audit_sock, skb, pid, 0);
484
485 kfree(dest);
486
487 return 0;
488}
489
490struct sk_buff *audit_make_reply(int pid, int seq, int type, int done,
b8800aa5 491 int multi, const void *payload, int size)
9044e6bc
AV
492{
493 struct sk_buff *skb;
494 struct nlmsghdr *nlh;
9044e6bc
AV
495 void *data;
496 int flags = multi ? NLM_F_MULTI : 0;
497 int t = done ? NLMSG_DONE : type;
498
ee080e6c 499 skb = nlmsg_new(size, GFP_KERNEL);
9044e6bc
AV
500 if (!skb)
501 return NULL;
502
c64e66c6
DM
503 nlh = nlmsg_put(skb, pid, seq, t, size, flags);
504 if (!nlh)
505 goto out_kfree_skb;
506 data = nlmsg_data(nlh);
9044e6bc
AV
507 memcpy(data, payload, size);
508 return skb;
509
c64e66c6
DM
510out_kfree_skb:
511 kfree_skb(skb);
9044e6bc
AV
512 return NULL;
513}
514
f09ac9db
EP
515static int audit_send_reply_thread(void *arg)
516{
517 struct audit_reply *reply = (struct audit_reply *)arg;
518
519 mutex_lock(&audit_cmd_mutex);
520 mutex_unlock(&audit_cmd_mutex);
521
522 /* Ignore failure. It'll only happen if the sender goes away,
523 because our timeout is set to infinite. */
524 netlink_unicast(audit_sock, reply->skb, reply->pid, 0);
525 kfree(reply);
526 return 0;
527}
b0dd25a8
RD
528/**
529 * audit_send_reply - send an audit reply message via netlink
530 * @pid: process id to send reply to
531 * @seq: sequence number
532 * @type: audit message type
533 * @done: done (last) flag
534 * @multi: multi-part message flag
535 * @payload: payload data
536 * @size: payload size
537 *
538 * Allocates an skb, builds the netlink message, and sends it to the pid.
539 * No failure notifications.
540 */
b8800aa5
SH
541static void audit_send_reply(int pid, int seq, int type, int done, int multi,
542 const void *payload, int size)
1da177e4 543{
f09ac9db
EP
544 struct sk_buff *skb;
545 struct task_struct *tsk;
546 struct audit_reply *reply = kmalloc(sizeof(struct audit_reply),
547 GFP_KERNEL);
548
549 if (!reply)
550 return;
551
9044e6bc 552 skb = audit_make_reply(pid, seq, type, done, multi, payload, size);
1da177e4 553 if (!skb)
fcaf1eb8 554 goto out;
f09ac9db
EP
555
556 reply->pid = pid;
557 reply->skb = skb;
558
559 tsk = kthread_run(audit_send_reply_thread, reply, "audit_send_reply");
fcaf1eb8
AM
560 if (!IS_ERR(tsk))
561 return;
562 kfree_skb(skb);
563out:
564 kfree(reply);
1da177e4
LT
565}
566
567/*
568 * Check for appropriate CAP_AUDIT_ capabilities on incoming audit
569 * control messages.
570 */
c7bdb545 571static int audit_netlink_ok(struct sk_buff *skb, u16 msg_type)
1da177e4
LT
572{
573 int err = 0;
574
34e36d8e
EB
575 /* Only support the initial namespaces for now. */
576 if ((current_user_ns() != &init_user_ns) ||
577 (task_active_pid_ns(current) != &init_pid_ns))
578 return -EPERM;
579
1da177e4 580 switch (msg_type) {
1da177e4 581 case AUDIT_LIST:
1da177e4
LT
582 case AUDIT_ADD:
583 case AUDIT_DEL:
18900909
EP
584 return -EOPNOTSUPP;
585 case AUDIT_GET:
586 case AUDIT_SET:
587 case AUDIT_LIST_RULES:
588 case AUDIT_ADD_RULE:
93315ed6 589 case AUDIT_DEL_RULE:
c2f0c7c3 590 case AUDIT_SIGNAL_INFO:
522ed776
MT
591 case AUDIT_TTY_GET:
592 case AUDIT_TTY_SET:
74c3cbe3
AV
593 case AUDIT_TRIM:
594 case AUDIT_MAKE_EQUIV:
fd778461 595 if (!capable(CAP_AUDIT_CONTROL))
1da177e4
LT
596 err = -EPERM;
597 break;
05474106 598 case AUDIT_USER:
039b6b3e
RD
599 case AUDIT_FIRST_USER_MSG ... AUDIT_LAST_USER_MSG:
600 case AUDIT_FIRST_USER_MSG2 ... AUDIT_LAST_USER_MSG2:
fd778461 601 if (!capable(CAP_AUDIT_WRITE))
1da177e4
LT
602 err = -EPERM;
603 break;
604 default: /* bad msg */
605 err = -EINVAL;
606 }
607
608 return err;
609}
610
dc9eb698 611static int audit_log_common_recv_msg(struct audit_buffer **ab, u16 msg_type)
50397bd1
EP
612{
613 int rc = 0;
dc9eb698
EP
614 u32 sessionid = audit_get_sessionid(current);
615 uid_t uid = from_kuid(&init_user_ns, current_uid());
616 uid_t auid = from_kuid(&init_user_ns, audit_get_loginuid(current));
50397bd1
EP
617
618 if (!audit_enabled) {
619 *ab = NULL;
620 return rc;
621 }
622
623 *ab = audit_log_start(NULL, GFP_KERNEL, msg_type);
0644ec0c
KC
624 if (unlikely(!*ab))
625 return rc;
3035c51e 626 audit_log_format(*ab, "pid=%d uid=%u auid=%u ses=%u",
dc9eb698 627 task_tgid_vnr(current), uid, auid, sessionid);
b122c376 628 audit_log_task_context(*ab);
50397bd1
EP
629
630 return rc;
631}
632
1da177e4
LT
633static int audit_receive_msg(struct sk_buff *skb, struct nlmsghdr *nlh)
634{
dc9eb698 635 u32 seq;
1da177e4
LT
636 void *data;
637 struct audit_status *status_get, status_set;
638 int err;
c0404993 639 struct audit_buffer *ab;
1da177e4 640 u16 msg_type = nlh->nlmsg_type;
e1396065 641 struct audit_sig_info *sig_data;
50397bd1 642 char *ctx = NULL;
e1396065 643 u32 len;
1da177e4 644
c7bdb545 645 err = audit_netlink_ok(skb, msg_type);
1da177e4
LT
646 if (err)
647 return err;
648
1da177e4 649 seq = nlh->nlmsg_seq;
c64e66c6 650 data = nlmsg_data(nlh);
1da177e4
LT
651
652 switch (msg_type) {
653 case AUDIT_GET:
654 status_set.enabled = audit_enabled;
655 status_set.failure = audit_failure;
656 status_set.pid = audit_pid;
657 status_set.rate_limit = audit_rate_limit;
658 status_set.backlog_limit = audit_backlog_limit;
659 status_set.lost = atomic_read(&audit_lost);
b7d11258 660 status_set.backlog = skb_queue_len(&audit_skb_queue);
15e47304 661 audit_send_reply(NETLINK_CB(skb).portid, seq, AUDIT_GET, 0, 0,
1da177e4
LT
662 &status_set, sizeof(status_set));
663 break;
664 case AUDIT_SET:
665 if (nlh->nlmsg_len < sizeof(struct audit_status))
666 return -EINVAL;
667 status_get = (struct audit_status *)data;
668 if (status_get->mask & AUDIT_STATUS_ENABLED) {
dc9eb698 669 err = audit_set_enabled(status_get->enabled);
20c6aaa3 670 if (err < 0)
671 return err;
1da177e4
LT
672 }
673 if (status_get->mask & AUDIT_STATUS_FAILURE) {
dc9eb698 674 err = audit_set_failure(status_get->failure);
20c6aaa3 675 if (err < 0)
676 return err;
1da177e4
LT
677 }
678 if (status_get->mask & AUDIT_STATUS_PID) {
1a6b9f23
EP
679 int new_pid = status_get->pid;
680
681 if (audit_enabled != AUDIT_OFF)
dc9eb698 682 audit_log_config_change("audit_pid", new_pid, audit_pid, 1);
1a6b9f23 683 audit_pid = new_pid;
15e47304 684 audit_nlk_portid = NETLINK_CB(skb).portid;
1da177e4 685 }
20c6aaa3 686 if (status_get->mask & AUDIT_STATUS_RATE_LIMIT) {
dc9eb698 687 err = audit_set_rate_limit(status_get->rate_limit);
20c6aaa3 688 if (err < 0)
689 return err;
690 }
1da177e4 691 if (status_get->mask & AUDIT_STATUS_BACKLOG_LIMIT)
dc9eb698 692 err = audit_set_backlog_limit(status_get->backlog_limit);
1da177e4 693 break;
05474106 694 case AUDIT_USER:
039b6b3e
RD
695 case AUDIT_FIRST_USER_MSG ... AUDIT_LAST_USER_MSG:
696 case AUDIT_FIRST_USER_MSG2 ... AUDIT_LAST_USER_MSG2:
4a4cd633
DW
697 if (!audit_enabled && msg_type != AUDIT_USER_AVC)
698 return 0;
699
62062cf8 700 err = audit_filter_user(msg_type);
4a4cd633
DW
701 if (err == 1) {
702 err = 0;
522ed776 703 if (msg_type == AUDIT_USER_TTY) {
152f497b 704 err = tty_audit_push_current();
522ed776
MT
705 if (err)
706 break;
707 }
dc9eb698 708 audit_log_common_recv_msg(&ab, msg_type);
50397bd1
EP
709 if (msg_type != AUDIT_USER_TTY)
710 audit_log_format(ab, " msg='%.1024s'",
711 (char *)data);
712 else {
713 int size;
714
f7616102 715 audit_log_format(ab, " data=");
50397bd1 716 size = nlmsg_len(nlh);
55ad2f8d
MT
717 if (size > 0 &&
718 ((unsigned char *)data)[size - 1] == '\0')
719 size--;
b556f8ad 720 audit_log_n_untrustedstring(ab, data, size);
4a4cd633 721 }
aecdc33e 722 audit_set_pid(ab, NETLINK_CB(skb).portid);
50397bd1 723 audit_log_end(ab);
0f45aa18 724 }
1da177e4 725 break;
93315ed6
AG
726 case AUDIT_ADD_RULE:
727 case AUDIT_DEL_RULE:
728 if (nlmsg_len(nlh) < sizeof(struct audit_rule_data))
729 return -EINVAL;
1a6b9f23 730 if (audit_enabled == AUDIT_LOCKED) {
dc9eb698
EP
731 audit_log_common_recv_msg(&ab, AUDIT_CONFIG_CHANGE);
732 audit_log_format(ab, " audit_enabled=%d res=0", audit_enabled);
50397bd1 733 audit_log_end(ab);
6a01b07f
SG
734 return -EPERM;
735 }
93315ed6
AG
736 /* fallthrough */
737 case AUDIT_LIST_RULES:
15e47304 738 err = audit_receive_filter(msg_type, NETLINK_CB(skb).portid,
dc9eb698 739 seq, data, nlmsg_len(nlh));
1da177e4 740 break;
74c3cbe3
AV
741 case AUDIT_TRIM:
742 audit_trim_trees();
dc9eb698 743 audit_log_common_recv_msg(&ab, AUDIT_CONFIG_CHANGE);
74c3cbe3
AV
744 audit_log_format(ab, " op=trim res=1");
745 audit_log_end(ab);
746 break;
747 case AUDIT_MAKE_EQUIV: {
748 void *bufp = data;
749 u32 sizes[2];
7719e437 750 size_t msglen = nlmsg_len(nlh);
74c3cbe3
AV
751 char *old, *new;
752
753 err = -EINVAL;
7719e437 754 if (msglen < 2 * sizeof(u32))
74c3cbe3
AV
755 break;
756 memcpy(sizes, bufp, 2 * sizeof(u32));
757 bufp += 2 * sizeof(u32);
7719e437
HH
758 msglen -= 2 * sizeof(u32);
759 old = audit_unpack_string(&bufp, &msglen, sizes[0]);
74c3cbe3
AV
760 if (IS_ERR(old)) {
761 err = PTR_ERR(old);
762 break;
763 }
7719e437 764 new = audit_unpack_string(&bufp, &msglen, sizes[1]);
74c3cbe3
AV
765 if (IS_ERR(new)) {
766 err = PTR_ERR(new);
767 kfree(old);
768 break;
769 }
770 /* OK, here comes... */
771 err = audit_tag_tree(old, new);
772
dc9eb698 773 audit_log_common_recv_msg(&ab, AUDIT_CONFIG_CHANGE);
50397bd1 774
74c3cbe3
AV
775 audit_log_format(ab, " op=make_equiv old=");
776 audit_log_untrustedstring(ab, old);
777 audit_log_format(ab, " new=");
778 audit_log_untrustedstring(ab, new);
779 audit_log_format(ab, " res=%d", !err);
780 audit_log_end(ab);
781 kfree(old);
782 kfree(new);
783 break;
784 }
c2f0c7c3 785 case AUDIT_SIGNAL_INFO:
939cbf26
EP
786 len = 0;
787 if (audit_sig_sid) {
788 err = security_secid_to_secctx(audit_sig_sid, &ctx, &len);
789 if (err)
790 return err;
791 }
e1396065
AV
792 sig_data = kmalloc(sizeof(*sig_data) + len, GFP_KERNEL);
793 if (!sig_data) {
939cbf26
EP
794 if (audit_sig_sid)
795 security_release_secctx(ctx, len);
e1396065
AV
796 return -ENOMEM;
797 }
cca080d9 798 sig_data->uid = from_kuid(&init_user_ns, audit_sig_uid);
e1396065 799 sig_data->pid = audit_sig_pid;
939cbf26
EP
800 if (audit_sig_sid) {
801 memcpy(sig_data->ctx, ctx, len);
802 security_release_secctx(ctx, len);
803 }
15e47304 804 audit_send_reply(NETLINK_CB(skb).portid, seq, AUDIT_SIGNAL_INFO,
e1396065
AV
805 0, 0, sig_data, sizeof(*sig_data) + len);
806 kfree(sig_data);
c2f0c7c3 807 break;
522ed776
MT
808 case AUDIT_TTY_GET: {
809 struct audit_tty_status s;
8aa14b64
EB
810 struct task_struct *tsk = current;
811
812 spin_lock_irq(&tsk->sighand->siglock);
813 s.enabled = tsk->signal->audit_tty != 0;
814 spin_unlock_irq(&tsk->sighand->siglock);
815
aecdc33e 816 audit_send_reply(NETLINK_CB(skb).portid, seq,
8aa14b64 817 AUDIT_TTY_GET, 0, 0, &s, sizeof(s));
522ed776
MT
818 break;
819 }
820 case AUDIT_TTY_SET: {
821 struct audit_tty_status *s;
8aa14b64 822 struct task_struct *tsk = current;
522ed776
MT
823
824 if (nlh->nlmsg_len < sizeof(struct audit_tty_status))
825 return -EINVAL;
826 s = data;
827 if (s->enabled != 0 && s->enabled != 1)
828 return -EINVAL;
8aa14b64
EB
829
830 spin_lock_irq(&tsk->sighand->siglock);
831 tsk->signal->audit_tty = s->enabled != 0;
832 spin_unlock_irq(&tsk->sighand->siglock);
522ed776
MT
833 break;
834 }
1da177e4
LT
835 default:
836 err = -EINVAL;
837 break;
838 }
839
840 return err < 0 ? err : 0;
841}
842
b0dd25a8 843/*
ea7ae60b
EP
844 * Get message from skb. Each message is processed by audit_receive_msg.
845 * Malformed skbs with wrong length are discarded silently.
b0dd25a8 846 */
2a0a6ebe 847static void audit_receive_skb(struct sk_buff *skb)
1da177e4 848{
ea7ae60b
EP
849 struct nlmsghdr *nlh;
850 /*
851 * len MUST be signed for NLMSG_NEXT to be able to dec it below 0
852 * if the nlmsg_len was not aligned
853 */
854 int len;
855 int err;
856
857 nlh = nlmsg_hdr(skb);
858 len = skb->len;
859
860 while (NLMSG_OK(nlh, len)) {
861 err = audit_receive_msg(skb, nlh);
862 /* if err or if this message says it wants a response */
863 if (err || (nlh->nlmsg_flags & NLM_F_ACK))
1da177e4 864 netlink_ack(skb, nlh, err);
ea7ae60b
EP
865
866 nlh = NLMSG_NEXT(nlh, len);
1da177e4 867 }
1da177e4
LT
868}
869
870/* Receive messages from netlink socket. */
cd40b7d3 871static void audit_receive(struct sk_buff *skb)
1da177e4 872{
f368c07d 873 mutex_lock(&audit_cmd_mutex);
cd40b7d3 874 audit_receive_skb(skb);
f368c07d 875 mutex_unlock(&audit_cmd_mutex);
1da177e4
LT
876}
877
1da177e4
LT
878/* Initialize audit support at boot time. */
879static int __init audit_init(void)
880{
f368c07d 881 int i;
a31f2d17
PNA
882 struct netlink_kernel_cfg cfg = {
883 .input = audit_receive,
884 };
f368c07d 885
a3f07114
EP
886 if (audit_initialized == AUDIT_DISABLED)
887 return 0;
888
1da177e4
LT
889 printk(KERN_INFO "audit: initializing netlink socket (%s)\n",
890 audit_default ? "enabled" : "disabled");
9f00d977 891 audit_sock = netlink_kernel_create(&init_net, NETLINK_AUDIT, &cfg);
1da177e4
LT
892 if (!audit_sock)
893 audit_panic("cannot initialize netlink socket");
71e1c784
AG
894 else
895 audit_sock->sk_sndtimeo = MAX_SCHEDULE_TIMEOUT;
1da177e4 896
6ff5e459
RGB
897 kauditd_task = kthread_run(kauditd_thread, NULL, "kauditd");
898 if (IS_ERR(kauditd_task))
899 return PTR_ERR(kauditd_task);
900
b7d11258 901 skb_queue_head_init(&audit_skb_queue);
f3d357b0 902 skb_queue_head_init(&audit_skb_hold_queue);
a3f07114 903 audit_initialized = AUDIT_INITIALIZED;
1da177e4 904 audit_enabled = audit_default;
b593d384 905 audit_ever_enabled |= !!audit_default;
3dc7e315 906
9ad9ad38 907 audit_log(NULL, GFP_KERNEL, AUDIT_KERNEL, "initialized");
f368c07d 908
f368c07d
AG
909 for (i = 0; i < AUDIT_INODE_BUCKETS; i++)
910 INIT_LIST_HEAD(&audit_inode_hash[i]);
f368c07d 911
1da177e4
LT
912 return 0;
913}
1da177e4
LT
914__initcall(audit_init);
915
916/* Process kernel command-line parameter at boot time. audit=0 or audit=1. */
917static int __init audit_enable(char *str)
918{
919 audit_default = !!simple_strtol(str, NULL, 0);
a3f07114
EP
920 if (!audit_default)
921 audit_initialized = AUDIT_DISABLED;
922
923 printk(KERN_INFO "audit: %s", audit_default ? "enabled" : "disabled");
924
925 if (audit_initialized == AUDIT_INITIALIZED) {
1da177e4 926 audit_enabled = audit_default;
b593d384 927 audit_ever_enabled |= !!audit_default;
a3f07114
EP
928 } else if (audit_initialized == AUDIT_UNINITIALIZED) {
929 printk(" (after initialization)");
930 } else {
931 printk(" (until reboot)");
b593d384 932 }
a3f07114
EP
933 printk("\n");
934
9b41046c 935 return 1;
1da177e4
LT
936}
937
938__setup("audit=", audit_enable);
939
16e1904e
CW
940static void audit_buffer_free(struct audit_buffer *ab)
941{
942 unsigned long flags;
943
8fc6115c
CW
944 if (!ab)
945 return;
946
5ac52f33
CW
947 if (ab->skb)
948 kfree_skb(ab->skb);
b7d11258 949
16e1904e 950 spin_lock_irqsave(&audit_freelist_lock, flags);
5d136a01 951 if (audit_freelist_count > AUDIT_MAXFREE)
16e1904e 952 kfree(ab);
5d136a01
SH
953 else {
954 audit_freelist_count++;
16e1904e 955 list_add(&ab->list, &audit_freelist);
5d136a01 956 }
16e1904e
CW
957 spin_unlock_irqrestore(&audit_freelist_lock, flags);
958}
959
c0404993 960static struct audit_buffer * audit_buffer_alloc(struct audit_context *ctx,
dd0fc66f 961 gfp_t gfp_mask, int type)
16e1904e
CW
962{
963 unsigned long flags;
964 struct audit_buffer *ab = NULL;
c0404993 965 struct nlmsghdr *nlh;
16e1904e
CW
966
967 spin_lock_irqsave(&audit_freelist_lock, flags);
968 if (!list_empty(&audit_freelist)) {
969 ab = list_entry(audit_freelist.next,
970 struct audit_buffer, list);
971 list_del(&ab->list);
972 --audit_freelist_count;
973 }
974 spin_unlock_irqrestore(&audit_freelist_lock, flags);
975
976 if (!ab) {
4332bdd3 977 ab = kmalloc(sizeof(*ab), gfp_mask);
16e1904e 978 if (!ab)
8fc6115c 979 goto err;
16e1904e 980 }
8fc6115c 981
b7d11258 982 ab->ctx = ctx;
9ad9ad38 983 ab->gfp_mask = gfp_mask;
ee080e6c
EP
984
985 ab->skb = nlmsg_new(AUDIT_BUFSIZ, gfp_mask);
986 if (!ab->skb)
c64e66c6 987 goto err;
ee080e6c 988
c64e66c6
DM
989 nlh = nlmsg_put(ab->skb, 0, 0, type, 0, 0);
990 if (!nlh)
991 goto out_kfree_skb;
ee080e6c 992
16e1904e 993 return ab;
ee080e6c 994
c64e66c6 995out_kfree_skb:
ee080e6c
EP
996 kfree_skb(ab->skb);
997 ab->skb = NULL;
8fc6115c
CW
998err:
999 audit_buffer_free(ab);
1000 return NULL;
16e1904e 1001}
1da177e4 1002
b0dd25a8
RD
1003/**
1004 * audit_serial - compute a serial number for the audit record
1005 *
1006 * Compute a serial number for the audit record. Audit records are
bfb4496e
DW
1007 * written to user-space as soon as they are generated, so a complete
1008 * audit record may be written in several pieces. The timestamp of the
1009 * record and this serial number are used by the user-space tools to
1010 * determine which pieces belong to the same audit record. The
1011 * (timestamp,serial) tuple is unique for each syscall and is live from
1012 * syscall entry to syscall exit.
1013 *
bfb4496e
DW
1014 * NOTE: Another possibility is to store the formatted records off the
1015 * audit context (for those records that have a context), and emit them
1016 * all at syscall exit. However, this could delay the reporting of
1017 * significant errors until syscall exit (or never, if the system
b0dd25a8
RD
1018 * halts).
1019 */
bfb4496e
DW
1020unsigned int audit_serial(void)
1021{
34af946a 1022 static DEFINE_SPINLOCK(serial_lock);
d5b454f2
DW
1023 static unsigned int serial = 0;
1024
1025 unsigned long flags;
1026 unsigned int ret;
bfb4496e 1027
d5b454f2 1028 spin_lock_irqsave(&serial_lock, flags);
bfb4496e 1029 do {
ce625a80
DW
1030 ret = ++serial;
1031 } while (unlikely(!ret));
d5b454f2 1032 spin_unlock_irqrestore(&serial_lock, flags);
bfb4496e 1033
d5b454f2 1034 return ret;
bfb4496e
DW
1035}
1036
5600b892 1037static inline void audit_get_stamp(struct audit_context *ctx,
bfb4496e
DW
1038 struct timespec *t, unsigned int *serial)
1039{
48887e63 1040 if (!ctx || !auditsc_get_stamp(ctx, t, serial)) {
bfb4496e
DW
1041 *t = CURRENT_TIME;
1042 *serial = audit_serial();
1043 }
1044}
1045
82919919
AM
1046/*
1047 * Wait for auditd to drain the queue a little
1048 */
1049static void wait_for_auditd(unsigned long sleep_time)
1050{
1051 DECLARE_WAITQUEUE(wait, current);
1052 set_current_state(TASK_INTERRUPTIBLE);
1053 add_wait_queue(&audit_backlog_wait, &wait);
1054
1055 if (audit_backlog_limit &&
1056 skb_queue_len(&audit_skb_queue) > audit_backlog_limit)
1057 schedule_timeout(sleep_time);
1058
1059 __set_current_state(TASK_RUNNING);
1060 remove_wait_queue(&audit_backlog_wait, &wait);
1061}
1062
1da177e4
LT
1063/* Obtain an audit buffer. This routine does locking to obtain the
1064 * audit buffer, but then no locking is required for calls to
1065 * audit_log_*format. If the tsk is a task that is currently in a
1066 * syscall, then the syscall is marked as auditable and an audit record
1067 * will be written at syscall exit. If there is no associated task, tsk
1068 * should be NULL. */
9ad9ad38 1069
b0dd25a8
RD
1070/**
1071 * audit_log_start - obtain an audit buffer
1072 * @ctx: audit_context (may be NULL)
1073 * @gfp_mask: type of allocation
1074 * @type: audit message type
1075 *
1076 * Returns audit_buffer pointer on success or NULL on error.
1077 *
1078 * Obtain an audit buffer. This routine does locking to obtain the
1079 * audit buffer, but then no locking is required for calls to
1080 * audit_log_*format. If the task (ctx) is a task that is currently in a
1081 * syscall, then the syscall is marked as auditable and an audit record
1082 * will be written at syscall exit. If there is no associated task, then
1083 * task context (ctx) should be NULL.
1084 */
9796fdd8 1085struct audit_buffer *audit_log_start(struct audit_context *ctx, gfp_t gfp_mask,
9ad9ad38 1086 int type)
1da177e4
LT
1087{
1088 struct audit_buffer *ab = NULL;
1da177e4 1089 struct timespec t;
ef00be05 1090 unsigned int uninitialized_var(serial);
9ad9ad38 1091 int reserve;
ac4cec44 1092 unsigned long timeout_start = jiffies;
1da177e4 1093
a3f07114 1094 if (audit_initialized != AUDIT_INITIALIZED)
1da177e4
LT
1095 return NULL;
1096
c8edc80c
DK
1097 if (unlikely(audit_filter_type(type)))
1098 return NULL;
1099
9ad9ad38
DW
1100 if (gfp_mask & __GFP_WAIT)
1101 reserve = 0;
1102 else
5600b892 1103 reserve = 5; /* Allow atomic callers to go up to five
9ad9ad38
DW
1104 entries over the normal backlog limit */
1105
1106 while (audit_backlog_limit
1107 && skb_queue_len(&audit_skb_queue) > audit_backlog_limit + reserve) {
82919919
AM
1108 if (gfp_mask & __GFP_WAIT && audit_backlog_wait_time) {
1109 unsigned long sleep_time;
9ad9ad38 1110
82919919
AM
1111 sleep_time = timeout_start + audit_backlog_wait_time -
1112 jiffies;
1113 if ((long)sleep_time > 0)
1114 wait_for_auditd(sleep_time);
ac4cec44 1115 continue;
9ad9ad38 1116 }
320f1b1e 1117 if (audit_rate_check() && printk_ratelimit())
fb19b4c6
DW
1118 printk(KERN_WARNING
1119 "audit: audit_backlog=%d > "
1120 "audit_backlog_limit=%d\n",
1121 skb_queue_len(&audit_skb_queue),
1122 audit_backlog_limit);
1123 audit_log_lost("backlog limit exceeded");
ac4cec44
DW
1124 audit_backlog_wait_time = audit_backlog_wait_overflow;
1125 wake_up(&audit_backlog_wait);
fb19b4c6
DW
1126 return NULL;
1127 }
1128
9ad9ad38 1129 ab = audit_buffer_alloc(ctx, gfp_mask, type);
1da177e4
LT
1130 if (!ab) {
1131 audit_log_lost("out of memory in audit_log_start");
1132 return NULL;
1133 }
1134
bfb4496e 1135 audit_get_stamp(ab->ctx, &t, &serial);
197c69c6 1136
1da177e4
LT
1137 audit_log_format(ab, "audit(%lu.%03lu:%u): ",
1138 t.tv_sec, t.tv_nsec/1000000, serial);
1139 return ab;
1140}
1141
8fc6115c 1142/**
5ac52f33 1143 * audit_expand - expand skb in the audit buffer
8fc6115c 1144 * @ab: audit_buffer
b0dd25a8 1145 * @extra: space to add at tail of the skb
8fc6115c
CW
1146 *
1147 * Returns 0 (no space) on failed expansion, or available space if
1148 * successful.
1149 */
e3b926b4 1150static inline int audit_expand(struct audit_buffer *ab, int extra)
8fc6115c 1151{
5ac52f33 1152 struct sk_buff *skb = ab->skb;
406a1d86
HX
1153 int oldtail = skb_tailroom(skb);
1154 int ret = pskb_expand_head(skb, 0, extra, ab->gfp_mask);
1155 int newtail = skb_tailroom(skb);
1156
5ac52f33
CW
1157 if (ret < 0) {
1158 audit_log_lost("out of memory in audit_expand");
8fc6115c 1159 return 0;
5ac52f33 1160 }
406a1d86
HX
1161
1162 skb->truesize += newtail - oldtail;
1163 return newtail;
8fc6115c 1164}
1da177e4 1165
b0dd25a8
RD
1166/*
1167 * Format an audit message into the audit buffer. If there isn't enough
1da177e4
LT
1168 * room in the audit buffer, more room will be allocated and vsnprint
1169 * will be called a second time. Currently, we assume that a printk
b0dd25a8
RD
1170 * can't format message larger than 1024 bytes, so we don't either.
1171 */
1da177e4
LT
1172static void audit_log_vformat(struct audit_buffer *ab, const char *fmt,
1173 va_list args)
1174{
1175 int len, avail;
5ac52f33 1176 struct sk_buff *skb;
eecb0a73 1177 va_list args2;
1da177e4
LT
1178
1179 if (!ab)
1180 return;
1181
5ac52f33
CW
1182 BUG_ON(!ab->skb);
1183 skb = ab->skb;
1184 avail = skb_tailroom(skb);
1185 if (avail == 0) {
e3b926b4 1186 avail = audit_expand(ab, AUDIT_BUFSIZ);
8fc6115c
CW
1187 if (!avail)
1188 goto out;
1da177e4 1189 }
eecb0a73 1190 va_copy(args2, args);
27a884dc 1191 len = vsnprintf(skb_tail_pointer(skb), avail, fmt, args);
1da177e4
LT
1192 if (len >= avail) {
1193 /* The printk buffer is 1024 bytes long, so if we get
1194 * here and AUDIT_BUFSIZ is at least 1024, then we can
1195 * log everything that printk could have logged. */
b0dd25a8
RD
1196 avail = audit_expand(ab,
1197 max_t(unsigned, AUDIT_BUFSIZ, 1+len-avail));
8fc6115c 1198 if (!avail)
a0e86bd4 1199 goto out_va_end;
27a884dc 1200 len = vsnprintf(skb_tail_pointer(skb), avail, fmt, args2);
1da177e4 1201 }
168b7173
SG
1202 if (len > 0)
1203 skb_put(skb, len);
a0e86bd4
JJ
1204out_va_end:
1205 va_end(args2);
8fc6115c
CW
1206out:
1207 return;
1da177e4
LT
1208}
1209
b0dd25a8
RD
1210/**
1211 * audit_log_format - format a message into the audit buffer.
1212 * @ab: audit_buffer
1213 * @fmt: format string
1214 * @...: optional parameters matching @fmt string
1215 *
1216 * All the work is done in audit_log_vformat.
1217 */
1da177e4
LT
1218void audit_log_format(struct audit_buffer *ab, const char *fmt, ...)
1219{
1220 va_list args;
1221
1222 if (!ab)
1223 return;
1224 va_start(args, fmt);
1225 audit_log_vformat(ab, fmt, args);
1226 va_end(args);
1227}
1228
b0dd25a8
RD
1229/**
1230 * audit_log_hex - convert a buffer to hex and append it to the audit skb
1231 * @ab: the audit_buffer
1232 * @buf: buffer to convert to hex
1233 * @len: length of @buf to be converted
1234 *
1235 * No return value; failure to expand is silently ignored.
1236 *
1237 * This function will take the passed buf and convert it into a string of
1238 * ascii hex digits. The new string is placed onto the skb.
1239 */
b556f8ad 1240void audit_log_n_hex(struct audit_buffer *ab, const unsigned char *buf,
168b7173 1241 size_t len)
83c7d091 1242{
168b7173
SG
1243 int i, avail, new_len;
1244 unsigned char *ptr;
1245 struct sk_buff *skb;
1246 static const unsigned char *hex = "0123456789ABCDEF";
1247
8ef2d304
AG
1248 if (!ab)
1249 return;
1250
168b7173
SG
1251 BUG_ON(!ab->skb);
1252 skb = ab->skb;
1253 avail = skb_tailroom(skb);
1254 new_len = len<<1;
1255 if (new_len >= avail) {
1256 /* Round the buffer request up to the next multiple */
1257 new_len = AUDIT_BUFSIZ*(((new_len-avail)/AUDIT_BUFSIZ) + 1);
1258 avail = audit_expand(ab, new_len);
1259 if (!avail)
1260 return;
1261 }
83c7d091 1262
27a884dc 1263 ptr = skb_tail_pointer(skb);
168b7173
SG
1264 for (i=0; i<len; i++) {
1265 *ptr++ = hex[(buf[i] & 0xF0)>>4]; /* Upper nibble */
1266 *ptr++ = hex[buf[i] & 0x0F]; /* Lower nibble */
1267 }
1268 *ptr = 0;
1269 skb_put(skb, len << 1); /* new string is twice the old string */
83c7d091 1270}
1271
9c937dcc
AG
1272/*
1273 * Format a string of no more than slen characters into the audit buffer,
1274 * enclosed in quote marks.
1275 */
b556f8ad
EP
1276void audit_log_n_string(struct audit_buffer *ab, const char *string,
1277 size_t slen)
9c937dcc
AG
1278{
1279 int avail, new_len;
1280 unsigned char *ptr;
1281 struct sk_buff *skb;
1282
8ef2d304
AG
1283 if (!ab)
1284 return;
1285
9c937dcc
AG
1286 BUG_ON(!ab->skb);
1287 skb = ab->skb;
1288 avail = skb_tailroom(skb);
1289 new_len = slen + 3; /* enclosing quotes + null terminator */
1290 if (new_len > avail) {
1291 avail = audit_expand(ab, new_len);
1292 if (!avail)
1293 return;
1294 }
27a884dc 1295 ptr = skb_tail_pointer(skb);
9c937dcc
AG
1296 *ptr++ = '"';
1297 memcpy(ptr, string, slen);
1298 ptr += slen;
1299 *ptr++ = '"';
1300 *ptr = 0;
1301 skb_put(skb, slen + 2); /* don't include null terminator */
1302}
1303
de6bbd1d
EP
1304/**
1305 * audit_string_contains_control - does a string need to be logged in hex
f706d5d2
DJ
1306 * @string: string to be checked
1307 * @len: max length of the string to check
de6bbd1d
EP
1308 */
1309int audit_string_contains_control(const char *string, size_t len)
1310{
1311 const unsigned char *p;
b3897f56 1312 for (p = string; p < (const unsigned char *)string + len; p++) {
1d6c9649 1313 if (*p == '"' || *p < 0x21 || *p > 0x7e)
de6bbd1d
EP
1314 return 1;
1315 }
1316 return 0;
1317}
1318
b0dd25a8 1319/**
522ed776 1320 * audit_log_n_untrustedstring - log a string that may contain random characters
b0dd25a8 1321 * @ab: audit_buffer
f706d5d2 1322 * @len: length of string (not including trailing null)
b0dd25a8
RD
1323 * @string: string to be logged
1324 *
1325 * This code will escape a string that is passed to it if the string
1326 * contains a control character, unprintable character, double quote mark,
168b7173 1327 * or a space. Unescaped strings will start and end with a double quote mark.
b0dd25a8 1328 * Strings that are escaped are printed in hex (2 digits per char).
9c937dcc
AG
1329 *
1330 * The caller specifies the number of characters in the string to log, which may
1331 * or may not be the entire string.
b0dd25a8 1332 */
b556f8ad
EP
1333void audit_log_n_untrustedstring(struct audit_buffer *ab, const char *string,
1334 size_t len)
83c7d091 1335{
de6bbd1d 1336 if (audit_string_contains_control(string, len))
b556f8ad 1337 audit_log_n_hex(ab, string, len);
de6bbd1d 1338 else
b556f8ad 1339 audit_log_n_string(ab, string, len);
83c7d091 1340}
1341
9c937dcc 1342/**
522ed776 1343 * audit_log_untrustedstring - log a string that may contain random characters
9c937dcc
AG
1344 * @ab: audit_buffer
1345 * @string: string to be logged
1346 *
522ed776 1347 * Same as audit_log_n_untrustedstring(), except that strlen is used to
9c937dcc
AG
1348 * determine string length.
1349 */
de6bbd1d 1350void audit_log_untrustedstring(struct audit_buffer *ab, const char *string)
9c937dcc 1351{
b556f8ad 1352 audit_log_n_untrustedstring(ab, string, strlen(string));
9c937dcc
AG
1353}
1354
168b7173 1355/* This is a helper-function to print the escaped d_path */
1da177e4 1356void audit_log_d_path(struct audit_buffer *ab, const char *prefix,
66b3fad3 1357 const struct path *path)
1da177e4 1358{
44707fdf 1359 char *p, *pathname;
1da177e4 1360
8fc6115c 1361 if (prefix)
c158a35c 1362 audit_log_format(ab, "%s", prefix);
1da177e4 1363
168b7173 1364 /* We will allow 11 spaces for ' (deleted)' to be appended */
44707fdf
JB
1365 pathname = kmalloc(PATH_MAX+11, ab->gfp_mask);
1366 if (!pathname) {
def57543 1367 audit_log_string(ab, "<no_memory>");
168b7173 1368 return;
1da177e4 1369 }
cf28b486 1370 p = d_path(path, pathname, PATH_MAX+11);
168b7173
SG
1371 if (IS_ERR(p)) { /* Should never happen since we send PATH_MAX */
1372 /* FIXME: can we save some information here? */
def57543 1373 audit_log_string(ab, "<too_long>");
5600b892 1374 } else
168b7173 1375 audit_log_untrustedstring(ab, p);
44707fdf 1376 kfree(pathname);
1da177e4
LT
1377}
1378
9d960985
EP
1379void audit_log_key(struct audit_buffer *ab, char *key)
1380{
1381 audit_log_format(ab, " key=");
1382 if (key)
1383 audit_log_untrustedstring(ab, key);
1384 else
1385 audit_log_format(ab, "(null)");
1386}
1387
a51d9eaa
KC
1388/**
1389 * audit_log_link_denied - report a link restriction denial
1390 * @operation: specific link opreation
1391 * @link: the path that triggered the restriction
1392 */
1393void audit_log_link_denied(const char *operation, struct path *link)
1394{
1395 struct audit_buffer *ab;
1396
1397 ab = audit_log_start(current->audit_context, GFP_KERNEL,
1398 AUDIT_ANOM_LINK);
d1c7d97a
SL
1399 if (!ab)
1400 return;
a51d9eaa
KC
1401 audit_log_format(ab, "op=%s action=denied", operation);
1402 audit_log_format(ab, " pid=%d comm=", current->pid);
1403 audit_log_untrustedstring(ab, current->comm);
1404 audit_log_d_path(ab, " path=", link);
1405 audit_log_format(ab, " dev=");
1406 audit_log_untrustedstring(ab, link->dentry->d_inode->i_sb->s_id);
1407 audit_log_format(ab, " ino=%lu", link->dentry->d_inode->i_ino);
1408 audit_log_end(ab);
1409}
1410
b0dd25a8
RD
1411/**
1412 * audit_log_end - end one audit record
1413 * @ab: the audit_buffer
1414 *
1415 * The netlink_* functions cannot be called inside an irq context, so
1416 * the audit buffer is placed on a queue and a tasklet is scheduled to
1da177e4 1417 * remove them from the queue outside the irq context. May be called in
b0dd25a8
RD
1418 * any context.
1419 */
b7d11258 1420void audit_log_end(struct audit_buffer *ab)
1da177e4 1421{
1da177e4
LT
1422 if (!ab)
1423 return;
1424 if (!audit_rate_check()) {
1425 audit_log_lost("rate limit exceeded");
1426 } else {
8d07a67c 1427 struct nlmsghdr *nlh = nlmsg_hdr(ab->skb);
f3d357b0
EP
1428 nlh->nlmsg_len = ab->skb->len - NLMSG_SPACE(0);
1429
b7d11258 1430 if (audit_pid) {
b7d11258 1431 skb_queue_tail(&audit_skb_queue, ab->skb);
b7d11258 1432 wake_up_interruptible(&kauditd_wait);
f3d357b0 1433 } else {
038cbcf6 1434 audit_printk_skb(ab->skb);
b7d11258 1435 }
f3d357b0 1436 ab->skb = NULL;
1da177e4 1437 }
16e1904e 1438 audit_buffer_free(ab);
1da177e4
LT
1439}
1440
b0dd25a8
RD
1441/**
1442 * audit_log - Log an audit record
1443 * @ctx: audit context
1444 * @gfp_mask: type of allocation
1445 * @type: audit message type
1446 * @fmt: format string to use
1447 * @...: variable parameters matching the format string
1448 *
1449 * This is a convenience function that calls audit_log_start,
1450 * audit_log_vformat, and audit_log_end. It may be called
1451 * in any context.
1452 */
5600b892 1453void audit_log(struct audit_context *ctx, gfp_t gfp_mask, int type,
9ad9ad38 1454 const char *fmt, ...)
1da177e4
LT
1455{
1456 struct audit_buffer *ab;
1457 va_list args;
1458
9ad9ad38 1459 ab = audit_log_start(ctx, gfp_mask, type);
1da177e4
LT
1460 if (ab) {
1461 va_start(args, fmt);
1462 audit_log_vformat(ab, fmt, args);
1463 va_end(args);
1464 audit_log_end(ab);
1465 }
1466}
bf45da97 1467
131ad62d
MDF
1468#ifdef CONFIG_SECURITY
1469/**
1470 * audit_log_secctx - Converts and logs SELinux context
1471 * @ab: audit_buffer
1472 * @secid: security number
1473 *
1474 * This is a helper function that calls security_secid_to_secctx to convert
1475 * secid to secctx and then adds the (converted) SELinux context to the audit
1476 * log by calling audit_log_format, thus also preventing leak of internal secid
1477 * to userspace. If secid cannot be converted audit_panic is called.
1478 */
1479void audit_log_secctx(struct audit_buffer *ab, u32 secid)
1480{
1481 u32 len;
1482 char *secctx;
1483
1484 if (security_secid_to_secctx(secid, &secctx, &len)) {
1485 audit_panic("Cannot convert secid to context");
1486 } else {
1487 audit_log_format(ab, " obj=%s", secctx);
1488 security_release_secctx(secctx, len);
1489 }
1490}
1491EXPORT_SYMBOL(audit_log_secctx);
1492#endif
1493
bf45da97 1494EXPORT_SYMBOL(audit_log_start);
1495EXPORT_SYMBOL(audit_log_end);
1496EXPORT_SYMBOL(audit_log_format);
1497EXPORT_SYMBOL(audit_log);