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08ce5f16 1/*
47c59803 2 * device_cgroup.c - device cgroup subsystem
08ce5f16
SH
3 *
4 * Copyright 2007 IBM Corp
5 */
6
7#include <linux/device_cgroup.h>
8#include <linux/cgroup.h>
9#include <linux/ctype.h>
10#include <linux/list.h>
11#include <linux/uaccess.h>
29486df3 12#include <linux/seq_file.h>
5a0e3ad6 13#include <linux/slab.h>
47c59803 14#include <linux/rcupdate.h>
b4046f00 15#include <linux/mutex.h>
08ce5f16
SH
16
17#define ACC_MKNOD 1
18#define ACC_READ 2
19#define ACC_WRITE 4
20#define ACC_MASK (ACC_MKNOD | ACC_READ | ACC_WRITE)
21
22#define DEV_BLOCK 1
23#define DEV_CHAR 2
24#define DEV_ALL 4 /* this represents all devices */
25
b4046f00
LZ
26static DEFINE_MUTEX(devcgroup_mutex);
27
c39a2a30
AR
28enum devcg_behavior {
29 DEVCG_DEFAULT_NONE,
30 DEVCG_DEFAULT_ALLOW,
31 DEVCG_DEFAULT_DENY,
32};
33
08ce5f16 34/*
db9aeca9 35 * exception list locking rules:
b4046f00 36 * hold devcgroup_mutex for update/read.
47c59803 37 * hold rcu_read_lock() for read.
08ce5f16
SH
38 */
39
db9aeca9 40struct dev_exception_item {
08ce5f16
SH
41 u32 major, minor;
42 short type;
43 short access;
44 struct list_head list;
4efd1a1b 45 struct rcu_head rcu;
08ce5f16
SH
46};
47
48struct dev_cgroup {
49 struct cgroup_subsys_state css;
db9aeca9 50 struct list_head exceptions;
c39a2a30 51 enum devcg_behavior behavior;
08ce5f16
SH
52};
53
b66862f7
PE
54static inline struct dev_cgroup *css_to_devcgroup(struct cgroup_subsys_state *s)
55{
a7c6d554 56 return s ? container_of(s, struct dev_cgroup, css) : NULL;
b66862f7
PE
57}
58
f92523e3
PM
59static inline struct dev_cgroup *task_devcgroup(struct task_struct *task)
60{
073219e9 61 return css_to_devcgroup(task_css(task, devices_cgrp_id));
f92523e3
PM
62}
63
08ce5f16 64/*
b4046f00 65 * called under devcgroup_mutex
08ce5f16 66 */
db9aeca9 67static int dev_exceptions_copy(struct list_head *dest, struct list_head *orig)
08ce5f16 68{
db9aeca9 69 struct dev_exception_item *ex, *tmp, *new;
08ce5f16 70
4b1c7840
TH
71 lockdep_assert_held(&devcgroup_mutex);
72
db9aeca9
AR
73 list_for_each_entry(ex, orig, list) {
74 new = kmemdup(ex, sizeof(*ex), GFP_KERNEL);
08ce5f16
SH
75 if (!new)
76 goto free_and_exit;
08ce5f16
SH
77 list_add_tail(&new->list, dest);
78 }
79
80 return 0;
81
82free_and_exit:
db9aeca9
AR
83 list_for_each_entry_safe(ex, tmp, dest, list) {
84 list_del(&ex->list);
85 kfree(ex);
08ce5f16
SH
86 }
87 return -ENOMEM;
88}
89
08ce5f16 90/*
b4046f00 91 * called under devcgroup_mutex
08ce5f16 92 */
db9aeca9
AR
93static int dev_exception_add(struct dev_cgroup *dev_cgroup,
94 struct dev_exception_item *ex)
08ce5f16 95{
db9aeca9 96 struct dev_exception_item *excopy, *walk;
08ce5f16 97
4b1c7840
TH
98 lockdep_assert_held(&devcgroup_mutex);
99
db9aeca9
AR
100 excopy = kmemdup(ex, sizeof(*ex), GFP_KERNEL);
101 if (!excopy)
08ce5f16
SH
102 return -ENOMEM;
103
db9aeca9
AR
104 list_for_each_entry(walk, &dev_cgroup->exceptions, list) {
105 if (walk->type != ex->type)
d1ee2971 106 continue;
db9aeca9 107 if (walk->major != ex->major)
d1ee2971 108 continue;
db9aeca9 109 if (walk->minor != ex->minor)
d1ee2971
PE
110 continue;
111
db9aeca9
AR
112 walk->access |= ex->access;
113 kfree(excopy);
114 excopy = NULL;
d1ee2971
PE
115 }
116
db9aeca9
AR
117 if (excopy != NULL)
118 list_add_tail_rcu(&excopy->list, &dev_cgroup->exceptions);
08ce5f16
SH
119 return 0;
120}
121
122/*
b4046f00 123 * called under devcgroup_mutex
08ce5f16 124 */
db9aeca9
AR
125static void dev_exception_rm(struct dev_cgroup *dev_cgroup,
126 struct dev_exception_item *ex)
08ce5f16 127{
db9aeca9 128 struct dev_exception_item *walk, *tmp;
08ce5f16 129
4b1c7840
TH
130 lockdep_assert_held(&devcgroup_mutex);
131
db9aeca9
AR
132 list_for_each_entry_safe(walk, tmp, &dev_cgroup->exceptions, list) {
133 if (walk->type != ex->type)
08ce5f16 134 continue;
db9aeca9 135 if (walk->major != ex->major)
08ce5f16 136 continue;
db9aeca9 137 if (walk->minor != ex->minor)
08ce5f16
SH
138 continue;
139
db9aeca9 140 walk->access &= ~ex->access;
08ce5f16 141 if (!walk->access) {
4efd1a1b 142 list_del_rcu(&walk->list);
6034f7e6 143 kfree_rcu(walk, rcu);
08ce5f16
SH
144 }
145 }
08ce5f16
SH
146}
147
53eb8c82
JS
148static void __dev_exception_clean(struct dev_cgroup *dev_cgroup)
149{
150 struct dev_exception_item *ex, *tmp;
151
152 list_for_each_entry_safe(ex, tmp, &dev_cgroup->exceptions, list) {
153 list_del_rcu(&ex->list);
154 kfree_rcu(ex, rcu);
155 }
156}
157
868539a3 158/**
db9aeca9
AR
159 * dev_exception_clean - frees all entries of the exception list
160 * @dev_cgroup: dev_cgroup with the exception list to be cleaned
868539a3
AR
161 *
162 * called under devcgroup_mutex
163 */
db9aeca9 164static void dev_exception_clean(struct dev_cgroup *dev_cgroup)
868539a3 165{
4b1c7840
TH
166 lockdep_assert_held(&devcgroup_mutex);
167
53eb8c82 168 __dev_exception_clean(dev_cgroup);
868539a3
AR
169}
170
bd2953eb
AR
171static inline bool is_devcg_online(const struct dev_cgroup *devcg)
172{
173 return (devcg->behavior != DEVCG_DEFAULT_NONE);
174}
175
1909554c
AR
176/**
177 * devcgroup_online - initializes devcgroup's behavior and exceptions based on
178 * parent's
eb95419b 179 * @css: css getting online
1909554c
AR
180 * returns 0 in case of success, error code otherwise
181 */
eb95419b 182static int devcgroup_online(struct cgroup_subsys_state *css)
1909554c 183{
eb95419b
TH
184 struct dev_cgroup *dev_cgroup = css_to_devcgroup(css);
185 struct dev_cgroup *parent_dev_cgroup = css_to_devcgroup(css_parent(css));
1909554c
AR
186 int ret = 0;
187
188 mutex_lock(&devcgroup_mutex);
1909554c
AR
189
190 if (parent_dev_cgroup == NULL)
191 dev_cgroup->behavior = DEVCG_DEFAULT_ALLOW;
192 else {
193 ret = dev_exceptions_copy(&dev_cgroup->exceptions,
194 &parent_dev_cgroup->exceptions);
195 if (!ret)
196 dev_cgroup->behavior = parent_dev_cgroup->behavior;
197 }
198 mutex_unlock(&devcgroup_mutex);
199
200 return ret;
201}
202
eb95419b 203static void devcgroup_offline(struct cgroup_subsys_state *css)
1909554c 204{
eb95419b 205 struct dev_cgroup *dev_cgroup = css_to_devcgroup(css);
1909554c
AR
206
207 mutex_lock(&devcgroup_mutex);
208 dev_cgroup->behavior = DEVCG_DEFAULT_NONE;
209 mutex_unlock(&devcgroup_mutex);
210}
211
08ce5f16
SH
212/*
213 * called from kernel/cgroup.c with cgroup_lock() held.
214 */
eb95419b
TH
215static struct cgroup_subsys_state *
216devcgroup_css_alloc(struct cgroup_subsys_state *parent_css)
08ce5f16 217{
1909554c 218 struct dev_cgroup *dev_cgroup;
08ce5f16
SH
219
220 dev_cgroup = kzalloc(sizeof(*dev_cgroup), GFP_KERNEL);
221 if (!dev_cgroup)
222 return ERR_PTR(-ENOMEM);
db9aeca9 223 INIT_LIST_HEAD(&dev_cgroup->exceptions);
1909554c 224 dev_cgroup->behavior = DEVCG_DEFAULT_NONE;
08ce5f16 225
08ce5f16
SH
226 return &dev_cgroup->css;
227}
228
eb95419b 229static void devcgroup_css_free(struct cgroup_subsys_state *css)
08ce5f16 230{
eb95419b 231 struct dev_cgroup *dev_cgroup = css_to_devcgroup(css);
08ce5f16 232
53eb8c82 233 __dev_exception_clean(dev_cgroup);
08ce5f16
SH
234 kfree(dev_cgroup);
235}
236
237#define DEVCG_ALLOW 1
238#define DEVCG_DENY 2
29486df3
SH
239#define DEVCG_LIST 3
240
17d213f8 241#define MAJMINLEN 13
29486df3 242#define ACCLEN 4
08ce5f16
SH
243
244static void set_access(char *acc, short access)
245{
246 int idx = 0;
29486df3 247 memset(acc, 0, ACCLEN);
08ce5f16
SH
248 if (access & ACC_READ)
249 acc[idx++] = 'r';
250 if (access & ACC_WRITE)
251 acc[idx++] = 'w';
252 if (access & ACC_MKNOD)
253 acc[idx++] = 'm';
254}
255
256static char type_to_char(short type)
257{
258 if (type == DEV_ALL)
259 return 'a';
260 if (type == DEV_CHAR)
261 return 'c';
262 if (type == DEV_BLOCK)
263 return 'b';
264 return 'X';
265}
266
29486df3 267static void set_majmin(char *str, unsigned m)
08ce5f16 268{
08ce5f16 269 if (m == ~0)
7759fc9d 270 strcpy(str, "*");
08ce5f16 271 else
7759fc9d 272 sprintf(str, "%u", m);
08ce5f16
SH
273}
274
2da8ca82 275static int devcgroup_seq_show(struct seq_file *m, void *v)
08ce5f16 276{
2da8ca82 277 struct dev_cgroup *devcgroup = css_to_devcgroup(seq_css(m));
db9aeca9 278 struct dev_exception_item *ex;
29486df3 279 char maj[MAJMINLEN], min[MAJMINLEN], acc[ACCLEN];
08ce5f16 280
4efd1a1b 281 rcu_read_lock();
ad676077
AR
282 /*
283 * To preserve the compatibility:
284 * - Only show the "all devices" when the default policy is to allow
285 * - List the exceptions in case the default policy is to deny
286 * This way, the file remains as a "whitelist of devices"
287 */
5b7aa7d5 288 if (devcgroup->behavior == DEVCG_DEFAULT_ALLOW) {
ad676077
AR
289 set_access(acc, ACC_MASK);
290 set_majmin(maj, ~0);
291 set_majmin(min, ~0);
292 seq_printf(m, "%c %s:%s %s\n", type_to_char(DEV_ALL),
29486df3 293 maj, min, acc);
ad676077 294 } else {
db9aeca9
AR
295 list_for_each_entry_rcu(ex, &devcgroup->exceptions, list) {
296 set_access(acc, ex->access);
297 set_majmin(maj, ex->major);
298 set_majmin(min, ex->minor);
299 seq_printf(m, "%c %s:%s %s\n", type_to_char(ex->type),
ad676077
AR
300 maj, min, acc);
301 }
08ce5f16 302 }
4efd1a1b 303 rcu_read_unlock();
08ce5f16 304
29486df3 305 return 0;
08ce5f16
SH
306}
307
ad676077 308/**
db9aeca9
AR
309 * may_access - verifies if a new exception is part of what is allowed
310 * by a dev cgroup based on the default policy +
311 * exceptions. This is used to make sure a child cgroup
312 * won't have more privileges than its parent or to
313 * verify if a certain access is allowed.
ad676077 314 * @dev_cgroup: dev cgroup to be tested against
db9aeca9 315 * @refex: new exception
c39a2a30 316 * @behavior: behavior of the exception
08ce5f16 317 */
26898fdf 318static bool may_access(struct dev_cgroup *dev_cgroup,
c39a2a30
AR
319 struct dev_exception_item *refex,
320 enum devcg_behavior behavior)
08ce5f16 321{
db9aeca9 322 struct dev_exception_item *ex;
ad676077 323 bool match = false;
08ce5f16 324
4b1c7840
TH
325 rcu_lockdep_assert(rcu_read_lock_held() ||
326 lockdep_is_held(&devcgroup_mutex),
327 "device_cgroup::may_access() called without proper synchronization");
328
201e72ac 329 list_for_each_entry_rcu(ex, &dev_cgroup->exceptions, list) {
db9aeca9 330 if ((refex->type & DEV_BLOCK) && !(ex->type & DEV_BLOCK))
08ce5f16 331 continue;
db9aeca9 332 if ((refex->type & DEV_CHAR) && !(ex->type & DEV_CHAR))
08ce5f16 333 continue;
db9aeca9 334 if (ex->major != ~0 && ex->major != refex->major)
08ce5f16 335 continue;
db9aeca9 336 if (ex->minor != ~0 && ex->minor != refex->minor)
08ce5f16 337 continue;
db9aeca9 338 if (refex->access & (~ex->access))
08ce5f16 339 continue;
ad676077
AR
340 match = true;
341 break;
08ce5f16 342 }
ad676077 343
c39a2a30
AR
344 if (dev_cgroup->behavior == DEVCG_DEFAULT_ALLOW) {
345 if (behavior == DEVCG_DEFAULT_ALLOW) {
346 /* the exception will deny access to certain devices */
347 return true;
348 } else {
349 /* the exception will allow access to certain devices */
350 if (match)
351 /*
352 * a new exception allowing access shouldn't
353 * match an parent's exception
354 */
355 return false;
26898fdf 356 return true;
c39a2a30 357 }
26898fdf 358 } else {
c39a2a30
AR
359 /* only behavior == DEVCG_DEFAULT_DENY allowed here */
360 if (match)
361 /* parent has an exception that matches the proposed */
26898fdf 362 return true;
c39a2a30
AR
363 else
364 return false;
26898fdf
AR
365 }
366 return false;
08ce5f16
SH
367}
368
369/*
370 * parent_has_perm:
db9aeca9 371 * when adding a new allow rule to a device exception list, the rule
08ce5f16
SH
372 * must be allowed in the parent device
373 */
f92523e3 374static int parent_has_perm(struct dev_cgroup *childcg,
db9aeca9 375 struct dev_exception_item *ex)
08ce5f16 376{
63876986 377 struct dev_cgroup *parent = css_to_devcgroup(css_parent(&childcg->css));
08ce5f16 378
63876986 379 if (!parent)
08ce5f16 380 return 1;
c39a2a30 381 return may_access(parent, ex, childcg->behavior);
08ce5f16
SH
382}
383
4cef7299
AR
384/**
385 * may_allow_all - checks if it's possible to change the behavior to
386 * allow based on parent's rules.
387 * @parent: device cgroup's parent
388 * returns: != 0 in case it's allowed, 0 otherwise
389 */
390static inline int may_allow_all(struct dev_cgroup *parent)
391{
64e10477
AR
392 if (!parent)
393 return 1;
4cef7299
AR
394 return parent->behavior == DEVCG_DEFAULT_ALLOW;
395}
396
bd2953eb
AR
397/**
398 * revalidate_active_exceptions - walks through the active exception list and
399 * revalidates the exceptions based on parent's
400 * behavior and exceptions. The exceptions that
401 * are no longer valid will be removed.
402 * Called with devcgroup_mutex held.
403 * @devcg: cgroup which exceptions will be checked
404 *
405 * This is one of the three key functions for hierarchy implementation.
406 * This function is responsible for re-evaluating all the cgroup's active
407 * exceptions due to a parent's exception change.
408 * Refer to Documentation/cgroups/devices.txt for more details.
409 */
410static void revalidate_active_exceptions(struct dev_cgroup *devcg)
411{
412 struct dev_exception_item *ex;
413 struct list_head *this, *tmp;
414
415 list_for_each_safe(this, tmp, &devcg->exceptions) {
416 ex = container_of(this, struct dev_exception_item, list);
417 if (!parent_has_perm(devcg, ex))
418 dev_exception_rm(devcg, ex);
419 }
420}
421
bd2953eb
AR
422/**
423 * propagate_exception - propagates a new exception to the children
424 * @devcg_root: device cgroup that added a new exception
425 * @ex: new exception to be propagated
426 *
427 * returns: 0 in case of success, != 0 in case of error
428 */
429static int propagate_exception(struct dev_cgroup *devcg_root,
430 struct dev_exception_item *ex)
431{
492eb21b 432 struct cgroup_subsys_state *pos;
bd2953eb 433 int rc = 0;
bd2953eb 434
d591fb56 435 rcu_read_lock();
bd2953eb 436
492eb21b
TH
437 css_for_each_descendant_pre(pos, &devcg_root->css) {
438 struct dev_cgroup *devcg = css_to_devcgroup(pos);
d591fb56
TH
439
440 /*
441 * Because devcgroup_mutex is held, no devcg will become
442 * online or offline during the tree walk (see on/offline
443 * methods), and online ones are safe to access outside RCU
444 * read lock without bumping refcnt.
445 */
bd8815a6 446 if (pos == &devcg_root->css || !is_devcg_online(devcg))
d591fb56
TH
447 continue;
448
449 rcu_read_unlock();
bd2953eb
AR
450
451 /*
452 * in case both root's behavior and devcg is allow, a new
453 * restriction means adding to the exception list
454 */
455 if (devcg_root->behavior == DEVCG_DEFAULT_ALLOW &&
456 devcg->behavior == DEVCG_DEFAULT_ALLOW) {
457 rc = dev_exception_add(devcg, ex);
458 if (rc)
459 break;
460 } else {
461 /*
462 * in the other possible cases:
463 * root's behavior: allow, devcg's: deny
464 * root's behavior: deny, devcg's: deny
465 * the exception will be removed
466 */
467 dev_exception_rm(devcg, ex);
468 }
469 revalidate_active_exceptions(devcg);
470
d591fb56 471 rcu_read_lock();
bd2953eb 472 }
d591fb56
TH
473
474 rcu_read_unlock();
bd2953eb
AR
475 return rc;
476}
477
478static inline bool has_children(struct dev_cgroup *devcgroup)
479{
480 struct cgroup *cgrp = devcgroup->css.cgroup;
481
482 return !list_empty(&cgrp->children);
483}
484
08ce5f16 485/*
db9aeca9 486 * Modify the exception list using allow/deny rules.
08ce5f16
SH
487 * CAP_SYS_ADMIN is needed for this. It's at least separate from CAP_MKNOD
488 * so we can give a container CAP_MKNOD to let it create devices but not
db9aeca9 489 * modify the exception list.
08ce5f16
SH
490 * It seems likely we'll want to add a CAP_CONTAINER capability to allow
491 * us to also grant CAP_SYS_ADMIN to containers without giving away the
db9aeca9 492 * device exception list controls, but for now we'll stick with CAP_SYS_ADMIN
08ce5f16
SH
493 *
494 * Taking rules away is always allowed (given CAP_SYS_ADMIN). Granting
495 * new access is only allowed if you're in the top-level cgroup, or your
496 * parent cgroup has the access you're asking for.
497 */
f92523e3
PM
498static int devcgroup_update_access(struct dev_cgroup *devcgroup,
499 int filetype, const char *buffer)
08ce5f16 500{
f92523e3 501 const char *b;
26fd8405 502 char temp[12]; /* 11 + 1 characters needed for a u32 */
c39a2a30 503 int count, rc = 0;
db9aeca9 504 struct dev_exception_item ex;
63876986 505 struct dev_cgroup *parent = css_to_devcgroup(css_parent(&devcgroup->css));
08ce5f16
SH
506
507 if (!capable(CAP_SYS_ADMIN))
508 return -EPERM;
509
db9aeca9 510 memset(&ex, 0, sizeof(ex));
08ce5f16
SH
511 b = buffer;
512
513 switch (*b) {
514 case 'a':
ad676077
AR
515 switch (filetype) {
516 case DEVCG_ALLOW:
bd2953eb
AR
517 if (has_children(devcgroup))
518 return -EINVAL;
519
4cef7299 520 if (!may_allow_all(parent))
ad676077 521 return -EPERM;
db9aeca9 522 dev_exception_clean(devcgroup);
64e10477
AR
523 devcgroup->behavior = DEVCG_DEFAULT_ALLOW;
524 if (!parent)
525 break;
526
4cef7299
AR
527 rc = dev_exceptions_copy(&devcgroup->exceptions,
528 &parent->exceptions);
529 if (rc)
530 return rc;
ad676077
AR
531 break;
532 case DEVCG_DENY:
bd2953eb
AR
533 if (has_children(devcgroup))
534 return -EINVAL;
535
db9aeca9 536 dev_exception_clean(devcgroup);
5b7aa7d5 537 devcgroup->behavior = DEVCG_DEFAULT_DENY;
ad676077
AR
538 break;
539 default:
540 return -EINVAL;
541 }
542 return 0;
08ce5f16 543 case 'b':
db9aeca9 544 ex.type = DEV_BLOCK;
08ce5f16
SH
545 break;
546 case 'c':
db9aeca9 547 ex.type = DEV_CHAR;
08ce5f16
SH
548 break;
549 default:
f92523e3 550 return -EINVAL;
08ce5f16
SH
551 }
552 b++;
f92523e3
PM
553 if (!isspace(*b))
554 return -EINVAL;
08ce5f16
SH
555 b++;
556 if (*b == '*') {
db9aeca9 557 ex.major = ~0;
08ce5f16
SH
558 b++;
559 } else if (isdigit(*b)) {
26fd8405
AR
560 memset(temp, 0, sizeof(temp));
561 for (count = 0; count < sizeof(temp) - 1; count++) {
562 temp[count] = *b;
563 b++;
564 if (!isdigit(*b))
565 break;
566 }
567 rc = kstrtou32(temp, 10, &ex.major);
568 if (rc)
569 return -EINVAL;
08ce5f16 570 } else {
f92523e3 571 return -EINVAL;
08ce5f16 572 }
f92523e3
PM
573 if (*b != ':')
574 return -EINVAL;
08ce5f16
SH
575 b++;
576
577 /* read minor */
578 if (*b == '*') {
db9aeca9 579 ex.minor = ~0;
08ce5f16
SH
580 b++;
581 } else if (isdigit(*b)) {
26fd8405
AR
582 memset(temp, 0, sizeof(temp));
583 for (count = 0; count < sizeof(temp) - 1; count++) {
584 temp[count] = *b;
585 b++;
586 if (!isdigit(*b))
587 break;
588 }
589 rc = kstrtou32(temp, 10, &ex.minor);
590 if (rc)
591 return -EINVAL;
08ce5f16 592 } else {
f92523e3 593 return -EINVAL;
08ce5f16 594 }
f92523e3
PM
595 if (!isspace(*b))
596 return -EINVAL;
08ce5f16
SH
597 for (b++, count = 0; count < 3; count++, b++) {
598 switch (*b) {
599 case 'r':
db9aeca9 600 ex.access |= ACC_READ;
08ce5f16
SH
601 break;
602 case 'w':
db9aeca9 603 ex.access |= ACC_WRITE;
08ce5f16
SH
604 break;
605 case 'm':
db9aeca9 606 ex.access |= ACC_MKNOD;
08ce5f16
SH
607 break;
608 case '\n':
609 case '\0':
610 count = 3;
611 break;
612 default:
f92523e3 613 return -EINVAL;
08ce5f16
SH
614 }
615 }
616
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617 switch (filetype) {
618 case DEVCG_ALLOW:
db9aeca9 619 if (!parent_has_perm(devcgroup, &ex))
f92523e3 620 return -EPERM;
ad676077
AR
621 /*
622 * If the default policy is to allow by default, try to remove
623 * an matching exception instead. And be silent about it: we
624 * don't want to break compatibility
625 */
5b7aa7d5 626 if (devcgroup->behavior == DEVCG_DEFAULT_ALLOW) {
db9aeca9 627 dev_exception_rm(devcgroup, &ex);
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628 return 0;
629 }
bd2953eb
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630 rc = dev_exception_add(devcgroup, &ex);
631 break;
08ce5f16 632 case DEVCG_DENY:
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633 /*
634 * If the default policy is to deny by default, try to remove
635 * an matching exception instead. And be silent about it: we
636 * don't want to break compatibility
637 */
bd2953eb 638 if (devcgroup->behavior == DEVCG_DEFAULT_DENY)
db9aeca9 639 dev_exception_rm(devcgroup, &ex);
bd2953eb
AR
640 else
641 rc = dev_exception_add(devcgroup, &ex);
642
643 if (rc)
644 break;
645 /* we only propagate new restrictions */
646 rc = propagate_exception(devcgroup, &ex);
647 break;
08ce5f16 648 default:
bd2953eb 649 rc = -EINVAL;
08ce5f16 650 }
bd2953eb 651 return rc;
f92523e3 652}
08ce5f16 653
182446d0
TH
654static int devcgroup_access_write(struct cgroup_subsys_state *css,
655 struct cftype *cft, const char *buffer)
f92523e3
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656{
657 int retval;
b4046f00
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658
659 mutex_lock(&devcgroup_mutex);
182446d0 660 retval = devcgroup_update_access(css_to_devcgroup(css),
f92523e3 661 cft->private, buffer);
b4046f00 662 mutex_unlock(&devcgroup_mutex);
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SH
663 return retval;
664}
665
666static struct cftype dev_cgroup_files[] = {
667 {
668 .name = "allow",
f92523e3 669 .write_string = devcgroup_access_write,
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670 .private = DEVCG_ALLOW,
671 },
672 {
673 .name = "deny",
f92523e3 674 .write_string = devcgroup_access_write,
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675 .private = DEVCG_DENY,
676 },
29486df3
SH
677 {
678 .name = "list",
2da8ca82 679 .seq_show = devcgroup_seq_show,
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SH
680 .private = DEVCG_LIST,
681 },
4baf6e33 682 { } /* terminate */
08ce5f16
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683};
684
073219e9 685struct cgroup_subsys devices_cgrp_subsys = {
92fb9748
TH
686 .css_alloc = devcgroup_css_alloc,
687 .css_free = devcgroup_css_free,
1909554c
AR
688 .css_online = devcgroup_online,
689 .css_offline = devcgroup_offline,
4baf6e33 690 .base_cftypes = dev_cgroup_files,
08ce5f16
SH
691};
692
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693/**
694 * __devcgroup_check_permission - checks if an inode operation is permitted
695 * @dev_cgroup: the dev cgroup to be tested against
696 * @type: device type
697 * @major: device major number
698 * @minor: device minor number
699 * @access: combination of ACC_WRITE, ACC_READ and ACC_MKNOD
700 *
701 * returns 0 on success, -EPERM case the operation is not permitted
702 */
8c9506d1 703static int __devcgroup_check_permission(short type, u32 major, u32 minor,
ad676077 704 short access)
08ce5f16 705{
8c9506d1 706 struct dev_cgroup *dev_cgroup;
db9aeca9 707 struct dev_exception_item ex;
ad676077 708 int rc;
36fd71d2 709
db9aeca9
AR
710 memset(&ex, 0, sizeof(ex));
711 ex.type = type;
712 ex.major = major;
713 ex.minor = minor;
714 ex.access = access;
36fd71d2 715
ad676077 716 rcu_read_lock();
8c9506d1 717 dev_cgroup = task_devcgroup(current);
c39a2a30 718 rc = may_access(dev_cgroup, &ex, dev_cgroup->behavior);
ad676077 719 rcu_read_unlock();
cd500819 720
ad676077
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721 if (!rc)
722 return -EPERM;
36fd71d2 723
ad676077
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724 return 0;
725}
08ce5f16 726
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727int __devcgroup_inode_permission(struct inode *inode, int mask)
728{
ad676077
AR
729 short type, access = 0;
730
731 if (S_ISBLK(inode->i_mode))
732 type = DEV_BLOCK;
733 if (S_ISCHR(inode->i_mode))
734 type = DEV_CHAR;
735 if (mask & MAY_WRITE)
736 access |= ACC_WRITE;
737 if (mask & MAY_READ)
738 access |= ACC_READ;
739
8c9506d1
JS
740 return __devcgroup_check_permission(type, imajor(inode), iminor(inode),
741 access);
08ce5f16
SH
742}
743
744int devcgroup_inode_mknod(int mode, dev_t dev)
745{
ad676077 746 short type;
08ce5f16 747
0b82ac37
SH
748 if (!S_ISBLK(mode) && !S_ISCHR(mode))
749 return 0;
750
ad676077
AR
751 if (S_ISBLK(mode))
752 type = DEV_BLOCK;
753 else
754 type = DEV_CHAR;
36fd71d2 755
8c9506d1
JS
756 return __devcgroup_check_permission(type, MAJOR(dev), MINOR(dev),
757 ACC_MKNOD);
36fd71d2 758
08ce5f16 759}