syscall.c 48 KB

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  1. /* Copyright (c) 2011-2014 PLUMgrid, http://plumgrid.com
  2. *
  3. * This program is free software; you can redistribute it and/or
  4. * modify it under the terms of version 2 of the GNU General Public
  5. * License as published by the Free Software Foundation.
  6. *
  7. * This program is distributed in the hope that it will be useful, but
  8. * WITHOUT ANY WARRANTY; without even the implied warranty of
  9. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  10. * General Public License for more details.
  11. */
  12. #include <linux/bpf.h>
  13. #include <linux/bpf_trace.h>
  14. #include <linux/syscalls.h>
  15. #include <linux/slab.h>
  16. #include <linux/sched/signal.h>
  17. #include <linux/vmalloc.h>
  18. #include <linux/mmzone.h>
  19. #include <linux/anon_inodes.h>
  20. #include <linux/file.h>
  21. #include <linux/license.h>
  22. #include <linux/filter.h>
  23. #include <linux/version.h>
  24. #include <linux/kernel.h>
  25. #include <linux/idr.h>
  26. #include <linux/cred.h>
  27. #include <linux/timekeeping.h>
  28. #include <linux/ctype.h>
  29. #include <linux/nospec.h>
  30. #define IS_FD_ARRAY(map) ((map)->map_type == BPF_MAP_TYPE_PROG_ARRAY || \
  31. (map)->map_type == BPF_MAP_TYPE_PERF_EVENT_ARRAY || \
  32. (map)->map_type == BPF_MAP_TYPE_CGROUP_ARRAY || \
  33. (map)->map_type == BPF_MAP_TYPE_ARRAY_OF_MAPS)
  34. #define IS_FD_HASH(map) ((map)->map_type == BPF_MAP_TYPE_HASH_OF_MAPS)
  35. #define IS_FD_MAP(map) (IS_FD_ARRAY(map) || IS_FD_HASH(map))
  36. #define BPF_OBJ_FLAG_MASK (BPF_F_RDONLY | BPF_F_WRONLY)
  37. DEFINE_PER_CPU(int, bpf_prog_active);
  38. static DEFINE_IDR(prog_idr);
  39. static DEFINE_SPINLOCK(prog_idr_lock);
  40. static DEFINE_IDR(map_idr);
  41. static DEFINE_SPINLOCK(map_idr_lock);
  42. int sysctl_unprivileged_bpf_disabled __read_mostly;
  43. static const struct bpf_map_ops * const bpf_map_types[] = {
  44. #define BPF_PROG_TYPE(_id, _ops)
  45. #define BPF_MAP_TYPE(_id, _ops) \
  46. [_id] = &_ops,
  47. #include <linux/bpf_types.h>
  48. #undef BPF_PROG_TYPE
  49. #undef BPF_MAP_TYPE
  50. };
  51. /*
  52. * If we're handed a bigger struct than we know of, ensure all the unknown bits
  53. * are 0 - i.e. new user-space does not rely on any kernel feature extensions
  54. * we don't know about yet.
  55. *
  56. * There is a ToCToU between this function call and the following
  57. * copy_from_user() call. However, this is not a concern since this function is
  58. * meant to be a future-proofing of bits.
  59. */
  60. static int check_uarg_tail_zero(void __user *uaddr,
  61. size_t expected_size,
  62. size_t actual_size)
  63. {
  64. unsigned char __user *addr;
  65. unsigned char __user *end;
  66. unsigned char val;
  67. int err;
  68. if (unlikely(actual_size > PAGE_SIZE)) /* silly large */
  69. return -E2BIG;
  70. if (unlikely(!access_ok(VERIFY_READ, uaddr, actual_size)))
  71. return -EFAULT;
  72. if (actual_size <= expected_size)
  73. return 0;
  74. addr = uaddr + expected_size;
  75. end = uaddr + actual_size;
  76. for (; addr < end; addr++) {
  77. err = get_user(val, addr);
  78. if (err)
  79. return err;
  80. if (val)
  81. return -E2BIG;
  82. }
  83. return 0;
  84. }
  85. const struct bpf_map_ops bpf_map_offload_ops = {
  86. .map_alloc = bpf_map_offload_map_alloc,
  87. .map_free = bpf_map_offload_map_free,
  88. };
  89. static struct bpf_map *find_and_alloc_map(union bpf_attr *attr)
  90. {
  91. const struct bpf_map_ops *ops;
  92. u32 type = attr->map_type;
  93. struct bpf_map *map;
  94. int err;
  95. if (type >= ARRAY_SIZE(bpf_map_types))
  96. return ERR_PTR(-EINVAL);
  97. type = array_index_nospec(type, ARRAY_SIZE(bpf_map_types));
  98. ops = bpf_map_types[type];
  99. if (!ops)
  100. return ERR_PTR(-EINVAL);
  101. if (ops->map_alloc_check) {
  102. err = ops->map_alloc_check(attr);
  103. if (err)
  104. return ERR_PTR(err);
  105. }
  106. if (attr->map_ifindex)
  107. ops = &bpf_map_offload_ops;
  108. map = ops->map_alloc(attr);
  109. if (IS_ERR(map))
  110. return map;
  111. map->ops = ops;
  112. map->map_type = type;
  113. return map;
  114. }
  115. void *bpf_map_area_alloc(size_t size, int numa_node)
  116. {
  117. /* We definitely need __GFP_NORETRY, so OOM killer doesn't
  118. * trigger under memory pressure as we really just want to
  119. * fail instead.
  120. */
  121. const gfp_t flags = __GFP_NOWARN | __GFP_NORETRY | __GFP_ZERO;
  122. void *area;
  123. if (size <= (PAGE_SIZE << PAGE_ALLOC_COSTLY_ORDER)) {
  124. area = kmalloc_node(size, GFP_USER | flags, numa_node);
  125. if (area != NULL)
  126. return area;
  127. }
  128. return __vmalloc_node_flags_caller(size, numa_node, GFP_KERNEL | flags,
  129. __builtin_return_address(0));
  130. }
  131. void bpf_map_area_free(void *area)
  132. {
  133. kvfree(area);
  134. }
  135. void bpf_map_init_from_attr(struct bpf_map *map, union bpf_attr *attr)
  136. {
  137. map->map_type = attr->map_type;
  138. map->key_size = attr->key_size;
  139. map->value_size = attr->value_size;
  140. map->max_entries = attr->max_entries;
  141. map->map_flags = attr->map_flags;
  142. map->numa_node = bpf_map_attr_numa_node(attr);
  143. }
  144. int bpf_map_precharge_memlock(u32 pages)
  145. {
  146. struct user_struct *user = get_current_user();
  147. unsigned long memlock_limit, cur;
  148. memlock_limit = rlimit(RLIMIT_MEMLOCK) >> PAGE_SHIFT;
  149. cur = atomic_long_read(&user->locked_vm);
  150. free_uid(user);
  151. if (cur + pages > memlock_limit)
  152. return -EPERM;
  153. return 0;
  154. }
  155. static int bpf_map_charge_memlock(struct bpf_map *map)
  156. {
  157. struct user_struct *user = get_current_user();
  158. unsigned long memlock_limit;
  159. memlock_limit = rlimit(RLIMIT_MEMLOCK) >> PAGE_SHIFT;
  160. atomic_long_add(map->pages, &user->locked_vm);
  161. if (atomic_long_read(&user->locked_vm) > memlock_limit) {
  162. atomic_long_sub(map->pages, &user->locked_vm);
  163. free_uid(user);
  164. return -EPERM;
  165. }
  166. map->user = user;
  167. return 0;
  168. }
  169. static void bpf_map_uncharge_memlock(struct bpf_map *map)
  170. {
  171. struct user_struct *user = map->user;
  172. atomic_long_sub(map->pages, &user->locked_vm);
  173. free_uid(user);
  174. }
  175. static int bpf_map_alloc_id(struct bpf_map *map)
  176. {
  177. int id;
  178. idr_preload(GFP_KERNEL);
  179. spin_lock_bh(&map_idr_lock);
  180. id = idr_alloc_cyclic(&map_idr, map, 1, INT_MAX, GFP_ATOMIC);
  181. if (id > 0)
  182. map->id = id;
  183. spin_unlock_bh(&map_idr_lock);
  184. idr_preload_end();
  185. if (WARN_ON_ONCE(!id))
  186. return -ENOSPC;
  187. return id > 0 ? 0 : id;
  188. }
  189. void bpf_map_free_id(struct bpf_map *map, bool do_idr_lock)
  190. {
  191. unsigned long flags;
  192. /* Offloaded maps are removed from the IDR store when their device
  193. * disappears - even if someone holds an fd to them they are unusable,
  194. * the memory is gone, all ops will fail; they are simply waiting for
  195. * refcnt to drop to be freed.
  196. */
  197. if (!map->id)
  198. return;
  199. if (do_idr_lock)
  200. spin_lock_irqsave(&map_idr_lock, flags);
  201. else
  202. __acquire(&map_idr_lock);
  203. idr_remove(&map_idr, map->id);
  204. map->id = 0;
  205. if (do_idr_lock)
  206. spin_unlock_irqrestore(&map_idr_lock, flags);
  207. else
  208. __release(&map_idr_lock);
  209. }
  210. /* called from workqueue */
  211. static void bpf_map_free_deferred(struct work_struct *work)
  212. {
  213. struct bpf_map *map = container_of(work, struct bpf_map, work);
  214. bpf_map_uncharge_memlock(map);
  215. security_bpf_map_free(map);
  216. /* implementation dependent freeing */
  217. map->ops->map_free(map);
  218. }
  219. static void bpf_map_put_uref(struct bpf_map *map)
  220. {
  221. if (atomic_dec_and_test(&map->usercnt)) {
  222. if (map->ops->map_release_uref)
  223. map->ops->map_release_uref(map);
  224. }
  225. }
  226. /* decrement map refcnt and schedule it for freeing via workqueue
  227. * (unrelying map implementation ops->map_free() might sleep)
  228. */
  229. static void __bpf_map_put(struct bpf_map *map, bool do_idr_lock)
  230. {
  231. if (atomic_dec_and_test(&map->refcnt)) {
  232. /* bpf_map_free_id() must be called first */
  233. bpf_map_free_id(map, do_idr_lock);
  234. INIT_WORK(&map->work, bpf_map_free_deferred);
  235. schedule_work(&map->work);
  236. }
  237. }
  238. void bpf_map_put(struct bpf_map *map)
  239. {
  240. __bpf_map_put(map, true);
  241. }
  242. void bpf_map_put_with_uref(struct bpf_map *map)
  243. {
  244. bpf_map_put_uref(map);
  245. bpf_map_put(map);
  246. }
  247. static int bpf_map_release(struct inode *inode, struct file *filp)
  248. {
  249. struct bpf_map *map = filp->private_data;
  250. if (map->ops->map_release)
  251. map->ops->map_release(map, filp);
  252. bpf_map_put_with_uref(map);
  253. return 0;
  254. }
  255. #ifdef CONFIG_PROC_FS
  256. static void bpf_map_show_fdinfo(struct seq_file *m, struct file *filp)
  257. {
  258. const struct bpf_map *map = filp->private_data;
  259. const struct bpf_array *array;
  260. u32 owner_prog_type = 0;
  261. u32 owner_jited = 0;
  262. if (map->map_type == BPF_MAP_TYPE_PROG_ARRAY) {
  263. array = container_of(map, struct bpf_array, map);
  264. owner_prog_type = array->owner_prog_type;
  265. owner_jited = array->owner_jited;
  266. }
  267. seq_printf(m,
  268. "map_type:\t%u\n"
  269. "key_size:\t%u\n"
  270. "value_size:\t%u\n"
  271. "max_entries:\t%u\n"
  272. "map_flags:\t%#x\n"
  273. "memlock:\t%llu\n",
  274. map->map_type,
  275. map->key_size,
  276. map->value_size,
  277. map->max_entries,
  278. map->map_flags,
  279. map->pages * 1ULL << PAGE_SHIFT);
  280. if (owner_prog_type) {
  281. seq_printf(m, "owner_prog_type:\t%u\n",
  282. owner_prog_type);
  283. seq_printf(m, "owner_jited:\t%u\n",
  284. owner_jited);
  285. }
  286. }
  287. #endif
  288. static ssize_t bpf_dummy_read(struct file *filp, char __user *buf, size_t siz,
  289. loff_t *ppos)
  290. {
  291. /* We need this handler such that alloc_file() enables
  292. * f_mode with FMODE_CAN_READ.
  293. */
  294. return -EINVAL;
  295. }
  296. static ssize_t bpf_dummy_write(struct file *filp, const char __user *buf,
  297. size_t siz, loff_t *ppos)
  298. {
  299. /* We need this handler such that alloc_file() enables
  300. * f_mode with FMODE_CAN_WRITE.
  301. */
  302. return -EINVAL;
  303. }
  304. const struct file_operations bpf_map_fops = {
  305. #ifdef CONFIG_PROC_FS
  306. .show_fdinfo = bpf_map_show_fdinfo,
  307. #endif
  308. .release = bpf_map_release,
  309. .read = bpf_dummy_read,
  310. .write = bpf_dummy_write,
  311. };
  312. int bpf_map_new_fd(struct bpf_map *map, int flags)
  313. {
  314. int ret;
  315. ret = security_bpf_map(map, OPEN_FMODE(flags));
  316. if (ret < 0)
  317. return ret;
  318. return anon_inode_getfd("bpf-map", &bpf_map_fops, map,
  319. flags | O_CLOEXEC);
  320. }
  321. int bpf_get_file_flag(int flags)
  322. {
  323. if ((flags & BPF_F_RDONLY) && (flags & BPF_F_WRONLY))
  324. return -EINVAL;
  325. if (flags & BPF_F_RDONLY)
  326. return O_RDONLY;
  327. if (flags & BPF_F_WRONLY)
  328. return O_WRONLY;
  329. return O_RDWR;
  330. }
  331. /* helper macro to check that unused fields 'union bpf_attr' are zero */
  332. #define CHECK_ATTR(CMD) \
  333. memchr_inv((void *) &attr->CMD##_LAST_FIELD + \
  334. sizeof(attr->CMD##_LAST_FIELD), 0, \
  335. sizeof(*attr) - \
  336. offsetof(union bpf_attr, CMD##_LAST_FIELD) - \
  337. sizeof(attr->CMD##_LAST_FIELD)) != NULL
  338. /* dst and src must have at least BPF_OBJ_NAME_LEN number of bytes.
  339. * Return 0 on success and < 0 on error.
  340. */
  341. static int bpf_obj_name_cpy(char *dst, const char *src)
  342. {
  343. const char *end = src + BPF_OBJ_NAME_LEN;
  344. memset(dst, 0, BPF_OBJ_NAME_LEN);
  345. /* Copy all isalnum() and '_' char */
  346. while (src < end && *src) {
  347. if (!isalnum(*src) && *src != '_')
  348. return -EINVAL;
  349. *dst++ = *src++;
  350. }
  351. /* No '\0' found in BPF_OBJ_NAME_LEN number of bytes */
  352. if (src == end)
  353. return -EINVAL;
  354. return 0;
  355. }
  356. #define BPF_MAP_CREATE_LAST_FIELD map_ifindex
  357. /* called via syscall */
  358. static int map_create(union bpf_attr *attr)
  359. {
  360. int numa_node = bpf_map_attr_numa_node(attr);
  361. struct bpf_map *map;
  362. int f_flags;
  363. int err;
  364. err = CHECK_ATTR(BPF_MAP_CREATE);
  365. if (err)
  366. return -EINVAL;
  367. f_flags = bpf_get_file_flag(attr->map_flags);
  368. if (f_flags < 0)
  369. return f_flags;
  370. if (numa_node != NUMA_NO_NODE &&
  371. ((unsigned int)numa_node >= nr_node_ids ||
  372. !node_online(numa_node)))
  373. return -EINVAL;
  374. /* find map type and init map: hashtable vs rbtree vs bloom vs ... */
  375. map = find_and_alloc_map(attr);
  376. if (IS_ERR(map))
  377. return PTR_ERR(map);
  378. err = bpf_obj_name_cpy(map->name, attr->map_name);
  379. if (err)
  380. goto free_map_nouncharge;
  381. atomic_set(&map->refcnt, 1);
  382. atomic_set(&map->usercnt, 1);
  383. err = security_bpf_map_alloc(map);
  384. if (err)
  385. goto free_map_nouncharge;
  386. err = bpf_map_charge_memlock(map);
  387. if (err)
  388. goto free_map_sec;
  389. err = bpf_map_alloc_id(map);
  390. if (err)
  391. goto free_map;
  392. err = bpf_map_new_fd(map, f_flags);
  393. if (err < 0) {
  394. /* failed to allocate fd.
  395. * bpf_map_put() is needed because the above
  396. * bpf_map_alloc_id() has published the map
  397. * to the userspace and the userspace may
  398. * have refcnt-ed it through BPF_MAP_GET_FD_BY_ID.
  399. */
  400. bpf_map_put(map);
  401. return err;
  402. }
  403. trace_bpf_map_create(map, err);
  404. return err;
  405. free_map:
  406. bpf_map_uncharge_memlock(map);
  407. free_map_sec:
  408. security_bpf_map_free(map);
  409. free_map_nouncharge:
  410. map->ops->map_free(map);
  411. return err;
  412. }
  413. /* if error is returned, fd is released.
  414. * On success caller should complete fd access with matching fdput()
  415. */
  416. struct bpf_map *__bpf_map_get(struct fd f)
  417. {
  418. if (!f.file)
  419. return ERR_PTR(-EBADF);
  420. if (f.file->f_op != &bpf_map_fops) {
  421. fdput(f);
  422. return ERR_PTR(-EINVAL);
  423. }
  424. return f.file->private_data;
  425. }
  426. /* prog's and map's refcnt limit */
  427. #define BPF_MAX_REFCNT 32768
  428. struct bpf_map *bpf_map_inc(struct bpf_map *map, bool uref)
  429. {
  430. if (atomic_inc_return(&map->refcnt) > BPF_MAX_REFCNT) {
  431. atomic_dec(&map->refcnt);
  432. return ERR_PTR(-EBUSY);
  433. }
  434. if (uref)
  435. atomic_inc(&map->usercnt);
  436. return map;
  437. }
  438. struct bpf_map *bpf_map_get_with_uref(u32 ufd)
  439. {
  440. struct fd f = fdget(ufd);
  441. struct bpf_map *map;
  442. map = __bpf_map_get(f);
  443. if (IS_ERR(map))
  444. return map;
  445. map = bpf_map_inc(map, true);
  446. fdput(f);
  447. return map;
  448. }
  449. /* map_idr_lock should have been held */
  450. static struct bpf_map *bpf_map_inc_not_zero(struct bpf_map *map,
  451. bool uref)
  452. {
  453. int refold;
  454. refold = __atomic_add_unless(&map->refcnt, 1, 0);
  455. if (refold >= BPF_MAX_REFCNT) {
  456. __bpf_map_put(map, false);
  457. return ERR_PTR(-EBUSY);
  458. }
  459. if (!refold)
  460. return ERR_PTR(-ENOENT);
  461. if (uref)
  462. atomic_inc(&map->usercnt);
  463. return map;
  464. }
  465. int __weak bpf_stackmap_copy(struct bpf_map *map, void *key, void *value)
  466. {
  467. return -ENOTSUPP;
  468. }
  469. /* last field in 'union bpf_attr' used by this command */
  470. #define BPF_MAP_LOOKUP_ELEM_LAST_FIELD value
  471. static int map_lookup_elem(union bpf_attr *attr)
  472. {
  473. void __user *ukey = u64_to_user_ptr(attr->key);
  474. void __user *uvalue = u64_to_user_ptr(attr->value);
  475. int ufd = attr->map_fd;
  476. struct bpf_map *map;
  477. void *key, *value, *ptr;
  478. u32 value_size;
  479. struct fd f;
  480. int err;
  481. if (CHECK_ATTR(BPF_MAP_LOOKUP_ELEM))
  482. return -EINVAL;
  483. f = fdget(ufd);
  484. map = __bpf_map_get(f);
  485. if (IS_ERR(map))
  486. return PTR_ERR(map);
  487. if (!(f.file->f_mode & FMODE_CAN_READ)) {
  488. err = -EPERM;
  489. goto err_put;
  490. }
  491. key = memdup_user(ukey, map->key_size);
  492. if (IS_ERR(key)) {
  493. err = PTR_ERR(key);
  494. goto err_put;
  495. }
  496. if (map->map_type == BPF_MAP_TYPE_PERCPU_HASH ||
  497. map->map_type == BPF_MAP_TYPE_LRU_PERCPU_HASH ||
  498. map->map_type == BPF_MAP_TYPE_PERCPU_ARRAY)
  499. value_size = round_up(map->value_size, 8) * num_possible_cpus();
  500. else if (IS_FD_MAP(map))
  501. value_size = sizeof(u32);
  502. else
  503. value_size = map->value_size;
  504. err = -ENOMEM;
  505. value = kmalloc(value_size, GFP_USER | __GFP_NOWARN);
  506. if (!value)
  507. goto free_key;
  508. if (bpf_map_is_dev_bound(map)) {
  509. err = bpf_map_offload_lookup_elem(map, key, value);
  510. } else if (map->map_type == BPF_MAP_TYPE_PERCPU_HASH ||
  511. map->map_type == BPF_MAP_TYPE_LRU_PERCPU_HASH) {
  512. err = bpf_percpu_hash_copy(map, key, value);
  513. } else if (map->map_type == BPF_MAP_TYPE_PERCPU_ARRAY) {
  514. err = bpf_percpu_array_copy(map, key, value);
  515. } else if (map->map_type == BPF_MAP_TYPE_STACK_TRACE) {
  516. err = bpf_stackmap_copy(map, key, value);
  517. } else if (IS_FD_ARRAY(map)) {
  518. err = bpf_fd_array_map_lookup_elem(map, key, value);
  519. } else if (IS_FD_HASH(map)) {
  520. err = bpf_fd_htab_map_lookup_elem(map, key, value);
  521. } else {
  522. rcu_read_lock();
  523. ptr = map->ops->map_lookup_elem(map, key);
  524. if (ptr)
  525. memcpy(value, ptr, value_size);
  526. rcu_read_unlock();
  527. err = ptr ? 0 : -ENOENT;
  528. }
  529. if (err)
  530. goto free_value;
  531. err = -EFAULT;
  532. if (copy_to_user(uvalue, value, value_size) != 0)
  533. goto free_value;
  534. trace_bpf_map_lookup_elem(map, ufd, key, value);
  535. err = 0;
  536. free_value:
  537. kfree(value);
  538. free_key:
  539. kfree(key);
  540. err_put:
  541. fdput(f);
  542. return err;
  543. }
  544. #define BPF_MAP_UPDATE_ELEM_LAST_FIELD flags
  545. static int map_update_elem(union bpf_attr *attr)
  546. {
  547. void __user *ukey = u64_to_user_ptr(attr->key);
  548. void __user *uvalue = u64_to_user_ptr(attr->value);
  549. int ufd = attr->map_fd;
  550. struct bpf_map *map;
  551. void *key, *value;
  552. u32 value_size;
  553. struct fd f;
  554. int err;
  555. if (CHECK_ATTR(BPF_MAP_UPDATE_ELEM))
  556. return -EINVAL;
  557. f = fdget(ufd);
  558. map = __bpf_map_get(f);
  559. if (IS_ERR(map))
  560. return PTR_ERR(map);
  561. if (!(f.file->f_mode & FMODE_CAN_WRITE)) {
  562. err = -EPERM;
  563. goto err_put;
  564. }
  565. key = memdup_user(ukey, map->key_size);
  566. if (IS_ERR(key)) {
  567. err = PTR_ERR(key);
  568. goto err_put;
  569. }
  570. if (map->map_type == BPF_MAP_TYPE_PERCPU_HASH ||
  571. map->map_type == BPF_MAP_TYPE_LRU_PERCPU_HASH ||
  572. map->map_type == BPF_MAP_TYPE_PERCPU_ARRAY)
  573. value_size = round_up(map->value_size, 8) * num_possible_cpus();
  574. else
  575. value_size = map->value_size;
  576. err = -ENOMEM;
  577. value = kmalloc(value_size, GFP_USER | __GFP_NOWARN);
  578. if (!value)
  579. goto free_key;
  580. err = -EFAULT;
  581. if (copy_from_user(value, uvalue, value_size) != 0)
  582. goto free_value;
  583. /* Need to create a kthread, thus must support schedule */
  584. if (bpf_map_is_dev_bound(map)) {
  585. err = bpf_map_offload_update_elem(map, key, value, attr->flags);
  586. goto out;
  587. } else if (map->map_type == BPF_MAP_TYPE_CPUMAP) {
  588. err = map->ops->map_update_elem(map, key, value, attr->flags);
  589. goto out;
  590. }
  591. /* must increment bpf_prog_active to avoid kprobe+bpf triggering from
  592. * inside bpf map update or delete otherwise deadlocks are possible
  593. */
  594. preempt_disable();
  595. __this_cpu_inc(bpf_prog_active);
  596. if (map->map_type == BPF_MAP_TYPE_PERCPU_HASH ||
  597. map->map_type == BPF_MAP_TYPE_LRU_PERCPU_HASH) {
  598. err = bpf_percpu_hash_update(map, key, value, attr->flags);
  599. } else if (map->map_type == BPF_MAP_TYPE_PERCPU_ARRAY) {
  600. err = bpf_percpu_array_update(map, key, value, attr->flags);
  601. } else if (IS_FD_ARRAY(map)) {
  602. rcu_read_lock();
  603. err = bpf_fd_array_map_update_elem(map, f.file, key, value,
  604. attr->flags);
  605. rcu_read_unlock();
  606. } else if (map->map_type == BPF_MAP_TYPE_HASH_OF_MAPS) {
  607. rcu_read_lock();
  608. err = bpf_fd_htab_map_update_elem(map, f.file, key, value,
  609. attr->flags);
  610. rcu_read_unlock();
  611. } else {
  612. rcu_read_lock();
  613. err = map->ops->map_update_elem(map, key, value, attr->flags);
  614. rcu_read_unlock();
  615. }
  616. __this_cpu_dec(bpf_prog_active);
  617. preempt_enable();
  618. out:
  619. if (!err)
  620. trace_bpf_map_update_elem(map, ufd, key, value);
  621. free_value:
  622. kfree(value);
  623. free_key:
  624. kfree(key);
  625. err_put:
  626. fdput(f);
  627. return err;
  628. }
  629. #define BPF_MAP_DELETE_ELEM_LAST_FIELD key
  630. static int map_delete_elem(union bpf_attr *attr)
  631. {
  632. void __user *ukey = u64_to_user_ptr(attr->key);
  633. int ufd = attr->map_fd;
  634. struct bpf_map *map;
  635. struct fd f;
  636. void *key;
  637. int err;
  638. if (CHECK_ATTR(BPF_MAP_DELETE_ELEM))
  639. return -EINVAL;
  640. f = fdget(ufd);
  641. map = __bpf_map_get(f);
  642. if (IS_ERR(map))
  643. return PTR_ERR(map);
  644. if (!(f.file->f_mode & FMODE_CAN_WRITE)) {
  645. err = -EPERM;
  646. goto err_put;
  647. }
  648. key = memdup_user(ukey, map->key_size);
  649. if (IS_ERR(key)) {
  650. err = PTR_ERR(key);
  651. goto err_put;
  652. }
  653. if (bpf_map_is_dev_bound(map)) {
  654. err = bpf_map_offload_delete_elem(map, key);
  655. goto out;
  656. }
  657. preempt_disable();
  658. __this_cpu_inc(bpf_prog_active);
  659. rcu_read_lock();
  660. err = map->ops->map_delete_elem(map, key);
  661. rcu_read_unlock();
  662. __this_cpu_dec(bpf_prog_active);
  663. preempt_enable();
  664. out:
  665. if (!err)
  666. trace_bpf_map_delete_elem(map, ufd, key);
  667. kfree(key);
  668. err_put:
  669. fdput(f);
  670. return err;
  671. }
  672. /* last field in 'union bpf_attr' used by this command */
  673. #define BPF_MAP_GET_NEXT_KEY_LAST_FIELD next_key
  674. static int map_get_next_key(union bpf_attr *attr)
  675. {
  676. void __user *ukey = u64_to_user_ptr(attr->key);
  677. void __user *unext_key = u64_to_user_ptr(attr->next_key);
  678. int ufd = attr->map_fd;
  679. struct bpf_map *map;
  680. void *key, *next_key;
  681. struct fd f;
  682. int err;
  683. if (CHECK_ATTR(BPF_MAP_GET_NEXT_KEY))
  684. return -EINVAL;
  685. f = fdget(ufd);
  686. map = __bpf_map_get(f);
  687. if (IS_ERR(map))
  688. return PTR_ERR(map);
  689. if (!(f.file->f_mode & FMODE_CAN_READ)) {
  690. err = -EPERM;
  691. goto err_put;
  692. }
  693. if (ukey) {
  694. key = memdup_user(ukey, map->key_size);
  695. if (IS_ERR(key)) {
  696. err = PTR_ERR(key);
  697. goto err_put;
  698. }
  699. } else {
  700. key = NULL;
  701. }
  702. err = -ENOMEM;
  703. next_key = kmalloc(map->key_size, GFP_USER);
  704. if (!next_key)
  705. goto free_key;
  706. if (bpf_map_is_dev_bound(map)) {
  707. err = bpf_map_offload_get_next_key(map, key, next_key);
  708. goto out;
  709. }
  710. rcu_read_lock();
  711. err = map->ops->map_get_next_key(map, key, next_key);
  712. rcu_read_unlock();
  713. out:
  714. if (err)
  715. goto free_next_key;
  716. err = -EFAULT;
  717. if (copy_to_user(unext_key, next_key, map->key_size) != 0)
  718. goto free_next_key;
  719. trace_bpf_map_next_key(map, ufd, key, next_key);
  720. err = 0;
  721. free_next_key:
  722. kfree(next_key);
  723. free_key:
  724. kfree(key);
  725. err_put:
  726. fdput(f);
  727. return err;
  728. }
  729. static const struct bpf_prog_ops * const bpf_prog_types[] = {
  730. #define BPF_PROG_TYPE(_id, _name) \
  731. [_id] = & _name ## _prog_ops,
  732. #define BPF_MAP_TYPE(_id, _ops)
  733. #include <linux/bpf_types.h>
  734. #undef BPF_PROG_TYPE
  735. #undef BPF_MAP_TYPE
  736. };
  737. static int find_prog_type(enum bpf_prog_type type, struct bpf_prog *prog)
  738. {
  739. const struct bpf_prog_ops *ops;
  740. if (type >= ARRAY_SIZE(bpf_prog_types))
  741. return -EINVAL;
  742. type = array_index_nospec(type, ARRAY_SIZE(bpf_prog_types));
  743. ops = bpf_prog_types[type];
  744. if (!ops)
  745. return -EINVAL;
  746. if (!bpf_prog_is_dev_bound(prog->aux))
  747. prog->aux->ops = ops;
  748. else
  749. prog->aux->ops = &bpf_offload_prog_ops;
  750. prog->type = type;
  751. return 0;
  752. }
  753. /* drop refcnt on maps used by eBPF program and free auxilary data */
  754. static void free_used_maps(struct bpf_prog_aux *aux)
  755. {
  756. int i;
  757. for (i = 0; i < aux->used_map_cnt; i++)
  758. bpf_map_put(aux->used_maps[i]);
  759. kfree(aux->used_maps);
  760. }
  761. int __bpf_prog_charge(struct user_struct *user, u32 pages)
  762. {
  763. unsigned long memlock_limit = rlimit(RLIMIT_MEMLOCK) >> PAGE_SHIFT;
  764. unsigned long user_bufs;
  765. if (user) {
  766. user_bufs = atomic_long_add_return(pages, &user->locked_vm);
  767. if (user_bufs > memlock_limit) {
  768. atomic_long_sub(pages, &user->locked_vm);
  769. return -EPERM;
  770. }
  771. }
  772. return 0;
  773. }
  774. void __bpf_prog_uncharge(struct user_struct *user, u32 pages)
  775. {
  776. if (user)
  777. atomic_long_sub(pages, &user->locked_vm);
  778. }
  779. static int bpf_prog_charge_memlock(struct bpf_prog *prog)
  780. {
  781. struct user_struct *user = get_current_user();
  782. int ret;
  783. ret = __bpf_prog_charge(user, prog->pages);
  784. if (ret) {
  785. free_uid(user);
  786. return ret;
  787. }
  788. prog->aux->user = user;
  789. return 0;
  790. }
  791. static void bpf_prog_uncharge_memlock(struct bpf_prog *prog)
  792. {
  793. struct user_struct *user = prog->aux->user;
  794. __bpf_prog_uncharge(user, prog->pages);
  795. free_uid(user);
  796. }
  797. static int bpf_prog_alloc_id(struct bpf_prog *prog)
  798. {
  799. int id;
  800. idr_preload(GFP_KERNEL);
  801. spin_lock_bh(&prog_idr_lock);
  802. id = idr_alloc_cyclic(&prog_idr, prog, 1, INT_MAX, GFP_ATOMIC);
  803. if (id > 0)
  804. prog->aux->id = id;
  805. spin_unlock_bh(&prog_idr_lock);
  806. idr_preload_end();
  807. /* id is in [1, INT_MAX) */
  808. if (WARN_ON_ONCE(!id))
  809. return -ENOSPC;
  810. return id > 0 ? 0 : id;
  811. }
  812. void bpf_prog_free_id(struct bpf_prog *prog, bool do_idr_lock)
  813. {
  814. /* cBPF to eBPF migrations are currently not in the idr store.
  815. * Offloaded programs are removed from the store when their device
  816. * disappears - even if someone grabs an fd to them they are unusable,
  817. * simply waiting for refcnt to drop to be freed.
  818. */
  819. if (!prog->aux->id)
  820. return;
  821. if (do_idr_lock)
  822. spin_lock_bh(&prog_idr_lock);
  823. else
  824. __acquire(&prog_idr_lock);
  825. idr_remove(&prog_idr, prog->aux->id);
  826. prog->aux->id = 0;
  827. if (do_idr_lock)
  828. spin_unlock_bh(&prog_idr_lock);
  829. else
  830. __release(&prog_idr_lock);
  831. }
  832. static void __bpf_prog_put_rcu(struct rcu_head *rcu)
  833. {
  834. struct bpf_prog_aux *aux = container_of(rcu, struct bpf_prog_aux, rcu);
  835. free_used_maps(aux);
  836. bpf_prog_uncharge_memlock(aux->prog);
  837. security_bpf_prog_free(aux);
  838. bpf_prog_free(aux->prog);
  839. }
  840. static void __bpf_prog_put(struct bpf_prog *prog, bool do_idr_lock)
  841. {
  842. if (atomic_dec_and_test(&prog->aux->refcnt)) {
  843. int i;
  844. trace_bpf_prog_put_rcu(prog);
  845. /* bpf_prog_free_id() must be called first */
  846. bpf_prog_free_id(prog, do_idr_lock);
  847. for (i = 0; i < prog->aux->func_cnt; i++)
  848. bpf_prog_kallsyms_del(prog->aux->func[i]);
  849. bpf_prog_kallsyms_del(prog);
  850. call_rcu(&prog->aux->rcu, __bpf_prog_put_rcu);
  851. }
  852. }
  853. void bpf_prog_put(struct bpf_prog *prog)
  854. {
  855. __bpf_prog_put(prog, true);
  856. }
  857. EXPORT_SYMBOL_GPL(bpf_prog_put);
  858. static int bpf_prog_release(struct inode *inode, struct file *filp)
  859. {
  860. struct bpf_prog *prog = filp->private_data;
  861. bpf_prog_put(prog);
  862. return 0;
  863. }
  864. #ifdef CONFIG_PROC_FS
  865. static void bpf_prog_show_fdinfo(struct seq_file *m, struct file *filp)
  866. {
  867. const struct bpf_prog *prog = filp->private_data;
  868. char prog_tag[sizeof(prog->tag) * 2 + 1] = { };
  869. bin2hex(prog_tag, prog->tag, sizeof(prog->tag));
  870. seq_printf(m,
  871. "prog_type:\t%u\n"
  872. "prog_jited:\t%u\n"
  873. "prog_tag:\t%s\n"
  874. "memlock:\t%llu\n",
  875. prog->type,
  876. prog->jited,
  877. prog_tag,
  878. prog->pages * 1ULL << PAGE_SHIFT);
  879. }
  880. #endif
  881. const struct file_operations bpf_prog_fops = {
  882. #ifdef CONFIG_PROC_FS
  883. .show_fdinfo = bpf_prog_show_fdinfo,
  884. #endif
  885. .release = bpf_prog_release,
  886. .read = bpf_dummy_read,
  887. .write = bpf_dummy_write,
  888. };
  889. int bpf_prog_new_fd(struct bpf_prog *prog)
  890. {
  891. int ret;
  892. ret = security_bpf_prog(prog);
  893. if (ret < 0)
  894. return ret;
  895. return anon_inode_getfd("bpf-prog", &bpf_prog_fops, prog,
  896. O_RDWR | O_CLOEXEC);
  897. }
  898. static struct bpf_prog *____bpf_prog_get(struct fd f)
  899. {
  900. if (!f.file)
  901. return ERR_PTR(-EBADF);
  902. if (f.file->f_op != &bpf_prog_fops) {
  903. fdput(f);
  904. return ERR_PTR(-EINVAL);
  905. }
  906. return f.file->private_data;
  907. }
  908. struct bpf_prog *bpf_prog_add(struct bpf_prog *prog, int i)
  909. {
  910. if (atomic_add_return(i, &prog->aux->refcnt) > BPF_MAX_REFCNT) {
  911. atomic_sub(i, &prog->aux->refcnt);
  912. return ERR_PTR(-EBUSY);
  913. }
  914. return prog;
  915. }
  916. EXPORT_SYMBOL_GPL(bpf_prog_add);
  917. void bpf_prog_sub(struct bpf_prog *prog, int i)
  918. {
  919. /* Only to be used for undoing previous bpf_prog_add() in some
  920. * error path. We still know that another entity in our call
  921. * path holds a reference to the program, thus atomic_sub() can
  922. * be safely used in such cases!
  923. */
  924. WARN_ON(atomic_sub_return(i, &prog->aux->refcnt) == 0);
  925. }
  926. EXPORT_SYMBOL_GPL(bpf_prog_sub);
  927. struct bpf_prog *bpf_prog_inc(struct bpf_prog *prog)
  928. {
  929. return bpf_prog_add(prog, 1);
  930. }
  931. EXPORT_SYMBOL_GPL(bpf_prog_inc);
  932. /* prog_idr_lock should have been held */
  933. struct bpf_prog *bpf_prog_inc_not_zero(struct bpf_prog *prog)
  934. {
  935. int refold;
  936. refold = __atomic_add_unless(&prog->aux->refcnt, 1, 0);
  937. if (refold >= BPF_MAX_REFCNT) {
  938. __bpf_prog_put(prog, false);
  939. return ERR_PTR(-EBUSY);
  940. }
  941. if (!refold)
  942. return ERR_PTR(-ENOENT);
  943. return prog;
  944. }
  945. EXPORT_SYMBOL_GPL(bpf_prog_inc_not_zero);
  946. bool bpf_prog_get_ok(struct bpf_prog *prog,
  947. enum bpf_prog_type *attach_type, bool attach_drv)
  948. {
  949. /* not an attachment, just a refcount inc, always allow */
  950. if (!attach_type)
  951. return true;
  952. if (prog->type != *attach_type)
  953. return false;
  954. if (bpf_prog_is_dev_bound(prog->aux) && !attach_drv)
  955. return false;
  956. return true;
  957. }
  958. static struct bpf_prog *__bpf_prog_get(u32 ufd, enum bpf_prog_type *attach_type,
  959. bool attach_drv)
  960. {
  961. struct fd f = fdget(ufd);
  962. struct bpf_prog *prog;
  963. prog = ____bpf_prog_get(f);
  964. if (IS_ERR(prog))
  965. return prog;
  966. if (!bpf_prog_get_ok(prog, attach_type, attach_drv)) {
  967. prog = ERR_PTR(-EINVAL);
  968. goto out;
  969. }
  970. prog = bpf_prog_inc(prog);
  971. out:
  972. fdput(f);
  973. return prog;
  974. }
  975. struct bpf_prog *bpf_prog_get(u32 ufd)
  976. {
  977. return __bpf_prog_get(ufd, NULL, false);
  978. }
  979. struct bpf_prog *bpf_prog_get_type_dev(u32 ufd, enum bpf_prog_type type,
  980. bool attach_drv)
  981. {
  982. struct bpf_prog *prog = __bpf_prog_get(ufd, &type, attach_drv);
  983. if (!IS_ERR(prog))
  984. trace_bpf_prog_get_type(prog);
  985. return prog;
  986. }
  987. EXPORT_SYMBOL_GPL(bpf_prog_get_type_dev);
  988. /* Initially all BPF programs could be loaded w/o specifying
  989. * expected_attach_type. Later for some of them specifying expected_attach_type
  990. * at load time became required so that program could be validated properly.
  991. * Programs of types that are allowed to be loaded both w/ and w/o (for
  992. * backward compatibility) expected_attach_type, should have the default attach
  993. * type assigned to expected_attach_type for the latter case, so that it can be
  994. * validated later at attach time.
  995. *
  996. * bpf_prog_load_fixup_attach_type() sets expected_attach_type in @attr if
  997. * prog type requires it but has some attach types that have to be backward
  998. * compatible.
  999. */
  1000. static void bpf_prog_load_fixup_attach_type(union bpf_attr *attr)
  1001. {
  1002. switch (attr->prog_type) {
  1003. case BPF_PROG_TYPE_CGROUP_SOCK:
  1004. /* Unfortunately BPF_ATTACH_TYPE_UNSPEC enumeration doesn't
  1005. * exist so checking for non-zero is the way to go here.
  1006. */
  1007. if (!attr->expected_attach_type)
  1008. attr->expected_attach_type =
  1009. BPF_CGROUP_INET_SOCK_CREATE;
  1010. break;
  1011. }
  1012. }
  1013. static int
  1014. bpf_prog_load_check_attach_type(enum bpf_prog_type prog_type,
  1015. enum bpf_attach_type expected_attach_type)
  1016. {
  1017. switch (prog_type) {
  1018. case BPF_PROG_TYPE_CGROUP_SOCK:
  1019. switch (expected_attach_type) {
  1020. case BPF_CGROUP_INET_SOCK_CREATE:
  1021. case BPF_CGROUP_INET4_POST_BIND:
  1022. case BPF_CGROUP_INET6_POST_BIND:
  1023. return 0;
  1024. default:
  1025. return -EINVAL;
  1026. }
  1027. case BPF_PROG_TYPE_CGROUP_SOCK_ADDR:
  1028. switch (expected_attach_type) {
  1029. case BPF_CGROUP_INET4_BIND:
  1030. case BPF_CGROUP_INET6_BIND:
  1031. case BPF_CGROUP_INET4_CONNECT:
  1032. case BPF_CGROUP_INET6_CONNECT:
  1033. return 0;
  1034. default:
  1035. return -EINVAL;
  1036. }
  1037. default:
  1038. return 0;
  1039. }
  1040. }
  1041. /* last field in 'union bpf_attr' used by this command */
  1042. #define BPF_PROG_LOAD_LAST_FIELD expected_attach_type
  1043. static int bpf_prog_load(union bpf_attr *attr)
  1044. {
  1045. enum bpf_prog_type type = attr->prog_type;
  1046. struct bpf_prog *prog;
  1047. int err;
  1048. char license[128];
  1049. bool is_gpl;
  1050. if (CHECK_ATTR(BPF_PROG_LOAD))
  1051. return -EINVAL;
  1052. if (attr->prog_flags & ~BPF_F_STRICT_ALIGNMENT)
  1053. return -EINVAL;
  1054. /* copy eBPF program license from user space */
  1055. if (strncpy_from_user(license, u64_to_user_ptr(attr->license),
  1056. sizeof(license) - 1) < 0)
  1057. return -EFAULT;
  1058. license[sizeof(license) - 1] = 0;
  1059. /* eBPF programs must be GPL compatible to use GPL-ed functions */
  1060. is_gpl = license_is_gpl_compatible(license);
  1061. if (attr->insn_cnt == 0 || attr->insn_cnt > BPF_MAXINSNS)
  1062. return -E2BIG;
  1063. if (type == BPF_PROG_TYPE_KPROBE &&
  1064. attr->kern_version != LINUX_VERSION_CODE)
  1065. return -EINVAL;
  1066. if (type != BPF_PROG_TYPE_SOCKET_FILTER &&
  1067. type != BPF_PROG_TYPE_CGROUP_SKB &&
  1068. !capable(CAP_SYS_ADMIN))
  1069. return -EPERM;
  1070. bpf_prog_load_fixup_attach_type(attr);
  1071. if (bpf_prog_load_check_attach_type(type, attr->expected_attach_type))
  1072. return -EINVAL;
  1073. /* plain bpf_prog allocation */
  1074. prog = bpf_prog_alloc(bpf_prog_size(attr->insn_cnt), GFP_USER);
  1075. if (!prog)
  1076. return -ENOMEM;
  1077. prog->expected_attach_type = attr->expected_attach_type;
  1078. prog->aux->offload_requested = !!attr->prog_ifindex;
  1079. err = security_bpf_prog_alloc(prog->aux);
  1080. if (err)
  1081. goto free_prog_nouncharge;
  1082. err = bpf_prog_charge_memlock(prog);
  1083. if (err)
  1084. goto free_prog_sec;
  1085. prog->len = attr->insn_cnt;
  1086. err = -EFAULT;
  1087. if (copy_from_user(prog->insns, u64_to_user_ptr(attr->insns),
  1088. bpf_prog_insn_size(prog)) != 0)
  1089. goto free_prog;
  1090. prog->orig_prog = NULL;
  1091. prog->jited = 0;
  1092. atomic_set(&prog->aux->refcnt, 1);
  1093. prog->gpl_compatible = is_gpl ? 1 : 0;
  1094. if (bpf_prog_is_dev_bound(prog->aux)) {
  1095. err = bpf_prog_offload_init(prog, attr);
  1096. if (err)
  1097. goto free_prog;
  1098. }
  1099. /* find program type: socket_filter vs tracing_filter */
  1100. err = find_prog_type(type, prog);
  1101. if (err < 0)
  1102. goto free_prog;
  1103. prog->aux->load_time = ktime_get_boot_ns();
  1104. err = bpf_obj_name_cpy(prog->aux->name, attr->prog_name);
  1105. if (err)
  1106. goto free_prog;
  1107. /* run eBPF verifier */
  1108. err = bpf_check(&prog, attr);
  1109. if (err < 0)
  1110. goto free_used_maps;
  1111. /* eBPF program is ready to be JITed */
  1112. if (!prog->bpf_func)
  1113. prog = bpf_prog_select_runtime(prog, &err);
  1114. if (err < 0)
  1115. goto free_used_maps;
  1116. err = bpf_prog_alloc_id(prog);
  1117. if (err)
  1118. goto free_used_maps;
  1119. err = bpf_prog_new_fd(prog);
  1120. if (err < 0) {
  1121. /* failed to allocate fd.
  1122. * bpf_prog_put() is needed because the above
  1123. * bpf_prog_alloc_id() has published the prog
  1124. * to the userspace and the userspace may
  1125. * have refcnt-ed it through BPF_PROG_GET_FD_BY_ID.
  1126. */
  1127. bpf_prog_put(prog);
  1128. return err;
  1129. }
  1130. bpf_prog_kallsyms_add(prog);
  1131. trace_bpf_prog_load(prog, err);
  1132. return err;
  1133. free_used_maps:
  1134. free_used_maps(prog->aux);
  1135. free_prog:
  1136. bpf_prog_uncharge_memlock(prog);
  1137. free_prog_sec:
  1138. security_bpf_prog_free(prog->aux);
  1139. free_prog_nouncharge:
  1140. bpf_prog_free(prog);
  1141. return err;
  1142. }
  1143. #define BPF_OBJ_LAST_FIELD file_flags
  1144. static int bpf_obj_pin(const union bpf_attr *attr)
  1145. {
  1146. if (CHECK_ATTR(BPF_OBJ) || attr->file_flags != 0)
  1147. return -EINVAL;
  1148. return bpf_obj_pin_user(attr->bpf_fd, u64_to_user_ptr(attr->pathname));
  1149. }
  1150. static int bpf_obj_get(const union bpf_attr *attr)
  1151. {
  1152. if (CHECK_ATTR(BPF_OBJ) || attr->bpf_fd != 0 ||
  1153. attr->file_flags & ~BPF_OBJ_FLAG_MASK)
  1154. return -EINVAL;
  1155. return bpf_obj_get_user(u64_to_user_ptr(attr->pathname),
  1156. attr->file_flags);
  1157. }
  1158. struct bpf_raw_tracepoint {
  1159. struct bpf_raw_event_map *btp;
  1160. struct bpf_prog *prog;
  1161. };
  1162. static int bpf_raw_tracepoint_release(struct inode *inode, struct file *filp)
  1163. {
  1164. struct bpf_raw_tracepoint *raw_tp = filp->private_data;
  1165. if (raw_tp->prog) {
  1166. bpf_probe_unregister(raw_tp->btp, raw_tp->prog);
  1167. bpf_prog_put(raw_tp->prog);
  1168. }
  1169. kfree(raw_tp);
  1170. return 0;
  1171. }
  1172. static const struct file_operations bpf_raw_tp_fops = {
  1173. .release = bpf_raw_tracepoint_release,
  1174. .read = bpf_dummy_read,
  1175. .write = bpf_dummy_write,
  1176. };
  1177. #define BPF_RAW_TRACEPOINT_OPEN_LAST_FIELD raw_tracepoint.prog_fd
  1178. static int bpf_raw_tracepoint_open(const union bpf_attr *attr)
  1179. {
  1180. struct bpf_raw_tracepoint *raw_tp;
  1181. struct bpf_raw_event_map *btp;
  1182. struct bpf_prog *prog;
  1183. char tp_name[128];
  1184. int tp_fd, err;
  1185. if (strncpy_from_user(tp_name, u64_to_user_ptr(attr->raw_tracepoint.name),
  1186. sizeof(tp_name) - 1) < 0)
  1187. return -EFAULT;
  1188. tp_name[sizeof(tp_name) - 1] = 0;
  1189. btp = bpf_find_raw_tracepoint(tp_name);
  1190. if (!btp)
  1191. return -ENOENT;
  1192. raw_tp = kzalloc(sizeof(*raw_tp), GFP_USER);
  1193. if (!raw_tp)
  1194. return -ENOMEM;
  1195. raw_tp->btp = btp;
  1196. prog = bpf_prog_get_type(attr->raw_tracepoint.prog_fd,
  1197. BPF_PROG_TYPE_RAW_TRACEPOINT);
  1198. if (IS_ERR(prog)) {
  1199. err = PTR_ERR(prog);
  1200. goto out_free_tp;
  1201. }
  1202. err = bpf_probe_register(raw_tp->btp, prog);
  1203. if (err)
  1204. goto out_put_prog;
  1205. raw_tp->prog = prog;
  1206. tp_fd = anon_inode_getfd("bpf-raw-tracepoint", &bpf_raw_tp_fops, raw_tp,
  1207. O_CLOEXEC);
  1208. if (tp_fd < 0) {
  1209. bpf_probe_unregister(raw_tp->btp, prog);
  1210. err = tp_fd;
  1211. goto out_put_prog;
  1212. }
  1213. return tp_fd;
  1214. out_put_prog:
  1215. bpf_prog_put(prog);
  1216. out_free_tp:
  1217. kfree(raw_tp);
  1218. return err;
  1219. }
  1220. #ifdef CONFIG_CGROUP_BPF
  1221. static int bpf_prog_attach_check_attach_type(const struct bpf_prog *prog,
  1222. enum bpf_attach_type attach_type)
  1223. {
  1224. switch (prog->type) {
  1225. case BPF_PROG_TYPE_CGROUP_SOCK:
  1226. case BPF_PROG_TYPE_CGROUP_SOCK_ADDR:
  1227. return attach_type == prog->expected_attach_type ? 0 : -EINVAL;
  1228. default:
  1229. return 0;
  1230. }
  1231. }
  1232. #define BPF_PROG_ATTACH_LAST_FIELD attach_flags
  1233. static int sockmap_get_from_fd(const union bpf_attr *attr,
  1234. int type, bool attach)
  1235. {
  1236. struct bpf_prog *prog = NULL;
  1237. int ufd = attr->target_fd;
  1238. struct bpf_map *map;
  1239. struct fd f;
  1240. int err;
  1241. f = fdget(ufd);
  1242. map = __bpf_map_get(f);
  1243. if (IS_ERR(map))
  1244. return PTR_ERR(map);
  1245. if (attach) {
  1246. prog = bpf_prog_get_type(attr->attach_bpf_fd, type);
  1247. if (IS_ERR(prog)) {
  1248. fdput(f);
  1249. return PTR_ERR(prog);
  1250. }
  1251. }
  1252. err = sock_map_prog(map, prog, attr->attach_type);
  1253. if (err) {
  1254. fdput(f);
  1255. if (prog)
  1256. bpf_prog_put(prog);
  1257. return err;
  1258. }
  1259. fdput(f);
  1260. return 0;
  1261. }
  1262. #define BPF_F_ATTACH_MASK \
  1263. (BPF_F_ALLOW_OVERRIDE | BPF_F_ALLOW_MULTI)
  1264. static int bpf_prog_attach(const union bpf_attr *attr)
  1265. {
  1266. enum bpf_prog_type ptype;
  1267. struct bpf_prog *prog;
  1268. struct cgroup *cgrp;
  1269. int ret;
  1270. if (!capable(CAP_NET_ADMIN))
  1271. return -EPERM;
  1272. if (CHECK_ATTR(BPF_PROG_ATTACH))
  1273. return -EINVAL;
  1274. if (attr->attach_flags & ~BPF_F_ATTACH_MASK)
  1275. return -EINVAL;
  1276. switch (attr->attach_type) {
  1277. case BPF_CGROUP_INET_INGRESS:
  1278. case BPF_CGROUP_INET_EGRESS:
  1279. ptype = BPF_PROG_TYPE_CGROUP_SKB;
  1280. break;
  1281. case BPF_CGROUP_INET_SOCK_CREATE:
  1282. case BPF_CGROUP_INET4_POST_BIND:
  1283. case BPF_CGROUP_INET6_POST_BIND:
  1284. ptype = BPF_PROG_TYPE_CGROUP_SOCK;
  1285. break;
  1286. case BPF_CGROUP_INET4_BIND:
  1287. case BPF_CGROUP_INET6_BIND:
  1288. case BPF_CGROUP_INET4_CONNECT:
  1289. case BPF_CGROUP_INET6_CONNECT:
  1290. ptype = BPF_PROG_TYPE_CGROUP_SOCK_ADDR;
  1291. break;
  1292. case BPF_CGROUP_SOCK_OPS:
  1293. ptype = BPF_PROG_TYPE_SOCK_OPS;
  1294. break;
  1295. case BPF_CGROUP_DEVICE:
  1296. ptype = BPF_PROG_TYPE_CGROUP_DEVICE;
  1297. break;
  1298. case BPF_SK_MSG_VERDICT:
  1299. return sockmap_get_from_fd(attr, BPF_PROG_TYPE_SK_MSG, true);
  1300. case BPF_SK_SKB_STREAM_PARSER:
  1301. case BPF_SK_SKB_STREAM_VERDICT:
  1302. return sockmap_get_from_fd(attr, BPF_PROG_TYPE_SK_SKB, true);
  1303. default:
  1304. return -EINVAL;
  1305. }
  1306. prog = bpf_prog_get_type(attr->attach_bpf_fd, ptype);
  1307. if (IS_ERR(prog))
  1308. return PTR_ERR(prog);
  1309. if (bpf_prog_attach_check_attach_type(prog, attr->attach_type)) {
  1310. bpf_prog_put(prog);
  1311. return -EINVAL;
  1312. }
  1313. cgrp = cgroup_get_from_fd(attr->target_fd);
  1314. if (IS_ERR(cgrp)) {
  1315. bpf_prog_put(prog);
  1316. return PTR_ERR(cgrp);
  1317. }
  1318. ret = cgroup_bpf_attach(cgrp, prog, attr->attach_type,
  1319. attr->attach_flags);
  1320. if (ret)
  1321. bpf_prog_put(prog);
  1322. cgroup_put(cgrp);
  1323. return ret;
  1324. }
  1325. #define BPF_PROG_DETACH_LAST_FIELD attach_type
  1326. static int bpf_prog_detach(const union bpf_attr *attr)
  1327. {
  1328. enum bpf_prog_type ptype;
  1329. struct bpf_prog *prog;
  1330. struct cgroup *cgrp;
  1331. int ret;
  1332. if (!capable(CAP_NET_ADMIN))
  1333. return -EPERM;
  1334. if (CHECK_ATTR(BPF_PROG_DETACH))
  1335. return -EINVAL;
  1336. switch (attr->attach_type) {
  1337. case BPF_CGROUP_INET_INGRESS:
  1338. case BPF_CGROUP_INET_EGRESS:
  1339. ptype = BPF_PROG_TYPE_CGROUP_SKB;
  1340. break;
  1341. case BPF_CGROUP_INET_SOCK_CREATE:
  1342. case BPF_CGROUP_INET4_POST_BIND:
  1343. case BPF_CGROUP_INET6_POST_BIND:
  1344. ptype = BPF_PROG_TYPE_CGROUP_SOCK;
  1345. break;
  1346. case BPF_CGROUP_INET4_BIND:
  1347. case BPF_CGROUP_INET6_BIND:
  1348. case BPF_CGROUP_INET4_CONNECT:
  1349. case BPF_CGROUP_INET6_CONNECT:
  1350. ptype = BPF_PROG_TYPE_CGROUP_SOCK_ADDR;
  1351. break;
  1352. case BPF_CGROUP_SOCK_OPS:
  1353. ptype = BPF_PROG_TYPE_SOCK_OPS;
  1354. break;
  1355. case BPF_CGROUP_DEVICE:
  1356. ptype = BPF_PROG_TYPE_CGROUP_DEVICE;
  1357. break;
  1358. case BPF_SK_MSG_VERDICT:
  1359. return sockmap_get_from_fd(attr, BPF_PROG_TYPE_SK_MSG, false);
  1360. case BPF_SK_SKB_STREAM_PARSER:
  1361. case BPF_SK_SKB_STREAM_VERDICT:
  1362. return sockmap_get_from_fd(attr, BPF_PROG_TYPE_SK_SKB, false);
  1363. default:
  1364. return -EINVAL;
  1365. }
  1366. cgrp = cgroup_get_from_fd(attr->target_fd);
  1367. if (IS_ERR(cgrp))
  1368. return PTR_ERR(cgrp);
  1369. prog = bpf_prog_get_type(attr->attach_bpf_fd, ptype);
  1370. if (IS_ERR(prog))
  1371. prog = NULL;
  1372. ret = cgroup_bpf_detach(cgrp, prog, attr->attach_type, 0);
  1373. if (prog)
  1374. bpf_prog_put(prog);
  1375. cgroup_put(cgrp);
  1376. return ret;
  1377. }
  1378. #define BPF_PROG_QUERY_LAST_FIELD query.prog_cnt
  1379. static int bpf_prog_query(const union bpf_attr *attr,
  1380. union bpf_attr __user *uattr)
  1381. {
  1382. struct cgroup *cgrp;
  1383. int ret;
  1384. if (!capable(CAP_NET_ADMIN))
  1385. return -EPERM;
  1386. if (CHECK_ATTR(BPF_PROG_QUERY))
  1387. return -EINVAL;
  1388. if (attr->query.query_flags & ~BPF_F_QUERY_EFFECTIVE)
  1389. return -EINVAL;
  1390. switch (attr->query.attach_type) {
  1391. case BPF_CGROUP_INET_INGRESS:
  1392. case BPF_CGROUP_INET_EGRESS:
  1393. case BPF_CGROUP_INET_SOCK_CREATE:
  1394. case BPF_CGROUP_INET4_BIND:
  1395. case BPF_CGROUP_INET6_BIND:
  1396. case BPF_CGROUP_INET4_POST_BIND:
  1397. case BPF_CGROUP_INET6_POST_BIND:
  1398. case BPF_CGROUP_INET4_CONNECT:
  1399. case BPF_CGROUP_INET6_CONNECT:
  1400. case BPF_CGROUP_SOCK_OPS:
  1401. case BPF_CGROUP_DEVICE:
  1402. break;
  1403. default:
  1404. return -EINVAL;
  1405. }
  1406. cgrp = cgroup_get_from_fd(attr->query.target_fd);
  1407. if (IS_ERR(cgrp))
  1408. return PTR_ERR(cgrp);
  1409. ret = cgroup_bpf_query(cgrp, attr, uattr);
  1410. cgroup_put(cgrp);
  1411. return ret;
  1412. }
  1413. #endif /* CONFIG_CGROUP_BPF */
  1414. #define BPF_PROG_TEST_RUN_LAST_FIELD test.duration
  1415. static int bpf_prog_test_run(const union bpf_attr *attr,
  1416. union bpf_attr __user *uattr)
  1417. {
  1418. struct bpf_prog *prog;
  1419. int ret = -ENOTSUPP;
  1420. if (!capable(CAP_SYS_ADMIN))
  1421. return -EPERM;
  1422. if (CHECK_ATTR(BPF_PROG_TEST_RUN))
  1423. return -EINVAL;
  1424. prog = bpf_prog_get(attr->test.prog_fd);
  1425. if (IS_ERR(prog))
  1426. return PTR_ERR(prog);
  1427. if (prog->aux->ops->test_run)
  1428. ret = prog->aux->ops->test_run(prog, attr, uattr);
  1429. bpf_prog_put(prog);
  1430. return ret;
  1431. }
  1432. #define BPF_OBJ_GET_NEXT_ID_LAST_FIELD next_id
  1433. static int bpf_obj_get_next_id(const union bpf_attr *attr,
  1434. union bpf_attr __user *uattr,
  1435. struct idr *idr,
  1436. spinlock_t *lock)
  1437. {
  1438. u32 next_id = attr->start_id;
  1439. int err = 0;
  1440. if (CHECK_ATTR(BPF_OBJ_GET_NEXT_ID) || next_id >= INT_MAX)
  1441. return -EINVAL;
  1442. if (!capable(CAP_SYS_ADMIN))
  1443. return -EPERM;
  1444. next_id++;
  1445. spin_lock_bh(lock);
  1446. if (!idr_get_next(idr, &next_id))
  1447. err = -ENOENT;
  1448. spin_unlock_bh(lock);
  1449. if (!err)
  1450. err = put_user(next_id, &uattr->next_id);
  1451. return err;
  1452. }
  1453. #define BPF_PROG_GET_FD_BY_ID_LAST_FIELD prog_id
  1454. static int bpf_prog_get_fd_by_id(const union bpf_attr *attr)
  1455. {
  1456. struct bpf_prog *prog;
  1457. u32 id = attr->prog_id;
  1458. int fd;
  1459. if (CHECK_ATTR(BPF_PROG_GET_FD_BY_ID))
  1460. return -EINVAL;
  1461. if (!capable(CAP_SYS_ADMIN))
  1462. return -EPERM;
  1463. spin_lock_bh(&prog_idr_lock);
  1464. prog = idr_find(&prog_idr, id);
  1465. if (prog)
  1466. prog = bpf_prog_inc_not_zero(prog);
  1467. else
  1468. prog = ERR_PTR(-ENOENT);
  1469. spin_unlock_bh(&prog_idr_lock);
  1470. if (IS_ERR(prog))
  1471. return PTR_ERR(prog);
  1472. fd = bpf_prog_new_fd(prog);
  1473. if (fd < 0)
  1474. bpf_prog_put(prog);
  1475. return fd;
  1476. }
  1477. #define BPF_MAP_GET_FD_BY_ID_LAST_FIELD open_flags
  1478. static int bpf_map_get_fd_by_id(const union bpf_attr *attr)
  1479. {
  1480. struct bpf_map *map;
  1481. u32 id = attr->map_id;
  1482. int f_flags;
  1483. int fd;
  1484. if (CHECK_ATTR(BPF_MAP_GET_FD_BY_ID) ||
  1485. attr->open_flags & ~BPF_OBJ_FLAG_MASK)
  1486. return -EINVAL;
  1487. if (!capable(CAP_SYS_ADMIN))
  1488. return -EPERM;
  1489. f_flags = bpf_get_file_flag(attr->open_flags);
  1490. if (f_flags < 0)
  1491. return f_flags;
  1492. spin_lock_bh(&map_idr_lock);
  1493. map = idr_find(&map_idr, id);
  1494. if (map)
  1495. map = bpf_map_inc_not_zero(map, true);
  1496. else
  1497. map = ERR_PTR(-ENOENT);
  1498. spin_unlock_bh(&map_idr_lock);
  1499. if (IS_ERR(map))
  1500. return PTR_ERR(map);
  1501. fd = bpf_map_new_fd(map, f_flags);
  1502. if (fd < 0)
  1503. bpf_map_put(map);
  1504. return fd;
  1505. }
  1506. static const struct bpf_map *bpf_map_from_imm(const struct bpf_prog *prog,
  1507. unsigned long addr)
  1508. {
  1509. int i;
  1510. for (i = 0; i < prog->aux->used_map_cnt; i++)
  1511. if (prog->aux->used_maps[i] == (void *)addr)
  1512. return prog->aux->used_maps[i];
  1513. return NULL;
  1514. }
  1515. static struct bpf_insn *bpf_insn_prepare_dump(const struct bpf_prog *prog)
  1516. {
  1517. const struct bpf_map *map;
  1518. struct bpf_insn *insns;
  1519. u64 imm;
  1520. int i;
  1521. insns = kmemdup(prog->insnsi, bpf_prog_insn_size(prog),
  1522. GFP_USER);
  1523. if (!insns)
  1524. return insns;
  1525. for (i = 0; i < prog->len; i++) {
  1526. if (insns[i].code == (BPF_JMP | BPF_TAIL_CALL)) {
  1527. insns[i].code = BPF_JMP | BPF_CALL;
  1528. insns[i].imm = BPF_FUNC_tail_call;
  1529. /* fall-through */
  1530. }
  1531. if (insns[i].code == (BPF_JMP | BPF_CALL) ||
  1532. insns[i].code == (BPF_JMP | BPF_CALL_ARGS)) {
  1533. if (insns[i].code == (BPF_JMP | BPF_CALL_ARGS))
  1534. insns[i].code = BPF_JMP | BPF_CALL;
  1535. if (!bpf_dump_raw_ok())
  1536. insns[i].imm = 0;
  1537. continue;
  1538. }
  1539. if (insns[i].code != (BPF_LD | BPF_IMM | BPF_DW))
  1540. continue;
  1541. imm = ((u64)insns[i + 1].imm << 32) | (u32)insns[i].imm;
  1542. map = bpf_map_from_imm(prog, imm);
  1543. if (map) {
  1544. insns[i].src_reg = BPF_PSEUDO_MAP_FD;
  1545. insns[i].imm = map->id;
  1546. insns[i + 1].imm = 0;
  1547. continue;
  1548. }
  1549. if (!bpf_dump_raw_ok() &&
  1550. imm == (unsigned long)prog->aux) {
  1551. insns[i].imm = 0;
  1552. insns[i + 1].imm = 0;
  1553. continue;
  1554. }
  1555. }
  1556. return insns;
  1557. }
  1558. static int bpf_prog_get_info_by_fd(struct bpf_prog *prog,
  1559. const union bpf_attr *attr,
  1560. union bpf_attr __user *uattr)
  1561. {
  1562. struct bpf_prog_info __user *uinfo = u64_to_user_ptr(attr->info.info);
  1563. struct bpf_prog_info info = {};
  1564. u32 info_len = attr->info.info_len;
  1565. char __user *uinsns;
  1566. u32 ulen;
  1567. int err;
  1568. err = check_uarg_tail_zero(uinfo, sizeof(info), info_len);
  1569. if (err)
  1570. return err;
  1571. info_len = min_t(u32, sizeof(info), info_len);
  1572. if (copy_from_user(&info, uinfo, info_len))
  1573. return -EFAULT;
  1574. info.type = prog->type;
  1575. info.id = prog->aux->id;
  1576. info.load_time = prog->aux->load_time;
  1577. info.created_by_uid = from_kuid_munged(current_user_ns(),
  1578. prog->aux->user->uid);
  1579. memcpy(info.tag, prog->tag, sizeof(prog->tag));
  1580. memcpy(info.name, prog->aux->name, sizeof(prog->aux->name));
  1581. ulen = info.nr_map_ids;
  1582. info.nr_map_ids = prog->aux->used_map_cnt;
  1583. ulen = min_t(u32, info.nr_map_ids, ulen);
  1584. if (ulen) {
  1585. u32 __user *user_map_ids = u64_to_user_ptr(info.map_ids);
  1586. u32 i;
  1587. for (i = 0; i < ulen; i++)
  1588. if (put_user(prog->aux->used_maps[i]->id,
  1589. &user_map_ids[i]))
  1590. return -EFAULT;
  1591. }
  1592. if (!capable(CAP_SYS_ADMIN)) {
  1593. info.jited_prog_len = 0;
  1594. info.xlated_prog_len = 0;
  1595. goto done;
  1596. }
  1597. ulen = info.xlated_prog_len;
  1598. info.xlated_prog_len = bpf_prog_insn_size(prog);
  1599. if (info.xlated_prog_len && ulen) {
  1600. struct bpf_insn *insns_sanitized;
  1601. bool fault;
  1602. if (prog->blinded && !bpf_dump_raw_ok()) {
  1603. info.xlated_prog_insns = 0;
  1604. goto done;
  1605. }
  1606. insns_sanitized = bpf_insn_prepare_dump(prog);
  1607. if (!insns_sanitized)
  1608. return -ENOMEM;
  1609. uinsns = u64_to_user_ptr(info.xlated_prog_insns);
  1610. ulen = min_t(u32, info.xlated_prog_len, ulen);
  1611. fault = copy_to_user(uinsns, insns_sanitized, ulen);
  1612. kfree(insns_sanitized);
  1613. if (fault)
  1614. return -EFAULT;
  1615. }
  1616. if (bpf_prog_is_dev_bound(prog->aux)) {
  1617. err = bpf_prog_offload_info_fill(&info, prog);
  1618. if (err)
  1619. return err;
  1620. goto done;
  1621. }
  1622. /* NOTE: the following code is supposed to be skipped for offload.
  1623. * bpf_prog_offload_info_fill() is the place to fill similar fields
  1624. * for offload.
  1625. */
  1626. ulen = info.jited_prog_len;
  1627. info.jited_prog_len = prog->jited_len;
  1628. if (info.jited_prog_len && ulen) {
  1629. if (bpf_dump_raw_ok()) {
  1630. uinsns = u64_to_user_ptr(info.jited_prog_insns);
  1631. ulen = min_t(u32, info.jited_prog_len, ulen);
  1632. if (copy_to_user(uinsns, prog->bpf_func, ulen))
  1633. return -EFAULT;
  1634. } else {
  1635. info.jited_prog_insns = 0;
  1636. }
  1637. }
  1638. done:
  1639. if (copy_to_user(uinfo, &info, info_len) ||
  1640. put_user(info_len, &uattr->info.info_len))
  1641. return -EFAULT;
  1642. return 0;
  1643. }
  1644. static int bpf_map_get_info_by_fd(struct bpf_map *map,
  1645. const union bpf_attr *attr,
  1646. union bpf_attr __user *uattr)
  1647. {
  1648. struct bpf_map_info __user *uinfo = u64_to_user_ptr(attr->info.info);
  1649. struct bpf_map_info info = {};
  1650. u32 info_len = attr->info.info_len;
  1651. int err;
  1652. err = check_uarg_tail_zero(uinfo, sizeof(info), info_len);
  1653. if (err)
  1654. return err;
  1655. info_len = min_t(u32, sizeof(info), info_len);
  1656. info.type = map->map_type;
  1657. info.id = map->id;
  1658. info.key_size = map->key_size;
  1659. info.value_size = map->value_size;
  1660. info.max_entries = map->max_entries;
  1661. info.map_flags = map->map_flags;
  1662. memcpy(info.name, map->name, sizeof(map->name));
  1663. if (bpf_map_is_dev_bound(map)) {
  1664. err = bpf_map_offload_info_fill(&info, map);
  1665. if (err)
  1666. return err;
  1667. }
  1668. if (copy_to_user(uinfo, &info, info_len) ||
  1669. put_user(info_len, &uattr->info.info_len))
  1670. return -EFAULT;
  1671. return 0;
  1672. }
  1673. #define BPF_OBJ_GET_INFO_BY_FD_LAST_FIELD info.info
  1674. static int bpf_obj_get_info_by_fd(const union bpf_attr *attr,
  1675. union bpf_attr __user *uattr)
  1676. {
  1677. int ufd = attr->info.bpf_fd;
  1678. struct fd f;
  1679. int err;
  1680. if (CHECK_ATTR(BPF_OBJ_GET_INFO_BY_FD))
  1681. return -EINVAL;
  1682. f = fdget(ufd);
  1683. if (!f.file)
  1684. return -EBADFD;
  1685. if (f.file->f_op == &bpf_prog_fops)
  1686. err = bpf_prog_get_info_by_fd(f.file->private_data, attr,
  1687. uattr);
  1688. else if (f.file->f_op == &bpf_map_fops)
  1689. err = bpf_map_get_info_by_fd(f.file->private_data, attr,
  1690. uattr);
  1691. else
  1692. err = -EINVAL;
  1693. fdput(f);
  1694. return err;
  1695. }
  1696. SYSCALL_DEFINE3(bpf, int, cmd, union bpf_attr __user *, uattr, unsigned int, size)
  1697. {
  1698. union bpf_attr attr = {};
  1699. int err;
  1700. if (sysctl_unprivileged_bpf_disabled && !capable(CAP_SYS_ADMIN))
  1701. return -EPERM;
  1702. err = check_uarg_tail_zero(uattr, sizeof(attr), size);
  1703. if (err)
  1704. return err;
  1705. size = min_t(u32, size, sizeof(attr));
  1706. /* copy attributes from user space, may be less than sizeof(bpf_attr) */
  1707. if (copy_from_user(&attr, uattr, size) != 0)
  1708. return -EFAULT;
  1709. err = security_bpf(cmd, &attr, size);
  1710. if (err < 0)
  1711. return err;
  1712. switch (cmd) {
  1713. case BPF_MAP_CREATE:
  1714. err = map_create(&attr);
  1715. break;
  1716. case BPF_MAP_LOOKUP_ELEM:
  1717. err = map_lookup_elem(&attr);
  1718. break;
  1719. case BPF_MAP_UPDATE_ELEM:
  1720. err = map_update_elem(&attr);
  1721. break;
  1722. case BPF_MAP_DELETE_ELEM:
  1723. err = map_delete_elem(&attr);
  1724. break;
  1725. case BPF_MAP_GET_NEXT_KEY:
  1726. err = map_get_next_key(&attr);
  1727. break;
  1728. case BPF_PROG_LOAD:
  1729. err = bpf_prog_load(&attr);
  1730. break;
  1731. case BPF_OBJ_PIN:
  1732. err = bpf_obj_pin(&attr);
  1733. break;
  1734. case BPF_OBJ_GET:
  1735. err = bpf_obj_get(&attr);
  1736. break;
  1737. #ifdef CONFIG_CGROUP_BPF
  1738. case BPF_PROG_ATTACH:
  1739. err = bpf_prog_attach(&attr);
  1740. break;
  1741. case BPF_PROG_DETACH:
  1742. err = bpf_prog_detach(&attr);
  1743. break;
  1744. case BPF_PROG_QUERY:
  1745. err = bpf_prog_query(&attr, uattr);
  1746. break;
  1747. #endif
  1748. case BPF_PROG_TEST_RUN:
  1749. err = bpf_prog_test_run(&attr, uattr);
  1750. break;
  1751. case BPF_PROG_GET_NEXT_ID:
  1752. err = bpf_obj_get_next_id(&attr, uattr,
  1753. &prog_idr, &prog_idr_lock);
  1754. break;
  1755. case BPF_MAP_GET_NEXT_ID:
  1756. err = bpf_obj_get_next_id(&attr, uattr,
  1757. &map_idr, &map_idr_lock);
  1758. break;
  1759. case BPF_PROG_GET_FD_BY_ID:
  1760. err = bpf_prog_get_fd_by_id(&attr);
  1761. break;
  1762. case BPF_MAP_GET_FD_BY_ID:
  1763. err = bpf_map_get_fd_by_id(&attr);
  1764. break;
  1765. case BPF_OBJ_GET_INFO_BY_FD:
  1766. err = bpf_obj_get_info_by_fd(&attr, uattr);
  1767. break;
  1768. case BPF_RAW_TRACEPOINT_OPEN:
  1769. err = bpf_raw_tracepoint_open(&attr);
  1770. break;
  1771. default:
  1772. err = -EINVAL;
  1773. break;
  1774. }
  1775. return err;
  1776. }