jump_label.c 20 KB

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  1. /*
  2. * jump label support
  3. *
  4. * Copyright (C) 2009 Jason Baron <jbaron@redhat.com>
  5. * Copyright (C) 2011 Peter Zijlstra
  6. *
  7. */
  8. #include <linux/memory.h>
  9. #include <linux/uaccess.h>
  10. #include <linux/module.h>
  11. #include <linux/list.h>
  12. #include <linux/slab.h>
  13. #include <linux/sort.h>
  14. #include <linux/err.h>
  15. #include <linux/static_key.h>
  16. #include <linux/jump_label_ratelimit.h>
  17. #include <linux/bug.h>
  18. #include <linux/cpu.h>
  19. #include <asm/sections.h>
  20. /* mutex to protect coming/going of the the jump_label table */
  21. static DEFINE_MUTEX(jump_label_mutex);
  22. void jump_label_lock(void)
  23. {
  24. mutex_lock(&jump_label_mutex);
  25. }
  26. void jump_label_unlock(void)
  27. {
  28. mutex_unlock(&jump_label_mutex);
  29. }
  30. static int jump_label_cmp(const void *a, const void *b)
  31. {
  32. const struct jump_entry *jea = a;
  33. const struct jump_entry *jeb = b;
  34. if (jea->key < jeb->key)
  35. return -1;
  36. if (jea->key > jeb->key)
  37. return 1;
  38. return 0;
  39. }
  40. static void
  41. jump_label_sort_entries(struct jump_entry *start, struct jump_entry *stop)
  42. {
  43. unsigned long size;
  44. size = (((unsigned long)stop - (unsigned long)start)
  45. / sizeof(struct jump_entry));
  46. sort(start, size, sizeof(struct jump_entry), jump_label_cmp, NULL);
  47. }
  48. static void jump_label_update(struct static_key *key);
  49. /*
  50. * There are similar definitions for the !CONFIG_JUMP_LABEL case in jump_label.h.
  51. * The use of 'atomic_read()' requires atomic.h and its problematic for some
  52. * kernel headers such as kernel.h and others. Since static_key_count() is not
  53. * used in the branch statements as it is for the !CONFIG_JUMP_LABEL case its ok
  54. * to have it be a function here. Similarly, for 'static_key_enable()' and
  55. * 'static_key_disable()', which require bug.h. This should allow jump_label.h
  56. * to be included from most/all places for CONFIG_JUMP_LABEL.
  57. */
  58. int static_key_count(struct static_key *key)
  59. {
  60. /*
  61. * -1 means the first static_key_slow_inc() is in progress.
  62. * static_key_enabled() must return true, so return 1 here.
  63. */
  64. int n = atomic_read(&key->enabled);
  65. return n >= 0 ? n : 1;
  66. }
  67. EXPORT_SYMBOL_GPL(static_key_count);
  68. void static_key_slow_inc_cpuslocked(struct static_key *key)
  69. {
  70. int v, v1;
  71. STATIC_KEY_CHECK_USE(key);
  72. /*
  73. * Careful if we get concurrent static_key_slow_inc() calls;
  74. * later calls must wait for the first one to _finish_ the
  75. * jump_label_update() process. At the same time, however,
  76. * the jump_label_update() call below wants to see
  77. * static_key_enabled(&key) for jumps to be updated properly.
  78. *
  79. * So give a special meaning to negative key->enabled: it sends
  80. * static_key_slow_inc() down the slow path, and it is non-zero
  81. * so it counts as "enabled" in jump_label_update(). Note that
  82. * atomic_inc_unless_negative() checks >= 0, so roll our own.
  83. */
  84. for (v = atomic_read(&key->enabled); v > 0; v = v1) {
  85. v1 = atomic_cmpxchg(&key->enabled, v, v + 1);
  86. if (likely(v1 == v))
  87. return;
  88. }
  89. jump_label_lock();
  90. if (atomic_read(&key->enabled) == 0) {
  91. atomic_set(&key->enabled, -1);
  92. jump_label_update(key);
  93. /*
  94. * Ensure that if the above cmpxchg loop observes our positive
  95. * value, it must also observe all the text changes.
  96. */
  97. atomic_set_release(&key->enabled, 1);
  98. } else {
  99. atomic_inc(&key->enabled);
  100. }
  101. jump_label_unlock();
  102. }
  103. void static_key_slow_inc(struct static_key *key)
  104. {
  105. cpus_read_lock();
  106. static_key_slow_inc_cpuslocked(key);
  107. cpus_read_unlock();
  108. }
  109. EXPORT_SYMBOL_GPL(static_key_slow_inc);
  110. void static_key_enable_cpuslocked(struct static_key *key)
  111. {
  112. STATIC_KEY_CHECK_USE(key);
  113. if (atomic_read(&key->enabled) > 0) {
  114. WARN_ON_ONCE(atomic_read(&key->enabled) != 1);
  115. return;
  116. }
  117. jump_label_lock();
  118. if (atomic_read(&key->enabled) == 0) {
  119. atomic_set(&key->enabled, -1);
  120. jump_label_update(key);
  121. /*
  122. * See static_key_slow_inc().
  123. */
  124. atomic_set_release(&key->enabled, 1);
  125. }
  126. jump_label_unlock();
  127. }
  128. EXPORT_SYMBOL_GPL(static_key_enable_cpuslocked);
  129. void static_key_enable(struct static_key *key)
  130. {
  131. cpus_read_lock();
  132. static_key_enable_cpuslocked(key);
  133. cpus_read_unlock();
  134. }
  135. EXPORT_SYMBOL_GPL(static_key_enable);
  136. void static_key_disable_cpuslocked(struct static_key *key)
  137. {
  138. STATIC_KEY_CHECK_USE(key);
  139. if (atomic_read(&key->enabled) != 1) {
  140. WARN_ON_ONCE(atomic_read(&key->enabled) != 0);
  141. return;
  142. }
  143. jump_label_lock();
  144. if (atomic_cmpxchg(&key->enabled, 1, 0))
  145. jump_label_update(key);
  146. jump_label_unlock();
  147. }
  148. EXPORT_SYMBOL_GPL(static_key_disable_cpuslocked);
  149. void static_key_disable(struct static_key *key)
  150. {
  151. cpus_read_lock();
  152. static_key_disable_cpuslocked(key);
  153. cpus_read_unlock();
  154. }
  155. EXPORT_SYMBOL_GPL(static_key_disable);
  156. static void __static_key_slow_dec_cpuslocked(struct static_key *key,
  157. unsigned long rate_limit,
  158. struct delayed_work *work)
  159. {
  160. /*
  161. * The negative count check is valid even when a negative
  162. * key->enabled is in use by static_key_slow_inc(); a
  163. * __static_key_slow_dec() before the first static_key_slow_inc()
  164. * returns is unbalanced, because all other static_key_slow_inc()
  165. * instances block while the update is in progress.
  166. */
  167. if (!atomic_dec_and_mutex_lock(&key->enabled, &jump_label_mutex)) {
  168. WARN(atomic_read(&key->enabled) < 0,
  169. "jump label: negative count!\n");
  170. return;
  171. }
  172. if (rate_limit) {
  173. atomic_inc(&key->enabled);
  174. schedule_delayed_work(work, rate_limit);
  175. } else {
  176. jump_label_update(key);
  177. }
  178. jump_label_unlock();
  179. }
  180. static void __static_key_slow_dec(struct static_key *key,
  181. unsigned long rate_limit,
  182. struct delayed_work *work)
  183. {
  184. cpus_read_lock();
  185. __static_key_slow_dec_cpuslocked(key, rate_limit, work);
  186. cpus_read_unlock();
  187. }
  188. static void jump_label_update_timeout(struct work_struct *work)
  189. {
  190. struct static_key_deferred *key =
  191. container_of(work, struct static_key_deferred, work.work);
  192. __static_key_slow_dec(&key->key, 0, NULL);
  193. }
  194. void static_key_slow_dec(struct static_key *key)
  195. {
  196. STATIC_KEY_CHECK_USE(key);
  197. __static_key_slow_dec(key, 0, NULL);
  198. }
  199. EXPORT_SYMBOL_GPL(static_key_slow_dec);
  200. void static_key_slow_dec_cpuslocked(struct static_key *key)
  201. {
  202. STATIC_KEY_CHECK_USE(key);
  203. __static_key_slow_dec_cpuslocked(key, 0, NULL);
  204. }
  205. void static_key_slow_dec_deferred(struct static_key_deferred *key)
  206. {
  207. STATIC_KEY_CHECK_USE(key);
  208. __static_key_slow_dec(&key->key, key->timeout, &key->work);
  209. }
  210. EXPORT_SYMBOL_GPL(static_key_slow_dec_deferred);
  211. void static_key_deferred_flush(struct static_key_deferred *key)
  212. {
  213. STATIC_KEY_CHECK_USE(key);
  214. flush_delayed_work(&key->work);
  215. }
  216. EXPORT_SYMBOL_GPL(static_key_deferred_flush);
  217. void jump_label_rate_limit(struct static_key_deferred *key,
  218. unsigned long rl)
  219. {
  220. STATIC_KEY_CHECK_USE(key);
  221. key->timeout = rl;
  222. INIT_DELAYED_WORK(&key->work, jump_label_update_timeout);
  223. }
  224. EXPORT_SYMBOL_GPL(jump_label_rate_limit);
  225. static int addr_conflict(struct jump_entry *entry, void *start, void *end)
  226. {
  227. if (entry->code <= (unsigned long)end &&
  228. entry->code + JUMP_LABEL_NOP_SIZE > (unsigned long)start)
  229. return 1;
  230. return 0;
  231. }
  232. static int __jump_label_text_reserved(struct jump_entry *iter_start,
  233. struct jump_entry *iter_stop, void *start, void *end)
  234. {
  235. struct jump_entry *iter;
  236. iter = iter_start;
  237. while (iter < iter_stop) {
  238. if (addr_conflict(iter, start, end))
  239. return 1;
  240. iter++;
  241. }
  242. return 0;
  243. }
  244. /*
  245. * Update code which is definitely not currently executing.
  246. * Architectures which need heavyweight synchronization to modify
  247. * running code can override this to make the non-live update case
  248. * cheaper.
  249. */
  250. void __weak __init_or_module arch_jump_label_transform_static(struct jump_entry *entry,
  251. enum jump_label_type type)
  252. {
  253. arch_jump_label_transform(entry, type);
  254. }
  255. static inline struct jump_entry *static_key_entries(struct static_key *key)
  256. {
  257. WARN_ON_ONCE(key->type & JUMP_TYPE_LINKED);
  258. return (struct jump_entry *)(key->type & ~JUMP_TYPE_MASK);
  259. }
  260. static inline bool static_key_type(struct static_key *key)
  261. {
  262. return key->type & JUMP_TYPE_TRUE;
  263. }
  264. static inline bool static_key_linked(struct static_key *key)
  265. {
  266. return key->type & JUMP_TYPE_LINKED;
  267. }
  268. static inline void static_key_clear_linked(struct static_key *key)
  269. {
  270. key->type &= ~JUMP_TYPE_LINKED;
  271. }
  272. static inline void static_key_set_linked(struct static_key *key)
  273. {
  274. key->type |= JUMP_TYPE_LINKED;
  275. }
  276. static inline struct static_key *jump_entry_key(struct jump_entry *entry)
  277. {
  278. return (struct static_key *)((unsigned long)entry->key & ~1UL);
  279. }
  280. static bool jump_entry_branch(struct jump_entry *entry)
  281. {
  282. return (unsigned long)entry->key & 1UL;
  283. }
  284. /***
  285. * A 'struct static_key' uses a union such that it either points directly
  286. * to a table of 'struct jump_entry' or to a linked list of modules which in
  287. * turn point to 'struct jump_entry' tables.
  288. *
  289. * The two lower bits of the pointer are used to keep track of which pointer
  290. * type is in use and to store the initial branch direction, we use an access
  291. * function which preserves these bits.
  292. */
  293. static void static_key_set_entries(struct static_key *key,
  294. struct jump_entry *entries)
  295. {
  296. unsigned long type;
  297. WARN_ON_ONCE((unsigned long)entries & JUMP_TYPE_MASK);
  298. type = key->type & JUMP_TYPE_MASK;
  299. key->entries = entries;
  300. key->type |= type;
  301. }
  302. static enum jump_label_type jump_label_type(struct jump_entry *entry)
  303. {
  304. struct static_key *key = jump_entry_key(entry);
  305. bool enabled = static_key_enabled(key);
  306. bool branch = jump_entry_branch(entry);
  307. /* See the comment in linux/jump_label.h */
  308. return enabled ^ branch;
  309. }
  310. static void __jump_label_update(struct static_key *key,
  311. struct jump_entry *entry,
  312. struct jump_entry *stop)
  313. {
  314. for (; (entry < stop) && (jump_entry_key(entry) == key); entry++) {
  315. /*
  316. * An entry->code of 0 indicates an entry which has been
  317. * disabled because it was in an init text area.
  318. */
  319. if (entry->code) {
  320. if (kernel_text_address(entry->code))
  321. arch_jump_label_transform(entry, jump_label_type(entry));
  322. else
  323. WARN_ONCE(1, "can't patch jump_label at %pS",
  324. (void *)(unsigned long)entry->code);
  325. }
  326. }
  327. }
  328. void __init jump_label_init(void)
  329. {
  330. struct jump_entry *iter_start = __start___jump_table;
  331. struct jump_entry *iter_stop = __stop___jump_table;
  332. struct static_key *key = NULL;
  333. struct jump_entry *iter;
  334. /*
  335. * Since we are initializing the static_key.enabled field with
  336. * with the 'raw' int values (to avoid pulling in atomic.h) in
  337. * jump_label.h, let's make sure that is safe. There are only two
  338. * cases to check since we initialize to 0 or 1.
  339. */
  340. BUILD_BUG_ON((int)ATOMIC_INIT(0) != 0);
  341. BUILD_BUG_ON((int)ATOMIC_INIT(1) != 1);
  342. if (static_key_initialized)
  343. return;
  344. cpus_read_lock();
  345. jump_label_lock();
  346. jump_label_sort_entries(iter_start, iter_stop);
  347. for (iter = iter_start; iter < iter_stop; iter++) {
  348. struct static_key *iterk;
  349. /* rewrite NOPs */
  350. if (jump_label_type(iter) == JUMP_LABEL_NOP)
  351. arch_jump_label_transform_static(iter, JUMP_LABEL_NOP);
  352. iterk = jump_entry_key(iter);
  353. if (iterk == key)
  354. continue;
  355. key = iterk;
  356. static_key_set_entries(key, iter);
  357. }
  358. static_key_initialized = true;
  359. jump_label_unlock();
  360. cpus_read_unlock();
  361. }
  362. /* Disable any jump label entries in __init/__exit code */
  363. void __init jump_label_invalidate_initmem(void)
  364. {
  365. struct jump_entry *iter_start = __start___jump_table;
  366. struct jump_entry *iter_stop = __stop___jump_table;
  367. struct jump_entry *iter;
  368. for (iter = iter_start; iter < iter_stop; iter++) {
  369. if (init_section_contains((void *)(unsigned long)iter->code, 1))
  370. iter->code = 0;
  371. }
  372. }
  373. #ifdef CONFIG_MODULES
  374. static enum jump_label_type jump_label_init_type(struct jump_entry *entry)
  375. {
  376. struct static_key *key = jump_entry_key(entry);
  377. bool type = static_key_type(key);
  378. bool branch = jump_entry_branch(entry);
  379. /* See the comment in linux/jump_label.h */
  380. return type ^ branch;
  381. }
  382. struct static_key_mod {
  383. struct static_key_mod *next;
  384. struct jump_entry *entries;
  385. struct module *mod;
  386. };
  387. static inline struct static_key_mod *static_key_mod(struct static_key *key)
  388. {
  389. WARN_ON_ONCE(!(key->type & JUMP_TYPE_LINKED));
  390. return (struct static_key_mod *)(key->type & ~JUMP_TYPE_MASK);
  391. }
  392. /***
  393. * key->type and key->next are the same via union.
  394. * This sets key->next and preserves the type bits.
  395. *
  396. * See additional comments above static_key_set_entries().
  397. */
  398. static void static_key_set_mod(struct static_key *key,
  399. struct static_key_mod *mod)
  400. {
  401. unsigned long type;
  402. WARN_ON_ONCE((unsigned long)mod & JUMP_TYPE_MASK);
  403. type = key->type & JUMP_TYPE_MASK;
  404. key->next = mod;
  405. key->type |= type;
  406. }
  407. static int __jump_label_mod_text_reserved(void *start, void *end)
  408. {
  409. struct module *mod;
  410. preempt_disable();
  411. mod = __module_text_address((unsigned long)start);
  412. WARN_ON_ONCE(__module_text_address((unsigned long)end) != mod);
  413. preempt_enable();
  414. if (!mod)
  415. return 0;
  416. return __jump_label_text_reserved(mod->jump_entries,
  417. mod->jump_entries + mod->num_jump_entries,
  418. start, end);
  419. }
  420. static void __jump_label_mod_update(struct static_key *key)
  421. {
  422. struct static_key_mod *mod;
  423. for (mod = static_key_mod(key); mod; mod = mod->next) {
  424. struct jump_entry *stop;
  425. struct module *m;
  426. /*
  427. * NULL if the static_key is defined in a module
  428. * that does not use it
  429. */
  430. if (!mod->entries)
  431. continue;
  432. m = mod->mod;
  433. if (!m)
  434. stop = __stop___jump_table;
  435. else
  436. stop = m->jump_entries + m->num_jump_entries;
  437. __jump_label_update(key, mod->entries, stop);
  438. }
  439. }
  440. /***
  441. * apply_jump_label_nops - patch module jump labels with arch_get_jump_label_nop()
  442. * @mod: module to patch
  443. *
  444. * Allow for run-time selection of the optimal nops. Before the module
  445. * loads patch these with arch_get_jump_label_nop(), which is specified by
  446. * the arch specific jump label code.
  447. */
  448. void jump_label_apply_nops(struct module *mod)
  449. {
  450. struct jump_entry *iter_start = mod->jump_entries;
  451. struct jump_entry *iter_stop = iter_start + mod->num_jump_entries;
  452. struct jump_entry *iter;
  453. /* if the module doesn't have jump label entries, just return */
  454. if (iter_start == iter_stop)
  455. return;
  456. for (iter = iter_start; iter < iter_stop; iter++) {
  457. /* Only write NOPs for arch_branch_static(). */
  458. if (jump_label_init_type(iter) == JUMP_LABEL_NOP)
  459. arch_jump_label_transform_static(iter, JUMP_LABEL_NOP);
  460. }
  461. }
  462. static int jump_label_add_module(struct module *mod)
  463. {
  464. struct jump_entry *iter_start = mod->jump_entries;
  465. struct jump_entry *iter_stop = iter_start + mod->num_jump_entries;
  466. struct jump_entry *iter;
  467. struct static_key *key = NULL;
  468. struct static_key_mod *jlm, *jlm2;
  469. /* if the module doesn't have jump label entries, just return */
  470. if (iter_start == iter_stop)
  471. return 0;
  472. jump_label_sort_entries(iter_start, iter_stop);
  473. for (iter = iter_start; iter < iter_stop; iter++) {
  474. struct static_key *iterk;
  475. iterk = jump_entry_key(iter);
  476. if (iterk == key)
  477. continue;
  478. key = iterk;
  479. if (within_module(iter->key, mod)) {
  480. static_key_set_entries(key, iter);
  481. continue;
  482. }
  483. jlm = kzalloc(sizeof(struct static_key_mod), GFP_KERNEL);
  484. if (!jlm)
  485. return -ENOMEM;
  486. if (!static_key_linked(key)) {
  487. jlm2 = kzalloc(sizeof(struct static_key_mod),
  488. GFP_KERNEL);
  489. if (!jlm2) {
  490. kfree(jlm);
  491. return -ENOMEM;
  492. }
  493. preempt_disable();
  494. jlm2->mod = __module_address((unsigned long)key);
  495. preempt_enable();
  496. jlm2->entries = static_key_entries(key);
  497. jlm2->next = NULL;
  498. static_key_set_mod(key, jlm2);
  499. static_key_set_linked(key);
  500. }
  501. jlm->mod = mod;
  502. jlm->entries = iter;
  503. jlm->next = static_key_mod(key);
  504. static_key_set_mod(key, jlm);
  505. static_key_set_linked(key);
  506. /* Only update if we've changed from our initial state */
  507. if (jump_label_type(iter) != jump_label_init_type(iter))
  508. __jump_label_update(key, iter, iter_stop);
  509. }
  510. return 0;
  511. }
  512. static void jump_label_del_module(struct module *mod)
  513. {
  514. struct jump_entry *iter_start = mod->jump_entries;
  515. struct jump_entry *iter_stop = iter_start + mod->num_jump_entries;
  516. struct jump_entry *iter;
  517. struct static_key *key = NULL;
  518. struct static_key_mod *jlm, **prev;
  519. for (iter = iter_start; iter < iter_stop; iter++) {
  520. if (jump_entry_key(iter) == key)
  521. continue;
  522. key = jump_entry_key(iter);
  523. if (within_module(iter->key, mod))
  524. continue;
  525. /* No memory during module load */
  526. if (WARN_ON(!static_key_linked(key)))
  527. continue;
  528. prev = &key->next;
  529. jlm = static_key_mod(key);
  530. while (jlm && jlm->mod != mod) {
  531. prev = &jlm->next;
  532. jlm = jlm->next;
  533. }
  534. /* No memory during module load */
  535. if (WARN_ON(!jlm))
  536. continue;
  537. if (prev == &key->next)
  538. static_key_set_mod(key, jlm->next);
  539. else
  540. *prev = jlm->next;
  541. kfree(jlm);
  542. jlm = static_key_mod(key);
  543. /* if only one etry is left, fold it back into the static_key */
  544. if (jlm->next == NULL) {
  545. static_key_set_entries(key, jlm->entries);
  546. static_key_clear_linked(key);
  547. kfree(jlm);
  548. }
  549. }
  550. }
  551. /* Disable any jump label entries in module init code */
  552. static void jump_label_invalidate_module_init(struct module *mod)
  553. {
  554. struct jump_entry *iter_start = mod->jump_entries;
  555. struct jump_entry *iter_stop = iter_start + mod->num_jump_entries;
  556. struct jump_entry *iter;
  557. for (iter = iter_start; iter < iter_stop; iter++) {
  558. if (within_module_init(iter->code, mod))
  559. iter->code = 0;
  560. }
  561. }
  562. static int
  563. jump_label_module_notify(struct notifier_block *self, unsigned long val,
  564. void *data)
  565. {
  566. struct module *mod = data;
  567. int ret = 0;
  568. cpus_read_lock();
  569. jump_label_lock();
  570. switch (val) {
  571. case MODULE_STATE_COMING:
  572. ret = jump_label_add_module(mod);
  573. if (ret) {
  574. WARN(1, "Failed to allocate memory: jump_label may not work properly.\n");
  575. jump_label_del_module(mod);
  576. }
  577. break;
  578. case MODULE_STATE_GOING:
  579. jump_label_del_module(mod);
  580. break;
  581. case MODULE_STATE_LIVE:
  582. jump_label_invalidate_module_init(mod);
  583. break;
  584. }
  585. jump_label_unlock();
  586. cpus_read_unlock();
  587. return notifier_from_errno(ret);
  588. }
  589. static struct notifier_block jump_label_module_nb = {
  590. .notifier_call = jump_label_module_notify,
  591. .priority = 1, /* higher than tracepoints */
  592. };
  593. static __init int jump_label_init_module(void)
  594. {
  595. return register_module_notifier(&jump_label_module_nb);
  596. }
  597. early_initcall(jump_label_init_module);
  598. #endif /* CONFIG_MODULES */
  599. /***
  600. * jump_label_text_reserved - check if addr range is reserved
  601. * @start: start text addr
  602. * @end: end text addr
  603. *
  604. * checks if the text addr located between @start and @end
  605. * overlaps with any of the jump label patch addresses. Code
  606. * that wants to modify kernel text should first verify that
  607. * it does not overlap with any of the jump label addresses.
  608. * Caller must hold jump_label_mutex.
  609. *
  610. * returns 1 if there is an overlap, 0 otherwise
  611. */
  612. int jump_label_text_reserved(void *start, void *end)
  613. {
  614. int ret = __jump_label_text_reserved(__start___jump_table,
  615. __stop___jump_table, start, end);
  616. if (ret)
  617. return ret;
  618. #ifdef CONFIG_MODULES
  619. ret = __jump_label_mod_text_reserved(start, end);
  620. #endif
  621. return ret;
  622. }
  623. static void jump_label_update(struct static_key *key)
  624. {
  625. struct jump_entry *stop = __stop___jump_table;
  626. struct jump_entry *entry;
  627. #ifdef CONFIG_MODULES
  628. struct module *mod;
  629. if (static_key_linked(key)) {
  630. __jump_label_mod_update(key);
  631. return;
  632. }
  633. preempt_disable();
  634. mod = __module_address((unsigned long)key);
  635. if (mod)
  636. stop = mod->jump_entries + mod->num_jump_entries;
  637. preempt_enable();
  638. #endif
  639. entry = static_key_entries(key);
  640. /* if there are no users, entry can be NULL */
  641. if (entry)
  642. __jump_label_update(key, entry, stop);
  643. }
  644. #ifdef CONFIG_STATIC_KEYS_SELFTEST
  645. static DEFINE_STATIC_KEY_TRUE(sk_true);
  646. static DEFINE_STATIC_KEY_FALSE(sk_false);
  647. static __init int jump_label_test(void)
  648. {
  649. int i;
  650. for (i = 0; i < 2; i++) {
  651. WARN_ON(static_key_enabled(&sk_true.key) != true);
  652. WARN_ON(static_key_enabled(&sk_false.key) != false);
  653. WARN_ON(!static_branch_likely(&sk_true));
  654. WARN_ON(!static_branch_unlikely(&sk_true));
  655. WARN_ON(static_branch_likely(&sk_false));
  656. WARN_ON(static_branch_unlikely(&sk_false));
  657. static_branch_disable(&sk_true);
  658. static_branch_enable(&sk_false);
  659. WARN_ON(static_key_enabled(&sk_true.key) == true);
  660. WARN_ON(static_key_enabled(&sk_false.key) == false);
  661. WARN_ON(static_branch_likely(&sk_true));
  662. WARN_ON(static_branch_unlikely(&sk_true));
  663. WARN_ON(!static_branch_likely(&sk_false));
  664. WARN_ON(!static_branch_unlikely(&sk_false));
  665. static_branch_enable(&sk_true);
  666. static_branch_disable(&sk_false);
  667. }
  668. return 0;
  669. }
  670. early_initcall(jump_label_test);
  671. #endif /* STATIC_KEYS_SELFTEST */