rtthread.h 31 KB

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  1. /*
  2. * Copyright (c) 2006-2024 RT-Thread Development Team
  3. *
  4. * SPDX-License-Identifier: Apache-2.0
  5. *
  6. * Change Logs:
  7. * Date Author Notes
  8. * 2006-03-18 Bernard the first version
  9. * 2006-04-26 Bernard add semaphore APIs
  10. * 2006-08-10 Bernard add version information
  11. * 2007-01-28 Bernard rename RT_OBJECT_Class_Static to RT_Object_Class_Static
  12. * 2007-03-03 Bernard clean up the definitions to rtdef.h
  13. * 2010-04-11 yi.qiu add module feature
  14. * 2013-06-24 Bernard add rt_kprintf re-define when not use RT_USING_CONSOLE.
  15. * 2016-08-09 ArdaFu add new thread and interrupt hook.
  16. * 2018-11-22 Jesven add all cpu's lock and ipi handler
  17. * 2021-02-28 Meco Man add RT_KSERVICE_USING_STDLIB
  18. * 2021-11-14 Meco Man add rtlegacy.h for compatibility
  19. * 2022-06-04 Meco Man remove strnlen
  20. * 2023-05-20 Bernard add rtatomic.h header file to included files.
  21. * 2023-06-30 ChuShicheng move debug check from the rtdebug.h
  22. * 2023-10-16 Shell Support a new backtrace framework
  23. * 2023-12-10 xqyjlj fix spinlock in up
  24. * 2024-01-25 Shell Add rt_susp_list for IPC primitives
  25. * 2024-03-10 Meco Man move std libc related functions to rtklibc
  26. */
  27. #ifndef __RT_THREAD_H__
  28. #define __RT_THREAD_H__
  29. #include <rtconfig.h>
  30. #include <rtdef.h>
  31. #include <rtservice.h>
  32. #include <rtm.h>
  33. #include <rtatomic.h>
  34. #include <rtklibc.h>
  35. #ifdef RT_USING_LEGACY
  36. #include <rtlegacy.h>
  37. #endif
  38. #ifdef RT_USING_FINSH
  39. #include <finsh.h>
  40. #endif /* RT_USING_FINSH */
  41. #ifdef __cplusplus
  42. extern "C" {
  43. #endif
  44. #ifdef __GNUC__
  45. int entry(void);
  46. #endif
  47. /*
  48. * kernel object interface
  49. */
  50. struct rt_object_information *
  51. rt_object_get_information(enum rt_object_class_type type);
  52. int rt_object_get_length(enum rt_object_class_type type);
  53. int rt_object_get_pointers(enum rt_object_class_type type, rt_object_t *pointers, int maxlen);
  54. void rt_object_init(struct rt_object *object,
  55. enum rt_object_class_type type,
  56. const char *name);
  57. void rt_object_detach(rt_object_t object);
  58. #ifdef RT_USING_HEAP
  59. rt_object_t rt_object_allocate(enum rt_object_class_type type, const char *name);
  60. void rt_object_delete(rt_object_t object);
  61. /* custom object */
  62. rt_object_t rt_custom_object_create(const char *name, void *data, rt_err_t (*data_destroy)(void *));
  63. rt_err_t rt_custom_object_destroy(rt_object_t obj);
  64. #endif /* RT_USING_HEAP */
  65. rt_bool_t rt_object_is_systemobject(rt_object_t object);
  66. rt_uint8_t rt_object_get_type(rt_object_t object);
  67. rt_err_t rt_object_for_each(rt_uint8_t type, rt_object_iter_t iter, void *data);
  68. rt_object_t rt_object_find(const char *name, rt_uint8_t type);
  69. rt_err_t rt_object_get_name(rt_object_t object, char *name, rt_uint8_t name_size);
  70. #ifdef RT_USING_HOOK
  71. void rt_object_attach_sethook(void (*hook)(struct rt_object *object));
  72. void rt_object_detach_sethook(void (*hook)(struct rt_object *object));
  73. void rt_object_trytake_sethook(void (*hook)(struct rt_object *object));
  74. void rt_object_take_sethook(void (*hook)(struct rt_object *object));
  75. void rt_object_put_sethook(void (*hook)(struct rt_object *object));
  76. #endif /* RT_USING_HOOK */
  77. /**
  78. * @addtogroup group_clock_management
  79. * @{
  80. */
  81. /*
  82. * clock & timer interface
  83. */
  84. rt_tick_t rt_tick_get(void);
  85. rt_tick_t rt_tick_get_delta(rt_tick_t base);
  86. void rt_tick_set(rt_tick_t tick);
  87. void rt_tick_increase(void);
  88. void rt_tick_increase_tick(rt_tick_t tick);
  89. rt_tick_t rt_tick_from_millisecond(rt_int32_t ms);
  90. rt_tick_t rt_tick_get_millisecond(void);
  91. #ifdef RT_USING_HOOK
  92. void rt_tick_sethook(void (*hook)(void));
  93. #endif /* RT_USING_HOOK */
  94. void rt_system_timer_init(void);
  95. void rt_system_timer_thread_init(void);
  96. void rt_timer_init(rt_timer_t timer,
  97. const char *name,
  98. void (*timeout)(void *parameter),
  99. void *parameter,
  100. rt_tick_t time,
  101. rt_uint8_t flag);
  102. rt_err_t rt_timer_detach(rt_timer_t timer);
  103. #ifdef RT_USING_HEAP
  104. rt_timer_t rt_timer_create(const char *name,
  105. void (*timeout)(void *parameter),
  106. void *parameter,
  107. rt_tick_t time,
  108. rt_uint8_t flag);
  109. rt_err_t rt_timer_delete(rt_timer_t timer);
  110. #endif /* RT_USING_HEAP */
  111. rt_err_t rt_timer_start(rt_timer_t timer);
  112. rt_err_t rt_timer_stop(rt_timer_t timer);
  113. rt_err_t rt_timer_control(rt_timer_t timer, int cmd, void *arg);
  114. rt_tick_t rt_timer_next_timeout_tick(void);
  115. void rt_timer_check(void);
  116. #ifdef RT_USING_HOOK
  117. void rt_timer_enter_sethook(void (*hook)(struct rt_timer *timer));
  118. void rt_timer_exit_sethook(void (*hook)(struct rt_timer *timer));
  119. #endif /* RT_USING_HOOK */
  120. /**@}*/
  121. /**
  122. * @addtogroup group_thread_management
  123. * @{
  124. */
  125. /*
  126. * thread interface
  127. */
  128. rt_err_t rt_thread_init(struct rt_thread *thread,
  129. const char *name,
  130. void (*entry)(void *parameter),
  131. void *parameter,
  132. void *stack_start,
  133. rt_uint32_t stack_size,
  134. rt_uint8_t priority,
  135. rt_uint32_t tick);
  136. rt_err_t rt_thread_detach(rt_thread_t thread);
  137. #ifdef RT_USING_HEAP
  138. rt_thread_t rt_thread_create(const char *name,
  139. void (*entry)(void *parameter),
  140. void *parameter,
  141. rt_uint32_t stack_size,
  142. rt_uint8_t priority,
  143. rt_uint32_t tick);
  144. rt_err_t rt_thread_delete(rt_thread_t thread);
  145. #endif /* RT_USING_HEAP */
  146. rt_err_t rt_thread_close(rt_thread_t thread);
  147. rt_thread_t rt_thread_self(void);
  148. rt_thread_t rt_thread_find(char *name);
  149. rt_err_t rt_thread_startup(rt_thread_t thread);
  150. rt_err_t rt_thread_yield(void);
  151. rt_err_t rt_thread_delay(rt_tick_t tick);
  152. rt_err_t rt_thread_delay_until(rt_tick_t *tick, rt_tick_t inc_tick);
  153. rt_err_t rt_thread_mdelay(rt_int32_t ms);
  154. rt_err_t rt_thread_control(rt_thread_t thread, int cmd, void *arg);
  155. rt_err_t rt_thread_suspend(rt_thread_t thread);
  156. rt_err_t rt_thread_suspend_with_flag(rt_thread_t thread, int suspend_flag);
  157. rt_err_t rt_thread_resume(rt_thread_t thread);
  158. #ifdef RT_USING_SMART
  159. rt_err_t rt_thread_wakeup(rt_thread_t thread);
  160. void rt_thread_wakeup_set(struct rt_thread *thread, rt_wakeup_func_t func, void* user_data);
  161. #endif /* RT_USING_SMART */
  162. rt_err_t rt_thread_get_name(rt_thread_t thread, char *name, rt_uint8_t name_size);
  163. #ifdef RT_USING_CPU_USAGE_TRACER
  164. rt_uint8_t rt_thread_get_usage(rt_thread_t thread);
  165. #endif /* RT_USING_CPU_USAGE_TRACER */
  166. #ifdef RT_USING_SIGNALS
  167. void rt_thread_alloc_sig(rt_thread_t tid);
  168. void rt_thread_free_sig(rt_thread_t tid);
  169. int rt_thread_kill(rt_thread_t tid, int sig);
  170. #endif /* RT_USING_SIGNALS */
  171. #ifdef RT_USING_HOOK
  172. void rt_thread_suspend_sethook(void (*hook)(rt_thread_t thread));
  173. void rt_thread_resume_sethook (void (*hook)(rt_thread_t thread));
  174. /**
  175. * @brief Sets a hook function when a thread is initialized.
  176. *
  177. * @param thread is the target thread that initializing
  178. */
  179. typedef void (*rt_thread_inited_hookproto_t)(rt_thread_t thread);
  180. RT_OBJECT_HOOKLIST_DECLARE(rt_thread_inited_hookproto_t, rt_thread_inited);
  181. #endif /* RT_USING_HOOK */
  182. /*
  183. * idle thread interface
  184. */
  185. void rt_thread_idle_init(void);
  186. #if defined(RT_USING_HOOK) || defined(RT_USING_IDLE_HOOK)
  187. // FIXME: Have to write doxygen comment here for rt_thread_idle_sethook/rt_thread_idle_delhook
  188. // but not in src/idle.c. Because the `rt_align(RT_ALIGN_SIZE)` in src/idle.c
  189. // will make wierd output for html document generation, i.e. can not generate
  190. // function link to rt_thread_idle_sethook, while function link to rt_thread_idle_delhook is ok.
  191. /**
  192. * @brief This function sets a hook function to idle thread loop. When the system performs
  193. * idle loop, this hook function should be invoked.
  194. *
  195. * @param hook the specified hook function.
  196. *
  197. * @return `RT_EOK`: set OK.
  198. * `-RT_EFULL`: hook list is full.
  199. *
  200. * @note the hook function must be simple and never be blocked or suspend.
  201. */
  202. rt_err_t rt_thread_idle_sethook(void (*hook)(void));
  203. /**
  204. * @brief delete the idle hook on hook list.
  205. *
  206. * @param hook the specified hook function.
  207. *
  208. * @return `RT_EOK`: delete OK.
  209. * `-RT_ENOSYS`: hook was not found.
  210. */
  211. rt_err_t rt_thread_idle_delhook(void (*hook)(void));
  212. #endif /* defined(RT_USING_HOOK) || defined(RT_USING_IDLE_HOOK) */
  213. rt_thread_t rt_thread_idle_gethandler(void);
  214. /*
  215. * schedule service
  216. */
  217. void rt_system_scheduler_init(void);
  218. void rt_system_scheduler_start(void);
  219. void rt_schedule(void);
  220. void rt_scheduler_do_irq_switch(void *context);
  221. #ifdef RT_USING_OVERFLOW_CHECK
  222. void rt_scheduler_stack_check(struct rt_thread *thread);
  223. #define RT_SCHEDULER_STACK_CHECK(thr) rt_scheduler_stack_check(thr)
  224. #else /* !RT_USING_OVERFLOW_CHECK */
  225. #define RT_SCHEDULER_STACK_CHECK(thr)
  226. #endif /* RT_USING_OVERFLOW_CHECK */
  227. rt_base_t rt_enter_critical(void);
  228. void rt_exit_critical(void);
  229. void rt_exit_critical_safe(rt_base_t critical_level);
  230. rt_uint16_t rt_critical_level(void);
  231. #ifdef RT_USING_HOOK
  232. void rt_scheduler_stack_overflow_sethook(rt_err_t (*hook)(struct rt_thread *thread));
  233. void rt_scheduler_sethook(void (*hook)(rt_thread_t from, rt_thread_t to));
  234. void rt_scheduler_switch_sethook(void (*hook)(struct rt_thread *tid));
  235. #endif /* RT_USING_HOOK */
  236. #ifdef RT_USING_SMP
  237. void rt_secondary_cpu_entry(void);
  238. void rt_scheduler_ipi_handler(int vector, void *param);
  239. #endif /* RT_USING_SMP */
  240. /**@}*/
  241. /**
  242. * @addtogroup group_signal
  243. * @{
  244. */
  245. #ifdef RT_USING_SIGNALS
  246. void rt_signal_mask(int signo);
  247. void rt_signal_unmask(int signo);
  248. void *rt_signal_check(void* context);
  249. rt_sighandler_t rt_signal_install(int signo, rt_sighandler_t handler);
  250. int rt_signal_wait(const rt_sigset_t *set, rt_siginfo_t *si, rt_int32_t timeout);
  251. int rt_system_signal_init(void);
  252. #endif /* RT_USING_SIGNALS */
  253. /**@}*/
  254. /**
  255. * @addtogroup group_memory_management
  256. * @{
  257. */
  258. /*
  259. * memory management interface
  260. */
  261. #ifdef RT_USING_MEMPOOL
  262. /*
  263. * memory pool interface
  264. */
  265. rt_err_t rt_mp_init(struct rt_mempool *mp,
  266. const char *name,
  267. void *start,
  268. rt_size_t size,
  269. rt_size_t block_size);
  270. rt_err_t rt_mp_detach(struct rt_mempool *mp);
  271. #ifdef RT_USING_HEAP
  272. rt_mp_t rt_mp_create(const char *name,
  273. rt_size_t block_count,
  274. rt_size_t block_size);
  275. rt_err_t rt_mp_delete(rt_mp_t mp);
  276. #endif /* RT_USING_HEAP */
  277. void *rt_mp_alloc(rt_mp_t mp, rt_int32_t time);
  278. void rt_mp_free(void *block);
  279. #ifdef RT_USING_HOOK
  280. void rt_mp_alloc_sethook(void (*hook)(struct rt_mempool *mp, void *block));
  281. void rt_mp_free_sethook(void (*hook)(struct rt_mempool *mp, void *block));
  282. #endif /* RT_USING_HOOK */
  283. #endif /* RT_USING_MEMPOOL */
  284. #ifdef RT_USING_HEAP
  285. /*
  286. * heap memory interface
  287. */
  288. void rt_system_heap_init(void *begin_addr, void *end_addr);
  289. void rt_system_heap_init_generic(void *begin_addr, void *end_addr);
  290. void *rt_malloc(rt_size_t size);
  291. void rt_free(void *ptr);
  292. void *rt_realloc(void *ptr, rt_size_t newsize);
  293. void *rt_calloc(rt_size_t count, rt_size_t size);
  294. void *rt_malloc_align(rt_size_t size, rt_size_t align);
  295. void rt_free_align(void *ptr);
  296. void rt_memory_info(rt_size_t *total,
  297. rt_size_t *used,
  298. rt_size_t *max_used);
  299. #if defined(RT_USING_SLAB) && defined(RT_USING_SLAB_AS_HEAP)
  300. void *rt_page_alloc(rt_size_t npages);
  301. void rt_page_free(void *addr, rt_size_t npages);
  302. #endif /* defined(RT_USING_SLAB) && defined(RT_USING_SLAB_AS_HEAP) */
  303. /**
  304. * @ingroup group_hook
  305. * @{
  306. */
  307. #ifdef RT_USING_HOOK
  308. void rt_malloc_sethook(void (*hook)(void **ptr, rt_size_t size));
  309. void rt_realloc_set_entry_hook(void (*hook)(void **ptr, rt_size_t size));
  310. void rt_realloc_set_exit_hook(void (*hook)(void **ptr, rt_size_t size));
  311. void rt_free_sethook(void (*hook)(void **ptr));
  312. #endif /* RT_USING_HOOK */
  313. /**@}*/
  314. #endif /* RT_USING_HEAP */
  315. #ifdef RT_USING_SMALL_MEM
  316. /**
  317. * small memory object interface
  318. */
  319. rt_smem_t rt_smem_init(const char *name,
  320. void *begin_addr,
  321. rt_size_t size);
  322. rt_err_t rt_smem_detach(rt_smem_t m);
  323. void *rt_smem_alloc(rt_smem_t m, rt_size_t size);
  324. void *rt_smem_realloc(rt_smem_t m, void *rmem, rt_size_t newsize);
  325. void rt_smem_free(void *rmem);
  326. #endif /* RT_USING_SMALL_MEM */
  327. #ifdef RT_USING_MEMHEAP
  328. /**
  329. * memory heap object interface
  330. */
  331. rt_err_t rt_memheap_init(struct rt_memheap *memheap,
  332. const char *name,
  333. void *start_addr,
  334. rt_size_t size);
  335. rt_err_t rt_memheap_detach(struct rt_memheap *heap);
  336. void *rt_memheap_alloc(struct rt_memheap *heap, rt_size_t size);
  337. void *rt_memheap_realloc(struct rt_memheap *heap, void *ptr, rt_size_t newsize);
  338. void rt_memheap_free(void *ptr);
  339. void rt_memheap_info(struct rt_memheap *heap,
  340. rt_size_t *total,
  341. rt_size_t *used,
  342. rt_size_t *max_used);
  343. #endif /* RT_USING_MEMHEAP */
  344. #ifdef RT_USING_MEMHEAP_AS_HEAP
  345. /**
  346. * memory heap as heap
  347. */
  348. void *_memheap_alloc(struct rt_memheap *heap, rt_size_t size);
  349. void _memheap_free(void *rmem);
  350. void *_memheap_realloc(struct rt_memheap *heap, void *rmem, rt_size_t newsize);
  351. #endif
  352. #ifdef RT_USING_SLAB
  353. /**
  354. * slab object interface
  355. */
  356. rt_slab_t rt_slab_init(const char *name, void *begin_addr, rt_size_t size);
  357. rt_err_t rt_slab_detach(rt_slab_t m);
  358. void *rt_slab_page_alloc(rt_slab_t m, rt_size_t npages);
  359. void rt_slab_page_free(rt_slab_t m, void *addr, rt_size_t npages);
  360. void *rt_slab_alloc(rt_slab_t m, rt_size_t size);
  361. void *rt_slab_realloc(rt_slab_t m, void *ptr, rt_size_t size);
  362. void rt_slab_free(rt_slab_t m, void *ptr);
  363. #endif /* RT_USING_SLAB */
  364. /**@}*/
  365. /**
  366. * @addtogroup group_thread_comm
  367. * @{
  368. */
  369. /**
  370. * Suspend list - A basic building block for IPC primitives which interacts with
  371. * scheduler directly. Its API is similar to a FIFO list.
  372. *
  373. * Note: don't use in application codes directly
  374. */
  375. void rt_susp_list_print(rt_list_t *list);
  376. /* reserve thread error while resuming it */
  377. #define RT_THREAD_RESUME_RES_THR_ERR (-1)
  378. struct rt_thread *rt_susp_list_dequeue(rt_list_t *susp_list, rt_err_t thread_error);
  379. rt_err_t rt_susp_list_resume_all(rt_list_t *susp_list, rt_err_t thread_error);
  380. rt_err_t rt_susp_list_resume_all_irq(rt_list_t *susp_list,
  381. rt_err_t thread_error,
  382. struct rt_spinlock *lock);
  383. /* suspend and enqueue */
  384. rt_err_t rt_thread_suspend_to_list(rt_thread_t thread, rt_list_t *susp_list, int ipc_flags, int suspend_flag);
  385. /* only for a suspended thread, and caller must hold the scheduler lock */
  386. rt_err_t rt_susp_list_enqueue(rt_list_t *susp_list, rt_thread_t thread, int ipc_flags);
  387. /**
  388. * @addtogroup group_semaphore Semaphore
  389. * @{
  390. */
  391. #ifdef RT_USING_SEMAPHORE
  392. /*
  393. * semaphore interface
  394. */
  395. rt_err_t rt_sem_init(rt_sem_t sem,
  396. const char *name,
  397. rt_uint32_t value,
  398. rt_uint8_t flag);
  399. rt_err_t rt_sem_detach(rt_sem_t sem);
  400. #ifdef RT_USING_HEAP
  401. rt_sem_t rt_sem_create(const char *name, rt_uint32_t value, rt_uint8_t flag);
  402. rt_err_t rt_sem_delete(rt_sem_t sem);
  403. #endif /* RT_USING_HEAP */
  404. rt_err_t rt_sem_take(rt_sem_t sem, rt_int32_t timeout);
  405. rt_err_t rt_sem_take_interruptible(rt_sem_t sem, rt_int32_t timeout);
  406. rt_err_t rt_sem_take_killable(rt_sem_t sem, rt_int32_t timeout);
  407. rt_err_t rt_sem_trytake(rt_sem_t sem);
  408. rt_err_t rt_sem_release(rt_sem_t sem);
  409. rt_err_t rt_sem_control(rt_sem_t sem, int cmd, void *arg);
  410. #endif /* RT_USING_SEMAPHORE */
  411. /**@}*/
  412. /**
  413. * @addtogroup group_mutex Mutex
  414. * @{
  415. */
  416. #ifdef RT_USING_MUTEX
  417. /*
  418. * mutex interface
  419. */
  420. rt_err_t rt_mutex_init(rt_mutex_t mutex, const char *name, rt_uint8_t flag);
  421. rt_err_t rt_mutex_detach(rt_mutex_t mutex);
  422. #ifdef RT_USING_HEAP
  423. rt_mutex_t rt_mutex_create(const char *name, rt_uint8_t flag);
  424. rt_err_t rt_mutex_delete(rt_mutex_t mutex);
  425. #endif /* RT_USING_HEAP */
  426. void rt_mutex_drop_thread(rt_mutex_t mutex, rt_thread_t thread);
  427. rt_uint8_t rt_mutex_setprioceiling(rt_mutex_t mutex, rt_uint8_t priority);
  428. rt_uint8_t rt_mutex_getprioceiling(rt_mutex_t mutex);
  429. rt_err_t rt_mutex_take(rt_mutex_t mutex, rt_int32_t timeout);
  430. rt_err_t rt_mutex_trytake(rt_mutex_t mutex);
  431. rt_err_t rt_mutex_take_interruptible(rt_mutex_t mutex, rt_int32_t time);
  432. rt_err_t rt_mutex_take_killable(rt_mutex_t mutex, rt_int32_t time);
  433. rt_err_t rt_mutex_release(rt_mutex_t mutex);
  434. rt_err_t rt_mutex_control(rt_mutex_t mutex, int cmd, void *arg);
  435. rt_inline rt_thread_t rt_mutex_get_owner(rt_mutex_t mutex)
  436. {
  437. return mutex->owner;
  438. }
  439. rt_inline rt_ubase_t rt_mutex_get_hold(rt_mutex_t mutex)
  440. {
  441. return mutex->hold;
  442. }
  443. #endif /* RT_USING_MUTEX */
  444. /**@}*/
  445. /**
  446. * @addtogroup group_event Event
  447. * @{
  448. */
  449. #ifdef RT_USING_EVENT
  450. /*
  451. * event interface
  452. */
  453. rt_err_t rt_event_init(rt_event_t event, const char *name, rt_uint8_t flag);
  454. rt_err_t rt_event_detach(rt_event_t event);
  455. #ifdef RT_USING_HEAP
  456. rt_event_t rt_event_create(const char *name, rt_uint8_t flag);
  457. rt_err_t rt_event_delete(rt_event_t event);
  458. #endif /* RT_USING_HEAP */
  459. rt_err_t rt_event_send(rt_event_t event, rt_uint32_t set);
  460. rt_err_t rt_event_recv(rt_event_t event,
  461. rt_uint32_t set,
  462. rt_uint8_t opt,
  463. rt_int32_t timeout,
  464. rt_uint32_t *recved);
  465. rt_err_t rt_event_recv_interruptible(rt_event_t event,
  466. rt_uint32_t set,
  467. rt_uint8_t opt,
  468. rt_int32_t timeout,
  469. rt_uint32_t *recved);
  470. rt_err_t rt_event_recv_killable(rt_event_t event,
  471. rt_uint32_t set,
  472. rt_uint8_t opt,
  473. rt_int32_t timeout,
  474. rt_uint32_t *recved);
  475. rt_err_t rt_event_control(rt_event_t event, int cmd, void *arg);
  476. #endif /* RT_USING_EVENT */
  477. /**@}*/
  478. /**
  479. * @addtogroup group_mailbox MailBox
  480. * @{
  481. */
  482. #ifdef RT_USING_MAILBOX
  483. /*
  484. * mailbox interface
  485. */
  486. rt_err_t rt_mb_init(rt_mailbox_t mb,
  487. const char *name,
  488. void *msgpool,
  489. rt_size_t size,
  490. rt_uint8_t flag);
  491. rt_err_t rt_mb_detach(rt_mailbox_t mb);
  492. #ifdef RT_USING_HEAP
  493. rt_mailbox_t rt_mb_create(const char *name, rt_size_t size, rt_uint8_t flag);
  494. rt_err_t rt_mb_delete(rt_mailbox_t mb);
  495. #endif /* RT_USING_HEAP */
  496. rt_err_t rt_mb_send(rt_mailbox_t mb, rt_ubase_t value);
  497. rt_err_t rt_mb_send_interruptible(rt_mailbox_t mb, rt_ubase_t value);
  498. rt_err_t rt_mb_send_killable(rt_mailbox_t mb, rt_ubase_t value);
  499. rt_err_t rt_mb_send_wait(rt_mailbox_t mb,
  500. rt_ubase_t value,
  501. rt_int32_t timeout);
  502. rt_err_t rt_mb_send_wait_interruptible(rt_mailbox_t mb,
  503. rt_ubase_t value,
  504. rt_int32_t timeout);
  505. rt_err_t rt_mb_send_wait_killable(rt_mailbox_t mb,
  506. rt_ubase_t value,
  507. rt_int32_t timeout);
  508. rt_err_t rt_mb_urgent(rt_mailbox_t mb, rt_ubase_t value);
  509. rt_err_t rt_mb_recv(rt_mailbox_t mb, rt_ubase_t *value, rt_int32_t timeout);
  510. rt_err_t rt_mb_recv_interruptible(rt_mailbox_t mb, rt_ubase_t *value, rt_int32_t timeout);
  511. rt_err_t rt_mb_recv_killable(rt_mailbox_t mb, rt_ubase_t *value, rt_int32_t timeout);
  512. rt_err_t rt_mb_control(rt_mailbox_t mb, int cmd, void *arg);
  513. #endif /* RT_USING_MAILBOX */
  514. /**@}*/
  515. /**
  516. * @addtogroup group_messagequeue Message Queue
  517. * @{
  518. */
  519. #ifdef RT_USING_MESSAGEQUEUE
  520. struct rt_mq_message
  521. {
  522. struct rt_mq_message *next;
  523. rt_ssize_t length;
  524. #ifdef RT_USING_MESSAGEQUEUE_PRIORITY
  525. rt_int32_t prio;
  526. #endif /* RT_USING_MESSAGEQUEUE_PRIORITY */
  527. };
  528. #define RT_MQ_BUF_SIZE(msg_size, max_msgs) \
  529. ((RT_ALIGN((msg_size), RT_ALIGN_SIZE) + sizeof(struct rt_mq_message)) * (max_msgs))
  530. /*
  531. * message queue interface
  532. */
  533. rt_err_t rt_mq_init(rt_mq_t mq,
  534. const char *name,
  535. void *msgpool,
  536. rt_size_t msg_size,
  537. rt_size_t pool_size,
  538. rt_uint8_t flag);
  539. rt_err_t rt_mq_detach(rt_mq_t mq);
  540. #ifdef RT_USING_HEAP
  541. rt_mq_t rt_mq_create(const char *name,
  542. rt_size_t msg_size,
  543. rt_size_t max_msgs,
  544. rt_uint8_t flag);
  545. rt_err_t rt_mq_delete(rt_mq_t mq);
  546. #endif /* RT_USING_HEAP */
  547. rt_err_t rt_mq_send(rt_mq_t mq, const void *buffer, rt_size_t size);
  548. rt_err_t rt_mq_send_interruptible(rt_mq_t mq, const void *buffer, rt_size_t size);
  549. rt_err_t rt_mq_send_killable(rt_mq_t mq, const void *buffer, rt_size_t size);
  550. rt_err_t rt_mq_send_wait(rt_mq_t mq,
  551. const void *buffer,
  552. rt_size_t size,
  553. rt_int32_t timeout);
  554. rt_err_t rt_mq_send_wait_interruptible(rt_mq_t mq,
  555. const void *buffer,
  556. rt_size_t size,
  557. rt_int32_t timeout);
  558. rt_err_t rt_mq_send_wait_killable(rt_mq_t mq,
  559. const void *buffer,
  560. rt_size_t size,
  561. rt_int32_t timeout);
  562. rt_err_t rt_mq_urgent(rt_mq_t mq, const void *buffer, rt_size_t size);
  563. rt_ssize_t rt_mq_recv(rt_mq_t mq,
  564. void *buffer,
  565. rt_size_t size,
  566. rt_int32_t timeout);
  567. rt_ssize_t rt_mq_recv_interruptible(rt_mq_t mq,
  568. void *buffer,
  569. rt_size_t size,
  570. rt_int32_t timeout);
  571. rt_ssize_t rt_mq_recv_killable(rt_mq_t mq,
  572. void *buffer,
  573. rt_size_t size,
  574. rt_int32_t timeout);
  575. rt_err_t rt_mq_control(rt_mq_t mq, int cmd, void *arg);
  576. #ifdef RT_USING_MESSAGEQUEUE_PRIORITY
  577. rt_err_t rt_mq_send_wait_prio(rt_mq_t mq,
  578. const void *buffer,
  579. rt_size_t size,
  580. rt_int32_t prio,
  581. rt_int32_t timeout,
  582. int suspend_flag);
  583. rt_ssize_t rt_mq_recv_prio(rt_mq_t mq,
  584. void *buffer,
  585. rt_size_t size,
  586. rt_int32_t *prio,
  587. rt_int32_t timeout,
  588. int suspend_flag);
  589. #endif /* RT_USING_MESSAGEQUEUE_PRIORITY */
  590. #endif /* RT_USING_MESSAGEQUEUE */
  591. /**@}*/
  592. /* defunct */
  593. void rt_thread_defunct_init(void);
  594. void rt_thread_defunct_enqueue(rt_thread_t thread);
  595. rt_thread_t rt_thread_defunct_dequeue(void);
  596. void rt_defunct_execute(void);
  597. /*
  598. * spinlock
  599. */
  600. struct rt_spinlock;
  601. void rt_spin_lock_init(struct rt_spinlock *lock);
  602. void rt_spin_lock(struct rt_spinlock *lock);
  603. void rt_spin_unlock(struct rt_spinlock *lock);
  604. rt_base_t rt_spin_lock_irqsave(struct rt_spinlock *lock);
  605. void rt_spin_unlock_irqrestore(struct rt_spinlock *lock, rt_base_t level);
  606. /**@}*/
  607. #ifdef RT_USING_DEVICE
  608. /**
  609. * @addtogroup group_device_driver
  610. * @{
  611. */
  612. /*
  613. * device (I/O) system interface
  614. */
  615. rt_device_t rt_device_find(const char *name);
  616. rt_err_t rt_device_register(rt_device_t dev,
  617. const char *name,
  618. rt_uint16_t flags);
  619. rt_err_t rt_device_unregister(rt_device_t dev);
  620. #ifdef RT_USING_HEAP
  621. rt_device_t rt_device_create(int type, int attach_size);
  622. void rt_device_destroy(rt_device_t device);
  623. #endif /* RT_USING_HEAP */
  624. rt_err_t
  625. rt_device_set_rx_indicate(rt_device_t dev,
  626. rt_err_t (*rx_ind)(rt_device_t dev, rt_size_t size));
  627. rt_err_t
  628. rt_device_set_tx_complete(rt_device_t dev,
  629. rt_err_t (*tx_done)(rt_device_t dev, void *buffer));
  630. rt_err_t rt_device_init (rt_device_t dev);
  631. rt_err_t rt_device_open (rt_device_t dev, rt_uint16_t oflag);
  632. rt_err_t rt_device_close(rt_device_t dev);
  633. rt_ssize_t rt_device_read(rt_device_t dev,
  634. rt_off_t pos,
  635. void *buffer,
  636. rt_size_t size);
  637. rt_ssize_t rt_device_write(rt_device_t dev,
  638. rt_off_t pos,
  639. const void *buffer,
  640. rt_size_t size);
  641. rt_err_t rt_device_control(rt_device_t dev, int cmd, void *arg);
  642. /**@}*/
  643. #endif /* RT_USING_DEVICE */
  644. /*
  645. * interrupt service
  646. */
  647. /*
  648. * rt_interrupt_enter and rt_interrupt_leave only can be called by BSP
  649. */
  650. void rt_interrupt_enter(void);
  651. void rt_interrupt_leave(void);
  652. void rt_interrupt_context_push(rt_interrupt_context_t this_ctx);
  653. void rt_interrupt_context_pop(void);
  654. void *rt_interrupt_context_get(void);
  655. /**
  656. * CPU object
  657. */
  658. struct rt_cpu *rt_cpu_self(void);
  659. struct rt_cpu *rt_cpu_index(int index);
  660. #ifdef RT_USING_SMP
  661. /*
  662. * smp cpus lock service
  663. */
  664. rt_base_t rt_cpus_lock(void);
  665. void rt_cpus_unlock(rt_base_t level);
  666. void rt_cpus_lock_status_restore(struct rt_thread *thread);
  667. #ifdef RT_USING_DEBUG
  668. rt_base_t rt_cpu_get_id(void);
  669. #else /* !RT_USING_DEBUG */
  670. #define rt_cpu_get_id rt_hw_cpu_id
  671. #endif /* RT_USING_DEBUG */
  672. #else /* !RT_USING_SMP */
  673. #define rt_cpu_get_id() (0)
  674. #endif /* RT_USING_SMP */
  675. /*
  676. * the number of nested interrupts.
  677. */
  678. rt_uint8_t rt_interrupt_get_nest(void);
  679. #ifdef RT_USING_HOOK
  680. void rt_interrupt_enter_sethook(void (*hook)(void));
  681. void rt_interrupt_leave_sethook(void (*hook)(void));
  682. #endif /* RT_USING_HOOK */
  683. #ifdef RT_USING_COMPONENTS_INIT
  684. void rt_components_init(void);
  685. void rt_components_board_init(void);
  686. #endif /* RT_USING_COMPONENTS_INIT */
  687. /**
  688. * @addtogroup group_kernel_service
  689. * @{
  690. */
  691. /*
  692. * general kernel service
  693. */
  694. #ifndef RT_USING_CONSOLE
  695. #define rt_kprintf(...)
  696. #define rt_kputs(str)
  697. #else
  698. int rt_kprintf(const char *fmt, ...);
  699. void rt_kputs(const char *str);
  700. #endif /* RT_USING_CONSOLE */
  701. rt_err_t rt_backtrace(void);
  702. rt_err_t rt_backtrace_thread(rt_thread_t thread);
  703. rt_err_t rt_backtrace_frame(rt_thread_t thread, struct rt_hw_backtrace_frame *frame);
  704. rt_err_t rt_backtrace_formatted_print(rt_ubase_t *buffer, long buflen);
  705. rt_err_t rt_backtrace_to_buffer(rt_thread_t thread, struct rt_hw_backtrace_frame *frame,
  706. long skip, rt_ubase_t *buffer, long buflen);
  707. #if defined(RT_USING_DEVICE) && defined(RT_USING_CONSOLE)
  708. rt_device_t rt_console_set_device(const char *name);
  709. rt_device_t rt_console_get_device(void);
  710. #ifdef RT_USING_THREADSAFE_PRINTF
  711. rt_thread_t rt_console_current_user(void);
  712. #else
  713. rt_inline void *rt_console_current_user(void) { return RT_NULL; }
  714. #endif /* RT_USING_THREADSAFE_PRINTF */
  715. #endif /* defined(RT_USING_DEVICE) && defined(RT_USING_CONSOLE) */
  716. int __rt_ffs(int value);
  717. unsigned long __rt_ffsl(unsigned long value);
  718. unsigned long __rt_clz(unsigned long value);
  719. void rt_show_version(void);
  720. #ifdef RT_DEBUGING_ASSERT
  721. extern void (*rt_assert_hook)(const char *ex, const char *func, rt_size_t line);
  722. void rt_assert_set_hook(void (*hook)(const char *ex, const char *func, rt_size_t line));
  723. void rt_assert_handler(const char *ex, const char *func, rt_size_t line);
  724. #define RT_ASSERT(EX) \
  725. if (!(EX)) \
  726. { \
  727. rt_assert_handler(#EX, __FUNCTION__, __LINE__); \
  728. }
  729. #else
  730. #define RT_ASSERT(EX) {RT_UNUSED(EX);}
  731. #endif /* RT_DEBUGING_ASSERT */
  732. #ifdef RT_DEBUGING_CONTEXT
  733. /* Macro to check current context */
  734. #define RT_DEBUG_NOT_IN_INTERRUPT \
  735. do \
  736. { \
  737. if (rt_interrupt_get_nest() != 0) \
  738. { \
  739. rt_kprintf("Function[%s] shall not be used in ISR\n", __FUNCTION__); \
  740. RT_ASSERT(0) \
  741. } \
  742. } \
  743. while (0)
  744. /* "In thread context" means:
  745. * 1) the scheduler has been started
  746. * 2) not in interrupt context.
  747. */
  748. #define RT_DEBUG_IN_THREAD_CONTEXT \
  749. do \
  750. { \
  751. if (rt_thread_self() == RT_NULL) \
  752. { \
  753. rt_kprintf("Function[%s] shall not be used before scheduler start\n", \
  754. __FUNCTION__); \
  755. RT_ASSERT(0) \
  756. } \
  757. RT_DEBUG_NOT_IN_INTERRUPT; \
  758. } \
  759. while (0)
  760. /* "scheduler available" means:
  761. * 1) the scheduler has been started.
  762. * 2) not in interrupt context.
  763. * 3) scheduler is not locked.
  764. */
  765. #define RT_DEBUG_SCHEDULER_AVAILABLE(need_check) \
  766. do \
  767. { \
  768. if (need_check) \
  769. { \
  770. if (rt_critical_level() != 0) \
  771. { \
  772. rt_kprintf("Function[%s]: scheduler is not available\n", \
  773. __FUNCTION__); \
  774. RT_ASSERT(0) \
  775. } \
  776. RT_DEBUG_IN_THREAD_CONTEXT; \
  777. } \
  778. } \
  779. while (0)
  780. #else
  781. #define RT_DEBUG_NOT_IN_INTERRUPT
  782. #define RT_DEBUG_IN_THREAD_CONTEXT
  783. #define RT_DEBUG_SCHEDULER_AVAILABLE(need_check)
  784. #endif /* RT_DEBUGING_CONTEXT */
  785. rt_inline rt_bool_t rt_in_thread_context(void)
  786. {
  787. return rt_thread_self() != RT_NULL && rt_interrupt_get_nest() == 0;
  788. }
  789. /* is scheduler available */
  790. rt_inline rt_bool_t rt_scheduler_is_available(void)
  791. {
  792. return rt_critical_level() == 0 && rt_in_thread_context();
  793. }
  794. #ifdef RT_USING_SMP
  795. /* is thread bond on core */
  796. rt_inline rt_bool_t rt_sched_thread_is_binding(rt_thread_t thread)
  797. {
  798. if (thread == RT_NULL)
  799. {
  800. thread = rt_thread_self();
  801. }
  802. return !thread || RT_SCHED_CTX(thread).bind_cpu != RT_CPUS_NR;
  803. }
  804. #else
  805. #define rt_sched_thread_is_binding(thread) (RT_TRUE)
  806. #endif
  807. /**@}*/
  808. #ifdef __cplusplus
  809. }
  810. #endif
  811. #endif /* __RT_THREAD_H__ */