rtdef.h 62 KB

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  1. /*
  2. * Copyright (c) 2006-2022, RT-Thread Development Team
  3. *
  4. * SPDX-License-Identifier: Apache-2.0
  5. *
  6. * Change Logs:
  7. * Date Author Notes
  8. * 2007-01-10 Bernard the first version
  9. * 2008-07-12 Bernard remove all rt_int8, rt_uint32_t etc typedef
  10. * 2010-10-26 yi.qiu add module support
  11. * 2010-11-10 Bernard add cleanup callback function in thread exit.
  12. * 2011-05-09 Bernard use builtin va_arg in GCC 4.x
  13. * 2012-11-16 Bernard change RT_NULL from ((void*)0) to 0.
  14. * 2012-12-29 Bernard change the RT_USING_MEMPOOL location and add
  15. * RT_USING_MEMHEAP condition.
  16. * 2012-12-30 Bernard add more control command for graphic.
  17. * 2013-01-09 Bernard change version number.
  18. * 2015-02-01 Bernard change version number to v2.1.0
  19. * 2017-08-31 Bernard change version number to v3.0.0
  20. * 2017-11-30 Bernard change version number to v3.0.1
  21. * 2017-12-27 Bernard change version number to v3.0.2
  22. * 2018-02-24 Bernard change version number to v3.0.3
  23. * 2018-04-25 Bernard change version number to v3.0.4
  24. * 2018-05-31 Bernard change version number to v3.1.0
  25. * 2018-09-04 Bernard change version number to v3.1.1
  26. * 2018-09-14 Bernard apply Apache License v2.0 to RT-Thread Kernel
  27. * 2018-10-13 Bernard change version number to v4.0.0
  28. * 2018-10-02 Bernard add 64bit arch support
  29. * 2018-11-22 Jesven add smp member to struct rt_thread
  30. * add struct rt_cpu
  31. * add smp relevant macros
  32. * 2019-01-27 Bernard change version number to v4.0.1
  33. * 2019-05-17 Bernard change version number to v4.0.2
  34. * 2019-12-20 Bernard change version number to v4.0.3
  35. * 2020-08-10 Meco Man add macro for struct rt_device_ops
  36. * 2020-10-23 Meco Man define maximum value of ipc type
  37. * 2021-03-19 Meco Man add security devices
  38. * 2021-05-10 armink change version number to v4.0.4
  39. * 2021-11-19 Meco Man change version number to v4.1.0
  40. * 2021-12-21 Meco Man re-implement RT_UNUSED
  41. * 2022-01-01 Gabriel improve hooking method
  42. * 2022-01-07 Gabriel move some __on_rt_xxxxx_hook to dedicated c source files
  43. * 2022-01-12 Meco Man remove RT_THREAD_BLOCK
  44. * 2022-04-20 Meco Man change version number to v4.1.1
  45. * 2022-04-21 THEWON add macro RT_VERSION_CHECK
  46. * 2022-06-29 Meco Man add RT_USING_LIBC and standard libc headers
  47. * 2022-08-16 Meco Man change version number to v5.0.0
  48. * 2022-09-12 Meco Man define rt_ssize_t
  49. * 2022-12-20 Meco Man add const name for rt_object
  50. * 2023-04-01 Chushicheng change version number to v5.0.1
  51. * 2023-05-20 Bernard add stdc atomic detection.
  52. * 2023-09-15 xqyjlj perf rt_hw_interrupt_disable/enable
  53. * 2023-10-10 Chushicheng change version number to v5.1.0
  54. * 2023-10-11 zmshahaha move specific devices related and driver to components/drivers
  55. * 2023-11-21 Meco Man add RT_USING_NANO macro
  56. * 2023-12-18 xqyjlj add rt_always_inline
  57. * 2023-12-22 Shell Support hook list
  58. */
  59. #ifndef __RT_DEF_H__
  60. #define __RT_DEF_H__
  61. #include <rtconfig.h>
  62. #include <stdint.h>
  63. #include <stddef.h>
  64. #include <stdarg.h>
  65. #ifndef RT_USING_NANO
  66. #include <sys/types.h>
  67. #include <sys/errno.h>
  68. #if defined(RT_USING_SIGNALS) || defined(RT_USING_SMART)
  69. #include <sys/signal.h>
  70. #endif /* defined(RT_USING_SIGNALS) || defined(RT_USING_SMART) */
  71. #endif /* RT_USING_NANO */
  72. #ifdef __cplusplus
  73. extern "C" {
  74. #endif
  75. /**
  76. * @addtogroup BasicDef
  77. */
  78. /**@{*/
  79. /* RT-Thread version information */
  80. #define RT_VERSION_MAJOR 5 /**< Major version number (X.x.x) */
  81. #define RT_VERSION_MINOR 1 /**< Minor version number (x.X.x) */
  82. #define RT_VERSION_PATCH 0 /**< Patch version number (x.x.X) */
  83. /* e.g. #if (RTTHREAD_VERSION >= RT_VERSION_CHECK(4, 1, 0) */
  84. #define RT_VERSION_CHECK(major, minor, revise) ((major * 10000) + (minor * 100) + revise)
  85. /* RT-Thread version */
  86. #define RTTHREAD_VERSION RT_VERSION_CHECK(RT_VERSION_MAJOR, RT_VERSION_MINOR, RT_VERSION_PATCH)
  87. /* RT-Thread basic data type definitions */
  88. typedef int rt_bool_t; /**< boolean type */
  89. typedef signed long rt_base_t; /**< Nbit CPU related date type */
  90. typedef unsigned long rt_ubase_t; /**< Nbit unsigned CPU related data type */
  91. #ifndef RT_USING_ARCH_DATA_TYPE
  92. #ifdef RT_USING_LIBC
  93. typedef int8_t rt_int8_t; /**< 8bit integer type */
  94. typedef int16_t rt_int16_t; /**< 16bit integer type */
  95. typedef int32_t rt_int32_t; /**< 32bit integer type */
  96. typedef uint8_t rt_uint8_t; /**< 8bit unsigned integer type */
  97. typedef uint16_t rt_uint16_t; /**< 16bit unsigned integer type */
  98. typedef uint32_t rt_uint32_t; /**< 32bit unsigned integer type */
  99. typedef int64_t rt_int64_t; /**< 64bit integer type */
  100. typedef uint64_t rt_uint64_t; /**< 64bit unsigned integer type */
  101. #else
  102. typedef signed char rt_int8_t; /**< 8bit integer type */
  103. typedef signed short rt_int16_t; /**< 16bit integer type */
  104. typedef signed int rt_int32_t; /**< 32bit integer type */
  105. typedef unsigned char rt_uint8_t; /**< 8bit unsigned integer type */
  106. typedef unsigned short rt_uint16_t; /**< 16bit unsigned integer type */
  107. typedef unsigned int rt_uint32_t; /**< 32bit unsigned integer type */
  108. #ifdef ARCH_CPU_64BIT
  109. typedef signed long rt_int64_t; /**< 64bit integer type */
  110. typedef unsigned long rt_uint64_t; /**< 64bit unsigned integer type */
  111. #else
  112. typedef signed long long rt_int64_t; /**< 64bit integer type */
  113. typedef unsigned long long rt_uint64_t; /**< 64bit unsigned integer type */
  114. #endif /* ARCH_CPU_64BIT */
  115. #endif /* RT_USING_LIBC */
  116. #endif /* RT_USING_ARCH_DATA_TYPE */
  117. #if defined(RT_USING_LIBC) && !defined(RT_USING_NANO)
  118. typedef size_t rt_size_t; /**< Type for size number */
  119. typedef ssize_t rt_ssize_t; /**< Used for a count of bytes or an error indication */
  120. #else
  121. typedef rt_ubase_t rt_size_t; /**< Type for size number */
  122. typedef rt_base_t rt_ssize_t; /**< Used for a count of bytes or an error indication */
  123. #endif /* defined(RT_USING_LIBC) && !defined(RT_USING_NANO) */
  124. typedef rt_base_t rt_err_t; /**< Type for error number */
  125. typedef rt_uint32_t rt_time_t; /**< Type for time stamp */
  126. typedef rt_uint32_t rt_tick_t; /**< Type for tick count */
  127. typedef rt_base_t rt_flag_t; /**< Type for flags */
  128. typedef rt_ubase_t rt_dev_t; /**< Type for device */
  129. typedef rt_base_t rt_off_t; /**< Type for offset */
  130. #ifdef __cplusplus
  131. typedef rt_base_t rt_atomic_t;
  132. #else
  133. #if defined(RT_USING_HW_ATOMIC)
  134. typedef rt_base_t rt_atomic_t;
  135. #elif defined(RT_USING_STDC_ATOMIC)
  136. #include <stdatomic.h>
  137. typedef atomic_size_t rt_atomic_t;
  138. #else
  139. typedef rt_base_t rt_atomic_t;
  140. #endif /* RT_USING_STDC_ATOMIC */
  141. #endif /* __cplusplus */
  142. /* boolean type definitions */
  143. #define RT_TRUE 1 /**< boolean true */
  144. #define RT_FALSE 0 /**< boolean fails */
  145. /* null pointer definition */
  146. #define RT_NULL 0
  147. /**@}*/
  148. /* maximum value of base type */
  149. #ifdef RT_USING_LIBC
  150. #define RT_UINT8_MAX UINT8_MAX /**< Maximum number of UINT8 */
  151. #define RT_UINT16_MAX UINT16_MAX /**< Maximum number of UINT16 */
  152. #define RT_UINT32_MAX UINT32_MAX /**< Maximum number of UINT32 */
  153. #define RT_UINT64_MAX UINT64_MAX /**< Maximum number of UINT64 */
  154. #else
  155. #define RT_UINT8_MAX 0xff /**< Maximum number of UINT8 */
  156. #define RT_UINT16_MAX 0xffff /**< Maximum number of UINT16 */
  157. #define RT_UINT32_MAX 0xffffffff /**< Maximum number of UINT32 */
  158. #define RT_UINT64_MAX 0xffffffffffffffff
  159. #endif /* RT_USING_LIBC */
  160. #define RT_TICK_MAX RT_UINT32_MAX /**< Maximum number of tick */
  161. /* maximum value of ipc type */
  162. #define RT_SEM_VALUE_MAX RT_UINT16_MAX /**< Maximum number of semaphore .value */
  163. #define RT_MUTEX_VALUE_MAX RT_UINT16_MAX /**< Maximum number of mutex .value */
  164. #define RT_MUTEX_HOLD_MAX RT_UINT8_MAX /**< Maximum number of mutex .hold */
  165. #define RT_MB_ENTRY_MAX RT_UINT16_MAX /**< Maximum number of mailbox .entry */
  166. #define RT_MQ_ENTRY_MAX RT_UINT16_MAX /**< Maximum number of message queue .entry */
  167. /* Common Utilities */
  168. #define RT_UNUSED(x) ((void)x)
  169. /* compile time assertion */
  170. #define RT_STATIC_ASSERT(name, expn) typedef char _static_assert_##name[(expn)?1:-1]
  171. /* Compiler Related Definitions */
  172. #if defined(__ARMCC_VERSION) /* ARM Compiler */
  173. #define rt_section(x) __attribute__((section(x)))
  174. #define rt_used __attribute__((used))
  175. #define rt_align(n) __attribute__((aligned(n)))
  176. #define rt_weak __attribute__((weak))
  177. #define rt_typeof typeof
  178. #define rt_noreturn
  179. #define rt_inline static __inline
  180. #define rt_always_inline rt_inline
  181. #elif defined (__IAR_SYSTEMS_ICC__) /* for IAR Compiler */
  182. #define rt_section(x) @ x
  183. #define rt_used __root
  184. #define PRAGMA(x) _Pragma(#x)
  185. #define rt_align(n) PRAGMA(data_alignment=n)
  186. #define rt_weak __weak
  187. #define rt_typeof typeof
  188. #define rt_noreturn
  189. #define rt_inline static inline
  190. #define rt_always_inline rt_inline
  191. #elif defined (__GNUC__) /* GNU GCC Compiler */
  192. #define __RT_STRINGIFY(x...) #x
  193. #define RT_STRINGIFY(x...) __RT_STRINGIFY(x)
  194. #define rt_section(x) __attribute__((section(x)))
  195. #define rt_used __attribute__((used))
  196. #define rt_align(n) __attribute__((aligned(n)))
  197. #define rt_weak __attribute__((weak))
  198. #define rt_typeof __typeof__
  199. #define rt_noreturn __attribute__ ((noreturn))
  200. #define rt_inline static __inline
  201. #define rt_always_inline static inline __attribute__((always_inline))
  202. #elif defined (__ADSPBLACKFIN__) /* for VisualDSP++ Compiler */
  203. #define rt_section(x) __attribute__((section(x)))
  204. #define rt_used __attribute__((used))
  205. #define rt_align(n) __attribute__((aligned(n)))
  206. #define rt_weak __attribute__((weak))
  207. #define rt_typeof typeof
  208. #define rt_noreturn
  209. #define rt_inline static inline
  210. #define rt_always_inline rt_inline
  211. #elif defined (_MSC_VER) /* for Visual Studio Compiler */
  212. #define rt_section(x)
  213. #define rt_used
  214. #define rt_align(n) __declspec(align(n))
  215. #define rt_weak
  216. #define rt_typeof typeof
  217. #define rt_noreturn
  218. #define rt_inline static __inline
  219. #define rt_always_inline rt_inline
  220. #elif defined (__TI_COMPILER_VERSION__) /* for TI CCS Compiler */
  221. /**
  222. * The way that TI compiler set section is different from other(at least
  223. * GCC and MDK) compilers. See ARM Optimizing C/C++ Compiler 5.9.3 for more
  224. * details.
  225. */
  226. #define rt_section(x) __attribute__((section(x)))
  227. #ifdef __TI_EABI__
  228. #define rt_used __attribute__((retain)) __attribute__((used))
  229. #else
  230. #define rt_used __attribute__((used))
  231. #endif
  232. #define PRAGMA(x) _Pragma(#x)
  233. #define rt_align(n) __attribute__((aligned(n)))
  234. #ifdef __TI_EABI__
  235. #define rt_weak __attribute__((weak))
  236. #else
  237. #define rt_weak
  238. #endif
  239. #define rt_typeof typeof
  240. #define rt_noreturn
  241. #define rt_inline static inline
  242. #define rt_always_inline rt_inline
  243. #elif defined (__TASKING__) /* for TASKING Compiler */
  244. #define rt_section(x) __attribute__((section(x)))
  245. #define rt_used __attribute__((used, protect))
  246. #define PRAGMA(x) _Pragma(#x)
  247. #define rt_align(n) __attribute__((__align(n)))
  248. #define rt_weak __attribute__((weak))
  249. #define rt_typeof typeof
  250. #define rt_noreturn
  251. #define rt_inline static inline
  252. #define rt_always_inline rt_inline
  253. #else /* Unkown Compiler */
  254. #error not supported tool chain
  255. #endif /* __ARMCC_VERSION */
  256. /* initialization export */
  257. #ifdef RT_USING_COMPONENTS_INIT
  258. typedef int (*init_fn_t)(void);
  259. #ifdef _MSC_VER
  260. #pragma section("rti_fn$f",read)
  261. #ifdef RT_DEBUGING_AUTO_INIT
  262. struct rt_init_desc
  263. {
  264. const char* level;
  265. const init_fn_t fn;
  266. const char* fn_name;
  267. };
  268. #define INIT_EXPORT(fn, level) \
  269. const char __rti_level_##fn[] = ".rti_fn." level; \
  270. const char __rti_##fn##_name[] = #fn; \
  271. __declspec(allocate("rti_fn$f")) \
  272. rt_used const struct rt_init_desc __rt_init_msc_##fn = \
  273. {__rti_level_##fn, fn, __rti_##fn##_name};
  274. #else
  275. struct rt_init_desc
  276. {
  277. const char* level;
  278. const init_fn_t fn;
  279. };
  280. #define INIT_EXPORT(fn, level) \
  281. const char __rti_level_##fn[] = ".rti_fn." level; \
  282. __declspec(allocate("rti_fn$f")) \
  283. rt_used const struct rt_init_desc __rt_init_msc_##fn = \
  284. {__rti_level_##fn, fn };
  285. #endif /* RT_DEBUGING_AUTO_INIT */
  286. #else
  287. #ifdef RT_DEBUGING_AUTO_INIT
  288. struct rt_init_desc
  289. {
  290. const char* fn_name;
  291. const init_fn_t fn;
  292. };
  293. #define INIT_EXPORT(fn, level) \
  294. const char __rti_##fn##_name[] = #fn; \
  295. rt_used const struct rt_init_desc __rt_init_desc_##fn rt_section(".rti_fn." level) = \
  296. { __rti_##fn##_name, fn};
  297. #else
  298. #define INIT_EXPORT(fn, level) \
  299. rt_used const init_fn_t __rt_init_##fn rt_section(".rti_fn." level) = fn
  300. #endif /* RT_DEBUGING_AUTO_INIT */
  301. #endif /* _MSC_VER */
  302. #else
  303. #define INIT_EXPORT(fn, level)
  304. #endif /* RT_USING_COMPONENTS_INIT */
  305. /* board init routines will be called in board_init() function */
  306. #define INIT_BOARD_EXPORT(fn) INIT_EXPORT(fn, "1")
  307. /* init cpu, memory, interrupt-controller, bus... */
  308. #define INIT_CORE_EXPORT(fn) INIT_EXPORT(fn, "1.0")
  309. /* init pci/pcie, usb platform driver... */
  310. #define INIT_FRAMEWORK_EXPORT(fn) INIT_EXPORT(fn, "1.1")
  311. /* init platform, user code... */
  312. #define INIT_PLATFORM_EXPORT(fn) INIT_EXPORT(fn, "1.2")
  313. /* init sys-timer, clk, pinctrl... */
  314. #define INIT_SUBSYS_EXPORT(fn) INIT_EXPORT(fn, "1.3")
  315. /* init early drivers */
  316. #define INIT_DRIVER_EARLY_EXPORT(fn) INIT_EXPORT(fn, "1.4")
  317. /* pre/device/component/env/app init routines will be called in init_thread */
  318. /* components pre-initialization (pure software initialization) */
  319. #define INIT_PREV_EXPORT(fn) INIT_EXPORT(fn, "2")
  320. /* device initialization */
  321. #define INIT_DEVICE_EXPORT(fn) INIT_EXPORT(fn, "3")
  322. /* components initialization (dfs, lwip, ...) */
  323. #define INIT_COMPONENT_EXPORT(fn) INIT_EXPORT(fn, "4")
  324. /* environment initialization (mount disk, ...) */
  325. #define INIT_ENV_EXPORT(fn) INIT_EXPORT(fn, "5")
  326. /* application initialization (rtgui application etc ...) */
  327. #define INIT_APP_EXPORT(fn) INIT_EXPORT(fn, "6")
  328. /* init after mount fs */
  329. #define INIT_FS_EXPORT(fn) INIT_EXPORT(fn, "6.0")
  330. /* init in secondary_cpu_c_start */
  331. #define INIT_SECONDARY_CPU_EXPORT(fn) INIT_EXPORT(fn, "7")
  332. #if !defined(RT_USING_FINSH)
  333. /* define these to empty, even if not include finsh.h file */
  334. #define FINSH_FUNCTION_EXPORT(name, desc)
  335. #define FINSH_FUNCTION_EXPORT_ALIAS(name, alias, desc)
  336. #define MSH_CMD_EXPORT(command, desc)
  337. #define MSH_CMD_EXPORT_ALIAS(command, alias, desc)
  338. #elif !defined(FINSH_USING_SYMTAB)
  339. #define FINSH_FUNCTION_EXPORT_CMD(name, cmd, desc)
  340. #endif
  341. /* event length */
  342. #define RT_EVENT_LENGTH 32
  343. /* memory management option */
  344. #define RT_MM_PAGE_SIZE 4096
  345. #define RT_MM_PAGE_MASK (RT_MM_PAGE_SIZE - 1)
  346. #define RT_MM_PAGE_BITS 12
  347. /* kernel malloc definitions */
  348. #ifndef RT_KERNEL_MALLOC
  349. #define RT_KERNEL_MALLOC(sz) rt_malloc(sz)
  350. #endif /* RT_KERNEL_MALLOC */
  351. #ifndef RT_KERNEL_FREE
  352. #define RT_KERNEL_FREE(ptr) rt_free(ptr)
  353. #endif /* RT_KERNEL_FREE */
  354. #ifndef RT_KERNEL_REALLOC
  355. #define RT_KERNEL_REALLOC(ptr, size) rt_realloc(ptr, size)
  356. #endif /* RT_KERNEL_REALLOC */
  357. /**
  358. * @addtogroup Error
  359. */
  360. /**@{*/
  361. /* RT-Thread error code definitions */
  362. #if defined(RT_USING_LIBC) && !defined(RT_USING_NANO)
  363. /* POSIX error code compatible */
  364. #define RT_EOK 0 /**< There is no error */
  365. #define RT_ERROR 255 /**< A generic/unknown error happens */
  366. #define RT_ETIMEOUT ETIMEDOUT /**< Timed out */
  367. #define RT_EFULL ENOSPC /**< The resource is full */
  368. #define RT_EEMPTY ENODATA /**< The resource is empty */
  369. #define RT_ENOMEM ENOMEM /**< No memory */
  370. #define RT_ENOSYS ENOSYS /**< Function not implemented */
  371. #define RT_EBUSY EBUSY /**< Busy */
  372. #define RT_EIO EIO /**< IO error */
  373. #define RT_EINTR EINTR /**< Interrupted system call */
  374. #define RT_EINVAL EINVAL /**< Invalid argument */
  375. #define RT_ENOENT ENOENT /**< No entry */
  376. #define RT_ENOSPC ENOSPC /**< No space left */
  377. #define RT_EPERM EPERM /**< Operation not permitted */
  378. #define RT_EFAULT EFAULT /**< Bad address */
  379. #define RT_ENOBUFS ENOBUFS /**< No buffer space is available */
  380. #define RT_ETRAP 254 /**< Trap event */
  381. #else
  382. #define RT_EOK 0 /**< There is no error */
  383. #define RT_ERROR 1 /**< A generic/unknown error happens */
  384. #define RT_ETIMEOUT 2 /**< Timed out */
  385. #define RT_EFULL 3 /**< The resource is full */
  386. #define RT_EEMPTY 4 /**< The resource is empty */
  387. #define RT_ENOMEM 5 /**< No memory */
  388. #define RT_ENOSYS 6 /**< Function not implemented */
  389. #define RT_EBUSY 7 /**< Busy */
  390. #define RT_EIO 8 /**< IO error */
  391. #define RT_EINTR 9 /**< Interrupted system call */
  392. #define RT_EINVAL 10 /**< Invalid argument */
  393. #define RT_ENOENT 11 /**< No entry */
  394. #define RT_ENOSPC 12 /**< No space left */
  395. #define RT_EPERM 13 /**< Operation not permitted */
  396. #define RT_ETRAP 14 /**< Trap event */
  397. #define RT_EFAULT 15 /**< Bad address */
  398. #define RT_ENOBUFS 16 /**< No buffer space is available */
  399. #endif /* defined(RT_USING_LIBC) && !defined(RT_USING_NANO) */
  400. /**@}*/
  401. /**
  402. * @ingroup BasicDef
  403. *
  404. * @def RT_IS_ALIGN(addr, align)
  405. * Return true(1) or false(0).
  406. * RT_IS_ALIGN(128, 4) is judging whether 128 aligns with 4.
  407. * The result is 1, which means 128 aligns with 4.
  408. * @note If the address is NULL, false(0) will be returned
  409. */
  410. #define RT_IS_ALIGN(addr, align) ((!(addr & (align - 1))) && (addr != RT_NULL))
  411. /**
  412. * @ingroup BasicDef
  413. *
  414. * @def RT_ALIGN(size, align)
  415. * Return the most contiguous size aligned at specified width. RT_ALIGN(13, 4)
  416. * would return 16.
  417. */
  418. #define RT_ALIGN(size, align) (((size) + (align) - 1) & ~((align) - 1))
  419. /**
  420. * @ingroup BasicDef
  421. *
  422. * @def RT_ALIGN_DOWN(size, align)
  423. * Return the down number of aligned at specified width. RT_ALIGN_DOWN(13, 4)
  424. * would return 12.
  425. */
  426. #define RT_ALIGN_DOWN(size, align) ((size) & ~((align) - 1))
  427. /**
  428. * Double List structure
  429. */
  430. struct rt_list_node
  431. {
  432. struct rt_list_node *next; /**< point to next node. */
  433. struct rt_list_node *prev; /**< point to prev node. */
  434. };
  435. typedef struct rt_list_node rt_list_t; /**< Type for lists. */
  436. /**
  437. * Single List structure
  438. */
  439. struct rt_slist_node
  440. {
  441. struct rt_slist_node *next; /**< point to next node. */
  442. };
  443. typedef struct rt_slist_node rt_slist_t; /**< Type for single list. */
  444. #ifdef RT_USING_SMP
  445. #include <cpuport.h> /* for spinlock from arch */
  446. struct rt_spinlock
  447. {
  448. rt_hw_spinlock_t lock;
  449. #if defined(RT_DEBUGING_SPINLOCK)
  450. void *owner;
  451. void *pc;
  452. #endif /* RT_DEBUGING_SPINLOCK */
  453. };
  454. typedef struct rt_spinlock rt_spinlock_t;
  455. #ifndef RT_SPINLOCK_INIT
  456. #define RT_SPINLOCK_INIT {{0}} // default
  457. #endif /* RT_SPINLOCK_INIT */
  458. #else
  459. typedef rt_ubase_t rt_spinlock_t;
  460. struct rt_spinlock
  461. {
  462. rt_spinlock_t lock;
  463. };
  464. #define RT_SPINLOCK_INIT {0}
  465. #endif /* RT_USING_SMP */
  466. #define RT_DEFINE_SPINLOCK(x) struct rt_spinlock x = RT_SPINLOCK_INIT
  467. /**
  468. * @addtogroup KernelObject
  469. */
  470. /**@{*/
  471. /*
  472. * kernel object macros
  473. */
  474. #define RT_OBJECT_FLAG_MODULE 0x80 /**< is module object. */
  475. /**
  476. * Base structure of Kernel object
  477. */
  478. struct rt_object
  479. {
  480. #if RT_NAME_MAX > 0
  481. char name[RT_NAME_MAX]; /**< dynamic name of kernel object */
  482. #else
  483. const char *name; /**< static name of kernel object */
  484. #endif /* RT_NAME_MAX > 0 */
  485. rt_uint8_t type; /**< type of kernel object */
  486. rt_uint8_t flag; /**< flag of kernel object */
  487. #ifdef RT_USING_MODULE
  488. void * module_id; /**< id of application module */
  489. #endif /* RT_USING_MODULE */
  490. #ifdef RT_USING_SMART
  491. rt_atomic_t lwp_ref_count; /**< ref count for lwp */
  492. #endif /* RT_USING_SMART */
  493. rt_list_t list; /**< list node of kernel object */
  494. };
  495. typedef struct rt_object *rt_object_t; /**< Type for kernel objects. */
  496. /**
  497. * The object type can be one of the follows with specific
  498. * macros enabled:
  499. * - Thread
  500. * - Semaphore
  501. * - Mutex
  502. * - Event
  503. * - MailBox
  504. * - MessageQueue
  505. * - MemHeap
  506. * - MemPool
  507. * - Device
  508. * - Timer
  509. * - Module
  510. * - Unknown
  511. * - Static
  512. */
  513. enum rt_object_class_type
  514. {
  515. RT_Object_Class_Null = 0x00, /**< The object is not used. */
  516. RT_Object_Class_Thread = 0x01, /**< The object is a thread. */
  517. RT_Object_Class_Semaphore = 0x02, /**< The object is a semaphore. */
  518. RT_Object_Class_Mutex = 0x03, /**< The object is a mutex. */
  519. RT_Object_Class_Event = 0x04, /**< The object is a event. */
  520. RT_Object_Class_MailBox = 0x05, /**< The object is a mail box. */
  521. RT_Object_Class_MessageQueue = 0x06, /**< The object is a message queue. */
  522. RT_Object_Class_MemHeap = 0x07, /**< The object is a memory heap. */
  523. RT_Object_Class_MemPool = 0x08, /**< The object is a memory pool. */
  524. RT_Object_Class_Device = 0x09, /**< The object is a device. */
  525. RT_Object_Class_Timer = 0x0a, /**< The object is a timer. */
  526. RT_Object_Class_Module = 0x0b, /**< The object is a module. */
  527. RT_Object_Class_Memory = 0x0c, /**< The object is a memory. */
  528. RT_Object_Class_Channel = 0x0d, /**< The object is a channel */
  529. RT_Object_Class_Custom = 0x0e, /**< The object is a custom object */
  530. RT_Object_Class_Unknown = 0x0f, /**< The object is unknown. */
  531. RT_Object_Class_Static = 0x80 /**< The object is a static object. */
  532. };
  533. /**
  534. * The information of the kernel object
  535. */
  536. struct rt_object_information
  537. {
  538. enum rt_object_class_type type; /**< object class type */
  539. rt_list_t object_list; /**< object list */
  540. rt_size_t object_size; /**< object size */
  541. struct rt_spinlock spinlock;
  542. };
  543. /**
  544. * The hook function call macro
  545. */
  546. #ifndef RT_USING_HOOK
  547. #define RT_OBJECT_HOOK_CALL(func, argv)
  548. #else
  549. /**
  550. * @brief Add hook point in the routines
  551. * @note Usage:
  552. * void foo() {
  553. * do_something();
  554. *
  555. * RT_OBJECT_HOOK_CALL(foo);
  556. *
  557. * do_other_things();
  558. * }
  559. */
  560. #define _RT_OBJECT_HOOK_CALL(func, argv) __ON_HOOK_ARGS(func, argv)
  561. #define RT_OBJECT_HOOK_CALL(func, argv) _RT_OBJECT_HOOK_CALL(func, argv)
  562. #ifdef RT_HOOK_USING_FUNC_PTR
  563. #define __ON_HOOK_ARGS(__hook, argv) do {if ((__hook) != RT_NULL) __hook argv; } while (0)
  564. #else
  565. #define __ON_HOOK_ARGS(__hook, argv)
  566. #endif /* RT_HOOK_USING_FUNC_PTR */
  567. #endif /* RT_USING_HOOK */
  568. #ifdef RT_USING_HOOKLIST
  569. /**
  570. * @brief Add declaration for hook list types.
  571. *
  572. * @note Usage:
  573. * This is typically used in your header. In foo.h using this like:
  574. *
  575. * ```foo.h
  576. * typedef void (*bar_hook_proto_t)(arguments...);
  577. * RT_OBJECT_HOOKLIST_DECLARE(bar_hook_proto_t, bar_myhook);
  578. * ```
  579. */
  580. #define RT_OBJECT_HOOKLIST_DECLARE(handler_type, name) \
  581. typedef struct name##_hooklistnode \
  582. { \
  583. handler_type handler; \
  584. rt_list_t list_node; \
  585. } *name##_hooklistnode_t; \
  586. extern volatile rt_ubase_t name##_nested; \
  587. void name##_sethook(name##_hooklistnode_t node); \
  588. void name##_rmhook(name##_hooklistnode_t node)
  589. /**
  590. * @brief Add declaration for hook list node.
  591. *
  592. * @note Usage
  593. * You can add a hook like this.
  594. *
  595. * ```addhook.c
  596. * void myhook(arguments...) { do_something(); }
  597. * RT_OBJECT_HOOKLIST_DEFINE_NODE(bar_myhook, myhook_node, myhook);
  598. *
  599. * void addhook(void)
  600. * {
  601. * bar_myhook_sethook(myhook);
  602. * }
  603. * ```
  604. *
  605. * BTW, you can also find examples codes under
  606. * `examples/utest/testcases/kernel/hooklist_tc.c`.
  607. */
  608. #define RT_OBJECT_HOOKLIST_DEFINE_NODE(hookname, nodename, hooker_handler) \
  609. struct hookname##_hooklistnode nodename = { \
  610. .handler = hooker_handler, \
  611. .list_node = RT_LIST_OBJECT_INIT(nodename.list_node), \
  612. };
  613. /**
  614. * @note Usage
  615. * Add this macro to the source file where your hook point is inserted.
  616. */
  617. #define RT_OBJECT_HOOKLIST_DEFINE(name) \
  618. static rt_list_t name##_hooklist = RT_LIST_OBJECT_INIT(name##_hooklist); \
  619. static struct rt_spinlock name##lock = RT_SPINLOCK_INIT; \
  620. volatile rt_ubase_t name##_nested = 0; \
  621. void name##_sethook(name##_hooklistnode_t node) \
  622. { \
  623. rt_ubase_t level = rt_spin_lock_irqsave(&name##lock); \
  624. while (name##_nested) \
  625. { \
  626. rt_spin_unlock_irqrestore(&name##lock, level); \
  627. level = rt_spin_lock_irqsave(&name##lock); \
  628. } \
  629. rt_list_insert_before(&name##_hooklist, &node->list_node); \
  630. rt_spin_unlock_irqrestore(&name##lock, level); \
  631. } \
  632. void name##_rmhook(name##_hooklistnode_t node) \
  633. { \
  634. rt_ubase_t level = rt_spin_lock_irqsave(&name##lock); \
  635. while (name##_nested) \
  636. { \
  637. rt_spin_unlock_irqrestore(&name##lock, level); \
  638. level = rt_spin_lock_irqsave(&name##lock); \
  639. } \
  640. rt_list_remove(&node->list_node); \
  641. rt_spin_unlock_irqrestore(&name##lock, level); \
  642. }
  643. /**
  644. * @brief Add hook list point in the routines. Multiple hookers in the list will
  645. * be called one by one starting from head node.
  646. *
  647. * @note Usage:
  648. * void foo() {
  649. * do_something();
  650. *
  651. * RT_OBJECT_HOOKLIST_CALL(foo);
  652. *
  653. * do_other_things();
  654. * }
  655. */
  656. #define _RT_OBJECT_HOOKLIST_CALL(nodetype, nested, list, lock, argv) \
  657. do \
  658. { \
  659. nodetype iter; \
  660. rt_ubase_t level = rt_spin_lock_irqsave(&lock); \
  661. nested += 1; \
  662. rt_spin_unlock_irqrestore(&lock, level); \
  663. if (!rt_list_isempty(&list)) \
  664. { \
  665. rt_list_for_each_entry(iter, &list, list_node) \
  666. { \
  667. iter->handler argv; \
  668. } \
  669. } \
  670. level = rt_spin_lock_irqsave(&lock); \
  671. nested -= 1; \
  672. rt_spin_unlock_irqrestore(&lock, level); \
  673. } while (0)
  674. #define RT_OBJECT_HOOKLIST_CALL(name, argv) \
  675. _RT_OBJECT_HOOKLIST_CALL(name##_hooklistnode_t, name##_nested, \
  676. name##_hooklist, name##lock, argv)
  677. #else
  678. #define RT_OBJECT_HOOKLIST_DECLARE(handler_type, name)
  679. #define RT_OBJECT_HOOKLIST_DEFINE_NODE(hookname, nodename, hooker_handler)
  680. #define RT_OBJECT_HOOKLIST_DEFINE(name)
  681. #define RT_OBJECT_HOOKLIST_CALL(name, argv)
  682. #endif /* RT_USING_HOOKLIST */
  683. /**@}*/
  684. /**
  685. * @addtogroup Clock
  686. */
  687. /**@{*/
  688. /**
  689. * clock & timer macros
  690. */
  691. #define RT_TIMER_FLAG_DEACTIVATED 0x0 /**< timer is deactive */
  692. #define RT_TIMER_FLAG_ACTIVATED 0x1 /**< timer is active */
  693. #define RT_TIMER_FLAG_ONE_SHOT 0x0 /**< one shot timer */
  694. #define RT_TIMER_FLAG_PERIODIC 0x2 /**< periodic timer */
  695. #define RT_TIMER_FLAG_HARD_TIMER 0x0 /**< hard timer,the timer's callback function will be called in tick isr. */
  696. #define RT_TIMER_FLAG_SOFT_TIMER 0x4 /**< soft timer,the timer's callback function will be called in timer thread. */
  697. #define RT_TIMER_CTRL_SET_TIME 0x0 /**< set timer control command */
  698. #define RT_TIMER_CTRL_GET_TIME 0x1 /**< get timer control command */
  699. #define RT_TIMER_CTRL_SET_ONESHOT 0x2 /**< change timer to one shot */
  700. #define RT_TIMER_CTRL_SET_PERIODIC 0x3 /**< change timer to periodic */
  701. #define RT_TIMER_CTRL_GET_STATE 0x4 /**< get timer run state active or deactive*/
  702. #define RT_TIMER_CTRL_GET_REMAIN_TIME 0x5 /**< get the remaining hang time */
  703. #define RT_TIMER_CTRL_GET_FUNC 0x6 /**< get timer timeout func */
  704. #define RT_TIMER_CTRL_SET_FUNC 0x7 /**< set timer timeout func */
  705. #define RT_TIMER_CTRL_GET_PARM 0x8 /**< get timer parameter */
  706. #define RT_TIMER_CTRL_SET_PARM 0x9 /**< get timer parameter */
  707. #ifndef RT_TIMER_SKIP_LIST_LEVEL
  708. #define RT_TIMER_SKIP_LIST_LEVEL 1
  709. #endif
  710. /* 1 or 3 */
  711. #ifndef RT_TIMER_SKIP_LIST_MASK
  712. #define RT_TIMER_SKIP_LIST_MASK 0x3 /**< Timer skips the list mask */
  713. #endif
  714. /**
  715. * timer structure
  716. */
  717. struct rt_timer
  718. {
  719. struct rt_object parent; /**< inherit from rt_object */
  720. rt_list_t row[RT_TIMER_SKIP_LIST_LEVEL];
  721. void (*timeout_func)(void *parameter); /**< timeout function */
  722. void *parameter; /**< timeout function's parameter */
  723. rt_tick_t init_tick; /**< timer timeout tick */
  724. rt_tick_t timeout_tick; /**< timeout tick */
  725. };
  726. typedef struct rt_timer *rt_timer_t;
  727. /**@}*/
  728. /**
  729. * @addtogroup Signal
  730. */
  731. /**@{*/
  732. #ifdef RT_USING_SIGNALS
  733. #define RT_SIG_MAX 32
  734. typedef unsigned long rt_sigset_t;
  735. typedef siginfo_t rt_siginfo_t;
  736. typedef void (*rt_sighandler_t)(int signo);
  737. #endif /* RT_USING_SIGNALS */
  738. /**@}*/
  739. /**
  740. * @addtogroup Thread
  741. */
  742. /**@{*/
  743. /*
  744. * Thread
  745. */
  746. /*
  747. * thread state definitions
  748. */
  749. #define RT_THREAD_INIT 0x00 /**< Initialized status */
  750. #define RT_THREAD_CLOSE 0x01 /**< Closed status */
  751. #define RT_THREAD_READY 0x02 /**< Ready status */
  752. #define RT_THREAD_RUNNING 0x03 /**< Running status */
  753. /*
  754. * for rt_thread_suspend_with_flag()
  755. */
  756. enum
  757. {
  758. RT_INTERRUPTIBLE = 0,
  759. RT_KILLABLE,
  760. RT_UNINTERRUPTIBLE,
  761. };
  762. #define RT_THREAD_SUSPEND_MASK 0x04
  763. #define RT_SIGNAL_COMMON_WAKEUP_MASK 0x02
  764. #define RT_SIGNAL_KILL_WAKEUP_MASK 0x01
  765. #define RT_THREAD_SUSPEND_INTERRUPTIBLE (RT_THREAD_SUSPEND_MASK) /**< Suspend interruptable 0x4 */
  766. #define RT_THREAD_SUSPEND RT_THREAD_SUSPEND_INTERRUPTIBLE
  767. #define RT_THREAD_SUSPEND_KILLABLE (RT_THREAD_SUSPEND_MASK | RT_SIGNAL_COMMON_WAKEUP_MASK) /**< Suspend with killable 0x6 */
  768. #define RT_THREAD_SUSPEND_UNINTERRUPTIBLE (RT_THREAD_SUSPEND_MASK | RT_SIGNAL_COMMON_WAKEUP_MASK | RT_SIGNAL_KILL_WAKEUP_MASK) /**< Suspend with uninterruptable 0x7 */
  769. #define RT_THREAD_STAT_MASK 0x07
  770. #define RT_THREAD_STAT_YIELD 0x08 /**< indicate whether remaining_tick has been reloaded since last schedule */
  771. #define RT_THREAD_STAT_YIELD_MASK RT_THREAD_STAT_YIELD
  772. #define RT_THREAD_STAT_SIGNAL 0x10 /**< task hold signals */
  773. #define RT_THREAD_STAT_SIGNAL_READY (RT_THREAD_STAT_SIGNAL | RT_THREAD_READY)
  774. #define RT_THREAD_STAT_SIGNAL_WAIT 0x20 /**< task is waiting for signals */
  775. #define RT_THREAD_STAT_SIGNAL_PENDING 0x40 /**< signals is held and it has not been procressed */
  776. #define RT_THREAD_STAT_SIGNAL_MASK 0xf0
  777. /**
  778. * thread control command definitions
  779. */
  780. #define RT_THREAD_CTRL_STARTUP 0x00 /**< Startup thread. */
  781. #define RT_THREAD_CTRL_CLOSE 0x01 /**< Close thread. */
  782. #define RT_THREAD_CTRL_CHANGE_PRIORITY 0x02 /**< Change thread priority. */
  783. #define RT_THREAD_CTRL_INFO 0x03 /**< Get thread information. */
  784. #define RT_THREAD_CTRL_BIND_CPU 0x04 /**< Set thread bind cpu. */
  785. #ifdef RT_USING_SMP
  786. #define RT_CPU_DETACHED RT_CPUS_NR /**< The thread not running on cpu. */
  787. #define RT_CPU_MASK ((1 << RT_CPUS_NR) - 1) /**< All CPUs mask bit. */
  788. #ifndef RT_SCHEDULE_IPI
  789. #define RT_SCHEDULE_IPI 0
  790. #endif /* RT_SCHEDULE_IPI */
  791. #ifndef RT_STOP_IPI
  792. #define RT_STOP_IPI 1
  793. #endif /* RT_STOP_IPI */
  794. struct rt_cpu_usage_stats
  795. {
  796. rt_uint64_t user;
  797. rt_uint64_t system;
  798. rt_uint64_t irq;
  799. rt_uint64_t idle;
  800. };
  801. typedef struct rt_cpu_usage_stats *rt_cpu_usage_stats_t;
  802. /**
  803. * CPUs definitions
  804. *
  805. */
  806. struct rt_cpu
  807. {
  808. struct rt_thread *current_thread;
  809. struct rt_thread *idle_thread;
  810. rt_atomic_t irq_nest;
  811. rt_uint8_t irq_switch_flag;
  812. rt_uint8_t current_priority;
  813. rt_list_t priority_table[RT_THREAD_PRIORITY_MAX];
  814. #if RT_THREAD_PRIORITY_MAX > 32
  815. rt_uint32_t priority_group;
  816. rt_uint8_t ready_table[32];
  817. #else
  818. rt_uint32_t priority_group;
  819. #endif /* RT_THREAD_PRIORITY_MAX > 32 */
  820. rt_atomic_t tick;
  821. struct rt_spinlock spinlock;
  822. #ifdef RT_USING_SMART
  823. struct rt_cpu_usage_stats cpu_stat;
  824. #endif
  825. };
  826. typedef struct rt_cpu *rt_cpu_t;
  827. #endif /* RT_USING_SMP */
  828. struct rt_thread;
  829. #ifdef RT_USING_SMART
  830. typedef rt_err_t (*rt_wakeup_func_t)(void *object, struct rt_thread *thread);
  831. struct rt_wakeup
  832. {
  833. rt_wakeup_func_t func;
  834. void *user_data;
  835. };
  836. #define _LWP_NSIG 64
  837. #ifdef ARCH_CPU_64BIT
  838. #define _LWP_NSIG_BPW 64
  839. #else
  840. #define _LWP_NSIG_BPW 32
  841. #endif
  842. #define _LWP_NSIG_WORDS (RT_ALIGN(_LWP_NSIG, _LWP_NSIG_BPW) / _LWP_NSIG_BPW)
  843. typedef void (*lwp_sighandler_t)(int);
  844. typedef void (*lwp_sigaction_t)(int signo, siginfo_t *info, void *context);
  845. typedef struct {
  846. unsigned long sig[_LWP_NSIG_WORDS];
  847. } lwp_sigset_t;
  848. #if _LWP_NSIG <= 64
  849. #define lwp_sigmask(signo) ((lwp_sigset_t){.sig = {[0] = ((long)(1u << ((signo)-1)))}})
  850. #define lwp_sigset_init(mask) ((lwp_sigset_t){.sig = {[0] = (long)(mask)}})
  851. #endif /* _LWP_NSIG <= 64 */
  852. struct lwp_sigaction {
  853. union {
  854. void (*_sa_handler)(int);
  855. void (*_sa_sigaction)(int, siginfo_t *, void *);
  856. } __sa_handler;
  857. lwp_sigset_t sa_mask;
  858. int sa_flags;
  859. void (*sa_restorer)(void);
  860. };
  861. typedef struct lwp_siginfo {
  862. rt_list_t node;
  863. struct {
  864. int signo;
  865. int code;
  866. long value;
  867. int from_tid;
  868. pid_t from_pid;
  869. } ksiginfo;
  870. } *lwp_siginfo_t;
  871. typedef struct lwp_sigqueue {
  872. rt_list_t siginfo_list;
  873. lwp_sigset_t sigset_pending;
  874. } *lwp_sigqueue_t;
  875. struct lwp_thread_signal {
  876. lwp_sigset_t sigset_mask;
  877. struct lwp_sigqueue sig_queue;
  878. };
  879. struct rt_user_context
  880. {
  881. void *sp;
  882. void *pc;
  883. void *flag;
  884. void *ctx;
  885. };
  886. #endif /* RT_USING_SMART */
  887. typedef void (*rt_thread_cleanup_t)(struct rt_thread *tid);
  888. /**
  889. * Thread structure
  890. */
  891. struct rt_thread
  892. {
  893. struct rt_object parent;
  894. rt_list_t tlist; /**< the thread list */
  895. rt_list_t tlist_schedule; /**< the thread list */
  896. /* stack point and entry */
  897. void *sp; /**< stack point */
  898. void *entry; /**< entry */
  899. void *parameter; /**< parameter */
  900. void *stack_addr; /**< stack address */
  901. rt_uint32_t stack_size; /**< stack size */
  902. /* error code */
  903. rt_err_t error; /**< error code */
  904. rt_uint8_t stat; /**< thread status */
  905. #ifdef RT_USING_SMP
  906. rt_uint8_t bind_cpu; /**< thread is bind to cpu */
  907. rt_uint8_t oncpu; /**< process on cpu */
  908. rt_atomic_t cpus_lock_nest; /**< cpus lock count */
  909. rt_atomic_t critical_lock_nest; /**< critical lock count */
  910. #endif /*RT_USING_SMP*/
  911. /* priority */
  912. rt_uint8_t current_priority; /**< current priority */
  913. rt_uint8_t init_priority; /**< initialized priority */
  914. #if RT_THREAD_PRIORITY_MAX > 32
  915. rt_uint8_t number;
  916. rt_uint8_t high_mask;
  917. #endif /* RT_THREAD_PRIORITY_MAX > 32 */
  918. rt_uint32_t number_mask; /**< priority number mask */
  919. #ifdef RT_USING_MUTEX
  920. /* object for IPC */
  921. rt_list_t taken_object_list;
  922. rt_object_t pending_object;
  923. #endif /* RT_USING_MUTEX */
  924. #ifdef RT_USING_EVENT
  925. /* thread event */
  926. rt_uint32_t event_set;
  927. rt_uint8_t event_info;
  928. #endif /* RT_USING_EVENT */
  929. #ifdef RT_USING_SIGNALS
  930. rt_sigset_t sig_pending; /**< the pending signals */
  931. rt_sigset_t sig_mask; /**< the mask bits of signal */
  932. #ifndef RT_USING_SMP
  933. void *sig_ret; /**< the return stack pointer from signal */
  934. #endif /* RT_USING_SMP */
  935. rt_sighandler_t *sig_vectors; /**< vectors of signal handler */
  936. void *si_list; /**< the signal infor list */
  937. #endif /* RT_USING_SIGNALS */
  938. rt_atomic_t init_tick; /**< thread's initialized tick */
  939. rt_atomic_t remaining_tick; /**< remaining tick */
  940. #ifdef RT_USING_CPU_USAGE
  941. rt_uint64_t duration_tick; /**< cpu usage tick */
  942. #endif /* RT_USING_CPU_USAGE */
  943. #ifdef RT_USING_PTHREADS
  944. void *pthread_data; /**< the handle of pthread data, adapt 32/64bit */
  945. #endif /* RT_USING_PTHREADS */
  946. struct rt_timer thread_timer; /**< built-in thread timer */
  947. rt_thread_cleanup_t cleanup; /**< cleanup function when thread exit */
  948. /* light weight process if present */
  949. #ifdef RT_USING_SMART
  950. void *msg_ret; /**< the return msg */
  951. void *lwp; /**< the lwp reference */
  952. /* for user create */
  953. void *user_entry;
  954. void *user_stack;
  955. rt_uint32_t user_stack_size;
  956. rt_uint32_t *kernel_sp; /**< kernel stack point */
  957. rt_list_t sibling; /**< next thread of same process */
  958. struct lwp_thread_signal signal; /**< lwp signal for user-space thread */
  959. struct rt_user_context user_ctx; /**< user space context */
  960. struct rt_wakeup wakeup; /**< wakeup data */
  961. int exit_request; /**< pending exit request of thread */
  962. int tid; /**< thread ID used by process */
  963. int tid_ref_count; /**< reference of tid */
  964. void *susp_recycler; /**< suspended recycler on this thread */
  965. rt_uint64_t user_time;
  966. rt_uint64_t system_time;
  967. #ifndef ARCH_MM_MMU
  968. lwp_sighandler_t signal_handler[32];
  969. #else
  970. int step_exec;
  971. int debug_attach_req;
  972. int debug_ret_user;
  973. int debug_suspend;
  974. struct rt_hw_exp_stack *regs;
  975. void *thread_idr; /** lwp thread indicator */
  976. int *clear_child_tid;
  977. #endif /* ARCH_MM_MMU */
  978. #endif /* RT_USING_SMART */
  979. #ifdef RT_USING_MEM_PROTECTION
  980. void *mem_regions;
  981. #ifdef RT_USING_HW_STACK_GUARD
  982. void *stack_buf;
  983. #endif /* RT_USING_HW_STACK_GUARD */
  984. #endif /* RT_USING_MEM_PROTECTION */
  985. struct rt_spinlock spinlock;
  986. rt_ubase_t user_data; /**< private user data beyond this thread */
  987. };
  988. typedef struct rt_thread *rt_thread_t;
  989. #ifdef RT_USING_SMART
  990. #define IS_USER_MODE(t) ((t)->user_ctx.ctx == RT_NULL)
  991. #endif /* RT_USING_SMART */
  992. /**@}*/
  993. /**
  994. * @addtogroup IPC
  995. */
  996. /**@{*/
  997. /**
  998. * IPC flags and control command definitions
  999. */
  1000. #define RT_IPC_FLAG_FIFO 0x00 /**< FIFOed IPC. @ref IPC. */
  1001. #define RT_IPC_FLAG_PRIO 0x01 /**< PRIOed IPC. @ref IPC. */
  1002. #define RT_IPC_CMD_UNKNOWN 0x00 /**< unknown IPC command */
  1003. #define RT_IPC_CMD_RESET 0x01 /**< reset IPC object */
  1004. #define RT_IPC_CMD_GET_STATE 0x02 /**< get the state of IPC object */
  1005. #define RT_IPC_CMD_SET_VLIMIT 0x03 /**< set max limit value of IPC value */
  1006. #define RT_WAITING_FOREVER -1 /**< Block forever until get resource. */
  1007. #define RT_WAITING_NO 0 /**< Non-block. */
  1008. /**
  1009. * Base structure of IPC object
  1010. */
  1011. struct rt_ipc_object
  1012. {
  1013. struct rt_object parent; /**< inherit from rt_object */
  1014. rt_list_t suspend_thread; /**< threads pended on this resource */
  1015. };
  1016. #ifdef RT_USING_SEMAPHORE
  1017. /**
  1018. * Semaphore structure
  1019. */
  1020. struct rt_semaphore
  1021. {
  1022. struct rt_ipc_object parent; /**< inherit from ipc_object */
  1023. rt_uint16_t value; /**< value of semaphore. */
  1024. rt_uint16_t max_value;
  1025. struct rt_spinlock spinlock;
  1026. };
  1027. typedef struct rt_semaphore *rt_sem_t;
  1028. #endif /* RT_USING_SEMAPHORE */
  1029. #ifdef RT_USING_MUTEX
  1030. /**
  1031. * Mutual exclusion (mutex) structure
  1032. */
  1033. struct rt_mutex
  1034. {
  1035. struct rt_ipc_object parent; /**< inherit from ipc_object */
  1036. rt_uint8_t ceiling_priority; /**< the priority ceiling of mutexe */
  1037. rt_uint8_t priority; /**< the maximal priority for pending thread */
  1038. rt_uint8_t hold; /**< numbers of thread hold the mutex */
  1039. rt_uint8_t reserved; /**< reserved field */
  1040. struct rt_thread *owner; /**< current owner of mutex */
  1041. rt_list_t taken_list; /**< the object list taken by thread */
  1042. struct rt_spinlock spinlock;
  1043. };
  1044. typedef struct rt_mutex *rt_mutex_t;
  1045. #endif /* RT_USING_MUTEX */
  1046. #ifdef RT_USING_EVENT
  1047. /**
  1048. * flag definitions in event
  1049. */
  1050. #define RT_EVENT_FLAG_AND 0x01 /**< logic and */
  1051. #define RT_EVENT_FLAG_OR 0x02 /**< logic or */
  1052. #define RT_EVENT_FLAG_CLEAR 0x04 /**< clear flag */
  1053. /*
  1054. * event structure
  1055. */
  1056. struct rt_event
  1057. {
  1058. struct rt_ipc_object parent; /**< inherit from ipc_object */
  1059. rt_uint32_t set; /**< event set */
  1060. struct rt_spinlock spinlock;
  1061. };
  1062. typedef struct rt_event *rt_event_t;
  1063. #endif /* RT_USING_EVENT */
  1064. #ifdef RT_USING_MAILBOX
  1065. /**
  1066. * mailbox structure
  1067. */
  1068. struct rt_mailbox
  1069. {
  1070. struct rt_ipc_object parent; /**< inherit from ipc_object */
  1071. rt_ubase_t *msg_pool; /**< start address of message buffer */
  1072. rt_uint16_t size; /**< size of message pool */
  1073. rt_uint16_t entry; /**< index of messages in msg_pool */
  1074. rt_uint16_t in_offset; /**< input offset of the message buffer */
  1075. rt_uint16_t out_offset; /**< output offset of the message buffer */
  1076. rt_list_t suspend_sender_thread; /**< sender thread suspended on this mailbox */
  1077. struct rt_spinlock spinlock;
  1078. };
  1079. typedef struct rt_mailbox *rt_mailbox_t;
  1080. #endif /* RT_USING_MAILBOX */
  1081. #ifdef RT_USING_MESSAGEQUEUE
  1082. /**
  1083. * message queue structure
  1084. */
  1085. struct rt_messagequeue
  1086. {
  1087. struct rt_ipc_object parent; /**< inherit from ipc_object */
  1088. void *msg_pool; /**< start address of message queue */
  1089. rt_uint16_t msg_size; /**< message size of each message */
  1090. rt_uint16_t max_msgs; /**< max number of messages */
  1091. rt_uint16_t entry; /**< index of messages in the queue */
  1092. void *msg_queue_head; /**< list head */
  1093. void *msg_queue_tail; /**< list tail */
  1094. void *msg_queue_free; /**< pointer indicated the free node of queue */
  1095. rt_list_t suspend_sender_thread; /**< sender thread suspended on this message queue */
  1096. struct rt_spinlock spinlock;
  1097. };
  1098. typedef struct rt_messagequeue *rt_mq_t;
  1099. #endif /* RT_USING_MESSAGEQUEUE */
  1100. /**@}*/
  1101. /**
  1102. * @addtogroup MM
  1103. */
  1104. /**@{*/
  1105. #ifdef RT_USING_HEAP
  1106. /*
  1107. * memory structure
  1108. */
  1109. struct rt_memory
  1110. {
  1111. struct rt_object parent; /**< inherit from rt_object */
  1112. const char * algorithm; /**< Memory management algorithm name */
  1113. rt_ubase_t address; /**< memory start address */
  1114. rt_size_t total; /**< memory size */
  1115. rt_size_t used; /**< size used */
  1116. rt_size_t max; /**< maximum usage */
  1117. };
  1118. typedef struct rt_memory *rt_mem_t;
  1119. #endif /* RT_USING_HEAP */
  1120. /*
  1121. * memory management
  1122. * heap & partition
  1123. */
  1124. #ifdef RT_USING_SMALL_MEM
  1125. typedef rt_mem_t rt_smem_t;
  1126. #endif /* RT_USING_SMALL_MEM */
  1127. #ifdef RT_USING_SLAB
  1128. typedef rt_mem_t rt_slab_t;
  1129. #endif /* RT_USING_SLAB */
  1130. #ifdef RT_USING_MEMHEAP
  1131. /**
  1132. * memory item on the heap
  1133. */
  1134. struct rt_memheap_item
  1135. {
  1136. rt_uint32_t magic; /**< magic number for memheap */
  1137. struct rt_memheap *pool_ptr; /**< point of pool */
  1138. struct rt_memheap_item *next; /**< next memheap item */
  1139. struct rt_memheap_item *prev; /**< prev memheap item */
  1140. struct rt_memheap_item *next_free; /**< next free memheap item */
  1141. struct rt_memheap_item *prev_free; /**< prev free memheap item */
  1142. #ifdef RT_USING_MEMTRACE
  1143. rt_uint8_t owner_thread_name[4]; /**< owner thread name */
  1144. #endif /* RT_USING_MEMTRACE */
  1145. };
  1146. /**
  1147. * Base structure of memory heap object
  1148. */
  1149. struct rt_memheap
  1150. {
  1151. struct rt_object parent; /**< inherit from rt_object */
  1152. void *start_addr; /**< pool start address and size */
  1153. rt_size_t pool_size; /**< pool size */
  1154. rt_size_t available_size; /**< available size */
  1155. rt_size_t max_used_size; /**< maximum allocated size */
  1156. struct rt_memheap_item *block_list; /**< used block list */
  1157. struct rt_memheap_item *free_list; /**< free block list */
  1158. struct rt_memheap_item free_header; /**< free block list header */
  1159. struct rt_semaphore lock; /**< semaphore lock */
  1160. rt_bool_t locked; /**< External lock mark */
  1161. };
  1162. #endif /* RT_USING_MEMHEAP */
  1163. #ifdef RT_USING_MEMPOOL
  1164. /**
  1165. * Base structure of Memory pool object
  1166. */
  1167. struct rt_mempool
  1168. {
  1169. struct rt_object parent; /**< inherit from rt_object */
  1170. void *start_address; /**< memory pool start */
  1171. rt_size_t size; /**< size of memory pool */
  1172. rt_size_t block_size; /**< size of memory blocks */
  1173. rt_uint8_t *block_list; /**< memory blocks list */
  1174. rt_size_t block_total_count; /**< numbers of memory block */
  1175. rt_size_t block_free_count; /**< numbers of free memory block */
  1176. rt_list_t suspend_thread; /**< threads pended on this resource */
  1177. struct rt_spinlock spinlock;
  1178. };
  1179. typedef struct rt_mempool *rt_mp_t;
  1180. #endif /* RT_USING_MEMPOOL */
  1181. /**@}*/
  1182. #ifdef RT_USING_DEVICE
  1183. /**
  1184. * @addtogroup Device
  1185. */
  1186. /**@{*/
  1187. /**
  1188. * device (I/O) class type
  1189. */
  1190. enum rt_device_class_type
  1191. {
  1192. RT_Device_Class_Char = 0, /**< character device */
  1193. RT_Device_Class_Block, /**< block device */
  1194. RT_Device_Class_NetIf, /**< net interface */
  1195. RT_Device_Class_MTD, /**< memory device */
  1196. RT_Device_Class_CAN, /**< CAN device */
  1197. RT_Device_Class_RTC, /**< RTC device */
  1198. RT_Device_Class_Sound, /**< Sound device */
  1199. RT_Device_Class_Graphic, /**< Graphic device */
  1200. RT_Device_Class_I2CBUS, /**< I2C bus device */
  1201. RT_Device_Class_USBDevice, /**< USB slave device */
  1202. RT_Device_Class_USBHost, /**< USB host bus */
  1203. RT_Device_Class_USBOTG, /**< USB OTG bus */
  1204. RT_Device_Class_SPIBUS, /**< SPI bus device */
  1205. RT_Device_Class_SPIDevice, /**< SPI device */
  1206. RT_Device_Class_SDIO, /**< SDIO bus device */
  1207. RT_Device_Class_PM, /**< PM pseudo device */
  1208. RT_Device_Class_Pipe, /**< Pipe device */
  1209. RT_Device_Class_Portal, /**< Portal device */
  1210. RT_Device_Class_Timer, /**< Timer device */
  1211. RT_Device_Class_Miscellaneous, /**< Miscellaneous device */
  1212. RT_Device_Class_Sensor, /**< Sensor device */
  1213. RT_Device_Class_Touch, /**< Touch device */
  1214. RT_Device_Class_PHY, /**< PHY device */
  1215. RT_Device_Class_Security, /**< Security device */
  1216. RT_Device_Class_WLAN, /**< WLAN device */
  1217. RT_Device_Class_Pin, /**< Pin device */
  1218. RT_Device_Class_ADC, /**< ADC device */
  1219. RT_Device_Class_DAC, /**< DAC device */
  1220. RT_Device_Class_WDT, /**< WDT device */
  1221. RT_Device_Class_PWM, /**< PWM device */
  1222. RT_Device_Class_Bus, /**< Bus device */
  1223. RT_Device_Class_Unknown /**< unknown device */
  1224. };
  1225. /**
  1226. * device flags definitions
  1227. */
  1228. #define RT_DEVICE_FLAG_DEACTIVATE 0x000 /**< device is not not initialized */
  1229. #define RT_DEVICE_FLAG_RDONLY 0x001 /**< read only */
  1230. #define RT_DEVICE_FLAG_WRONLY 0x002 /**< write only */
  1231. #define RT_DEVICE_FLAG_RDWR 0x003 /**< read and write */
  1232. #define RT_DEVICE_FLAG_REMOVABLE 0x004 /**< removable device */
  1233. #define RT_DEVICE_FLAG_STANDALONE 0x008 /**< standalone device */
  1234. #define RT_DEVICE_FLAG_ACTIVATED 0x010 /**< device is activated */
  1235. #define RT_DEVICE_FLAG_SUSPENDED 0x020 /**< device is suspended */
  1236. #define RT_DEVICE_FLAG_STREAM 0x040 /**< stream mode */
  1237. #define RT_DEVICE_FLAG_INT_RX 0x100 /**< INT mode on Rx */
  1238. #define RT_DEVICE_FLAG_DMA_RX 0x200 /**< DMA mode on Rx */
  1239. #define RT_DEVICE_FLAG_INT_TX 0x400 /**< INT mode on Tx */
  1240. #define RT_DEVICE_FLAG_DMA_TX 0x800 /**< DMA mode on Tx */
  1241. #define RT_DEVICE_OFLAG_CLOSE 0x000 /**< device is closed */
  1242. #define RT_DEVICE_OFLAG_RDONLY 0x001 /**< read only access */
  1243. #define RT_DEVICE_OFLAG_WRONLY 0x002 /**< write only access */
  1244. #define RT_DEVICE_OFLAG_RDWR 0x003 /**< read and write */
  1245. #define RT_DEVICE_OFLAG_OPEN 0x008 /**< device is opened */
  1246. #define RT_DEVICE_OFLAG_MASK 0xf0f /**< mask of open flag */
  1247. /**
  1248. * general device commands
  1249. * 0x01 - 0x1F general device control commands
  1250. * 0x20 - 0x3F udevice control commands
  1251. * 0x40 - special device control commands
  1252. */
  1253. #define RT_DEVICE_CTRL_RESUME 0x01 /**< resume device */
  1254. #define RT_DEVICE_CTRL_SUSPEND 0x02 /**< suspend device */
  1255. #define RT_DEVICE_CTRL_CONFIG 0x03 /**< configure device */
  1256. #define RT_DEVICE_CTRL_CLOSE 0x04 /**< close device */
  1257. #define RT_DEVICE_CTRL_NOTIFY_SET 0x05 /**< set notify func */
  1258. #define RT_DEVICE_CTRL_SET_INT 0x06 /**< set interrupt */
  1259. #define RT_DEVICE_CTRL_CLR_INT 0x07 /**< clear interrupt */
  1260. #define RT_DEVICE_CTRL_GET_INT 0x08 /**< get interrupt status */
  1261. #define RT_DEVICE_CTRL_CONSOLE_OFLAG 0x09 /**< get console open flag */
  1262. #define RT_DEVICE_CTRL_MASK 0x1f /**< mask for contrl commands */
  1263. /**
  1264. * device control
  1265. */
  1266. #define RT_DEVICE_CTRL_BASE(Type) ((RT_Device_Class_##Type + 1) * 0x100)
  1267. typedef struct rt_driver *rt_driver_t;
  1268. typedef struct rt_device *rt_device_t;
  1269. #ifdef RT_USING_DEVICE_OPS
  1270. /**
  1271. * operations set for device object
  1272. */
  1273. struct rt_device_ops
  1274. {
  1275. /* common device interface */
  1276. rt_err_t (*init) (rt_device_t dev);
  1277. rt_err_t (*open) (rt_device_t dev, rt_uint16_t oflag);
  1278. rt_err_t (*close) (rt_device_t dev);
  1279. rt_ssize_t (*read) (rt_device_t dev, rt_off_t pos, void *buffer, rt_size_t size);
  1280. rt_ssize_t (*write) (rt_device_t dev, rt_off_t pos, const void *buffer, rt_size_t size);
  1281. rt_err_t (*control)(rt_device_t dev, int cmd, void *args);
  1282. };
  1283. #endif /* RT_USING_DEVICE_OPS */
  1284. /**
  1285. * WaitQueue structure
  1286. */
  1287. struct rt_wqueue
  1288. {
  1289. rt_uint32_t flag;
  1290. rt_list_t waiting_list;
  1291. struct rt_spinlock spinlock;
  1292. };
  1293. typedef struct rt_wqueue rt_wqueue_t;
  1294. #ifdef RT_USING_DM
  1295. struct rt_driver;
  1296. struct rt_bus;
  1297. #endif /* RT_USING_DM */
  1298. /**
  1299. * Device structure
  1300. */
  1301. struct rt_device
  1302. {
  1303. struct rt_object parent; /**< inherit from rt_object */
  1304. #ifdef RT_USING_DM
  1305. struct rt_bus *bus; /**< the bus mounting to */
  1306. rt_list_t node; /**< to mount on bus */
  1307. struct rt_driver *drv; /**< driver for powering the device */
  1308. #ifdef RT_USING_OFW
  1309. void *ofw_node; /**< ofw node get from device tree */
  1310. #endif /* RT_USING_OFW */
  1311. #endif /* RT_USING_DM */
  1312. enum rt_device_class_type type; /**< device type */
  1313. rt_uint16_t flag; /**< device flag */
  1314. rt_uint16_t open_flag; /**< device open flag */
  1315. rt_uint8_t ref_count; /**< reference count */
  1316. rt_uint8_t device_id; /**< 0 - 255 */
  1317. /* device call back */
  1318. rt_err_t (*rx_indicate)(rt_device_t dev, rt_size_t size);
  1319. rt_err_t (*tx_complete)(rt_device_t dev, void *buffer);
  1320. #ifdef RT_USING_DEVICE_OPS
  1321. const struct rt_device_ops *ops;
  1322. #else
  1323. /* common device interface */
  1324. rt_err_t (*init) (rt_device_t dev);
  1325. rt_err_t (*open) (rt_device_t dev, rt_uint16_t oflag);
  1326. rt_err_t (*close) (rt_device_t dev);
  1327. rt_ssize_t (*read) (rt_device_t dev, rt_off_t pos, void *buffer, rt_size_t size);
  1328. rt_ssize_t (*write) (rt_device_t dev, rt_off_t pos, const void *buffer, rt_size_t size);
  1329. rt_err_t (*control)(rt_device_t dev, int cmd, void *args);
  1330. #endif /* RT_USING_DEVICE_OPS */
  1331. #ifdef RT_USING_POSIX_DEVIO
  1332. const struct dfs_file_ops *fops;
  1333. struct rt_wqueue wait_queue;
  1334. #endif /* RT_USING_POSIX_DEVIO */
  1335. void *user_data; /**< device private data */
  1336. };
  1337. /**
  1338. * Notify structure
  1339. */
  1340. struct rt_device_notify
  1341. {
  1342. void (*notify)(rt_device_t dev);
  1343. struct rt_device *dev;
  1344. };
  1345. #ifdef RT_USING_SMART
  1346. struct rt_channel
  1347. {
  1348. struct rt_ipc_object parent; /**< inherit from object */
  1349. struct rt_thread *reply; /**< the thread will be reply */
  1350. struct rt_spinlock slock; /**< spinlock of this channel */
  1351. rt_list_t wait_msg; /**< the wait queue of sender msg */
  1352. rt_list_t wait_thread; /**< the wait queue of sender thread */
  1353. rt_wqueue_t reader_queue; /**< channel poll queue */
  1354. rt_uint8_t stat; /**< the status of this channel */
  1355. rt_ubase_t ref;
  1356. };
  1357. typedef struct rt_channel *rt_channel_t;
  1358. #endif /* RT_USING_SMART */
  1359. /**@}*/
  1360. #endif /* RT_USING_DEVICE */
  1361. #ifdef __cplusplus
  1362. }
  1363. #endif
  1364. #ifdef __cplusplus
  1365. /* RT-Thread definitions for C++ */
  1366. namespace rtthread {
  1367. enum TICK_WAIT {
  1368. WAIT_NONE = 0,
  1369. WAIT_FOREVER = -1,
  1370. };
  1371. }
  1372. #endif /* __cplusplus */
  1373. #endif /* __RT_DEF_H__ */