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  1. /**
  2. ******************************************************************************
  3. * @file stm32f4xx_hal_uart.h
  4. * @author MCD Application Team
  5. * @brief Header file of UART HAL module.
  6. ******************************************************************************
  7. * @attention
  8. *
  9. * Copyright (c) 2016 STMicroelectronics.
  10. * All rights reserved.
  11. *
  12. * This software is licensed under terms that can be found in the LICENSE file
  13. * in the root directory of this software component.
  14. * If no LICENSE file comes with this software, it is provided AS-IS.
  15. *
  16. ******************************************************************************
  17. */
  18. /* Define to prevent recursive inclusion -------------------------------------*/
  19. #ifndef __STM32F4xx_HAL_UART_H
  20. #define __STM32F4xx_HAL_UART_H
  21. #ifdef __cplusplus
  22. extern "C" {
  23. #endif
  24. /* Includes ------------------------------------------------------------------*/
  25. #include "stm32f4xx_hal_def.h"
  26. /** @addtogroup STM32F4xx_HAL_Driver
  27. * @{
  28. */
  29. /** @addtogroup UART
  30. * @{
  31. */
  32. /* Exported types ------------------------------------------------------------*/
  33. /** @defgroup UART_Exported_Types UART Exported Types
  34. * @{
  35. */
  36. /**
  37. * @brief UART Init Structure definition
  38. */
  39. typedef struct
  40. {
  41. uint32_t BaudRate; /*!< This member configures the UART communication baud rate.
  42. The baud rate is computed using the following formula:
  43. - IntegerDivider = ((PCLKx) / (8 * (OVR8+1) * (huart->Init.BaudRate)))
  44. - FractionalDivider = ((IntegerDivider - ((uint32_t) IntegerDivider)) * 8 * (OVR8+1)) + 0.5
  45. Where OVR8 is the "oversampling by 8 mode" configuration bit in the CR1 register. */
  46. uint32_t WordLength; /*!< Specifies the number of data bits transmitted or received in a frame.
  47. This parameter can be a value of @ref UART_Word_Length */
  48. uint32_t StopBits; /*!< Specifies the number of stop bits transmitted.
  49. This parameter can be a value of @ref UART_Stop_Bits */
  50. uint32_t Parity; /*!< Specifies the parity mode.
  51. This parameter can be a value of @ref UART_Parity
  52. @note When parity is enabled, the computed parity is inserted
  53. at the MSB position of the transmitted data (9th bit when
  54. the word length is set to 9 data bits; 8th bit when the
  55. word length is set to 8 data bits). */
  56. uint32_t Mode; /*!< Specifies whether the Receive or Transmit mode is enabled or disabled.
  57. This parameter can be a value of @ref UART_Mode */
  58. uint32_t HwFlowCtl; /*!< Specifies whether the hardware flow control mode is enabled or disabled.
  59. This parameter can be a value of @ref UART_Hardware_Flow_Control */
  60. uint32_t OverSampling; /*!< Specifies whether the Over sampling 8 is enabled or disabled, to achieve higher speed (up to fPCLK/8).
  61. This parameter can be a value of @ref UART_Over_Sampling */
  62. } UART_InitTypeDef;
  63. /**
  64. * @brief HAL UART State structures definition
  65. * @note HAL UART State value is a combination of 2 different substates: gState and RxState.
  66. * - gState contains UART state information related to global Handle management
  67. * and also information related to Tx operations.
  68. * gState value coding follow below described bitmap :
  69. * b7-b6 Error information
  70. * 00 : No Error
  71. * 01 : (Not Used)
  72. * 10 : Timeout
  73. * 11 : Error
  74. * b5 Peripheral initialization status
  75. * 0 : Reset (Peripheral not initialized)
  76. * 1 : Init done (Peripheral initialized. HAL UART Init function already called)
  77. * b4-b3 (not used)
  78. * xx : Should be set to 00
  79. * b2 Intrinsic process state
  80. * 0 : Ready
  81. * 1 : Busy (Peripheral busy with some configuration or internal operations)
  82. * b1 (not used)
  83. * x : Should be set to 0
  84. * b0 Tx state
  85. * 0 : Ready (no Tx operation ongoing)
  86. * 1 : Busy (Tx operation ongoing)
  87. * - RxState contains information related to Rx operations.
  88. * RxState value coding follow below described bitmap :
  89. * b7-b6 (not used)
  90. * xx : Should be set to 00
  91. * b5 Peripheral initialization status
  92. * 0 : Reset (Peripheral not initialized)
  93. * 1 : Init done (Peripheral initialized)
  94. * b4-b2 (not used)
  95. * xxx : Should be set to 000
  96. * b1 Rx state
  97. * 0 : Ready (no Rx operation ongoing)
  98. * 1 : Busy (Rx operation ongoing)
  99. * b0 (not used)
  100. * x : Should be set to 0.
  101. */
  102. typedef enum
  103. {
  104. HAL_UART_STATE_RESET = 0x00U, /*!< Peripheral is not yet Initialized
  105. Value is allowed for gState and RxState */
  106. HAL_UART_STATE_READY = 0x20U, /*!< Peripheral Initialized and ready for use
  107. Value is allowed for gState and RxState */
  108. HAL_UART_STATE_BUSY = 0x24U, /*!< an internal process is ongoing
  109. Value is allowed for gState only */
  110. HAL_UART_STATE_BUSY_TX = 0x21U, /*!< Data Transmission process is ongoing
  111. Value is allowed for gState only */
  112. HAL_UART_STATE_BUSY_RX = 0x22U, /*!< Data Reception process is ongoing
  113. Value is allowed for RxState only */
  114. HAL_UART_STATE_BUSY_TX_RX = 0x23U, /*!< Data Transmission and Reception process is ongoing
  115. Not to be used for neither gState nor RxState.
  116. Value is result of combination (Or) between gState and RxState values */
  117. HAL_UART_STATE_TIMEOUT = 0xA0U, /*!< Timeout state
  118. Value is allowed for gState only */
  119. HAL_UART_STATE_ERROR = 0xE0U /*!< Error
  120. Value is allowed for gState only */
  121. } HAL_UART_StateTypeDef;
  122. /**
  123. * @brief HAL UART Reception type definition
  124. * @note HAL UART Reception type value aims to identify which type of Reception is ongoing.
  125. * This parameter can be a value of @ref UART_Reception_Type_Values :
  126. * HAL_UART_RECEPTION_STANDARD = 0x00U,
  127. * HAL_UART_RECEPTION_TOIDLE = 0x01U,
  128. */
  129. typedef uint32_t HAL_UART_RxTypeTypeDef;
  130. /**
  131. * @brief HAL UART Rx Event type definition
  132. * @note HAL UART Rx Event type value aims to identify which type of Event has occurred
  133. * leading to call of the RxEvent callback.
  134. * This parameter can be a value of @ref UART_RxEvent_Type_Values :
  135. * HAL_UART_RXEVENT_TC = 0x00U,
  136. * HAL_UART_RXEVENT_HT = 0x01U,
  137. * HAL_UART_RXEVENT_IDLE = 0x02U,
  138. */
  139. typedef uint32_t HAL_UART_RxEventTypeTypeDef;
  140. /**
  141. * @brief UART handle Structure definition
  142. */
  143. typedef struct __UART_HandleTypeDef
  144. {
  145. USART_TypeDef *Instance; /*!< UART registers base address */
  146. UART_InitTypeDef Init; /*!< UART communication parameters */
  147. const uint8_t *pTxBuffPtr; /*!< Pointer to UART Tx transfer Buffer */
  148. uint16_t TxXferSize; /*!< UART Tx Transfer size */
  149. __IO uint16_t TxXferCount; /*!< UART Tx Transfer Counter */
  150. uint8_t *pRxBuffPtr; /*!< Pointer to UART Rx transfer Buffer */
  151. uint16_t RxXferSize; /*!< UART Rx Transfer size */
  152. __IO uint16_t RxXferCount; /*!< UART Rx Transfer Counter */
  153. __IO HAL_UART_RxTypeTypeDef ReceptionType; /*!< Type of ongoing reception */
  154. __IO HAL_UART_RxEventTypeTypeDef RxEventType; /*!< Type of Rx Event */
  155. DMA_HandleTypeDef *hdmatx; /*!< UART Tx DMA Handle parameters */
  156. DMA_HandleTypeDef *hdmarx; /*!< UART Rx DMA Handle parameters */
  157. HAL_LockTypeDef Lock; /*!< Locking object */
  158. __IO HAL_UART_StateTypeDef gState; /*!< UART state information related to global Handle management
  159. and also related to Tx operations.
  160. This parameter can be a value of @ref HAL_UART_StateTypeDef */
  161. __IO HAL_UART_StateTypeDef RxState; /*!< UART state information related to Rx operations.
  162. This parameter can be a value of @ref HAL_UART_StateTypeDef */
  163. __IO uint32_t ErrorCode; /*!< UART Error code */
  164. #if (USE_HAL_UART_REGISTER_CALLBACKS == 1)
  165. void (* TxHalfCpltCallback)(struct __UART_HandleTypeDef *huart); /*!< UART Tx Half Complete Callback */
  166. void (* TxCpltCallback)(struct __UART_HandleTypeDef *huart); /*!< UART Tx Complete Callback */
  167. void (* RxHalfCpltCallback)(struct __UART_HandleTypeDef *huart); /*!< UART Rx Half Complete Callback */
  168. void (* RxCpltCallback)(struct __UART_HandleTypeDef *huart); /*!< UART Rx Complete Callback */
  169. void (* ErrorCallback)(struct __UART_HandleTypeDef *huart); /*!< UART Error Callback */
  170. void (* AbortCpltCallback)(struct __UART_HandleTypeDef *huart); /*!< UART Abort Complete Callback */
  171. void (* AbortTransmitCpltCallback)(struct __UART_HandleTypeDef *huart); /*!< UART Abort Transmit Complete Callback */
  172. void (* AbortReceiveCpltCallback)(struct __UART_HandleTypeDef *huart); /*!< UART Abort Receive Complete Callback */
  173. void (* WakeupCallback)(struct __UART_HandleTypeDef *huart); /*!< UART Wakeup Callback */
  174. void (* RxEventCallback)(struct __UART_HandleTypeDef *huart, uint16_t Pos); /*!< UART Reception Event Callback */
  175. void (* MspInitCallback)(struct __UART_HandleTypeDef *huart); /*!< UART Msp Init callback */
  176. void (* MspDeInitCallback)(struct __UART_HandleTypeDef *huart); /*!< UART Msp DeInit callback */
  177. #endif /* USE_HAL_UART_REGISTER_CALLBACKS */
  178. } UART_HandleTypeDef;
  179. #if (USE_HAL_UART_REGISTER_CALLBACKS == 1)
  180. /**
  181. * @brief HAL UART Callback ID enumeration definition
  182. */
  183. typedef enum
  184. {
  185. HAL_UART_TX_HALFCOMPLETE_CB_ID = 0x00U, /*!< UART Tx Half Complete Callback ID */
  186. HAL_UART_TX_COMPLETE_CB_ID = 0x01U, /*!< UART Tx Complete Callback ID */
  187. HAL_UART_RX_HALFCOMPLETE_CB_ID = 0x02U, /*!< UART Rx Half Complete Callback ID */
  188. HAL_UART_RX_COMPLETE_CB_ID = 0x03U, /*!< UART Rx Complete Callback ID */
  189. HAL_UART_ERROR_CB_ID = 0x04U, /*!< UART Error Callback ID */
  190. HAL_UART_ABORT_COMPLETE_CB_ID = 0x05U, /*!< UART Abort Complete Callback ID */
  191. HAL_UART_ABORT_TRANSMIT_COMPLETE_CB_ID = 0x06U, /*!< UART Abort Transmit Complete Callback ID */
  192. HAL_UART_ABORT_RECEIVE_COMPLETE_CB_ID = 0x07U, /*!< UART Abort Receive Complete Callback ID */
  193. HAL_UART_WAKEUP_CB_ID = 0x08U, /*!< UART Wakeup Callback ID */
  194. HAL_UART_MSPINIT_CB_ID = 0x0BU, /*!< UART MspInit callback ID */
  195. HAL_UART_MSPDEINIT_CB_ID = 0x0CU /*!< UART MspDeInit callback ID */
  196. } HAL_UART_CallbackIDTypeDef;
  197. /**
  198. * @brief HAL UART Callback pointer definition
  199. */
  200. typedef void (*pUART_CallbackTypeDef)(UART_HandleTypeDef *huart); /*!< pointer to an UART callback function */
  201. typedef void (*pUART_RxEventCallbackTypeDef)(struct __UART_HandleTypeDef *huart, uint16_t Pos); /*!< pointer to a UART Rx Event specific callback function */
  202. #endif /* USE_HAL_UART_REGISTER_CALLBACKS */
  203. /**
  204. * @}
  205. */
  206. /* Exported constants --------------------------------------------------------*/
  207. /** @defgroup UART_Exported_Constants UART Exported Constants
  208. * @{
  209. */
  210. /** @defgroup UART_Error_Code UART Error Code
  211. * @{
  212. */
  213. #define HAL_UART_ERROR_NONE 0x00000000U /*!< No error */
  214. #define HAL_UART_ERROR_PE 0x00000001U /*!< Parity error */
  215. #define HAL_UART_ERROR_NE 0x00000002U /*!< Noise error */
  216. #define HAL_UART_ERROR_FE 0x00000004U /*!< Frame error */
  217. #define HAL_UART_ERROR_ORE 0x00000008U /*!< Overrun error */
  218. #define HAL_UART_ERROR_DMA 0x00000010U /*!< DMA transfer error */
  219. #if (USE_HAL_UART_REGISTER_CALLBACKS == 1)
  220. #define HAL_UART_ERROR_INVALID_CALLBACK 0x00000020U /*!< Invalid Callback error */
  221. #endif /* USE_HAL_UART_REGISTER_CALLBACKS */
  222. /**
  223. * @}
  224. */
  225. /** @defgroup UART_Word_Length UART Word Length
  226. * @{
  227. */
  228. #define UART_WORDLENGTH_8B 0x00000000U
  229. #define UART_WORDLENGTH_9B ((uint32_t)USART_CR1_M)
  230. /**
  231. * @}
  232. */
  233. /** @defgroup UART_Stop_Bits UART Number of Stop Bits
  234. * @{
  235. */
  236. #define UART_STOPBITS_1 0x00000000U
  237. #define UART_STOPBITS_2 ((uint32_t)USART_CR2_STOP_1)
  238. /**
  239. * @}
  240. */
  241. /** @defgroup UART_Parity UART Parity
  242. * @{
  243. */
  244. #define UART_PARITY_NONE 0x00000000U
  245. #define UART_PARITY_EVEN ((uint32_t)USART_CR1_PCE)
  246. #define UART_PARITY_ODD ((uint32_t)(USART_CR1_PCE | USART_CR1_PS))
  247. /**
  248. * @}
  249. */
  250. /** @defgroup UART_Hardware_Flow_Control UART Hardware Flow Control
  251. * @{
  252. */
  253. #define UART_HWCONTROL_NONE 0x00000000U
  254. #define UART_HWCONTROL_RTS ((uint32_t)USART_CR3_RTSE)
  255. #define UART_HWCONTROL_CTS ((uint32_t)USART_CR3_CTSE)
  256. #define UART_HWCONTROL_RTS_CTS ((uint32_t)(USART_CR3_RTSE | USART_CR3_CTSE))
  257. /**
  258. * @}
  259. */
  260. /** @defgroup UART_Mode UART Transfer Mode
  261. * @{
  262. */
  263. #define UART_MODE_RX ((uint32_t)USART_CR1_RE)
  264. #define UART_MODE_TX ((uint32_t)USART_CR1_TE)
  265. #define UART_MODE_TX_RX ((uint32_t)(USART_CR1_TE | USART_CR1_RE))
  266. /**
  267. * @}
  268. */
  269. /** @defgroup UART_State UART State
  270. * @{
  271. */
  272. #define UART_STATE_DISABLE 0x00000000U
  273. #define UART_STATE_ENABLE ((uint32_t)USART_CR1_UE)
  274. /**
  275. * @}
  276. */
  277. /** @defgroup UART_Over_Sampling UART Over Sampling
  278. * @{
  279. */
  280. #define UART_OVERSAMPLING_16 0x00000000U
  281. #define UART_OVERSAMPLING_8 ((uint32_t)USART_CR1_OVER8)
  282. /**
  283. * @}
  284. */
  285. /** @defgroup UART_LIN_Break_Detection_Length UART LIN Break Detection Length
  286. * @{
  287. */
  288. #define UART_LINBREAKDETECTLENGTH_10B 0x00000000U
  289. #define UART_LINBREAKDETECTLENGTH_11B ((uint32_t)USART_CR2_LBDL)
  290. /**
  291. * @}
  292. */
  293. /** @defgroup UART_WakeUp_functions UART Wakeup Functions
  294. * @{
  295. */
  296. #define UART_WAKEUPMETHOD_IDLELINE 0x00000000U
  297. #define UART_WAKEUPMETHOD_ADDRESSMARK ((uint32_t)USART_CR1_WAKE)
  298. /**
  299. * @}
  300. */
  301. /** @defgroup UART_Flags UART FLags
  302. * Elements values convention: 0xXXXX
  303. * - 0xXXXX : Flag mask in the SR register
  304. * @{
  305. */
  306. #define UART_FLAG_CTS ((uint32_t)USART_SR_CTS)
  307. #define UART_FLAG_LBD ((uint32_t)USART_SR_LBD)
  308. #define UART_FLAG_TXE ((uint32_t)USART_SR_TXE)
  309. #define UART_FLAG_TC ((uint32_t)USART_SR_TC)
  310. #define UART_FLAG_RXNE ((uint32_t)USART_SR_RXNE)
  311. #define UART_FLAG_IDLE ((uint32_t)USART_SR_IDLE)
  312. #define UART_FLAG_ORE ((uint32_t)USART_SR_ORE)
  313. #define UART_FLAG_NE ((uint32_t)USART_SR_NE)
  314. #define UART_FLAG_FE ((uint32_t)USART_SR_FE)
  315. #define UART_FLAG_PE ((uint32_t)USART_SR_PE)
  316. /**
  317. * @}
  318. */
  319. /** @defgroup UART_Interrupt_definition UART Interrupt Definitions
  320. * Elements values convention: 0xY000XXXX
  321. * - XXXX : Interrupt mask (16 bits) in the Y register
  322. * - Y : Interrupt source register (2bits)
  323. * - 0001: CR1 register
  324. * - 0010: CR2 register
  325. * - 0011: CR3 register
  326. * @{
  327. */
  328. #define UART_IT_PE ((uint32_t)(UART_CR1_REG_INDEX << 28U | USART_CR1_PEIE))
  329. #define UART_IT_TXE ((uint32_t)(UART_CR1_REG_INDEX << 28U | USART_CR1_TXEIE))
  330. #define UART_IT_TC ((uint32_t)(UART_CR1_REG_INDEX << 28U | USART_CR1_TCIE))
  331. #define UART_IT_RXNE ((uint32_t)(UART_CR1_REG_INDEX << 28U | USART_CR1_RXNEIE))
  332. #define UART_IT_IDLE ((uint32_t)(UART_CR1_REG_INDEX << 28U | USART_CR1_IDLEIE))
  333. #define UART_IT_LBD ((uint32_t)(UART_CR2_REG_INDEX << 28U | USART_CR2_LBDIE))
  334. #define UART_IT_CTS ((uint32_t)(UART_CR3_REG_INDEX << 28U | USART_CR3_CTSIE))
  335. #define UART_IT_ERR ((uint32_t)(UART_CR3_REG_INDEX << 28U | USART_CR3_EIE))
  336. /**
  337. * @}
  338. */
  339. /** @defgroup UART_Reception_Type_Values UART Reception type values
  340. * @{
  341. */
  342. #define HAL_UART_RECEPTION_STANDARD (0x00000000U) /*!< Standard reception */
  343. #define HAL_UART_RECEPTION_TOIDLE (0x00000001U) /*!< Reception till completion or IDLE event */
  344. /**
  345. * @}
  346. */
  347. /** @defgroup UART_RxEvent_Type_Values UART RxEvent type values
  348. * @{
  349. */
  350. #define HAL_UART_RXEVENT_TC (0x00000000U) /*!< RxEvent linked to Transfer Complete event */
  351. #define HAL_UART_RXEVENT_HT (0x00000001U) /*!< RxEvent linked to Half Transfer event */
  352. #define HAL_UART_RXEVENT_IDLE (0x00000002U)
  353. /**
  354. * @}
  355. */
  356. /**
  357. * @}
  358. */
  359. /* Exported macro ------------------------------------------------------------*/
  360. /** @defgroup UART_Exported_Macros UART Exported Macros
  361. * @{
  362. */
  363. /** @brief Reset UART handle gstate & RxState
  364. * @param __HANDLE__ specifies the UART Handle.
  365. * UART Handle selects the USARTx or UARTy peripheral
  366. * (USART,UART availability and x,y values depending on device).
  367. * @retval None
  368. */
  369. #if (USE_HAL_UART_REGISTER_CALLBACKS == 1)
  370. #define __HAL_UART_RESET_HANDLE_STATE(__HANDLE__) do{ \
  371. (__HANDLE__)->gState = HAL_UART_STATE_RESET; \
  372. (__HANDLE__)->RxState = HAL_UART_STATE_RESET; \
  373. (__HANDLE__)->MspInitCallback = NULL; \
  374. (__HANDLE__)->MspDeInitCallback = NULL; \
  375. } while(0U)
  376. #else
  377. #define __HAL_UART_RESET_HANDLE_STATE(__HANDLE__) do{ \
  378. (__HANDLE__)->gState = HAL_UART_STATE_RESET; \
  379. (__HANDLE__)->RxState = HAL_UART_STATE_RESET; \
  380. } while(0U)
  381. #endif /*USE_HAL_UART_REGISTER_CALLBACKS */
  382. /** @brief Flushes the UART DR register
  383. * @param __HANDLE__ specifies the UART Handle.
  384. * UART Handle selects the USARTx or UARTy peripheral
  385. * (USART,UART availability and x,y values depending on device).
  386. */
  387. #define __HAL_UART_FLUSH_DRREGISTER(__HANDLE__) ((__HANDLE__)->Instance->DR)
  388. /** @brief Checks whether the specified UART flag is set or not.
  389. * @param __HANDLE__ specifies the UART Handle.
  390. * UART Handle selects the USARTx or UARTy peripheral
  391. * (USART,UART availability and x,y values depending on device).
  392. * @param __FLAG__ specifies the flag to check.
  393. * This parameter can be one of the following values:
  394. * @arg UART_FLAG_CTS: CTS Change flag (not available for UART4 and UART5)
  395. * @arg UART_FLAG_LBD: LIN Break detection flag
  396. * @arg UART_FLAG_TXE: Transmit data register empty flag
  397. * @arg UART_FLAG_TC: Transmission Complete flag
  398. * @arg UART_FLAG_RXNE: Receive data register not empty flag
  399. * @arg UART_FLAG_IDLE: Idle Line detection flag
  400. * @arg UART_FLAG_ORE: Overrun Error flag
  401. * @arg UART_FLAG_NE: Noise Error flag
  402. * @arg UART_FLAG_FE: Framing Error flag
  403. * @arg UART_FLAG_PE: Parity Error flag
  404. * @retval The new state of __FLAG__ (TRUE or FALSE).
  405. */
  406. #define __HAL_UART_GET_FLAG(__HANDLE__, __FLAG__) (((__HANDLE__)->Instance->SR & (__FLAG__)) == (__FLAG__))
  407. /** @brief Clears the specified UART pending flag.
  408. * @param __HANDLE__ specifies the UART Handle.
  409. * UART Handle selects the USARTx or UARTy peripheral
  410. * (USART,UART availability and x,y values depending on device).
  411. * @param __FLAG__ specifies the flag to check.
  412. * This parameter can be any combination of the following values:
  413. * @arg UART_FLAG_CTS: CTS Change flag (not available for UART4 and UART5).
  414. * @arg UART_FLAG_LBD: LIN Break detection flag.
  415. * @arg UART_FLAG_TC: Transmission Complete flag.
  416. * @arg UART_FLAG_RXNE: Receive data register not empty flag.
  417. *
  418. * @note PE (Parity error), FE (Framing error), NE (Noise error), ORE (Overrun
  419. * error) and IDLE (Idle line detected) flags are cleared by software
  420. * sequence: a read operation to USART_SR register followed by a read
  421. * operation to USART_DR register.
  422. * @note RXNE flag can be also cleared by a read to the USART_DR register.
  423. * @note TC flag can be also cleared by software sequence: a read operation to
  424. * USART_SR register followed by a write operation to USART_DR register.
  425. * @note TXE flag is cleared only by a write to the USART_DR register.
  426. *
  427. * @retval None
  428. */
  429. #define __HAL_UART_CLEAR_FLAG(__HANDLE__, __FLAG__) ((__HANDLE__)->Instance->SR = ~(__FLAG__))
  430. /** @brief Clears the UART PE pending flag.
  431. * @param __HANDLE__ specifies the UART Handle.
  432. * UART Handle selects the USARTx or UARTy peripheral
  433. * (USART,UART availability and x,y values depending on device).
  434. * @retval None
  435. */
  436. #define __HAL_UART_CLEAR_PEFLAG(__HANDLE__) \
  437. do{ \
  438. __IO uint32_t tmpreg = 0x00U; \
  439. tmpreg = (__HANDLE__)->Instance->SR; \
  440. tmpreg = (__HANDLE__)->Instance->DR; \
  441. UNUSED(tmpreg); \
  442. } while(0U)
  443. /** @brief Clears the UART FE pending flag.
  444. * @param __HANDLE__ specifies the UART Handle.
  445. * UART Handle selects the USARTx or UARTy peripheral
  446. * (USART,UART availability and x,y values depending on device).
  447. * @retval None
  448. */
  449. #define __HAL_UART_CLEAR_FEFLAG(__HANDLE__) __HAL_UART_CLEAR_PEFLAG(__HANDLE__)
  450. /** @brief Clears the UART NE pending flag.
  451. * @param __HANDLE__ specifies the UART Handle.
  452. * UART Handle selects the USARTx or UARTy peripheral
  453. * (USART,UART availability and x,y values depending on device).
  454. * @retval None
  455. */
  456. #define __HAL_UART_CLEAR_NEFLAG(__HANDLE__) __HAL_UART_CLEAR_PEFLAG(__HANDLE__)
  457. /** @brief Clears the UART ORE pending flag.
  458. * @param __HANDLE__ specifies the UART Handle.
  459. * UART Handle selects the USARTx or UARTy peripheral
  460. * (USART,UART availability and x,y values depending on device).
  461. * @retval None
  462. */
  463. #define __HAL_UART_CLEAR_OREFLAG(__HANDLE__) __HAL_UART_CLEAR_PEFLAG(__HANDLE__)
  464. /** @brief Clears the UART IDLE pending flag.
  465. * @param __HANDLE__ specifies the UART Handle.
  466. * UART Handle selects the USARTx or UARTy peripheral
  467. * (USART,UART availability and x,y values depending on device).
  468. * @retval None
  469. */
  470. #define __HAL_UART_CLEAR_IDLEFLAG(__HANDLE__) __HAL_UART_CLEAR_PEFLAG(__HANDLE__)
  471. /** @brief Enable the specified UART interrupt.
  472. * @param __HANDLE__ specifies the UART Handle.
  473. * UART Handle selects the USARTx or UARTy peripheral
  474. * (USART,UART availability and x,y values depending on device).
  475. * @param __INTERRUPT__ specifies the UART interrupt source to enable.
  476. * This parameter can be one of the following values:
  477. * @arg UART_IT_CTS: CTS change interrupt
  478. * @arg UART_IT_LBD: LIN Break detection interrupt
  479. * @arg UART_IT_TXE: Transmit Data Register empty interrupt
  480. * @arg UART_IT_TC: Transmission complete interrupt
  481. * @arg UART_IT_RXNE: Receive Data register not empty interrupt
  482. * @arg UART_IT_IDLE: Idle line detection interrupt
  483. * @arg UART_IT_PE: Parity Error interrupt
  484. * @arg UART_IT_ERR: Error interrupt(Frame error, noise error, overrun error)
  485. * @retval None
  486. */
  487. #define __HAL_UART_ENABLE_IT(__HANDLE__, __INTERRUPT__) ((((__INTERRUPT__) >> 28U) == UART_CR1_REG_INDEX)? ((__HANDLE__)->Instance->CR1 |= ((__INTERRUPT__) & UART_IT_MASK)): \
  488. (((__INTERRUPT__) >> 28U) == UART_CR2_REG_INDEX)? ((__HANDLE__)->Instance->CR2 |= ((__INTERRUPT__) & UART_IT_MASK)): \
  489. ((__HANDLE__)->Instance->CR3 |= ((__INTERRUPT__) & UART_IT_MASK)))
  490. /** @brief Disable the specified UART interrupt.
  491. * @param __HANDLE__ specifies the UART Handle.
  492. * UART Handle selects the USARTx or UARTy peripheral
  493. * (USART,UART availability and x,y values depending on device).
  494. * @param __INTERRUPT__ specifies the UART interrupt source to disable.
  495. * This parameter can be one of the following values:
  496. * @arg UART_IT_CTS: CTS change interrupt
  497. * @arg UART_IT_LBD: LIN Break detection interrupt
  498. * @arg UART_IT_TXE: Transmit Data Register empty interrupt
  499. * @arg UART_IT_TC: Transmission complete interrupt
  500. * @arg UART_IT_RXNE: Receive Data register not empty interrupt
  501. * @arg UART_IT_IDLE: Idle line detection interrupt
  502. * @arg UART_IT_PE: Parity Error interrupt
  503. * @arg UART_IT_ERR: Error interrupt(Frame error, noise error, overrun error)
  504. * @retval None
  505. */
  506. #define __HAL_UART_DISABLE_IT(__HANDLE__, __INTERRUPT__) ((((__INTERRUPT__) >> 28U) == UART_CR1_REG_INDEX)? ((__HANDLE__)->Instance->CR1 &= ~((__INTERRUPT__) & UART_IT_MASK)): \
  507. (((__INTERRUPT__) >> 28U) == UART_CR2_REG_INDEX)? ((__HANDLE__)->Instance->CR2 &= ~((__INTERRUPT__) & UART_IT_MASK)): \
  508. ((__HANDLE__)->Instance->CR3 &= ~ ((__INTERRUPT__) & UART_IT_MASK)))
  509. /** @brief Checks whether the specified UART interrupt source is enabled or not.
  510. * @param __HANDLE__ specifies the UART Handle.
  511. * UART Handle selects the USARTx or UARTy peripheral
  512. * (USART,UART availability and x,y values depending on device).
  513. * @param __IT__ specifies the UART interrupt source to check.
  514. * This parameter can be one of the following values:
  515. * @arg UART_IT_CTS: CTS change interrupt (not available for UART4 and UART5)
  516. * @arg UART_IT_LBD: LIN Break detection interrupt
  517. * @arg UART_IT_TXE: Transmit Data Register empty interrupt
  518. * @arg UART_IT_TC: Transmission complete interrupt
  519. * @arg UART_IT_RXNE: Receive Data register not empty interrupt
  520. * @arg UART_IT_IDLE: Idle line detection interrupt
  521. * @arg UART_IT_ERR: Error interrupt
  522. * @retval The new state of __IT__ (TRUE or FALSE).
  523. */
  524. #define __HAL_UART_GET_IT_SOURCE(__HANDLE__, __IT__) (((((__IT__) >> 28U) == UART_CR1_REG_INDEX)? (__HANDLE__)->Instance->CR1:(((((uint32_t)(__IT__)) >> 28U) == UART_CR2_REG_INDEX)? \
  525. (__HANDLE__)->Instance->CR2 : (__HANDLE__)->Instance->CR3)) & (((uint32_t)(__IT__)) & UART_IT_MASK))
  526. /** @brief Enable CTS flow control
  527. * @note This macro allows to enable CTS hardware flow control for a given UART instance,
  528. * without need to call HAL_UART_Init() function.
  529. * As involving direct access to UART registers, usage of this macro should be fully endorsed by user.
  530. * @note As macro is expected to be used for modifying CTS Hw flow control feature activation, without need
  531. * for USART instance Deinit/Init, following conditions for macro call should be fulfilled :
  532. * - UART instance should have already been initialised (through call of HAL_UART_Init() )
  533. * - macro could only be called when corresponding UART instance is disabled (i.e __HAL_UART_DISABLE(__HANDLE__))
  534. * and should be followed by an Enable macro (i.e __HAL_UART_ENABLE(__HANDLE__)).
  535. * @param __HANDLE__ specifies the UART Handle.
  536. * The Handle Instance can be any USARTx (supporting the HW Flow control feature).
  537. * It is used to select the USART peripheral (USART availability and x value depending on device).
  538. * @retval None
  539. */
  540. #define __HAL_UART_HWCONTROL_CTS_ENABLE(__HANDLE__) \
  541. do{ \
  542. ATOMIC_SET_BIT((__HANDLE__)->Instance->CR3, USART_CR3_CTSE); \
  543. (__HANDLE__)->Init.HwFlowCtl |= USART_CR3_CTSE; \
  544. } while(0U)
  545. /** @brief Disable CTS flow control
  546. * @note This macro allows to disable CTS hardware flow control for a given UART instance,
  547. * without need to call HAL_UART_Init() function.
  548. * As involving direct access to UART registers, usage of this macro should be fully endorsed by user.
  549. * @note As macro is expected to be used for modifying CTS Hw flow control feature activation, without need
  550. * for USART instance Deinit/Init, following conditions for macro call should be fulfilled :
  551. * - UART instance should have already been initialised (through call of HAL_UART_Init() )
  552. * - macro could only be called when corresponding UART instance is disabled (i.e __HAL_UART_DISABLE(__HANDLE__))
  553. * and should be followed by an Enable macro (i.e __HAL_UART_ENABLE(__HANDLE__)).
  554. * @param __HANDLE__ specifies the UART Handle.
  555. * The Handle Instance can be any USARTx (supporting the HW Flow control feature).
  556. * It is used to select the USART peripheral (USART availability and x value depending on device).
  557. * @retval None
  558. */
  559. #define __HAL_UART_HWCONTROL_CTS_DISABLE(__HANDLE__) \
  560. do{ \
  561. ATOMIC_CLEAR_BIT((__HANDLE__)->Instance->CR3, USART_CR3_CTSE); \
  562. (__HANDLE__)->Init.HwFlowCtl &= ~(USART_CR3_CTSE); \
  563. } while(0U)
  564. /** @brief Enable RTS flow control
  565. * This macro allows to enable RTS hardware flow control for a given UART instance,
  566. * without need to call HAL_UART_Init() function.
  567. * As involving direct access to UART registers, usage of this macro should be fully endorsed by user.
  568. * @note As macro is expected to be used for modifying RTS Hw flow control feature activation, without need
  569. * for USART instance Deinit/Init, following conditions for macro call should be fulfilled :
  570. * - UART instance should have already been initialised (through call of HAL_UART_Init() )
  571. * - macro could only be called when corresponding UART instance is disabled (i.e __HAL_UART_DISABLE(__HANDLE__))
  572. * and should be followed by an Enable macro (i.e __HAL_UART_ENABLE(__HANDLE__)).
  573. * @param __HANDLE__ specifies the UART Handle.
  574. * The Handle Instance can be any USARTx (supporting the HW Flow control feature).
  575. * It is used to select the USART peripheral (USART availability and x value depending on device).
  576. * @retval None
  577. */
  578. #define __HAL_UART_HWCONTROL_RTS_ENABLE(__HANDLE__) \
  579. do{ \
  580. ATOMIC_SET_BIT((__HANDLE__)->Instance->CR3, USART_CR3_RTSE); \
  581. (__HANDLE__)->Init.HwFlowCtl |= USART_CR3_RTSE; \
  582. } while(0U)
  583. /** @brief Disable RTS flow control
  584. * This macro allows to disable RTS hardware flow control for a given UART instance,
  585. * without need to call HAL_UART_Init() function.
  586. * As involving direct access to UART registers, usage of this macro should be fully endorsed by user.
  587. * @note As macro is expected to be used for modifying RTS Hw flow control feature activation, without need
  588. * for USART instance Deinit/Init, following conditions for macro call should be fulfilled :
  589. * - UART instance should have already been initialised (through call of HAL_UART_Init() )
  590. * - macro could only be called when corresponding UART instance is disabled (i.e __HAL_UART_DISABLE(__HANDLE__))
  591. * and should be followed by an Enable macro (i.e __HAL_UART_ENABLE(__HANDLE__)).
  592. * @param __HANDLE__ specifies the UART Handle.
  593. * The Handle Instance can be any USARTx (supporting the HW Flow control feature).
  594. * It is used to select the USART peripheral (USART availability and x value depending on device).
  595. * @retval None
  596. */
  597. #define __HAL_UART_HWCONTROL_RTS_DISABLE(__HANDLE__) \
  598. do{ \
  599. ATOMIC_CLEAR_BIT((__HANDLE__)->Instance->CR3, USART_CR3_RTSE);\
  600. (__HANDLE__)->Init.HwFlowCtl &= ~(USART_CR3_RTSE); \
  601. } while(0U)
  602. /** @brief Macro to enable the UART's one bit sample method
  603. * @param __HANDLE__ specifies the UART Handle.
  604. * @retval None
  605. */
  606. #define __HAL_UART_ONE_BIT_SAMPLE_ENABLE(__HANDLE__) ((__HANDLE__)->Instance->CR3|= USART_CR3_ONEBIT)
  607. /** @brief Macro to disable the UART's one bit sample method
  608. * @param __HANDLE__ specifies the UART Handle.
  609. * @retval None
  610. */
  611. #define __HAL_UART_ONE_BIT_SAMPLE_DISABLE(__HANDLE__) ((__HANDLE__)->Instance->CR3\
  612. &= (uint16_t)~((uint16_t)USART_CR3_ONEBIT))
  613. /** @brief Enable UART
  614. * @param __HANDLE__ specifies the UART Handle.
  615. * @retval None
  616. */
  617. #define __HAL_UART_ENABLE(__HANDLE__) ((__HANDLE__)->Instance->CR1 |= USART_CR1_UE)
  618. /** @brief Disable UART
  619. * @param __HANDLE__ specifies the UART Handle.
  620. * @retval None
  621. */
  622. #define __HAL_UART_DISABLE(__HANDLE__) ((__HANDLE__)->Instance->CR1 &= ~USART_CR1_UE)
  623. /**
  624. * @}
  625. */
  626. /* Exported functions --------------------------------------------------------*/
  627. /** @addtogroup UART_Exported_Functions
  628. * @{
  629. */
  630. /** @addtogroup UART_Exported_Functions_Group1 Initialization and de-initialization functions
  631. * @{
  632. */
  633. /* Initialization/de-initialization functions **********************************/
  634. HAL_StatusTypeDef HAL_UART_Init(UART_HandleTypeDef *huart);
  635. HAL_StatusTypeDef HAL_HalfDuplex_Init(UART_HandleTypeDef *huart);
  636. HAL_StatusTypeDef HAL_LIN_Init(UART_HandleTypeDef *huart, uint32_t BreakDetectLength);
  637. HAL_StatusTypeDef HAL_MultiProcessor_Init(UART_HandleTypeDef *huart, uint8_t Address, uint32_t WakeUpMethod);
  638. HAL_StatusTypeDef HAL_UART_DeInit(UART_HandleTypeDef *huart);
  639. void HAL_UART_MspInit(UART_HandleTypeDef *huart);
  640. void HAL_UART_MspDeInit(UART_HandleTypeDef *huart);
  641. /* Callbacks Register/UnRegister functions ***********************************/
  642. #if (USE_HAL_UART_REGISTER_CALLBACKS == 1)
  643. HAL_StatusTypeDef HAL_UART_RegisterCallback(UART_HandleTypeDef *huart, HAL_UART_CallbackIDTypeDef CallbackID,
  644. pUART_CallbackTypeDef pCallback);
  645. HAL_StatusTypeDef HAL_UART_UnRegisterCallback(UART_HandleTypeDef *huart, HAL_UART_CallbackIDTypeDef CallbackID);
  646. HAL_StatusTypeDef HAL_UART_RegisterRxEventCallback(UART_HandleTypeDef *huart, pUART_RxEventCallbackTypeDef pCallback);
  647. HAL_StatusTypeDef HAL_UART_UnRegisterRxEventCallback(UART_HandleTypeDef *huart);
  648. #endif /* USE_HAL_UART_REGISTER_CALLBACKS */
  649. /**
  650. * @}
  651. */
  652. /** @addtogroup UART_Exported_Functions_Group2 IO operation functions
  653. * @{
  654. */
  655. /* IO operation functions *******************************************************/
  656. HAL_StatusTypeDef HAL_UART_Transmit(UART_HandleTypeDef *huart, const uint8_t *pData, uint16_t Size, uint32_t Timeout);
  657. HAL_StatusTypeDef HAL_UART_Receive(UART_HandleTypeDef *huart, uint8_t *pData, uint16_t Size, uint32_t Timeout);
  658. HAL_StatusTypeDef HAL_UART_Transmit_IT(UART_HandleTypeDef *huart, const uint8_t *pData, uint16_t Size);
  659. HAL_StatusTypeDef HAL_UART_Receive_IT(UART_HandleTypeDef *huart, uint8_t *pData, uint16_t Size);
  660. HAL_StatusTypeDef HAL_UART_Transmit_DMA(UART_HandleTypeDef *huart, const uint8_t *pData, uint16_t Size);
  661. HAL_StatusTypeDef HAL_UART_Receive_DMA(UART_HandleTypeDef *huart, uint8_t *pData, uint16_t Size);
  662. HAL_StatusTypeDef HAL_UART_DMAPause(UART_HandleTypeDef *huart);
  663. HAL_StatusTypeDef HAL_UART_DMAResume(UART_HandleTypeDef *huart);
  664. HAL_StatusTypeDef HAL_UART_DMAStop(UART_HandleTypeDef *huart);
  665. HAL_StatusTypeDef HAL_UARTEx_ReceiveToIdle(UART_HandleTypeDef *huart, uint8_t *pData, uint16_t Size, uint16_t *RxLen,
  666. uint32_t Timeout);
  667. HAL_StatusTypeDef HAL_UARTEx_ReceiveToIdle_IT(UART_HandleTypeDef *huart, uint8_t *pData, uint16_t Size);
  668. HAL_StatusTypeDef HAL_UARTEx_ReceiveToIdle_DMA(UART_HandleTypeDef *huart, uint8_t *pData, uint16_t Size);
  669. HAL_UART_RxEventTypeTypeDef HAL_UARTEx_GetRxEventType(UART_HandleTypeDef *huart);
  670. /* Transfer Abort functions */
  671. HAL_StatusTypeDef HAL_UART_Abort(UART_HandleTypeDef *huart);
  672. HAL_StatusTypeDef HAL_UART_AbortTransmit(UART_HandleTypeDef *huart);
  673. HAL_StatusTypeDef HAL_UART_AbortReceive(UART_HandleTypeDef *huart);
  674. HAL_StatusTypeDef HAL_UART_Abort_IT(UART_HandleTypeDef *huart);
  675. HAL_StatusTypeDef HAL_UART_AbortTransmit_IT(UART_HandleTypeDef *huart);
  676. HAL_StatusTypeDef HAL_UART_AbortReceive_IT(UART_HandleTypeDef *huart);
  677. void HAL_UART_IRQHandler(UART_HandleTypeDef *huart);
  678. void HAL_UART_TxCpltCallback(UART_HandleTypeDef *huart);
  679. void HAL_UART_TxHalfCpltCallback(UART_HandleTypeDef *huart);
  680. void HAL_UART_RxCpltCallback(UART_HandleTypeDef *huart);
  681. void HAL_UART_RxHalfCpltCallback(UART_HandleTypeDef *huart);
  682. void HAL_UART_ErrorCallback(UART_HandleTypeDef *huart);
  683. void HAL_UART_AbortCpltCallback(UART_HandleTypeDef *huart);
  684. void HAL_UART_AbortTransmitCpltCallback(UART_HandleTypeDef *huart);
  685. void HAL_UART_AbortReceiveCpltCallback(UART_HandleTypeDef *huart);
  686. void HAL_UARTEx_RxEventCallback(UART_HandleTypeDef *huart, uint16_t Size);
  687. /**
  688. * @}
  689. */
  690. /** @addtogroup UART_Exported_Functions_Group3
  691. * @{
  692. */
  693. /* Peripheral Control functions ************************************************/
  694. HAL_StatusTypeDef HAL_LIN_SendBreak(UART_HandleTypeDef *huart);
  695. HAL_StatusTypeDef HAL_MultiProcessor_EnterMuteMode(UART_HandleTypeDef *huart);
  696. HAL_StatusTypeDef HAL_MultiProcessor_ExitMuteMode(UART_HandleTypeDef *huart);
  697. HAL_StatusTypeDef HAL_HalfDuplex_EnableTransmitter(UART_HandleTypeDef *huart);
  698. HAL_StatusTypeDef HAL_HalfDuplex_EnableReceiver(UART_HandleTypeDef *huart);
  699. /**
  700. * @}
  701. */
  702. /** @addtogroup UART_Exported_Functions_Group4
  703. * @{
  704. */
  705. /* Peripheral State functions **************************************************/
  706. HAL_UART_StateTypeDef HAL_UART_GetState(const UART_HandleTypeDef *huart);
  707. uint32_t HAL_UART_GetError(const UART_HandleTypeDef *huart);
  708. /**
  709. * @}
  710. */
  711. /**
  712. * @}
  713. */
  714. /* Private types -------------------------------------------------------------*/
  715. /* Private variables ---------------------------------------------------------*/
  716. /* Private constants ---------------------------------------------------------*/
  717. /** @defgroup UART_Private_Constants UART Private Constants
  718. * @{
  719. */
  720. /** @brief UART interruptions flag mask
  721. *
  722. */
  723. #define UART_IT_MASK 0x0000FFFFU
  724. #define UART_CR1_REG_INDEX 1U
  725. #define UART_CR2_REG_INDEX 2U
  726. #define UART_CR3_REG_INDEX 3U
  727. /**
  728. * @}
  729. */
  730. /* Private macros ------------------------------------------------------------*/
  731. /** @defgroup UART_Private_Macros UART Private Macros
  732. * @{
  733. */
  734. #define IS_UART_WORD_LENGTH(LENGTH) (((LENGTH) == UART_WORDLENGTH_8B) || \
  735. ((LENGTH) == UART_WORDLENGTH_9B))
  736. #define IS_UART_LIN_WORD_LENGTH(LENGTH) (((LENGTH) == UART_WORDLENGTH_8B))
  737. #define IS_UART_STOPBITS(STOPBITS) (((STOPBITS) == UART_STOPBITS_1) || \
  738. ((STOPBITS) == UART_STOPBITS_2))
  739. #define IS_UART_PARITY(PARITY) (((PARITY) == UART_PARITY_NONE) || \
  740. ((PARITY) == UART_PARITY_EVEN) || \
  741. ((PARITY) == UART_PARITY_ODD))
  742. #define IS_UART_HARDWARE_FLOW_CONTROL(CONTROL)\
  743. (((CONTROL) == UART_HWCONTROL_NONE) || \
  744. ((CONTROL) == UART_HWCONTROL_RTS) || \
  745. ((CONTROL) == UART_HWCONTROL_CTS) || \
  746. ((CONTROL) == UART_HWCONTROL_RTS_CTS))
  747. #define IS_UART_MODE(MODE) ((((MODE) & 0x0000FFF3U) == 0x00U) && ((MODE) != 0x00U))
  748. #define IS_UART_STATE(STATE) (((STATE) == UART_STATE_DISABLE) || \
  749. ((STATE) == UART_STATE_ENABLE))
  750. #define IS_UART_OVERSAMPLING(SAMPLING) (((SAMPLING) == UART_OVERSAMPLING_16) || \
  751. ((SAMPLING) == UART_OVERSAMPLING_8))
  752. #define IS_UART_LIN_OVERSAMPLING(SAMPLING) (((SAMPLING) == UART_OVERSAMPLING_16))
  753. #define IS_UART_LIN_BREAK_DETECT_LENGTH(LENGTH) (((LENGTH) == UART_LINBREAKDETECTLENGTH_10B) || \
  754. ((LENGTH) == UART_LINBREAKDETECTLENGTH_11B))
  755. #define IS_UART_WAKEUPMETHOD(WAKEUP) (((WAKEUP) == UART_WAKEUPMETHOD_IDLELINE) || \
  756. ((WAKEUP) == UART_WAKEUPMETHOD_ADDRESSMARK))
  757. #define IS_UART_BAUDRATE(BAUDRATE) ((BAUDRATE) <= 10500000U)
  758. #define IS_UART_ADDRESS(ADDRESS) ((ADDRESS) <= 0x0FU)
  759. #define UART_DIV_SAMPLING16(_PCLK_, _BAUD_) ((uint32_t)((((uint64_t)(_PCLK_))*25U)/(4U*((uint64_t)(_BAUD_)))))
  760. #define UART_DIVMANT_SAMPLING16(_PCLK_, _BAUD_) (UART_DIV_SAMPLING16((_PCLK_), (_BAUD_))/100U)
  761. #define UART_DIVFRAQ_SAMPLING16(_PCLK_, _BAUD_) ((((UART_DIV_SAMPLING16((_PCLK_), (_BAUD_)) - (UART_DIVMANT_SAMPLING16((_PCLK_), (_BAUD_)) * 100U)) * 16U)\
  762. + 50U) / 100U)
  763. /* UART BRR = mantissa + overflow + fraction
  764. = (UART DIVMANT << 4) + (UART DIVFRAQ & 0xF0) + (UART DIVFRAQ & 0x0FU) */
  765. #define UART_BRR_SAMPLING16(_PCLK_, _BAUD_) ((UART_DIVMANT_SAMPLING16((_PCLK_), (_BAUD_)) << 4U) + \
  766. (UART_DIVFRAQ_SAMPLING16((_PCLK_), (_BAUD_)) & 0xF0U) + \
  767. (UART_DIVFRAQ_SAMPLING16((_PCLK_), (_BAUD_)) & 0x0FU))
  768. #define UART_DIV_SAMPLING8(_PCLK_, _BAUD_) ((uint32_t)((((uint64_t)(_PCLK_))*25U)/(2U*((uint64_t)(_BAUD_)))))
  769. #define UART_DIVMANT_SAMPLING8(_PCLK_, _BAUD_) (UART_DIV_SAMPLING8((_PCLK_), (_BAUD_))/100U)
  770. #define UART_DIVFRAQ_SAMPLING8(_PCLK_, _BAUD_) ((((UART_DIV_SAMPLING8((_PCLK_), (_BAUD_)) - (UART_DIVMANT_SAMPLING8((_PCLK_), (_BAUD_)) * 100U)) * 8U)\
  771. + 50U) / 100U)
  772. /* UART BRR = mantissa + overflow + fraction
  773. = (UART DIVMANT << 4) + ((UART DIVFRAQ & 0xF8) << 1) + (UART DIVFRAQ & 0x07U) */
  774. #define UART_BRR_SAMPLING8(_PCLK_, _BAUD_) ((UART_DIVMANT_SAMPLING8((_PCLK_), (_BAUD_)) << 4U) + \
  775. ((UART_DIVFRAQ_SAMPLING8((_PCLK_), (_BAUD_)) & 0xF8U) << 1U) + \
  776. (UART_DIVFRAQ_SAMPLING8((_PCLK_), (_BAUD_)) & 0x07U))
  777. /**
  778. * @}
  779. */
  780. /* Private functions ---------------------------------------------------------*/
  781. /** @defgroup UART_Private_Functions UART Private Functions
  782. * @{
  783. */
  784. HAL_StatusTypeDef UART_Start_Receive_IT(UART_HandleTypeDef *huart, uint8_t *pData, uint16_t Size);
  785. HAL_StatusTypeDef UART_Start_Receive_DMA(UART_HandleTypeDef *huart, uint8_t *pData, uint16_t Size);
  786. /**
  787. * @}
  788. */
  789. /**
  790. * @}
  791. */
  792. /**
  793. * @}
  794. */
  795. #ifdef __cplusplus
  796. }
  797. #endif
  798. #endif /* __STM32F4xx_HAL_UART_H */