fix LPC812 PWM

Dependents:   IR_LED_Send

Fork of mbed-dev by mbed official

Committer:
nameless129
Date:
Mon May 16 16:50:30 2016 +0000
Revision:
129:2e517c56bcfb
Parent:
0:9b334a45a8ff
PWM Fix:Duty 0%??H???????????????

Who changed what in which revision?

UserRevisionLine numberNew contents of line
bogdanm 0:9b334a45a8ff 1 /**
bogdanm 0:9b334a45a8ff 2 ******************************************************************************
bogdanm 0:9b334a45a8ff 3 * @file stm32l1xx_hal_irda.h
bogdanm 0:9b334a45a8ff 4 * @author MCD Application Team
bogdanm 0:9b334a45a8ff 5 * @version V1.0.0
bogdanm 0:9b334a45a8ff 6 * @date 5-September-2014
bogdanm 0:9b334a45a8ff 7 * @brief This file contains all the functions prototypes for the IRDA
bogdanm 0:9b334a45a8ff 8 * firmware library.
bogdanm 0:9b334a45a8ff 9 ******************************************************************************
bogdanm 0:9b334a45a8ff 10 * @attention
bogdanm 0:9b334a45a8ff 11 *
bogdanm 0:9b334a45a8ff 12 * <h2><center>&copy; COPYRIGHT(c) 2014 STMicroelectronics</center></h2>
bogdanm 0:9b334a45a8ff 13 *
bogdanm 0:9b334a45a8ff 14 * Redistribution and use in source and binary forms, with or without modification,
bogdanm 0:9b334a45a8ff 15 * are permitted provided that the following conditions are met:
bogdanm 0:9b334a45a8ff 16 * 1. Redistributions of source code must retain the above copyright notice,
bogdanm 0:9b334a45a8ff 17 * this list of conditions and the following disclaimer.
bogdanm 0:9b334a45a8ff 18 * 2. Redistributions in binary form must reproduce the above copyright notice,
bogdanm 0:9b334a45a8ff 19 * this list of conditions and the following disclaimer in the documentation
bogdanm 0:9b334a45a8ff 20 * and/or other materials provided with the distribution.
bogdanm 0:9b334a45a8ff 21 * 3. Neither the name of STMicroelectronics nor the names of its contributors
bogdanm 0:9b334a45a8ff 22 * may be used to endorse or promote products derived from this software
bogdanm 0:9b334a45a8ff 23 * without specific prior written permission.
bogdanm 0:9b334a45a8ff 24 *
bogdanm 0:9b334a45a8ff 25 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
bogdanm 0:9b334a45a8ff 26 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
bogdanm 0:9b334a45a8ff 27 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
bogdanm 0:9b334a45a8ff 28 * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
bogdanm 0:9b334a45a8ff 29 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
bogdanm 0:9b334a45a8ff 30 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
bogdanm 0:9b334a45a8ff 31 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
bogdanm 0:9b334a45a8ff 32 * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
bogdanm 0:9b334a45a8ff 33 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
bogdanm 0:9b334a45a8ff 34 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
bogdanm 0:9b334a45a8ff 35 *
bogdanm 0:9b334a45a8ff 36 ******************************************************************************
bogdanm 0:9b334a45a8ff 37 */
bogdanm 0:9b334a45a8ff 38
bogdanm 0:9b334a45a8ff 39 /* Define to prevent recursive inclusion -------------------------------------*/
bogdanm 0:9b334a45a8ff 40 #ifndef __STM32L1xx_HAL_IRDA_H
bogdanm 0:9b334a45a8ff 41 #define __STM32L1xx_HAL_IRDA_H
bogdanm 0:9b334a45a8ff 42
bogdanm 0:9b334a45a8ff 43 #ifdef __cplusplus
bogdanm 0:9b334a45a8ff 44 extern "C" {
bogdanm 0:9b334a45a8ff 45 #endif
bogdanm 0:9b334a45a8ff 46
bogdanm 0:9b334a45a8ff 47 /* Includes ------------------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 48 #include "stm32l1xx_hal_def.h"
bogdanm 0:9b334a45a8ff 49
bogdanm 0:9b334a45a8ff 50 /** @addtogroup STM32L1xx_HAL_Driver
bogdanm 0:9b334a45a8ff 51 * @{
bogdanm 0:9b334a45a8ff 52 */
bogdanm 0:9b334a45a8ff 53
bogdanm 0:9b334a45a8ff 54 /** @addtogroup IRDA
bogdanm 0:9b334a45a8ff 55 * @{
bogdanm 0:9b334a45a8ff 56 */
bogdanm 0:9b334a45a8ff 57
bogdanm 0:9b334a45a8ff 58 /* Exported types ------------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 59 /** @defgroup IRDA_Exported_Types IRDA Exported Types
bogdanm 0:9b334a45a8ff 60 * @{
bogdanm 0:9b334a45a8ff 61 */
bogdanm 0:9b334a45a8ff 62
bogdanm 0:9b334a45a8ff 63 /**
bogdanm 0:9b334a45a8ff 64 * @brief IRDA Init Structure definition
bogdanm 0:9b334a45a8ff 65 */
bogdanm 0:9b334a45a8ff 66 typedef struct
bogdanm 0:9b334a45a8ff 67 {
bogdanm 0:9b334a45a8ff 68 uint32_t BaudRate; /*!< This member configures the IRDA communication baud rate.
bogdanm 0:9b334a45a8ff 69 The baud rate is computed using the following formula:
bogdanm 0:9b334a45a8ff 70 - IntegerDivider = ((PCLKx) / (8 * (hirda->Init.BaudRate)))
bogdanm 0:9b334a45a8ff 71 - FractionalDivider = ((IntegerDivider - ((uint32_t) IntegerDivider)) * 8) + 0.5 */
bogdanm 0:9b334a45a8ff 72
bogdanm 0:9b334a45a8ff 73 uint32_t WordLength; /*!< Specifies the number of data bits transmitted or received in a frame.
bogdanm 0:9b334a45a8ff 74 This parameter can be a value of @ref IRDA_Word_Length */
bogdanm 0:9b334a45a8ff 75
bogdanm 0:9b334a45a8ff 76
bogdanm 0:9b334a45a8ff 77 uint32_t Parity; /*!< Specifies the parity mode.
bogdanm 0:9b334a45a8ff 78 This parameter can be a value of @ref IRDA_Parity
bogdanm 0:9b334a45a8ff 79 @note When parity is enabled, the computed parity is inserted
bogdanm 0:9b334a45a8ff 80 at the MSB position of the transmitted data (9th bit when
bogdanm 0:9b334a45a8ff 81 the word length is set to 9 data bits; 8th bit when the
bogdanm 0:9b334a45a8ff 82 word length is set to 8 data bits). */
bogdanm 0:9b334a45a8ff 83
bogdanm 0:9b334a45a8ff 84 uint32_t Mode; /*!< Specifies wether the Receive or Transmit mode is enabled or disabled.
bogdanm 0:9b334a45a8ff 85 This parameter can be a value of @ref IRDA_Transfer_Mode */
bogdanm 0:9b334a45a8ff 86
bogdanm 0:9b334a45a8ff 87 uint8_t Prescaler; /*!< Specifies the Prescaler */
bogdanm 0:9b334a45a8ff 88
bogdanm 0:9b334a45a8ff 89 uint32_t IrDAMode; /*!< Specifies the IrDA mode
bogdanm 0:9b334a45a8ff 90 This parameter can be a value of @ref IRDA_Low_Power */
bogdanm 0:9b334a45a8ff 91 }IRDA_InitTypeDef;
bogdanm 0:9b334a45a8ff 92
bogdanm 0:9b334a45a8ff 93 /**
bogdanm 0:9b334a45a8ff 94 * @brief HAL IRDA State structures definition
bogdanm 0:9b334a45a8ff 95 */
bogdanm 0:9b334a45a8ff 96 typedef enum
bogdanm 0:9b334a45a8ff 97 {
bogdanm 0:9b334a45a8ff 98 HAL_IRDA_STATE_RESET = 0x00, /*!< Peripheral is not initialized */
bogdanm 0:9b334a45a8ff 99 HAL_IRDA_STATE_READY = 0x01, /*!< Peripheral Initialized and ready for use */
bogdanm 0:9b334a45a8ff 100 HAL_IRDA_STATE_BUSY = 0x02, /*!< an internal process is ongoing */
bogdanm 0:9b334a45a8ff 101 HAL_IRDA_STATE_BUSY_TX = 0x12, /*!< Data Transmission process is ongoing */
bogdanm 0:9b334a45a8ff 102 HAL_IRDA_STATE_BUSY_RX = 0x22, /*!< Data Reception process is ongoing */
bogdanm 0:9b334a45a8ff 103 HAL_IRDA_STATE_BUSY_TX_RX = 0x32, /*!< Data Transmission and Reception process is ongoing */
bogdanm 0:9b334a45a8ff 104 HAL_IRDA_STATE_TIMEOUT = 0x03, /*!< Timeout state */
bogdanm 0:9b334a45a8ff 105 HAL_IRDA_STATE_ERROR = 0x04 /*!< Error */
bogdanm 0:9b334a45a8ff 106 }HAL_IRDA_StateTypeDef;
bogdanm 0:9b334a45a8ff 107
bogdanm 0:9b334a45a8ff 108 /**
bogdanm 0:9b334a45a8ff 109 * @brief HAL IRDA Error Code structure definition
bogdanm 0:9b334a45a8ff 110 */
bogdanm 0:9b334a45a8ff 111 typedef enum
bogdanm 0:9b334a45a8ff 112 {
bogdanm 0:9b334a45a8ff 113 HAL_IRDA_ERROR_NONE = 0x00, /*!< No error */
bogdanm 0:9b334a45a8ff 114 HAL_IRDA_ERROR_PE = 0x01, /*!< Parity error */
bogdanm 0:9b334a45a8ff 115 HAL_IRDA_ERROR_NE = 0x02, /*!< Noise error */
bogdanm 0:9b334a45a8ff 116 HAL_IRDA_ERROR_FE = 0x04, /*!< frame error */
bogdanm 0:9b334a45a8ff 117 HAL_IRDA_ERROR_ORE = 0x08, /*!< Overrun error */
bogdanm 0:9b334a45a8ff 118 HAL_IRDA_ERROR_DMA = 0x10 /*!< DMA transfer error */
bogdanm 0:9b334a45a8ff 119 }HAL_IRDA_ErrorTypeDef;
bogdanm 0:9b334a45a8ff 120
bogdanm 0:9b334a45a8ff 121 /**
bogdanm 0:9b334a45a8ff 122 * @brief IRDA handle Structure definition
bogdanm 0:9b334a45a8ff 123 */
bogdanm 0:9b334a45a8ff 124 typedef struct
bogdanm 0:9b334a45a8ff 125 {
bogdanm 0:9b334a45a8ff 126 USART_TypeDef *Instance; /* USART registers base address */
bogdanm 0:9b334a45a8ff 127
bogdanm 0:9b334a45a8ff 128 IRDA_InitTypeDef Init; /* IRDA communication parameters */
bogdanm 0:9b334a45a8ff 129
bogdanm 0:9b334a45a8ff 130 uint8_t *pTxBuffPtr; /* Pointer to IRDA Tx transfer Buffer */
bogdanm 0:9b334a45a8ff 131
bogdanm 0:9b334a45a8ff 132 uint16_t TxXferSize; /* IRDA Tx Transfer size */
bogdanm 0:9b334a45a8ff 133
bogdanm 0:9b334a45a8ff 134 uint16_t TxXferCount; /* IRDA Tx Transfer Counter */
bogdanm 0:9b334a45a8ff 135
bogdanm 0:9b334a45a8ff 136 uint8_t *pRxBuffPtr; /* Pointer to IRDA Rx transfer Buffer */
bogdanm 0:9b334a45a8ff 137
bogdanm 0:9b334a45a8ff 138 uint16_t RxXferSize; /* IRDA Rx Transfer size */
bogdanm 0:9b334a45a8ff 139
bogdanm 0:9b334a45a8ff 140 uint16_t RxXferCount; /* IRDA Rx Transfer Counter */
bogdanm 0:9b334a45a8ff 141
bogdanm 0:9b334a45a8ff 142 DMA_HandleTypeDef *hdmatx; /* IRDA Tx DMA Handle parameters */
bogdanm 0:9b334a45a8ff 143
bogdanm 0:9b334a45a8ff 144 DMA_HandleTypeDef *hdmarx; /* IRDA Rx DMA Handle parameters */
bogdanm 0:9b334a45a8ff 145
bogdanm 0:9b334a45a8ff 146 HAL_LockTypeDef Lock; /* Locking object */
bogdanm 0:9b334a45a8ff 147
bogdanm 0:9b334a45a8ff 148 __IO HAL_IRDA_StateTypeDef State; /* IRDA communication state */
bogdanm 0:9b334a45a8ff 149
bogdanm 0:9b334a45a8ff 150 __IO HAL_IRDA_ErrorTypeDef ErrorCode; /* IRDA Error code */
bogdanm 0:9b334a45a8ff 151
bogdanm 0:9b334a45a8ff 152 }IRDA_HandleTypeDef;
bogdanm 0:9b334a45a8ff 153
bogdanm 0:9b334a45a8ff 154 /**
bogdanm 0:9b334a45a8ff 155 * @}
bogdanm 0:9b334a45a8ff 156 */
bogdanm 0:9b334a45a8ff 157
bogdanm 0:9b334a45a8ff 158 /* Exported constants --------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 159 /** @defgroup IRDA_Exported_Constants IRDA Exported constants
bogdanm 0:9b334a45a8ff 160 * @{
bogdanm 0:9b334a45a8ff 161 */
bogdanm 0:9b334a45a8ff 162
bogdanm 0:9b334a45a8ff 163 /** @defgroup IRDA_Word_Length IRDA Word Length
bogdanm 0:9b334a45a8ff 164 * @{
bogdanm 0:9b334a45a8ff 165 */
bogdanm 0:9b334a45a8ff 166 #define IRDA_WORDLENGTH_8B ((uint32_t)0x00000000)
bogdanm 0:9b334a45a8ff 167 #define IRDA_WORDLENGTH_9B ((uint32_t)USART_CR1_M)
bogdanm 0:9b334a45a8ff 168 #define IS_IRDA_WORD_LENGTH(LENGTH) (((LENGTH) == IRDA_WORDLENGTH_8B) || \
bogdanm 0:9b334a45a8ff 169 ((LENGTH) == IRDA_WORDLENGTH_9B))
bogdanm 0:9b334a45a8ff 170 /**
bogdanm 0:9b334a45a8ff 171 * @}
bogdanm 0:9b334a45a8ff 172 */
bogdanm 0:9b334a45a8ff 173
bogdanm 0:9b334a45a8ff 174
bogdanm 0:9b334a45a8ff 175 /** @defgroup IRDA_Parity IRDA Parity
bogdanm 0:9b334a45a8ff 176 * @{
bogdanm 0:9b334a45a8ff 177 */
bogdanm 0:9b334a45a8ff 178 #define IRDA_PARITY_NONE ((uint32_t)0x00000000)
bogdanm 0:9b334a45a8ff 179 #define IRDA_PARITY_EVEN ((uint32_t)USART_CR1_PCE)
bogdanm 0:9b334a45a8ff 180 #define IRDA_PARITY_ODD ((uint32_t)(USART_CR1_PCE | USART_CR1_PS))
bogdanm 0:9b334a45a8ff 181 #define IS_IRDA_PARITY(PARITY) (((PARITY) == IRDA_PARITY_NONE) || \
bogdanm 0:9b334a45a8ff 182 ((PARITY) == IRDA_PARITY_EVEN) || \
bogdanm 0:9b334a45a8ff 183 ((PARITY) == IRDA_PARITY_ODD))
bogdanm 0:9b334a45a8ff 184 /**
bogdanm 0:9b334a45a8ff 185 * @}
bogdanm 0:9b334a45a8ff 186 */
bogdanm 0:9b334a45a8ff 187
bogdanm 0:9b334a45a8ff 188
bogdanm 0:9b334a45a8ff 189 /** @defgroup IRDA_Transfer_Mode IRDA Transfer Mode
bogdanm 0:9b334a45a8ff 190 * @{
bogdanm 0:9b334a45a8ff 191 */
bogdanm 0:9b334a45a8ff 192 #define IRDA_MODE_RX ((uint32_t)USART_CR1_RE)
bogdanm 0:9b334a45a8ff 193 #define IRDA_MODE_TX ((uint32_t)USART_CR1_TE)
bogdanm 0:9b334a45a8ff 194 #define IRDA_MODE_TX_RX ((uint32_t)(USART_CR1_TE |USART_CR1_RE))
bogdanm 0:9b334a45a8ff 195 #define IS_IRDA_MODE(MODE) ((((MODE) & (uint32_t)0x0000FFF3) == 0x00) && ((MODE) != (uint32_t)0x000000))
bogdanm 0:9b334a45a8ff 196 /**
bogdanm 0:9b334a45a8ff 197 * @}
bogdanm 0:9b334a45a8ff 198 */
bogdanm 0:9b334a45a8ff 199
bogdanm 0:9b334a45a8ff 200 /** @defgroup IRDA_Low_Power IRDA Low Power
bogdanm 0:9b334a45a8ff 201 * @{
bogdanm 0:9b334a45a8ff 202 */
bogdanm 0:9b334a45a8ff 203 #define IRDA_POWERMODE_LOWPOWER ((uint32_t)USART_CR3_IRLP)
bogdanm 0:9b334a45a8ff 204 #define IRDA_POWERMODE_NORMAL ((uint32_t)0x00000000)
bogdanm 0:9b334a45a8ff 205 #define IS_IRDA_POWERMODE(MODE) (((MODE) == IRDA_POWERMODE_LOWPOWER) || \
bogdanm 0:9b334a45a8ff 206 ((MODE) == IRDA_POWERMODE_NORMAL))
bogdanm 0:9b334a45a8ff 207 /**
bogdanm 0:9b334a45a8ff 208 * @}
bogdanm 0:9b334a45a8ff 209 */
bogdanm 0:9b334a45a8ff 210
bogdanm 0:9b334a45a8ff 211 /** @defgroup IRDA_Flags IRDA Flags
bogdanm 0:9b334a45a8ff 212 * Elements values convention: 0xXXXX
bogdanm 0:9b334a45a8ff 213 * - 0xXXXX : Flag mask in the SR register
bogdanm 0:9b334a45a8ff 214 * @{
bogdanm 0:9b334a45a8ff 215 */
bogdanm 0:9b334a45a8ff 216 #define IRDA_FLAG_TXE ((uint32_t)USART_SR_TXE)
bogdanm 0:9b334a45a8ff 217 #define IRDA_FLAG_TC ((uint32_t)USART_SR_TC)
bogdanm 0:9b334a45a8ff 218 #define IRDA_FLAG_RXNE ((uint32_t)USART_SR_RXNE)
bogdanm 0:9b334a45a8ff 219 #define IRDA_FLAG_IDLE ((uint32_t)USART_SR_IDLE)
bogdanm 0:9b334a45a8ff 220 #define IRDA_FLAG_ORE ((uint32_t)USART_SR_ORE)
bogdanm 0:9b334a45a8ff 221 #define IRDA_FLAG_NE ((uint32_t)USART_SR_NE)
bogdanm 0:9b334a45a8ff 222 #define IRDA_FLAG_FE ((uint32_t)USART_SR_FE)
bogdanm 0:9b334a45a8ff 223 #define IRDA_FLAG_PE ((uint32_t)USART_SR_PE)
bogdanm 0:9b334a45a8ff 224 /**
bogdanm 0:9b334a45a8ff 225 * @}
bogdanm 0:9b334a45a8ff 226 */
bogdanm 0:9b334a45a8ff 227
bogdanm 0:9b334a45a8ff 228 /** @defgroup IRDA_Interrupt_definition IRDA Interrupt Definitions
bogdanm 0:9b334a45a8ff 229 * Elements values convention: 0xY000XXXX
bogdanm 0:9b334a45a8ff 230 * - XXXX : Interrupt mask in the XX register
bogdanm 0:9b334a45a8ff 231 * - Y : Interrupt source register (4 bits)
bogdanm 0:9b334a45a8ff 232 * - 01: CR1 register
bogdanm 0:9b334a45a8ff 233 * - 10: CR2 register
bogdanm 0:9b334a45a8ff 234 * - 11: CR3 register
bogdanm 0:9b334a45a8ff 235 *
bogdanm 0:9b334a45a8ff 236 * @{
bogdanm 0:9b334a45a8ff 237 */
bogdanm 0:9b334a45a8ff 238
bogdanm 0:9b334a45a8ff 239 #define IRDA_IT_PE ((uint32_t)0x10000100)
bogdanm 0:9b334a45a8ff 240 #define IRDA_IT_TXE ((uint32_t)0x10000080)
bogdanm 0:9b334a45a8ff 241 #define IRDA_IT_TC ((uint32_t)0x10000040)
bogdanm 0:9b334a45a8ff 242 #define IRDA_IT_RXNE ((uint32_t)0x10000020)
bogdanm 0:9b334a45a8ff 243 #define IRDA_IT_IDLE ((uint32_t)0x10000010)
bogdanm 0:9b334a45a8ff 244
bogdanm 0:9b334a45a8ff 245 #define IRDA_IT_LBD ((uint32_t)0x20000040)
bogdanm 0:9b334a45a8ff 246
bogdanm 0:9b334a45a8ff 247 #define IRDA_IT_CTS ((uint32_t)0x30000400)
bogdanm 0:9b334a45a8ff 248 #define IRDA_IT_ERR ((uint32_t)0x30000001)
bogdanm 0:9b334a45a8ff 249
bogdanm 0:9b334a45a8ff 250 /**
bogdanm 0:9b334a45a8ff 251 * @}
bogdanm 0:9b334a45a8ff 252 */
bogdanm 0:9b334a45a8ff 253
bogdanm 0:9b334a45a8ff 254 /** @defgroup IRDA_Interruption_Mask IRDA interruptions flag mask
bogdanm 0:9b334a45a8ff 255 * @{
bogdanm 0:9b334a45a8ff 256 */
bogdanm 0:9b334a45a8ff 257 #define IRDA_IT_MASK ((uint32_t)0x0000FFFF)
bogdanm 0:9b334a45a8ff 258 /**
bogdanm 0:9b334a45a8ff 259 * @}
bogdanm 0:9b334a45a8ff 260 */
bogdanm 0:9b334a45a8ff 261
bogdanm 0:9b334a45a8ff 262 /**
bogdanm 0:9b334a45a8ff 263 * @}
bogdanm 0:9b334a45a8ff 264 */
bogdanm 0:9b334a45a8ff 265
bogdanm 0:9b334a45a8ff 266 /* Exported macro ------------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 267 /** @defgroup IRDA_Exported_Macros IRDA Exported Macros
bogdanm 0:9b334a45a8ff 268 * @{
bogdanm 0:9b334a45a8ff 269 */
bogdanm 0:9b334a45a8ff 270
bogdanm 0:9b334a45a8ff 271 /** @brief Reset IRDA handle state
bogdanm 0:9b334a45a8ff 272 * @param __HANDLE__: specifies the IRDA Handle.
bogdanm 0:9b334a45a8ff 273 * This parameter can be USARTx with x: 1, 2 or 3, or UARTy with y:4 or 5 to select the USART or
bogdanm 0:9b334a45a8ff 274 * UART peripheral (availability depending on device for UARTy).
bogdanm 0:9b334a45a8ff 275 * @retval None
bogdanm 0:9b334a45a8ff 276 */
bogdanm 0:9b334a45a8ff 277 #define __HAL_IRDA_RESET_HANDLE_STATE(__HANDLE__) ((__HANDLE__)->State = HAL_IRDA_STATE_RESET)
bogdanm 0:9b334a45a8ff 278
bogdanm 0:9b334a45a8ff 279 /** @brief Flushs the IRDA DR register
bogdanm 0:9b334a45a8ff 280 * @param __HANDLE__: specifies the USART Handle.
bogdanm 0:9b334a45a8ff 281 * This parameter can be USARTx with x: 1, 2 or 3, or UARTy with y:4 or 5 to select the USART or
bogdanm 0:9b334a45a8ff 282 * UART peripheral (availability depending on device for UARTy).
bogdanm 0:9b334a45a8ff 283 */
bogdanm 0:9b334a45a8ff 284 #define __HAL_IRDA_FLUSH_DRREGISTER(__HANDLE__) ((__HANDLE__)->Instance->DR)
bogdanm 0:9b334a45a8ff 285
bogdanm 0:9b334a45a8ff 286 /** @brief Checks whether the specified IRDA flag is set or not.
bogdanm 0:9b334a45a8ff 287 * @param __HANDLE__: specifies the IRDA Handle.
bogdanm 0:9b334a45a8ff 288 * This parameter can be USARTx with x: 1, 2 or 3, or UARTy with y:4 or 5 to select the USART or
bogdanm 0:9b334a45a8ff 289 * UART peripheral (availability depending on device for UARTy).
bogdanm 0:9b334a45a8ff 290 * @param __FLAG__: specifies the flag to check.
bogdanm 0:9b334a45a8ff 291 * This parameter can be one of the following values:
bogdanm 0:9b334a45a8ff 292 * @arg IRDA_FLAG_TXE: Transmit data register empty flag
bogdanm 0:9b334a45a8ff 293 * @arg IRDA_FLAG_TC: Transmission Complete flag
bogdanm 0:9b334a45a8ff 294 * @arg IRDA_FLAG_RXNE: Receive data register not empty flag
bogdanm 0:9b334a45a8ff 295 * @arg IRDA_FLAG_IDLE: Idle Line detection flag
bogdanm 0:9b334a45a8ff 296 * @arg IRDA_FLAG_ORE: OverRun Error flag
bogdanm 0:9b334a45a8ff 297 * @arg IRDA_FLAG_NE: Noise Error flag
bogdanm 0:9b334a45a8ff 298 * @arg IRDA_FLAG_FE: Framing Error flag
bogdanm 0:9b334a45a8ff 299 * @arg IRDA_FLAG_PE: Parity Error flag
bogdanm 0:9b334a45a8ff 300 * @retval The new state of __FLAG__ (TRUE or FALSE).
bogdanm 0:9b334a45a8ff 301 */
bogdanm 0:9b334a45a8ff 302 #define __HAL_IRDA_GET_FLAG(__HANDLE__, __FLAG__) (((__HANDLE__)->Instance->SR & (__FLAG__)) == (__FLAG__))
bogdanm 0:9b334a45a8ff 303
bogdanm 0:9b334a45a8ff 304 /** @brief Clears the specified IRDA pending flag.
bogdanm 0:9b334a45a8ff 305 * @param __HANDLE__: specifies the IRDA Handle.
bogdanm 0:9b334a45a8ff 306 * This parameter can be USARTx with x: 1, 2 or 3, or UARTy with y:4 or 5 to select the USART or
bogdanm 0:9b334a45a8ff 307 * UART peripheral (availability depending on device for UARTy).
bogdanm 0:9b334a45a8ff 308 * @param __FLAG__: specifies the flag to check.
bogdanm 0:9b334a45a8ff 309 * This parameter can be any combination of the following values:
bogdanm 0:9b334a45a8ff 310 * @arg IRDA_FLAG_TC: Transmission Complete flag.
bogdanm 0:9b334a45a8ff 311 * @arg IRDA_FLAG_RXNE: Receive data register not empty flag.
bogdanm 0:9b334a45a8ff 312 *
bogdanm 0:9b334a45a8ff 313 * @note PE (Parity error), FE (Framing error), NE (Noise error), ORE (OverRun
bogdanm 0:9b334a45a8ff 314 * error) and IDLE (Idle line detected) flags are cleared by software
bogdanm 0:9b334a45a8ff 315 * sequence: a read operation to USART_SR register followed by a read
bogdanm 0:9b334a45a8ff 316 * operation to USART_DR register.
bogdanm 0:9b334a45a8ff 317 * @note RXNE flag can be also cleared by a read to the USART_DR register.
bogdanm 0:9b334a45a8ff 318 * @note TC flag can be also cleared by software sequence: a read operation to
bogdanm 0:9b334a45a8ff 319 * USART_SR register followed by a write operation to USART_DR register.
bogdanm 0:9b334a45a8ff 320 * @note TXE flag is cleared only by a write to the USART_DR register.
bogdanm 0:9b334a45a8ff 321 *
bogdanm 0:9b334a45a8ff 322 * @retval None
bogdanm 0:9b334a45a8ff 323 */
bogdanm 0:9b334a45a8ff 324 #define __HAL_IRDA_CLEAR_FLAG(__HANDLE__, __FLAG__) ((__HANDLE__)->Instance->SR = ~(__FLAG__))
bogdanm 0:9b334a45a8ff 325
bogdanm 0:9b334a45a8ff 326 /** @brief Clear the IRDA PE pending flag.
bogdanm 0:9b334a45a8ff 327 * @param __HANDLE__: specifies the IRDA Handle.
bogdanm 0:9b334a45a8ff 328 * This parameter can be USARTx with x: 1, 2 or 3, or UARTy with y:4 or 5 to select the USART or
bogdanm 0:9b334a45a8ff 329 * UART peripheral (availability depending on device for UARTy).
bogdanm 0:9b334a45a8ff 330 * @retval None
bogdanm 0:9b334a45a8ff 331 */
bogdanm 0:9b334a45a8ff 332 #define __HAL_IRDA_CLEAR_PEFLAG(__HANDLE__) do{(__HANDLE__)->Instance->SR;\
bogdanm 0:9b334a45a8ff 333 (__HANDLE__)->Instance->DR;}while(0)
bogdanm 0:9b334a45a8ff 334 /** @brief Clear the IRDA FE pending flag.
bogdanm 0:9b334a45a8ff 335 * @param __HANDLE__: specifies the IRDA Handle.
bogdanm 0:9b334a45a8ff 336 * This parameter can be USARTx with x: 1, 2 or 3, or UARTy with y:4 or 5 to select the USART or
bogdanm 0:9b334a45a8ff 337 * UART peripheral (availability depending on device for UARTy).
bogdanm 0:9b334a45a8ff 338 * @retval None
bogdanm 0:9b334a45a8ff 339 */
bogdanm 0:9b334a45a8ff 340 #define __HAL_IRDA_CLEAR_FEFLAG(__HANDLE__) __HAL_IRDA_CLEAR_PEFLAG(__HANDLE__)
bogdanm 0:9b334a45a8ff 341
bogdanm 0:9b334a45a8ff 342 /** @brief Clear the IRDA NE pending flag.
bogdanm 0:9b334a45a8ff 343 * @param __HANDLE__: specifies the IRDA Handle.
bogdanm 0:9b334a45a8ff 344 * This parameter can be USARTx with x: 1, 2 or 3, or UARTy with y:4 or 5 to select the USART or
bogdanm 0:9b334a45a8ff 345 * UART peripheral (availability depending on device for UARTy).
bogdanm 0:9b334a45a8ff 346 * @retval None
bogdanm 0:9b334a45a8ff 347 */
bogdanm 0:9b334a45a8ff 348 #define __HAL_IRDA_CLEAR_NEFLAG(__HANDLE__) __HAL_IRDA_CLEAR_PEFLAG(__HANDLE__)
bogdanm 0:9b334a45a8ff 349
bogdanm 0:9b334a45a8ff 350 /** @brief Clear the IRDA ORE pending flag.
bogdanm 0:9b334a45a8ff 351 * @param __HANDLE__: specifies the IRDA Handle.
bogdanm 0:9b334a45a8ff 352 * This parameter can be USARTx with x: 1, 2 or 3, or UARTy with y:4 or 5 to select the USART or
bogdanm 0:9b334a45a8ff 353 * UART peripheral (availability depending on device for UARTy).
bogdanm 0:9b334a45a8ff 354 * @retval None
bogdanm 0:9b334a45a8ff 355 */
bogdanm 0:9b334a45a8ff 356 #define __HAL_IRDA_CLEAR_OREFLAG(__HANDLE__) __HAL_IRDA_CLEAR_PEFLAG(__HANDLE__)
bogdanm 0:9b334a45a8ff 357
bogdanm 0:9b334a45a8ff 358 /** @brief Clear the IRDA IDLE pending flag.
bogdanm 0:9b334a45a8ff 359 * @param __HANDLE__: specifies the IRDA Handle.
bogdanm 0:9b334a45a8ff 360 * This parameter can be USARTx with x: 1, 2 or 3, or UARTy with y:4 or 5 to select the USART or
bogdanm 0:9b334a45a8ff 361 * UART peripheral (availability depending on device for UARTy).
bogdanm 0:9b334a45a8ff 362 * @retval None
bogdanm 0:9b334a45a8ff 363 */
bogdanm 0:9b334a45a8ff 364 #define __HAL_IRDA_CLEAR_IDLEFLAG(__HANDLE__) __HAL_IRDA_CLEAR_PEFLAG(__HANDLE__)
bogdanm 0:9b334a45a8ff 365
bogdanm 0:9b334a45a8ff 366 /** @brief Enables the specified IRDA interrupt.
bogdanm 0:9b334a45a8ff 367 * @param __HANDLE__: specifies the IRDA Handle.
bogdanm 0:9b334a45a8ff 368 * This parameter can be USARTx with x: 1, 2 or 3, or UARTy with y:4 or 5 to select the USART or
bogdanm 0:9b334a45a8ff 369 * UART peripheral (availability depending on device for UARTy).
bogdanm 0:9b334a45a8ff 370 * @param __INTERRUPT__: specifies the IRDA interrupt source to enable.
bogdanm 0:9b334a45a8ff 371 * This parameter can be one of the following values:
bogdanm 0:9b334a45a8ff 372 * @arg IRDA_IT_TXE: Transmit Data Register empty interrupt
bogdanm 0:9b334a45a8ff 373 * @arg IRDA_IT_TC: Transmission complete interrupt
bogdanm 0:9b334a45a8ff 374 * @arg IRDA_IT_RXNE: Receive Data register not empty interrupt
bogdanm 0:9b334a45a8ff 375 * @arg IRDA_IT_IDLE: Idle line detection interrupt
bogdanm 0:9b334a45a8ff 376 * @arg IRDA_IT_PE: Parity Error interrupt
bogdanm 0:9b334a45a8ff 377 * @arg IRDA_IT_ERR: Error interrupt(Frame error, noise error, overrun error)
bogdanm 0:9b334a45a8ff 378 * @retval None
bogdanm 0:9b334a45a8ff 379 */
bogdanm 0:9b334a45a8ff 380 #define __HAL_IRDA_ENABLE_IT(__HANDLE__, __INTERRUPT__) ((((__INTERRUPT__) >> 28) == 1)? ((__HANDLE__)->Instance->CR1 |= ((__INTERRUPT__) & IRDA_IT_MASK)): \
bogdanm 0:9b334a45a8ff 381 (((__INTERRUPT__) >> 28) == 2)? ((__HANDLE__)->Instance->CR2 |= ((__INTERRUPT__) & IRDA_IT_MASK)): \
bogdanm 0:9b334a45a8ff 382 ((__HANDLE__)->Instance->CR3 |= ((__INTERRUPT__) & IRDA_IT_MASK)))
bogdanm 0:9b334a45a8ff 383
bogdanm 0:9b334a45a8ff 384 /** @brief Disables the specified IRDA interrupt.
bogdanm 0:9b334a45a8ff 385 * @param __HANDLE__: specifies the IRDA Handle.
bogdanm 0:9b334a45a8ff 386 * This parameter can be USARTx with x: 1, 2 or 3, or UARTy with y:4 or 5 to select the USART or
bogdanm 0:9b334a45a8ff 387 * UART peripheral (availability depending on device for UARTy).
bogdanm 0:9b334a45a8ff 388 * @param __INTERRUPT__: specifies the IRDA interrupt source to disable.
bogdanm 0:9b334a45a8ff 389 * This parameter can be one of the following values:
bogdanm 0:9b334a45a8ff 390 * @arg IRDA_IT_TXE: Transmit Data Register empty interrupt
bogdanm 0:9b334a45a8ff 391 * @arg IRDA_IT_TC: Transmission complete interrupt
bogdanm 0:9b334a45a8ff 392 * @arg IRDA_IT_RXNE: Receive Data register not empty interrupt
bogdanm 0:9b334a45a8ff 393 * @arg IRDA_IT_IDLE: Idle line detection interrupt
bogdanm 0:9b334a45a8ff 394 * @arg IRDA_IT_PE: Parity Error interrupt
bogdanm 0:9b334a45a8ff 395 * @arg IRDA_IT_ERR: Error interrupt(Frame error, noise error, overrun error)
bogdanm 0:9b334a45a8ff 396 * @retval None
bogdanm 0:9b334a45a8ff 397 */
bogdanm 0:9b334a45a8ff 398 #define __HAL_IRDA_DISABLE_IT(__HANDLE__, __INTERRUPT__) ((((__INTERRUPT__) >> 28) == 1)? ((__HANDLE__)->Instance->CR1 &= ~((__INTERRUPT__) & IRDA_IT_MASK)): \
bogdanm 0:9b334a45a8ff 399 (((__INTERRUPT__) >> 28) == 2)? ((__HANDLE__)->Instance->CR2 &= ~((__INTERRUPT__) & IRDA_IT_MASK)): \
bogdanm 0:9b334a45a8ff 400 ((__HANDLE__)->Instance->CR3 &= ~ ((__INTERRUPT__) & IRDA_IT_MASK)))
bogdanm 0:9b334a45a8ff 401
bogdanm 0:9b334a45a8ff 402 /** @brief Checks whether the specified IRDA interrupt has occurred or not.
bogdanm 0:9b334a45a8ff 403 * @param __HANDLE__: specifies the IRDA Handle.
bogdanm 0:9b334a45a8ff 404 * This parameter can be USARTx with x: 1, 2 or 3, or UARTy with y:4 or 5 to select the USART or
bogdanm 0:9b334a45a8ff 405 * UART peripheral (availability depending on device for UARTy).
bogdanm 0:9b334a45a8ff 406 * @param __IT__: specifies the IRDA interrupt source to check.
bogdanm 0:9b334a45a8ff 407 * This parameter can be one of the following values:
bogdanm 0:9b334a45a8ff 408 * @arg IRDA_IT_TXE: Transmit Data Register empty interrupt
bogdanm 0:9b334a45a8ff 409 * @arg IRDA_IT_TC: Transmission complete interrupt
bogdanm 0:9b334a45a8ff 410 * @arg IRDA_IT_RXNE: Receive Data register not empty interrupt
bogdanm 0:9b334a45a8ff 411 * @arg IRDA_IT_IDLE: Idle line detection interrupt
bogdanm 0:9b334a45a8ff 412 * @arg USART_IT_ERR: Error interrupt
bogdanm 0:9b334a45a8ff 413 * @arg IRDA_IT_PE: Parity Error interrupt
bogdanm 0:9b334a45a8ff 414 * @retval The new state of __IT__ (TRUE or FALSE).
bogdanm 0:9b334a45a8ff 415 */
bogdanm 0:9b334a45a8ff 416 #define __HAL_IRDA_GET_IT_SOURCE(__HANDLE__, __IT__) (((((__IT__) >> 28) == 1)? (__HANDLE__)->Instance->CR1:(((((uint32_t)(__IT__)) >> 28) == 2)? \
bogdanm 0:9b334a45a8ff 417 (__HANDLE__)->Instance->CR2 : (__HANDLE__)->Instance->CR3)) & (((uint32_t)(__IT__)) & IRDA_IT_MASK))
bogdanm 0:9b334a45a8ff 418
bogdanm 0:9b334a45a8ff 419 /** @brief Enable UART/USART associated to IRDA Handle
bogdanm 0:9b334a45a8ff 420 * @param __HANDLE__: specifies the IRDA Handle.
bogdanm 0:9b334a45a8ff 421 * This parameter can be USARTx with x: 1, 2 or 3, or UARTy with y:4 or 5 to select the USART or
bogdanm 0:9b334a45a8ff 422 * UART peripheral (availability depending on device for UARTy).
bogdanm 0:9b334a45a8ff 423 * @retval None
bogdanm 0:9b334a45a8ff 424 */
bogdanm 0:9b334a45a8ff 425 #define __HAL_IRDA_ENABLE(__HANDLE__) (SET_BIT((__HANDLE__)->Instance->CR1, USART_CR1_UE))
bogdanm 0:9b334a45a8ff 426
bogdanm 0:9b334a45a8ff 427 /** @brief Disable UART/USART associated to IRDA Handle
bogdanm 0:9b334a45a8ff 428 * @param __HANDLE__: specifies the IRDA Handle.
bogdanm 0:9b334a45a8ff 429 * This parameter can be USARTx with x: 1, 2 or 3, or UARTy with y:4 or 5 to select the USART or
bogdanm 0:9b334a45a8ff 430 * UART peripheral (availability depending on device for UARTy).
bogdanm 0:9b334a45a8ff 431 * @retval None
bogdanm 0:9b334a45a8ff 432 */
bogdanm 0:9b334a45a8ff 433 #define __HAL_IRDA_DISABLE(__HANDLE__) (CLEAR_BIT((__HANDLE__)->Instance->CR1, USART_CR1_UE))
bogdanm 0:9b334a45a8ff 434
bogdanm 0:9b334a45a8ff 435 /**
bogdanm 0:9b334a45a8ff 436 * @}
bogdanm 0:9b334a45a8ff 437 */
bogdanm 0:9b334a45a8ff 438
bogdanm 0:9b334a45a8ff 439 /* Private macros --------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 440 /** @defgroup IRDA_Private_Macros IRDA Private Macros
bogdanm 0:9b334a45a8ff 441 * @{
bogdanm 0:9b334a45a8ff 442 */
bogdanm 0:9b334a45a8ff 443
bogdanm 0:9b334a45a8ff 444 #define IRDA_DIV(__PCLK__, __BAUD__) (((__PCLK__)*25)/(4*(__BAUD__)))
bogdanm 0:9b334a45a8ff 445 #define IRDA_DIVMANT(__PCLK__, __BAUD__) (IRDA_DIV((__PCLK__), (__BAUD__))/100)
bogdanm 0:9b334a45a8ff 446 #define IRDA_DIVFRAQ(__PCLK__, __BAUD__) (((IRDA_DIV((__PCLK__), (__BAUD__)) - (IRDA_DIVMANT((__PCLK__), (__BAUD__)) * 100)) * 16 + 50) / 100)
bogdanm 0:9b334a45a8ff 447 #define IRDA_BRR(__PCLK__, __BAUD__) ((IRDA_DIVMANT((__PCLK__), (__BAUD__)) << 4)|(IRDA_DIVFRAQ((__PCLK__), (__BAUD__)) & 0x0F))
bogdanm 0:9b334a45a8ff 448
bogdanm 0:9b334a45a8ff 449 /** @brief Ensure that IRDA Baud rate is less or equal to maximum value
bogdanm 0:9b334a45a8ff 450 * @param __BAUDRATE__: specifies the IRDA Baudrate set by the user.
bogdanm 0:9b334a45a8ff 451 * @retval True or False
bogdanm 0:9b334a45a8ff 452 */
bogdanm 0:9b334a45a8ff 453 #define IS_IRDA_BAUDRATE(__BAUDRATE__) ((__BAUDRATE__) < 115201)
bogdanm 0:9b334a45a8ff 454
bogdanm 0:9b334a45a8ff 455 /**
bogdanm 0:9b334a45a8ff 456 * @}
bogdanm 0:9b334a45a8ff 457 */
bogdanm 0:9b334a45a8ff 458
bogdanm 0:9b334a45a8ff 459
bogdanm 0:9b334a45a8ff 460 /* Exported functions --------------------------------------------------------*/
bogdanm 0:9b334a45a8ff 461
bogdanm 0:9b334a45a8ff 462 /** @addtogroup IRDA_Exported_Functions IRDA Exported Functions
bogdanm 0:9b334a45a8ff 463 * @{
bogdanm 0:9b334a45a8ff 464 */
bogdanm 0:9b334a45a8ff 465
bogdanm 0:9b334a45a8ff 466 /** @addtogroup IRDA_Exported_Functions_Group1 IrDA Initialization and de-initialization functions
bogdanm 0:9b334a45a8ff 467 * @{
bogdanm 0:9b334a45a8ff 468 */
bogdanm 0:9b334a45a8ff 469
bogdanm 0:9b334a45a8ff 470 /* Initialization and de-initialization functions ****************************/
bogdanm 0:9b334a45a8ff 471 HAL_StatusTypeDef HAL_IRDA_Init(IRDA_HandleTypeDef *hirda);
bogdanm 0:9b334a45a8ff 472 HAL_StatusTypeDef HAL_IRDA_DeInit(IRDA_HandleTypeDef *hirda);
bogdanm 0:9b334a45a8ff 473 void HAL_IRDA_MspInit(IRDA_HandleTypeDef *hirda);
bogdanm 0:9b334a45a8ff 474 void HAL_IRDA_MspDeInit(IRDA_HandleTypeDef *hirda);
bogdanm 0:9b334a45a8ff 475
bogdanm 0:9b334a45a8ff 476 /**
bogdanm 0:9b334a45a8ff 477 * @}
bogdanm 0:9b334a45a8ff 478 */
bogdanm 0:9b334a45a8ff 479
bogdanm 0:9b334a45a8ff 480 /** @addtogroup IRDA_Exported_Functions_Group2 IO operation functions
bogdanm 0:9b334a45a8ff 481 * @{
bogdanm 0:9b334a45a8ff 482 */
bogdanm 0:9b334a45a8ff 483
bogdanm 0:9b334a45a8ff 484 /* IO operation functions *****************************************************/
bogdanm 0:9b334a45a8ff 485 HAL_StatusTypeDef HAL_IRDA_Transmit(IRDA_HandleTypeDef *hirda, uint8_t *pData, uint16_t Size, uint32_t Timeout);
bogdanm 0:9b334a45a8ff 486 HAL_StatusTypeDef HAL_IRDA_Receive(IRDA_HandleTypeDef *hirda, uint8_t *pData, uint16_t Size, uint32_t Timeout);
bogdanm 0:9b334a45a8ff 487 HAL_StatusTypeDef HAL_IRDA_Transmit_IT(IRDA_HandleTypeDef *hirda, uint8_t *pData, uint16_t Size);
bogdanm 0:9b334a45a8ff 488 HAL_StatusTypeDef HAL_IRDA_Receive_IT(IRDA_HandleTypeDef *hirda, uint8_t *pData, uint16_t Size);
bogdanm 0:9b334a45a8ff 489 HAL_StatusTypeDef HAL_IRDA_Transmit_DMA(IRDA_HandleTypeDef *hirda, uint8_t *pData, uint16_t Size);
bogdanm 0:9b334a45a8ff 490 HAL_StatusTypeDef HAL_IRDA_Receive_DMA(IRDA_HandleTypeDef *hirda, uint8_t *pData, uint16_t Size);
bogdanm 0:9b334a45a8ff 491 HAL_StatusTypeDef HAL_IRDA_DMAPause(IRDA_HandleTypeDef *hirda);
bogdanm 0:9b334a45a8ff 492 HAL_StatusTypeDef HAL_IRDA_DMAResume(IRDA_HandleTypeDef *hirda);
bogdanm 0:9b334a45a8ff 493 HAL_StatusTypeDef HAL_IRDA_DMAStop(IRDA_HandleTypeDef *hirda);
bogdanm 0:9b334a45a8ff 494 void HAL_IRDA_IRQHandler(IRDA_HandleTypeDef *hirda);
bogdanm 0:9b334a45a8ff 495 void HAL_IRDA_TxCpltCallback(IRDA_HandleTypeDef *hirda);
bogdanm 0:9b334a45a8ff 496 void HAL_IRDA_RxCpltCallback(IRDA_HandleTypeDef *hirda);
bogdanm 0:9b334a45a8ff 497 void HAL_IRDA_TxHalfCpltCallback(IRDA_HandleTypeDef *hirda);
bogdanm 0:9b334a45a8ff 498 void HAL_IRDA_RxHalfCpltCallback(IRDA_HandleTypeDef *hirda);
bogdanm 0:9b334a45a8ff 499 void HAL_IRDA_ErrorCallback(IRDA_HandleTypeDef *hirda);
bogdanm 0:9b334a45a8ff 500
bogdanm 0:9b334a45a8ff 501 /**
bogdanm 0:9b334a45a8ff 502 * @}
bogdanm 0:9b334a45a8ff 503 */
bogdanm 0:9b334a45a8ff 504
bogdanm 0:9b334a45a8ff 505 /** @addtogroup IRDA_Exported_Functions_Group3 Peripheral State and Errors functions
bogdanm 0:9b334a45a8ff 506 * @{
bogdanm 0:9b334a45a8ff 507 */
bogdanm 0:9b334a45a8ff 508
bogdanm 0:9b334a45a8ff 509 /* Peripheral State and Error functions ***************************************/
bogdanm 0:9b334a45a8ff 510 HAL_IRDA_StateTypeDef HAL_IRDA_GetState(IRDA_HandleTypeDef *hirda);
bogdanm 0:9b334a45a8ff 511 uint32_t HAL_IRDA_GetError(IRDA_HandleTypeDef *hirda);
bogdanm 0:9b334a45a8ff 512
bogdanm 0:9b334a45a8ff 513 /**
bogdanm 0:9b334a45a8ff 514 * @}
bogdanm 0:9b334a45a8ff 515 */
bogdanm 0:9b334a45a8ff 516
bogdanm 0:9b334a45a8ff 517 /**
bogdanm 0:9b334a45a8ff 518 * @}
bogdanm 0:9b334a45a8ff 519 */
bogdanm 0:9b334a45a8ff 520
bogdanm 0:9b334a45a8ff 521 /**
bogdanm 0:9b334a45a8ff 522 * @}
bogdanm 0:9b334a45a8ff 523 */
bogdanm 0:9b334a45a8ff 524
bogdanm 0:9b334a45a8ff 525 /**
bogdanm 0:9b334a45a8ff 526 * @}
bogdanm 0:9b334a45a8ff 527 */
bogdanm 0:9b334a45a8ff 528
bogdanm 0:9b334a45a8ff 529 #ifdef __cplusplus
bogdanm 0:9b334a45a8ff 530 }
bogdanm 0:9b334a45a8ff 531 #endif
bogdanm 0:9b334a45a8ff 532
bogdanm 0:9b334a45a8ff 533 #endif /* __STM32L1xx_HAL_IRDA_H */
bogdanm 0:9b334a45a8ff 534
bogdanm 0:9b334a45a8ff 535 /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/