Fork of the official mbed C/C SDK provides the software platform and libraries to build your applications for RenBED.

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Fork of mbed by mbed official

Committer:
Kojto
Date:
Wed May 13 08:08:21 2015 +0200
Revision:
99:dbbf35b96557
Parent:
86:04dd9b1680ae
Child:
106:ba1f97679dad
Release 99 of the mbed library

Changes:
- new targets - MAXWSNENV, DISCO_L053C8
- STM32F4xx - ST Cube driver
- KSDK mcu - SPI timing fix
- Nordic - update to softdevice s130

Who changed what in which revision?

UserRevisionLine numberNew contents of line
bogdanm 86:04dd9b1680ae 1 /**
bogdanm 86:04dd9b1680ae 2 ******************************************************************************
bogdanm 86:04dd9b1680ae 3 * @file stm32f4xx_hal_spi.h
bogdanm 86:04dd9b1680ae 4 * @author MCD Application Team
Kojto 99:dbbf35b96557 5 * @version V1.3.0
Kojto 99:dbbf35b96557 6 * @date 09-March-2015
bogdanm 86:04dd9b1680ae 7 * @brief Header file of SPI HAL module.
bogdanm 86:04dd9b1680ae 8 ******************************************************************************
bogdanm 86:04dd9b1680ae 9 * @attention
bogdanm 86:04dd9b1680ae 10 *
Kojto 99:dbbf35b96557 11 * <h2><center>&copy; COPYRIGHT(c) 2015 STMicroelectronics</center></h2>
bogdanm 86:04dd9b1680ae 12 *
bogdanm 86:04dd9b1680ae 13 * Redistribution and use in source and binary forms, with or without modification,
bogdanm 86:04dd9b1680ae 14 * are permitted provided that the following conditions are met:
bogdanm 86:04dd9b1680ae 15 * 1. Redistributions of source code must retain the above copyright notice,
bogdanm 86:04dd9b1680ae 16 * this list of conditions and the following disclaimer.
bogdanm 86:04dd9b1680ae 17 * 2. Redistributions in binary form must reproduce the above copyright notice,
bogdanm 86:04dd9b1680ae 18 * this list of conditions and the following disclaimer in the documentation
bogdanm 86:04dd9b1680ae 19 * and/or other materials provided with the distribution.
bogdanm 86:04dd9b1680ae 20 * 3. Neither the name of STMicroelectronics nor the names of its contributors
bogdanm 86:04dd9b1680ae 21 * may be used to endorse or promote products derived from this software
bogdanm 86:04dd9b1680ae 22 * without specific prior written permission.
bogdanm 86:04dd9b1680ae 23 *
bogdanm 86:04dd9b1680ae 24 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
bogdanm 86:04dd9b1680ae 25 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
bogdanm 86:04dd9b1680ae 26 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
bogdanm 86:04dd9b1680ae 27 * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
bogdanm 86:04dd9b1680ae 28 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
bogdanm 86:04dd9b1680ae 29 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
bogdanm 86:04dd9b1680ae 30 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
bogdanm 86:04dd9b1680ae 31 * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
bogdanm 86:04dd9b1680ae 32 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
bogdanm 86:04dd9b1680ae 33 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
bogdanm 86:04dd9b1680ae 34 *
bogdanm 86:04dd9b1680ae 35 ******************************************************************************
bogdanm 86:04dd9b1680ae 36 */
bogdanm 86:04dd9b1680ae 37
bogdanm 86:04dd9b1680ae 38 /* Define to prevent recursive inclusion -------------------------------------*/
bogdanm 86:04dd9b1680ae 39 #ifndef __STM32F4xx_HAL_SPI_H
bogdanm 86:04dd9b1680ae 40 #define __STM32F4xx_HAL_SPI_H
bogdanm 86:04dd9b1680ae 41
bogdanm 86:04dd9b1680ae 42 #ifdef __cplusplus
bogdanm 86:04dd9b1680ae 43 extern "C" {
bogdanm 86:04dd9b1680ae 44 #endif
bogdanm 86:04dd9b1680ae 45
bogdanm 86:04dd9b1680ae 46 /* Includes ------------------------------------------------------------------*/
bogdanm 86:04dd9b1680ae 47 #include "stm32f4xx_hal_def.h"
bogdanm 86:04dd9b1680ae 48
bogdanm 86:04dd9b1680ae 49 /** @addtogroup STM32F4xx_HAL_Driver
bogdanm 86:04dd9b1680ae 50 * @{
bogdanm 86:04dd9b1680ae 51 */
bogdanm 86:04dd9b1680ae 52
bogdanm 86:04dd9b1680ae 53 /** @addtogroup SPI
bogdanm 86:04dd9b1680ae 54 * @{
bogdanm 86:04dd9b1680ae 55 */
bogdanm 86:04dd9b1680ae 56
bogdanm 86:04dd9b1680ae 57 /* Exported types ------------------------------------------------------------*/
Kojto 99:dbbf35b96557 58 /** @defgroup SPI_Exported_Types SPI Exported Types
Kojto 99:dbbf35b96557 59 * @{
Kojto 99:dbbf35b96557 60 */
Kojto 99:dbbf35b96557 61
bogdanm 86:04dd9b1680ae 62 /**
bogdanm 86:04dd9b1680ae 63 * @brief SPI Configuration Structure definition
bogdanm 86:04dd9b1680ae 64 */
bogdanm 86:04dd9b1680ae 65 typedef struct
bogdanm 86:04dd9b1680ae 66 {
bogdanm 86:04dd9b1680ae 67 uint32_t Mode; /*!< Specifies the SPI operating mode.
bogdanm 86:04dd9b1680ae 68 This parameter can be a value of @ref SPI_mode */
bogdanm 86:04dd9b1680ae 69
bogdanm 86:04dd9b1680ae 70 uint32_t Direction; /*!< Specifies the SPI Directional mode state.
bogdanm 86:04dd9b1680ae 71 This parameter can be a value of @ref SPI_Direction_mode */
bogdanm 86:04dd9b1680ae 72
bogdanm 86:04dd9b1680ae 73 uint32_t DataSize; /*!< Specifies the SPI data size.
bogdanm 86:04dd9b1680ae 74 This parameter can be a value of @ref SPI_data_size */
bogdanm 86:04dd9b1680ae 75
bogdanm 86:04dd9b1680ae 76 uint32_t CLKPolarity; /*!< Specifies the serial clock steady state.
bogdanm 86:04dd9b1680ae 77 This parameter can be a value of @ref SPI_Clock_Polarity */
bogdanm 86:04dd9b1680ae 78
bogdanm 86:04dd9b1680ae 79 uint32_t CLKPhase; /*!< Specifies the clock active edge for the bit capture.
bogdanm 86:04dd9b1680ae 80 This parameter can be a value of @ref SPI_Clock_Phase */
bogdanm 86:04dd9b1680ae 81
bogdanm 86:04dd9b1680ae 82 uint32_t NSS; /*!< Specifies whether the NSS signal is managed by
bogdanm 86:04dd9b1680ae 83 hardware (NSS pin) or by software using the SSI bit.
bogdanm 86:04dd9b1680ae 84 This parameter can be a value of @ref SPI_Slave_Select_management */
bogdanm 86:04dd9b1680ae 85
bogdanm 86:04dd9b1680ae 86 uint32_t BaudRatePrescaler; /*!< Specifies the Baud Rate prescaler value which will be
bogdanm 86:04dd9b1680ae 87 used to configure the transmit and receive SCK clock.
bogdanm 86:04dd9b1680ae 88 This parameter can be a value of @ref SPI_BaudRate_Prescaler
bogdanm 86:04dd9b1680ae 89 @note The communication clock is derived from the master
bogdanm 86:04dd9b1680ae 90 clock. The slave clock does not need to be set */
bogdanm 86:04dd9b1680ae 91
bogdanm 86:04dd9b1680ae 92 uint32_t FirstBit; /*!< Specifies whether data transfers start from MSB or LSB bit.
bogdanm 86:04dd9b1680ae 93 This parameter can be a value of @ref SPI_MSB_LSB_transmission */
bogdanm 86:04dd9b1680ae 94
bogdanm 86:04dd9b1680ae 95 uint32_t TIMode; /*!< Specifies if the TI mode is enabled or not.
bogdanm 86:04dd9b1680ae 96 This parameter can be a value of @ref SPI_TI_mode */
bogdanm 86:04dd9b1680ae 97
bogdanm 86:04dd9b1680ae 98 uint32_t CRCCalculation; /*!< Specifies if the CRC calculation is enabled or not.
bogdanm 86:04dd9b1680ae 99 This parameter can be a value of @ref SPI_CRC_Calculation */
bogdanm 86:04dd9b1680ae 100
bogdanm 86:04dd9b1680ae 101 uint32_t CRCPolynomial; /*!< Specifies the polynomial used for the CRC calculation.
bogdanm 86:04dd9b1680ae 102 This parameter must be a number between Min_Data = 0 and Max_Data = 65535 */
bogdanm 86:04dd9b1680ae 103
bogdanm 86:04dd9b1680ae 104 }SPI_InitTypeDef;
bogdanm 86:04dd9b1680ae 105
bogdanm 86:04dd9b1680ae 106 /**
bogdanm 86:04dd9b1680ae 107 * @brief HAL SPI State structure definition
bogdanm 86:04dd9b1680ae 108 */
bogdanm 86:04dd9b1680ae 109 typedef enum
bogdanm 86:04dd9b1680ae 110 {
bogdanm 86:04dd9b1680ae 111 HAL_SPI_STATE_RESET = 0x00, /*!< SPI not yet initialized or disabled */
bogdanm 86:04dd9b1680ae 112 HAL_SPI_STATE_READY = 0x01, /*!< SPI initialized and ready for use */
bogdanm 86:04dd9b1680ae 113 HAL_SPI_STATE_BUSY = 0x02, /*!< SPI process is ongoing */
bogdanm 86:04dd9b1680ae 114 HAL_SPI_STATE_BUSY_TX = 0x12, /*!< Data Transmission process is ongoing */
bogdanm 86:04dd9b1680ae 115 HAL_SPI_STATE_BUSY_RX = 0x22, /*!< Data Reception process is ongoing */
bogdanm 86:04dd9b1680ae 116 HAL_SPI_STATE_BUSY_TX_RX = 0x32, /*!< Data Transmission and Reception process is ongoing */
bogdanm 86:04dd9b1680ae 117 HAL_SPI_STATE_ERROR = 0x03 /*!< SPI error state */
bogdanm 86:04dd9b1680ae 118
bogdanm 86:04dd9b1680ae 119 }HAL_SPI_StateTypeDef;
bogdanm 86:04dd9b1680ae 120
bogdanm 86:04dd9b1680ae 121 /**
bogdanm 86:04dd9b1680ae 122 * @brief SPI handle Structure definition
bogdanm 86:04dd9b1680ae 123 */
bogdanm 86:04dd9b1680ae 124 typedef struct __SPI_HandleTypeDef
bogdanm 86:04dd9b1680ae 125 {
bogdanm 86:04dd9b1680ae 126 SPI_TypeDef *Instance; /* SPI registers base address */
bogdanm 86:04dd9b1680ae 127
bogdanm 86:04dd9b1680ae 128 SPI_InitTypeDef Init; /* SPI communication parameters */
bogdanm 86:04dd9b1680ae 129
bogdanm 86:04dd9b1680ae 130 uint8_t *pTxBuffPtr; /* Pointer to SPI Tx transfer Buffer */
bogdanm 86:04dd9b1680ae 131
bogdanm 86:04dd9b1680ae 132 uint16_t TxXferSize; /* SPI Tx transfer size */
bogdanm 86:04dd9b1680ae 133
bogdanm 86:04dd9b1680ae 134 uint16_t TxXferCount; /* SPI Tx Transfer Counter */
bogdanm 86:04dd9b1680ae 135
bogdanm 86:04dd9b1680ae 136 uint8_t *pRxBuffPtr; /* Pointer to SPI Rx transfer Buffer */
bogdanm 86:04dd9b1680ae 137
bogdanm 86:04dd9b1680ae 138 uint16_t RxXferSize; /* SPI Rx transfer size */
bogdanm 86:04dd9b1680ae 139
bogdanm 86:04dd9b1680ae 140 uint16_t RxXferCount; /* SPI Rx Transfer Counter */
bogdanm 86:04dd9b1680ae 141
bogdanm 86:04dd9b1680ae 142 DMA_HandleTypeDef *hdmatx; /* SPI Tx DMA handle parameters */
bogdanm 86:04dd9b1680ae 143
bogdanm 86:04dd9b1680ae 144 DMA_HandleTypeDef *hdmarx; /* SPI Rx DMA handle parameters */
bogdanm 86:04dd9b1680ae 145
bogdanm 86:04dd9b1680ae 146 void (*RxISR)(struct __SPI_HandleTypeDef * hspi); /* function pointer on Rx ISR */
bogdanm 86:04dd9b1680ae 147
bogdanm 86:04dd9b1680ae 148 void (*TxISR)(struct __SPI_HandleTypeDef * hspi); /* function pointer on Tx ISR */
bogdanm 86:04dd9b1680ae 149
bogdanm 86:04dd9b1680ae 150 HAL_LockTypeDef Lock; /* SPI locking object */
bogdanm 86:04dd9b1680ae 151
bogdanm 86:04dd9b1680ae 152 __IO HAL_SPI_StateTypeDef State; /* SPI communication state */
bogdanm 86:04dd9b1680ae 153
Kojto 99:dbbf35b96557 154 __IO uint32_t ErrorCode; /* SPI Error code */
bogdanm 86:04dd9b1680ae 155
bogdanm 86:04dd9b1680ae 156 }SPI_HandleTypeDef;
Kojto 99:dbbf35b96557 157 /**
Kojto 99:dbbf35b96557 158 * @}
Kojto 99:dbbf35b96557 159 */
bogdanm 86:04dd9b1680ae 160
bogdanm 86:04dd9b1680ae 161 /* Exported constants --------------------------------------------------------*/
Kojto 99:dbbf35b96557 162 /** @defgroup SPI_Exported_Constants SPI Exported Constants
bogdanm 86:04dd9b1680ae 163 * @{
bogdanm 86:04dd9b1680ae 164 */
bogdanm 86:04dd9b1680ae 165
Kojto 99:dbbf35b96557 166 /** @defgroup SPI_Error_Code SPI Error Code
Kojto 99:dbbf35b96557 167 * @brief SPI Error Code
Kojto 99:dbbf35b96557 168 * @{
Kojto 99:dbbf35b96557 169 */
Kojto 99:dbbf35b96557 170 #define HAL_SPI_ERROR_NONE ((uint32_t)0x00000000) /*!< No error */
Kojto 99:dbbf35b96557 171 #define HAL_SPI_ERROR_MODF ((uint32_t)0x00000001) /*!< MODF error */
Kojto 99:dbbf35b96557 172 #define HAL_SPI_ERROR_CRC ((uint32_t)0x00000002) /*!< CRC error */
Kojto 99:dbbf35b96557 173 #define HAL_SPI_ERROR_OVR ((uint32_t)0x00000004) /*!< OVR error */
Kojto 99:dbbf35b96557 174 #define HAL_SPI_ERROR_FRE ((uint32_t)0x00000008) /*!< FRE error */
Kojto 99:dbbf35b96557 175 #define HAL_SPI_ERROR_DMA ((uint32_t)0x00000010) /*!< DMA transfer error */
Kojto 99:dbbf35b96557 176 #define HAL_SPI_ERROR_FLAG ((uint32_t)0x00000010) /*!< Flag: RXNE,TXE, BSY */
Kojto 99:dbbf35b96557 177 /**
Kojto 99:dbbf35b96557 178 * @}
Kojto 99:dbbf35b96557 179 */
Kojto 99:dbbf35b96557 180
Kojto 99:dbbf35b96557 181 /** @defgroup SPI_mode SPI Mode
bogdanm 86:04dd9b1680ae 182 * @{
bogdanm 86:04dd9b1680ae 183 */
bogdanm 86:04dd9b1680ae 184 #define SPI_MODE_SLAVE ((uint32_t)0x00000000)
bogdanm 86:04dd9b1680ae 185 #define SPI_MODE_MASTER (SPI_CR1_MSTR | SPI_CR1_SSI)
bogdanm 86:04dd9b1680ae 186 /**
bogdanm 86:04dd9b1680ae 187 * @}
bogdanm 86:04dd9b1680ae 188 */
bogdanm 86:04dd9b1680ae 189
Kojto 99:dbbf35b96557 190 /** @defgroup SPI_Direction_mode SPI Direction Mode
bogdanm 86:04dd9b1680ae 191 * @{
bogdanm 86:04dd9b1680ae 192 */
bogdanm 86:04dd9b1680ae 193 #define SPI_DIRECTION_2LINES ((uint32_t)0x00000000)
bogdanm 86:04dd9b1680ae 194 #define SPI_DIRECTION_2LINES_RXONLY SPI_CR1_RXONLY
bogdanm 86:04dd9b1680ae 195 #define SPI_DIRECTION_1LINE SPI_CR1_BIDIMODE
bogdanm 86:04dd9b1680ae 196 /**
bogdanm 86:04dd9b1680ae 197 * @}
bogdanm 86:04dd9b1680ae 198 */
bogdanm 86:04dd9b1680ae 199
Kojto 99:dbbf35b96557 200 /** @defgroup SPI_data_size SPI Data Size
bogdanm 86:04dd9b1680ae 201 * @{
bogdanm 86:04dd9b1680ae 202 */
bogdanm 86:04dd9b1680ae 203 #define SPI_DATASIZE_8BIT ((uint32_t)0x00000000)
bogdanm 86:04dd9b1680ae 204 #define SPI_DATASIZE_16BIT SPI_CR1_DFF
bogdanm 86:04dd9b1680ae 205 /**
bogdanm 86:04dd9b1680ae 206 * @}
bogdanm 86:04dd9b1680ae 207 */
bogdanm 86:04dd9b1680ae 208
Kojto 99:dbbf35b96557 209 /** @defgroup SPI_Clock_Polarity SPI Clock Polarity
bogdanm 86:04dd9b1680ae 210 * @{
bogdanm 86:04dd9b1680ae 211 */
bogdanm 86:04dd9b1680ae 212 #define SPI_POLARITY_LOW ((uint32_t)0x00000000)
bogdanm 86:04dd9b1680ae 213 #define SPI_POLARITY_HIGH SPI_CR1_CPOL
bogdanm 86:04dd9b1680ae 214 /**
bogdanm 86:04dd9b1680ae 215 * @}
bogdanm 86:04dd9b1680ae 216 */
bogdanm 86:04dd9b1680ae 217
Kojto 99:dbbf35b96557 218 /** @defgroup SPI_Clock_Phase SPI Clock Phase
bogdanm 86:04dd9b1680ae 219 * @{
bogdanm 86:04dd9b1680ae 220 */
bogdanm 86:04dd9b1680ae 221 #define SPI_PHASE_1EDGE ((uint32_t)0x00000000)
bogdanm 86:04dd9b1680ae 222 #define SPI_PHASE_2EDGE SPI_CR1_CPHA
bogdanm 86:04dd9b1680ae 223 /**
bogdanm 86:04dd9b1680ae 224 * @}
bogdanm 86:04dd9b1680ae 225 */
bogdanm 86:04dd9b1680ae 226
Kojto 99:dbbf35b96557 227 /** @defgroup SPI_Slave_Select_management SPI Slave Select Management
bogdanm 86:04dd9b1680ae 228 * @{
bogdanm 86:04dd9b1680ae 229 */
bogdanm 86:04dd9b1680ae 230 #define SPI_NSS_SOFT SPI_CR1_SSM
bogdanm 86:04dd9b1680ae 231 #define SPI_NSS_HARD_INPUT ((uint32_t)0x00000000)
bogdanm 86:04dd9b1680ae 232 #define SPI_NSS_HARD_OUTPUT ((uint32_t)0x00040000)
bogdanm 86:04dd9b1680ae 233 /**
bogdanm 86:04dd9b1680ae 234 * @}
bogdanm 86:04dd9b1680ae 235 */
bogdanm 86:04dd9b1680ae 236
Kojto 99:dbbf35b96557 237 /** @defgroup SPI_BaudRate_Prescaler SPI BaudRate Prescaler
bogdanm 86:04dd9b1680ae 238 * @{
bogdanm 86:04dd9b1680ae 239 */
bogdanm 86:04dd9b1680ae 240 #define SPI_BAUDRATEPRESCALER_2 ((uint32_t)0x00000000)
bogdanm 86:04dd9b1680ae 241 #define SPI_BAUDRATEPRESCALER_4 ((uint32_t)0x00000008)
bogdanm 86:04dd9b1680ae 242 #define SPI_BAUDRATEPRESCALER_8 ((uint32_t)0x00000010)
bogdanm 86:04dd9b1680ae 243 #define SPI_BAUDRATEPRESCALER_16 ((uint32_t)0x00000018)
bogdanm 86:04dd9b1680ae 244 #define SPI_BAUDRATEPRESCALER_32 ((uint32_t)0x00000020)
bogdanm 86:04dd9b1680ae 245 #define SPI_BAUDRATEPRESCALER_64 ((uint32_t)0x00000028)
bogdanm 86:04dd9b1680ae 246 #define SPI_BAUDRATEPRESCALER_128 ((uint32_t)0x00000030)
bogdanm 86:04dd9b1680ae 247 #define SPI_BAUDRATEPRESCALER_256 ((uint32_t)0x00000038)
bogdanm 86:04dd9b1680ae 248 /**
bogdanm 86:04dd9b1680ae 249 * @}
bogdanm 86:04dd9b1680ae 250 */
bogdanm 86:04dd9b1680ae 251
Kojto 99:dbbf35b96557 252 /** @defgroup SPI_MSB_LSB_transmission SPI MSB LSB Transsmission
bogdanm 86:04dd9b1680ae 253 * @{
bogdanm 86:04dd9b1680ae 254 */
bogdanm 86:04dd9b1680ae 255 #define SPI_FIRSTBIT_MSB ((uint32_t)0x00000000)
bogdanm 86:04dd9b1680ae 256 #define SPI_FIRSTBIT_LSB SPI_CR1_LSBFIRST
bogdanm 86:04dd9b1680ae 257 /**
bogdanm 86:04dd9b1680ae 258 * @}
bogdanm 86:04dd9b1680ae 259 */
bogdanm 86:04dd9b1680ae 260
Kojto 99:dbbf35b96557 261 /** @defgroup SPI_TI_mode SPI TI Mode
bogdanm 86:04dd9b1680ae 262 * @{
bogdanm 86:04dd9b1680ae 263 */
Kojto 99:dbbf35b96557 264 #define SPI_TIMODE_DISABLE ((uint32_t)0x00000000)
Kojto 99:dbbf35b96557 265 #define SPI_TIMODE_ENABLE SPI_CR2_FRF
bogdanm 86:04dd9b1680ae 266 /**
bogdanm 86:04dd9b1680ae 267 * @}
bogdanm 86:04dd9b1680ae 268 */
bogdanm 86:04dd9b1680ae 269
Kojto 99:dbbf35b96557 270 /** @defgroup SPI_CRC_Calculation SPI CRC Calculation
bogdanm 86:04dd9b1680ae 271 * @{
bogdanm 86:04dd9b1680ae 272 */
Kojto 99:dbbf35b96557 273 #define SPI_CRCCALCULATION_DISABLE ((uint32_t)0x00000000)
Kojto 99:dbbf35b96557 274 #define SPI_CRCCALCULATION_ENABLE SPI_CR1_CRCEN
bogdanm 86:04dd9b1680ae 275 /**
bogdanm 86:04dd9b1680ae 276 * @}
bogdanm 86:04dd9b1680ae 277 */
bogdanm 86:04dd9b1680ae 278
Kojto 99:dbbf35b96557 279 /** @defgroup SPI_Interrupt_definition SPI Interrupt Definition
bogdanm 86:04dd9b1680ae 280 * @{
bogdanm 86:04dd9b1680ae 281 */
bogdanm 86:04dd9b1680ae 282 #define SPI_IT_TXE SPI_CR2_TXEIE
bogdanm 86:04dd9b1680ae 283 #define SPI_IT_RXNE SPI_CR2_RXNEIE
bogdanm 86:04dd9b1680ae 284 #define SPI_IT_ERR SPI_CR2_ERRIE
bogdanm 86:04dd9b1680ae 285 /**
bogdanm 86:04dd9b1680ae 286 * @}
bogdanm 86:04dd9b1680ae 287 */
bogdanm 86:04dd9b1680ae 288
Kojto 99:dbbf35b96557 289 /** @defgroup SPI_Flags_definition SPI Flags Definition
bogdanm 86:04dd9b1680ae 290 * @{
bogdanm 86:04dd9b1680ae 291 */
bogdanm 86:04dd9b1680ae 292 #define SPI_FLAG_RXNE SPI_SR_RXNE
bogdanm 86:04dd9b1680ae 293 #define SPI_FLAG_TXE SPI_SR_TXE
bogdanm 86:04dd9b1680ae 294 #define SPI_FLAG_CRCERR SPI_SR_CRCERR
bogdanm 86:04dd9b1680ae 295 #define SPI_FLAG_MODF SPI_SR_MODF
bogdanm 86:04dd9b1680ae 296 #define SPI_FLAG_OVR SPI_SR_OVR
bogdanm 86:04dd9b1680ae 297 #define SPI_FLAG_BSY SPI_SR_BSY
bogdanm 86:04dd9b1680ae 298 #define SPI_FLAG_FRE SPI_SR_FRE
bogdanm 86:04dd9b1680ae 299 /**
bogdanm 86:04dd9b1680ae 300 * @}
bogdanm 86:04dd9b1680ae 301 */
bogdanm 86:04dd9b1680ae 302
bogdanm 86:04dd9b1680ae 303 /**
bogdanm 86:04dd9b1680ae 304 * @}
bogdanm 86:04dd9b1680ae 305 */
bogdanm 86:04dd9b1680ae 306
bogdanm 86:04dd9b1680ae 307 /* Exported macro ------------------------------------------------------------*/
Kojto 99:dbbf35b96557 308 /** @defgroup SPI_Exported_Macros SPI Exported Macros
Kojto 99:dbbf35b96557 309 * @{
Kojto 99:dbbf35b96557 310 */
bogdanm 86:04dd9b1680ae 311 /** @brief Reset SPI handle state
bogdanm 86:04dd9b1680ae 312 * @param __HANDLE__: specifies the SPI handle.
bogdanm 86:04dd9b1680ae 313 * This parameter can be SPI where x: 1, 2, or 3 to select the SPI peripheral.
bogdanm 86:04dd9b1680ae 314 * @retval None
bogdanm 86:04dd9b1680ae 315 */
bogdanm 86:04dd9b1680ae 316 #define __HAL_SPI_RESET_HANDLE_STATE(__HANDLE__) ((__HANDLE__)->State = HAL_SPI_STATE_RESET)
bogdanm 86:04dd9b1680ae 317
bogdanm 86:04dd9b1680ae 318 /** @brief Enable or disable the specified SPI interrupts.
bogdanm 86:04dd9b1680ae 319 * @param __HANDLE__: specifies the SPI handle.
bogdanm 86:04dd9b1680ae 320 * This parameter can be SPI where x: 1, 2, or 3 to select the SPI peripheral.
bogdanm 86:04dd9b1680ae 321 * @param __INTERRUPT__: specifies the interrupt source to enable or disable.
bogdanm 86:04dd9b1680ae 322 * This parameter can be one of the following values:
bogdanm 86:04dd9b1680ae 323 * @arg SPI_IT_TXE: Tx buffer empty interrupt enable
bogdanm 86:04dd9b1680ae 324 * @arg SPI_IT_RXNE: RX buffer not empty interrupt enable
bogdanm 86:04dd9b1680ae 325 * @arg SPI_IT_ERR: Error interrupt enable
bogdanm 86:04dd9b1680ae 326 * @retval None
bogdanm 86:04dd9b1680ae 327 */
bogdanm 86:04dd9b1680ae 328 #define __HAL_SPI_ENABLE_IT(__HANDLE__, __INTERRUPT__) ((__HANDLE__)->Instance->CR2 |= (__INTERRUPT__))
bogdanm 86:04dd9b1680ae 329 #define __HAL_SPI_DISABLE_IT(__HANDLE__, __INTERRUPT__) ((__HANDLE__)->Instance->CR2 &= (~(__INTERRUPT__)))
bogdanm 86:04dd9b1680ae 330
bogdanm 86:04dd9b1680ae 331 /** @brief Check if the specified SPI interrupt source is enabled or disabled.
bogdanm 86:04dd9b1680ae 332 * @param __HANDLE__: specifies the SPI handle.
bogdanm 86:04dd9b1680ae 333 * This parameter can be SPI where x: 1, 2, or 3 to select the SPI peripheral.
bogdanm 86:04dd9b1680ae 334 * @param __INTERRUPT__: specifies the SPI interrupt source to check.
bogdanm 86:04dd9b1680ae 335 * This parameter can be one of the following values:
bogdanm 86:04dd9b1680ae 336 * @arg SPI_IT_TXE: Tx buffer empty interrupt enable
bogdanm 86:04dd9b1680ae 337 * @arg SPI_IT_RXNE: RX buffer not empty interrupt enable
bogdanm 86:04dd9b1680ae 338 * @arg SPI_IT_ERR: Error interrupt enable
bogdanm 86:04dd9b1680ae 339 * @retval The new state of __IT__ (TRUE or FALSE).
bogdanm 86:04dd9b1680ae 340 */
bogdanm 86:04dd9b1680ae 341 #define __HAL_SPI_GET_IT_SOURCE(__HANDLE__, __INTERRUPT__) ((((__HANDLE__)->Instance->CR2 & (__INTERRUPT__)) == (__INTERRUPT__)) ? SET : RESET)
bogdanm 86:04dd9b1680ae 342
bogdanm 86:04dd9b1680ae 343 /** @brief Check whether the specified SPI flag is set or not.
bogdanm 86:04dd9b1680ae 344 * @param __HANDLE__: specifies the SPI handle.
bogdanm 86:04dd9b1680ae 345 * This parameter can be SPI where x: 1, 2, or 3 to select the SPI peripheral.
bogdanm 86:04dd9b1680ae 346 * @param __FLAG__: specifies the flag to check.
bogdanm 86:04dd9b1680ae 347 * This parameter can be one of the following values:
bogdanm 86:04dd9b1680ae 348 * @arg SPI_FLAG_RXNE: Receive buffer not empty flag
bogdanm 86:04dd9b1680ae 349 * @arg SPI_FLAG_TXE: Transmit buffer empty flag
bogdanm 86:04dd9b1680ae 350 * @arg SPI_FLAG_CRCERR: CRC error flag
bogdanm 86:04dd9b1680ae 351 * @arg SPI_FLAG_MODF: Mode fault flag
bogdanm 86:04dd9b1680ae 352 * @arg SPI_FLAG_OVR: Overrun flag
bogdanm 86:04dd9b1680ae 353 * @arg SPI_FLAG_BSY: Busy flag
bogdanm 86:04dd9b1680ae 354 * @arg SPI_FLAG_FRE: Frame format error flag
bogdanm 86:04dd9b1680ae 355 * @retval The new state of __FLAG__ (TRUE or FALSE).
bogdanm 86:04dd9b1680ae 356 */
bogdanm 86:04dd9b1680ae 357 #define __HAL_SPI_GET_FLAG(__HANDLE__, __FLAG__) ((((__HANDLE__)->Instance->SR) & (__FLAG__)) == (__FLAG__))
bogdanm 86:04dd9b1680ae 358
bogdanm 86:04dd9b1680ae 359 /** @brief Clear the SPI CRCERR pending flag.
bogdanm 86:04dd9b1680ae 360 * @param __HANDLE__: specifies the SPI handle.
bogdanm 86:04dd9b1680ae 361 * This parameter can be SPI where x: 1, 2, or 3 to select the SPI peripheral.
bogdanm 86:04dd9b1680ae 362 * @retval None
bogdanm 86:04dd9b1680ae 363 */
bogdanm 86:04dd9b1680ae 364 #define __HAL_SPI_CLEAR_CRCERRFLAG(__HANDLE__) ((__HANDLE__)->Instance->SR = ~(SPI_FLAG_CRCERR))
bogdanm 86:04dd9b1680ae 365
bogdanm 86:04dd9b1680ae 366 /** @brief Clear the SPI MODF pending flag.
bogdanm 86:04dd9b1680ae 367 * @param __HANDLE__: specifies the SPI handle.
bogdanm 86:04dd9b1680ae 368 * This parameter can be SPI where x: 1, 2, or 3 to select the SPI peripheral.
bogdanm 86:04dd9b1680ae 369 * @retval None
bogdanm 86:04dd9b1680ae 370 */
Kojto 99:dbbf35b96557 371 #define __HAL_SPI_CLEAR_MODFFLAG(__HANDLE__) \
Kojto 99:dbbf35b96557 372 do{ \
Kojto 99:dbbf35b96557 373 __IO uint32_t tmpreg; \
Kojto 99:dbbf35b96557 374 tmpreg = (__HANDLE__)->Instance->SR; \
Kojto 99:dbbf35b96557 375 (__HANDLE__)->Instance->CR1 &= (~SPI_CR1_SPE); \
Kojto 99:dbbf35b96557 376 UNUSED(tmpreg); \
Kojto 99:dbbf35b96557 377 } while(0)
bogdanm 86:04dd9b1680ae 378
bogdanm 86:04dd9b1680ae 379 /** @brief Clear the SPI OVR pending flag.
bogdanm 86:04dd9b1680ae 380 * @param __HANDLE__: specifies the SPI handle.
bogdanm 86:04dd9b1680ae 381 * This parameter can be SPI where x: 1, 2, or 3 to select the SPI peripheral.
bogdanm 86:04dd9b1680ae 382 * @retval None
bogdanm 86:04dd9b1680ae 383 */
Kojto 99:dbbf35b96557 384 #define __HAL_SPI_CLEAR_OVRFLAG(__HANDLE__) \
Kojto 99:dbbf35b96557 385 do{ \
Kojto 99:dbbf35b96557 386 __IO uint32_t tmpreg; \
Kojto 99:dbbf35b96557 387 tmpreg = (__HANDLE__)->Instance->DR; \
Kojto 99:dbbf35b96557 388 tmpreg = (__HANDLE__)->Instance->SR; \
Kojto 99:dbbf35b96557 389 UNUSED(tmpreg); \
Kojto 99:dbbf35b96557 390 } while(0)
bogdanm 86:04dd9b1680ae 391
bogdanm 86:04dd9b1680ae 392 /** @brief Clear the SPI FRE pending flag.
bogdanm 86:04dd9b1680ae 393 * @param __HANDLE__: specifies the SPI handle.
bogdanm 86:04dd9b1680ae 394 * This parameter can be SPI where x: 1, 2, or 3 to select the SPI peripheral.
bogdanm 86:04dd9b1680ae 395 * @retval None
Kojto 99:dbbf35b96557 396 */
Kojto 99:dbbf35b96557 397 #define __HAL_SPI_CLEAR_FREFLAG(__HANDLE__) \
Kojto 99:dbbf35b96557 398 do{ \
Kojto 99:dbbf35b96557 399 __IO uint32_t tmpreg; \
Kojto 99:dbbf35b96557 400 tmpreg = (__HANDLE__)->Instance->SR; \
Kojto 99:dbbf35b96557 401 UNUSED(tmpreg); \
Kojto 99:dbbf35b96557 402 }while(0)
Kojto 99:dbbf35b96557 403
Kojto 99:dbbf35b96557 404 /** @brief Enable SPI
Kojto 99:dbbf35b96557 405 * @param __HANDLE__: specifies the SPI Handle.
Kojto 99:dbbf35b96557 406 * @retval None
bogdanm 86:04dd9b1680ae 407 */
bogdanm 86:04dd9b1680ae 408 #define __HAL_SPI_ENABLE(__HANDLE__) ((__HANDLE__)->Instance->CR1 |= SPI_CR1_SPE)
bogdanm 86:04dd9b1680ae 409
Kojto 99:dbbf35b96557 410 /** @brief Disable SPI
Kojto 99:dbbf35b96557 411 * @param __HANDLE__: specifies the SPI Handle.
Kojto 99:dbbf35b96557 412 * @retval None
Kojto 99:dbbf35b96557 413 */
Kojto 99:dbbf35b96557 414 #define __HAL_SPI_DISABLE(__HANDLE__) ((__HANDLE__)->Instance->CR1 &= ~SPI_CR1_SPE)
Kojto 99:dbbf35b96557 415 /**
Kojto 99:dbbf35b96557 416 * @}
Kojto 99:dbbf35b96557 417 */
Kojto 99:dbbf35b96557 418
Kojto 99:dbbf35b96557 419 /* Exported functions --------------------------------------------------------*/
Kojto 99:dbbf35b96557 420 /** @addtogroup SPI_Exported_Functions
Kojto 99:dbbf35b96557 421 * @{
Kojto 99:dbbf35b96557 422 */
bogdanm 86:04dd9b1680ae 423
Kojto 99:dbbf35b96557 424 /** @addtogroup SPI_Exported_Functions_Group1
Kojto 99:dbbf35b96557 425 * @{
Kojto 99:dbbf35b96557 426 */
bogdanm 86:04dd9b1680ae 427 /* Initialization/de-initialization functions **********************************/
bogdanm 86:04dd9b1680ae 428 HAL_StatusTypeDef HAL_SPI_Init(SPI_HandleTypeDef *hspi);
bogdanm 86:04dd9b1680ae 429 HAL_StatusTypeDef HAL_SPI_DeInit (SPI_HandleTypeDef *hspi);
bogdanm 86:04dd9b1680ae 430 void HAL_SPI_MspInit(SPI_HandleTypeDef *hspi);
bogdanm 86:04dd9b1680ae 431 void HAL_SPI_MspDeInit(SPI_HandleTypeDef *hspi);
Kojto 99:dbbf35b96557 432 /**
Kojto 99:dbbf35b96557 433 * @}
Kojto 99:dbbf35b96557 434 */
bogdanm 86:04dd9b1680ae 435
Kojto 99:dbbf35b96557 436 /** @addtogroup SPI_Exported_Functions_Group2
Kojto 99:dbbf35b96557 437 * @{
Kojto 99:dbbf35b96557 438 */
bogdanm 86:04dd9b1680ae 439 /* I/O operation functions *****************************************************/
bogdanm 86:04dd9b1680ae 440 HAL_StatusTypeDef HAL_SPI_Transmit(SPI_HandleTypeDef *hspi, uint8_t *pData, uint16_t Size, uint32_t Timeout);
bogdanm 86:04dd9b1680ae 441 HAL_StatusTypeDef HAL_SPI_Receive(SPI_HandleTypeDef *hspi, uint8_t *pData, uint16_t Size, uint32_t Timeout);
bogdanm 86:04dd9b1680ae 442 HAL_StatusTypeDef HAL_SPI_TransmitReceive(SPI_HandleTypeDef *hspi, uint8_t *pTxData, uint8_t *pRxData, uint16_t Size, uint32_t Timeout);
bogdanm 86:04dd9b1680ae 443 HAL_StatusTypeDef HAL_SPI_Transmit_IT(SPI_HandleTypeDef *hspi, uint8_t *pData, uint16_t Size);
bogdanm 86:04dd9b1680ae 444 HAL_StatusTypeDef HAL_SPI_Receive_IT(SPI_HandleTypeDef *hspi, uint8_t *pData, uint16_t Size);
bogdanm 86:04dd9b1680ae 445 HAL_StatusTypeDef HAL_SPI_TransmitReceive_IT(SPI_HandleTypeDef *hspi, uint8_t *pTxData, uint8_t *pRxData, uint16_t Size);
bogdanm 86:04dd9b1680ae 446 HAL_StatusTypeDef HAL_SPI_Transmit_DMA(SPI_HandleTypeDef *hspi, uint8_t *pData, uint16_t Size);
bogdanm 86:04dd9b1680ae 447 HAL_StatusTypeDef HAL_SPI_Receive_DMA(SPI_HandleTypeDef *hspi, uint8_t *pData, uint16_t Size);
bogdanm 86:04dd9b1680ae 448 HAL_StatusTypeDef HAL_SPI_TransmitReceive_DMA(SPI_HandleTypeDef *hspi, uint8_t *pTxData, uint8_t *pRxData, uint16_t Size);
bogdanm 86:04dd9b1680ae 449 HAL_StatusTypeDef HAL_SPI_DMAPause(SPI_HandleTypeDef *hspi);
bogdanm 86:04dd9b1680ae 450 HAL_StatusTypeDef HAL_SPI_DMAResume(SPI_HandleTypeDef *hspi);
bogdanm 86:04dd9b1680ae 451 HAL_StatusTypeDef HAL_SPI_DMAStop(SPI_HandleTypeDef *hspi);
bogdanm 86:04dd9b1680ae 452
bogdanm 86:04dd9b1680ae 453 void HAL_SPI_IRQHandler(SPI_HandleTypeDef *hspi);
bogdanm 86:04dd9b1680ae 454 void HAL_SPI_TxCpltCallback(SPI_HandleTypeDef *hspi);
bogdanm 86:04dd9b1680ae 455 void HAL_SPI_RxCpltCallback(SPI_HandleTypeDef *hspi);
bogdanm 86:04dd9b1680ae 456 void HAL_SPI_TxRxCpltCallback(SPI_HandleTypeDef *hspi);
bogdanm 86:04dd9b1680ae 457 void HAL_SPI_ErrorCallback(SPI_HandleTypeDef *hspi);
bogdanm 86:04dd9b1680ae 458 void HAL_SPI_TxHalfCpltCallback(SPI_HandleTypeDef *hspi);
bogdanm 86:04dd9b1680ae 459 void HAL_SPI_RxHalfCpltCallback(SPI_HandleTypeDef *hspi);
bogdanm 86:04dd9b1680ae 460 void HAL_SPI_TxRxHalfCpltCallback(SPI_HandleTypeDef *hspi);
Kojto 99:dbbf35b96557 461 /**
Kojto 99:dbbf35b96557 462 * @}
Kojto 99:dbbf35b96557 463 */
Kojto 99:dbbf35b96557 464
Kojto 99:dbbf35b96557 465 /** @addtogroup SPI_Exported_Functions_Group3
Kojto 99:dbbf35b96557 466 * @{
Kojto 99:dbbf35b96557 467 */
bogdanm 86:04dd9b1680ae 468 /* Peripheral State and Control functions **************************************/
bogdanm 86:04dd9b1680ae 469 HAL_SPI_StateTypeDef HAL_SPI_GetState(SPI_HandleTypeDef *hspi);
Kojto 99:dbbf35b96557 470 uint32_t HAL_SPI_GetError(SPI_HandleTypeDef *hspi);
bogdanm 86:04dd9b1680ae 471
bogdanm 86:04dd9b1680ae 472 /**
bogdanm 86:04dd9b1680ae 473 * @}
bogdanm 86:04dd9b1680ae 474 */
bogdanm 86:04dd9b1680ae 475
bogdanm 86:04dd9b1680ae 476 /**
bogdanm 86:04dd9b1680ae 477 * @}
bogdanm 86:04dd9b1680ae 478 */
bogdanm 86:04dd9b1680ae 479
Kojto 99:dbbf35b96557 480 /* Private types -------------------------------------------------------------*/
Kojto 99:dbbf35b96557 481 /* Private variables ---------------------------------------------------------*/
Kojto 99:dbbf35b96557 482 /* Private constants ---------------------------------------------------------*/
Kojto 99:dbbf35b96557 483 /** @defgroup SPI_Private_Constants SPI Private Constants
Kojto 99:dbbf35b96557 484 * @{
Kojto 99:dbbf35b96557 485 */
Kojto 99:dbbf35b96557 486 /**
Kojto 99:dbbf35b96557 487 * @}
Kojto 99:dbbf35b96557 488 */
Kojto 99:dbbf35b96557 489
Kojto 99:dbbf35b96557 490 /* Private macros ------------------------------------------------------------*/
Kojto 99:dbbf35b96557 491 /** @defgroup SPI_Private_Macros SPI Private Macros
Kojto 99:dbbf35b96557 492 * @{
Kojto 99:dbbf35b96557 493 */
Kojto 99:dbbf35b96557 494
Kojto 99:dbbf35b96557 495 #define IS_SPI_MODE(MODE) (((MODE) == SPI_MODE_SLAVE) || \
Kojto 99:dbbf35b96557 496 ((MODE) == SPI_MODE_MASTER))
Kojto 99:dbbf35b96557 497
Kojto 99:dbbf35b96557 498
Kojto 99:dbbf35b96557 499 #define IS_SPI_DIRECTION_MODE(MODE) (((MODE) == SPI_DIRECTION_2LINES) || \
Kojto 99:dbbf35b96557 500 ((MODE) == SPI_DIRECTION_2LINES_RXONLY) || \
Kojto 99:dbbf35b96557 501 ((MODE) == SPI_DIRECTION_1LINE))
Kojto 99:dbbf35b96557 502
Kojto 99:dbbf35b96557 503 #define IS_SPI_DIRECTION_2LINES_OR_1LINE(MODE) (((MODE) == SPI_DIRECTION_2LINES) || \
Kojto 99:dbbf35b96557 504 ((MODE) == SPI_DIRECTION_1LINE))
Kojto 99:dbbf35b96557 505
Kojto 99:dbbf35b96557 506 #define IS_SPI_DIRECTION_2LINES(MODE) ((MODE) == SPI_DIRECTION_2LINES)
Kojto 99:dbbf35b96557 507
Kojto 99:dbbf35b96557 508 #define IS_SPI_DATASIZE(DATASIZE) (((DATASIZE) == SPI_DATASIZE_16BIT) || \
Kojto 99:dbbf35b96557 509 ((DATASIZE) == SPI_DATASIZE_8BIT))
Kojto 99:dbbf35b96557 510
Kojto 99:dbbf35b96557 511 #define IS_SPI_CPOL(CPOL) (((CPOL) == SPI_POLARITY_LOW) || \
Kojto 99:dbbf35b96557 512 ((CPOL) == SPI_POLARITY_HIGH))
Kojto 99:dbbf35b96557 513
Kojto 99:dbbf35b96557 514 #define IS_SPI_CPHA(CPHA) (((CPHA) == SPI_PHASE_1EDGE) || \
Kojto 99:dbbf35b96557 515 ((CPHA) == SPI_PHASE_2EDGE))
Kojto 99:dbbf35b96557 516
Kojto 99:dbbf35b96557 517 #define IS_SPI_NSS(NSS) (((NSS) == SPI_NSS_SOFT) || \
Kojto 99:dbbf35b96557 518 ((NSS) == SPI_NSS_HARD_INPUT) || \
Kojto 99:dbbf35b96557 519 ((NSS) == SPI_NSS_HARD_OUTPUT))
Kojto 99:dbbf35b96557 520
Kojto 99:dbbf35b96557 521 #define IS_SPI_BAUDRATE_PRESCALER(PRESCALER) (((PRESCALER) == SPI_BAUDRATEPRESCALER_2) || \
Kojto 99:dbbf35b96557 522 ((PRESCALER) == SPI_BAUDRATEPRESCALER_4) || \
Kojto 99:dbbf35b96557 523 ((PRESCALER) == SPI_BAUDRATEPRESCALER_8) || \
Kojto 99:dbbf35b96557 524 ((PRESCALER) == SPI_BAUDRATEPRESCALER_16) || \
Kojto 99:dbbf35b96557 525 ((PRESCALER) == SPI_BAUDRATEPRESCALER_32) || \
Kojto 99:dbbf35b96557 526 ((PRESCALER) == SPI_BAUDRATEPRESCALER_64) || \
Kojto 99:dbbf35b96557 527 ((PRESCALER) == SPI_BAUDRATEPRESCALER_128) || \
Kojto 99:dbbf35b96557 528 ((PRESCALER) == SPI_BAUDRATEPRESCALER_256))
Kojto 99:dbbf35b96557 529
Kojto 99:dbbf35b96557 530 #define IS_SPI_FIRST_BIT(BIT) (((BIT) == SPI_FIRSTBIT_MSB) || \
Kojto 99:dbbf35b96557 531 ((BIT) == SPI_FIRSTBIT_LSB))
Kojto 99:dbbf35b96557 532
Kojto 99:dbbf35b96557 533 #define IS_SPI_TIMODE(MODE) (((MODE) == SPI_TIMODE_DISABLE) || \
Kojto 99:dbbf35b96557 534 ((MODE) == SPI_TIMODE_ENABLE))
Kojto 99:dbbf35b96557 535
Kojto 99:dbbf35b96557 536 #define IS_SPI_CRC_CALCULATION(CALCULATION) (((CALCULATION) == SPI_CRCCALCULATION_DISABLE) || \
Kojto 99:dbbf35b96557 537 ((CALCULATION) == SPI_CRCCALCULATION_ENABLE))
Kojto 99:dbbf35b96557 538
Kojto 99:dbbf35b96557 539 #define IS_SPI_CRC_POLYNOMIAL(POLYNOMIAL) (((POLYNOMIAL) >= 0x1) && ((POLYNOMIAL) <= 0xFFFF))
Kojto 99:dbbf35b96557 540
Kojto 99:dbbf35b96557 541 #define SPI_1LINE_TX(__HANDLE__) ((__HANDLE__)->Instance->CR1 |= SPI_CR1_BIDIOE)
Kojto 99:dbbf35b96557 542
Kojto 99:dbbf35b96557 543 #define SPI_1LINE_RX(__HANDLE__) ((__HANDLE__)->Instance->CR1 &= ~SPI_CR1_BIDIOE)
Kojto 99:dbbf35b96557 544
Kojto 99:dbbf35b96557 545 #define SPI_RESET_CRC(__HANDLE__) do{(__HANDLE__)->Instance->CR1 &= (~SPI_CR1_CRCEN);\
Kojto 99:dbbf35b96557 546 (__HANDLE__)->Instance->CR1 |= SPI_CR1_CRCEN;}while(0)
Kojto 99:dbbf35b96557 547 /**
Kojto 99:dbbf35b96557 548 * @}
Kojto 99:dbbf35b96557 549 */
Kojto 99:dbbf35b96557 550
Kojto 99:dbbf35b96557 551 /* Private functions ---------------------------------------------------------*/
Kojto 99:dbbf35b96557 552 /** @defgroup SPI_Private_Functions SPI Private Functions
Kojto 99:dbbf35b96557 553 * @{
Kojto 99:dbbf35b96557 554 */
Kojto 99:dbbf35b96557 555
Kojto 99:dbbf35b96557 556 /**
Kojto 99:dbbf35b96557 557 * @}
Kojto 99:dbbf35b96557 558 */
Kojto 99:dbbf35b96557 559
Kojto 99:dbbf35b96557 560 /**
Kojto 99:dbbf35b96557 561 * @}
Kojto 99:dbbf35b96557 562 */
Kojto 99:dbbf35b96557 563
Kojto 99:dbbf35b96557 564 /**
Kojto 99:dbbf35b96557 565 * @}
Kojto 99:dbbf35b96557 566 */
Kojto 99:dbbf35b96557 567
Kojto 99:dbbf35b96557 568
bogdanm 86:04dd9b1680ae 569 #ifdef __cplusplus
bogdanm 86:04dd9b1680ae 570 }
bogdanm 86:04dd9b1680ae 571 #endif
bogdanm 86:04dd9b1680ae 572
bogdanm 86:04dd9b1680ae 573 #endif /* __STM32F4xx_HAL_SPI_H */
bogdanm 86:04dd9b1680ae 574
bogdanm 86:04dd9b1680ae 575 /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/