266 lines
9.4 KiB
C
266 lines
9.4 KiB
C
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/**************************************************************************//**
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* @file nu_scuart.h
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* @brief Smartcard UART mode (SCUART) driver header file
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*
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* SPDX-License-Identifier: Apache-2.0
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* @copyright (C) 2020 Nuvoton Technology Corp. All rights reserved.
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*****************************************************************************/
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#ifndef __NU_SCUART_H__
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#define __NU_SCUART_H__
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#ifdef __cplusplus
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extern "C"
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{
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#endif
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/** @addtogroup Standard_Driver Standard Driver
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@{
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*/
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/** @addtogroup SCUART_Driver SCUART Driver
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@{
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*/
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/** @addtogroup SCUART_EXPORTED_CONSTANTS SCUART Exported Constants
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@{
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*/
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#define SCUART_CHAR_LEN_5 (0x3ul << SC_UARTCTL_WLS_Pos) /*!< Set SCUART word length to 5 bits \hideinitializer */
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#define SCUART_CHAR_LEN_6 (0x2ul << SC_UARTCTL_WLS_Pos) /*!< Set SCUART word length to 6 bits \hideinitializer */
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#define SCUART_CHAR_LEN_7 (0x1ul << SC_UARTCTL_WLS_Pos) /*!< Set SCUART word length to 7 bits \hideinitializer */
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#define SCUART_CHAR_LEN_8 (0UL) /*!< Set SCUART word length to 8 bits \hideinitializer */
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#define SCUART_PARITY_NONE (SC_UARTCTL_PBOFF_Msk) /*!< Set SCUART transfer with no parity \hideinitializer */
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#define SCUART_PARITY_ODD (SC_UARTCTL_OPE_Msk) /*!< Set SCUART transfer with odd parity \hideinitializer */
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#define SCUART_PARITY_EVEN (0UL) /*!< Set SCUART transfer with even parity \hideinitializer */
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#define SCUART_STOP_BIT_1 (SC_CTL_NSB_Msk) /*!< Set SCUART transfer with one stop bit \hideinitializer */
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#define SCUART_STOP_BIT_2 (0UL) /*!< Set SCUART transfer with two stop bits \hideinitializer */
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/*@}*/ /* end of group SCUART_EXPORTED_CONSTANTS */
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/** @addtogroup SCUART_EXPORTED_FUNCTIONS SCUART Exported Functions
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@{
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*/
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/* TX Macros */
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/**
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* @brief Write Data to Tx data register
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* @param[in] sc The base address of smartcard module.
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* @param[in] u8Data Data byte to transmit
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* @return None
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* \hideinitializer
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*/
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#define SCUART_WRITE(sc, u8Data) ((sc)->DAT = (u8Data))
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/**
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* @brief Get TX FIFO empty flag status from register
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* @param[in] sc The base address of smartcard module
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* @return Transmit FIFO empty status
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* @retval 0 Transmit FIFO is not empty
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* @retval SC_STATUS_TXEMPTY_Msk Transmit FIFO is empty
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* \hideinitializer
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*/
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#define SCUART_GET_TX_EMPTY(sc) ((sc)->STATUS & SC_STATUS_TXEMPTY_Msk)
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/**
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* @brief Get TX FIFO full flag status from register
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* @param[in] sc The base address of smartcard module
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* @return Transmit FIFO full status
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* @retval 0 Transmit FIFO is not full
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* @retval SC_STATUS_TXFULL_Msk Transmit FIFO is full
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* \hideinitializer
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*/
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#define SCUART_GET_TX_FULL(sc) ((sc)->STATUS & SC_STATUS_TXFULL_Msk)
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/**
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* @brief Wait specified smartcard port transmission complete
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* @param[in] sc The base address of smartcard module
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* @return None
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* @note This Macro blocks until transmit complete.
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* \hideinitializer
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*/
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#define SCUART_WAIT_TX_EMPTY(sc) while((sc)->STATUS & SC_STATUS_TXACT_Msk)
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/**
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* @brief Check specified smartcard port transmit FIFO is full or not
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* @param[in] sc The base address of smartcard module
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* @return Transmit FIFO full status
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* @retval 0 Transmit FIFO is not full
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* @retval 1 Transmit FIFO is full
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* \hideinitializer
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*/
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#define SCUART_IS_TX_FULL(sc) ((sc)->STATUS & SC_STATUS_TXFULL_Msk ? 1 : 0)
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/**
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* @brief Check specified smartcard port transmission is over
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* @param[in] sc The base address of smartcard module
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* @return Transmit complete status
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* @retval 0 Transmit is not complete
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* @retval 1 Transmit complete
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* \hideinitializer
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*/
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#define SCUART_IS_TX_EMPTY(sc) ((sc)->STATUS & SC_STATUS_TXACT_Msk ? 0 : 1)
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/**
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* @brief Check specified Smartcard port Transmission Status
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* @param[in] sc The pointer of smartcard module.
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* @retval 0 Transmit is completed
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* @retval 1 Transmit is active
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* @details TXACT (SC_STATUS[31]) is set by hardware when Tx transfer is in active and the STOP bit of the last byte has been transmitted.
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* \hideinitializer
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*/
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#define SCUART_IS_TX_ACTIVE(sc) (((sc)->STATUS & SC_STATUS_TXACT_Msk)? 1 : 0)
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/* RX Macros */
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/**
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* @brief Read Rx data register
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* @param[in] sc The base address of smartcard module
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* @return The oldest data byte in RX FIFO
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* \hideinitializer
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*/
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#define SCUART_READ(sc) ((sc)->DAT)
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/**
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* @brief Get RX FIFO empty flag status from register
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* @param[in] sc The base address of smartcard module
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* @return Receive FIFO empty status
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* @retval 0 Receive FIFO is not empty
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* @retval SC_STATUS_RXEMPTY_Msk Receive FIFO is empty
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* \hideinitializer
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*/
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#define SCUART_GET_RX_EMPTY(sc) ((sc)->STATUS & SC_STATUS_RXEMPTY_Msk)
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/**
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* @brief Get RX FIFO full flag status from register
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* @param[in] sc The base address of smartcard module
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* @return Receive FIFO full status
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* @retval 0 Receive FIFO is not full
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* @retval SC_STATUS_RXFULLF_Msk Receive FIFO is full
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* \hideinitializer
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*/
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#define SCUART_GET_RX_FULL(sc) ((sc)->STATUS & SC_STATUS_RXFULL_Msk)
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/**
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* @brief Check if receive data number in FIFO reach FIFO trigger level or not
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* @param[in] sc The base address of smartcard module
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* @return Receive FIFO data status
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* @retval 0 The number of bytes in receive FIFO is less than trigger level
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* @retval 1 The number of bytes in receive FIFO equals or larger than trigger level
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* @note If receive trigger level is \b not 1 byte, this macro return 0 does not necessary indicates there is \b no data in FIFO
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* \hideinitializer
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*/
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#define SCUART_IS_RX_READY(sc) ((sc)->INTSTS & SC_INTSTS_RDAIF_Msk ? 1 : 0)
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/**
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* @brief Check specified smartcard port receive FIFO is full or not
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* @param[in] sc The base address of smartcard module
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* @return Receive FIFO full status
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* @retval 0 Receive FIFO is not full
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* @retval 1 Receive FIFO is full
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* \hideinitializer
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*/
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#define SCUART_IS_RX_FULL(sc) ((sc)->STATUS & SC_STATUS_RXFULL_Msk ? 1 : 0)
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/* Interrupt Macros */
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/**
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* @brief Enable specified interrupts
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* @param[in] sc The base address of smartcard module
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* @param[in] u32Mask Interrupt masks to enable, a combination of following bits
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* - \ref SC_INTEN_RXTOIEN_Msk
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* - \ref SC_INTEN_TERRIEN_Msk
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* - \ref SC_INTEN_TBEIEN_Msk
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* - \ref SC_INTEN_RDAIEN_Msk
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* @return None
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* \hideinitializer
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*/
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#define SCUART_ENABLE_INT(sc, u32Mask) ((sc)->INTEN |= (u32Mask))
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/**
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* @brief Disable specified interrupts
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* @param[in] sc The base address of smartcard module
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* @param[in] u32Mask Interrupt masks to disable, a combination of following bits
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* - \ref SC_INTEN_RXTOIEN_Msk
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* - \ref SC_INTEN_TERRIEN_Msk
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* - \ref SC_INTEN_TBEIEN_Msk
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* - \ref SC_INTEN_RDAIEN_Msk
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* @return None
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* \hideinitializer
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*/
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#define SCUART_DISABLE_INT(sc, u32Mask) ((sc)->INTEN &= ~(u32Mask))
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/**
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* @brief Get specified interrupt flag/status
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* @param[in] sc The base address of smartcard module
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* @param[in] u32Type Interrupt flag/status to check, could be one of following value
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* - \ref SC_INTSTS_RXTOIF_Msk
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* - \ref SC_INTSTS_TERRIF_Msk
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* - \ref SC_INTSTS_TBEIF_Msk
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* - \ref SC_INTSTS_RDAIF_Msk
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* @return The status of specified interrupt
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* @retval 0 Specified interrupt does not happened
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* @retval 1 Specified interrupt happened
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* \hideinitializer
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*/
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#define SCUART_GET_INT_FLAG(sc, u32Type) ((sc)->INTSTS & (u32Type) ? 1 : 0)
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/**
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* @brief Clear specified interrupt flag/status
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* @param[in] sc The base address of smartcard module
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* @param[in] u32Type Interrupt flag/status to clear, could be the combination of following values
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* - \ref SC_INTSTS_RXTOIF_Msk
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* - \ref SC_INTSTS_TERRIF_Msk
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* - \ref SC_INTSTS_TBEIF_Msk
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* @return None
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* \hideinitializer
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*/
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#define SCUART_CLR_INT_FLAG(sc, u32Type) ((sc)->INTSTS = (u32Type))
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/**
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* @brief Get receive error flag/status
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* @param[in] sc The base address of smartcard module
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* @return Current receive error status, could one of following errors:
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* @retval SC_STATUS_PEF_Msk Parity error
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* @retval SC_STATUS_FEF_Msk Frame error
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* @retval SC_STATUS_BEF_Msk Break error
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* \hideinitializer
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*/
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#define SCUART_GET_ERR_FLAG(sc) ((sc)->STATUS & (SC_STATUS_PEF_Msk | SC_STATUS_FEF_Msk | SC_STATUS_BEF_Msk))
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/**
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* @brief Clear specified receive error flag/status
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* @param[in] sc The base address of smartcard module
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* @param[in] u32Mask Receive error flag/status to clear, combination following values
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* - \ref SC_STATUS_PEF_Msk
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* - \ref SC_STATUS_FEF_Msk
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* - \ref SC_STATUS_BEF_Msk
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* @return None
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* \hideinitializer
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*/
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#define SCUART_CLR_ERR_FLAG(sc, u32Mask) ((sc)->STATUS = (u32Mask))
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void SCUART_Close(SC_T *sc);
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uint32_t SCUART_Open(SC_T *sc, uint32_t u32baudrate);
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uint32_t SCUART_Read(SC_T *sc, uint8_t pu8RxBuf[], uint32_t u32ReadBytes);
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uint32_t SCUART_SetLineConfig(SC_T *sc, uint32_t u32Baudrate, uint32_t u32DataWidth, uint32_t u32Parity, uint32_t u32StopBits);
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void SCUART_SetTimeoutCnt(SC_T *sc, uint32_t u32TOC);
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void SCUART_Write(SC_T *sc, uint8_t pu8TxBuf[], uint32_t u32WriteBytes);
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/*@}*/ /* end of group SCUART_EXPORTED_FUNCTIONS */
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/*@}*/ /* end of group SCUART_Driver */
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/*@}*/ /* end of group Standard_Driver */
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#ifdef __cplusplus
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}
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#endif
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#endif /* __NU_SCUART_H__ */
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