| /******************************************************************************
 * [url=home.php?mod=space&uid=288409]@file[/url]     main.c
 * [url=home.php?mod=space&uid=895143]@version[/url]  V1.00
 * $Revision: 4 $
 * $Date: 14/09/11 7:15p $
 * [url=home.php?mod=space&uid=247401]@brief[/url]    Demonstrate Smartcard UART mode by connecting PA.8 and PA.9 pins.
 *
 * @note
 * Copyright (C) 2014 Nuvoton Technology Corp. All rights reserved.
*****************************************************************************/
#include <stdio.h>
#include "Nano100Series.h"
uint8_t au8TxBuf[] = "Hello World!";
uint8_t au8RxBuf[13]={0,0,0,0,0,0,0,0,0,0,0,0,0};
uint8_t        au8Rxindex=0;
/**
  * @brief  The interrupt services routine of smartcard port 0
  * @param  None
  * @retval None
  */
void SC0_IRQHandler(void)
{
    // Print SCUART received data to UART port
    // Data length here is short, so we're not care about UART FIFO over flow.
    UART_WRITE(UART0, SCUART_READ(SC0));
    // RDA is the only interrupt enabled in this sample, this status bit
    // automatically cleared after Rx FIFO empty. So no need to clear interrupt
    // status here.
    return;
}
void SC1_IRQHandler(void)
{
    UART_WRITE(UART0, SCUART_READ(SC0));
                au8RxBuf[au8Rxindex]=SCUART_READ(SC1);
                au8Rxindex++;
                if(au8Rxindex>=13)
                {
                                au8Rxindex=0;
                }
}
void SYS_Init(void)
{
    /*---------------------------------------------------------------------------------------------------------*/
    /* Init System Clock                                                                                       */
    /*---------------------------------------------------------------------------------------------------------*/
    /* Unlock protected registers */
    SYS_UnlockReg();
    /* Enable External XTAL (4~24 MHz) */
    CLK_EnableXtalRC(CLK_PWRCTL_HXT_EN_Msk);
    /* Waiting for 12MHz clock ready */
    CLK_WaitClockReady( CLK_CLKSTATUS_HXT_STB_Msk);
    /* Switch HCLK clock source to HXT */
    CLK_SetHCLK(CLK_CLKSEL0_HCLK_S_HXT,CLK_HCLK_CLK_DIVIDER(1));
    /* Enable IP clock */
    CLK_EnableModuleClock(UART0_MODULE);
    CLK_EnableModuleClock(SC0_MODULE);
    CLK_EnableModuleClock(SC1_MODULE);
    /* Select IP clock source */
    CLK_SetModuleClock(UART0_MODULE, CLK_CLKSEL1_UART_S_HXT, CLK_UART_CLK_DIVIDER(1));
    CLK_SetModuleClock(SC0_MODULE, CLK_CLKSEL2_SC_S_HXT, CLK_SC0_CLK_DIVIDER(1));
    CLK_SetModuleClock(SC1_MODULE, CLK_CLKSEL2_SC_S_HXT, CLK_SC0_CLK_DIVIDER(1));
    /* Update System Core Clock */
    /* User can use SystemCoreClockUpdate() to calculate SystemCoreClock. */
    SystemCoreClockUpdate();
    /*---------------------------------------------------------------------------------------------------------*/
    /* Init I/O Multi-function                                                                                 */
    /*---------------------------------------------------------------------------------------------------------*/
    /* Set GPB multi-function pins for UART0 RXD and TXD */
    SYS->PB_L_MFP &= ~(SYS_PB_L_MFP_PB0_MFP_Msk | SYS_PB_L_MFP_PB1_MFP_Msk);
    SYS->PB_L_MFP |= (SYS_PB_L_MFP_PB1_MFP_UART0_TX | SYS_PB_L_MFP_PB0_MFP_UART0_RX);
    /* Set PA.8 and PA.9 pin for SC UART mode */
    SYS->PA_H_MFP &= ~(SYS_PA_H_MFP_PA8_MFP_Msk | SYS_PA_H_MFP_PA9_MFP_Msk);
    SYS->PA_H_MFP |= (SYS_PA_H_MFP_PA8_MFP_SC0_CLK | SYS_PA_H_MFP_PA9_MFP_SC0_DAT);
                SYS->PC_L_MFP &= ~(SYS_PC_L_MFP_PC0_MFP_Msk | SYS_PC_L_MFP_PC1_MFP_Msk);
    SYS->PC_L_MFP |= (SYS_PC_L_MFP_PC0_MFP_SC1_CLK | SYS_PC_L_MFP_PC1_MFP_SC1_DAT);
    /* Lock protected registers */
    SYS_LockReg();
}
int main(void)
{
    /* Init System, IP clock and multi-function I/O
       In the end of SYS_Init() will issue SYS_LockReg()
       to lock protected register. If user want to write
       protected register, please issue SYS_UnlockReg()
       to unlock protected register if necessary */
    SYS_Init();
    /* Init UART to 115200-8n1 for print message */
    UART_Open(UART0, 115200);
    printf("This sample code demos smartcard interface UART mode\n");
    printf("Please connect SC0 CLK pin(PA.8) with SC0 I/O pin(PA.9)\n");
    printf("Hit any key to continue\n");
//     getchar();
    // Open smartcard interface 0 in UART mode.
    SCUART_Open(SC0, 115200);
          SCUART_Open(SC1, 115200);
    // Enable smartcard receive interrupt
    SCUART_ENABLE_INT(SC0, SC_IER_RDA_IE_Msk);
    NVIC_EnableIRQ(SC0_IRQn);
    SCUART_ENABLE_INT(SC1, SC_IER_RDA_IE_Msk);
    NVIC_EnableIRQ(SC1_IRQn);
    // Write output buffer to smartcard tx FIFO
    SCUART_Write(SC0, au8TxBuf, sizeof(au8TxBuf));
    while(1);
}
/*** (C) COPYRIGHT 2014 Nuvoton Technology Corp. ***/
 
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