#include "SWM320.h" void SerialInit(void); int main(void) { uint32_t n, i; uint32_t rxdata, txdata = 0x23; SPI_InitStructure SPI_initStruct; SystemInit(); SerialInit(); GPIO_Init(GPIOA, PIN12, 1, 0, 0); #define SPI1_CS_Low() GPIO_ClrBit(GPIOA, PIN12) #define SPI1_CS_High() GPIO_SetBit(GPIOA, PIN12) PORT_Init(PORTA, PIN9, FUNMUX1_SPI1_SCLK, 0); PORT_Init(PORTA, PIN10, FUNMUX0_SPI1_MOSI, 0); PORT_Init(PORTA, PIN11, FUNMUX1_SPI1_MISO, 1); SPI_initStruct.clkDiv = SPI_CLKDIV_32; SPI_initStruct.FrameFormat = SPI_FORMAT_SPI; SPI_initStruct.SampleEdge = SPI_SECOND_EDGE; SPI_initStruct.IdleLevel = SPI_HIGH_LEVEL; SPI_initStruct.WordSize = 8; SPI_initStruct.Master = 1; SPI_initStruct.RXHFullIEn = 0; SPI_initStruct.TXEmptyIEn = 0; SPI_initStruct.TXCompleteIEn = 0; SPI_Init(SPI1, &SPI_initStruct); SPI_Open(SPI1); while(1==1) { SPI1_CS_Low(); for(n = 0; n < 10; n++) { rxdata = SPI_ReadWrite(SPI1, txdata); txdata = rxdata + 1; //将SPI0_MOSI与SPI0_MISO短接,则可看到打印数值加一递增 printf("rxdata: 0x%X\r\n", rxdata); for(i = 0; i < SystemCoreClock/50; i++); } SPI1_CS_High(); for(i = 0; i < SystemCoreClock/10; i++); } } void SerialInit(void) { UART_InitStructure UART_initStruct; PORT_Init(PORTA, PIN2, FUNMUX0_UART0_RXD, 1); //GPIOA.2配置为UART0输入引脚 PORT_Init(PORTA, PIN3, FUNMUX1_UART0_TXD, 0); //GPIOA.3配置为UART0输出引脚 UART_initStruct.Baudrate = 57600; UART_initStruct.DataBits = UART_DATA_8BIT; UART_initStruct.Parity = UART_PARITY_NONE; UART_initStruct.StopBits = UART_STOP_1BIT; UART_initStruct.RXThresholdIEn = 0; UART_initStruct.TXThresholdIEn = 0; UART_initStruct.TimeoutIEn = 0; UART_Init(UART0, &UART_initStruct); UART_Open(UART0); } /****************************************************************************************************************************************** * 函数名称: fputc() * 功能说明: printf()使用此函数完成实际的串口打印动作 * 输 入: int ch 要打印的字符 * FILE *f 文件句柄 * 输 出: 无 * 注意事项: 无 ******************************************************************************************************************************************/ int fputc(int ch, FILE *f) { UART_WriteByte(UART0, ch); while(UART_IsTXBusy(UART0)); return ch; }