代码如下 开启后调试无法进入中断函数 但在阻塞接收下测试接收没问题
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/**
* main.c
*/
#include "device.h"
#include "driverlib.h"
#include <stdint.h>
#include <stdlib.h>
#include <stddef.h>
#include <string.h>
#include <stdio.h>
#include <math.h>
//
// Globals
//
//
// Send data for SCI-A
//
uint16_t TX_Buf[2]={0xAA,0xBB};
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/** * main.c */ #include "device.h" #include "driverlib.h" #include <stdint.h> #include <stdlib.h> #include <stddef.h> #include <string.h> #include <stdio.h> #include <math.h> // // Globals // // // Send data for SCI-A // uint16_t TX_Buf[2]={0xAA,0xBB}; // // Received data for SCI-A // uint16_t RX_Buf[2]={0xFF,0xFF}; // // Function Prototypes // __interrupt void sciaRXISR(void); void initSCIA(void); void error(void); // // error - Function to halt debugger on error // void error(void) { asm(" ESTOP0"); // Test failed!! Stop! for (;;); } void Init_GPIO(void) { // // GPIO28 is the SCI Rx pin. // GPIO_setPinConfig(DEVICE_GPIO_CFG_SCIRXDA); GPIO_setDirectionMode(DEVICE_GPIO_PIN_SCIRXDA, GPIO_DIR_MODE_IN); GPIO_setPadConfig(DEVICE_GPIO_PIN_SCIRXDA, GPIO_PIN_TYPE_STD); GPIO_setQualificationMode(DEVICE_GPIO_PIN_SCIRXDA, GPIO_QUAL_ASYNC); // // GPIO29 is the SCI Tx pin. // GPIO_setPinConfig(DEVICE_GPIO_CFG_SCITXDA); GPIO_setDirectionMode(DEVICE_GPIO_PIN_SCITXDA, GPIO_DIR_MODE_OUT); GPIO_setPadConfig(DEVICE_GPIO_PIN_SCITXDA, GPIO_PIN_TYPE_STD); GPIO_setQualificationMode(DEVICE_GPIO_PIN_SCITXDA, GPIO_QUAL_ASYNC); } void initSCIA() { // // 8 char bits, 1 stop bit, no parity. Baud rate is 9600. // SCI_setConfig(SCIA_BASE, DEVICE_LSPCLK_FREQ, 115200, (SCI_CONFIG_WLEN_8 | SCI_CONFIG_STOP_ONE | SCI_CONFIG_PAR_NONE)); SCI_enableModule(SCIA_BASE); SCI_enableTxModule(SCIA_BASE); SCI_enableRxModule(SCIA_BASE); SCI_resetChannels(SCIA_BASE); // // RX Interrupts Enabled // SCI_enableInterrupt(SCIA_BASE, (SCI_INT_RXRDY_BRKDT)); // SCI_disableInterrupt(SCIA_BASE, SCI_INT_RXERR); SCI_performSoftwareReset(SCIA_BASE); } void Init_SCI(void) { // // Interrupts that are used in this example are re-mapped to // ISR functions found within this file. // Interrupt_register(INT_SCIA_RX, sciaRXISR); // // Initialize the Device Peripherals: // initSCIA(); Interrupt_enable(INT_SCIA_RX); Interrupt_clearACKGroup(INTERRUPT_ACK_GROUP9); SCI_readCharNonBlocking(SCIA_BASE); } void delay_ms(uint32_t ms) { while(ms--) { DEVICE_DELAY_US(1000); } } int main(void) { // // Initializes system control, device clock, and peripherals // Device_init(); Device_initGPIO(); Init_GPIO(); Init_SCI(); // // Initializes PIE and clear PIE registers. Disables CPU interrupts. // and clear all CPU interrupt flags. // Interrupt_initModule(); // // Initialize the PIE vector table with pointers to the shell interrupt // Service Routines (ISR). // Interrupt_initVectorTable(); // // Enable Global Interrupt (INTM) and realtime interrupt (DBGM) // EINT; ERTM; delay_ms(10); SCI_writeCharArray(SCIA_BASE, TX_Buf, 2); while (1) { delay_ms(500); SCI_writeCharArray(SCIA_BASE, RX_Buf, 1); } } __interrupt void sciaRXISR(void) { SCI_readCharArray(SCIA_BASE, RX_Buf, 1); // SCI_clearOverflowStatus(SCIA_BASE); // // SCI_clearInterruptStatus(SCIA_BASE, SCI_INT_RXRDY_BRKDT); // // // // Issue PIE ack // // // Interrupt_clearACKGroup(INTERRUPT_ACK_GROUP9); }
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