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          STM32 外部中斷的使用

          作者: 時(shí)間:2016-11-25 來源:網(wǎng)絡(luò) 收藏
          例程名稱:外部中斷實(shí)驗(yàn)

          者:tkzsld(sky)
          實(shí)驗(yàn)硬件:火牛開發(fā)板
          硬件連接:指示燈連接 PD9
          按鈕連接 PA8
          功能描述:本例程實(shí)現(xiàn)外部中斷的輸入試驗(yàn),
          按鍵次數(shù) 1:PD8 PD9 ON 2:PD8 PD9 OFF
          3:PD10 PD11 ON 4:PD10 PD11 OFF
          5:PD8-11 ON 6:PD8-11 OFF
          7: PB5 BEEP ON 8 :BEEP OFF

          ********************************************************************/

          本文引用地址:http://www.ex-cimer.com/article/201611/321208.htm

          #include <stm32f10x_lib.h> // STM32F10x Library Definitions
          #include "STM32_Init.h" // STM32 Initialization
          u8 flag=0;
          void beep(void);
          void ledblink(void);
          void Delay(vu16 cnt) {
          uint16 i,j;
          for (i=0;i{ for (j=0;j<1000;j++)
          { }
          }
          }


          void RCC_Configuration(void)
          {
          ErrorStatus HSEStartUpStatus;

          //使能外部晶振
          RCC_HSEConfig(RCC_HSE_ON);
          //等待外部晶振穩(wěn)定
          HSEStartUpStatus = RCC_WaitForHSEStartUp();
          //如果外部晶振啟動成功,則進(jìn)行下一步操作
          if(HSEStartUpStatus==SUCCESS)
          {
          //設(shè)置HCLK(AHB時(shí)鐘)=SYSCLK
          RCC_HCLKConfig(RCC_SYSCLK_Div1);

          //PCLK1(APB1) = HCLK/2
          RCC_PCLK1Config(RCC_HCLK_Div2);

          //PCLK2(APB2) = HCLK
          RCC_PCLK2Config(RCC_HCLK_Div1);


          RCC_PLLConfig(RCC_PLLSource_HSE_Div1, RCC_PLLMul_4);
          //啟動PLL
          RCC_PLLCmd(ENABLE);
          //等待PLL穩(wěn)定
          while(RCC_GetFlagStatus(RCC_FLAG_PLLRDY) == RESET);
          //系統(tǒng)時(shí)鐘SYSCLK來自PLL輸出
          RCC_SYSCLKConfig(RCC_SYSCLKSource_PLLCLK);
          //切換時(shí)鐘后等待系統(tǒng)時(shí)鐘穩(wěn)定
          while(RCC_GetSYSCLKSource()!=0x08);
          }

          //給GPIOA和重映射提供時(shí)鐘,注意:一定要設(shè)置RCC_APB2Periph_AFIO
          RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOA|RCC_APB2Periph_GPIOB|RCC_APB2Periph_GPIOD|RCC_APB2Periph_AFIO , ENABLE);

          }



          void GPIO_Configuration(void)
          {

          GPIO_InitTypeDef GPIO_InitStructure;

          GPIO_InitStructure.GPIO_Pin = GPIO_Pin_8;
          GPIO_InitStructure.GPIO_Speed = GPIO_Speed_10MHz;
          GPIO_InitStructure.GPIO_Mode = GPIO_Mode_IN_FLOATING;
          GPIO_Init(GPIOA,&GPIO_InitStructure);

          GPIO_InitStructure.GPIO_Pin = GPIO_Pin_9|GPIO_Pin_8|GPIO_Pin_10|GPIO_Pin_11;
          GPIO_InitStructure.GPIO_Speed = GPIO_Speed_10MHz;
          GPIO_InitStructure.GPIO_Mode = GPIO_Mode_Out_PP;
          GPIO_Init(GPIOD, &GPIO_InitStructure);

          GPIO_InitStructure.GPIO_Pin = GPIO_Pin_5;
          GPIO_InitStructure.GPIO_Speed = GPIO_Speed_10MHz;
          GPIO_InitStructure.GPIO_Mode = GPIO_Mode_Out_PP;
          GPIO_Init(GPIOB, &GPIO_InitStructure);

          }


          void EXTI_Configuration(void)
          {
          EXTI_InitTypeDef EXTI_InitStructure;

          GPIO_EXTILineConfig(GPIO_PortSourceGPIOA, GPIO_PinSource8);
          EXTI_ClearITPendingBit(EXTI_Line8);

          EXTI_InitStructure.EXTI_Mode = EXTI_Mode_Interrupt;
          EXTI_InitStructure.EXTI_Trigger = EXTI_Trigger_Rising;
          EXTI_InitStructure.EXTI_Line =EXTI_Line8;
          EXTI_InitStructure.EXTI_LineCmd = ENABLE;
          EXTI_Init(&EXTI_InitStructure);
          }


          void NVIC_Configuration(void)
          {
          NVIC_InitTypeDef NVIC_InitStructure;

          #ifdef VECT_TAB_RAM

          NVIC_SetVectorTable(NVIC_VectTab_RAM, 0x0);
          #else

          NVIC_SetVectorTable(NVIC_VectTab_FLASH, 0x0);
          #endif
          NVIC_PriorityGroupConfig(NVIC_PriorityGroup_0); //搶占式優(yōu)先級別設(shè)置為無搶占優(yōu)先級


          NVIC_InitStructure.NVIC_IRQChannel = EXTI9_5_IRQChannel; //指定中斷源
          NVIC_InitStructure.NVIC_IRQChannelPreemptionPriority = 0;//
          NVIC_InitStructure.NVIC_IRQChannelSubPriority = 0; //指定響應(yīng)優(yōu)先級別1
          NVIC_InitStructure.NVIC_IRQChannelCmd = ENABLE; //使能外部中斷通道8
          NVIC_Init(&NVIC_InitStructure);
          // EXTI_GenerateSWInterrupt(EXTI_Line8);
          }

          int main (void)
          {

          RCC_Configuration(); //配置時(shí)鐘
          GPIO_Configuration(); //配置IO口
          NVIC_Configuration(); //中斷配置
          EXTI_Configuration(); //外部中斷配置
          while(1)
          {
          switch(flag)
          {
          case 0: GPIO_WriteBit(GPIOD, GPIO_Pin_8|GPIO_Pin_9,(BitAction)1);break;
          //Delay(1000);
          case 1: GPIO_WriteBit(GPIOD, GPIO_Pin_9|GPIO_Pin_8,(BitAction)0);break;
          //Delay(1000);
          case 2: GPIO_WriteBit(GPIOD, GPIO_Pin_10|GPIO_Pin_11,(BitAction)1); break;
          case 3: GPIO_WriteBit(GPIOD, GPIO_Pin_10|GPIO_Pin_11,(BitAction)0); break;

          case 4: GPIO_WriteBit(GPIOD, GPIO_Pin_8|GPIO_Pin_9|GPIO_Pin_10|GPIO_Pin_11,(BitAction)1); break;
          case 5: GPIO_WriteBit(GPIOD, GPIO_Pin_8|GPIO_Pin_9|GPIO_Pin_10|GPIO_Pin_11,(BitAction)0); break;

          case 6: beep();break;
          case 7: ledblink();break;
          case 8: GPIO_WriteBit(GPIOB, GPIO_Pin_5,(BitAction)0);break;
          default: flag=0;break;
          }
          }
          }


          void EXTI9_5_IRQHandler(void)
          {
          if(EXTI_GetITStatus(EXTI_Line8) != RESET)
          {
          Delay(100);
          if(EXTI_GetITStatus(EXTI_Line8) != RESET)
          {
          //添加中斷處理程序
          flag++;
          EXTI_ClearFlag(EXTI_Line8); //清除中斷標(biāo)志(必須)
          // EXTI_ClearITPendingBit(EXTI_Line8);
          }
          }
          }

          void ledblink()
          {
          u16 k;
          for(k=0;k<100;k=k+5)
          {
          GPIO_WriteBit(GPIOD, GPIO_Pin_8|GPIO_Pin_9|GPIO_Pin_10|GPIO_Pin_11,(BitAction)1);
          Delay(1000);
          GPIO_WriteBit(GPIOD, GPIO_Pin_8|GPIO_Pin_9|GPIO_Pin_10|GPIO_Pin_11,(BitAction)0);
          Delay(1000);
          }
          }

          void beep(void)
          {

          GPIO_WriteBit(GPIOB, GPIO_Pin_5,(BitAction)1);
          Delay(1000);
          GPIO_WriteBit(GPIOB, GPIO_Pin_5,(BitAction)0);

          }



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