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          EEPW首頁 > 嵌入式系統(tǒng) > 設計應用 > MSP430 按鍵程序 (含電路圖及源代碼)

          MSP430 按鍵程序 (含電路圖及源代碼)

          作者: 時間:2011-11-25 來源:網(wǎng)絡 收藏

          #i nclude msp430x14x.h>
          void Init_Port(void)
          {
          //將P1口所有的管腳在初始化的時候設置為輸入方式
          P1DIR = 0;

          //將P1口所有的管腳設置為一般I/O口
          P1SEL = 0;

          // 將P1.4 P1.5 P1.6 P1.7設置為輸出方向
          P1DIR |= BIT4;
          P1DIR |= BIT5;
          P1DIR |= BIT6;
          P1DIR |= BIT7;

          //先輸出低電平
          P1OUT = 0x00;

          // 將中斷寄存器清零
          P1IE = 0;
          P1IES = 0;
          P1IFG = 0;
          //打開管腳的中斷功能
          //對應的管腳由高到低電平跳變使相應的標志置位
          P1IE |= BIT0;
          P1IES |= BIT0;
          P1IE |= BIT1;
          P1IES |= BIT1;
          P1IE |= BIT2;
          P1IES |= BIT2;
          P1IE |= BIT3;
          P1IES |= BIT3;
          _EINT();//打開中斷
          return;
          }
          void Delay(void)
          {
          int i;
          for(i = 100;i--;i > 0) ;//延時一點時間
          }
          int KeyProcess(void)
          {
          int nP10,nP11,nP12,nP13;
          int nRes = 0;
          //P1.4輸出低電平
          P1OUT = ~(BIT4);
          nP10 = P1IN BIT0;
          if (nP10 == 0) nRes = 13;
          nP11 = P1IN BIT1;
          if (nP11 == 0) nRes = 14;
          nP12 = P1IN BIT2;
          if (nP12 == 0) nRes = 15;
          nP13 = P1IN BIT3;
          if (nP13 == 0) nRes = 16;
          //P1.5輸出低電平
          P1OUT = ~(BIT4);
          nP10 = P1IN BIT0;
          if (nP10 == 0) nRes = 9;
          nP11 = P1IN BIT1;
          if (nP11 == 0) nRes = 10;
          nP12 = P1IN BIT2;
          if (nP12 == 0) nRes = 11;
          nP13 = P1IN BIT3;
          if (nP13 == 0) nRes = 12;
          //P1.6輸出低電平
          P1OUT = ~(BIT4);
          nP10 = P1IN BIT0;
          if (nP10 == 0) nRes = 5;
          nP11 = P1IN BIT1;
          if (nP11 == 0) nRes = 6;
          nP12 = P1IN BIT2;
          if (nP12 == 0) nRes = 7;
          nP13 = P1IN BIT3;
          if (nP13 == 0) nRes = 8;
          //P1.7輸出低電平
          P1OUT = ~(BIT4);
          nP10 = P1IN BIT0;
          if (nP10 == 0) nRes = 1;
          nP11 = P1IN BIT1;
          if (nP11 == 0) nRes = 2;
          nP12 = P1IN BIT2;
          if (nP12 == 0) nRes = 3;
          nP13 = P1IN BIT3;
          if (nP13 == 0) nRes = 4;

          P1OUT = 0x00;//恢復以前值。

          //讀取各個管腳的狀態(tài)
          nP10 = P1IN BIT0;
          nP11 = P1IN BIT1;
          nP12 = P1IN BIT2;
          nP13 = P1IN BIT3;
          for(;;)
          {
          if(nP10 == 1 nP11 == 1 nP12 == 1 nP13 == 1)
          {
          //等待松開按鍵
          break;
          }
          }
          return nRes;
          }
          // 處理來自端口 1 的中斷
          interrupt [PORT1_VECTOR] void PORT_ISR(void)
          {
          Delay();
          KeyProcess();
          if(P1IFG BIT0)
          {
          P1IFG = ~(BIT0);// 清除中斷標志位
          }
          if(P1IFG BIT1)
          {
          P1IFG = ~(BIT1);// 清除中斷標志位
          }
          if(P1IFG BIT2)
          {
          P1IFG = ~(BIT2);// 清除中斷標志位
          }
          if(P1IFG BIT3)
          {
          P1IFG = ~(BIT3);// 清除中斷標志位
          }
          }
          void Init_CLK(void)
          {
          unsigned int i;
          BCSCTL1 = 0X00;//將寄存器的內(nèi)容清零
          //XT2震蕩器開啟
          //LFTX1工作在低頻模式
          //ACLK的分頻因子為1

          do
          {
          IFG1 = ~OFIFG; // 清除OSCFault標志
          for (i = 0x20; i > 0; i--);
          }
          while ((IFG1 OFIFG) == OFIFG); // 如果OSCFault =1

          BCSCTL2 = 0X00;//將寄存器的內(nèi)容清零
          BCSCTL2 += SELM1;//MCLK的時鐘源為TX2CLK,分頻因子為1
          BCSCTL2 += SELS;//SMCLK的時鐘源為TX2CLK,分頻因子為1
          }

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