给你写个程序,经仿真无误。按键和LED端口可按实际电路修改。 #include<reg52.h> #define uint unsigned int #define uchar unsigned char uchar code table1[]={0x01,0x02,0x04,0x08,0x10,0x20,0x40,0x80}; uchar code table2[]={0x18,0x24,0x42,0x81,0x18,0x24,0x42,0x81}; uchar code table3[]={0x81,0x42,0x24,0x18,0x81,0x42,0x24,0x18}; uchar code table4[]={0x80,0x40,0x20,0x10,0x08,0x04,0x02,0x01}; uint Cnt250us=0; uchar key=0; void Timer0Init() //250微秒@11.0592MHz { TMOD |= 0x02; //设置定时器模式 TL0 = 0x1A; //设置定时初值 TH0 = 0x1A; //设置定时重载值 TF0 = 0; //清除TF0标志 TR0 = 1; //定时器0开始计时 } void delay(uint xms) //延时子函数 { uint i,j; for(i=xms;i>0;i--) for(j=110;j>0;j--); } void key_scan() //按键检测子函数 { uchar x; static bit sign=0; x=P1&0x0f; if(x!=0x0f) //检测键是否被按下 { delay(10); if((x!=0x0f)&&(sign==0)) { sign=1; x=P1&0x0f; switch(x) { case 0x0e: key=1; break; case 0x0d: key=2; break; case 0x0b: key=3; break; case 0x07: key=4; break; } } } else sign=0; } void key_service() //按键服务程序 { static uchar i=0; if(key!=0) { switch(key) { case 1: P2=~table1; break; case 2: P2=~table2; break; case 3: P2=~table3; break; case 4: P2=~table4; break; } i++; if(i>=8) i=0; } } void main() { Timer0Init(); while(1) { key_scan(); if(TF0==1) { TF0=0; Cnt250us++; if(Cnt250us>=1000) { Cnt250us=0; key_service(); } } } } ![]() |
在原地踏步或反复执行。 |