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本帖最后由 一世长安11 于 2018-5-24 16:00 编辑
求助各位大神,我在原程序基础上改做个两路的为啥只能正常显示通道1的,通道2显示为0呢?那该怎么改比较好?求程序
主程序:
#include "stm32f10x.h"
#include "led.h"
#include "key.h"
#include "delay.h"
#include "sys.h"
#include "lcd.h"
#include "usart.h"
#include "ds18b20.h"
int main(void)
{
u8 t=0;
short wendu;
delay_init ();
uart_init (9600);
LCD_Init ();
led_Init ();
NVIC_PriorityGroupConfig(NVIC_PriorityGroup_2);
POINT_COLOR =RED ;
LCD_ShowString (30,90,200,16,16,"Temperature Display");
LCD_ShowString(30,110,200,16,16,"2018.05.20");
while(DS18B20_Init_Int1())
{
LCD_ShowString(30,130,200,16,16,"DS18B20_Int1 is NO!");
delay_ms(200);
LCD_Fill(30,130,239,130+16,WHITE );
delay_ms (200);
}
LCD_ShowString(30,130,200,16,16,"DS18B20_Int1 is OK! ");
POINT_COLOR=BLUE ;
LCD_ShowString(30,150,200,16,16,"temp1: . C");
while(DS18B20_Init_Int2())
{
LCD_ShowString(30,170,200,16,16,"DS18B20_Int2 is NO!");
delay_ms(200);
//LCD_Fill(30,170,239,170+16,WHITE );
delay_ms (200);
}
LCD_ShowString(30,170,200,16,16,"DS18B20_Int2 is OK!");
POINT_COLOR=BLACK ;
LCD_ShowString(30,190,200,16,16,"temp2: . C");
while(1)
{
if(t%10==0)
{
DS18B20_Star_Int1();
wendu =DS18B20_Get_Temp_Int1();
if(wendu<0)
{
LCD_ShowChar(30+50,150,'-',16,0);
wendu =-wendu ;
printf ("此时通道1温度为:-%f\r\n",wendu/10.0);
}
else
LCD_ShowChar(30+50,150,' ',16,0);
LCD_ShowNum (30+50+8,150,wendu/10,2,16);
LCD_ShowNum(30+50+32,150,wendu%10,1,16);
printf ("此时通道1温度为:%f\r\n",wendu/10.0);
}
delay_ms(10);
t++;
if(t==20)
{
LED0 =!LED0 ;
}
}
}
.h程序:
#ifndef __DS18B20_H
#define __DS18B20_H
#include "sys.h"
#define DS18B20_IO_Out_Int1() {GPIOA->CRL&=0xffffff0f; GPIOA->CRL|=3<<4;} //复用推挽式输出,最大速度50MHz
#define DS18B20_IO_In_Int1() {GPIOA->CRL&=0xffffff0f; GPIOA->CRL|=8<<4;} //上拉输入,最大速度50MHz
#define DS18B20_DQ_Out_Int1 PAout(1) //数据端口输出
#define DS18B20_DQ_In_Int1 PAin(1) //数据端口输入
void DS18B20_Rst_Int1(void ); //复位脉冲
u8 DS18B20_Check_Int1(void ); //应答脉冲,检测DS18B20的存在
void DS18B20_Write_Byte_Int1(u8 dat); //写时序
u8 DS18B20_Read_Byte_Int1(void); //读时序
u8 DS18B20_Read_Bit_Int1(void); //读出一个位
void DS18B20_Star_Int1(void ); //开始温度转换
short DS18B20_Get_Temp_Int1(void ); //得到温度值
u8 DS18B20_Init_Int1(void); //初始化
#define DS18B20_IO_Out_Int2() {GPIOA->CRL&=0xfffffff0; GPIOA->CRL|=3<<0;} //复用推挽式输出,最大速度50MHz
#define DS18B20_IO_In_Int2() {GPIOA->CRL&=0xfffffff0; GPIOA->CRL|=8<<0;} //上拉输入,最大速度50MHz
#define DS18B20_DQ_Out_Int2 PAout(0) //数据端口输出
#define DS18B20_DQ_In_Int2 PAin(0) //数据端口输入
void DS18B20_Rst_Int2(void ); //复位脉冲
u8 DS18B20_Check_Int2(void ); //应答脉冲,检测DS18B20的存在
void DS18B20_Write_Byte_Int2(u8 dat); //写时序
u8 DS18B20_Read_Byte_Int2(void); //读时序
u8 DS18B20_Read_Bit_Int2(void); //读出一个位
void DS18B20_Star_Int2(void ); //开始温度转换
short DS18B20_Get_Temp_Int2(void ); //得到温度值
u8 DS18B20_Init_Int2(void); //初始化
#endif
.C程序:
#include "ds18b20.h"
#include "delay.h"
#include "usart.h"
void DS18B20_Rst_Int1(void ) //复位脉冲
{
DS18B20_IO_Out_Int1();
DS18B20_DQ_Out_Int1 =0;
delay_us(750);
DS18B20_DQ_Out_Int1=1;
delay_us(15);
}
u8 DS18B20_Check_Int1(void) //应答脉冲,检测传感器的存在
{
u8 ch=0;
DS18B20_IO_In_Int1();
while (DS18B20_DQ_In_Int1&&ch<200) //高电平或低电平时间太短
{
ch++;
delay_us(1);
}
if(ch>=200) return 1; //高电平持续时间太长,传感器不存在
else ch=0;
while(!DS18B20_DQ_In_Int1&&ch<240) //检测到低电平
{
ch++;
delay_us(1);
};
if(ch>=240) return 1; //低电平时间太长
return 0;
}
void DS18B20_Write_Byte_Int1(u8 dat) //写时序
{
u8 i,test;
DS18B20_IO_Out_Int1();
for(i=1;i<=8;i++)
{
test =dat &0x01; //从最低位开始写
dat =dat>>1; //写数据从低位到高位
if(test ) //写1
{
DS18B20_DQ_Out_Int1=0;
delay_us(2);
DS18B20_DQ_Out_Int1=1;
delay_us(60);
}
else //写0
{
DS18B20_DQ_Out_Int1=0;
delay_us(60);
DS18B20_DQ_Out_Int1=1;
delay_us(2);
}
}
}
u8 DS18B20_Read_Bit_Int1(void) //读一个位
{
u8 data;
DS18B20_IO_Out_Int1();
DS18B20_DQ_Out_Int1=0;
delay_us(2);
DS18B20_DQ_Out_Int1=1;
DS18B20_IO_In_Int1();
delay_us(12);
if(DS18B20_DQ_In_Int1) data=1;
else
data=0;
delay_us(50);
return data;
}
u8 DS18B20_Read_Byte_Int1(void) //读时序,读一个字节
{
u8 dat=0,j,num;
for(j=1; j<=8;j++)
{
num=DS18B20_Read_Bit_Int1();
dat=(num <<7|dat>>1); //将数据按位逐次存储
}
return dat;
}
void DS18B20_Star_Int1 (void ) //
{
DS18B20_Rst_Int1();
DS18B20_Check_Int1();
DS18B20_Write_Byte_Int1(0xcc);
DS18B20_Write_Byte_Int1(0x44);
DS18B20_IO_Out_Int1();
DS18B20_DQ_Out_Int1=1;
delay_ms(1000);
}
short DS18B20_Get_Temp_Int1(void) //读取温度值
{
u8 TH,TL;
u8 temp;
short tem;
DS18B20_Star_Int1();
DS18B20_Rst_Int1();
DS18B20_Check_Int1();
DS18B20_Write_Byte_Int1(0xcc);
DS18B20_Write_Byte_Int1(0xbe);
TL=DS18B20_Read_Byte_Int1();
TH=DS18B20_Read_Byte_Int1();
if(TH>7) //温度为正
{
TH=~TH;
TL=~TL;
temp=0;
}
else
temp=1;
tem=TH;
tem <<=8;
tem +=TL;
tem =(float)tem *0.625;
if(temp) return tem;
else return -tem;
}
u8 DS18B20_Init_Int1(void) //初始化
{
GPIO_InitTypeDef GPIO_InitStruct;
RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOA,ENABLE );
GPIO_InitStruct.GPIO_Mode =GPIO_Mode_Out_PP;
GPIO_InitStruct.GPIO_Pin =GPIO_Pin_1;
GPIO_InitStruct.GPIO_Speed =GPIO_Speed_50MHz;
GPIO_Init(GPIOA,&GPIO_InitStruct);
GPIO_SetBits(GPIOA ,GPIO_Pin_1);
DS18B20_Rst_Int1();
return DS18B20_Check_Int1();
}
void DS18B20_Rst_Int2(void ) //复位脉冲
{
DS18B20_IO_Out_Int2();
DS18B20_DQ_Out_Int2 =0;
delay_us(750);
DS18B20_DQ_Out_Int2=1;
delay_us(15);
}
u8 DS18B20_Check_Int2(void) //应答脉冲,检测传感器的存在
{
u8 ch=0;
DS18B20_IO_In_Int2();
while (DS18B20_DQ_In_Int2&&ch<200) //高电平或低电平时间太短
{
ch++;
delay_us(1);
}
if(ch>=200) return 1; //高电平持续时间太长,传感器不存在
else ch=0;
while(!DS18B20_DQ_In_Int2&&ch<240) //检测到低电平
{
ch++;
delay_us(1);
};
if(ch>=240) return 1; //低电平时间太长
return 0;
}
void DS18B20_Write_Byte_Int2(u8 dat) //写时序
{
u8 i,test;
DS18B20_IO_Out_Int2();
for(i=1;i<=8;i++)
{
test =dat &0x01; //从最低位开始写
dat =dat>>1; //写数据从低位到高位
if(test ) //写1
{
DS18B20_DQ_Out_Int2=0;
delay_us(2);
DS18B20_DQ_Out_Int2=1;
delay_us(60);
}
else //写0
{
DS18B20_DQ_Out_Int1=0;
delay_us(60);
DS18B20_DQ_Out_Int1=1;
delay_us(2);
}
}
}
u8 DS18B20_Read_Bit_Int2(void) //读一个位
{
u8 data;
DS18B20_IO_Out_Int2();
DS18B20_DQ_Out_Int2=0;
delay_us(2);
DS18B20_DQ_Out_Int2=1;
DS18B20_IO_In_Int2();
delay_us(12);
if(DS18B20_DQ_In_Int2) data=1;
else
data=0;
delay_us(50);
return data;
}
u8 DS18B20_Read_Byte_Int2(void) //读时序,读一个字节
{
u8 dat=0,j,num;
for(j=1; j<=8;j++)
{
num=DS18B20_Read_Bit_Int2();
dat=(num <<7|dat>>1); //将数据按位逐次存储
}
return dat;
}
void DS18B20_Star_Int2 (void ) //
{
DS18B20_Rst_Int2();
DS18B20_Check_Int2();
DS18B20_Write_Byte_Int2(0xcc);
DS18B20_Write_Byte_Int2(0x44);
DS18B20_IO_Out_Int2();
DS18B20_DQ_Out_Int2=1;
delay_ms(1000);
}
short DS18B20_Get_Temp_Int2(void) //读取温度值
{
u8 TH,TL;
u8 temp;
short tem;
DS18B20_Star_Int2();
DS18B20_Rst_Int2();
DS18B20_Check_Int2();
DS18B20_Write_Byte_Int2(0xcc);
DS18B20_Write_Byte_Int2(0xbe);
TL=DS18B20_Read_Byte_Int2();
TH=DS18B20_Read_Byte_Int2();
if(TH>7) //温度为正
{
TH=~TH;
TL=~TL;
temp=0;
}
else
temp=1;
tem=TH;
tem <<=8;
tem +=TL;
tem =(float)tem *0.625;
if(temp) return tem;
else return -tem;
}
u8 DS18B20_Init_Int2(void) //初始化
{
GPIO_InitTypeDef GPIO_InitStruct;
RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOA,ENABLE );
GPIO_InitStruct.GPIO_Mode =GPIO_Mode_Out_PP;
GPIO_InitStruct.GPIO_Pin =GPIO_Pin_0;
GPIO_InitStruct.GPIO_Speed =GPIO_Speed_50MHz;
GPIO_Init(GPIOA,&GPIO_InitStruct);
GPIO_SetBits(GPIOA ,GPIO_Pin_0);
DS18B20_Rst_Int2();
return DS18B20_Check_Int2();
}
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