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#include<reg51.h>
#include"lcd.h"
#include"ds1302.h"
#include"i2c.h"
#include "DS18B20.h"
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#include <stdio.h>
#include <string.h>
#define uchar unsigned char
#define uint unsigned int
sbit LED0=P2^5;
sbit LED1=P2^6;
sbit LED2=P2^1;
sbit LED3=P2^4;
sbit LED4=P2^3;
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sbit LED5=P1^7;
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sbit key1 = P1^2;
sbit key2 = P1^3;
sbit key3 = P2^2;
sbit key4 = P2^7;
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sbit IN = P3^7;
sbit OUT = P3^6;
sbit SCL1=P1^1;
sbit SDA1=P1^0;
int cut = 0;
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int led_num = 0;
struct Time{
int hour;
int min;
int sec;
};
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struct UserInfo{
int num;
int model;
int set;
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int start;
float Light;
int temp;
struct Time time[2];
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};
struct UserInfo userInfo;
void LcdDisplay();
void LcdDisplay1();
void Delay10ms(void);
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#define SlaveAddress 0x46 //定义器件在IIC总线中的从地址,根据ALT ADDRESS地址引脚不同修改
//ALT ADDRESS引脚接地时地址为0x46,接电源时地址为0xB8
typedef unsigned char BYTE;
typedef unsigned short WORD;
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BYTE BUF[8]; //接收数据缓存区
int dis_data; //变量
void delay_nms(unsigned int k);
void InitLcd();
void Init_BH1750(void);
void WriteDataLCM(uchar dataW);
void WriteCommandLCM(uchar CMD,uchar Attribc);
void DisplayOneChar(uchar X,uchar Y,uchar DData);
void conversion(uint temp_data);
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void Single_Write_BH1750(uchar REG_Address); //单个写入数据
uchar Single_Read_BH1750(uchar REG_Address); //单个读取内部寄存器数据
void Multiple_Read_BH1750(); //连续的读取内部寄存器数据
//------------------------------------
void Delay5us();
void Delay5ms();
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void BH1750_Start(); //起始信号
void BH1750_Stop(); //停止信号
void BH1750_SendACK(bit ack); //应答ACK
bit BH1750_RecvACK(); //读ack
void BH1750_SendByte(BYTE dat); //IIC单个字节写
BYTE BH1750_RecvByte(); //IIC单个字节读
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//毫秒延时**************************
void delay_nms(unsigned int k)
{
unsigned int i,j;
for(i=0;i<k;i++)
{
for(j=0;j<121;j++)
{;}}
}
void Delay5us()
{
_nop_();_nop_();_nop_();_nop_();
_nop_();_nop_();_nop_();_nop_();
_nop_();_nop_();_nop_();_nop_();
_nop_();_nop_();_nop_();_nop_();
}
void Delay5ms()
{
WORD n = 560;
while (n--);
}
/**************************************
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**************************************/
void BH1750_Start()
{
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SDA1 = 1; //拉高数据线
SCL1 = 1; //拉高时钟线
Delay5us(); //延时
SDA1 = 0; //产生下降沿
Delay5us(); //延时
SCL1 = 0; //拉低时钟线
}
/**************************************
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**************************************/
void BH1750_Stop()
{
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SDA1 = 0; //拉低数据线
SCL1 = 1; //拉高时钟线
Delay5us(); //延时
SDA1 = 1; //产生上升沿
Delay5us(); //延时
}
/**************************************
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:ack (0:ACK 1:NAK)
**************************************/
void BH1750_SendACK(bit ack)
{
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SDA = ack; //写应答信号
SCL = 1; //拉高时钟线
Delay5us(); //延时
SCL = 0; //拉低时钟线
Delay5us(); //延时
}
/**************************************
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**************************************/
bit BH1750_RecvACK()
{
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SCL = 1; //拉高时钟线
Delay5us(); //延时
CY = SDA; //读应答信号
SCL = 0; //拉低时钟线
Delay5us(); //延时
return CY;
}
/**************************************
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IIC总线发送一个字节数据
**************************************/
void BH1750_SendByte(BYTE dat)
{
BYTE i;
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for (i=0; i<8; i++) //8位计数器
{
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dat <<= 1; //移出数据的最高位
SDA = CY; //送数据口
SCL = 1; //拉高时钟线
Delay5us(); //延时
SCL = 0; //拉低时钟线
Delay5us(); //延时
}
BH1750_RecvACK();
}
/**************************************
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IIC总线接收一个字节数据
**************************************/
BYTE BH1750_RecvByte()
{
BYTE i;
BYTE dat = 0;
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SDA = 1; //使能内部上拉,准备读取数据,
for (i=0; i<8; i++) //8位计数器
{
dat <<= 1;
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SCL = 1; //拉高时钟线
Delay5us(); //延时
dat |= SDA; //读数据
SCL = 0; //拉低时钟线
Delay5us(); //延时
}
return dat;
}
//*********************************
void Single_Write_BH1750(uchar REG_Address)
{
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BH1750_Start(); //起始信号
BH1750_SendByte(SlaveAddress); //发送设备地址+写信号
BH1750_SendByte(REG_Address); //内部寄存器地址,
// BH1750_SendByte(REG_data); //内部寄存器数据,
BH1750_Stop(); //发送停止信号
}
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//*********************************************************
//
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//连续读出BH1750内部数据
//
//*********************************************************
void Multiple_read_BH1750(void)
{ uchar i;
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BH1750_Start(); //起始信号
BH1750_SendByte(SlaveAddress+1); //发送设备地址+读信号
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for (i=0; i<3; i++) //连续读取2个地址数据,存储中BUF
{
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BUF[i] = BH1750_RecvByte(); //BUF[0]存储0x32地址中的数据
if (i == 3)
{
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BH1750_SendACK(1); //最后一个数据需要回NOACK
}
else
{
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BH1750_SendACK(0); //回应ACK
}
}
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BH1750_Stop(); //停止信号
Delay5ms();
}
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//初始化BH1750
void Init_BH1750()
{
Single_Write_BH1750(0x01);
}
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// 串口初始化
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void Uart_Init()
{
TMOD = 0x20 | 0x01;
SCON = 0x50;
TH1 = 0xFD;
TL1 = TH1;
PCON = 0x00;
EA = 1;
ES = 1;
TR1 = 1;
}
void us_delay(uchar t)
{
while(t--);
}
void Send_Uart(uchar value)
{
ES=0;
TI=0;
SBUF=value;
while(TI==0);
TI=0;
ES=1;
}
void Bluetooth_Set(uchar *puf)
{
while(*puf!='\0')
{
Send_Uart(*puf);
us_delay(5);
puf++;
}
}
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// 获取数据
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void Detection()
{
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static int num = 0;
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int i = 0;
Single_Write_BH1750(0x01);
Single_Write_BH1750(0x10);
delay_nms(180);
Multiple_Read_BH1750();
dis_data=BUF[0];
dis_data=(dis_data<<8)+BUF[1];
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userInfo.Light = (float)dis_data/1.2; // 获取光照值
userInfo.temp = Temper_change();
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userInfo.temp /= 100; // 获取温度,去除小数部分
// 按键一
if(key1==0)
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{
Delay10ms();
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if(key1==0){
if(userInfo.set == 0){
if(userInfo.model == 0) userInfo.model = 1;
else userInfo.model = 0;
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if(userInfo.model == 1) LED4 = 1, LED5 = 0;
else LED4 = 0, LED5 = 1;
}
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}
while((i<50)&&(key1==0)){
Delay10ms();
i++;
}
i=0;
}
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// 按键二
if(key2==0)
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{
Delay10ms();
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if(key2==0){
if(userInfo.model){
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led_num++;
if(led_num >= 5) led_num = 0;
}else{
if(userInfo.set == 0) userInfo.set = 1;
else userInfo.set = 0;
cut = 0;
}
LcdWriteCom(0x01); //清屏
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}
while((i<50)&&(key2==0)){
Delay10ms();
i++;
}
i=0;
}
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if(IN==0) // 光电门 进
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{
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Delay10ms();
if(IN==0){ // 去抖
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userInfo.num++;
if(userInfo.num > 99) userInfo.num = 99;
}
while((i<50)&&(IN==0)){
Delay10ms();
i++;
}
i=0;
}
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if(OUT==0) // 光电门 出
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{
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Delay10ms();
if(OUT==0){ // 去抖
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userInfo.num--;
if(userInfo.num < 0) userInfo.num = 0;
}
while((i<50)&&(OUT==0)){
Delay10ms();
i++;
}
i=0;
}
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if(key3==0) // 按键3
{
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Delay10ms();
if(key3==0){
cut++;
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if(cut >= 4) cut = 0; // 切换修改的对象
}
while((i<50)&&(key3==0)){
Delay10ms();
i++;
}
i=0;
}
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// 按键四
if(key4==0)
{
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Delay10ms();
if(key4==0){
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// 根据cut的值,修改不同的对象
if(cut == 0){
userInfo.time[0].hour++;
if(userInfo.time[0].hour >= 24) userInfo.time[0].hour = 0;
}else if(cut == 1){
userInfo.time[0].min++;
if(userInfo.time[0].min >= 59) userInfo.time[0].min = 0;
}else if(cut == 2){
userInfo.time[1].hour++;
if(userInfo.time[1].hour >= 24) userInfo.time[1].hour = 0;
}else if(cut == 3){
userInfo.time[1].min++;
if(userInfo.time[1].min >= 59) userInfo.time[1].min = 0;
}
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while((i<50)&&(key4==0)){
Delay10ms();
i++;
}
i=0;
}
}
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}
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// 获取时间是否达到 返回1为定时时间到
int getTimeResult()
{
int result = 1;
struct Time Nowtime;
Nowtime.hour = TIME[2]/16 * 10 + (TIME[2]&0x0f);
Nowtime.min = TIME[1]/16 * 10 + (TIME[1]&0x0f);
if(Nowtime.hour < userInfo.time[0].hour || Nowtime.hour > userInfo.time[1].hour) return 0;
if(Nowtime.hour == userInfo.time[0].hour && Nowtime.min < userInfo.time[0].min) return 0;
if(Nowtime.hour == userInfo.time[1].hour && Nowtime.min > userInfo.time[1].min) return 0;
return result;
}
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// 点灯
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void Dispose()
{
if(userInfo.model == 0){
if(getTimeResult() && userInfo.Light < 100){
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if(userInfo.num < 10 && userInfo.num > 0) LED0 = 0, LED1 = 0, LED2 = 0 ,LED3 = 1;
else if(userInfo.num >= 10 && userInfo.num < 20) LED0 = 0, LED1 = 0, LED2 = 1 ,LED3 = 1;
else if(userInfo.num >= 20 && userInfo.num < 30) LED0 = 0, LED1 = 1, LED2 = 1 ,LED3 = 1;
else if(userInfo.num >= 30) LED0 = 1, LED1 = 1, LED2 = 1 ,LED3 = 1;
else LED0 = 0, LED1 = 0, LED2 = 0 ,LED3 = 0;
}else{
LED0 = 0, LED1 = 0, LED2 = 0 ,LED3 = 0;
}
}else{
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if(led_num){
if(led_num == 1) LED0 = 0, LED1 = 0, LED2 = 0 ,LED3 = 1;
else if(led_num == 2) LED0 = 0, LED1 = 0, LED2 = 1 ,LED3 = 1;
else if(led_num == 3) LED0 = 0, LED1 = 1, LED2 = 1 ,LED3 = 1;
else if(led_num == 4) LED0 = 1, LED1 = 1, LED2 = 1 ,LED3 = 1;
}else{
LED0 = 0, LED1 = 0, LED2 = 0 ,LED3 = 0;
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}
}
LED4 = userInfo.model;
}
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// main
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void main()
{
int i = 0;
uchar str[10];
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Ds1302Init(); // 时钟初始化
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Uart_Init();
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LcdInit(); // lcd初始化
userInfo.time[0].hour = 18;
userInfo.time[0].min = 0;
userInfo.time[0].sec = 0;
userInfo.time[1].hour = 23;
userInfo.time[1].min = 30;
userInfo.time[1].sec = 0;
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while(1)
{
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Ds1302ReadTime(); // 读取时间
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LcdDisplay();
Detection();
Dispose();
}
}
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// 显示
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void LcdDisplay()
{
uint temp_data;
if(userInfo.set == 0){
// TODO 显示时间
LcdWriteCom(0x80);
LcdWriteData('0'+TIME[4]/16); //月
LcdWriteData('0'+(TIME[4]&0x0f));
LcdWriteData('-');
LcdWriteData('0'+TIME[3]/16); //日
LcdWriteData('0'+(TIME[3]&0x0f));
LcdWriteData(' ');
LcdWriteData('0'+TIME[2]/16); //时
LcdWriteData('0'+(TIME[2]&0x0f));
LcdWriteData(':');
LcdWriteData('0'+TIME[1]/16); //分
LcdWriteData('0'+(TIME[1]&0x0f));
LcdWriteData(':');
LcdWriteData('0'+TIME[0]/16); //秒
LcdWriteData('0'+(TIME[0]&0x0f));
LcdWriteData(' ');
LcdWriteData('0'+(TIME[5]&0x0f));
LcdWriteCom(0x80 + 0x40);
temp_data = userInfo.Light;
temp_data=temp_data%10000;
LcdWriteData(temp_data/1000+0x30);
temp_data=temp_data%1000;
LcdWriteData(temp_data/100+0x30);
temp_data=temp_data%100;
LcdWriteData(temp_data/10+0x30);
temp_data=temp_data%10;
LcdWriteData(temp_data+0x30);
LcdWriteData('L');
LcdWriteData('x');
LcdWriteData(' ');
LcdWriteData(userInfo.temp / 10 + 0x30);
LcdWriteData(userInfo.temp % 10 + 0x30);
LcdWriteData('C');
LcdWriteData(' ');
LcdWriteData(userInfo.num / 10 % 10 + 0x30);
LcdWriteData(userInfo.num % 10 + 0x30);
}else{
LcdWriteCom(0x80);
LcdWriteData('0'+ userInfo.time[0].hour/10); //时
LcdWriteData('0'+ userInfo.time[0].hour% 10);
LcdWriteData(':');
LcdWriteData('0'+userInfo.time[0].min/10); //分
LcdWriteData('0'+ userInfo.time[0].min % 10);
LcdWriteData(':');
LcdWriteData('0'+userInfo.time[0].sec / 10); //秒
LcdWriteData('0'+userInfo.time[0].sec % 10);
LcdWriteData(' ');
LcdWriteData('0'+cut);
LcdWriteCom(0x80 + 0x40);
LcdWriteData('0'+ userInfo.time[1].hour/10); //时
LcdWriteData('0'+ userInfo.time[1].hour% 10);
LcdWriteData(':');
LcdWriteData('0'+userInfo.time[1].min/10); //分
LcdWriteData('0'+ userInfo.time[1].min % 10);
LcdWriteData(':');
LcdWriteData('0'+userInfo.time[1].sec / 10); //秒
LcdWriteData('0'+userInfo.time[1].sec % 10);
}
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}
void Delay10ms(void) //<EFBFBD><EFBFBD><EFBFBD> 0us
{
unsigned char a,b,c;
for(c=1;c>0;c--)
for(b=38;b>0;b--)
for(a=130;a>0;a--);
}