60 lines
1.3 KiB
C
60 lines
1.3 KiB
C
#include "battery.h"
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extern MyUART_Struct_Typedef uartCool;
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extern int actualMinutes;
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extern uint32_t oldAdc;
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void battery(uint32_t data)
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{
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MyRTC_Struct_TypeDef rtcBattery;
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MyRTC_GetTime(&rtcBattery);
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if((actualMinutes == rtcBattery.minutes) && isClose(oldAdc,data,100)) //pas de precision/10 %
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{
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return;
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}
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float percentBattery = ((float)data)/MAX_BAT;
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if(percentBattery > 1)
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{
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return;
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}
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oldAdc = data;
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actualMinutes = rtcBattery.minutes;
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char batteryBar[13]="[__________]";
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char testChar[25];
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getGauge(batteryBar, percentBattery);
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sprintf(testChar,"[%.2d:%.2d] %s %.3d%%",rtcBattery.hours,rtcBattery.minutes,batteryBar,(int)(percentBattery*100));
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MyUART_SendArray(&uartCool, (uint8_t *)testChar, 25);
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MyUART_Send(&uartCool, '\n');
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}
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void getGauge(char gauge[], float percent)
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{
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int i;
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percent=percent*10;
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for(i=(10-percent)+1; i<11; i++)
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{
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gauge[i]='#';
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}
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gauge[12]='\0';
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}
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char isClose(uint32_t data, uint32_t compare, int precision)
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{
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if(data < precision)
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{
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return !(data >= compare+precision);
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}
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return !((data >= compare+precision) || (data <= compare-precision));
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}
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void initBattery(void)
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{
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MyADC_Init_Periph(battery);
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MyADC_Struct_TypeDef adcBattery = {ADC1,10,cycles239d5};
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MyADC_Init(&adcBattery);
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MyGPIO_Struct_TypeDef gpioBattery = {GPIOC,0,In_Analog};
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MyGPIO_Init(&gpioBattery);
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}
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