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#include <stdio.h>
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#include <fat32.h>
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#include <gpio.h>
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#include <uart.h>
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#include <stm32f4xx.h>
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#include <math.h>
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#include <bsp.h>
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#include <i2c.h>
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#include <CS43L22.h>
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#include <ina226.h>
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#include <fonts.h>
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#include <stdlib.h>
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#include <core.h>
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#include <malloc.h>
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extern streamdevice* __opnfiles__[];
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#define LCD_COLOR_WHITE 0xFFFF
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#define LCD_COLOR_BLACK 0x0000
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#define LCD_COLOR_GREY 0xF7DE
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#define LCD_COLOR_BLUE 0x001F
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#define LCD_COLOR_BLUE2 0x051F
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#define LCD_COLOR_RED 0xF800
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#define LCD_COLOR_MAGENTA 0xF81F
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#define LCD_COLOR_GREEN 0x07E0
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#define LCD_COLOR_CYAN 0x7FFF
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#define LCD_COLOR_YELLOW 0xFFE0
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#ifndef PSU_DISABLE
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#define PSU_DISABLE LED1
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#endif
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void setUartAsStdout()
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{
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streamdevice* fd1 = (streamdevice*)malloc(sizeof(streamdevice));
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uart_t uart = uartopenandconfig(uart1,uartparitynone | uart8bits | uartonestop,115200,PA9,PA10,-1,-1);
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uartmkstreamdev(uart,fd1);
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__opnfiles__[1] = fd1;
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}
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void printSupplyStatus(int cur5v,int cur33v,int cur15v, int volt5v, int volt33v, int volt15v)
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{
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char buffer[64];
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int i=0;
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int power5V=(cur5v*(volt5v/1000))/1000,power33V=(cur33v*(volt33v/1000))/1000,power15V=(cur15v*(volt15v/1000))/1000;
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#define clearBuff for(i=0;i<64;i++)buffer[i]='\0'
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ili9328paintFilRect(&lcd0,5,5,230,7*(ComicSansMS_18.Height+10)+50,LCD_COLOR_BLACK,4,LCD_COLOR_WHITE);
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ili9328paintFilRect(&lcd0,5,7*(ComicSansMS_18.Height+10)+50,230,320 - (7*(ComicSansMS_18.Height+10)+50),LCD_COLOR_BLACK,4,LCD_COLOR_WHITE);
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clearBuff;
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sprintf(buffer,"%.3fV %dmA",volt5v/1000000.0,cur5v);
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ili9328paintText(&lcd0,buffer,10,0*(ComicSansMS_18.Height+10)+50,&ComicSansMS_18,LCD_COLOR_BLACK);
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clearBuff;
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sprintf(buffer,"%dmW",power5V);
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ili9328paintText(&lcd0,buffer,10,1*(ComicSansMS_18.Height+10)+50,&ComicSansMS_18,LCD_COLOR_BLACK);
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clearBuff;
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sprintf(buffer,"%.3fV %dmA",volt33v/1000000.0,cur33v);
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ili9328paintText(&lcd0,buffer,10,2*(ComicSansMS_18.Height+10)+50,&ComicSansMS_18,LCD_COLOR_BLACK);
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clearBuff;
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sprintf(buffer,"%dmW",power33V);
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ili9328paintText(&lcd0,buffer,10,3*(ComicSansMS_18.Height+10)+50,&ComicSansMS_18,LCD_COLOR_BLACK);
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clearBuff;
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sprintf(buffer,"%.3fV %dmA",volt15v/1000000.0,cur15v);
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ili9328paintText(&lcd0,buffer,10,4*(ComicSansMS_18.Height+10)+50,&ComicSansMS_18,LCD_COLOR_BLACK);
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clearBuff;
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sprintf(buffer,"%dmW",power15V);
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ili9328paintText(&lcd0,buffer,10,5*(ComicSansMS_18.Height+10)+50,&ComicSansMS_18,LCD_COLOR_BLACK);
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clearBuff;
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sprintf(buffer,"Total = %dmW",power5V+power33V+power15V);
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ili9328paintText(&lcd0,buffer,10,320-10-20,&ComicSansMS_18,LCD_COLOR_BLACK);
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}
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int main()
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{
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delay_100us(20000);
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INA226_t ina5VSens,ina33VSens,ina15VSens;
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gpioset(PSU_DISABLE);//enable psu!
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setUartAsStdout();
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//ili9328paintFilRect(&lcd0,0,0,240,320,LCD_COLOR_BLACK,1,LCD_COLOR_BLACK);
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ili9328paintFilRect(&lcd0,5,5,230,310,LCD_COLOR_BLACK,4,LCD_COLOR_WHITE);
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if(-1==ina226open(&ina33VSens,i2c2,INA226_MODE_SHUNT_VOLTAGE_CONTINUOUS|INA226_AVERAGES_16|INA226_BUS_CONV_8244us|INA226_SHUNT_CONV_8244us,0,1,15,1000000))
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{
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printf("Can't open 3.3V monitor\n\r");
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}
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if(-1==ina226open(&ina5VSens,i2c2,INA226_MODE_SHUNT_VOLTAGE_CONTINUOUS|INA226_AVERAGES_16|INA226_BUS_CONV_8244us|INA226_SHUNT_CONV_8244us,0,0,15,1000000))
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{
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printf("Can't open 5V monitor\n\r");
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}
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if(-1==ina226open(&ina15VSens,i2c2,INA226_MODE_SHUNT_VOLTAGE_CONTINUOUS|INA226_AVERAGES_16|INA226_BUS_CONV_8244us|INA226_SHUNT_CONV_8244us,1,0,15,1000000))
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{
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printf("Can't open 1.5V monitor\n\r");
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}
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int current5V,current33V,current15V,volt5v, volt33v, volt15v;
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while(1)
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{
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current5V = ina226getCurrent(&ina5VSens);
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current33V = ina226getCurrent(&ina33VSens);
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current15V = ina226getCurrent(&ina15VSens);
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volt5v = ina226getBusVoltage(&ina5VSens);
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volt33v = ina226getBusVoltage(&ina33VSens);
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volt15v = ina226getBusVoltage(&ina15VSens);
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printf("%fV\t%dmA\n\r",volt15v/1000000.0,current15V/1000);
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printf("%fV\t%dmA\n\r",volt33v/1000000.0,current33V/1000);
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printf("%fV\t%dmA\n\r",volt5v/1000000.0,current5V/1000);
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printSupplyStatus(current5V/1000,current33V/1000,current15V/1000,volt5v, volt33v, volt15v);
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delay_100us(10000);
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}
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printf("Exit\n\r");
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return 0;
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}
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