Skeleton program for Federico's 4YP project.

Dependencies:   WebSocketClient WiflyInterface mbed messages

Fork of IoT_Ex by Damien Frost

source/ADC.cpp

Committer:
defrost
Date:
2016-10-04
Revision:
3:f20e114eb2ee
Parent:
2:7abdaa5a9209
Child:
5:0c7d131e6089

File content as of revision 3:f20e114eb2ee:

#include "ADC.h"
#include "globals.h"
#include "mbed.h"


//#define DEBUG
#define INFOMESSAGES
#define WARNMESSAGES
#define ERRMESSAGES
#define FUNCNAME "ADC"
#include "messages.h"


void ConfigureADC(void){
    
    unsigned int value;
    
    // ensure power is turned on
    // Grabbed from lines 54-57 of analogin_api.c
    // This turns on the clock to Ports A, B, and C
    RCC->AHB1ENR |= RCC_AHB1ENR_GPIOAEN | RCC_AHB1ENR_GPIOBEN | RCC_AHB1ENR_GPIOCEN;
    // This turns on the clock to the ADC:
    RCC->APB2ENR |= RCC_APB2ENR_ADC1EN;
    
    
    // Turn on the ADC:
    value = ADC_CR2_ADON;
    ADC1->CR2 = value;
    wait_us(100);
    
    // Set the EOC flag at the end of every regular conversion:
    ADC1->CR2 |= ADC_CR2_EOCS;
    
    // Turn on the internal temperature sensor:
    ADC->CCR |= ADC_CCR_TSVREFE;
    
    // Set the first (and only channel) to convert to CH16, the internal temperature sensor:
    ADC1->SQR3 |= ADC_SQR3_SQ1_4;
    
    // Set the sample numbers (making this bigger samples more slowly):
    ADC1->SMPR2 = ADC_SMPR1_SMP16_1 | ADC_SMPR1_SMP16_2; // Set for 144 ADC clock cycles
    
    
    INFO("ADC configuration complete!");
    DBG("ADC Registers:\n\r");
    DBG("The SR Register reads: %d\n\r", ADC1->SR);
    DBG("The CR1 Register reads: %d\n\r", ADC1->CR1);
    DBG("The CR2 Register reads: %d\n\r", ADC1->CR2);
    DBG("The JSQR Register reads: %d\n\r", ADC1->JSQR);
    
    return;
}