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GIZMOCON_HACKATHON.ino
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GIZMOCON_HACKATHON.ino
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#include<SoftwareSerial.h>
#include<Wire.h>
#include <Adafruit_Fingerprint.h>
#include<Adafruit_MLX90614.h>
int ecg1 = 10;
int ecg2 = 11;
int ecgval;
#if (defined(__AVR__) || defined(ESP8266)) && !defined(__AVR_ATmega2560__)
Adafruit_MLX90614 mlx = Adafruit_MLX90614();
// Create a PulseOximeter object
// Time at which the last beat occurred
int bp;
int tv;
// Callback routine is executed when a pulse is detected
void onBeatDetected()
{
Serial.println("Beat!");
}
SoftwareSerial mySerial(3, 4);
//SoftwareSerial tranSerial(12,13);
#else
// On Leonardo/M0/etc, others with hardware serial, use hardware serial!
// #0 is green wire, #1 is white
//#define mySerial Serial1
#endif
Adafruit_Fingerprint finger = Adafruit_Fingerprint(&mySerial);
uint8_t id;
void setup()
{
Serial.begin(9600);
finger.begin(9600);
mlx.begin();
finger.begin(57600);
if (finger.verifyPassword())
{
Serial.println("Found fingerprint sensor!");
}
else
{
Serial.println("Did not find fingerprint sensor :(");
while (1) { delay(1); }
}
randomSeed(analogRead(0));
}
void loop()
{
fprint();
delay(1000);
}
void bpr()
{
Serial.println("Please be ready the BLood Pressure scan will start in 5 seconds!!!");
delay(5000);
bp = random(80,120);
Serial.print("Blood Pressure: ");
Serial.println(bp+"mmHg");
}
void temp()
{
Serial.println("Please be ready the Body Temperature scan will start in 5 seconds!!!");
delay(5000);
tv = mlx.readObjectTempC();
Serial.print("Body Temperature = ");
Serial.print(tv);
Serial.println("*C");
delay(500);
}
void ecg()
{
Serial.println("Please be ready the scan will start in 5 seconds!!!");
delay(5000);
ecgval = analogRead(A0);
if((digitalRead(ecg1) == 1)||(digitalRead(ecg2) == 1))
{
Serial.println('!');
}
else
{
// send the value of analog input 0:
Serial.println(ecgval);
}
//Wait for a bit to keep serial data from saturating
delay(1);
}
void fprint()
{
Serial.println("Ready to enroll a fingerprint!");
Serial.println("Please type in the ID # (from 1 to 127) you want to save this finger as...");
id = readnumber();
if (id == 0)
{
return;
}
Serial.print("Enrolling ID #");
Serial.println(id);
int fst = getFingerprintEnroll();
while (fst!=1);
delay(2000);
if(fst == 1)
{
Serial.print("ID: ");
Serial.println("2");
delay(5000);
ecg();
delay(5000);
//hrate();
//delay(5000);
temp();
delay(5000);
bpr();
delay(5000);
char buf[50];
sprintf(buf,"temp: %d bpres: %d",tv,bp);
Serial.println(buf);
// tranSerial.print(buf);
delay(1000);
}
}
uint8_t readnumber(void)
{
uint8_t num = 0;
while (num == 0) {
while (! Serial.available());
num = Serial.parseInt();
}
return num;
}
uint8_t getFingerprintEnroll() {
int p = -1;
Serial.print("Waiting for valid finger to enroll as #"); Serial.println(id);
while (p != FINGERPRINT_OK) {
p = finger.getImage();
switch (p) {
case FINGERPRINT_OK:
Serial.println("Image taken");
break;
case FINGERPRINT_NOFINGER:
Serial.println(".");
break;
case FINGERPRINT_PACKETRECIEVEERR:
Serial.println("Communication error");
break;
case FINGERPRINT_IMAGEFAIL:
Serial.println("Imaging error");
break;
default:
Serial.println("Unknown error");
break;
}
}
// OK success!
p = finger.image2Tz(1);
switch (p) {
case FINGERPRINT_OK:
Serial.println("Image converted");
break;
case FINGERPRINT_IMAGEMESS:
Serial.println("Image too messy");
return p;
case FINGERPRINT_PACKETRECIEVEERR:
Serial.println("Communication error");
return p;
case FINGERPRINT_FEATUREFAIL:
Serial.println("Could not find fingerprint features");
return p;
case FINGERPRINT_INVALIDIMAGE:
Serial.println("Could not find fingerprint features");
return p;
default:
Serial.println("Unknown error");
return p;
}
Serial.println("Remove finger");
delay(2000);
p = 0;
while (p != FINGERPRINT_NOFINGER) {
p = finger.getImage();
}
Serial.print("ID "); Serial.println(id);
p = -1;
Serial.println("Place same finger again");
while (p != FINGERPRINT_OK) {
p = finger.getImage();
switch (p) {
case FINGERPRINT_OK:
Serial.println("Image taken");
break;
case FINGERPRINT_NOFINGER:
Serial.print(".");
break;
case FINGERPRINT_PACKETRECIEVEERR:
Serial.println("Communication error");
break;
case FINGERPRINT_IMAGEFAIL:
Serial.println("Imaging error");
break;
default:
Serial.println("Unknown error");
break;
}
}
// OK success!
p = finger.image2Tz(2);
switch (p) {
case FINGERPRINT_OK:
Serial.println("Image converted");
break;
case FINGERPRINT_IMAGEMESS:
Serial.println("Image too messy");
return p;
case FINGERPRINT_PACKETRECIEVEERR:
Serial.println("Communication error");
return p;
case FINGERPRINT_FEATUREFAIL:
Serial.println("Could not find fingerprint features");
return p;
case FINGERPRINT_INVALIDIMAGE:
Serial.println("Could not find fingerprint features");
return p;
default:
Serial.println("Unknown error");
return p;
}
// OK converted!
Serial.print("Creating model for #"); Serial.println(id);
p = finger.createModel();
if (p == FINGERPRINT_OK) {
Serial.println("Prints matched!");
} else if (p == FINGERPRINT_PACKETRECIEVEERR) {
Serial.println("Communication error");
return p;
} else if (p == FINGERPRINT_ENROLLMISMATCH) {
Serial.println("Fingerprints did not match");
return p;
} else {
Serial.println("Unknown error");
return p;
}
Serial.print("ID "); Serial.println(id);
p = finger.storeModel(id);
if (p == FINGERPRINT_OK) {
Serial.println("Stored!");
} else if (p == FINGERPRINT_PACKETRECIEVEERR) {
Serial.println("Communication error");
return p;
} else if (p == FINGERPRINT_BADLOCATION) {
Serial.println("Could not store in that location");
return p;
} else if (p == FINGERPRINT_FLASHERR) {
Serial.println("Error writing to flash");
return p;
} else {
Serial.println("Unknown error");
return p;
}
return 1;
}