radiator fonctionnelle 18/05
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576d2655ba
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6 changed files with 25 additions and 18 deletions
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@ -8,7 +8,7 @@
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int AnalogSensorTemperature::alea = -1;
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AnalogSensorTemperature::AnalogSensorTemperature(int val,int temps):AnalogDevice(val,temps){
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AnalogSensorTemperature::AnalogSensorTemperature(int val, int temps):AnalogDevice(val,temps){
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AnalogSensorTemperature::alea=-1;
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}
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@ -11,16 +11,16 @@ void DigitalActuatorRadiator::activate() {
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DigitalDevice::state = HIGH;
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}
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void DigitalActuatorRadiator::Run() {
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void DigitalActuatorRadiator::run() {
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int previousState = LOW;
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while (1){
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state = *ptrmem;
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if ((state != previousState)||(state == HIGH)){
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//AnalogSensorTemperature::alea = 1;
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if ((state != previousState)&&(state == HIGH)){
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AnalogSensorTemperature::setAlea(1);
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} else if((state != previousState)||(state == LOW)) {
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//AnalogSensorTemperature::alea = -1;
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previousState = HIGH;
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} else if((state != previousState)&&(state == LOW)) {
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AnalogSensorTemperature::setAlea(-1);
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previousState = LOW;
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}
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}
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}
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@ -23,12 +23,12 @@ int main(){
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// branchement des capteurs actionneurs
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esp8266.pin(1,temperature);
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esp8266.pin(0,led1);
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//esp8266.pin(0,led1);
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esp8266.pin(2, luminosite);
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esp8266.i2c(1,screen);
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esp8266.pin(4, button);
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esp8266.pin(5, manometre);
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esp8266.pin(6, radiator);
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esp8266.pin(0, radiator);
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// allumage de la carte
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esp8266.run();
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@ -7,13 +7,13 @@
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#include <mutex>
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#define DELAY 3
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#define TEMP 22
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#define TEMP 17
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#define HIGH 1
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#define LOW 0
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#define MAX_I2C_DEVICES 4
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#define I2C_BUFFER_SIZE 1024
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#define MAX_IO_PIN 6
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#define THRESHOLDHIGH 25
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#define THRESHOLDHIGH 17
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#define THRESHOLDLOW 15
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using namespace std;
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@ -24,7 +24,7 @@ public:
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void setThresholdLow(float thresholdLow);
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void activate();
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void Run();
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void run();
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};
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@ -1,6 +1,7 @@
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#include <unistd.h>
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#include "core_simulation.h"
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static int radState = LOW;
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// la fonction d'initialisation d'arduino
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void Board::setup(){
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// on configure la vitesse de la liaison
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@ -11,7 +12,9 @@ void Board::setup(){
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pinMode(2, INPUT);
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pinMode(4, INPUT);
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pinMode(5, INPUT);
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pinMode(6, OUTPUT);
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digitalWrite(0,LOW);
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//pinMode(6, OUTPUT);
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}
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// la boucle de controle arduino
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@ -29,6 +32,16 @@ void Board::loop(){
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sprintf(buf, "temperature %d", val1);
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Serial.println(buf);
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if ((val1 < THRESHOLDLOW)&&(radState == LOW)) {
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digitalWrite(0, HIGH);
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radState = HIGH;
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}
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else if ((val1 > THRESHOLDHIGH)&&(radState == HIGH)) {
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digitalWrite(0, LOW);
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radState = LOW;
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}
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// lecture sur la pin 2 : capteur de temperature
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val = analogRead(2);
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sprintf(buf, "luminosite %d", val);
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@ -45,12 +58,6 @@ void Board::loop(){
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cpt++;
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sleep(1);
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//}
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// on eteint et on allume la LED
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if(analogRead(4))
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digitalWrite(0,HIGH);
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else
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digitalWrite(0,LOW);
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bascule=1-bascule;
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}
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