fix: RM-all-todo #49
@ -3,4 +3,6 @@
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## setup :
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## setup :
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rename `secrets.ini.example` to `secrets.ini`
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renomé `secrets.ini.example` to `secrets.ini` et le remplir
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compiler avec Platform.io
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@ -45,7 +45,9 @@ build_flags =
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-D API_HOST=\"iot.epi.cb85.software\"
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-D API_HOST=\"iot.epi.cb85.software\"
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;---CAPTEUR FULL CONFIG---
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;---CAPTEUR FULL CONFIG---
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;valFull/valReset
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-D ULTRA_SOUND_FULL=\"10\"
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-D ULTRA_SOUND_FULL=\"5/10\"
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;tempmin:tempmax/hummin:humax
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-D DHT_FULL=\"20:30/60:80\"
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-D DHT_FULL=\"20:30/60:80\"
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;poid max
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-D POID_FULL=\"100\"
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-D POID_FULL=\"100\"
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@ -41,7 +41,7 @@ class Balance{
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+ tar(val: int = 0): bool
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+ tar(val: int = 0): bool
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}
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}
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class Ultrason{
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class HumiTemp{
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- capteur: DHT*
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- capteur: DHT*
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+ HumiTemp(pin: int, type: String, fullVal: String)
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+ HumiTemp(pin: int, type: String, fullVal: String)
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+ read(): String
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+ read(): String
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@ -53,6 +53,15 @@ class Ultrason{
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+ read(): String
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+ read(): String
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}
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}
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class OledScreen{
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- display: Adafruit_SSD1306*
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+ OledScreen(screenWidth: int, screenHeight: int, oledResetPin: int = -1)
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+ welcome(): void
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+ clear(): void
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+ wifiWaiting(): void
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+ printVal(distance: String, poid: String, humitemp: String): void
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}
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Balance --|> Capteur
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Balance --|> Capteur
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Ultrason --|> Capteur
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Ultrason --|> Capteur
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HumiTemp --|> Capteur
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HumiTemp --|> Capteur
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@ -62,5 +71,8 @@ Program <-- Balance
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Program <-- Ultrason
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Program <-- Ultrason
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Program <-- HumiTemp
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Program <-- HumiTemp
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Program <- API
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OledScreen -> Program
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@enduml
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@enduml
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@ -49,8 +49,6 @@ public:
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*/
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*/
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bool connect();
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bool connect();
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//TODO :: Check wifibegin avant
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private:
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private:
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@ -89,7 +87,11 @@ private:
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*/
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*/
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String token;
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String token;
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/**
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* @brief wifi démmaré
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*
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*/
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bool init;
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};
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};
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@ -8,15 +8,16 @@ API::API(String user, String password, String host, bool https){
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this->https = https;
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this->https = https;
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this->token = "";
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this->token = "";
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this->client = new WiFiEspClient();
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this->client = new WiFiEspClient();
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this->init = false;
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}
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}
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bool API::wifiBegin(String wifiId, String wifiPass, Stream* espSerial){
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bool API::wifiBegin(String wifiId, String wifiPass, Stream* espSerial){
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WiFi.init(espSerial);
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WiFi.init(espSerial);
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this->init = true;
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// check for the presence of the shield
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// check for the presence of the shield
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if (WiFi.status() == WL_NO_SHIELD) {
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if (WiFi.status() == WL_NO_SHIELD) {
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Serial.println("WiFi shield not present"); // FIXME: rm debug
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return false;
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return false;
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}
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}
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@ -28,6 +29,7 @@ bool API::wifiBegin(String wifiId, String wifiPass, Stream* espSerial){
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return true;
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return true;
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}
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}
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bool API::connect(){
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bool API::connect(){
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if(!this->init)return false;
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this->client->stop();
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this->client->stop();
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bool sortie = false;
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bool sortie = false;
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@ -119,6 +121,5 @@ bool API::sendValue(String val, String poubelleID, String valUnit, bool full){
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this->client->println("Connection: close");
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this->client->println("Connection: close");
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this->client->println();
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this->client->println();
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this->token = "";//XXX: on rm le token a chaque fois car on sais pas si la requet a bien aboutie et donc si il y est encore bon
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return true;
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return true;
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}
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}
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@ -11,8 +11,16 @@ String HumiTemp::read(){
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int hum = this->capteur->readHumidity(true);
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int hum = this->capteur->readHumidity(true);
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int temp = this->capteur->readTemperature(false,true);
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int temp = this->capteur->readTemperature(false,true);
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String stemp = this->fullVall.substring(0, this->fullVall.indexOf("/"));
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String shum = this->fullVall.substring(this->fullVall.indexOf("/")+1, this->fullVall.length());
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int mintemp = stemp.substring(0, stemp.indexOf(":")).toInt();
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int maxtemp = stemp.substring(stemp.indexOf(":")+1, stemp.length()).toInt();
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int minhum = shum.substring(0, shum.indexOf(":")).toInt();
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int maxhum = shum.substring(shum.indexOf(":")+1, shum.length()).toInt();
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//valeur pour un élevage d'astico de pèche selon chatGPT
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//valeur pour un élevage d'astico de pèche selon chatGPT
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if((temp > 20 && temp < 30) && (hum > 60 && hum < 80)){//TODO: passer les valeurs en config
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if((temp > mintemp && temp < maxtemp) && (hum > minhum && hum < maxhum)){
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this->full = true;
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this->full = true;
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}else{
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}else{
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this->full = false;
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this->full = false;
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@ -9,11 +9,11 @@ Ultrason::Ultrason(int trigeur, int echo, String fullVall):
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String Ultrason::read(){
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String Ultrason::read(){
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int sortie = this->capteur->read();
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int sortie = this->capteur->read();
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if (sortie < this->fullVall.toInt())
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if (sortie < this->fullVall.substring(0, this->fullVall.indexOf("/")).toInt())
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{
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{
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this->full = true;
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this->full = true;
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}else{
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}else if (sortie > this->fullVall.substring(this->fullVall.indexOf("/")+1, this->fullVall.length()).toInt()){
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this->full = false;
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this->full = false;
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}
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}
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return String(sortie);
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return String(sortie);
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}//TODO: faire en sorte que full se reset avec une autre val
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}
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@ -21,13 +21,6 @@ public:
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*/
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*/
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void welcome();
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void welcome();
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/**
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* @brief print the total amount on the screen
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*
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* @param amount The total amount to print in centimes
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*/
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void printAmount(int amount);
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/**
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/**
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* @brief Clear the screen
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* @brief Clear the screen
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@ -40,26 +40,6 @@ void OledScreen::printVal(String distance, String poid, String humitemp){
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void OledScreen::printAmount(int amount) {
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this->display->clearDisplay();
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this->display->setCursor(0, 0);
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this->display->setTextSize(2);
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this->display->setTextColor(WHITE);
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this->display->println(F(" Total: "));
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this->display->println();
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this->display->print(amount / 100);
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this->display->print(F(","));
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int centimes = amount % 100;
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if (centimes < 10) {
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this->display->print(F("0"));
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}
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this->display->println(centimes);
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this->display->print(F(" EUR"));
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this->display->display();
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}
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void OledScreen::wifiWaiting() {
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void OledScreen::wifiWaiting() {
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this->clear();
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this->clear();
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this->display->setCursor(0, 0);
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this->display->setCursor(0, 0);
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@ -33,18 +33,16 @@ void Program::loop(){
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this->screen->printVal(distance, poid, humitemp);
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this->screen->printVal(distance, poid, humitemp);
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this->api->sendValue(distance, TRASHCAN_ONE, this->ultrasonic->getValType(), this->ultrasonic->isFull());
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this->api->sendValue(distance, TRASHCAN_ONE, this->ultrasonic->getValType(), this->ultrasonic->isFull());
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Serial.print("Distance in CM = " + distance);
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Serial.println(this->ultrasonic->isFull()?" true":" false");
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Serial.println(this->ultrasonic->isFull()?" true":" false");
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Serial.println("humiTemp = " + humitemp);
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this->api->sendValue(humitemp, TRASHCAN_TWO, this->dht->getValType(), this->dht->isFull());
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this->api->sendValue(humitemp, TRASHCAN_TWO, this->dht->getValType(), this->dht->isFull());
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Serial.print("humiTemp = " + humitemp);
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Serial.println(this->dht->isFull()?" true":" false");
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Serial.println(this->dht->isFull()?" true":" false");
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Serial.println("poid = " + poid);
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this->api->sendValue(poid, TRASHCAN_THREE, this->balance->getValType(), this->balance->isFull());
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this->api->sendValue(poid, TRASHCAN_THREE, this->balance->getValType(), this->balance->isFull());
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Serial.print("poid = " + poid);
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Serial.println(this->balance->isFull()?" true":" false");
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Serial.println(this->balance->isFull()?" true":" false");
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Serial.println();
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Serial.println();
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delay(1000);
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}
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}
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@ -1,12 +1,10 @@
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# Depot IOT VR
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# Depot IOT VR
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Lien du Gitea : (depot principale + gestion de projet)
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Lien du Gitea : (depot principale + gestion de projet)
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https://gitea.cb85.software/Epitech-T-DEV-811/T-DEV-811
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https://git.lab-ouest.org/Epitech-T-DEV-811/T-DEV-811
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Lien de la CAO : https://cad.onshape.com/documents/d370ee863400195afb23d026/w/1a94981b6a6f71d70b075e30/e/d0feb75fc5a122c54598349b?renderMode=0&uiState=6422993bab4d903a51186392
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Lien de la CAO : https://cad.onshape.com/documents/d370ee863400195afb23d026/w/1a94981b6a6f71d70b075e30/e/d0feb75fc5a122c54598349b?renderMode=0&uiState=6422993bab4d903a51186392
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### Mobile/Unity
|
### Mobile/Unity
|
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Pour gérer l'AR, nous avons décider d'utiliser Unity et pour résoudre le souci de multi target en AR, nous avons utilisé Vuforia.
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Pour gérer l'AR, nous avons décider d'utiliser Unity et pour résoudre le souci de multi target en AR, nous avons utilisé Vuforia.
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@ -21,7 +19,7 @@ coté IoT, les valeurs de chaque capteurs sont envoyé à l'API puis ensuite, l'
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le champ 'unit' dans la collection trash correspond au type de capteur que l'IoT va envoyer a l'api. Le mapping suivant a été conventionner:
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le champ 'unit' dans la collection trash correspond au type de capteur que l'IoT va envoyer a l'api. Le mapping suivant a été conventionner:
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| Capteur | Unit | Valeur |
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| Capteur | Unit | Valeur |
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|----------------------|:----:|--------------------------------------|
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| -------------------- |:----:| ------------------------------------ |
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| Temperature/Humidité | T/H | 10.0;50 (10 degré et 50% d'humidité) |
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| Temperature/Humidité | T/H | 10.0;50 (10 degré et 50% d'humidité) |
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| Poids | W | 200 (200 gram) |
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| Poids | W | 200 (200 gram) |
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| Distance | D | 40 (40 cm) |
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| Distance | D | 40 (40 cm) |
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Block a user