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18 Commits
AR_Michel
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5b7f0f3d3e
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5b7f0f3d3e | |||
4cafc40d61 | |||
17b344732f | |||
9b0b5bedd8 | |||
e088b4e304 | |||
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884169e745 | |||
36bdb86343 | |||
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9811022b76 | |||
a150d1c17f | |||
96ebd89dd3 | |||
370a16441b | |||
71a07cc552 | |||
b1787886c6 | |||
8928ab9922 | |||
7b5d4a071b | |||
2e4b24df10 |
18
IOT/config.cppcheck
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18
IOT/config.cppcheck
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@ -0,0 +1,18 @@
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<?xml version="1.0" encoding="UTF-8"?>
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<project version="1">
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<builddir>.cppcheck-build</builddir>
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<platform>Unspecified</platform>
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<analyze-all-vs-configs>true</analyze-all-vs-configs>
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<check-headers>true</check-headers>
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<check-unused-templates>false</check-unused-templates>
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<max-ctu-depth>10</max-ctu-depth>
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<exclude>
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<path name="./.pio/" />
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</exclude>
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<suppressions>
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<suppression>noCopyConstructor</suppression>
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<suppression>noExplicitConstructor</suppression>
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<suppression>unusedFunction</suppression>
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<suppression>noOperatorEq</suppression>
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</suppressions>
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</project>
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@ -16,5 +16,10 @@ build_flags =
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-D API_HOST=\"iot.epi.cb85.software\"
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-D ULTRA_SOUND_TRIGD=12
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-D ULTRA_SOUND_ECHO=13
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-D EXAMPLE_NUMBER=69
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-D TRASHCAN_ONE=\"gdnuxl0wlgurtj3\"
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@ -1,4 +1,10 @@
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; Add additionnal environments in this file
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; Debug environemnt
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[env:test]
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test_build_src = true
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build_type = debug
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build_flags = ${env.build_flags}
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-D TESTING
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; Default production environment
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[env:prod]
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@ -1,6 +1,10 @@
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#ifndef PROGRAM_H
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#define PROGRAM_H
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#include <Arduino.h>
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#include <Ultrasonic.h>
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#include "API.h"
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class Program{
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public:
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/**
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@ -17,5 +21,17 @@ public:
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private:
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/* data */
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/**
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* @brief capteur ultra son pour le niveau de remplissage de la poubelle
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*
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*/
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Ultrasonic *ultrasonic;
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/**
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* @brief Réference de l'API pour les calls
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*
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*/
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API *api;
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};
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#endif
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@ -41,8 +41,6 @@ public:
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*/
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bool sendValue(String val, String poubelleID, String unit, bool full);
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private:
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/**
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* @brief connect l'utilisateur a l'api et met a jour le token
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*
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@ -51,6 +49,11 @@ private:
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*/
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bool connect();
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//TODO :: Check wifibegin avant
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private:
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/**
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* @brief ID de l'utilisateur
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*
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@ -59,7 +59,8 @@ bool API::connect(){
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this->client->println();
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while (!client->available()) {}
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while (!client->available()) {
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}
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String responce = "";
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while (client->available()) {
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@ -77,7 +78,10 @@ bool API::connect(){
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this->client->stop();
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sortie = true;
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if (JSONVar::stringify(JSONVar::parse(str)["code"]) == "400") {
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Serial.println("Failed to authenticate");
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return false;
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}
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return sortie;
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}
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65
IOT/lib/Capteur/include/Capteur.h
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65
IOT/lib/Capteur/include/Capteur.h
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@ -0,0 +1,65 @@
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#ifndef CAPTEUR_H
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#define CAPTEUR_H
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#include <Arduino.h>
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class Capteur{
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public:
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/**
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* @brief Construct a new Capteur object
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*
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* @param[in] type type de mesure lue (T/H, W, D,...)
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* @param[in] fullVal valeur a la quel la poubelle est considéré comme pleine
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*/
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Capteur(String type, String fullVal);
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/**
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* @brief tar le capteur si il a besoins d'être tarré
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*
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* @param[in] val *opt* si le capteur a besoins d'une valeur de ref pour être tarré
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* @return true si la tarre a bien réussi (ou si il n'a pas besoins de tarre)
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* @return false erreur durrant la tar
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*/
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virtual bool tar(int val = 0);
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/**
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* @brief lit la valeur du capteur
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*
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* @return String retour la valeur avec l'unité
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*/
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virtual String read() = 0;
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/**
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* @brief revoie la valeur full
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*
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* @return true la poubelle est pleine
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* @return false la poubelle n'est pas pleine
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*/
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bool isFull();
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protected:
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/**
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* @brief la poubelle est pleinne
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* est mis a jours par read()
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*/
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bool full;
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/**
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* @brief type de mesure lue (T/H, W, D,...)
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*
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*/
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String type;
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/**
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* @brief valeur a la quel la poubelle est considéré comme pleine
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*
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*/
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String fullVall;
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};
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#endif // CAPTEUR_H
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17
IOT/lib/Capteur/src/Capteur.cpp
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17
IOT/lib/Capteur/src/Capteur.cpp
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@ -0,0 +1,17 @@
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#include "../include/Capteur.h"
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Capteur::Capteur(String type, String fullVall){
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this->type = type;
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this->fullVall = fullVall;
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}
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bool Capteur::tar(int val){
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return true;
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}
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bool Capteur::isFull(){
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return this->full;
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}
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@ -38,6 +38,7 @@ monitor_flags =
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lib_deps =
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bportaluri/WiFiEsp@^2.2.2 ; gestion des commande 'AT' de l'esp01
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arduino-libraries/Arduino_JSON@^0.2.0 ; gestion des json
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ericksimoes/Ultrasonic@^3.0.0 ; lib capteur ultra son
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; example:
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; erropix/ESP32 AnalogWrite@^0.2
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@ -2,9 +2,23 @@
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Program::Program(){
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////////SERIALS//////
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Serial1.begin(MONITOR_SPEED);
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Serial.begin(MONITOR_SPEED);
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////////API///////
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this->api = new API(USER_NAME, USER_PASSWORD, API_HOST);
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this->api->wifiBegin(WIFI_SSID, WIFI_PASSWORD, &Serial1);
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//////CAPTEUR/////
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this->ultrasonic = new Ultrasonic(ULTRA_SOUND_TRIGD, ULTRA_SOUND_ECHO);
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}
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void Program::loop(){
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int distance = this->ultrasonic->read();
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this->api->sendValue(JSONVar::stringify(distance), TRASHCAN_ONE, "W", false);
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Serial.print("Distance in CM: ");
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Serial.println(distance);
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delay(10000);
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}
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@ -1,3 +1,5 @@
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#ifndef TESTING
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#include <Arduino.h>
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#include "Program.h"
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@ -10,3 +12,5 @@ void setup() {
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void loop() {
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program->loop();
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}
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#endif
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23
IOT/test/main.cpp
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23
IOT/test/main.cpp
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@ -0,0 +1,23 @@
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#include <Arduino.h>
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#include <unity.h>
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#include "test.h"
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void setup() {
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delay(2000);
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// start unit tests engine
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UNITY_BEGIN();
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Serial.begin(115200);
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RUN_TEST(TestWifiBeginConnected);
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RUN_TEST(TestWifiBeginNotConnected);
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RUN_TEST(TestConnectAPI);
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// RUN_TEST(TestConnectAPIFailed);
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RUN_TEST(TestSendValue);
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UNITY_END();
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}
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void loop() {
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}
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10
IOT/test/test.h
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10
IOT/test/test.h
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@ -0,0 +1,10 @@
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#ifndef TEST_H
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#define TEST_H
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void TestWifiBeginConnected();
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void TestWifiBeginNotConnected();
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void TestConnectAPI();
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void TestConnectAPIFailed();
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void TestSendValue();
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#endif
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48
IOT/test/test_api.cpp
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48
IOT/test/test_api.cpp
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@ -0,0 +1,48 @@
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#include "test.h"
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#include <unity.h>
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#include "API.h"
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//Testing WifiBegin function
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void TestWifiBeginConnected() {
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API* api = new API(USER_NAME, USER_PASSWORD, API_HOST);
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Serial1.begin(MONITOR_SPEED);
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TEST_ASSERT_EQUAL_MESSAGE(true, api->wifiBegin(WIFI_SSID, WIFI_PASSWORD, &Serial1), "Wifi not connected");
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}
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void TestWifiBeginNotConnected() {
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API* api = new API(USER_NAME, USER_PASSWORD, API_HOST);
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Serial2.begin(MONITOR_SPEED);
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TEST_ASSERT_EQUAL_MESSAGE(false, api->wifiBegin(WIFI_SSID, WIFI_PASSWORD, &Serial2), "Wifi connected");
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}
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//Testing Connect function
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void TestConnectAPI() {
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API* api = new API(USER_NAME, USER_PASSWORD, API_HOST);
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Serial1.begin(MONITOR_SPEED);
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api->wifiBegin(WIFI_SSID, WIFI_PASSWORD, &Serial1);
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TEST_ASSERT_EQUAL_MESSAGE(true, api->connect(), "Not Connected");
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}
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//FIXME: boucle inf when connection failed
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void TestConnectAPIFailed() {
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API* api = new API("Carl", "toto", API_HOST);
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Serial1.begin(MONITOR_SPEED);
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api->wifiBegin(WIFI_SSID, WIFI_PASSWORD, &Serial1);
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TEST_ASSERT_EQUAL_MESSAGE(false, api->connect(), "Connected");
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}
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//Testing SendValue function
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void TestSendValue() {
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API* api = new API(USER_NAME, USER_PASSWORD, API_HOST);
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Serial1.begin(MONITOR_SPEED);
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api->wifiBegin(WIFI_SSID, WIFI_PASSWORD, &Serial1);
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TEST_ASSERT_EQUAL_MESSAGE(true, api->sendValue("30", "gdnuxl0wlgurtj3", "W", true), "Not Connected to server");
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}
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Block a user