ajout de la foction de réveil par l'alimentation 1er essai
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@ -14,6 +14,7 @@
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#include <PubSubClient.h>
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#include <PubSubClient.h>
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#include <Pangodream_18650_CL.h>
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#include <Pangodream_18650_CL.h>
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#include <secret.h>
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#include <secret.h>
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#include <RTClib.h>
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#define TOPIC "test1"
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#define TOPIC "test1"
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#define MQTT_ADDRESS "185.233.103.24"
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#define MQTT_ADDRESS "185.233.103.24"
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@ -19,3 +19,4 @@ lib_deps =
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ottowinter/ESPAsyncWebServer-esphome@^1.2.7
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ottowinter/ESPAsyncWebServer-esphome@^1.2.7
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ottowinter/AsyncTCP-esphome@^1.2.1
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ottowinter/AsyncTCP-esphome@^1.2.1
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arduino-libraries/NTPClient@^3.1.0
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arduino-libraries/NTPClient@^3.1.0
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adafruit/RTClib@^2.0.2
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56
src/main.cpp
56
src/main.cpp
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@ -5,11 +5,7 @@
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using namespace std;
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using namespace std;
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<<<<<<< HEAD
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DHT sensors[SENSORS_NUMBER] = {DHT(4, DHT22), DHT(5, DHT22), DHT(18, DHT22), DHT(19, DHT22), DHT(21, DHT22)};
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DHT sensors[SENSORS_NUMBER] = {DHT(4, DHT22), DHT(5, DHT22), DHT(18, DHT22), DHT(19, DHT22), DHT(21, DHT22)};
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=======
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DHT sensors[SENSORS_NUMBER] = {DHT(23, DHT22), DHT(22, DHT22), DHT(21, DHT22), DHT(17, DHT22), DHT(35, DHT22)};
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>>>>>>> e1180bef4e914976c20b61b18ae28328e17ae2af
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float temp[SENSORS_NUMBER];
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float temp[SENSORS_NUMBER];
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float hum[SENSORS_NUMBER];
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float hum[SENSORS_NUMBER];
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@ -19,6 +15,10 @@ WiFiUDP NtpUDP;
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NTPClient TimeClient(NtpUDP, "europe.pool.ntp.org", 0, 60000);
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NTPClient TimeClient(NtpUDP, "europe.pool.ntp.org", 0, 60000);
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Pangodream_18650_CL Battery(ADC_PIN, CONV_FACTOR, READS);
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Pangodream_18650_CL Battery(ADC_PIN, CONV_FACTOR, READS);
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RTC_DS3231 rtc;
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//---------------- Réveil --------------------//
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int mesure_freq = 600; // temps entre deux réveils en secondes
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//-------------------- FONCTIONS --------------------//
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//-------------------- FONCTIONS --------------------//
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//-------------- Connexion MQTT --------------//
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//-------------- Connexion MQTT --------------//
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@ -83,7 +83,7 @@ void readSensors(DHT sensors[], float temp[], float hum[], int number)
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}
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}
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//-------------------- Sleep de l'ESP --------------------//
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//-------------------- Sleep de l'ESP --------------------//
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/*
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void sleep()
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void sleep()
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{
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{
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esp_sleep_enable_timer_wakeup(TIME_TO_SLEEP * US_TO_S_FACTOR);
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esp_sleep_enable_timer_wakeup(TIME_TO_SLEEP * US_TO_S_FACTOR);
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@ -102,6 +102,50 @@ std::tuple<int, int, int> getDate()
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return std::make_tuple(year, month, day);
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return std::make_tuple(year, month, day);
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}
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}
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*/
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//-------------------- Programmation du réveil de l'alimentation --------------------//
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void wakeup(){
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// initializing the rtc
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if(!rtc.begin()) {
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Serial.println("Couldn't find RTC!");
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Serial.flush();
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while (1) delay(10);
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}
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if(rtc.lostPower()) {
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// this will adjust to the date and time at compilation
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rtc.adjust(DateTime(F(__DATE__), F(__TIME__)));
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}
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//we don't need the 32K Pin, so disable it
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rtc.disable32K();
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// set alarm 1, 2 flag to false (so alarm 1, 2 didn't happen so far)
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// if not done, this easily leads to problems, as both register aren't reset on reboot/recompile
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rtc.clearAlarm(1);
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rtc.clearAlarm(2);
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// stop oscillating signals at SQW Pin
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// otherwise setAlarm1 will fail
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rtc.writeSqwPinMode(DS3231_OFF);
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// turn off alarm 2 (in case it isn't off already)
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// again, this isn't done at reboot, so a previously set alarm could easily go overlooked
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rtc.disableAlarm(2);
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// schedule an alarm 10 seconds in the future
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if(!rtc.setAlarm1(
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rtc.now() + TimeSpan(mesure_freq),
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DS3231_A1_Second // this mode triggers the alarm when the seconds match. See Doxygen for other options
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)) {
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Serial.println("Error, alarm wasn't set!");
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}else {
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Serial.println("Alarm will happen in 10 seconds!");
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}
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}
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//-------------------- Création de trames --------------------//
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//-------------------- Création de trames --------------------//
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@ -179,6 +223,6 @@ void loop()
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delay(2000);
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delay(2000);
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Serial.println("Extinction de l'ESP ! ");
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Serial.println("Extinction de l'ESP ! ");
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sleep();
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wakeup();
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}
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}
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