6 Commits

Author SHA1 Message Date
3fc400e655 Merge commit '5e86674e6832d25ee053b1c03e85c372cad42547' into feat/main-algo 2023-11-17 19:37:46 +01:00
5e86674e68 fix: OK blink (#7)
Co-authored-by: Clement <c.boesmier@aptatio.com>
Reviewed-on: #7
2023-11-17 19:36:01 +01:00
a9400fba95 sync 2023-10-27 20:10:57 +02:00
2096f748d0 add doxygen output to git ignore 2023-10-27 20:05:17 +02:00
f49d3de893 add main alogo WIP 2023-10-25 22:36:09 +02:00
92943ff3e9 feat: ajout start led on led lib (#5) 2023-10-22 00:34:20 +02:00
7 changed files with 119 additions and 49 deletions

2
.gitignore vendored
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@ -4,3 +4,5 @@
.vscode/launch.json .vscode/launch.json
.vscode/ipch .vscode/ipch
secrets.ini secrets.ini
docs/output/*

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@ -26,3 +26,5 @@ build_flags =
-D PIXEL_PIN=4 -D PIXEL_PIN=4
-D PIXEL_COUNT=24 -D PIXEL_COUNT=24
-D RESET_TIME=60000

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@ -40,6 +40,16 @@ private:
WiFiUDP* ntpUDP; WiFiUDP* ntpUDP;
NTPClient* timeClient; NTPClient* timeClient;
/**
* @brief Time to reset the encoder menu
*/
unsigned long resetMillis;
/**
* @brief true if the NTP is updated durring the cycle
*/
bool ntpUpdated;
/** /**
* @brief Send time to discord * @brief Send time to discord
* the start time is automaticly set to the current time * the start time is automaticly set to the current time

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@ -11,7 +11,7 @@ public :
// Fonction pour allumer correctement les LEDs en fonction du Rotary // Fonction pour allumer correctement les LEDs en fonction du Rotary
// Function to manage LEDs colors according to the Rotary // Function to manage LEDs colors according to the Rotary
void actLed(int nb); void actLed(int nb, int start = 0);
// Fonction qui renvoie le nombre de LEDs allumées // Fonction qui renvoie le nombre de LEDs allumées
// Function that returns the number of LEDs lit // Function that returns the number of LEDs lit

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@ -13,7 +13,7 @@ LedLib::LedLib(int pixelCount, int pixelPin, int bright){
// Fonction pour allumer correctement les LEDs en fonction du Rotary // Fonction pour allumer correctement les LEDs en fonction du Rotary
// Function to manage LEDs colors according to the Rotary // Function to manage LEDs colors according to the Rotary
void LedLib::actLed(int nb){ void LedLib::actLed(int nb, int start){
this->ledNb = nb; this->ledNb = nb;
// On éteint tout // On éteint tout
@ -26,14 +26,19 @@ void LedLib::actLed(int nb){
// Boucle dans les LEDs // Boucle dans les LEDs
// Loop in LEDs // Loop in LEDs
for (int i = 0; i < nb+1; i++) { for (int i = start; i <= nb+start; i++) {
int j = i;
//TODO: géré le cas ou j > 24
if(j >= 24){
j -= 24;
}
// Une LED sur deux est blanche : heure entière, l'autre rouge pour 30m // Une LED sur deux est blanche : heure entière, l'autre rouge pour 30m
// One LED out of two is white: whole hour, the other red for 30m // One LED out of two is white: whole hour, the other red for 30m
if (i%2 == 0) { if (j%2 == 0) {
this->strip->setPixelColor(i-1, 255, 255, 255); this->strip->setPixelColor(j, 255, 255, 255);
}else{ }else{
this->strip->setPixelColor(i-1, 255, 0, 0); this->strip->setPixelColor(j, 255, 0, 0);
} }
} }
} }
@ -48,30 +53,17 @@ void LedLib::actLed(int nb){
int LedLib::getledNB(){ int LedLib::getledNB(){
return this->ledNb; return this->ledNb;
} }
//FIXME: this function is broken
void LedLib::okBlink(){ void LedLib::okBlink(){
int tempR; this->strip->clear();
int tempV; for(int i = 0; i < 3; i++){
int tempB;
for (int i = 0; i < 3*2; i++) {
if(i%2 == 0){
tempR = 0;
tempV = 0;
tempB = 0;
}else{
tempR = 75;
tempV = 181;
tempB = 67;
}
for(int j = 0; j < 24; j++){ for(int j = 0; j < 24; j++){
// On fait clignoter les LEDs pour confirmer this->strip->setPixelColor(j, 0, 255, 0);
// We make the LEDs blink to confirm
this->strip->setPixelColor(j-1, tempR, tempV, tempB);
} }
this->strip->show(); this->strip->show();
delay(100);
this->strip->clear();
this->strip->show();
delay(100);
} }
} }

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@ -1,8 +1,14 @@
#include "../include/SwitchableEncodeur.h" #include "../include/SwitchableEncodeur.h"
IRAM_ATTR void switchEncoder() { IRAM_ATTR void switchEncoder() {
static unsigned long last_interrupt_time = 0;
unsigned long interrupt_time = millis();
// If interrupts come faster than 200ms, assume it's a bounce and ignore
if (interrupt_time - last_interrupt_time > 200){
SwitchableEncodeur::getInstance()->addMenu(); SwitchableEncodeur::getInstance()->addMenu();
} }
last_interrupt_time = interrupt_time;
}
SwitchableEncodeur* SwitchableEncodeur::instance = nullptr; SwitchableEncodeur* SwitchableEncodeur::instance = nullptr;
@ -11,7 +17,7 @@ SwitchableEncodeur::SwitchableEncodeur(uint8_t pin1, uint8_t pin2, uint8_t pinSW
this->menu = 0; this->menu = 0;
this->nbMenu = nbMenu; this->nbMenu = nbMenu;
pinMode(pinSW, INPUT_PULLUP); pinMode(pinSW, INPUT_PULLUP);
attachInterrupt(digitalPinToInterrupt(pinSW), switchEncoder, RISING);//FIXME: maybe change to FALLING attachInterrupt(digitalPinToInterrupt(pinSW), switchEncoder, RISING);
this->oldPosition = -999; this->oldPosition = -999;
this->oldMenu = -999; this->oldMenu = -999;
} }
@ -42,6 +48,9 @@ bool SwitchableEncodeur::update() {
if (newPosition != this->oldPosition || this->menu != this->oldMenu) { if (newPosition != this->oldPosition || this->menu != this->oldMenu) {
this->oldMenu = this->menu; this->oldMenu = this->menu;
this->oldPosition = newPosition; this->oldPosition = newPosition;
if(this->oldPosition < 0){
this->oldPosition = 0;
}
sortie = true; sortie = true;
} }
return sortie; return sortie;

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@ -32,6 +32,15 @@ Program::Program() {
this->timeClient->update(); this->timeClient->update();
//this->sendTime("18h12"); //this->sendTime("18h12");
// Startup Rotary
this->encoder = new SwitchableEncodeur(ENCODER_DT, ENCODER_CLK, ENCODER_SWITCH, 3);
// Startup LEDs
this->ledLib = new LedLib(PIXEL_COUNT, PIXEL_PIN, 255);
this->ledLib->okBlink();
} }
void Program::sendTime(String timeEnd){ void Program::sendTime(String timeEnd){
@ -45,28 +54,74 @@ void Program::sendTime(String timeEnd){
void Program::loop() { void Program::loop() {
if(this->encoder->update()){ if(this->encoder->update()){
switch (this->encoder->getMenu()){
case 1:{
if(!this->ntpUpdated){
this->timeClient->update();
this->encoder->resetMenu();
this->ntpUpdated = true;
}
int currentHour = this->timeClient->getHours();
if(currentHour > 12){
currentHour -= 12;
}
//TODO: debug this shit
int startLed = currentHour * 2;
startLed += this->timeClient->getMinutes()/30;
int encValue = this->encoder->getValue();
Serial.println(startLed);
this->ledLib->actLed(encValue+1, startLed);
break;
}case 2:{
int finalEncValue = this->encoder->getValue();
int finalHour = this->timeClient->getHours();
int finalMinute = this->timeClient->getMinutes();
Serial.print("finalHour: ");
Serial.print(finalHour);
Serial.print("h");
Serial.print(finalMinute);
Serial.print(" finalEncValue: ");
Serial.println(finalEncValue);
// TODO: send time sur discord
//this->sendTime()
this->ledLib->okBlink();
this->ntpUpdated = false;
this->encoder->resetMenu();
this->resetMillis = millis();
break;
}}
Serial.print(this->encoder->getValue()); Serial.print(this->encoder->getValue());
this->ledLib->actLed(this->encoder->getValue());
Serial.print(" "); Serial.print(" ");
Serial.println(this->encoder->getMenu()); Serial.println(this->encoder->getMenu());
//this->ledLib->actLed(this->encoder->getValue(), 5);
} }
delay(1000); if(this->resetMillis + RESET_TIME == millis()){
this->encoder->resetMenu();
this->timeClient->update(); this->resetMillis = millis();
this->ntpUpdated = false;
int currentHour = this->timeClient->getHours(); }
Serial.print("Hour: ");
Serial.println(currentHour); // delay(1000);
int currentMinute = this->timeClient->getMinutes(); // this->timeClient->update();
Serial.print("Minutes: ");
Serial.println(currentMinute); // int currentHour = this->timeClient->getHours();
// Serial.print("Hour: ");
int currentSecond = this->timeClient->getSeconds(); // Serial.println(currentHour);
Serial.print("Seconds: ");
Serial.println(currentSecond); // int currentMinute = this->timeClient->getMinutes();
// Serial.print("Minutes: ");
int currentDayOfWeek = this->timeClient->getDay(); // Serial.println(currentMinute);
Serial.print("Day of week: ");
Serial.println(currentDayOfWeek); // int currentSecond = this->timeClient->getSeconds();
// Serial.print("Seconds: ");
// Serial.println(currentSecond);
// int currentDayOfWeek = this->timeClient->getDay();
// Serial.print("Day of week: ");
// Serial.println(currentDayOfWeek);
} }