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https://github.com/HendrikRauh/dmx-interface.git
synced 2025-05-19 10:32:56 +00:00
added basic led logic without timer
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parent
7cc361119d
commit
5e7b05782d
1 changed files with 54 additions and 34 deletions
88
src/main.cpp
88
src/main.cpp
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@ -38,23 +38,6 @@ byte dmx2_data[DMX_PACKET_SIZE];
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uint8_t brightness_led = 20;
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bool status_led;
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/* hw_timer_t *timer = NULL; // H/W timer defining (Pointer to the Structure)
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portMUX_TYPE timerMux = portMUX_INITIALIZER_UNLOCKED;
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void IRAM_ATTR onTimer()
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{ // Defining interrupt function with IRAM_ATTR for faster access
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portENTER_CRITICAL_ISR(&timerMux);
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status_led = !status_led;
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if (!status_led)
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{
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analogWrite(PIN_LED, brightness_led);
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}
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else
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{
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analogWrite(PIN_LED, 0);
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}
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portEXIT_CRITICAL_ISR(&timerMux);
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} */
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// Ethernet stuff
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#define ETH_SCK 36
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#define ETH_SS 34
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@ -73,26 +56,63 @@ uint8_t universe1;
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uint8_t universe2;
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Direction direction1;
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Direction direction2;
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/*
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void ledBlink(int ms)
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enum class Status
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{
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if (timer == NULL)
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Starting,
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Resetting,
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Normal,
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Warning,
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Critical
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};
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Status status = Status::Starting;
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struct BlinkingConfig
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{
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int interval_ms;
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bool is_blinking;
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int brightness;
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};
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BlinkingConfig getBlinkingConfig(Status status)
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{
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switch (status)
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{
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timer = timerBegin(0, 80, true); // timer 0, prescalar: 80, UP counting
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timerAttachInterrupt(timer, &onTimer, true); // Attach interrupt
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case Status::Starting:
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return {500, true, brightness_led};
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case Status::Resetting:
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return {100, true, brightness_led};
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case Status::Normal:
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return {0, false, brightness_led};
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case Status::Warning:
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return {500, true, 255};
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case Status::Critical:
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return {100, true, 255};
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default:
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return {0, false, 0};
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}
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if (ms == 0)
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}
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void updateLed()
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{
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BlinkingConfig led_config = getBlinkingConfig(status);
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if (!led_config.is_blinking)
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{
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timerAlarmDisable(timer);
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analogWrite(PIN_LED, brightness_led);
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analogWrite(PIN_LED, led_config.brightness);
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return;
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}
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else
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{
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ms = ms * 1000;
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timerAlarmWrite(timer, ms, true); // Match value= 1000000 for 1 sec. delay.
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timerAlarmEnable(timer); // Enable Timer with interrupt (Alarm Enable)
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if (millis() % led_config.interval_ms < led_config.interval_ms / 2) //? blinks twice as fast?! & directly based on millis
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{
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analogWrite(PIN_LED, led_config.brightness);
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}
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else
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{
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analogWrite(PIN_LED, 0);
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}
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}
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} */
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}
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void onButtonPress()
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{
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@ -125,7 +145,6 @@ void onButtonPress()
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void setup()
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{
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Serial.begin(9600);
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// Get ETH mac
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@ -159,18 +178,18 @@ void setup()
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pinMode(PIN_BUTTON, INPUT_PULLUP);
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if (digitalRead(PIN_BUTTON) == LOW && !restartViaButton)
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{
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// ledBlink(100);
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status = Status::Resetting;
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unsigned long startTime = millis();
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while (digitalRead(PIN_BUTTON) == LOW && (millis() - startTime <= 3000))
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{
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}
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if (digitalRead(PIN_BUTTON) == LOW)
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{
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// ledBlink(0);
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Serial.println("Reset config");
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config.begin("dmx", false);
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config.clear();
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config.end();
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status = Status::Normal;
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delay(2000);
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}
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}
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@ -179,7 +198,7 @@ void setup()
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config.putBool("restart-via-btn", false);
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config.end();
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// ledBlink(500);
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status = Status::Starting;
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attachInterrupt(PIN_BUTTON, onButtonPress, FALLING);
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@ -398,7 +417,7 @@ void setup()
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// scan networks and cache them
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WiFi.scanNetworks(true);
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// ledBlink(0);
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status = Status::Normal;
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// Internal temperature RP2040
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/*float tempC = analogReadTemp(); // Get internal temperature
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@ -465,4 +484,5 @@ void loop()
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}
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webSocketLoop();
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updateLed();
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}
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