blink-funktionen in einer funktion zusammengefasst
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1 changed files with 27 additions and 89 deletions
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@ -25,6 +25,28 @@ door_state current_door_state = DOOR_CLOSED;
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BearSSL::WiFiClientSecure client;
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void blink_led(int blink_count, int delay_time) {
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/*
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* zur ausgabe von meldungen blinkt die interne led.
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* erfolgreichesmeldungen werden durch kurze blinkzeichen angezeigt,
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* fehlermeldungen sind durch eine lange sequenz gekennzeichnet.
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* Signale:
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* status der tür hat sich geändert: 2x kurz
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* änderung erfolgreich gesendet: 5x kurz
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* es konnte keine wifi aufgebaut werden: 3x lang
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* senden des status fehlgeschlagen: 5x lang
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*
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* param 1: integer
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* param 2: integer
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*/
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for(int i=0; i!= blink_count; ++i) {
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digitalWrite(LED_PIN, LOW);
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delay(delay_time);
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digitalWrite(LED_PIN, HIGH);
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delay(delay_time);
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}
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}
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void init_serial() {
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/*
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* set baudrate and debug modus
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@ -66,7 +88,7 @@ void init_wifi() {
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set_clock();
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} else {
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Serial.println("[Wifi] Error: Failed to connect");
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signal_wifi_failed();
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blink_led(3, 500);
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}
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}
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@ -85,88 +107,6 @@ door_state read_door_state() {
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return DOOR_CLOSED;
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}
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void signal_door_changed() {
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/*
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* LED signal, if door is opened
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*/
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uint8_t count = 2;
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for(uint8_t i=0; i!= count; ++i) {
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digitalWrite(LED_PIN, LOW);
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delay(100);
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digitalWrite(LED_PIN, HIGH);
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delay(100);
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}
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}
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void signal_send_successful() {
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/*
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* LED signal, if new status was send successful
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*/
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uint8_t count = 5;
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for(uint8_t i=0; i!= count; ++i) {
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digitalWrite(LED_PIN, LOW);
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delay(100);
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digitalWrite(LED_PIN, HIGH);
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delay(100);
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}
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}
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void signal_clock_failed() {
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/*
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* LED signal, if time setting failed
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*/
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uint8_t count = 2;
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for(uint8_t i=0; i!= count; ++i) {
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digitalWrite(LED_PIN, LOW);
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delay(500);
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digitalWrite(LED_PIN, HIGH);
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delay(500);
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}
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delay(2000);
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}
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void signal_wifi_failed() {
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/*
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* LED signal, if wifi initialication was failed
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*/
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uint8_t count = 3;
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for(uint8_t i=0; i!= count; ++i) {
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digitalWrite(LED_PIN, LOW);
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delay(500);
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digitalWrite(LED_PIN, HIGH);
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delay(500);
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}
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delay(2000);
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}
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void signal_connect_failed() {
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/*
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* LED signal, if door is opened
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*/
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uint8_t count = 4;
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for(uint8_t i=0; i!= count; ++i) {
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digitalWrite(LED_PIN, LOW);
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delay(500);
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digitalWrite(LED_PIN, HIGH);
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delay(500);
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}
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delay(2000);
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}
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void signal_send_failed() {
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/*
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* LED signal, if door is opened
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*/
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uint8_t count = 5;
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for(uint8_t i=0; i!= count; ++i) {
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digitalWrite(LED_PIN, LOW);
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delay(500);
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digitalWrite(LED_PIN, HIGH);
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delay(500);
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}
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delay(2000);
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}
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void set_clock() {
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/*
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* We need time for certificate authorization
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@ -214,7 +154,6 @@ int send_status(door_state state) {
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Serial.println("[Send] Can't connect to server");
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Serial.print("[Send] SSL Error: ");
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Serial.println(client.getLastSSLError());
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signal_send_failed();
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client.stop();
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return 1;
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} else {
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@ -223,7 +162,6 @@ int send_status(door_state state) {
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Serial.println("[Send] Connection successful established");
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Serial.printf("[Send] Send status: %s\n", status);
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client.write(status);
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signal_send_successful();
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client.stop();
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}
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return 0;
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@ -245,15 +183,15 @@ void loop() {
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/*
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* things are running in a endless loop
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*/
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if (WiFi.status() != WL_CONNECTED) {
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init_wifi();
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}
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door_state new_door_state = read_door_state();
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if (new_door_state != current_door_state) {
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Serial.printf("[Loop] Status has changed to %i\n", new_door_state);
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signal_door_changed();
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blink_led(2, 100);
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if (send_status(new_door_state) == 0) {
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current_door_state = new_door_state;
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blink_led(5, 100);
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} else {
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blink_led(5, 500);
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}
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}
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delay(FREQUENCY);
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