state machine (part 4)
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cbca740792
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@ -385,7 +385,7 @@ uint64_t uptime() {
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}
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}
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void updateDisplay() {
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void updateDisplay() {
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// timed display refresh according to frames per second setting
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// timed display refresh according to refresh cycle setting
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if (currentMillis - previousDisplaymillis >= DISPLAYREFRESH_MS) {
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if (currentMillis - previousDisplaymillis >= DISPLAYREFRESH_MS) {
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refreshDisplay();
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refreshDisplay();
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previousDisplaymillis += DISPLAYREFRESH_MS;
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previousDisplaymillis += DISPLAYREFRESH_MS;
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@ -580,11 +580,10 @@ do_send(&sendjob);
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void loop() {
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void loop() {
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uptimecounter = uptime() / 1000; // counts uptime in seconds (64bit)
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uptimecounter = uptime() / 1000; // counts uptime in seconds (64bit)
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// state machine for central control of all timimg based features
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currentMillis = millis(); // timebase for state machine in milliseconds (32bit)
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currentMillis = millis(); // timebase for state machine in milliseconds (32bit)
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// simple state machine for controlling display, LED, button, etc.
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#ifdef HAS_BUTTON
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#ifdef HAS_BUTTON
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readButton();
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readButton();
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#endif
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#endif
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@ -600,8 +599,6 @@ void loop() {
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//sendPayload();
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//sendPayload();
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}
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}
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/* end Aruino LOOP ------------------------------------------------------------ */
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/* end Aruino LOOP ------------------------------------------------------------ */
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@ -35,8 +35,8 @@
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#define WIFI_CHANNEL_SWITCH_INTERVAL 50 // [seconds/100] -> 0,5 sec.
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#define WIFI_CHANNEL_SWITCH_INTERVAL 50 // [seconds/100] -> 0,5 sec.
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// LoRa payload send cycle
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// LoRa payload send cycle
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#define SEND_SECS 120 // [seconds/2] -> 240 sec.
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//#define SEND_SECS 120 // [seconds/2] -> 240 sec.
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//#define SEND_SECS 30 // [seconds/2] -> 60 sec.
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#define SEND_SECS 30 // [seconds/2] -> 60 sec.
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// Default LoRa Spreadfactor
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// Default LoRa Spreadfactor
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#define LORASFDEFAULT 9 // 7 ... 12 SF, according to LoRaWAN specs
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#define LORASFDEFAULT 9 // 7 ... 12 SF, according to LoRaWAN specs
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