auto page flip mode
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@ -6,10 +6,10 @@
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extern uint8_t DisplayIsOn, displaybuf[];
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void refreshTheDisplay(bool nextPage = false, bool toggle_screencycle = false);
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void refreshTheDisplay(bool nextPage = false);
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void init_display(bool verbose = false);
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void shutdown_display(void);
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void draw_page(time_t t, bool nextpage, bool cyclescreen);
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void draw_page(time_t t, bool nextpage);
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void dp_printf(uint16_t x, uint16_t y, uint8_t font, uint8_t inv,
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const char *format, ...);
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void dp_printqr(uint16_t offset_x, uint16_t offset_y, const char *Message);
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@ -149,12 +149,9 @@ void init_display(bool verbose) {
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} // mutex
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} // init_display
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void refreshTheDisplay(bool nextPage, bool toggle_screencycle) {
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void refreshTheDisplay(bool nextPage) {
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static bool screencycle = false;
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if (toggle_screencycle)
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screencycle = !screencycle;
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static uint32_t framecounter = 0;
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// update histogram
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oledPlotCurve(macs.size(), false);
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@ -176,7 +173,15 @@ void refreshTheDisplay(bool nextPage, bool toggle_screencycle) {
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oledPower(cfg.screenon);
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}
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draw_page(t, nextPage, screencycle);
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#ifndef HAS_BUTTON
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// auto flip page if we are in unattended mode
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if ((++framecounter) > (DISPLAYCYCLE * 1000 / DISPLAYREFRESH_MS)) {
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framecounter = 0;
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nextPage = true;
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}
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#endif
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draw_page(t, nextPage);
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oledDumpBuffer(displaybuf);
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I2C_MUTEX_UNLOCK(); // release i2c bus access
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@ -196,11 +201,10 @@ void shutdown_display(void) {
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}
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}
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void draw_page(time_t t, bool nextpage, bool cyclescreen) {
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void draw_page(time_t t, bool nextpage) {
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// write display content to display buffer
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// nextpage = true -> flip 1 page
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// cyclescreen = true -> page cycling mode
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static uint8_t DisplayPage = 0;
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char timeState;
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@ -366,13 +370,12 @@ start:
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// page 5: blank screen
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case 5:
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if (cyclescreen)
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DisplayPage++; // next page
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else // show blank page only if we are not in screencycle mode
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{
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#ifdef HAS_BUTTON
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oledFill(0, 1);
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break;
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}
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#else // don't show blank page if we are unattended
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DisplayPage++; // next page
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#endif
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default:
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goto start; // start over
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@ -57,6 +57,7 @@
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#define RGBLUMINOSITY 30 // RGB LED luminosity [default = 30%]
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#define DISPLAYREFRESH_MS 40 // OLED refresh cycle in ms [default = 40] -> 1000/40 = 25 frames per second
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#define DISPLAYCONTRAST 80 // 0 .. 255, OLED display contrast [default = 80]
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#define DISPLAYCYCLE 3 // Auto page flip delay in sec [default = 2] for devices without button
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#define HOMECYCLE 30 // house keeping cycle in seconds [default = 30 secs]
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// Settings for BME680 environmental sensor
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@ -76,7 +77,7 @@
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#define TIME_SYNC_INTERVAL_RETRY 10 // retry time sync after lost sync each .. minutes [default = 10], 0 means off
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#define TIME_SYNC_COMPILEDATE 0 // set to 1 to use compile date to initialize RTC after power outage [default = 0]
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#define TIME_SYNC_LORAWAN 0 // set to 1 to use LORA network as time source, 0 means off [default = 0]
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#define TIME_SYNC_LORASERVER 0 // set to 1 to use LORA timeserver as time source, 0 means off [default = 0]
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#define TIME_SYNC_LORASERVER 1 // set to 1 to use LORA timeserver as time source, 0 means off [default = 0]
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// settings for syncing time with timeserver applications
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#define TIME_SYNC_SAMPLES 1 // number of time requests for averaging
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@ -93,7 +94,7 @@
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#define RCMDPORT 2 // remote commands
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#define STATUSPORT 2 // remote command results
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#define CONFIGPORT 3 // config query results
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#define GPSPORT 4 // gps - set to 1 to send combined GPS+COUNTERPORT payload
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#define GPSPORT 1 // gps - set to 1 to send combined GPS+COUNTERPORT payload
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#define BUTTONPORT 5 // button pressed signal
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#define BEACONPORT 6 // beacon alarms
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#define BMEPORT 7 // BME680 sensor
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