change display ui
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f5cfe91fcb
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abdff38ae4
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@ -91,7 +91,7 @@ bool error_brake_outofrange=false;
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bool error_ads_max_read_interval=false;
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bool error_sdfile_unavailable=false;
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#define REVERSE_ENABLE_TIME 1000 //ms. how long standstill to be able to drive backward
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#define REVERSE_ENABLE_TIME 500 //ms. how long standstill to be able to drive backward
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#define NORMAL_MAX_ACCELERATION_RATE 10000
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@ -15,6 +15,8 @@
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#define SCREEN_ADDRESS 0x3C ///< See datasheet for Address; 0x3D for 128x64, 0x3C for 128x32
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Adafruit_SSD1306 display(SCREEN_WIDTH, SCREEN_HEIGHT, &Wire, OLED_RESET);
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uint8_t standingDisplayScreen=0;
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#define NUM_STANDINGDISPLAYSCREEN 3
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bool display_init();
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@ -29,6 +31,7 @@ void display_debugDisplay(ESCSerialComm& escFront, ESCSerialComm& escRear);
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bool display_init(){
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if(!display.begin(SSD1306_SWITCHCAPVCC, SCREEN_ADDRESS)) {
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Serial.println(F("SSD1306 allocation failed"));
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writeLogComment((unsigned long)millis(), "SSD1306 allocation failed");
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return false;
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}
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display.clearDisplay();
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@ -81,17 +84,14 @@ void display_update(ESCSerialComm& escFront, ESCSerialComm& escRear){
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display.print(errorstring);
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}else{
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//Normal Display Routinges here
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//Normal Display Routines here
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if (armed) {
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if (loopmillis-last_notidle>5000) {
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display_standingDisplay(escFront,escRear);
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}else{
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if (!control_buttonA) {
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display_drivingDisplay(escFront,escRear);
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}else{
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display_debugDisplay(escFront,escRear);
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}
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display_drivingDisplay(escFront,escRear);
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//display_debugDisplay(escFront,escRear);
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}
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}else{
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@ -108,13 +108,16 @@ void display_update(ESCSerialComm& escFront, ESCSerialComm& escRear){
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void display_drivingDisplay(ESCSerialComm& escFront, ESCSerialComm& escRear) {
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//Display stuff here for when bobbycar is moving or was moving recently and is armed
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//## Km/h Display
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display.setFont(&FreeMonoBold18pt7b);
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display.setTextSize(1); // Normal 1:1 pixel scale
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display.setTextColor(SSD1306_WHITE); // Draw white text
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display.setCursor(0,SCREEN_HEIGHT-(SCREEN_HEIGHT-18)/2 - 3); // Start at top-left corner
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//float _speeddisplay=(escFront.getMeanSpeed()+escRear.getMeanSpeed())/2.0*3.6;
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float _speeddisplay=minSpeedms*3.6;
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@ -151,40 +154,36 @@ void display_drivingDisplay(ESCSerialComm& escFront, ESCSerialComm& escRear) {
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//## Trip / Current Consumed Display
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display.setCursor(1,SCREEN_HEIGHT-7);
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//if (((millis()/2500)%2)==0) {
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if (control_buttonB) {
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//## Speed statistic
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display.print("max: ");
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dtostrf(max_meanSpeed*3.6,1,0,buf);
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display.print((String)buf);
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display.print("km/h");
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}else{
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//## Current Consumed
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/*
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dtostrf(min_filtered_currentAll,1,1,buf);
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display.print("min:");
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display.print((String)buf);
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display.print("A max:");
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dtostrf(max_filtered_currentAll,1,1,buf);
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display.print((String)buf);
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display.print("A");
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*/
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//## Watt Hours Consumed
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dtostrf(min_filtered_wattAll,1,0,buf);
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display.print("min:");
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display.print((String)buf);
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display.print("W max:");
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//## Current
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/*
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dtostrf(min_filtered_currentAll,1,1,buf);
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display.print("min:");
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display.print((String)buf);
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display.print("A max:");
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dtostrf(max_filtered_wattAll,1,0,buf);
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display.print((String)buf);
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display.print("W");
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}
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dtostrf(max_filtered_currentAll,1,1,buf);
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display.print((String)buf);
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display.print("A");
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*/
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//## Watt
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dtostrf(min_filtered_wattAll,1,0,buf);
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display.print((String)buf);
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display.print(" / ");
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dtostrf(max_filtered_wattAll,1,0,buf);
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display.print((String)buf);
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display.print("W ");
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display.setCursor(SCREEN_WIDTH-6*6,SCREEN_HEIGHT-7);
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dtostrf(max_meanSpeed*3.6,1,0,buf);
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display.print((String)buf);
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display.print("km/h");
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}
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void display_debugDisplay(ESCSerialComm& escFront, ESCSerialComm& escRear) {
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//Debug
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display.setTextSize(2); // Normal 1:1 pixel scale
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@ -220,30 +219,157 @@ void display_debugDisplay(ESCSerialComm& escFront, ESCSerialComm& escRear) {
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display.print(" thrpos=");
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display.print(throttle_pos);
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*/
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}
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void display_standingDisplay(ESCSerialComm& escFront, ESCSerialComm& escRear) {
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//Display stuff here when ESCs are powered on and bobbycar is armed but was not moving for a while
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double _displaytrip=trip;
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//double _displaycurrent=currentConsumed;
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double _displaywatthours=watthoursConsumed;
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//bool _displayOverall= ((millis()/3000)%2==0); //switch based on time
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bool _displayOverall=control_buttonB; //switch with button
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bool _displayParameters=control_buttonA;
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bool _displayOverall= ((millis()/2500)%2==0); //switch based on time
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char buf[8];
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display.setFont();
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display.setCursor(0,0);
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if (_displayParameters) {
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if (_displayOverall) { //alternate between this trip and overall trip
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_displaytrip=overallTrip;
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//_displaycurrent=overallCurrentConsumed;
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_displaywatthours=overallWatthoursConsumed;
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}
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//Row 1
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display.print(F("Vbat:")); display.print(escFront.getFeedback_batVoltage());
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display.print(F("/")); display.print(escRear.getFeedback_batVoltage());
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display.print(" V");
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display.println();
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//Row 2
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//display.print(F("Temp:")); display.print(escFront.getFeedback_boardTemp());
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//display.print(F("/")); display.print(escRear.getFeedback_boardTemp());
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display.print(F("T:")); display.print(temp_ESCFront,0);
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display.print(F("/")); display.print(temp_ESCRear,0);
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display.print(F("/")); display.print(temp_Air,0);
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display.print(" C");
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display.println();
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//Row 3
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display.print(F("Trip:"));
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dtostrf(_displaytrip,1,0,buf);
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display.print((String)buf);
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display.print("m ");
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//dtostrf(_displaycurrent,1,2,buf);
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dtostrf(_displaywatthours,1,2,buf);
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display.print((String)buf);
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//display.print(" Ah");
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display.print("Wh");
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display.println();
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//Row 4
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display.print(F(""));
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//dtostrf( _displaytrip/1000/_displaycurrent ,1,2,buf);
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dtostrf( _displaywatthours/_displaytrip*100,1,2,buf);
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display.print((String)buf);
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//display.print(" km/Ah");
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display.print(" kWh/100km");
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if (_displayOverall){
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display.print(" sum");
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}
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display.println();
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}
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void display_standingDisarmedDisplay(ESCSerialComm& escFront, ESCSerialComm& escRear) {
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//Displayed stuff here when escs are powered off / disconnected or bobbycar is not armed
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char buf[8];
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display.setFont();
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display.setCursor(0,0);
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switch(standingDisplayScreen)
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{
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case 0:
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//Quick overview of inputs and status
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//Row1
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if (getDatalogging()) {
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display.print(getLogFilename());
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}else{
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display.print("LOG DISABLED");
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}
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display.print(F(" ")); display.print(loopmillis/1000);
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display.print(F("s"));
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display.println();
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//Row2
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display.print("Throttle ");
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dtostrf(ads_throttle_A_raw,1,0,buf);
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display.print((String)buf);
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display.print("/");
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dtostrf(ads_throttle_B_raw,1,0,buf);
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display.print((String)buf);
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display.println();
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//Row3
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display.print("Brake ");
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dtostrf(ads_brake_raw,1,0,buf);
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display.print((String)buf);
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display.println();
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/*display.print(" c=");
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dtostrf(ads_control_raw,1,0,buf);
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display.print((String)buf); */
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break;
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case 1:
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//Trip Stats (trip / overall)
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//Row 1
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display.print(F("Trip ")); display.print(trip,0); display.print(F(" / ")); display.print(overallTrip,0); display.print(F("m"));
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display.println();
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//Row 2
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display.print(F("Curr ")); display.print(currentConsumed*1000,0); display.print(F(" / ")); display.print(overallCurrentConsumed*1000,0); display.print(F("mAh"));
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display.println();
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//Row 3
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display.print(F("Pow ")); display.print(watthoursConsumed,0); display.print(F(" / ")); display.print(overallWatthoursConsumed,0); display.print(F("Wh"));
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display.println();
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break;
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case 2:
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//Configuration parameters
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//Row 1
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display.print(F("cmdred min=")); display.print(minimum_constant_cmd_reduce);
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display.print(F(" p=")); display.print(brake_cmdreduce_proportional);
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display.println();
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//Row 2
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display.print(F("brkI="));
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dtostrf(startbrakecurrent,1,1,buf);
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@ -254,120 +380,55 @@ void display_standingDisplay(ESCSerialComm& escFront, ESCSerialComm& escRear) {
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display.print((String)buf);
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display.println();
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//Row 3
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display.print(F("thrmax=")); display.print(throttle_max);
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display.print(F(" rev="));
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dtostrf(reverse_speed,1,2,buf);
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display.print((String)buf);
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display.println();
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}else{
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if (_displayOverall) { //alternate between this trip and overall trip
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_displaytrip=overallTrip;
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//_displaycurrent=overallCurrentConsumed;
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_displaywatthours=overallWatthoursConsumed;
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}
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display.print(F("Vbat:")); display.print(escFront.getFeedback_batVoltage());
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display.print(F("/")); display.print(escRear.getFeedback_batVoltage());
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display.print(" V");
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display.println();
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//display.print(F("Temp:")); display.print(escFront.getFeedback_boardTemp());
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//display.print(F("/")); display.print(escRear.getFeedback_boardTemp());
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display.print(F("T:")); display.print(temp_ESCFront,0);
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display.print(F("/")); display.print(temp_ESCRear,0);
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display.print(F("/")); display.print(temp_Air,0);
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display.print(" C");
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display.println();
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display.print(F("Trip:"));
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dtostrf(_displaytrip,1,0,buf);
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display.print((String)buf);
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display.print("m ");
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//dtostrf(_displaycurrent,1,2,buf);
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dtostrf(_displaywatthours,1,2,buf);
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display.print((String)buf);
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//display.print(" Ah");
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display.print("Wh");
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display.println();
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display.print(F(""));
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//dtostrf( _displaytrip/1000/_displaycurrent ,1,2,buf);
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dtostrf( _displaywatthours/_displaytrip*100,1,2,buf);
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display.print((String)buf);
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//display.print(" km/Ah");
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display.print(" kWh/100km");
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if (_displayOverall){
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display.print(" sum");
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}
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display.println();
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break;
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}
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}
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void display_standingDisarmedDisplay(ESCSerialComm& escFront, ESCSerialComm& escRear) {
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//Displayed stuff here when escs are powered off / disconnected
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char buf[8];
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display.setFont();
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display.setCursor(0,0);
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//Row1
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if (getDatalogging()) {
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display.print(getLogFilename());
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}else{
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display.print("LOG DISABLED");
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}
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display.print(F(" ")); display.print(loopmillis/1000);
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display.print(F("s"));
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display.println();
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//Row2
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display.print(F("ESC F="));
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display.print(escFront.getControllerConnected());
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display.print(F(" R="));
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display.print(escRear.getControllerConnected());
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display.println();
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//Row3
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display.print("throttle=");
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dtostrf(ads_throttle_A_raw,1,0,buf);
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display.print((String)buf);
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display.print("/");
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dtostrf(ads_throttle_B_raw,1,0,buf);
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display.print((String)buf);
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display.println();
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//Put User Inputs in last row
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//Row 4
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display.print("brake=");
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dtostrf(ads_brake_raw,1,0,buf);
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display.print((String)buf);
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/*display.print(" c=");
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dtostrf(ads_control_raw,1,0,buf);
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display.print((String)buf); */
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if (control_buttonA){
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display.print(" A");
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display.setCursor(0,24);
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if (button_start_state){
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display.print("S");
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}else{
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display.print(" ");
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}
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if (control_buttonB){
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display.print(" B");
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display.print("B");
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}else{
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display.print(" ");
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}
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if (button_start_state){
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display.print(" S");
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if (control_buttonA){
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display.print("A");
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}else{
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display.print(" ");
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}
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if (escFront.getControllerConnected()){
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display.print("F");
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}else{
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display.print(" ");
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}
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if (escRear.getControllerConnected()){
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display.print("R");
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}else{
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display.print(" ");
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}
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display.setCursor(SCREEN_WIDTH-6*3,24);
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display.print(standingDisplayScreen);
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display.print("/"); display.print(NUM_STANDINGDISPLAYSCREEN-1);
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}
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@ -92,7 +92,7 @@ void loggingLoop(unsigned long loopmillis,ESCSerialComm& escFront, ESCSerialComm
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dataFile.print("rpm_FrontL,rpm_FrontR,rpm_RearL,rpm_RearR,");
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dataFile.print("temp_ESCFront,temp_ESCRear,vbat_Front,vbat_Rear,");
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dataFile.print("currentAll,throttle,brake,speed,trip_Front,trip_Rear,trip,currentConsumed_Front,currentConsumed_Rear,currentConsumed,watthoursConsumed,");
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dataFile.println("temp_Front,temp_Rear,temp_Air,looptime_duration");
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dataFile.println("temp_Front,temp_Rear,temp_Air,looptime_duration_min,looptime_duration_max");
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dataFile.print("#TIMESTAMP:"); dataFile.println(now());
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logging_headerWritten=true;
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}
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@ -4,6 +4,8 @@
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#include <OneWire.h>
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#include <DallasTemperature.h>
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//#define SEARCH_DEVICES
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DeviceAddress thermometerESCFront={0x28,0xFF,0x64,0x0E,0x77,0xB0,0xAB,0x4B}; //IC with one marking 28FF640E77B0AB4B
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float temp_ESCFront;
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@ -29,20 +31,15 @@ void printAddress(DeviceAddress deviceAddress);
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void initTemperature() {
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sensors.begin();
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delay(1000);
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//Just search for devices. Only needed when connecting a new sensor to find the address
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#ifdef SEARCH_DEVICES
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Serial.print("Locating 1Wire devices...");
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Serial.print("Found ");
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Serial.print(sensors.getDeviceCount(), DEC);
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Serial.println(" devices.");
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delay(1000);
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delay(1000);
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//Just search for devices. Only needed when connecting a new sensor to find the address
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oneWire.reset_search();
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for (uint8_t i=0;i<sensors.getDeviceCount();i++){
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@ -58,8 +55,9 @@ void initTemperature() {
|
|||
}
|
||||
|
||||
delay(1000);
|
||||
#endif
|
||||
|
||||
//sensors.setResolution(thermometerReservoir, TEMPERATURE_PRECISION);
|
||||
//sensors.setResolution(thermometerESCFront, TEMPERATURE_PRECISION);
|
||||
|
||||
|
||||
}
|
||||
|
|
|
@ -100,7 +100,6 @@ void setup()
|
|||
|
||||
initResult=display_init();
|
||||
led_simpeProgress(1,initResult);
|
||||
|
||||
|
||||
|
||||
initResult=initLogging();
|
||||
|
@ -129,7 +128,6 @@ void setup()
|
|||
// also set ADSREADPERIOD to at least the read interval
|
||||
ADS.requestADC(0); //Start requesting a channel
|
||||
led_simpeProgress(6,true);
|
||||
writeLogComment((unsigned long)millis(), "ADS1115 Initialized");
|
||||
}
|
||||
delay(10);
|
||||
for (uint8_t i=0;i<4;i++){ //read all channels once to have adc readings ready in first loop (to prevent premature failsafe)
|
||||
|
@ -141,6 +139,8 @@ void setup()
|
|||
setSyncProvider(getTeensy3Time); //See https://www.pjrc.com/teensy/td_libs_Time.html#teensy3
|
||||
if (timeStatus()!= timeSet) {
|
||||
Serial.println("Unable to sync with the RTC");
|
||||
|
||||
writeLogComment((unsigned long)millis(), "Unable to sync with the RTC");
|
||||
led_simpeProgress(7,false);
|
||||
} else {
|
||||
Serial.println("RTC has set the system time");
|
||||
|
@ -651,10 +651,22 @@ void readADSButtons() {
|
|||
|
||||
if (control_buttonA && !last_control_buttonA) { //button A was just pressed
|
||||
writeLogComment(loopmillis, "Button A Pressed");
|
||||
|
||||
if (!armed) { //standing disarmed display is showing
|
||||
if (standingDisplayScreen<NUM_STANDINGDISPLAYSCREEN-1){
|
||||
standingDisplayScreen++;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
if (control_buttonB && !last_control_buttonB) { //button B was just pressed
|
||||
writeLogComment(loopmillis, "Button B Pressed");
|
||||
|
||||
if (!armed) { //standing disarmed display is showing
|
||||
if (standingDisplayScreen>0){
|
||||
standingDisplayScreen--;
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
|
|
Loading…
Reference in New Issue