266 lines
11 KiB
C++
266 lines
11 KiB
C++
#if defined BOARD_OBP60S3 || defined BOARD_OBP40S3
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#include "Pagedata.h"
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#include "OBP60Extensions.h"
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class PageRudderPosition : public Page
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{
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bool keylock = false; // Keylock
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public:
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PageRudderPosition(CommonData &common){
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common.logger->logDebug(GwLog::LOG,"Show PageRudderPosition");
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}
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// Key functions
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virtual int handleKey(int key){
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// Keylock function
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if(key == 11){ // Code for keylock
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keylock = !keylock; // Toggle keylock
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return 0; // Commit the key
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}
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return key;
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}
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virtual void displayPage(CommonData &commonData, PageData &pageData)
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{
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GwConfigHandler *config = commonData.config;
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GwLog *logger=commonData.logger;
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static String unit1old = "";
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double value1 = 0.1;
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double value1old = 0.1;
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// Get config data
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String lengthformat = config->getString(config->lengthFormat);
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bool simulation = config->getBool(config->useSimuData);
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String displaycolor = config->getString(config->displaycolor);
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bool holdvalues = config->getBool(config->holdvalues);
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String flashLED = config->getString(config->flashLED);
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String backlightMode = config->getString(config->backlight);
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// Get boat values for rudder position
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GwApi::BoatValue *bvalue1 = pageData.values[0]; // First element in list
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String name1 = bvalue1->getName().c_str(); // Value name
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name1 = name1.substring(0, 6); // String length limit for value name
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value1 = bvalue1->value; // Raw value without unit convertion
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bool valid1 = bvalue1->valid; // Valid information
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String svalue1 = formatValue(bvalue1, commonData).svalue; // Formatted value as string including unit conversion and switching decimal places
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String unit1 = formatValue(bvalue1, commonData).unit; // Unit of value
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if(valid1 == true){
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value1old = value1; // Save old value
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unit1old = unit1; // Save old unit
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}
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if(simulation == true){
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value1 = (3 + float(random(0, 50)) / 10.0)/360*2*PI;
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unit1 = "Deg";
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}
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else{
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value1 = 0;
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}
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// Optical warning by limit violation (unused)
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if(String(flashLED) == "Limit Violation"){
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setBlinkingLED(false);
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setFlashLED(false);
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}
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// Logging boat values
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if (bvalue1 == NULL) return;
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LOG_DEBUG(GwLog::LOG,"Drawing at PageRudderPosition, %s:%f", name1.c_str(), value1);
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// Draw page
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//***********************************************************
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// Set background color and text color
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int textcolor = GxEPD_BLACK;
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int pixelcolor = GxEPD_BLACK;
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int bgcolor = GxEPD_WHITE;
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if(displaycolor == "Normal"){
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textcolor = GxEPD_BLACK;
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pixelcolor = GxEPD_BLACK;
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bgcolor = GxEPD_WHITE;
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}
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else{
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textcolor = GxEPD_WHITE;
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pixelcolor = GxEPD_WHITE;
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bgcolor = GxEPD_BLACK;
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}
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// Set display in partial refresh mode
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getdisplay().setPartialWindow(0, 0, getdisplay().width(), getdisplay().height()); // Set partial update
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//*******************************************************************************************
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// Draw RudderPosition
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int rInstrument = 110; // Radius of RudderPosition
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float pi = 3.141592;
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getdisplay().fillCircle(200, 150, rInstrument + 10, pixelcolor); // Outer circle
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getdisplay().fillCircle(200, 150, rInstrument + 7, bgcolor); // Outer circle
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getdisplay().fillRect(0, 30, 400, 122, bgcolor); // Delete half top circle
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for(int i=90; i<=270; i=i+10)
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{
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// Scaling values
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float x = 200 + (rInstrument-30)*sin(i/180.0*pi); // x-coordinate dots
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float y = 150 - (rInstrument-30)*cos(i/180.0*pi); // y-coordinate cots
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const char *ii = " ";
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switch (i)
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{
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case 0: ii=" "; break; // Use a blank for a empty scale value
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case 30 : ii=" "; break;
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case 60 : ii=" "; break;
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case 90 : ii="45"; break;
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case 120 : ii="30"; break;
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case 150 : ii="15"; break;
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case 180 : ii="0"; break;
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case 210 : ii="15"; break;
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case 240 : ii="30"; break;
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case 270 : ii="45"; break;
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case 300 : ii=" "; break;
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case 330 : ii=" "; break;
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default: break;
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}
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// Print text centered on position x, y
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int16_t x1, y1; // Return values of getTextBounds
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uint16_t w, h; // Return values of getTextBounds
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getdisplay().getTextBounds(ii, int(x), int(y), &x1, &y1, &w, &h); // Calc width of new string
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getdisplay().setCursor(x-w/2, y+h/2);
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if(i % 30 == 0){
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getdisplay().setFont(&Ubuntu_Bold8pt7b);
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getdisplay().print(ii);
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}
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// Draw sub scale with dots
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float x1c = 200 + rInstrument*sin(i/180.0*pi);
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float y1c = 150 - rInstrument*cos(i/180.0*pi);
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getdisplay().fillCircle((int)x1c, (int)y1c, 2, pixelcolor);
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float sinx=sin(i/180.0*pi);
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float cosx=cos(i/180.0*pi);
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// Draw sub scale with lines (two triangles)
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if(i % 30 == 0){
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float dx=2; // Line thickness = 2*dx+1
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float xx1 = -dx;
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float xx2 = +dx;
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float yy1 = -(rInstrument-10);
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float yy2 = -(rInstrument+10);
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getdisplay().fillTriangle(200+(int)(cosx*xx1-sinx*yy1),150+(int)(sinx*xx1+cosx*yy1),
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200+(int)(cosx*xx2-sinx*yy1),150+(int)(sinx*xx2+cosx*yy1),
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200+(int)(cosx*xx1-sinx*yy2),150+(int)(sinx*xx1+cosx*yy2),pixelcolor);
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getdisplay().fillTriangle(200+(int)(cosx*xx2-sinx*yy1),150+(int)(sinx*xx2+cosx*yy1),
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200+(int)(cosx*xx1-sinx*yy2),150+(int)(sinx*xx1+cosx*yy2),
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200+(int)(cosx*xx2-sinx*yy2),150+(int)(sinx*xx2+cosx*yy2),pixelcolor);
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}
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}
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// Print label
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getdisplay().setTextColor(textcolor);
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getdisplay().setFont(&Ubuntu_Bold16pt7b);
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getdisplay().setCursor(80, 70);
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getdisplay().print("Rudder Position"); // Label
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// Print Unit in RudderPosition
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if(valid1 == true || simulation == true){
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if(holdvalues == false){
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getdisplay().setFont(&Ubuntu_Bold12pt7b);
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getdisplay().setCursor(175, 110);
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getdisplay().print(unit1); // Unit
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}
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else{
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getdisplay().setFont(&Ubuntu_Bold12pt7b);
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getdisplay().setCursor(175, 110);
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getdisplay().print(unit1old); // Unit
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}
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}
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else{
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// Print Unit of keel position
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getdisplay().setFont(&Ubuntu_Bold8pt7b);
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getdisplay().setCursor(145, 110);
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getdisplay().print("No sensor data"); // Info missing sensor
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}
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// Calculate rudder position
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if(holdvalues == true && valid1 == false){
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value1 = 2 * pi - ((value1old * 2) + pi);
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}
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else{
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value1 = 2 * pi - ((value1 * 2) + pi);
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}
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// Draw rudder position pointer
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float startwidth = 8; // Start width of pointer
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if(valid1 == true || holdvalues == true || simulation == true){
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float sinx=sin(value1);
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float cosx=cos(value1);
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// Normal pointer
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// Pointer as triangle with center base 2*width
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float xx1 = -startwidth;
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float xx2 = startwidth;
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float yy1 = -startwidth;
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float yy2 = -(rInstrument * 0.5);
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getdisplay().fillTriangle(200+(int)(cosx*xx1-sinx*yy1),150+(int)(sinx*xx1+cosx*yy1),
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200+(int)(cosx*xx2-sinx*yy1),150+(int)(sinx*xx2+cosx*yy1),
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200+(int)(cosx*0-sinx*yy2),150+(int)(sinx*0+cosx*yy2),pixelcolor);
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// Inverted pointer
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// Pointer as triangle with center base 2*width
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float endwidth = 2; // End width of pointer
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float ix1 = endwidth;
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float ix2 = -endwidth;
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float iy1 = -(rInstrument * 0.5);
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float iy2 = -endwidth;
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getdisplay().fillTriangle(200+(int)(cosx*ix1-sinx*iy1),150+(int)(sinx*ix1+cosx*iy1),
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200+(int)(cosx*ix2-sinx*iy1),150+(int)(sinx*ix2+cosx*iy1),
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200+(int)(cosx*0-sinx*iy2),150+(int)(sinx*0+cosx*iy2),pixelcolor);
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}
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// Center circle
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getdisplay().fillCircle(200, 150, startwidth + 6, bgcolor);
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getdisplay().fillCircle(200, 150, startwidth + 4, pixelcolor);
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//*******************************************************************************************
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// Key Layout
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getdisplay().setTextColor(textcolor);
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getdisplay().setFont(&Ubuntu_Bold8pt7b);
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if(keylock == false){
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getdisplay().setCursor(130, 290);
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getdisplay().print("[ <<<< " + String(commonData.data.actpage) + "/" + String(commonData.data.maxpage) + " >>>> ]");
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if(String(backlightMode) == "Control by Key"){ // Key for illumination
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getdisplay().setCursor(343, 290);
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getdisplay().print("[ILUM]");
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}
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}
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else{
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getdisplay().setCursor(130, 290);
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getdisplay().print(" [ Keylock active ]");
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}
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// Update display
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getdisplay().nextPage(); // Partial update (fast)
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};
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};
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static Page *createPage(CommonData &common){
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return new PageRudderPosition(common);
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}
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/**
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* with the code below we make this page known to the PageTask
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* we give it a type (name) that can be selected in the config
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* we define which function is to be called
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* and we provide the number of user parameters we expect (0 here)
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* and will will provide the names of the fixed values we need
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*/
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PageDescription registerPageRudderPosition(
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"RudderPosition", // Page name
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createPage, // Action
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0, // Number of bus values depends on selection in Web configuration
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{"RPOS"}, // Bus values we need in the page
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true // Show display header on/off
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);
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#endif |