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https://github.com/thooge/esp32-nmea2000-obp60.git
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Revert wind speed chart for horizontal charts; changed chart format parameters to <char>; adjusted chart size to OBP standard
Revert wind speed chart for horizontal charts; changed chart format parameters to <char>; adjusted chart size to OBP standard - commit from PageWindPlot-v2
This commit is contained in:
@@ -5,7 +5,7 @@
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// --- Class Chart ---------------
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template <typename T>
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Chart<T>::Chart(RingBuffer<T>& dataBuf, int8_t chrtDir, int8_t chrtSz, double dfltRng, CommonData& common, bool useSimuData)
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Chart<T>::Chart(RingBuffer<T>& dataBuf, char chrtDir, int8_t chrtSz, double dfltRng, CommonData& common, bool useSimuData)
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: dataBuf(dataBuf)
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, chrtDir(chrtDir)
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, chrtSz(chrtSz)
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@@ -21,41 +21,43 @@ Chart<T>::Chart(RingBuffer<T>& dataBuf, int8_t chrtDir, int8_t chrtSz, double df
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dWidth = getdisplay().width();
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dHeight = getdisplay().height();
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if (chrtDir == 0) {
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if (chrtDir == 'H') {
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// horizontal chart timeline direction
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timAxis = dWidth;
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switch (chrtSz) {
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case 0:
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valAxis = dHeight - top - bottom;
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cStart = { 0, top };
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cStart = { 0, top - 1 };
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break;
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case 1:
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valAxis = (dHeight - top - bottom) / 2 - hGap;
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cStart = { 0, top };
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cStart = { 0, top - 1 };
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break;
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case 2:
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valAxis = (dHeight - top - bottom) / 2 - hGap;
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cStart = { 0, top + (valAxis + hGap) + hGap };
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cStart = { 0, top + (valAxis + hGap) + hGap - 1 };
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break;
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default:
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LOG_DEBUG(GwLog::ERROR, "displayChart: wrong init parameter");
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return;
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}
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} else if (chrtDir == 1) {
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} else if (chrtDir == 'V') {
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// vertical chart timeline direction
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timAxis = dHeight - top - bottom;
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switch (chrtSz) {
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case 0:
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valAxis = dWidth;
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cStart = { 0, top };
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cStart = { 0, top - 1 };
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break;
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case 1:
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valAxis = dWidth / 2 - vGap - 1;
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cStart = { 0, top };
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// valAxis = dWidth / 2 - vGap - 1;
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valAxis = dWidth / 2 - vGap;
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cStart = { 0, top - 1 };
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break;
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case 2:
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valAxis = dWidth / 2 - vGap - 1;
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cStart = { dWidth / 2 + vGap, top };
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// valAxis = dWidth / 2 - vGap - 1;
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valAxis = dWidth / 2 - vGap;
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cStart = { dWidth / 2 + vGap - 1, top - 1 };
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break;
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default:
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LOG_DEBUG(GwLog::ERROR, "displayChart: wrong init parameter");
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@@ -71,17 +73,21 @@ Chart<T>::Chart(RingBuffer<T>& dataBuf, int8_t chrtDir, int8_t chrtSz, double df
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dbMAX_VAL = dataBuf.getMaxVal();
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bufSize = dataBuf.getCapacity();
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if (dbFormat == "formatCourse" || dbFormat == "FormatWind" || dbFormat == "FormatRot") {
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if (dbFormat == "formatCourse" || dbFormat == "formatWind" || dbFormat == "formatRot") {
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if (dbFormat == "FormatRot") {
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chrtDataFmt = 2; // Chart is showing data of rotational <degree> format
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if (dbFormat == "formatRot") {
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chrtDataFmt = 'R'; // Chart is showing data of rotational <degree> format
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} else {
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chrtDataFmt = 1; // Chart is showing data of course / wind <degree> format
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chrtDataFmt = 'W'; // Chart is showing data of course / wind <degree> format
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}
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rngStep = M_TWOPI / 360.0 * 10.0; // +/-10 degrees on each end of chrtMid; we are calculating with SI values
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} else {
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chrtDataFmt = 0; // Chart is showing any other data format than <degree>
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if (dbFormat == "formatDepth") {
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chrtDataFmt = 'D'; // Chart ist showing data of <depth> format
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} else {
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chrtDataFmt = 'S'; // Chart is showing any other data format than <degree>
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}
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rngStep = 5.0; // +/- 10 for all other values (eg. m/s, m, K, mBar)
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}
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@@ -178,16 +184,19 @@ void Chart<T>::drawChrt(int8_t chrtIntv, GwApi::BoatValue& currValue)
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chrtPrevVal = dbMAX_VAL;
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} else {
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if (chrtDir == 0) { // horizontal chart
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if (chrtDir == 'H') { // horizontal chart
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x = cStart.x + i; // Position in chart area
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if (chrtDataFmt == 0) {
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if (chrtDataFmt == 'S') {
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// y = cStart.y + static_cast<int>(((chrtVal - chrtMin) * chrtScl) + 0.5); // calculate chart point and round
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y = cStart.y + valAxis - static_cast<int>(((chrtVal - chrtMin) * chrtScl) + 0.5); // calculate chart point and round
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} else if (chrtDataFmt == 'D') {
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y = cStart.y + static_cast<int>(((chrtVal - chrtMin) * chrtScl) + 0.5); // calculate chart point and round
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} else { // degree type value
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y = cStart.y + static_cast<int>((WindUtils::to2PI(chrtVal - chrtMin) * chrtScl) + 0.5); // calculate chart point and round
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}
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} else { // vertical chart
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y = cStart.y + timAxis - i; // Position in chart area
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if (chrtDataFmt == 0) {
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if (chrtDataFmt == 'S' || chrtDataFmt == 'D') {
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x = cStart.x + static_cast<int>(((chrtVal - chrtMin) * chrtScl) + 0.5); // calculate chart point and round
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} else { // degree type value
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x = cStart.x + static_cast<int>((WindUtils::to2PI(chrtVal - chrtMin) * chrtScl) + 0.5); // calculate chart point and round
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@@ -202,7 +211,7 @@ void Chart<T>::drawChrt(int8_t chrtIntv, GwApi::BoatValue& currValue)
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prevX = x;
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prevY = y;
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} else if (chrtDataFmt != 0) {
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} else if (chrtDataFmt == 'W' || chrtDataFmt == 'R') {
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// cross borders check for degree values; shift values to [-PI..0..PI]; when crossing borders, range is 2x PI degrees
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double normCurr = WindUtils::to2PI(chrtVal - chrtMin);
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double normPrev = WindUtils::to2PI(chrtPrevVal - chrtMin);
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@@ -212,7 +221,7 @@ void Chart<T>::drawChrt(int8_t chrtIntv, GwApi::BoatValue& currValue)
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if (crossedBorders) { // If current value crosses chart borders compared to previous value, split line
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// LOG_DEBUG(GwLog::DEBUG, "PageWindPlot Chart: crossedBorders: %d, chrtVal: %.2f, chrtPrevVal: %.2f", crossedBorders, chrtVal, chrtPrevVal);
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bool wrappingFromHighToLow = normCurr < normPrev; // Determine which edge we're crossing
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if (chrtDir == 0) {
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if (chrtDir == 'H') {
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int ySplit = wrappingFromHighToLow ? (cStart.y + valAxis) : cStart.y;
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getdisplay().drawLine(prevX, prevY, x, ySplit, fgColor);
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if (x != prevX) { // line with some horizontal trend
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@@ -231,12 +240,18 @@ void Chart<T>::drawChrt(int8_t chrtIntv, GwApi::BoatValue& currValue)
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}
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// Draw line with 2 pixels width + make sure vertical lines are drawn correctly
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if (chrtDir == 0 || x == prevX) { // horizontal chart & vertical line
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// if (x == prevX) { // vertical line
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if (chrtDir == 'H' || x == prevX) { // horizontal chart & vertical line
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if (chrtDataFmt == 'D') {
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getdisplay().drawLine(x, y, x, cStart.y + valAxis, fgColor);
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getdisplay().drawLine(x - 1, y, x - 1, cStart.y + valAxis, fgColor);
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}
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getdisplay().drawLine(prevX, prevY, x, y, fgColor);
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getdisplay().drawLine(prevX - 1, prevY, x - 1, y, fgColor);
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} else if (chrtDir == 1 || x != prevX) { // vertical chart & line with some horizontal trend -> normal state
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// } else { // line with some horizontal trend -> normal state
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} else if (chrtDir == 'V' || x != prevX) { // vertical chart & line with some horizontal trend -> normal state
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if (chrtDataFmt == 'D') {
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getdisplay().drawLine(x, y, cStart.x + valAxis, y, fgColor);
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getdisplay().drawLine(x, y - 1, cStart.x + valAxis, y - 1, fgColor);
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}
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getdisplay().drawLine(prevX, prevY, x, y, fgColor);
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getdisplay().drawLine(prevX, prevY - 1, x, y - 1, fgColor);
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}
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@@ -249,23 +264,22 @@ void Chart<T>::drawChrt(int8_t chrtIntv, GwApi::BoatValue& currValue)
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if (i >= timAxis - 1) {
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oldChrtIntv = 0; // force reset of buffer start and number of values to show in next display loop
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if (chrtDataFmt == 1) { // degree of course or wind
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if (chrtDataFmt == 'W') { // degree of course or wind
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recalcRngCntr = true;
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LOG_DEBUG(GwLog::DEBUG, "PageWindPlot FreeTop: timAxis: %d, i: %d, bufStart: %d, numBufVals: %d, recalcRngCntr: %d", timAxis, i, bufStart, numBufVals, recalcRngCntr);
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}
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break;
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}
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}
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} else {
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// No valid data available
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getdisplay().setFont(&Ubuntu_Bold10pt8b);
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int pX, pY;
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if (chrtDir == 0) { // horizontal chart
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if (chrtDir == 'H') {
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pX = cStart.x + (timAxis / 2);
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pY = cStart.y + (valAxis / 2) - 10;
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} else { // vertical chart
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} else {
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pX = cStart.x + (valAxis / 2);
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pY = cStart.y + (timAxis / 2) - 10;
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}
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@@ -316,7 +330,7 @@ double Chart<T>::getRng(double center, size_t amount)
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template <typename T>
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void Chart<T>::calcChrtBorders(double& rngMid, double& rngMin, double& rngMax, double& rng)
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{
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if (chrtDataFmt == 0) {
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if (chrtDataFmt == 'S' || chrtDataFmt == 'D') {
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// Chart data is of any type but 'degree'
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double oldRngMin = rngMin;
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@@ -349,7 +363,7 @@ void Chart<T>::calcChrtBorders(double& rngMid, double& rngMin, double& rngMax, d
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currMinVal, currMaxVal, rngMin, rngMid, rngMax, rng, rngStep, oldRngMin, oldRngMax, dfltRng, numBufVals);
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} else {
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if (chrtDataFmt == 1) {
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if (chrtDataFmt == 'W') {
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// Chart data is of type 'course' or 'wind'
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if ((count == 1 && rngMid == 0) || rngMid == dbMAX_VAL) {
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@@ -378,7 +392,7 @@ void Chart<T>::calcChrtBorders(double& rngMid, double& rngMin, double& rngMax, d
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rng * RAD_TO_DEG, rngStep * RAD_TO_DEG);
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}
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} else if (chrtDataFmt == 2) {
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} else if (chrtDataFmt == 'R') {
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// Chart data is of type 'rotation'; then we want to have <rndMid> always to be '0'
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rngMid = 0;
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}
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@@ -417,7 +431,7 @@ void Chart<T>::drawChrtTimeAxis(int8_t chrtIntv)
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getdisplay().setFont(&Ubuntu_Bold8pt8b);
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getdisplay().setTextColor(fgColor);
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if (chrtDir == 0) { // horizontal chart
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if (chrtDir == 'H') { // horizontal chart
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getdisplay().fillRect(0, cStart.y, dWidth, 2, fgColor);
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timeRng = chrtIntv * 4; // Chart time interval: [1] 4 min., [2] 8 min., [3] 12 min., [4] 16 min., [8] 32 min.
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@@ -478,7 +492,7 @@ void Chart<T>::drawChrtValAxis()
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{
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double slots;
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int i, intv;
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double cVal, cchrtRng, crngMin;
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double cVal, cChrtRng, crngMin;
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char sVal[6];
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int sLen;
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std::unique_ptr<GwApi::BoatValue> tmpBVal; // Temp variable to get formatted and converted data value from OBP60Formatter
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@@ -486,16 +500,17 @@ void Chart<T>::drawChrtValAxis()
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tmpBVal->setFormat(dataBuf.getFormat());
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tmpBVal->valid = true;
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if (chrtDir == 0) { // horizontal chart
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if (chrtDir == 'H') {
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slots = valAxis / 60.0; // number of axis labels
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tmpBVal->value = chrtRng;
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cchrtRng = formatValue(tmpBVal.get(), *commonData).cvalue; // value (converted)
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intv = static_cast<int>(round(cchrtRng / slots));
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cChrtRng = formatValue(tmpBVal.get(), *commonData).cvalue; // value (converted)
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intv = static_cast<int>(round(cChrtRng / slots));
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i = intv;
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if (chrtSz == 0) { // full size chart -> print multiple value lines
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getdisplay().setFont(&Ubuntu_Bold12pt8b);
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for (int j = 60; j < valAxis - 30; j += 60) {
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// for (int j = 60; j < valAxis - 30; j += 60) {
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for (int j = valAxis - 60; j > 30; j -= 60) {
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getdisplay().drawLine(cStart.x, cStart.y + j, cStart.x + timAxis, cStart.y + j, fgColor);
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getdisplay().fillRect(cStart.x, cStart.y + j - 11, 42, 21, bgColor); // Clear small area to remove potential chart lines
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@@ -542,7 +557,7 @@ void Chart<T>::drawChrtValAxis()
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} else {
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getdisplay().setFont(&Ubuntu_Bold10pt8b);
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}
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getdisplay().fillRect(cStart.x, top, valAxis, 2, fgColor); // top chart line
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getdisplay().fillRect(cStart.x, cStart.y, valAxis, 2, fgColor); // top chart line
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tmpBVal->value = chrtMin;
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cVal = formatValue(tmpBVal.get(), *commonData).cvalue; // value (converted)
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@@ -560,14 +575,9 @@ void Chart<T>::drawChrtValAxis()
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snprintf(sVal, sizeof(sVal), "%.0f", round(cVal));
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drawTextRalign(cStart.x + valAxis - 2, cStart.y - 2, sVal); // Range high end
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for (int j = 0; j <= valAxis + 2; j += ((valAxis + 2) / 2)) {
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for (int j = 0; j <= valAxis; j += (valAxis / 2)) {
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getdisplay().drawLine(cStart.x + j, cStart.y, cStart.x + j, cStart.y + timAxis, fgColor);
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}
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// if (chrtSz == 0) {
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// getdisplay().setFont(&Ubuntu_Bold12pt8b);
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// drawTextCenter(cStart.x + (valAxis / 4) + 15, cStart.y - 11, dbName); // buffer data name
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// }
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}
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}
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@@ -575,8 +585,8 @@ void Chart<T>::drawChrtValAxis()
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template <typename T>
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void Chart<T>::prntCurrValue(GwApi::BoatValue& currValue)
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{
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const int xPosVal = (chrtDir == 0) ? cStart.x + (timAxis / 2) - 56 : cStart.x + 32;
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const int yPosVal = (chrtDir == 0) ? cStart.y + valAxis - 7 : cStart.y + timAxis - 7;
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const int xPosVal = (chrtDir == 'H') ? cStart.x + (timAxis / 2) - 56 : cStart.x + 32;
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const int yPosVal = (chrtDir == 'H') ? cStart.y + valAxis - 5 : cStart.y + timAxis - 5;
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FormattedData frmtDbData = formatValue(&currValue, *commonData);
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double testdbValue = frmtDbData.value;
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@@ -585,7 +595,7 @@ void Chart<T>::prntCurrValue(GwApi::BoatValue& currValue)
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// LOG_DEBUG(GwLog::DEBUG, "Chart CurrValue: dbValue: %.2f, sdbValue: %s, fmrtDbValue: %.2f, dbFormat: %s, dbUnit: %s, Valid: %d, Name: %s, Address: %p", currValue.value, sdbValue,
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// testdbValue, currValue.getFormat(), dbUnit, currValue.valid, currValue.getName(), currValue);
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getdisplay().fillRect(xPosVal - 1, yPosVal - 34, 125, 41, bgColor); // Clear area for TWS value
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getdisplay().fillRect(xPosVal - 1, yPosVal - 34, 125, 40, bgColor); // Clear area for TWS value
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getdisplay().drawRect(xPosVal, yPosVal - 33, 123, 39, fgColor); // Draw box for TWS value
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getdisplay().setFont(&DSEG7Classic_BoldItalic16pt7b);
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getdisplay().setCursor(xPosVal + 1, yPosVal);
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@@ -16,19 +16,18 @@ protected:
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GwLog *logger;
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RingBuffer<T> &dataBuf; // Buffer to display
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int8_t chrtDir; // Chart timeline direction: [0] = horizontal, [1] = vertical
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char chrtDir; // Chart timeline direction: 'H' = horizontal, 'V' = vertical
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int8_t chrtSz; // Chart size: [0] = full size, [1] = half size left/top, [2] half size right/bottom
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double dfltRng; // Default range of chart, e.g. 30 = [0..30]
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uint16_t fgColor; // color code for any screen writing
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uint16_t bgColor; // color code for screen background
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bool useSimuData; // flag to indicate if simulation data is active
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int top = 48; // display top header lines
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int bottom = 22; // display bottom lines
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// int top = 48; // display top header lines
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int top = 44; // chart gap at top of display (25 lines for standard gap + 19 lines for axis labels)
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int bottom = 25; // chart gap at bottom of display to keep space for status line
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int hGap = 11; // gap between 2 horizontal charts; actual gap is 2x <gap>
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int vGap = 20; // gap between 2 vertical charts; actual gap is 2x <gap>
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int xOffset = 33; // offset for horizontal axis (time/value), because of space for left vertical axis labeling
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int yOffset = 10; // offset for vertical axis (time/value), because of space for top horizontal axis labeling
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int dWidth; // Display width
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int dHeight; // Display height
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int timAxis, valAxis; // size of time and value chart axis
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@@ -41,7 +40,7 @@ protected:
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bool recalcRngCntr = false; // Flag for re-calculation of mid value of chart for wind data types
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String dbName, dbFormat; // Name and format of data buffer
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int chrtDataFmt; // Data format of chart: [0] size values; [1] degree of course or wind; [2] rotational degrees
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char chrtDataFmt; // Data format of chart: 'S' = size values; 'D' = depth value, 'W' = degree of course or wind; 'R' rotational degrees
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double dbMIN_VAL; // Lowest possible value of buffer of type <T>
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double dbMAX_VAL; // Highest possible value of buffer of type <T>; indicates invalid value in buffer
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size_t bufSize; // History buffer size: 1.920 values for 32 min. history chart
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@@ -63,7 +62,7 @@ protected:
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void prntCurrValue(GwApi::BoatValue& currValue); // Add current boat data value to chart
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public:
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Chart(RingBuffer<T>& dataBuf, int8_t chrtDir, int8_t chrtSz, double dfltRng, CommonData& common, bool useSimuData); // Chart object of data chart
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Chart(RingBuffer<T>& dataBuf, char chrtDir, int8_t chrtSz, double dfltRng, CommonData& common, bool useSimuData); // Chart object of data chart
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~Chart();
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void showChrt(int8_t chrtIntv, GwApi::BoatValue currValue); // Perform all actions to draw chart
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@@ -167,12 +167,13 @@ public:
|
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LOG_DEBUG(GwLog::DEBUG, "PageWindPlot: Creating true wind charts");
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auto* twdHstry = pageData.hstryManager->getBuffer("TWD");
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auto* twsHstry = pageData.hstryManager->getBuffer("TWS");
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twdFlChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*twdHstry, 1, 0, dfltRngWd, *commonData, useSimuData));
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twsFlChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*twsHstry, 0, 0, dfltRngWs, *commonData, useSimuData));
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twdHfChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*twdHstry, 1, 1, dfltRngWd, *commonData, useSimuData));
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twsHfChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*twsHstry, 1, 2, dfltRngWs, *commonData, useSimuData));
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// twdHfChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*twdHstry, 0, 1, dfltRngWd, *commonData, useSimuData));
|
||||
// twsHfChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*twsHstry, 0, 2, dfltRngWs, *commonData, useSimuData));
|
||||
|
||||
twdFlChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*twdHstry, 'V', 0, dfltRngWd, *commonData, useSimuData));
|
||||
twsFlChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*twsHstry, 'H', 0, dfltRngWs, *commonData, useSimuData));
|
||||
twdHfChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*twdHstry, 'V', 1, dfltRngWd, *commonData, useSimuData));
|
||||
twsHfChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*twsHstry, 'V', 2, dfltRngWs, *commonData, useSimuData));
|
||||
// twdHfChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*twdHstry, 'H', 1, dfltRngWd, *commonData, useSimuData));
|
||||
// twsHfChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*twsHstry, 'H', 2, dfltRngWs, *commonData, useSimuData));
|
||||
// LOG_DEBUG(GwLog::DEBUG, "PageWindPlot: twdHstry: %p, twsHstry: %p", (void*)twdHstry, (void*)twsHstry);
|
||||
}
|
||||
|
||||
@@ -181,10 +182,10 @@ public:
|
||||
auto* awdHstry = pageData.hstryManager->getBuffer("AWD");
|
||||
auto* awsHstry = pageData.hstryManager->getBuffer("AWS");
|
||||
|
||||
awdFlChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*awdHstry, 1, 0, dfltRngWd, *commonData, useSimuData));
|
||||
awsFlChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*awsHstry, 0, 0, dfltRngWs, *commonData, useSimuData));
|
||||
awdHfChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*awdHstry, 1, 1, dfltRngWd, *commonData, useSimuData));
|
||||
awsHfChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*awsHstry, 1, 2, dfltRngWs, *commonData, useSimuData));
|
||||
awdFlChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*awdHstry, 'V', 0, dfltRngWd, *commonData, useSimuData));
|
||||
awsFlChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*awsHstry, 'H', 0, dfltRngWs, *commonData, useSimuData));
|
||||
awdHfChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*awdHstry, 'V', 1, dfltRngWd, *commonData, useSimuData));
|
||||
awsHfChart = std::unique_ptr<Chart<uint16_t>>(new Chart<uint16_t>(*awsHstry, 'V', 2, dfltRngWs, *commonData, useSimuData));
|
||||
}
|
||||
|
||||
// Switch active charts based on showTruW
|
||||
|
||||
Reference in New Issue
Block a user