Buffer and interval stuff
This commit is contained in:
parent
bd9741d851
commit
73656e7d14
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@ -36,6 +36,8 @@ public:
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void add(int value)
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void add(int value)
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// Add a new value; store in [0..360 deg] format
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// Add a new value; store in [0..360 deg] format
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{
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{
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if (value < 0 || value > 360)
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value = INT_MIN;
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buffer[head] = value;
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buffer[head] = value;
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last = head;
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last = head;
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head = (head + 1) % SIZE;
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head = (head + 1) % SIZE;
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@ -43,6 +45,8 @@ public:
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count++;
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count++;
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} else {
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} else {
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first = head - 1; // When buffer is full, first points to the oldest value
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first = head - 1; // When buffer is full, first points to the oldest value
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if (first < 0)
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first += SIZE;
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}
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}
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}
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}
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@ -193,13 +197,13 @@ public:
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}
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}
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} */
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} */
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int getMid() const
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int getMid(int amount) const
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// Get middle value in the buffer
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// Get middle value in the buffer
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{
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{
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if (count == 0) {
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if (count == 0) {
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return -1; // Buffer is empty
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return -1; // Buffer is empty
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}
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}
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return (getMin() + getMax()) / 2;
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return (getMin(amount) + getMax(amount)) / 2;
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}
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}
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int getRng(int center, int amount) const
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int getRng(int center, int amount) const
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@ -218,12 +222,12 @@ public:
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return rng;
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return rng;
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}
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}
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void mvStart(int start)
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void mvStart(int delta)
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// Move the start index of buffer forward by <start> positions
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// Move the start index of buffer forward by <delta> positions -> virtually delete oldest <delta> data entries
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{
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{
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first = (first + start) % SIZE;
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first = (first + delta) % SIZE;
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if (count > start)
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if (count > delta)
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count -= start;
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count -= delta;
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else
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else
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count = 0;
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count = 0;
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if (first == 0)
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if (first == 0)
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@ -330,6 +334,8 @@ public:
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String dataUnit[numCfgValues];
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String dataUnit[numCfgValues];
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String dataSValueOld[numCfgValues];
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String dataSValueOld[numCfgValues];
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String dataUnitOld[numCfgValues];
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String dataUnitOld[numCfgValues];
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int twdValue;
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bool wndDataValid = false; // Flag to indicate if wind data is valid
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bool wndDataValid = false; // Flag to indicate if wind data is valid
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bool simulation = false;
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bool simulation = false;
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bool holdValues = false;
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bool holdValues = false;
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@ -339,9 +345,12 @@ public:
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int xCenter = width / 2; // Center of screen in x direction
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int xCenter = width / 2; // Center of screen in x direction
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static const int yOffset = 48; // Offset for y coordinates of chart area
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static const int yOffset = 48; // Offset for y coordinates of chart area
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int cHeight = height - yOffset - 22; // height of chart area
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int cHeight = height - yOffset - 22; // height of chart area
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static int bufSize = cHeight * 4; // Buffer size: 920 values for appox. 16 min. history chart
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int bufSize = cHeight * 4; // Buffer size: 920 values for appox. 16 min. history chart
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int intvBufSize; // Buffer size currently used for user selected time interval
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int intvBufSize; // Buffer size used for currently selected time interval
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int count; // current size of buffer
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int count; // current size of buffer
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int numWndValues; // number of wind values available for current interval selection
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static int linesToShow; // current number of lines to display on chart
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static int bufStart; // 1st data value in buffer to show
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static const float radToDeg = 180.0 / M_PI; // Conversion factor from radians to degrees
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static const float radToDeg = 180.0 / M_PI; // Conversion factor from radians to degrees
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static int wndCenter = INT_MIN; // chart wind center value position; init value indicates that wndCenter is not set yet
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static int wndCenter = INT_MIN; // chart wind center value position; init value indicates that wndCenter is not set yet
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@ -349,7 +358,6 @@ public:
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static int wndRight; // chart wind right value position
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static int wndRight; // chart wind right value position
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static int chrtRng; // Range of wind values from mid wind value to min/max wind value in degrees
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static int chrtRng; // Range of wind values from mid wind value to min/max wind value in degrees
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int diffRng; // Difference between mid and current wind value
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int diffRng; // Difference between mid and current wind value
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bool rngFlipped = false; // Flag to indicate if range exceeds 180 degrees
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static int simWnd = 0; // Simulation value for wind data
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static int simWnd = 0; // Simulation value for wind data
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static float simTWS = 0; // Simulation value for TWS data
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static float simTWS = 0; // Simulation value for TWS data
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static const int simStep = 10; // Simulation step for wind data
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static const int simStep = 10; // Simulation step for wind data
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@ -359,7 +367,6 @@ public:
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static float chrtScl; // Scale for wind values in pixels per degree
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static float chrtScl; // Scale for wind values in pixels per degree
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int chrtVal; // Current wind value
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int chrtVal; // Current wind value
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static int chrtPrevVal; // Last wind value in chart area for check if value crosses 180 degree line
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static int chrtPrevVal; // Last wind value in chart area for check if value crosses 180 degree line
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int numWndValues; // number of wind values available for current interval selection
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LOG_DEBUG(GwLog::LOG, "Display page WindPlot");
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LOG_DEBUG(GwLog::LOG, "Display page WindPlot");
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@ -368,6 +375,10 @@ public:
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logger->logDebug(GwLog::ERROR, "Failed to initialize wind direction history buffer");
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logger->logDebug(GwLog::ERROR, "Failed to initialize wind direction history buffer");
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return;
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return;
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}
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}
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bufStart = 0;
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simWnd = 0;
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simTWS = 0;
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twdValue = 0;
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}
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}
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// Get config data
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// Get config data
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@ -378,10 +389,12 @@ public:
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String backlightMode = config->getString(config->backlight);
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String backlightMode = config->getString(config->backlight);
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// Read boatdata values for TWD, TWA, TWS, HDM, AWA, AWS, STW, if available
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// Read boatdata values for TWD, TWA, TWS, HDM, AWA, AWS, STW, if available
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// Read boatdata values for TWD, TWA, TWS, HDM, AWA, AWS, STW, COG, SOG, if available
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for (int i = 0; i < numCfgValues; i++) {
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for (int i = 0; i < numCfgValues; i++) {
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bvalue = pageData.values[i];
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bvalue = pageData.values[i];
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dataName[i] = xdrDelete(bvalue->getName());
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dataName[i] = xdrDelete(bvalue->getName());
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dataName[i] = dataName[i].substring(0, 6); // String length limit for value name
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dataName[i] = dataName[i].substring(0, 6); // String length limit for value name
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calibrationData.calibrateInstance(dataName[i], bvalue, logger); // Check if boat data value is to be calibrated
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dataValue[i] = bvalue->value; // Value as double in SI unit
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dataValue[i] = bvalue->value; // Value as double in SI unit
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calibrationData.calibrateInstance(dataName[i], bvalue, logger); // Check if boat data value is to be calibrated
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calibrationData.calibrateInstance(dataName[i], bvalue, logger); // Check if boat data value is to be calibrated
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dataValid[i] = bvalue->valid;
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dataValid[i] = bvalue->valid;
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@ -393,10 +406,9 @@ public:
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}
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}
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}
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}
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// Store TWD wind value in buffer
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// Store TWD wind value in buffer, regardless of validity -> one value per second (if delivered in that frequency)
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int twdValue = 0;
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twdValue = int((dataValue[0] * radToDeg) + 0.5); // Read TWD value in degrees and round to integer
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if (dataValid[0]) { // TWD data existing
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if (dataValid[0]) { // TWD data existing
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twdValue = int((dataValue[0] * radToDeg) + 0.5); // Read TWD value in degrees and round to integer
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wndDataValid = true;
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wndDataValid = true;
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} else {
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} else {
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// Try to calculate TWD value from other data, if available
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// Try to calculate TWD value from other data, if available
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@ -415,10 +427,16 @@ public:
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windDirHstry.add(twdValue);
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windDirHstry.add(twdValue);
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}
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}
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intvBufSize = cHeight * dataInterv; // Get buffer size for current interval selection
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intvBufSize = cHeight * dataInterv;
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count = windDirHstry.getSize();
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count = windDirHstry.getSize();
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numWndValues = min(count, intvBufSize);
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numWndValues = min(count, intvBufSize);
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LOG_DEBUG(GwLog::ERROR, "PageWindPlot: User Interval: %d, intvBufSize: %d, count: %d, TWD: %d", dataInterv, intvBufSize, count, twdValue);
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if (numWndValues / dataInterv < cHeight) {
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linesToShow = numWndValues / dataInterv;
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} else {
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linesToShow++;
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}
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LOG_DEBUG(GwLog::ERROR, "PageWindPlot: User Interval: %d, intvBufSize: %d, count: %d, numWndValues: %d, TWD: %d", dataInterv, intvBufSize, count, numWndValues, twdValue);
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// Optical warning by limit violation (unused)
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// Optical warning by limit violation (unused)
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if (String(flashLED) == "Limit Violation") {
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if (String(flashLED) == "Limit Violation") {
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@ -434,10 +452,10 @@ public:
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// initialize chart range values
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// initialize chart range values
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if (wndCenter == INT_MIN) {
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if (wndCenter == INT_MIN) {
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wndCenter = windDirHstry.get(count - intvBufSize < 0 ? 0 : count - intvBufSize);
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wndCenter = windDirHstry.get(max(0, numWndValues - intvBufSize)); // get 1st value of current data interval
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wndCenter = int((wndCenter + (wndCenter >= 0 ? 5 : -5)) / 10) * 10; // Set new center value; round to nearest 10 degree value
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wndCenter = int((wndCenter + (wndCenter >= 0 ? 5 : -5)) / 10) * 10; // Set new center value; round to nearest 10 degree value
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diffRng = 30;
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diffRng = 40;
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chrtRng = 30;
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chrtRng = 40;
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LOG_DEBUG(GwLog::DEBUG, "PageWindPlot initialized. wndCenter: %d, chrtRng: %d ", wndCenter, chrtRng);
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LOG_DEBUG(GwLog::DEBUG, "PageWindPlot initialized. wndCenter: %d, chrtRng: %d ", wndCenter, chrtRng);
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} else {
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} else {
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@ -450,7 +468,9 @@ public:
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}
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}
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LOG_DEBUG(GwLog::DEBUG, "PageWindPlot range adjusted. wndCenter: %d, chrtRng: %d ", wndCenter, chrtRng);
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LOG_DEBUG(GwLog::DEBUG, "PageWindPlot range adjusted. wndCenter: %d, chrtRng: %d ", wndCenter, chrtRng);
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}
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}
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chrtScl = float(width) / float(chrtRng) / 2.0; // chart scale: pixels per degree
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chrtScl = float(width) / float(chrtRng) / 2.0; // Chart scale: pixels per degree
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// wndCenter = windDirHstry.get(max(0, numWndValues - intvBufSize)); // Get 1st value of current data interval
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// wndCenter = int((wndCenter + (wndCenter >= 0 ? 5 : -5)) / 10) * 10; // Round to nearest 10 degree value
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wndLeft = wndCenter - chrtRng;
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wndLeft = wndCenter - chrtRng;
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if (wndLeft < 0)
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if (wndLeft < 0)
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wndLeft += 360;
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wndLeft += 360;
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@ -498,26 +518,28 @@ public:
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// Draw wind values in chart
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// Draw wind values in chart
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//***********************************************************
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//***********************************************************
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if (wndDataValid || holdValues || simulation) {
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if (wndDataValid || holdValues || simulation) {
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int threshold = 90;
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for (int i = 0; i < linesToShow; i++) {
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chrtVal = windDirHstry.get(bufStart + (i * dataInterv)); // show the latest wind values in buffer
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// if (i < 12)
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// LOG_DEBUG(GwLog::ERROR, "PageWindPlot Draw: i: %d, numWndValues: %d, chrtVal: %d, count: %d", i, numWndValues, chrtVal, count);
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if (chrtVal<> INT_MIN) { // value has valid data
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x = ((chrtVal - wndLeft + 360) % 360) * chrtScl;
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y = yOffset + cHeight - i; // Position in chart area
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if (i > linesToShow - 20)
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LOG_DEBUG(GwLog::ERROR, "PageWindPlot Chart: i: %d, y; %d, linesToShow; %d, chrtVal: %d, chrtPrevVal: %d, bufStart: %d", i, y, linesToShow, chrtVal, chrtPrevVal, bufStart);
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for (int i = 0; i < numWndValues; i++) {
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if (i == 0) {
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chrtVal = windDirHstry.get(count - numWndValues + (i * dataInterv));
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prevX = x; // just a dot for 1st chart point
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if (i < 12)
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prevY = y;
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LOG_DEBUG(GwLog::ERROR, "PageWindPlot Draw: i: %d, numWndValues: %d, chrtVal: %d, count: %d", i, numWndValues, chrtVal, count);
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// } else if ((((chrtPrevVal >= wndLeft) && (chrtVal < wndLeft)) && ((chrtPrevVal <= 0) && (chrtVal >= 0))) || (((chrtPrevVal <= wndRight) && (chrtVal > wndRight)) && ((chrtPrevVal >= 0) && (chrtVal <= 0)))) {
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x = ((chrtVal - wndLeft + 360) % 360) * chrtScl;
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} else if ((((chrtPrevVal >= wndLeft) && (chrtVal < wndLeft)) && (abs(chrtPrevVal - chrtVal) > 0)) || (((chrtPrevVal <= wndRight) && (chrtVal > wndRight)) && (abs(chrtPrevVal - chrtVal) > 0))) {
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y = yOffset + cHeight - i; // Position in chart area
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if (i == 0) { // just a dot for 1st chart point
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prevX = x;
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prevY = y;
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} else if (((chrtPrevVal >= wndLeft) && (chrtVal <= wndLeft)) || ((chrtPrevVal <= wndRight) && (chrtVal >= wndRight))) {
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// if (!((chrtPrevVal > 180) && (chrtVal < 180)) || ((chrtPrevVal < 180) && (chrtVal > 180))) {
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if (!((chrtPrevVal >= 360 - threshold) && (chrtVal < threshold)) || ((chrtPrevVal < threshold) && (chrtVal >= 360 - threshold))) {
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// If current value crosses chart edges, compared to previous value, and does not cross "0" line, draw a dot only, no line
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// If current value crosses chart edges, compared to previous value, and does not cross "0" line, draw a dot only, no line
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prevX = x; // don't print connecting line to previous value
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prevX = x; // don't print connecting line to previous value
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prevY = y;
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prevY = y;
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LOG_DEBUG(GwLog::ERROR, "PageWindPlot Chart: chrtVal: %d, chrtPrevVal: %d, 0-Crossing: %d", chrtVal, chrtPrevVal, ((chrtPrevVal > 180 && chrtVal < 180) || (chrtPrevVal < 180 && chrtVal > 180)));
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// LOG_DEBUG(GwLog::ERROR, "PageWindPlot Chart: chrtVal: %d, chrtPrevVal: %d, 0-Crossing: %d", chrtVal, chrtPrevVal, ((chrtPrevVal > 180 && chrtVal < 180) || (chrtPrevVal < 180 && chrtVal > 180)));
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}
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}
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} else { // invalid data -> print 'invisible' dot
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x, y, prevX, prevY = 0; // -> to be corrected for next dot !!!!!!!!!!!!!!!!!!!!!!!!!!!!
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}
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}
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// Draw line with 2 pixels width + make sure vertical line are drawn correctly
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// Draw line with 2 pixels width + make sure vertical line are drawn correctly
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prevX = x;
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prevX = x;
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prevY = y;
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prevY = y;
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if (i == (cHeight - 1)) { // Reaching chart area top end
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if (i == (cHeight - 1)) { // Reaching chart area top end ()
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windDirHstry.mvStart(40); // virtually delete 40 values from buffer
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linesToShow -= 40; // free top 40 lines of chart for new values
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bufStart = count - (linesToShow * dataInterv); // next start value in buffer to show
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// windDirHstry.mvStart(); // virtually delete 40 values from buffer
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if ((windDirHstry.getMin(numWndValues) > wndCenter) || (windDirHstry.getMax(numWndValues) < wndCenter)) {
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if ((windDirHstry.getMin(numWndValues) > wndCenter) || (windDirHstry.getMax(numWndValues) < wndCenter)) {
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// Check if all wind value are left or right of center value -> optimize chart range
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// Check if all wind value are left or right of center value -> optimize chart range
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int mid = windDirHstry.getMid();
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int mid = windDirHstry.getMid(numWndValues);
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wndCenter = int((mid + (mid >= 0 ? 5 : -5)) / 10) * 10; // Set new center value; round to nearest 10 degree value
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wndCenter = int((mid + (mid >= 0 ? 5 : -5)) / 10) * 10; // Set new center value; round to nearest 10 degree value
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rngFlipped = false; // chart value within standard 180 degree range
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}
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}
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LOG_DEBUG(GwLog::ERROR, "PageWindPlot FreeTop: cHeight: %d, LinesToShow: %d, numWndValues: %d, wndCenter: %d", cHeight, linesToShow, numWndValues, wndCenter);
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break;
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break;
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}
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}
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}
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}
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LOG_DEBUG(GwLog::DEBUG, "PageWindPlot chart end: chrtVal: %d, x: %d, y: %d prevX: %d, prevY: %d, loop-Counter: %d", chrtVal, x, y, prevX, prevY, count);
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LOG_DEBUG(GwLog::DEBUG, "PageWindPlot chart end: chrtVal: %d, x: %d, y: %d prevX: %d, prevY: %d, loop-Counter: %d", chrtVal, x, y, prevX, prevY, count);
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} else if (!wndDataValid) {
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} else if (!wndDataValid) {
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// No valid data available
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// No valid data available
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LOG_DEBUG(GwLog::LOG, "PageWindPlot: No valid data available");
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LOG_DEBUG(GwLog::LOG, "PageWindPlot: No valid data available");
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// Print TWS value
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// Print TWS value
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if (showTWS) {
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if (showTWS) {
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static bool flipTws = false;
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static bool flipTws = false;
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static int lastZone = -1;
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static int lastZone = 0;
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int xPosTws = flipTws ? 30 : width - 145;
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int xPosTws = flipTws ? 30 : width - 145;
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static const int yPosTws = yOffset + 40;
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static const int yPosTws = yOffset + 40;
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