public void Draw(WinChartViewer viewer) { Mat img = new Mat(imgPath); Mat grayScale = new Mat(img.Rows, img.Cols, MatType.CV_8UC1); grayScale = img.CvtColor(ColorConversionCodes.BGR2GRAY); byte[,] data = new byte[grayScale.Rows, grayScale.Cols]; for (int i = 0; i < grayScale.Rows; i++) { for (int j = 0; j < grayScale.Cols; j++) { data[i, j] = grayScale.At <Byte>(i, j); } } double[] dataX = new double[grayScale.Rows * grayScale.Cols]; double[] dataY = new double[grayScale.Rows * grayScale.Cols]; double[] dataZ = new double[grayScale.Rows * grayScale.Cols]; //GrayValue int SIZE = 0; for (int x = 0; x < grayScale.Rows; x++) { for (int y = 0; y < grayScale.Cols; y++) { dataX[SIZE] = x; dataY[SIZE] = y; dataZ[SIZE] = data[x, y]; SIZE++; } } SurfaceChart c = new SurfaceChart(595, 400); c.setPlotRegion(240, 170, 250, 250, 180); c.setData(dataX, dataY, dataZ); c.setInterpolation(100, 100); c.setViewAngle(elevationAngle, rotationAngle); c.setShadingMode(Chart.RectangularFrame); c.setColorAxis(530, 270, Chart.Left, 200, Chart.Right); c.setWallColor(0x000000); c.setWallGrid(0xffffff, 0xffffff, 0xffffff, 0x888888, 0x888888, 0x888888); c.setWallThickness(0, 0, 0); c.setWallVisibility(true, false, false); c.xAxis().setTitle("Y Axis", "Arial Bold", 15); c.yAxis().setTitle("X Axis", "Arial Bold", 15); c.xAxis().setLabelStyle("Arial", 10); c.yAxis().setLabelStyle("Arial", 10); c.zAxis().setLabelStyle("Arial", 10); c.colorAxis().setLabelStyle("Arial", 10); // Output the chart viewer.Chart = c; }
//Main code for creating charts public void createChart(WinChartViewer viewer, string img) { // The x and y coordinates of the grid double[] dataX = { 0, 0.1, 0.2, 0.3, 0.4, 0.5, 0.6, 0.7, 0.8, 0.9, 1.0 }; double[] dataY = { 0, 0.1, 0.2, 0.3, 0.4, 0.5, 0.6, 0.7, 0.8, 0.9, 1.0 }; // The values at the grid points. In this example, we will compute the // values using the formula z = sin((x - 0.5) * 2 * pi) * sin((y - 0.5) * // 2 * pi) double[] dataZ = new double[(dataX.Length) * (dataY.Length)]; for (int yIndex = 0; yIndex < dataY.Length; ++yIndex) { double y = (dataY[yIndex] - 0.5) * 2 * 3.1416; for (int xIndex = 0; xIndex < dataX.Length; ++xIndex) { double x = (dataX[xIndex] - 0.5) * 2 * 3.1416; dataZ[yIndex * (dataX.Length) + xIndex] = Math.Sin(x) * Math.Sin( y); } } // the perspective level int perspective = int.Parse(img) * 12; // Create a SurfaceChart object of size 360 x 360 pixels, with white // (ffffff) background and grey (888888) border. SurfaceChart c = new SurfaceChart(360, 360, 0xffffff, 0x888888); // Set the perspective level c.setPerspective(perspective); c.addTitle("Perspective = " + perspective); // Set the center of the plot region at (195, 165), and set width x depth // x height to 200 x 200 x 150 pixels c.setPlotRegion(195, 165, 200, 200, 150); // Set the plot region wall thichness to 5 pixels c.setWallThickness(5); // Set the elevation and rotation angles to 30 and 30 degrees c.setViewAngle(30, 30); // Set the data to use to plot the chart c.setData(dataX, dataY, dataZ); // Spline interpolate data to a 40 x 40 grid for a smooth surface c.setInterpolation(40, 40); // Use smooth gradient coloring. c.colorAxis().setColorGradient(); // Output the chart viewer.Image = c.makeImage(); }
// // Create chart // private void createChart(RazorChartViewer viewer) { // The x and y coordinates of the grid DateTime[] dataX = { new DateTime(2008, 9, 1), new DateTime(2008, 9, 2), new DateTime(2008, 9, 3), new DateTime(2008, 9, 4), new DateTime(2008, 9, 5), new DateTime(2008,9, 6) }; string[] dataY = { "Low", "Medium", "High" }; // The data series double[] lowData = { 24, 38, 33, 25, 28, 36 }; double[] mediumData = { 49, 42, 34, 47, 53, 50 }; double[] highData = { 44, 51, 38, 33, 47, 42 }; // Create a SurfaceChart object of size 760 x 500 pixels SurfaceChart c = new SurfaceChart(760, 500); // Add a title to the chart using 18 points Arial font c.addTitle("Surface Chart Axis Types", "Arial", 18); // Set the center of the plot region at (385, 240), and set width x depth x height to 480 x // 240 x 240 pixels c.setPlotRegion(385, 240, 480, 240, 240); // Set the elevation and rotation angles to 30 and -10 degrees c.setViewAngle(30, -10); // Set the data to use to plot the chart. As the y-data are text strings (enumerated), we // will use an empty array for the y-coordinates. For the z data series, they are just the // concatenation of the individual data series. c.setData(Chart.CTime(dataX), null, new ArrayMath(lowData).insert(mediumData).insert(highData ).result()); // Set the y-axis labels c.yAxis().setLabels(dataY); // Set x-axis tick density to 75 pixels. ChartDirector auto-scaling will use this as the // guideline when putting ticks on the x-axis. c.xAxis().setTickDensity(75); // Spline interpolate data to a 80 x 40 grid for a smooth surface c.setInterpolation(80, 40); // Set surface grid lines to semi-transparent black (cc000000). c.setSurfaceAxisGrid(unchecked ((int)0xcc000000)); // Set contour lines to the same color as the fill color at the contour level c.setContourColor(Chart.SameAsMainColor); // Add a color axis (the legend) in which the top right corner is anchored at (95, 100). Set // the length to 160 pixels and the labels on the left side. ColorAxis cAxis = c.setColorAxis(95, 100, Chart.TopRight, 160, Chart.Left); // Add a bounding box with light grey (eeeeee) background and grey (888888) border. cAxis.setBoundingBox(0xeeeeee, 0x888888); // Set label style to Arial bold for all axes c.xAxis().setLabelStyle("Arial Bold"); c.yAxis().setLabelStyle("Arial Bold"); c.zAxis().setLabelStyle("Arial Bold"); c.colorAxis().setLabelStyle("Arial Bold"); // Set the x, y and z axis titles using deep blue (000088) 15 points Arial font c.xAxis().setTitle("Date/Time Axis", "Arial Italic", 15, 0x000088); c.yAxis().setTitle("Label\nBased\nAxis", "Arial Italic", 15, 0x000088); c.zAxis().setTitle("Numeric Axis", "Arial Italic", 15, 0x000088); // Output the chart viewer.Image = c.makeWebImage(Chart.JPG); }
public void drawChart(WinChartViewer viewer) { if (openFileFlag == false) { if (openFileDialog1.ShowDialog() == System.Windows.Forms.DialogResult.OK) { openFileFlag = true; string filename = openFileDialog1.FileName; dt1 = GetDataTableFromCsv(filename, false); } } double[] xData = new double[dt1.Rows.Count * dt1.Columns.Count]; double[] yData = new double[dt1.Rows.Count * dt1.Columns.Count]; double[] zData = new double[dt1.Rows.Count * dt1.Columns.Count]; int temp = 0; for (int x = 0; x < dt1.Rows.Count; x++) { for (int y = 0; y < dt1.Columns.Count; y++) { xData[temp] = x; yData[temp] = y; zData[temp] = Convert.ToInt64(dt1.Rows[x][y]); temp += 1; } } c = null; // Create a SurfaceChart object of size 720 x 600 pixels c = new SurfaceChart(720, 600); // Set the center of the plot region at (330, 290), //and set width x depth x height to // 360 x 360 x 270 pixels c.setPlotRegion(330, 290, 360, 360, 270); // Set the data to use to plot the chart c.setData(xData, yData, zData); // Spline interpolate data to a 80 x 80 grid for a smooth surface c.setInterpolation(80, 80); // Set the view angles c.setViewAngle(elevationAngle, rotationAngle); // Check if draw frame only during rotation if (isDragging && DrawFrameOnRotate.Checked) { c.setShadingMode(Chart.RectangularFrame); } // Add a color axis (the legend) in which the left center is anchored //at (650, 270). Set the length to 200 pixels and the labels on the //right side. c.setColorAxis(650, 270, Chart.Left, 200, Chart.Right); // Set the x, y and z axis titles using 10 points Arial Bold font c.xAxis().setTitle("X", "Arial Bold", 15); c.yAxis().setTitle("Y", "Arial Bold", 15); // Set axis label font c.xAxis().setLabelStyle("Arial", 10); c.yAxis().setLabelStyle("Arial", 10); c.zAxis().setLabelStyle("Arial", 10); c.colorAxis().setLabelStyle("Arial", 10); // Output the chart viewer.Chart = c; }
public void drawChart(WinChartViewer viewer) { var pDocument = CDocument.GetDocument; CInspectionResult.CResult objResult = pDocument.GetInspectionResultAlign(m_iPositionInspection); do { double[,] objData = { { 0, 0 }, { 0, 0 } }; try { if (enumImageType.IMAGE_ORIGIN == m_eImageType) { if (null != objResult.objResultCommon.obj3DDataHeightCrop2d) { objData = objResult.objResultCommon.obj3DDataHeightCrop2d; } } else { if (null != objResult.objResultCommon.obj3DResultHeightData && m_iPositionCrop < objResult.objResultCommon.obj3DResultHeightData.Count) { objData = objResult.objResultCommon.obj3DResultHeightData[m_iPositionCrop]; } } double[] xData = new double[objData.GetLength(0) * objData.GetLength(1)]; double[] yData = new double[objData.GetLength(0) * objData.GetLength(1)]; double[] zData = new double[objData.GetLength(0) * objData.GetLength(1)]; int temp = 0; // for( int x = 0; x < objData.GetLength( 1 ); x++ ) { // for( int y = 0; y < objData.GetLength( 0 ); y++ ) { // xData[ temp ] = x; // yData[ temp ] = y; // zData[ temp ] = objData[ y, x ]; // temp += 1; // } // } int iX = 0, iY = 0; for (int x = objData.GetLength(1) - 1; x >= 0; x--) { iY = 0; for (int y = objData.GetLength(0) - 1; y >= 0; y--) { //for( int y = 0; y < objData.GetLength( 0 ); y++ ) { xData[temp] = x; yData[temp] = y; zData[temp] = objData[iY, x]; if (enumImageType.IMAGE_CROP == m_eImageType) { if (-1 < objData[iY, x]) { zData[temp] = objData[iY, x]; } else { zData[temp] = -1; } } temp += 1; iY++; } iX++; } zData[0] = 0.5; zData[1] = -0.5; c = null; // Create a SurfaceChart object of size 720 x 600 pixels c = new SurfaceChart(1082, 698); // Set the center of the plot region at (330, 290), //and set width x depth x height to // 360 x 360 x 270 pixels c.setPlotRegion(1082 / 2, 698 / 2, 700, 400, 400); // Set the data to use to plot the chart c.setData(xData, yData, zData); // Spline interpolate data to a 80 x 80 grid for a smooth surface c.setInterpolation(150, 150); // Set the view angles c.setViewAngle(elevationAngle, rotationAngle); // Check if draw frame only during rotation if (isDragging && true /*DrawFrameOnRotate.Checked*/) { c.setShadingMode(Chart.RectangularFrame); } // Add a color axis (the legend) in which the left center is anchored //at (650, 270). Set the length to 200 pixels and the labels on the //right side. c.setColorAxis(1000, 270, Chart.Left, 200, Chart.Right); // Set the x, y and z axis titles using 10 points Arial Bold font c.xAxis().setTitle("X", "Arial Bold", 15); c.yAxis().setTitle("Y", "Arial Bold", 15); // Set axis label font c.xAxis().setLabelStyle("Arial", 10); c.yAxis().setLabelStyle("Arial", 10); c.zAxis().setLabelStyle("Arial", 10); c.colorAxis().setLabelStyle("Arial", 10); // Output the chart viewer.Chart = c; } catch (Exception ex) { pDocument.SetUpdateLog(CDefine.enumLogType.LOG_VISION_EXCEPTION_CAMERA_0, "Draw Chart : " + ex.ToString()); } } while(false); }