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DynamicJasper (DJ) is an API that hides the complexity of Jasper Reports, it helps developers to save time when designing simple/medium complexity reports generating the layout of the report elements automatically. It creates reports dynamically, defining at runtime the columns, column width (auto width), groups, variables, fonts, charts, crosstabs, sub reports (that can also be dynamic), page size and everything else that you can define at design time. DJ keeps full compatibility with Jasper Reports since it's a tool that helps create reports programmatically in a easy way (it only interferes with the creation of the report design doing the layout of the elements). You can use the classic .jrxml files as templates while the content and layout of the report elements are handled by the DJ API. http://dynamicjasper.com

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/*
 * DynamicJasper: A library for creating reports dynamically by specifying
 * columns, groups, styles, etc. at runtime. It also saves a lot of development
 * time in many cases! (http://sourceforge.net/projects/dynamicjasper)
 *
 * Copyright (C) 2008  FDV Solutions (http://www.fdvsolutions.com)
 *
 * This library is free software; you can redistribute it and/or
 * modify it under the terms of the GNU Lesser General Public
 *
 * License as published by the Free Software Foundation; either
 *
 * version 2.1 of the License, or (at your option) any later version.
 *
 * This library is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 *
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 *
 * Lesser General Public License for more details.
 *
 * You should have received a copy of the GNU Lesser General Public
 * License along with this library; if not, write to the Free Software
 *
 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA  02110-1301  USA
 *
 *
 */

package ar.com.fdvs.dj.domain.chart.plot;

import ar.com.fdvs.dj.domain.CustomExpression;
import ar.com.fdvs.dj.domain.DynamicJasperDesign;
import ar.com.fdvs.dj.domain.StringExpression;
import ar.com.fdvs.dj.domain.entities.Entity;
import ar.com.fdvs.dj.util.ExpressionUtils;
import net.sf.jasperreports.charts.design.JRDesignScatterPlot;
import net.sf.jasperreports.engine.JRChartPlot;
import net.sf.jasperreports.engine.design.JRDesignExpression;

public class ScatterPlot extends AbstractPlot {
	private static final long serialVersionUID = Entity.SERIAL_VERSION_UID;
	private DJAxisFormat xAxisFormat = new DJAxisFormat();
	private DJAxisFormat yAxisFormat = new DJAxisFormat();
	private Boolean showShapes = null;
	private Boolean showLines = null;
	
	/**
	 * Sets the shapes visibility.
	 *
	 * @param showShapes the shapes visibility
	 **/
	public void setShowShapes(Boolean showShapes) {
		this.showShapes = showShapes;
	}

	/**
	 * Returns the shapes visibility.
	 *
	 * @return the shapes visibility
	 **/
	public Boolean getShowShapes() {
		return showShapes;
	}

	/**
	 * Sets the lines visibility.
	 *
	 * @param showLines the lines visibility
	 **/
	public void setShowLines(Boolean showLines) {
		this.showLines = showLines;
	}

	/**
	 * Returns the lines visibility.
	 *
	 * @return the lines visibility
	 **/
	public Boolean getShowLines() {
		return showLines;
	}
	
	/**
	 * Sets the x axis format.
	 *
	 * @param xAxisFormat the x axis format
	 **/
	public void setXAxisFormat(DJAxisFormat xAxisFormat) {
		this.xAxisFormat = xAxisFormat;
	}

	/**
	 * Returns the x axis format.
	 *
	 * @return the x axis format
	 **/
	public DJAxisFormat getXAxisFormat() {
		return xAxisFormat;
	}

	/**
	 * Sets the y axis format.
	 *
	 * @param yAxisFormat the y axis format
	 **/
	public void setYAxisFormat(DJAxisFormat yAxisFormat) {
		this.yAxisFormat = yAxisFormat;
	}

	/**
	 * Returns the y axis format.
	 *
	 * @return the y axis format
	 **/
	public DJAxisFormat getYAxisFormat() {
		return yAxisFormat;
	}
	
	public void transform(DynamicJasperDesign design, JRChartPlot plot, String name) {
		super.transform(design, plot, name);
		JRDesignScatterPlot scatterPlot = (JRDesignScatterPlot) plot;
		
		StringExpression xAxisLabelExp = getXAxisFormat().getLabelExpression();
		if (xAxisLabelExp != null) {
			JRDesignExpression exp = ExpressionUtils.createAndRegisterExpression(design, "xAxisLabel_" + name, xAxisLabelExp);
			scatterPlot.setXAxisLabelExpression(exp);
		}
		if (xAxisFormat.getTickLabelMask() != null) 
			scatterPlot.setXAxisTickLabelMask(xAxisFormat.getTickLabelMask());	
		if (xAxisFormat.getLabelColor() != null)
			scatterPlot.setXAxisLabelColor(xAxisFormat.getLabelColor());
		if (xAxisFormat.getLabelFont() != null)
			scatterPlot.setXAxisLabelFont(xAxisFormat.getLabelFont().transform());
		if (xAxisFormat.getLineColor() != null)
			scatterPlot.setXAxisLineColor(xAxisFormat.getLineColor());		
		if (xAxisFormat.getTickLabelColor() != null)
			scatterPlot.setXAxisTickLabelColor(xAxisFormat.getTickLabelColor());
		if (xAxisFormat.getTickLabelFont() != null)
			scatterPlot.setXAxisTickLabelFont(xAxisFormat.getTickLabelFont().transform());
		CustomExpression xAxisRangeMinValueExp = getXAxisFormat().getRangeMinValueExpression();
		if (xAxisRangeMinValueExp != null) {
			JRDesignExpression exp = ExpressionUtils.createAndRegisterExpression(design, "xAxisRangeMinValue_" + name, xAxisRangeMinValueExp);
			scatterPlot.setDomainAxisMinValueExpression(exp);
		}
		CustomExpression xAxisRangeMaxValueExp = getXAxisFormat().getRangeMaxValueExpression();
		if (xAxisRangeMaxValueExp != null) {
			JRDesignExpression exp = ExpressionUtils.createAndRegisterExpression(design, "xAxisRangeMaxValue_" + name, xAxisRangeMaxValueExp);
			scatterPlot.setDomainAxisMaxValueExpression(exp);
		}
		
		StringExpression yAxisLabelExp = getYAxisFormat().getLabelExpression();
		if (yAxisLabelExp != null) {
			JRDesignExpression exp = ExpressionUtils.createAndRegisterExpression(design, "yAxisLabel_" + name, yAxisLabelExp);
			scatterPlot.setYAxisLabelExpression(exp);
		}
		if (yAxisFormat.getTickLabelMask() != null) 
			scatterPlot.setYAxisTickLabelMask(yAxisFormat.getTickLabelMask());	
		if (yAxisFormat.getLabelColor() != null)
			scatterPlot.setYAxisLabelColor(yAxisFormat.getLabelColor());
		if (yAxisFormat.getLabelFont() != null)
			scatterPlot.setYAxisLabelFont(yAxisFormat.getLabelFont().transform());
		if (yAxisFormat.getLineColor() != null)
			scatterPlot.setYAxisLineColor(yAxisFormat.getLineColor());		
		if (yAxisFormat.getTickLabelColor() != null)
			scatterPlot.setYAxisTickLabelColor(yAxisFormat.getTickLabelColor());
		if (yAxisFormat.getTickLabelFont() != null)
			scatterPlot.setYAxisTickLabelFont(yAxisFormat.getTickLabelFont().transform());
		CustomExpression yAxisRangeMinValueExp = getYAxisFormat().getRangeMinValueExpression();
		if (yAxisRangeMinValueExp != null) {
			JRDesignExpression exp = ExpressionUtils.createAndRegisterExpression(design, "yAxisRangeMinValue_" + name, yAxisRangeMinValueExp);
			scatterPlot.setRangeAxisMinValueExpression(exp);
		}
		CustomExpression yAxisRangeMaxValueExp = getYAxisFormat().getRangeMaxValueExpression();
		if (yAxisRangeMaxValueExp != null) {
			JRDesignExpression exp = ExpressionUtils.createAndRegisterExpression(design, "yAxisRangeMaxValue_" + name, yAxisRangeMaxValueExp);
			scatterPlot.setRangeAxisMaxValueExpression(exp);
		}
		
		if (showShapes != null)
			scatterPlot.setShowShapes(showShapes);
		if (showLines != null)
			scatterPlot.setShowLines(showLines);
	}
}




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