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package org.jungrapht.samples.sugiyama;
import java.awt.BorderLayout;
import java.awt.Color;
import java.awt.Dimension;
import java.awt.Font;
import java.awt.FontMetrics;
import java.awt.Graphics;
import java.awt.event.ItemEvent;
import java.util.stream.IntStream;
import javax.swing.*;
import org.jgrapht.Graph;
import org.jgrapht.graph.builder.GraphTypeBuilder;
import org.jgrapht.util.SupplierUtil;
import org.jungrapht.samples.util.ControlHelpers;
import org.jungrapht.samples.util.LayeringConfiguration;
import org.jungrapht.visualization.VisualizationViewer;
import org.jungrapht.visualization.decorators.EdgeShape;
import org.jungrapht.visualization.layout.algorithms.SugiyamaLayoutAlgorithm;
import org.jungrapht.visualization.layout.algorithms.sugiyama.Layering;
import org.jungrapht.visualization.renderers.Renderer;
import org.slf4j.Logger;
import org.slf4j.LoggerFactory;
/**
* Demonstrates 4 layering algorithms with the SugiyamaLayoutAlgoithm
*
* @author Tom Nelson
*/
public class SugiyamaLayeringOptions extends JFrame {
private static final Logger log = LoggerFactory.getLogger(SugiyamaLayeringOptions.class);
public SugiyamaLayeringOptions() {
JPanel container = new JPanel(new BorderLayout());
Graph graph = createInitialGraph();
VisualizationViewer vv3 = configureVisualizationViewer(graph);
vv3.getRenderContext().setEdgeLabelFunction(Object::toString);
LayeringConfiguration layeringConfiguration = new LayeringConfiguration();
layeringConfiguration.addItemListener(
e -> {
if (e.getStateChange() == ItemEvent.SELECTED) {
SugiyamaLayoutAlgorithm layoutAlgorithm =
SugiyamaLayoutAlgorithm.edgeAwareBuilder()
.postStraighten(true)
.threaded(false)
.layering((Layering) e.getItem())
.build();
layoutAlgorithm.setVertexBoundsFunction(
vv3.getRenderContext().getVertexBoundsFunction());
vv3.getVisualizationModel().setLayoutAlgorithm(layoutAlgorithm);
}
});
SugiyamaLayoutAlgorithm layoutAlgorithm3 =
SugiyamaLayoutAlgorithm.edgeAwareBuilder()
.postStraighten(true)
.threaded(false)
.layering(layeringConfiguration.getLayeringPreference())
.build();
layoutAlgorithm3.setVertexBoundsFunction(vv3.getRenderContext().getVertexBoundsFunction());
vv3.getVisualizationModel().setLayoutAlgorithm(layoutAlgorithm3);
container.add(vv3.getComponent());
setDefaultCloseOperation(WindowConstants.EXIT_ON_CLOSE);
add(
ControlHelpers.getCenteredContainer("Layering Style", layeringConfiguration),
BorderLayout.SOUTH);
add(container);
pack();
setVisible(true);
}
private VisualizationViewer configureVisualizationViewer(
Graph graph) {
VisualizationViewer vv =
VisualizationViewer.builder(graph)
.layoutSize(new Dimension(600, 600))
.viewSize(new Dimension(700, 500))
.build();
vv.getRenderContext().setEdgeShapeFunction(EdgeShape.line());
vv.setVertexToolTipFunction(Object::toString);
vv.getRenderContext().setArrowFillPaintFunction(n -> Color.lightGray);
vv.getRenderContext().setVertexLabelPosition(Renderer.VertexLabel.Position.CNTR);
vv.getRenderContext().setVertexLabelDrawPaintFunction(c -> Color.white);
vv.getRenderContext().setVertexLabelFunction(Object::toString);
vv.getRenderContext().setVertexLabelPosition(Renderer.VertexLabel.Position.CNTR);
return vv;
}
static class TitlePaintable implements VisualizationViewer.Paintable {
int x;
int y;
Font font;
FontMetrics metrics;
int swidth;
int sheight;
String str;
Dimension overallSize;
TitlePaintable(String title, Dimension overallSize) {
this.str = title;
this.overallSize = overallSize;
}
public void paint(Graphics g) {
Dimension d = overallSize;
if (font == null) {
font = new Font(g.getFont().getName(), Font.BOLD, 30);
metrics = g.getFontMetrics(font);
swidth = metrics.stringWidth(str);
sheight = metrics.getMaxAscent() + metrics.getMaxDescent();
x = (d.width - swidth) / 2;
y = (int) (d.height - sheight * 1.5);
}
g.setFont(font);
Color oldColor = g.getColor();
g.setColor(Color.lightGray);
g.drawString(str, x, y);
g.setColor(oldColor);
}
public boolean useTransform() {
return false;
}
}
/**
* creates a graph to look like the one in the paper
*
* @return
*/
Graph createInitialGraph() {
Graph graph =
GraphTypeBuilder.directed()
.edgeSupplier(SupplierUtil.createIntegerSupplier())
.vertexSupplier(SupplierUtil.createIntegerSupplier())
.buildGraph();
IntStream.rangeClosed(1, 23).forEach(graph::addVertex);
graph.addEdge(1, 3);
graph.addEdge(1, 4);
graph.addEdge(1, 13);
graph.addEdge(1, 21);
graph.addEdge(2, 3);
graph.addEdge(2, 20);
graph.addEdge(3, 4);
graph.addEdge(3, 5);
graph.addEdge(3, 23);
graph.addEdge(4, 6);
graph.addEdge(5, 7);
graph.addEdge(6, 8);
graph.addEdge(6, 16);
graph.addEdge(6, 23);
graph.addEdge(7, 9);
graph.addEdge(8, 10);
graph.addEdge(8, 11);
graph.addEdge(9, 12);
graph.addEdge(10, 13);
graph.addEdge(10, 14);
graph.addEdge(10, 15);
graph.addEdge(11, 15);
graph.addEdge(11, 16);
graph.addEdge(12, 20);
graph.addEdge(13, 17);
graph.addEdge(14, 17);
graph.addEdge(14, 18);
// no 15 targets
graph.addEdge(16, 18);
graph.addEdge(16, 19);
graph.addEdge(16, 20);
graph.addEdge(18, 21);
graph.addEdge(19, 22);
graph.addEdge(21, 23);
graph.addEdge(22, 23);
return graph;
}
public static void main(String[] args) {
new SugiyamaLayeringOptions();
}
}
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