Windows下在Java中调用GraphViz

相关文章及代码

How to call GraphViz from java:
https://stackoverflow.com/questions/26481910/how-to-call-graphviz-from-java
java – java中调用GraphViz:
http://blog.csdn.net/TheSnowBoy_2/article/details/52540874
windows下Graphviz安装及入门教程:
http://blog.csdn.net/lanchunhui/article/details/49472949

GraphViz环境变量的配置

安装好GraphViz后,将Graphviz安装目录下的bin文件夹添加到Path环境变量中:

这里写图片描述

验证:进入命令行界面,输入dot -version回车,会显示GraphViz相关的版本信息,则配置成功:

这里写图片描述

为GraphViz的java的API建立配置文件

在工程目录下创建test文件夹,在test文件夹下创建tmpDir文件夹,此文件夹用来存放临时文件。再在工程目录下创建config文件夹,并将文件config.properties放在该文件夹内。

config.properties内容如下:

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##############################################################
# Windows Configurations #
##############################################################
# The dir. where temporary files will be created.
tempDirForWindows10 = E:/temp
# Where is your dot program located? It will be called externally.
dotForWindows10 = "E:/software_daily/FOR_LEARN/graphViz/bin/dot.exe"

将其中tempDirForWindows10和dotForWindows10中的Windows10改为相应的Windows版本,dotForWindows10后的路径改为dot.exe的安装路径。

###GraphViz的java API源代码

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import java.io.BufferedReader;
import java.io.BufferedWriter;
import java.io.DataInputStream;
import java.io.File;
import java.io.FileInputStream;
import java.io.FileOutputStream;
import java.io.FileWriter;
import java.io.InputStreamReader;
import java.util.Properties;

/**
* <dl>
* <dt>Purpose: GraphViz Java API
* <dd>
*
* <dt>Description:
* <dd> With this Java class you can simply call dot
* from your Java programs.
* <dt>Example usage:
* <dd>
* <pre>
* GraphViz gv = new GraphViz();
* gv.addln(gv.start_graph());
* gv.addln("A -> B;");
* gv.addln("A -> C;");
* gv.addln(gv.end_graph());
* System.out.println(gv.getDotSource());
*
* String type = "gif";
* File out = new File("out." + type); // out.gif in this example
* gv.writeGraphToFile( gv.getGraph( gv.getDotSource(), type ), out );
* </pre>
* </dd>
*
* </dl>
*
* @version v0.5.1, 2013/03/18 (March) -- Patch of Juan Hoyos (Mac support)
* @version v0.5, 2012/04/24 (April) -- Patch of Abdur Rahman (OS detection + start subgraph +
* read config file)
* @version v0.4, 2011/02/05 (February) -- Patch of Keheliya Gallaba is added. Now you
* can specify the type of the output file: gif, dot, fig, pdf, ps, svg, png, etc.
* @version v0.3, 2010/11/29 (November) -- Windows support + ability to read the graph from a text file
* @version v0.2, 2010/07/22 (July) -- bug fix
* @version v0.1, 2003/12/04 (December) -- first release
* @author Laszlo Szathmary (<a href="jabba.laci@gmail.com">jabba.laci@gmail.com</a>)
*/
public class GraphViz
{
/**
* Detects the client's operating system.
*/
private final static String osName = System.getProperty("os.name").replaceAll("\\s","");

/**
* Load the config.properties file.
*/
private final static String cfgProp = "config/config.properties";
private final static Properties configFile = new Properties() {
private final static long serialVersionUID = 1L; {
try {
load(new FileInputStream(cfgProp));
} catch (Exception e) {}
}
};

/**
* The dir. where temporary files will be created.
*/
private static String TEMP_DIR = "test/tmpDir";

/**
* Where is your dot program located? It will be called externally.
*/
private static String DOT = configFile.getProperty("dotFor" + osName);

/**
* The image size in dpi. 96 dpi is normal size. Higher values are 10% higher each.
* Lower values 10% lower each.
*
* dpi patch by Peter Mueller
*/
private int[] dpiSizes = {46, 51, 57, 63, 70, 78, 86, 96, 106, 116, 128, 141, 155, 170, 187, 206, 226, 249};

/**
* Define the index in the image size array.
*/
private int currentDpiPos = 7;

/**
* Increase the image size (dpi).
*/
public void increaseDpi() {
if ( this.currentDpiPos < (this.dpiSizes.length - 1) ) {
++this.currentDpiPos;
}
}

/**
* Decrease the image size (dpi).
*/
public void decreaseDpi() {
if (this.currentDpiPos > 0) {
--this.currentDpiPos;
}
}

public int getImageDpi() {
return this.dpiSizes[this.currentDpiPos];
}

/**
* The source of the graph written in dot language.
*/
private StringBuilder graph = new StringBuilder();

/**
* Constructor: creates a new GraphViz object that will contain
* a graph.
*/
public GraphViz() {
}

/**
* Returns the graph's source description in dot language.
* @return Source of the graph in dot language.
*/
public String getDotSource() {
return this.graph.toString();
}

/**
* Adds a string to the graph's source (without newline).
*/
public void add(String line) {
this.graph.append(line);
}

/**
* Adds a string to the graph's source (with newline).
*/
public void addln(String line) {
this.graph.append(line + "\n");
}

/**
* Adds a newline to the graph's source.
*/
public void addln() {
this.graph.append('\n');
}

public void clearGraph(){
this.graph = new StringBuilder();
}

/**
* Returns the graph as an image in binary format.
* @param dot_source Source of the graph to be drawn.
* @param type Type of the output image to be produced, e.g.: gif, dot, fig, pdf, ps, svg, png.
* @return A byte array containing the image of the graph.
*/
public byte[] getGraph(String dot_source, String type)
{
File dot;
byte[] img_stream = null;

try {
dot = writeDotSourceToFile(dot_source);
if (dot != null)
{
img_stream = get_img_stream(dot, type);
if (dot.delete() == false)
System.err.println("Warning: " + dot.getAbsolutePath() + " could not be deleted!");
return img_stream;
}
return null;
} catch (java.io.IOException ioe) { return null; }
}

/**
* Writes the graph's image in a file.
* @param img A byte array containing the image of the graph.
* @param file Name of the file to where we want to write.
* @return Success: 1, Failure: -1
*/
public int writeGraphToFile(byte[] img, String file)
{
File to = new File(file);
return writeGraphToFile(img, to);
}

/**
* Writes the graph's image in a file.
* @param img A byte array containing the image of the graph.
* @param to A File object to where we want to write.
* @return Success: 1, Failure: -1
*/
public int writeGraphToFile(byte[] img, File to)
{
try {
FileOutputStream fos = new FileOutputStream(to);
fos.write(img);
fos.close();
} catch (java.io.IOException ioe) { return -1; }
return 1;
}

/**
* It will call the external dot program, and return the image in
* binary format.
* @param dot Source of the graph (in dot language).
* @param type Type of the output image to be produced, e.g.: gif, dot, fig, pdf, ps, svg, png.
* @return The image of the graph in .gif format.
*/
private byte[] get_img_stream(File dot, String type)
{
File img;
byte[] img_stream = null;

try {
img = File.createTempFile("graph_", "."+type, new File(GraphViz.TEMP_DIR));
Runtime rt = Runtime.getRuntime();

// patch by Mike Chenault
String[] args = {DOT, "-T"+type, "-Gdpi="+dpiSizes[this.currentDpiPos], dot.getAbsolutePath(), "-o", img.getAbsolutePath()};
Process p = rt.exec(args);

p.waitFor();

FileInputStream in = new FileInputStream(img.getAbsolutePath());
img_stream = new byte[in.available()];
in.read(img_stream);
// Close it if we need to
if( in != null ) in.close();

if (img.delete() == false)
System.err.println("Warning: " + img.getAbsolutePath() + " could not be deleted!");
}
catch (java.io.IOException ioe) {
System.err.println("Error: in I/O processing of tempfile in dir " + GraphViz.TEMP_DIR+"\n");
System.err.println(" or in calling external command");
ioe.printStackTrace();
}
catch (java.lang.InterruptedException ie) {
System.err.println("Error: the execution of the external program was interrupted");
ie.printStackTrace();
}

return img_stream;
}

/**
* Writes the source of the graph in a file, and returns the written file
* as a File object.
* @param str Source of the graph (in dot language).
* @return The file (as a File object) that contains the source of the graph.
*/
private File writeDotSourceToFile(String str) throws java.io.IOException
{
File temp;
try {
temp = File.createTempFile("dorrr",".dot", new File(GraphViz.TEMP_DIR));
FileWriter fout = new FileWriter(temp);
fout.write(str);
BufferedWriter br=new BufferedWriter(new FileWriter("dotsource.dot"));
br.write(str);
br.flush();
br.close();
fout.close();
}
catch (Exception e) {
System.err.println("Error: I/O error while writing the dot source to temp file!");
return null;
}
return temp;
}

/**
* Returns a string that is used to start a graph.
* @return A string to open a graph.
*/
public String start_graph() {
return "digraph G {";
}

/**
* Returns a string that is used to end a graph.
* @return A string to close a graph.
*/
public String end_graph() {
return "}";
}

/**
* Takes the cluster or subgraph id as input parameter and returns a string
* that is used to start a subgraph.
* @return A string to open a subgraph.
*/
public String start_subgraph(int clusterid) {
return "subgraph cluster_" + clusterid + " {";
}

/**
* Returns a string that is used to end a graph.
* @return A string to close a graph.
*/
public String end_subgraph() {
return "}";
}

/**
* Read a DOT graph from a text file.
*
* @param input Input text file containing the DOT graph
* source.
*/
public void readSource(String input)
{
StringBuilder sb = new StringBuilder();

try
{
FileInputStream fis = new FileInputStream(input);
DataInputStream dis = new DataInputStream(fis);
BufferedReader br = new BufferedReader(new InputStreamReader(dis));
String line;
while ((line = br.readLine()) != null) {
sb.append(line);
}
dis.close();
}
catch (Exception e) {
System.err.println("Error: " + e.getMessage());
}

this.graph = sb;
}

使用示例

通过调用API绘制一个简单的有向图

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public static void createDotGraph(String dotFormat,String fileName)
{
GraphViz gv=new GraphViz();
gv.addln(gv.start_graph());
gv.add(dotFormat);
gv.addln(gv.end_graph());
String type = "jpg"; //输出图文件的格式,以.jpg为例
gv.decreaseDpi();
gv.decreaseDpi();
File out = new File(fileName+"."+ type);
gv.writeGraphToFile( gv.getGraph( gv.getDotSource(), type ), out );
}

public static void main(String[] args) throws Exception {
String dotFormat="1->2;1->3;1->4;4->5;4->6;6->7;5->7;3->8;3->6;8->7;2->8;2->5;";
createDotGraph(dotFormat, "DotGraph");
}

输出图为:

这里写图片描述