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I am ingesting an AWT image (from PDF, through PDFBox) with the following code:

private java.awt.Graphics2D graphics;
public void drawImage(java.awt.Image awtImage, java.awt.geom.AffineTransform at) {
    graphics.drawImage( awtImage, at, null );

and wish to capture/output the image as SVG. I have been using the Batik library which produces svg of the form

    <image x="0" y="0" transform="matrix(0.144,0,0,0.1439,251.521,271.844)" 
clip-path="url(#clipPath2)" width="1797" xlink:href="data:image/png;
RPQP/R8CiIK+y8Q6KQAAAABJRU5ErkJggg==" height="1400"
 preserveAspectRatio="none" stroke-width="0" xmlns:xlink=""/>

I have my own SVG library and want to add methods to my SVGImage class to produce something similar. Do I need to apply the AffineTransformation to the data, and if so how?

I would be grateful to be pointed to appropriate (F/OSS) methods or libraries that can do this. The data should be inline (as in the above example) and XML-compliant.

UPDATE: In the absence of any answer or comments I have had to write my own implementation. This wasn't completely trivial and may not be robust or the best solution. I append it as an answer - please comment if it's flawed or could be improved.

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1 Answer 1

up vote 2 down vote accepted


I assume the java.awt.Image is a BufferedImage as that has the appropriate methods. In the present case this has worked (so far).

The SVG needs the MIME type of the image (e.g. "image/png"). ImageIO needs a type such as "PNG". mimeType2ImageTypeMap maps these. The Base64 codec is taken from Xerces but there are a lot around. The DOM implementation is XOM and the attribute construction provides the namespace for xlink

    public class SVGImage extends {
    private static final String DATA = "data";
    private static final String BASE64 = "base64";
    public static final String IMAGE_PNG = "image/png";
    public static final String PNG = "PNG";

    private static final String XLINK_PREF = "xlink";
    private static final String HREF = "href";
    private static final String XLINK_NS = "";

        public void readImageData(BufferedImage bufferedImage, String mimeType) {
    String type = mimeType2ImageTypeMap.get(mimeType);
    if (type == null) {
        throw new RuntimeException("Cannot convert mimeType: "+mimeType);
    double x = bufferedImage.getMinX();
    double y = bufferedImage.getMinY();
    double height = bufferedImage.getHeight();
    double width = bufferedImage.getWidth();

    ByteArrayOutputStream baos = new ByteArrayOutputStream();
    try {
        ImageIO.write(bufferedImage, type, baos);
    } catch (IOException e) {
        throw new RuntimeException("Cannot read image", e);
    byte[] byteArray = baos.toByteArray();
    String base64 = Base64.encode(byteArray);
    String attValue = DATA+":"+mimeType+";"+BASE64+","+base64;
    this.addAttribute(new Attribute(XLINK_PREF+":"+HREF, XLINK_NS, attValue));

The code above has worked on a test case so I am optimistic it will scale to large Images and other MIME types but haven't tested them.

YES: I do have to apply the affine transformation. I already have utility routines for this which convert a 3*2 matrix of doubles to an SVG transform="matrix(...)" attribute. So my final code is:

Transform2 t2 = new Transform2(at);              // converts matrix syntax
BufferedImage bImage = (BufferedImage) awtImage;
SVGImage svgImage = new SVGImage();
svgImage.readImageData(bImage, SVGImage.IMAGE_PNG);
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