Files
gzz-mirror/Java/arch/java2d/ZZDrawingJ2D.java
2026-09-14 20:19:29 -04:00

168 lines
4.5 KiB
Java

/*
ZZDrawingJ2D.java
*
* Copyright (c) 2000, Ted Nelson and Tuomas Lukka
*
* You may use and distribute under the terms of either the GNU Lesser
* General Public License, either version 2 of the license or,
* at your choice, any later version. Alternatively, you may use and
* distribute under the terms of the XPL.
*
* See the LICENSE.lgpl and LICENSE.xpl files for the specific terms of
* the licenses.
*
* This software 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 README
* file for more details.
*
*/
/*
* Written by Tuomas Lukka
*/
package org.gzigzag;
import java.awt.*;
import java.awt.geom.*;
/** An implementation of ZZDrawing for the Java2D API.
* This allows us to use Java2D's features if present, but
* not to depend on them.
*/
public class ZZDrawingJ2D extends ZZDrawing {
public static final String rcsid = "$Id: ZZDrawingJ2D.java,v 1.21 2001/03/26 12:41:00 tjl Exp $";
public String getType() {
return "Java2D: antialias, alpha(if used), rotation";
}
public void setAlpha(Graphics g0, float alpha) {
Graphics2D g = (Graphics2D)g0;
g.setComposite(AlphaComposite.getInstance(
AlphaComposite.SRC_OVER, alpha));
}
public RenderingHints qualityHints = new RenderingHints(null);
{
qualityHints.put(
RenderingHints.KEY_TEXT_ANTIALIASING,
RenderingHints.VALUE_TEXT_ANTIALIAS_ON);
qualityHints.put(
RenderingHints.KEY_ANTIALIASING,
RenderingHints.VALUE_ANTIALIAS_ON);
qualityHints.put(RenderingHints.KEY_RENDERING,
RenderingHints.VALUE_RENDER_QUALITY);
qualityHints.put(RenderingHints.KEY_STROKE_CONTROL,
RenderingHints.VALUE_STROKE_PURE);
// qualityHints.put(RenderingHints.KEY_FRACTIONALMETRICS,
// RenderingHints.VALUE_FRACTIONALMETRICS_ON);
}
public RenderingHints speedHints = new RenderingHints(null);
{
speedHints.put(RenderingHints.KEY_RENDERING,
RenderingHints.VALUE_RENDER_SPEED);
}
public void setFIXME(boolean t) {
if (t) {
qualityHints.put(RenderingHints.KEY_ANTIALIASING,
RenderingHints.VALUE_ANTIALIAS_ON);
qualityHints.put(RenderingHints.KEY_RENDERING,
RenderingHints.VALUE_RENDER_QUALITY);
qualityHints.put(RenderingHints.KEY_STROKE_CONTROL,
RenderingHints.VALUE_STROKE_PURE);
}
else {
qualityHints.put(RenderingHints.KEY_ANTIALIASING,
RenderingHints.VALUE_ANTIALIAS_OFF);
qualityHints.put(RenderingHints.KEY_RENDERING,
RenderingHints.VALUE_RENDER_SPEED);
qualityHints.put(RenderingHints.KEY_STROKE_CONTROL,
RenderingHints.VALUE_STROKE_DEFAULT);
}
}
public boolean enableQuality(boolean t) {
super.enableQuality(t);
return true;
}
public void setQuality(Graphics g0) {
Graphics2D g = (Graphics2D)g0;
if (qualityEnabled()) g.setRenderingHints(qualityHints);
else g.setRenderingHints(speedHints);
}
public void setDefaults(Graphics g0) {
//Graphics2D g = (Graphics2D)g0;
//g.rotate(0.1);
}
/** A flob which shows the given ZZScene rotated by given angle.
*/
public class RotatedSceneFlob extends SceneFlob {
double rot;
public RotatedSceneFlob(int x, int y, int d, int w, int h, ZZCell c, FlobSet sc,
double rot) {
super(x,y,d,w,h,c, sc);
this.rot = rot;
}
public void transform(double[] srcPtr, double[]dstPts, boolean toExt) {
AffineTransform tr =
AffineTransform.getRotateInstance(rot, x+w/2, y+h/2);
try {
if(toExt)
tr.transform(srcPtr, 0, dstPts, 0, srcPtr.length);
else
tr.inverseTransform(srcPtr, 0, dstPts, 0, srcPtr.length);
} catch(Exception e) {
ZZLogger.exc(e);
}
}
public Point transform(Point src, Point dst, boolean toExt) {
AffineTransform tr =
AffineTransform.getRotateInstance(rot, x+w/2, y+h/2);
try {
if(toExt)
tr.transform(src, dst);
else
tr.inverseTransform(src, dst);
} catch(Exception e) {
ZZLogger.exc(e);
}
return dst;
}
void prepareGraphics(Graphics g0, float fract) {
Graphics2D g = (Graphics2D)g0;
if(fract == 0) {
if(rot != 0)
g.rotate(rot, x+w/2, y+h/2);
return;
}
if(!(interpTo instanceof RotatedSceneFlob)) return; // XXX?
double nrot = rot + fract*(((RotatedSceneFlob)interpTo).rot - rot);
if(nrot == 0) return;
g.rotate(nrot,
(int)((x+w/2)*(1-fract) +
fract * (interpTo.x + interpTo.w/2)),
(int)((y+h/2)*(1-fract) +
fract * (interpTo.y + interpTo.h/2))
);
}
}
}