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jeremybenn |
/* XGraphics2D.java -- A Java based Graphics2D impl for X
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Copyright (C) 2006 Free Software Foundation, Inc.
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This file is part of GNU Classpath.
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GNU Classpath is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2, or (at your option)
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any later version.
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GNU Classpath is distributed in the hope that it will be useful, but
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WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with GNU Classpath; see the file COPYING. If not, write to the
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Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
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02110-1301 USA.
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Linking this library statically or dynamically with other modules is
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making a combined work based on this library. Thus, the terms and
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conditions of the GNU General Public License cover the whole
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combination.
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As a special exception, the copyright holders of this library give you
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permission to link this library with independent modules to produce an
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executable, regardless of the license terms of these independent
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modules, and to copy and distribute the resulting executable under
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terms of your choice, provided that you also meet, for each linked
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independent module, the terms and conditions of the license of that
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module. An independent module is a module which is not derived from
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or based on this library. If you modify this library, you may extend
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this exception to your version of the library, but you are not
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obligated to do so. If you do not wish to do so, delete this
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exception statement from your version. */
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package gnu.java.awt.peer.x;
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import java.awt.Color;
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import java.awt.Font;
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import java.awt.Graphics;
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import java.awt.GraphicsConfiguration;
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import java.awt.Image;
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import java.awt.Paint;
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import java.awt.Rectangle;
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import java.awt.Shape;
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import java.awt.Toolkit;
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import java.awt.Transparency;
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import java.awt.geom.AffineTransform;
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import java.awt.image.BufferedImage;
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import java.awt.image.ColorModel;
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import java.awt.image.DataBuffer;
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import java.awt.image.ImageObserver;
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import java.awt.image.Raster;
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import java.awt.peer.FontPeer;
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import java.util.HashMap;
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import java.util.WeakHashMap;
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import gnu.java.awt.image.AsyncImage;
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import gnu.java.awt.java2d.AbstractGraphics2D;
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import gnu.java.awt.java2d.ScanlineCoverage;
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import gnu.x11.Colormap;
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import gnu.x11.Drawable;
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import gnu.x11.GC;
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import gnu.x11.image.ZPixmap;
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public class XGraphics2D
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extends AbstractGraphics2D
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{
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/**
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* When this property is set to true, then images are always rendered as
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* opaque images, ignoring their translucence. This is intended for
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* debugging and demonstration purposes.
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*/
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private static final boolean RENDER_OPAQUE =
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Boolean.getBoolean("escherpeer.renderopaque");
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/**
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* The X Drawable to draw on.
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*/
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private Drawable xdrawable;
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/**
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* The X graphics context (GC).
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*/
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private GC xgc;
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/**
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* Indicates if this graphics has already been disposed.
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*/
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private boolean disposed;
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/**
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* The current foreground color, possibly null.
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*/
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private Color foreground;
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XGraphics2D(Drawable d)
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{
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super();
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xdrawable = d;
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xgc = new GC(d);
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init();
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disposed = false;
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//setClip(new Rectangle(0, 0, xdrawable.width, xdrawable.height));
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}
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@Override
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protected void rawDrawLine(int x0, int y0, int x1, int y1)
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{
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xdrawable.segment(xgc, x0, y0, x1, y1);
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}
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@Override
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protected void rawDrawRect(int x, int y, int w, int h)
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{
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xdrawable.rectangle(xgc, x, y, w, h, false);
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}
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@Override
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protected void rawFillRect(int x, int y, int w, int h)
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{
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xdrawable.rectangle(xgc, x, y, w, h, true);
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}
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/**
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* Returns the color model of this Graphics object.
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*
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* @return the color model of this Graphics object
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*/
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protected ColorModel getColorModel()
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{
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return Toolkit.getDefaultToolkit().getColorModel();
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}
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/**
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* Returns the color model of the target device.
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*
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* @return the color model of the target device
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*/
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protected ColorModel getDestinationColorModel()
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{
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return Toolkit.getDefaultToolkit().getColorModel();
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}
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/**
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* Returns the bounds of the target.
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*
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* @return the bounds of the target
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*/
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protected Rectangle getDeviceBounds()
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{
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return new Rectangle(0, 0, xdrawable.width, xdrawable.height);
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}
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public GraphicsConfiguration getDeviceConfiguration()
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{
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// FIXME: Implement this.
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throw new UnsupportedOperationException("Not yet implemented");
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}
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public void dispose()
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{
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if (!disposed)
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{
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xgc.free();
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xdrawable.display.flush();
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disposed = true;
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}
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}
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public Graphics create()
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{
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// super.create() returns a copy created by clone(), so it should
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// be a XGraphics2D.
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XGraphics2D copy = (XGraphics2D) super.create();
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copy.xgc = xgc.copy();
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return copy;
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}
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public void setClip(Shape c)
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{
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super.setClip(c);
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if (c instanceof Rectangle)
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{
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Rectangle r = (Rectangle) c;
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AffineTransform t = getTransform();
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int translateX = (int) t.getTranslateX();
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//System.err.println("translateX: " + translateX);
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int translateY = (int) t.getTranslateY();
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//System.err.println("translateY: " + translateY);
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//System.err.println("clip: " + c);
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gnu.x11.Rectangle clip = new gnu.x11.Rectangle(r.x, r.y, r.width,
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r.height);
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xgc.set_clip_rectangles(translateX, translateY,
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new gnu.x11.Rectangle[]{clip}, GC.UN_SORTED);
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}
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}
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/**
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* Notifies the backend that the raster has changed in the specified
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* rectangular area. The raster that is provided in this method is always
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* the same as the one returned in {@link #getDestinationRaster}.
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* Backends that reflect changes to this raster directly don't need to do
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* anything here.
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*
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* @param raster the updated raster, identical to the raster returned
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* by {@link #getDestinationRaster()}
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* @param x the upper left corner of the updated region, X coordinate
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* @param y the upper lef corner of the updated region, Y coordinate
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* @param w the width of the updated region
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* @param h the height of the updated region
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*/
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protected void updateRaster(Raster raster, int x, int y, int w, int h)
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{
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if (w > 0 && h > 0)
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{
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ZPixmap zPixmap = new ZPixmap(xdrawable.display, w, h,
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xdrawable.display.default_pixmap_format);
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int[] pixel = null;
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int x1 = x + w;
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int y1 = y + h;
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for (int tx = x; tx < x1; tx++)
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{
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for (int ty = y; ty < y1; ty++)
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{
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pixel = raster.getPixel(tx, ty, pixel);
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//System.err.println("tx: " + tx + ", ty: " + ty + ", pixel: " + pixel[0] + ", " + pixel[1] + ", " + pixel[2]);
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// System.err.print("r: " + pixel[0]);
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// System.err.print(", g: " + pixel[1]);
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// System.err.println(", b: " + pixel[2]);
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zPixmap.set_red(tx - x, ty - y, pixel[0]);
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zPixmap.set_green(tx - x, ty - y, pixel[1]);
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zPixmap.set_blue(tx - x, ty - y, pixel[2]);
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}
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}
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xdrawable.put_image(xgc, zPixmap, x, y);
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}
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}
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@Override
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public void renderScanline(int y, ScanlineCoverage c)
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{
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if (y >= xdrawable.height)
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return;
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// TODO: Handle Composite and Paint.
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ScanlineCoverage.Iterator iter = c.iterate();
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int coverageAlpha = 0;
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int maxCoverage = c.getMaxCoverage();
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while (iter.hasNext())
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{
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ScanlineCoverage.Range range = iter.next();
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coverageAlpha = range.getCoverage();
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int x0 = range.getXPos();
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int l = range.getLength();
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if (coverageAlpha == c.getMaxCoverage())
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{
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// Simply paint the current color over the existing pixels.
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xdrawable.fill_rectangle(xgc, x0, y, l, 1);
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}
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else if (coverageAlpha > 0)
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{
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// Composite the current color with the existing pixels.
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int x1 = x0 + l;
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x0 = Math.min(Math.max(0, x0), xdrawable.width - 1);
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x1 = Math.min(Math.max(0, x1), xdrawable.width - 1);
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if ((x1 - x0) < 1)
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continue;
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l = x1 - x0;
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gnu.x11.image.ZPixmap existing = (ZPixmap)
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xdrawable.image(x0, y, l, 1, 0xFFFFFFFF,
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gnu.x11.image.Image.Format.ZPIXMAP);
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for (int x = 0; x < l; x++)
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{
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Color col = getColor();
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| 280 |
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if (col == null)
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{
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| 282 |
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col = Color.BLACK;
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| 283 |
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}
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| 284 |
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int red = col.getRed();
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int green = col.getGreen();
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| 286 |
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int blue = col.getBlue();
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| 287 |
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int redOut = existing.get_red(x, 0);
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| 288 |
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int greenOut = existing.get_green(x, 0);
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| 289 |
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int blueOut = existing.get_blue(x, 0);
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| 290 |
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int outAlpha = maxCoverage - coverageAlpha;
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| 291 |
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redOut = redOut * outAlpha + red * coverageAlpha;
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redOut = redOut / maxCoverage;
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greenOut = greenOut * outAlpha + green * coverageAlpha;
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| 294 |
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greenOut = greenOut / maxCoverage;
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| 295 |
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blueOut = blueOut * outAlpha + blue * coverageAlpha;
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| 296 |
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blueOut = blueOut / maxCoverage;
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existing.set(x, 0, redOut, greenOut, blueOut);
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| 298 |
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}
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| 299 |
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xdrawable.put_image(xgc, existing, x0, y);
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| 300 |
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}
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| 301 |
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}
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| 302 |
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}
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| 303 |
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| 304 |
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protected void init()
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| 305 |
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{
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| 306 |
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super.init();
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| 307 |
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}
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| 308 |
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| 309 |
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public void setPaint(Paint p)
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| 310 |
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{
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| 311 |
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super.setPaint(p);
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| 312 |
|
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if (p instanceof Color)
|
| 313 |
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{
|
| 314 |
|
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// TODO: Optimize for different standard bit-depths.
|
| 315 |
|
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Color c = (Color) p;
|
| 316 |
|
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/* XToolkit tk = (XToolkit) Toolkit.getDefaultToolkit();
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| 317 |
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HashMap colorMap = tk.colorMap;
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| 318 |
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gnu.x11.Color col = (gnu.x11.Color) colorMap.get(c);
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| 319 |
|
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if (col == null)
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| 320 |
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{
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| 321 |
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Colormap map = xdrawable.display.default_colormap;
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| 322 |
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col = map.alloc_color (c.getRed() * 256,
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c.getGreen() * 256,
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c.getBlue() * 256);
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| 325 |
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colorMap.put(c, col);
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| 326 |
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}*/
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| 327 |
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//xgc.set_foreground(col);
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| 328 |
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| 329 |
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xgc.set_foreground(c.getRGB());
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| 330 |
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foreground = c;
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| 331 |
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}
|
| 332 |
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}
|
| 333 |
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| 334 |
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protected void fillShape(Shape s, boolean isFont)
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| 335 |
|
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{
|
| 336 |
|
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synchronized (xdrawable.display) {
|
| 337 |
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super.fillShape(s, isFont);
|
| 338 |
|
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}
|
| 339 |
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}
|
| 340 |
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| 341 |
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private static WeakHashMap<Image,ZPixmap> imageCache = new WeakHashMap<Image,ZPixmap>();
|
| 342 |
|
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|
| 343 |
|
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protected boolean rawDrawImage(Image image, int x, int y, ImageObserver obs)
|
| 344 |
|
|
{
|
| 345 |
|
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image = unwrap(image);
|
| 346 |
|
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boolean ret;
|
| 347 |
|
|
if (image instanceof XImage)
|
| 348 |
|
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{
|
| 349 |
|
|
XImage xImage = (XImage) image;
|
| 350 |
|
|
xdrawable.copy_area(xImage.pixmap, xgc, 0, 0, xImage.getWidth(obs),
|
| 351 |
|
|
xImage.getHeight(obs), x, y);
|
| 352 |
|
|
ret = true;
|
| 353 |
|
|
}
|
| 354 |
|
|
else if (image instanceof PixmapVolatileImage)
|
| 355 |
|
|
{
|
| 356 |
|
|
PixmapVolatileImage pvi = (PixmapVolatileImage) image;
|
| 357 |
|
|
xdrawable.copy_area(pvi.getPixmap(), xgc, 0, 0, pvi.getWidth(obs),
|
| 358 |
|
|
pvi.getHeight(obs), x, y);
|
| 359 |
|
|
ret = true;
|
| 360 |
|
|
}
|
| 361 |
|
|
else if (image instanceof BufferedImage)
|
| 362 |
|
|
{
|
| 363 |
|
|
BufferedImage bi = (BufferedImage) image;
|
| 364 |
|
|
DataBuffer db = bi.getRaster().getDataBuffer();
|
| 365 |
|
|
if (db instanceof ZPixmapDataBuffer)
|
| 366 |
|
|
{
|
| 367 |
|
|
ZPixmapDataBuffer zpmdb = (ZPixmapDataBuffer) db;
|
| 368 |
|
|
ZPixmap zpixmap = zpmdb.getZPixmap();
|
| 369 |
|
|
xdrawable.put_image(xgc, zpixmap, x, y);
|
| 370 |
|
|
ret = true;
|
| 371 |
|
|
}
|
| 372 |
|
|
else
|
| 373 |
|
|
{
|
| 374 |
|
|
int transparency = bi.getTransparency();
|
| 375 |
|
|
int w = bi.getWidth();
|
| 376 |
|
|
int h = bi.getHeight();
|
| 377 |
|
|
if (imageCache.containsKey(image))
|
| 378 |
|
|
{
|
| 379 |
|
|
ZPixmap zpixmap = imageCache.get(image);
|
| 380 |
|
|
xdrawable.put_image(xgc, zpixmap, x, y);
|
| 381 |
|
|
}
|
| 382 |
|
|
else if (transparency == Transparency.OPAQUE || RENDER_OPAQUE)
|
| 383 |
|
|
{
|
| 384 |
|
|
XGraphicsDevice gd = XToolkit.getDefaultDevice();
|
| 385 |
|
|
ZPixmap zpixmap = new ZPixmap(gd.getDisplay(), w, h);
|
| 386 |
|
|
for (int yy = 0; yy < h; yy++)
|
| 387 |
|
|
{
|
| 388 |
|
|
for (int xx = 0; xx < w; xx++)
|
| 389 |
|
|
{
|
| 390 |
|
|
int rgb = bi.getRGB(xx, yy);
|
| 391 |
|
|
zpixmap.set(xx, yy, rgb);
|
| 392 |
|
|
}
|
| 393 |
|
|
}
|
| 394 |
|
|
xdrawable.put_image(xgc, zpixmap, x, y);
|
| 395 |
|
|
imageCache.put(image, zpixmap);
|
| 396 |
|
|
} else {
|
| 397 |
|
|
|
| 398 |
|
|
// TODO optimize reusing the rectangles
|
| 399 |
|
|
Rectangle source =
|
| 400 |
|
|
new Rectangle(0, 0, xdrawable.width, xdrawable.height);
|
| 401 |
|
|
Rectangle target = new Rectangle(x, y, w, h);
|
| 402 |
|
|
|
| 403 |
|
|
Rectangle destination = source.intersection(target);
|
| 404 |
|
|
|
| 405 |
|
|
x = destination.x;
|
| 406 |
|
|
y = destination.y;
|
| 407 |
|
|
w = destination.width;
|
| 408 |
|
|
h = destination.height;
|
| 409 |
|
|
|
| 410 |
|
|
ZPixmap zpixmap =
|
| 411 |
|
|
(ZPixmap) xdrawable.image(x, y, w, h,
|
| 412 |
|
|
0xffffffff,
|
| 413 |
|
|
gnu.x11.image.Image.Format.ZPIXMAP);
|
| 414 |
|
|
for (int yy = 0; yy < h; yy++)
|
| 415 |
|
|
{
|
| 416 |
|
|
for (int xx = 0; xx < w; xx++)
|
| 417 |
|
|
{
|
| 418 |
|
|
int rgb = bi.getRGB(xx, yy);
|
| 419 |
|
|
int alpha = 0xff & (rgb >> 24);
|
| 420 |
|
|
if (alpha == 0)
|
| 421 |
|
|
{
|
| 422 |
|
|
// Completely translucent.
|
| 423 |
|
|
rgb = zpixmap.get_red(xx, yy) << 16
|
| 424 |
|
|
| zpixmap.get_green(xx, yy) << 8
|
| 425 |
|
|
| zpixmap.get_blue(xx, yy);
|
| 426 |
|
|
}
|
| 427 |
|
|
else if (alpha < 255)
|
| 428 |
|
|
{
|
| 429 |
|
|
// Composite pixels.
|
| 430 |
|
|
int red = 0xff & (rgb >> 16);
|
| 431 |
|
|
red = red * alpha
|
| 432 |
|
|
+ (255 - alpha) * zpixmap.get_red(xx, yy);
|
| 433 |
|
|
red = red / 255;
|
| 434 |
|
|
int green = 0xff & (rgb >> 8);
|
| 435 |
|
|
green = green * alpha
|
| 436 |
|
|
+ (255 - alpha) * zpixmap.get_green(xx, yy);
|
| 437 |
|
|
green = green / 255;
|
| 438 |
|
|
int blue = 0xff & rgb;
|
| 439 |
|
|
blue = blue * alpha
|
| 440 |
|
|
+ (255 - alpha) * zpixmap.get_blue(xx, yy);
|
| 441 |
|
|
blue = blue / 255;
|
| 442 |
|
|
rgb = red << 16 | green << 8 | blue;
|
| 443 |
|
|
}
|
| 444 |
|
|
// else keep rgb value from source image.
|
| 445 |
|
|
|
| 446 |
|
|
zpixmap.set(xx, yy, rgb);
|
| 447 |
|
|
}
|
| 448 |
|
|
}
|
| 449 |
|
|
xdrawable.put_image(xgc, zpixmap, x, y);
|
| 450 |
|
|
// We can't cache prerendered translucent images, because
|
| 451 |
|
|
// we never know how the background changes.
|
| 452 |
|
|
}
|
| 453 |
|
|
ret = true;
|
| 454 |
|
|
}
|
| 455 |
|
|
}
|
| 456 |
|
|
else
|
| 457 |
|
|
{
|
| 458 |
|
|
ret = super.rawDrawImage(image, x, y, obs);
|
| 459 |
|
|
}
|
| 460 |
|
|
return ret;
|
| 461 |
|
|
}
|
| 462 |
|
|
|
| 463 |
|
|
public void setFont(Font f)
|
| 464 |
|
|
{
|
| 465 |
|
|
super.setFont(f);
|
| 466 |
|
|
FontPeer p = getFont().getPeer();
|
| 467 |
|
|
if (p instanceof XFontPeer)
|
| 468 |
|
|
{
|
| 469 |
|
|
XFontPeer xFontPeer = (XFontPeer) p;
|
| 470 |
|
|
xgc.set_font(xFontPeer.getXFont());
|
| 471 |
|
|
}
|
| 472 |
|
|
}
|
| 473 |
|
|
|
| 474 |
|
|
public void drawString(String s, int x, int y)
|
| 475 |
|
|
{
|
| 476 |
|
|
FontPeer p = getFont().getPeer();
|
| 477 |
|
|
if (p instanceof XFontPeer)
|
| 478 |
|
|
{
|
| 479 |
|
|
int tx = (int) transform.getTranslateX();
|
| 480 |
|
|
int ty = (int) transform.getTranslateY();
|
| 481 |
|
|
xdrawable.text(xgc, x + tx, y + ty, s);
|
| 482 |
|
|
}
|
| 483 |
|
|
else
|
| 484 |
|
|
{
|
| 485 |
|
|
super.drawString(s, x, y);
|
| 486 |
|
|
}
|
| 487 |
|
|
}
|
| 488 |
|
|
|
| 489 |
|
|
/**
|
| 490 |
|
|
* Extracts an image instance out of an AsyncImage. If the image isn't
|
| 491 |
|
|
* an AsyncImage, then the original instance is returned.
|
| 492 |
|
|
*
|
| 493 |
|
|
* @param im the image
|
| 494 |
|
|
*
|
| 495 |
|
|
* @return the image to render
|
| 496 |
|
|
*/
|
| 497 |
|
|
private Image unwrap(Image im)
|
| 498 |
|
|
{
|
| 499 |
|
|
Image image = im;
|
| 500 |
|
|
if (image instanceof AsyncImage)
|
| 501 |
|
|
{
|
| 502 |
|
|
AsyncImage aIm = (AsyncImage) image;
|
| 503 |
|
|
image = aIm.getRealImage();
|
| 504 |
|
|
}
|
| 505 |
|
|
return image;
|
| 506 |
|
|
}
|
| 507 |
|
|
|
| 508 |
|
|
}
|