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840 lines
24 KiB
Java
840 lines
24 KiB
Java
/* BufferedImage.java --
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Copyright (C) 2000, 2002, 2003, 2004, 2005, 2006, Free Software Foundation
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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 java.awt.image;
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import gnu.java.awt.Buffers;
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import gnu.java.awt.ClasspathGraphicsEnvironment;
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import gnu.java.awt.ComponentDataBlitOp;
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import gnu.java.lang.CPStringBuilder;
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import java.awt.Graphics;
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import java.awt.Graphics2D;
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import java.awt.GraphicsEnvironment;
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import java.awt.Image;
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import java.awt.Point;
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import java.awt.Rectangle;
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import java.awt.Transparency;
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import java.awt.color.ColorSpace;
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import java.util.Hashtable;
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import java.util.Vector;
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/**
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* A buffered image always starts at coordinates (0, 0).
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*
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* The buffered image is not subdivided into multiple tiles. Instead,
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* the image consists of one large tile (0,0) with the width and
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* height of the image. This tile is always considered to be checked
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* out.
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*
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* @author Rolf W. Rasmussen (rolfwr@ii.uib.no)
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*/
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public class BufferedImage extends Image
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implements WritableRenderedImage, Transparency
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{
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public static final int TYPE_CUSTOM = 0,
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TYPE_INT_RGB = 1,
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TYPE_INT_ARGB = 2,
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TYPE_INT_ARGB_PRE = 3,
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TYPE_INT_BGR = 4,
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TYPE_3BYTE_BGR = 5,
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TYPE_4BYTE_ABGR = 6,
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TYPE_4BYTE_ABGR_PRE = 7,
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TYPE_USHORT_565_RGB = 8,
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TYPE_USHORT_555_RGB = 9,
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TYPE_BYTE_GRAY = 10,
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TYPE_USHORT_GRAY = 11,
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TYPE_BYTE_BINARY = 12,
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TYPE_BYTE_INDEXED = 13;
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/**
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* Vector of TileObservers (or null)
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*/
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Vector<TileObserver> tileObservers;
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/**
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* The image's WritableRaster
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*/
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WritableRaster raster;
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/**
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* The associated ColorModel
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*/
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ColorModel colorModel;
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/**
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* The image's properties (or null)
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*/
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Hashtable properties;
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/**
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* Whether alpha is premultiplied
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*/
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boolean isPremultiplied;
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/**
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* The predefined type, if any.
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*/
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int type;
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/**
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* Creates a new <code>BufferedImage</code> with the specified width, height
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* and type. Valid <code>type</code> values are:
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*
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* <ul>
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* <li>{@link #TYPE_INT_RGB}</li>
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* <li>{@link #TYPE_INT_ARGB}</li>
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* <li>{@link #TYPE_INT_ARGB_PRE}</li>
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* <li>{@link #TYPE_INT_BGR}</li>
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* <li>{@link #TYPE_3BYTE_BGR}</li>
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* <li>{@link #TYPE_4BYTE_ABGR}</li>
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* <li>{@link #TYPE_4BYTE_ABGR_PRE}</li>
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* <li>{@link #TYPE_USHORT_565_RGB}</li>
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* <li>{@link #TYPE_USHORT_555_RGB}</li>
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* <li>{@link #TYPE_BYTE_GRAY}</li>
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* <li>{@link #TYPE_USHORT_GRAY}</li>
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* <li>{@link #TYPE_BYTE_BINARY}</li>
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* <li>{@link #TYPE_BYTE_INDEXED}</li>
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* </ul>
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*
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* @param width the width (must be > 0).
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* @param height the height (must be > 0).
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* @param type the image type (see the list of valid types above).
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*
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* @throws IllegalArgumentException if <code>width</code> or
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* <code>height</code> is less than or equal to zero.
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* @throws IllegalArgumentException if <code>type</code> is not one of the
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* specified values.
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*/
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public BufferedImage(int width, int height, int type)
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{
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SampleModel sm = null;
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ColorModel cm = null;
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boolean premultiplied = (type == BufferedImage.TYPE_INT_ARGB_PRE
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|| type == BufferedImage.TYPE_4BYTE_ABGR_PRE);
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switch( type )
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{
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case BufferedImage.TYPE_INT_RGB:
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sm = new SinglePixelPackedSampleModel( DataBuffer.TYPE_INT,
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width, height,
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new int[]{ 0x00FF0000,
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0x0000FF00,
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0x000000FF } ) ;
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cm = new DirectColorModel( 24, 0xff0000, 0xff00, 0xff );
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break;
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case BufferedImage.TYPE_3BYTE_BGR:
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sm = new PixelInterleavedSampleModel( DataBuffer.TYPE_BYTE,
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width, height,
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3, width * 3,
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new int[]{ 2, 1, 0 } );
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cm = new ComponentColorModel(ColorSpace.getInstance(ColorSpace.CS_sRGB),
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false, false,
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BufferedImage.OPAQUE,
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DataBuffer.TYPE_BYTE);
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break;
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case BufferedImage.TYPE_INT_ARGB:
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case BufferedImage.TYPE_INT_ARGB_PRE:
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sm = new SinglePixelPackedSampleModel( DataBuffer.TYPE_INT,
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width, height,
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new int[]{ 0x00FF0000,
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0x0000FF00,
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0x000000FF,
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0xFF000000 } );
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if (premultiplied)
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cm = new DirectColorModel( ColorSpace.getInstance(ColorSpace.CS_sRGB),
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32, 0xff0000, 0xff00, 0xff, 0xff000000,
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true,
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Buffers.smallestAppropriateTransferType(32));
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else
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cm = new DirectColorModel( 32, 0xff0000, 0xff00, 0xff, 0xff000000 );
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break;
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case BufferedImage.TYPE_4BYTE_ABGR:
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case BufferedImage.TYPE_4BYTE_ABGR_PRE:
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sm = new PixelInterleavedSampleModel(DataBuffer.TYPE_BYTE,
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width, height,
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4, 4*width,
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new int[]{3, 2, 1, 0});
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cm = new ComponentColorModel(ColorSpace.getInstance(ColorSpace.CS_sRGB),
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true, premultiplied,
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BufferedImage.TRANSLUCENT,
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DataBuffer.TYPE_BYTE);
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break;
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case BufferedImage.TYPE_INT_BGR:
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sm = new SinglePixelPackedSampleModel( DataBuffer.TYPE_INT,
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width, height,
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new int[]{ 0x000000FF,
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0x0000FF00,
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0x00FF0000 } ) ;
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cm = new DirectColorModel( 24, 0xff, 0xff00, 0xff0000 );
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break;
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case BufferedImage.TYPE_USHORT_565_RGB:
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sm = new SinglePixelPackedSampleModel( DataBuffer.TYPE_USHORT,
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width, height,
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new int[]{ 0xF800,
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0x7E0,
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0x1F } ) ;
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cm = new DirectColorModel( 16, 0xF800, 0x7E0, 0x1F );
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break;
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case BufferedImage.TYPE_USHORT_555_RGB:
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sm = new SinglePixelPackedSampleModel( DataBuffer.TYPE_USHORT,
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width, height,
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new int[]{ 0x7C00,
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0x3E0,
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0x1F } ) ;
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cm = new DirectColorModel( 15, 0x7C00, 0x3E0, 0x1F );
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break;
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case BufferedImage.TYPE_BYTE_INDEXED:
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cm = createDefaultIndexedColorModel( false );
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case BufferedImage.TYPE_BYTE_GRAY:
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sm = new PixelInterleavedSampleModel( DataBuffer.TYPE_BYTE,
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width, height,
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1, width, new int[]{ 0 } );
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break;
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case BufferedImage.TYPE_USHORT_GRAY:
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sm = new PixelInterleavedSampleModel( DataBuffer.TYPE_USHORT,
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width, height,
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1, width, new int[]{ 0 } );
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break;
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case BufferedImage.TYPE_BYTE_BINARY:
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cm = createDefaultIndexedColorModel( true );
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sm = new MultiPixelPackedSampleModel(DataBuffer.TYPE_BYTE,
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width, height, 1);
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break;
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default:
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sm = null;
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}
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if( sm == null )
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throw new IllegalArgumentException("Unknown predefined image type.");
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if( cm == null ) // only for the grayscale types
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{
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int buftype;
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int[] bits = new int[1];
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if( type == BufferedImage.TYPE_BYTE_GRAY )
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{
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buftype = DataBuffer.TYPE_BYTE;
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bits[0] = 8;
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}
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else
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{
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buftype = DataBuffer.TYPE_USHORT;
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bits[0] = 16;
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}
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ColorSpace graySpace = ColorSpace.getInstance( ColorSpace.CS_GRAY );
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cm = new ComponentColorModel( graySpace, bits, false, false,
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Transparency.OPAQUE, buftype );
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}
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WritableRaster rst = null;
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// Attempt to create an accelerated backend for this image
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GraphicsEnvironment env = GraphicsEnvironment.getLocalGraphicsEnvironment();
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if (env instanceof ClasspathGraphicsEnvironment)
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rst = ((ClasspathGraphicsEnvironment)env).createRaster(cm, sm);
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// Default to a standard Java raster & databuffer if needed
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if (rst == null)
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rst = Raster.createWritableRaster(sm, new Point( 0, 0 ) );
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init(cm, rst, premultiplied,
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null, // no properties
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type );
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}
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public BufferedImage(int w, int h, int type, IndexColorModel indexcolormodel)
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{
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if ((type != TYPE_BYTE_BINARY) && (type != TYPE_BYTE_INDEXED))
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throw new IllegalArgumentException("Type must be TYPE_BYTE_BINARY or TYPE_BYTE_INDEXED");
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if( indexcolormodel.getMapSize() > 16 && type == TYPE_BYTE_BINARY )
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throw new IllegalArgumentException("Type TYPE_BYTE_BINARY cannot have a larger than 16-color palette.");
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if( indexcolormodel.getMapSize() > 256 )
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throw new IllegalArgumentException("Byte type cannot have a larger than 256-color palette.");
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init( indexcolormodel,
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indexcolormodel.createCompatibleWritableRaster(w, h),
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indexcolormodel.isAlphaPremultiplied(),
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null, // no properties
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type );
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}
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public BufferedImage(ColorModel colormodel, WritableRaster writableraster,
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boolean premultiplied, Hashtable<?,?> properties)
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{
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init(colormodel, writableraster, premultiplied, properties, TYPE_CUSTOM);
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}
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private void init(ColorModel cm, WritableRaster writableraster,
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boolean premultiplied, Hashtable properties, int type)
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{
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raster = writableraster;
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colorModel = cm;
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this.properties = properties;
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isPremultiplied = premultiplied;
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this.type = type;
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}
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/**
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* Creates the default palettes for the predefined indexed color types
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* (256-color or black-and-white)
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*
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* @param binary - If <code>true</code>, a black and white palette,
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* otherwise a default 256-color palette is returned.
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*/
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private IndexColorModel createDefaultIndexedColorModel( boolean binary )
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{
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if( binary )
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{
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byte[] t = new byte[]{ 0, (byte)255 };
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return new IndexColorModel( 1, 2, t, t, t );
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}
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byte[] r = new byte[256];
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byte[] g = new byte[256];
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byte[] b = new byte[256];
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int index = 0;
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for( int i = 0; i < 6; i++ )
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for( int j = 0; j < 6; j++ )
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for( int k = 0; k < 6; k++ )
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{
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r[ index ] = (byte)(i * 51);
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g[ index ] = (byte)(j * 51);
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b[ index ] = (byte)(k * 51);
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index++;
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}
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while( index < 256 )
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{
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r[ index ] = g[ index ] = b[ index ] =
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(byte)(18 + (index - 216) * 6);
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index++;
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}
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return new IndexColorModel( 8, 256, r, g, b );
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}
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public void coerceData(boolean premultiplied)
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{
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colorModel = colorModel.coerceData(raster, premultiplied);
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isPremultiplied = premultiplied;
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}
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public WritableRaster copyData(WritableRaster dest)
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{
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if (dest == null)
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dest = raster.createCompatibleWritableRaster(getMinX(), getMinY(),
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getWidth(),getHeight());
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int x = dest.getMinX();
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int y = dest.getMinY();
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int w = dest.getWidth();
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int h = dest.getHeight();
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// create a src child that has the right bounds...
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WritableRaster src =
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raster.createWritableChild(x, y, w, h, x, y,
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null); // same bands
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if (src.getSampleModel () instanceof ComponentSampleModel
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&& dest.getSampleModel () instanceof ComponentSampleModel)
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// Refer to ComponentDataBlitOp for optimized data blitting:
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ComponentDataBlitOp.INSTANCE.filter(src, dest);
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else
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{
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// slower path
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int samples[] = src.getPixels (x, y, w, h, (int [])null);
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dest.setPixels (x, y, w, h, samples);
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}
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return dest;
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}
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public Graphics2D createGraphics()
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{
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GraphicsEnvironment env;
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env = GraphicsEnvironment.getLocalGraphicsEnvironment ();
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return env.createGraphics (this);
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}
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public void flush()
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{
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}
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public WritableRaster getAlphaRaster()
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{
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return colorModel.getAlphaRaster(raster);
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}
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public ColorModel getColorModel()
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{
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return colorModel;
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}
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public Raster getData()
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{
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return copyData(null);
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/* TODO: this might be optimized by returning the same
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raster (not writable) as long as image data doesn't change. */
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}
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public Raster getData(Rectangle rectangle)
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{
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WritableRaster dest =
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raster.createCompatibleWritableRaster(rectangle);
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return copyData(dest);
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}
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public Graphics getGraphics()
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{
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return createGraphics();
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}
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public int getHeight()
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{
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return raster.getHeight();
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}
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public int getHeight(ImageObserver imageobserver)
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{
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return getHeight();
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}
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public int getMinTileX()
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{
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return 0;
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}
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public int getMinTileY()
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{
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return 0;
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}
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public int getMinX()
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{
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return 0;
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}
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public int getMinY()
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{
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return 0;
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}
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public int getNumXTiles()
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{
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return 1;
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}
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public int getNumYTiles()
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{
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return 1;
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}
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/**
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* Returns the value of the specified property, or
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* {@link Image#UndefinedProperty} if the property is not defined.
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*
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* @param string the property key (<code>null</code> not permitted).
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*
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* @return The property value.
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*
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* @throws NullPointerException if <code>string</code> is <code>null</code>.
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*/
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public Object getProperty(String string)
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{
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if (string == null)
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throw new NullPointerException("The property name cannot be null.");
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Object result = Image.UndefinedProperty;
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if (properties != null)
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{
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Object v = properties.get(string);
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if (v != null)
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result = v;
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}
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return result;
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}
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public Object getProperty(String string, ImageObserver imageobserver)
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{
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return getProperty(string);
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}
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/**
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* Returns <code>null</code> always.
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*
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* @return <code>null</code> always.
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*/
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public String[] getPropertyNames()
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{
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// This method should always return null, see:
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// http://bugs.sun.com/bugdatabase/view_bug.do?bug_id=4640609
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return null;
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}
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public int getRGB(int x, int y)
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{
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Object rgbElem = raster.getDataElements(x, y, null);
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return colorModel.getRGB(rgbElem);
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}
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public int[] getRGB(int startX, int startY, int w, int h, int[] rgbArray,
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int offset, int scanlineStride)
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{
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if (rgbArray == null)
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{
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/*
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000000000000000000
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00000[#######----- [ = start
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-----########----- ] = end
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-----#######]00000
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000000000000000000
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*/
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int size = (h-1)*scanlineStride + w;
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rgbArray = new int[size];
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}
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int endX = startX + w;
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int endY = startY + h;
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|
/* *TODO*:
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|
Opportunity for optimization by examining color models...
|
|
|
|
Perhaps wrap the rgbArray up in a WritableRaster with packed
|
|
sRGB color model and perform optimized rendering into the
|
|
array. */
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|
|
|
Object rgbElem = null;
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|
for (int y=startY; y<endY; y++)
|
|
{
|
|
int xoffset = offset;
|
|
for (int x=startX; x<endX; x++)
|
|
{
|
|
int rgb;
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|
rgbElem = raster.getDataElements(x, y, rgbElem);
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|
rgb = colorModel.getRGB(rgbElem);
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|
rgbArray[xoffset++] = rgb;
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|
}
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|
offset += scanlineStride;
|
|
}
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|
return rgbArray;
|
|
}
|
|
|
|
public WritableRaster getRaster()
|
|
{
|
|
return raster;
|
|
}
|
|
|
|
public SampleModel getSampleModel()
|
|
{
|
|
return raster.getSampleModel();
|
|
}
|
|
|
|
public ImageProducer getSource()
|
|
{
|
|
return new ImageProducer()
|
|
{
|
|
Vector<ImageConsumer> consumers = new Vector<ImageConsumer>();
|
|
|
|
public void addConsumer(ImageConsumer ic)
|
|
{
|
|
if(!consumers.contains(ic))
|
|
consumers.add(ic);
|
|
}
|
|
|
|
public boolean isConsumer(ImageConsumer ic)
|
|
{
|
|
return consumers.contains(ic);
|
|
}
|
|
|
|
public void removeConsumer(ImageConsumer ic)
|
|
{
|
|
consumers.remove(ic);
|
|
}
|
|
|
|
public void startProduction(ImageConsumer ic)
|
|
{
|
|
int x = 0;
|
|
int y = 0;
|
|
int width = getWidth();
|
|
int height = getHeight();
|
|
int stride = width;
|
|
int offset = 0;
|
|
int[] pixels = getRGB(x, y,
|
|
width, height,
|
|
(int[])null, offset, stride);
|
|
// We already convert the color to RGB in the getRGB call, so
|
|
// we pass a simple RGB color model to the consumers.
|
|
ColorModel model = new DirectColorModel(32, 0xff0000, 0xff00, 0xff,
|
|
0xff000000);
|
|
|
|
consumers.add(ic);
|
|
|
|
for(int i = 0; i < consumers.size(); i++)
|
|
{
|
|
ImageConsumer c = consumers.elementAt(i);
|
|
c.setHints(ImageConsumer.SINGLEPASS);
|
|
c.setDimensions(getWidth(), getHeight());
|
|
c.setPixels(x, y, width, height, model, pixels, offset, stride);
|
|
c.imageComplete(ImageConsumer.STATICIMAGEDONE);
|
|
}
|
|
}
|
|
|
|
public void requestTopDownLeftRightResend(ImageConsumer ic)
|
|
{
|
|
startProduction(ic);
|
|
}
|
|
|
|
};
|
|
}
|
|
|
|
public Vector<RenderedImage> getSources()
|
|
{
|
|
return null;
|
|
}
|
|
|
|
public BufferedImage getSubimage(int x, int y, int w, int h)
|
|
{
|
|
WritableRaster subRaster =
|
|
getRaster().createWritableChild(x, y, w, h, 0, 0, null);
|
|
|
|
return new BufferedImage(getColorModel(), subRaster, isPremultiplied,
|
|
properties);
|
|
}
|
|
|
|
public Raster getTile(int tileX, int tileY)
|
|
{
|
|
return getWritableTile(tileX, tileY);
|
|
}
|
|
|
|
public int getTileGridXOffset()
|
|
{
|
|
return 0; // according to javadocs
|
|
}
|
|
|
|
public int getTileGridYOffset()
|
|
{
|
|
return 0; // according to javadocs
|
|
}
|
|
|
|
public int getTileHeight()
|
|
{
|
|
return getHeight(); // image is one big tile
|
|
}
|
|
|
|
public int getTileWidth()
|
|
{
|
|
return getWidth(); // image is one big tile
|
|
}
|
|
|
|
public int getType()
|
|
{
|
|
return type;
|
|
}
|
|
|
|
public int getWidth()
|
|
{
|
|
return raster.getWidth();
|
|
}
|
|
|
|
public int getWidth(ImageObserver imageobserver)
|
|
{
|
|
return getWidth();
|
|
}
|
|
|
|
public WritableRaster getWritableTile(int tileX, int tileY)
|
|
{
|
|
isTileWritable(tileX, tileY); // for exception
|
|
return raster;
|
|
}
|
|
|
|
private static final Point[] tileIndices = { new Point() };
|
|
|
|
public Point[] getWritableTileIndices()
|
|
{
|
|
return tileIndices;
|
|
}
|
|
|
|
public boolean hasTileWriters()
|
|
{
|
|
return true;
|
|
}
|
|
|
|
public boolean isAlphaPremultiplied()
|
|
{
|
|
return isPremultiplied;
|
|
}
|
|
|
|
public boolean isTileWritable(int tileX, int tileY)
|
|
{
|
|
if ((tileX != 0) || (tileY != 0))
|
|
throw new ArrayIndexOutOfBoundsException("only tile is (0,0)");
|
|
return true;
|
|
}
|
|
|
|
public void releaseWritableTile(int tileX, int tileY)
|
|
{
|
|
isTileWritable(tileX, tileY); // for exception
|
|
}
|
|
|
|
//public void removeTileObserver(TileObserver tileobserver) {}
|
|
|
|
public void setData(Raster src)
|
|
{
|
|
int x = src.getMinX();
|
|
int y = src.getMinY();
|
|
int w = src.getWidth();
|
|
int h = src.getHeight();
|
|
|
|
// create a dest child that has the right bounds...
|
|
WritableRaster dest =
|
|
raster.createWritableChild(x, y, w, h, x, y, null);
|
|
|
|
if (src.getSampleModel () instanceof ComponentSampleModel
|
|
&& dest.getSampleModel () instanceof ComponentSampleModel)
|
|
|
|
// Refer to ComponentDataBlitOp for optimized data blitting:
|
|
ComponentDataBlitOp.INSTANCE.filter(src, dest);
|
|
else
|
|
{
|
|
// slower path
|
|
int samples[] = src.getPixels (x, y, w, h, (int [])null);
|
|
dest.setPixels (x, y, w, h, samples);
|
|
}
|
|
}
|
|
|
|
public void setRGB(int x, int y, int argb)
|
|
{
|
|
Object rgbElem = colorModel.getDataElements(argb, null);
|
|
raster.setDataElements(x, y, rgbElem);
|
|
}
|
|
|
|
public void setRGB(int startX, int startY, int w, int h,
|
|
int[] argbArray, int offset, int scanlineStride)
|
|
{
|
|
int endX = startX + w;
|
|
int endY = startY + h;
|
|
|
|
Object rgbElem = null;
|
|
for (int y=startY; y<endY; y++)
|
|
{
|
|
int xoffset = offset;
|
|
for (int x=startX; x<endX; x++)
|
|
{
|
|
int argb = argbArray[xoffset++];
|
|
rgbElem = colorModel.getDataElements(argb, rgbElem);
|
|
raster.setDataElements(x, y, rgbElem);
|
|
}
|
|
offset += scanlineStride;
|
|
}
|
|
}
|
|
|
|
public String toString()
|
|
{
|
|
CPStringBuilder buf;
|
|
|
|
buf = new CPStringBuilder(/* estimated length */ 120);
|
|
buf.append("BufferedImage@");
|
|
buf.append(Integer.toHexString(hashCode()));
|
|
buf.append(": type=");
|
|
buf.append(type);
|
|
buf.append(' ');
|
|
buf.append(colorModel);
|
|
buf.append(' ');
|
|
buf.append(raster);
|
|
|
|
return buf.toString();
|
|
}
|
|
|
|
|
|
/**
|
|
* Adds a tile observer. If the observer is already present, it receives
|
|
* multiple notifications.
|
|
*
|
|
* @param to The TileObserver to add.
|
|
*/
|
|
public void addTileObserver (TileObserver to)
|
|
{
|
|
if (tileObservers == null)
|
|
tileObservers = new Vector<TileObserver>();
|
|
|
|
tileObservers.add (to);
|
|
}
|
|
|
|
/**
|
|
* Removes a tile observer. If the observer was not registered,
|
|
* nothing happens. If the observer was registered for multiple
|
|
* notifications, it is now registered for one fewer notification.
|
|
*
|
|
* @param to The TileObserver to remove.
|
|
*/
|
|
public void removeTileObserver (TileObserver to)
|
|
{
|
|
if (tileObservers == null)
|
|
return;
|
|
|
|
tileObservers.remove (to);
|
|
}
|
|
|
|
/**
|
|
* Return the transparency type.
|
|
*
|
|
* @return One of {@link #OPAQUE}, {@link #BITMASK}, or {@link #TRANSLUCENT}.
|
|
* @see Transparency#getTransparency()
|
|
* @since 1.5
|
|
*/
|
|
public int getTransparency()
|
|
{
|
|
return colorModel.getTransparency();
|
|
}
|
|
}
|