001/* 002 * $RCSfile: InvertedCMYKColorSpace.java,v $ 003 * 004 * 005 * Copyright (c) 2006 Sun Microsystems, Inc. All Rights Reserved. 006 * 007 * Redistribution and use in source and binary forms, with or without 008 * modification, are permitted provided that the following conditions 009 * are met: 010 * 011 * - Redistribution of source code must retain the above copyright 012 * notice, this list of conditions and the following disclaimer. 013 * 014 * - Redistribution in binary form must reproduce the above copyright 015 * notice, this list of conditions and the following disclaimer in 016 * the documentation and/or other materials provided with the 017 * distribution. 018 * 019 * Neither the name of Sun Microsystems, Inc. or the names of 020 * contributors may be used to endorse or promote products derived 021 * from this software without specific prior written permission. 022 * 023 * This software is provided "AS IS," without a warranty of any 024 * kind. ALL EXPRESS OR IMPLIED CONDITIONS, REPRESENTATIONS AND 025 * WARRANTIES, INCLUDING ANY IMPLIED WARRANTY OF MERCHANTABILITY, 026 * FITNESS FOR A PARTICULAR PURPOSE OR NON-INFRINGEMENT, ARE HEREBY 027 * EXCLUDED. SUN MIDROSYSTEMS, INC. ("SUN") AND ITS LICENSORS SHALL 028 * NOT BE LIABLE FOR ANY DAMAGES SUFFERED BY LICENSEE AS A RESULT OF 029 * USING, MODIFYING OR DISTRIBUTING THIS SOFTWARE OR ITS 030 * DERIVATIVES. IN NO EVENT WILL SUN OR ITS LICENSORS BE LIABLE FOR 031 * ANY LOST REVENUE, PROFIT OR DATA, OR FOR DIRECT, INDIRECT, SPECIAL, 032 * CONSEQUENTIAL, INCIDENTAL OR PUNITIVE DAMAGES, HOWEVER CAUSED AND 033 * REGARDLESS OF THE THEORY OF LIABILITY, ARISING OUT OF THE USE OF OR 034 * INABILITY TO USE THIS SOFTWARE, EVEN IF SUN HAS BEEN ADVISED OF THE 035 * POSSIBILITY OF SUCH DAMAGES. 036 * 037 * You acknowledge that this software is not designed or intended for 038 * use in the design, construction, operation or maintenance of any 039 * nuclear facility. 040 * 041 * $Revision: 1.1 $ 042 * $Date: 2006/04/24 20:53:01 $ 043 * $State: Exp $ 044 */ 045package com.github.jaiimageio.impl.common; 046 047import java.awt.color.ColorSpace; 048 049/** 050 * Singleton class representing a simple, mathematically defined 051 * inverted CMYK color space. 052 */ 053public final class InvertedCMYKColorSpace extends ColorSpace { 054 private static ColorSpace theInstance = null; 055 private ColorSpace csRGB; 056 057 /** The exponent for gamma correction. */ 058 private static final double power1 = 1.0 / 2.4; 059 060 public static final synchronized ColorSpace getInstance() { 061 if(theInstance == null) { 062 theInstance = new InvertedCMYKColorSpace(); 063 } 064 return theInstance; 065 } 066 067 private InvertedCMYKColorSpace() { 068 super(TYPE_CMYK, 4); 069 csRGB = ColorSpace.getInstance(ColorSpace.CS_LINEAR_RGB); 070 } 071 072 public boolean equals(Object o) { 073 return o != null && o instanceof InvertedCMYKColorSpace; 074 } 075 076 public float[] toRGB(float[] colorvalue) { 077 float C = colorvalue[0]; 078 float M = colorvalue[1]; 079 float Y = colorvalue[2]; 080 float K = colorvalue[3]; 081 082 // Convert from CMYK to linear RGB. 083 float[] rgbvalue = new float[] {K*C, K*M, K*Y}; 084 085 // Convert from linear RGB to sRGB. 086 for (int i = 0; i < 3; i++) { 087 float v = rgbvalue[i]; 088 089 if (v < 0.0F) v = 0.0F; 090 091 if (v < 0.0031308F) { 092 rgbvalue[i] = 12.92F * v; 093 } else { 094 if (v > 1.0F) v = 1.0F; 095 096 rgbvalue[i] = (float)(1.055 * Math.pow(v, power1) - 0.055); 097 } 098 } 099 100 return rgbvalue; 101 } 102 103 public float[] fromRGB(float[] rgbvalue) { 104 // Convert from sRGB to linear RGB. 105 for (int i = 0; i < 3; i++) { 106 if (rgbvalue[i] < 0.040449936F) { 107 rgbvalue[i] /= 12.92F; 108 } else { 109 rgbvalue[i] = 110 (float)(Math.pow((rgbvalue[i] + 0.055)/1.055, 2.4)); 111 } 112 } 113 114 // Convert from linear RGB to CMYK. 115 float C = rgbvalue[0]; 116 float M = rgbvalue[1]; 117 float Y = rgbvalue[2]; 118 float K = Math.max(C, Math.max(M, Y)); 119 120 // If K == 0.0F, then C = M = Y = 0.0F. 121 if(K != 0.0F) { 122 C = C/K; 123 M = M/K; 124 Y = Y/K; 125 } else { // K == 0.0F 126 C = M = Y = 1.0F; 127 } 128 129 return new float[] {C, M, Y, K}; 130 } 131 132 public float[] toCIEXYZ(float[] colorvalue) { 133 return csRGB.toCIEXYZ(toRGB(colorvalue)); 134 } 135 136 public float[] fromCIEXYZ(float[] xyzvalue) { 137 return fromRGB(csRGB.fromCIEXYZ(xyzvalue)); 138 } 139}