📄 integervalue.java
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/* * ProGuard -- shrinking, optimization, obfuscation, and preverification * of Java bytecode. * * Copyright (c) 2002-2007 Eric Lafortune (eric@graphics.cornell.edu) * * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License as published by the Free * Software Foundation; either version 2 of the License, or (at your option) * any later version. * * This program 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 GNU General Public License for * more details. * * You should have received a copy of the GNU General Public License along * with this program; if not, write to the Free Software Foundation, Inc., * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA */package proguard.evaluation.value;import proguard.classfile.ClassConstants;/** * This class represents a partially evaluated integer value. * * @author Eric Lafortune */public class IntegerValue extends Category1Value{ /** * Returns the specific integer value, if applicable. */ public int value() { return 0; } // Basic binary methods. /** * Returns the generalization of this IntegerValue and the given other * IntegerValue. */ public IntegerValue generalize(IntegerValue other) { return this; } /** * Returns the sum of this IntegerValue and the given IntegerValue. */ public IntegerValue add(IntegerValue other) { return this; } /** * Returns the difference of this IntegerValue and the given IntegerValue. */ public IntegerValue subtract(IntegerValue other) { return this; } /** * Returns the difference of the given IntegerValue and this IntegerValue. */ public IntegerValue subtractFrom(IntegerValue other) { return this; } /** * Returns the product of this IntegerValue and the given IntegerValue. */ public IntegerValue multiply(IntegerValue other) throws ArithmeticException { return this; } /** * Returns the quotient of this IntegerValue and the given IntegerValue. */ public IntegerValue divide(IntegerValue other) throws ArithmeticException { return this; } /** * Returns the quotient of the given IntegerValue and this IntegerValue. */ public IntegerValue divideOf(IntegerValue other) throws ArithmeticException { return this; } /** * Returns the remainder of this IntegerValue divided by the given * IntegerValue. */ public IntegerValue remainder(IntegerValue other) throws ArithmeticException { return this; } /** * Returns the remainder of the given IntegerValue divided by this * IntegerValue. */ public IntegerValue remainderOf(IntegerValue other) throws ArithmeticException { return this; } /** * Returns this IntegerValue, shifted left by the given IntegerValue. */ public IntegerValue shiftLeft(IntegerValue other) { return this; } /** * Returns the given IntegerValue, shifted left by this IntegerValue. */ public IntegerValue shiftLeftOf(IntegerValue other) { return this; } /** * Returns this IntegerValue, shifted right by the given IntegerValue. */ public IntegerValue shiftRight(IntegerValue other) { return this; } /** * Returns the given IntegerValue, shifted right by this IntegerValue. */ public IntegerValue shiftRightOf(IntegerValue other) { return this; } /** * Returns this unsigned IntegerValue, shifted left by the given * IntegerValue. */ public IntegerValue unsignedShiftRight(IntegerValue other) { return this; } /** * Returns the given unsigned IntegerValue, shifted left by this * IntegerValue. */ public IntegerValue unsignedShiftRightOf(IntegerValue other) { return this; } /** * Returns the given LongValue, shifted left by this IntegerValue. */ public LongValue shiftLeftOf(LongValue other) { return ValueFactory.LONG_VALUE; } /** * Returns the given LongValue, shifted right by this IntegerValue. */ public LongValue shiftRightOf(LongValue other) { return ValueFactory.LONG_VALUE; } /** * Returns the given unsigned LongValue, shifted right by this IntegerValue. */ public LongValue unsignedShiftRightOf(LongValue other) { return ValueFactory.LONG_VALUE; } /** * Returns the logical <i>and</i> of this IntegerValue and the given * IntegerValue. */ public IntegerValue and(IntegerValue other) { return this; } /** * Returns the logical <i>or</i> of this IntegerValue and the given * IntegerValue. */ public IntegerValue or(IntegerValue other) { return this; } /** * Returns the logical <i>xor</i> of this IntegerValue and the given * IntegerValue. */ public IntegerValue xor(IntegerValue other) { return this; } /** * Returns whether this IntegerValue and the given IntegerValue are equal: * <code>NEVER</code>, <code>MAYBE</code>, or <code>ALWAYS</code>. */ public int equal(IntegerValue other) { return MAYBE; } /** * Returns whether this IntegerValue is less than the given IntegerValue: * <code>NEVER</code>, <code>MAYBE</code>, or <code>ALWAYS</code>. */ public int lessThan(IntegerValue other) { return MAYBE; } /** * Returns whether this IntegerValue is less than or equal to the given * IntegerValue: <code>NEVER</code>, <code>MAYBE</code>, or * <code>ALWAYS</code>. */ public int lessThanOrEqual(IntegerValue other) { return MAYBE; } // Derived binary methods. /** * Returns whether this IntegerValue and the given IntegerValue are different: * <code>NEVER</code>, <code>MAYBE</code>, or <code>ALWAYS</code>. */ public final int notEqual(IntegerValue other) { return -equal(other); } /** * Returns whether this IntegerValue is greater than the given IntegerValue: * <code>NEVER</code>, <code>MAYBE</code>, or <code>ALWAYS</code>. */ public final int greaterThan(IntegerValue other) { return -lessThanOrEqual(other); } /** * Returns whether this IntegerValue is greater than or equal to the given IntegerValue: * <code>NEVER</code>, <code>MAYBE</code>, or <code>ALWAYS</code>. */ public final int greaterThanOrEqual(IntegerValue other) { return -lessThan(other); } // Basic unary methods. /** * Returns the negated value of this IntegerValue. */ public IntegerValue negate() { return this; } /** * Converts this IntegerValue to a byte IntegerValue. */ public IntegerValue convertToByte(ValueFactory valueFactory) { return this; } /** * Converts this IntegerValue to a character IntegerValue. */ public IntegerValue convertToCharacter(ValueFactory valueFactory) { return this; } /** * Converts this IntegerValue to a short IntegerValue. */ public IntegerValue convertToShort(ValueFactory valueFactory) { return this; } /** * Converts this IntegerValue to a LongValue. */ public LongValue convertToLong(ValueFactory valueFactory) { return valueFactory.createLongValue(); } /** * Converts this IntegerValue to a FloatValue. */ public FloatValue convertToFloat(ValueFactory valueFactory) { return valueFactory.createFloatValue(); } /** * Converts this IntegerValue to a DoubleValue. */ public DoubleValue convertToDouble(ValueFactory valueFactory) { return valueFactory.createDoubleValue(); } // Similar binary methods, but this time with more specific arguments. /** * Returns the generalization of this IntegerValue and the given other * SpecificIntegerValue. */ public IntegerValue generalize(SpecificIntegerValue other) { return this; } /** * Returns the sum of this IntegerValue and the given SpecificIntegerValue. */ public IntegerValue add(SpecificIntegerValue other) { return this; } /** * Returns the difference of this IntegerValue and the given SpecificIntegerValue. */ public IntegerValue subtract(SpecificIntegerValue other) { return this; } /** * Returns the difference of the given SpecificIntegerValue and this IntegerValue. */ public IntegerValue subtractFrom(SpecificIntegerValue other) { return this; } /** * Returns the product of this IntegerValue and the given SpecificIntegerValue. */ public IntegerValue multiply(SpecificIntegerValue other) { return this; } /** * Returns the quotient of this IntegerValue and the given * SpecificIntegerValue. */ public IntegerValue divide(SpecificIntegerValue other) { return this; } /** * Returns the quotient of the given SpecificIntegerValue and this * IntegerValue. */ public IntegerValue divideOf(SpecificIntegerValue other) { return this; } /** * Returns the remainder of this IntegerValue divided by the given * SpecificIntegerValue. */ public IntegerValue remainder(SpecificIntegerValue other) { return this; } /** * Returns the remainder of the given SpecificIntegerValue divided by this * IntegerValue. */ public IntegerValue remainderOf(SpecificIntegerValue other) { return this; } /** * Returns this IntegerValue, shifted left by the given SpecificIntegerValue. */ public IntegerValue shiftLeft(SpecificIntegerValue other) { return this; } /** * Returns the given SpecificIntegerValue, shifted left by this IntegerValue. */ public IntegerValue shiftLeftOf(SpecificIntegerValue other) { return this; } /** * Returns this IntegerValue, shifted right by the given SpecificIntegerValue. */ public IntegerValue shiftRight(SpecificIntegerValue other) { return this; } /** * Returns the given SpecificIntegerValue, shifted right by this IntegerValue. */ public IntegerValue shiftRightOf(SpecificIntegerValue other) { return this; } /** * Returns this unsigned IntegerValue, shifted right by the given * SpecificIntegerValue. */ public IntegerValue unsignedShiftRight(SpecificIntegerValue other) { return this; } /** * Returns the given unsigned SpecificIntegerValue, shifted right by this * IntegerValue. */ public IntegerValue unsignedShiftRightOf(SpecificIntegerValue other) { return this; } /** * Returns the given SpecificLongValue, shifted left by this IntegerValue. */ public LongValue shiftLeftOf(SpecificLongValue other) { return ValueFactory.LONG_VALUE; } /** * Returns the given SpecificLongValue, shifted right by this IntegerValue. */ public LongValue shiftRightOf(SpecificLongValue other) { return ValueFactory.LONG_VALUE; } /** * Returns the given unsigned SpecificLongValue, shifted right by this * IntegerValue. */ public LongValue unsignedShiftRightOf(SpecificLongValue other) { return ValueFactory.LONG_VALUE; } /** * Returns the logical <i>and</i> of this IntegerValue and the given * SpecificIntegerValue. */ public IntegerValue and(SpecificIntegerValue other) { return this; } /** * Returns the logical <i>or</i> of this IntegerValue and the given * SpecificIntegerValue. */ public IntegerValue or(SpecificIntegerValue other) { return this; } /** * Returns the logical <i>xor</i> of this IntegerValue and the given * SpecificIntegerValue. */ public IntegerValue xor(SpecificIntegerValue other) { return this; } /** * Returns whether this IntegerValue and the given SpecificIntegerValue are * equal: <code>NEVER</code>, <code>MAYBE</code>, or <code>ALWAYS</code>. */ public int equal(SpecificIntegerValue other) { return MAYBE; } /** * Returns whether this IntegerValue is less than the given * SpecificIntegerValue: <code>NEVER</code>, <code>MAYBE</code>, or * <code>ALWAYS</code>. */ public int lessThan(SpecificIntegerValue other) { return MAYBE; } /** * Returns whether this IntegerValue is less than or equal to the given * SpecificIntegerValue: <code>NEVER</code>, <code>MAYBE</code>, or * <code>ALWAYS</code>. */ public int lessThanOrEqual(SpecificIntegerValue other) { return MAYBE; } // Derived binary methods. /** * Returns whether this IntegerValue and the given SpecificIntegerValue are * different: <code>NEVER</code>, <code>MAYBE</code>, or <code>ALWAYS</code>. */ public final int notEqual(SpecificIntegerValue other) { return -equal(other); } /** * Returns whether this IntegerValue is greater than the given * SpecificIntegerValue: <code>NEVER</code>, <code>MAYBE</code>, or * <code>ALWAYS</code>. */ public final int greaterThan(SpecificIntegerValue other) { return -lessThanOrEqual(other); } /** * Returns whether this IntegerValue is greater than or equal to the given * SpecificIntegerValue: <code>NEVER</code>, <code>MAYBE</code>, or * <code>ALWAYS</code>. */ public final int greaterThanOrEqual(SpecificIntegerValue other) { return -lessThan(other); } // Implementations for Value. public final IntegerValue integerValue() { return this; } public final Value generalize(Value other) { return this.generalize(other.integerValue()); } public final int computationalType() { return TYPE_INTEGER; } public final String internalType() { return "" + ClassConstants.INTERNAL_TYPE_INT; } // Implementations for Object. public boolean equals(Object object) { return object != null && this.getClass() == object.getClass(); } public int hashCode() { return this.getClass().hashCode(); } public String toString() { return "i"; }}
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