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/*
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* Copyright 1996-2006 Sun Microsystems, Inc. All Rights Reserved.
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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*
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* This code is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License version 2 only, as
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* published by the Free Software Foundation. Sun designates this
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* particular file as subject to the "Classpath" exception as provided
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* by Sun in the LICENSE file that accompanied this code.
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*
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* This code is distributed in the hope that it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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* version 2 for more details (a copy is included in the LICENSE file that
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* accompanied this code).
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*
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* You should have received a copy of the GNU General Public License version
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* 2 along with this work; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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*
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* Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
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* CA 95054 USA or visit www.sun.com if you need additional information or
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* have any questions.
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*/
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package java.lang;
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/**
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* The {@code Short} class wraps a value of primitive type {@code
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* short} in an object. An object of type {@code Short} contains a
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* single field whose type is {@code short}.
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*
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* <p>In addition, this class provides several methods for converting
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* a {@code short} to a {@code String} and a {@code String} to a
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* {@code short}, as well as other constants and methods useful when
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* dealing with a {@code short}.
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*
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* @author Nakul Saraiya
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* @author Joseph D. Darcy
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* @see java.lang.Number
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* @since JDK1.1
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*/
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public final class Short extends Number implements Comparable<Short> {
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/**
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* A constant holding the minimum value a {@code short} can
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* have, -2<sup>15</sup>.
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*/
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public static final short MIN_VALUE = -32768;
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/**
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* A constant holding the maximum value a {@code short} can
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* have, 2<sup>15</sup>-1.
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*/
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public static final short MAX_VALUE = 32767;
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/**
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* The {@code Class} instance representing the primitive type
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* {@code short}.
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*/
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public static final Class<Short> TYPE = (Class<Short>) Class.getPrimitiveClass("short");
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/**
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* Returns a new {@code String} object representing the
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* specified {@code short}. The radix is assumed to be 10.
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*
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* @param s the {@code short} to be converted
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* @return the string representation of the specified {@code short}
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* @see java.lang.Integer#toString(int)
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*/
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public static String toString(short s) {
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return Integer.toString((int)s, 10);
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}
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/**
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* Parses the string argument as a signed {@code short} in the
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* radix specified by the second argument. The characters in the
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* string must all be digits, of the specified radix (as
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* determined by whether {@link java.lang.Character#digit(char,
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* int)} returns a nonnegative value) except that the first
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* character may be an ASCII minus sign {@code '-'}
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* (<code>'\u002D'</code>) to indicate a negative value or an
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* ASCII plus sign {@code '+'} (<code>'\u002B'</code>) to
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* indicate a positive value. The resulting {@code short} value
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* is returned.
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*
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* <p>An exception of type {@code NumberFormatException} is
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* thrown if any of the following situations occurs:
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* <ul>
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* <li> The first argument is {@code null} or is a string of
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* length zero.
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*
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* <li> The radix is either smaller than {@link
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* java.lang.Character#MIN_RADIX} or larger than {@link
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* java.lang.Character#MAX_RADIX}.
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*
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* <li> Any character of the string is not a digit of the
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* specified radix, except that the first character may be a minus
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* sign {@code '-'} (<code>'\u002D'</code>) or plus sign
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* {@code '+'} (<code>'\u002B'</code>) provided that the
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* string is longer than length 1.
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*
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* <li> The value represented by the string is not a value of type
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* {@code short}.
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* </ul>
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*
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* @param s the {@code String} containing the
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* {@code short} representation to be parsed
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* @param radix the radix to be used while parsing {@code s}
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* @return the {@code short} represented by the string
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* argument in the specified radix.
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* @throws NumberFormatException If the {@code String}
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* does not contain a parsable {@code short}.
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*/
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public static short parseShort(String s, int radix)
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throws NumberFormatException {
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int i = Integer.parseInt(s, radix);
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if (i < MIN_VALUE || i > MAX_VALUE)
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throw new NumberFormatException(
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"Value out of range. Value:\"" + s + "\" Radix:" + radix);
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return (short)i;
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}
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/**
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* Parses the string argument as a signed decimal {@code
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* short}. The characters in the string must all be decimal
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* digits, except that the first character may be an ASCII minus
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* sign {@code '-'} (<code>'\u002D'</code>) to indicate a
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* negative value or an ASCII plus sign {@code '+'}
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* (<code>'\u002B'</code>) to indicate a positive value. The
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* resulting {@code short} value is returned, exactly as if the
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* argument and the radix 10 were given as arguments to the {@link
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* #parseShort(java.lang.String, int)} method.
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*
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* @param s a {@code String} containing the {@code short}
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* representation to be parsed
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* @return the {@code short} value represented by the
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* argument in decimal.
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* @throws NumberFormatException If the string does not
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* contain a parsable {@code short}.
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*/
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public static short parseShort(String s) throws NumberFormatException {
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return parseShort(s, 10);
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}
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/**
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* Returns a {@code Short} object holding the value
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* extracted from the specified {@code String} when parsed
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* with the radix given by the second argument. The first argument
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* is interpreted as representing a signed {@code short} in
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* the radix specified by the second argument, exactly as if the
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* argument were given to the {@link #parseShort(java.lang.String,
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* int)} method. The result is a {@code Short} object that
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* represents the {@code short} value specified by the string.
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*
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* <p>In other words, this method returns a {@code Short} object
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* equal to the value of:
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*
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* <blockquote>
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* {@code new Short(Short.parseShort(s, radix))}
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* </blockquote>
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*
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* @param s the string to be parsed
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* @param radix the radix to be used in interpreting {@code s}
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* @return a {@code Short} object holding the value
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* represented by the string argument in the
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* specified radix.
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* @throws NumberFormatException If the {@code String} does
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* not contain a parsable {@code short}.
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*/
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public static Short valueOf(String s, int radix)
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throws NumberFormatException {
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return new Short(parseShort(s, radix));
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}
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/**
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* Returns a {@code Short} object holding the
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* value given by the specified {@code String}. The argument
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* is interpreted as representing a signed decimal
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* {@code short}, exactly as if the argument were given to
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* the {@link #parseShort(java.lang.String)} method. The result is
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* a {@code Short} object that represents the
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* {@code short} value specified by the string.
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*
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* <p>In other words, this method returns a {@code Short} object
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* equal to the value of:
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*
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* <blockquote>
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* {@code new Short(Short.parseShort(s))}
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* </blockquote>
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*
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* @param s the string to be parsed
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* @return a {@code Short} object holding the value
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* represented by the string argument
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* @throws NumberFormatException If the {@code String} does
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* not contain a parsable {@code short}.
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*/
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public static Short valueOf(String s) throws NumberFormatException {
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return valueOf(s, 10);
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}
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private static class ShortCache {
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private ShortCache(){}
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static final Short cache[] = new Short[-(-128) + 127 + 1];
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static {
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for(int i = 0; i < cache.length; i++)
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cache[i] = new Short((short)(i - 128));
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}
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}
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/**
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* Returns a {@code Short} instance representing the specified
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* {@code short} value.
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* If a new {@code Short} instance is not required, this method
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* should generally be used in preference to the constructor
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* {@link #Short(short)}, as this method is likely to yield
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* significantly better space and time performance by caching
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* frequently requested values.
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*
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* @param s a short value.
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* @return a {@code Short} instance representing {@code s}.
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* @since 1.5
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*/
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public static Short valueOf(short s) {
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final int offset = 128;
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int sAsInt = s;
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if (sAsInt >= -128 && sAsInt <= 127) { // must cache
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return ShortCache.cache[sAsInt + offset];
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}
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return new Short(s);
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}
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/**
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* Decodes a {@code String} into a {@code Short}.
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* Accepts decimal, hexadecimal, and octal numbers given by
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* the following grammar:
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*
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* <blockquote>
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* <dl>
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* <dt><i>DecodableString:</i>
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* <dd><i>Sign<sub>opt</sub> DecimalNumeral</i>
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* <dd><i>Sign<sub>opt</sub></i> {@code 0x} <i>HexDigits</i>
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* <dd><i>Sign<sub>opt</sub></i> {@code 0X} <i>HexDigits</i>
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* <dd><i>Sign<sub>opt</sub></i> {@code #} <i>HexDigits</i>
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* <dd><i>Sign<sub>opt</sub></i> {@code 0} <i>OctalDigits</i>
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* <p>
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* <dt><i>Sign:</i>
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* <dd>{@code -}
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* <dd>{@code +}
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* </dl>
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* </blockquote>
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*
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* <i>DecimalNumeral</i>, <i>HexDigits</i>, and <i>OctalDigits</i>
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* are defined in <a href="http://java.sun.com/docs/books/jls/second_edition/html/lexical.doc.html#48282">§3.10.1</a>
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* of the <a href="http://java.sun.com/docs/books/jls/html/">Java
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* Language Specification</a>.
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*
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* <p>The sequence of characters following an optional
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* sign and/or radix specifier ("{@code 0x}", "{@code 0X}",
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* "{@code #}", or leading zero) is parsed as by the {@code
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* Short.parseShort} method with the indicated radix (10, 16, or
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* 8). This sequence of characters must represent a positive
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* value or a {@link NumberFormatException} will be thrown. The
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* result is negated if first character of the specified {@code
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* String} is the minus sign. No whitespace characters are
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* permitted in the {@code String}.
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*
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* @param nm the {@code String} to decode.
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* @return a {@code Short} object holding the {@code short}
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* value represented by {@code nm}
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* @throws NumberFormatException if the {@code String} does not
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* contain a parsable {@code short}.
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* @see java.lang.Short#parseShort(java.lang.String, int)
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*/
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public static Short decode(String nm) throws NumberFormatException {
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int i = Integer.decode(nm);
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if (i < MIN_VALUE || i > MAX_VALUE)
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throw new NumberFormatException(
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"Value " + i + " out of range from input " + nm);
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return (short)i;
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}
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/**
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* The value of the {@code Short}.
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*
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* @serial
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*/
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private final short value;
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/**
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* Constructs a newly allocated {@code Short} object that
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* represents the specified {@code short} value.
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*
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* @param value the value to be represented by the
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* {@code Short}.
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*/
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public Short(short value) {
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this.value = value;
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}
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/**
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* Constructs a newly allocated {@code Short} object that
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* represents the {@code short} value indicated by the
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* {@code String} parameter. The string is converted to a
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* {@code short} value in exactly the manner used by the
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* {@code parseShort} method for radix 10.
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*
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* @param s the {@code String} to be converted to a
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* {@code Short}
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* @throws NumberFormatException If the {@code String}
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* does not contain a parsable {@code short}.
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* @see java.lang.Short#parseShort(java.lang.String, int)
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*/
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public Short(String s) throws NumberFormatException {
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this.value = parseShort(s, 10);
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}
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/**
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* Returns the value of this {@code Short} as a
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* {@code byte}.
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*/
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public byte byteValue() {
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return (byte)value;
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}
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/**
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* Returns the value of this {@code Short} as a
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* {@code short}.
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*/
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public short shortValue() {
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return value;
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}
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/**
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* Returns the value of this {@code Short} as an
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* {@code int}.
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*/
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public int intValue() {
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return (int)value;
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}
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/**
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* Returns the value of this {@code Short} as a
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* {@code long}.
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*/
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public long longValue() {
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return (long)value;
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}
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/**
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* Returns the value of this {@code Short} as a
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* {@code float}.
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*/
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public float floatValue() {
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return (float)value;
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}
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/**
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* Returns the value of this {@code Short} as a
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* {@code double}.
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*/
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public double doubleValue() {
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return (double)value;
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}
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/**
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* Returns a {@code String} object representing this
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* {@code Short}'s value. The value is converted to signed
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* decimal representation and returned as a string, exactly as if
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* the {@code short} value were given as an argument to the
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* {@link java.lang.Short#toString(short)} method.
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*
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* @return a string representation of the value of this object in
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* base 10.
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*/
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public String toString() {
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return String.valueOf((int)value);
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}
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382 |
/**
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* Returns a hash code for this {@code Short}.
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*/
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public int hashCode() {
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|
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return (int)value;
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}
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|
388 |
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389 |
/**
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390 |
* Compares this object to the specified object. The result is
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391 |
* {@code true} if and only if the argument is not
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* {@code null} and is a {@code Short} object that
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* contains the same {@code short} value as this object.
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*
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* @param obj the object to compare with
|
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* @return {@code true} if the objects are the same;
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* {@code false} otherwise.
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*/
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399 |
public boolean equals(Object obj) {
|
|
400 |
if (obj instanceof Short) {
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401 |
return value == ((Short)obj).shortValue();
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}
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return false;
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}
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|
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/**
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407 |
* Compares two {@code Short} objects numerically.
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408 |
*
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|
409 |
* @param anotherShort the {@code Short} to be compared.
|
|
410 |
* @return the value {@code 0} if this {@code Short} is
|
|
411 |
* equal to the argument {@code Short}; a value less than
|
|
412 |
* {@code 0} if this {@code Short} is numerically less
|
|
413 |
* than the argument {@code Short}; and a value greater than
|
|
414 |
* {@code 0} if this {@code Short} is numerically
|
|
415 |
* greater than the argument {@code Short} (signed
|
|
416 |
* comparison).
|
|
417 |
* @since 1.2
|
|
418 |
*/
|
|
419 |
public int compareTo(Short anotherShort) {
|
|
420 |
return this.value - anotherShort.value;
|
|
421 |
}
|
|
422 |
|
|
423 |
/**
|
|
424 |
* The number of bits used to represent a {@code short} value in two's
|
|
425 |
* complement binary form.
|
|
426 |
* @since 1.5
|
|
427 |
*/
|
|
428 |
public static final int SIZE = 16;
|
|
429 |
|
|
430 |
/**
|
|
431 |
* Returns the value obtained by reversing the order of the bytes in the
|
|
432 |
* two's complement representation of the specified {@code short} value.
|
|
433 |
*
|
|
434 |
* @return the value obtained by reversing (or, equivalently, swapping)
|
|
435 |
* the bytes in the specified {@code short} value.
|
|
436 |
* @since 1.5
|
|
437 |
*/
|
|
438 |
public static short reverseBytes(short i) {
|
|
439 |
return (short) (((i & 0xFF00) >> 8) | (i << 8));
|
|
440 |
}
|
|
441 |
|
|
442 |
/** use serialVersionUID from JDK 1.1. for interoperability */
|
|
443 |
private static final long serialVersionUID = 7515723908773894738L;
|
|
444 |
}
|