emul/mini/src/main/java/java/lang/StringBuilder.java
author Jaroslav Tulach <jaroslav.tulach@apidesign.org>
Wed, 23 Jan 2013 20:39:23 +0100
branchemul
changeset 554 05224402145d
parent 403 emul/src/main/java/java/lang/StringBuilder.java@2dcc8f2e1a1b
permissions -rw-r--r--
First attempt to separate 'mini' profile from the rest of JDK APIs
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/*
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 * Copyright (c) 2003, 2008, Oracle and/or its affiliates. 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.  Oracle designates this
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 * particular file as subject to the "Classpath" exception as provided
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 * by Oracle 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 Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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 * or visit www.oracle.com if you need additional information or have any
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 * questions.
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 */
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package java.lang;
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/**
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 * A mutable sequence of characters.  This class provides an API compatible
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 * with <code>StringBuffer</code>, but with no guarantee of synchronization.
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 * This class is designed for use as a drop-in replacement for
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 * <code>StringBuffer</code> in places where the string buffer was being
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 * used by a single thread (as is generally the case).   Where possible,
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 * it is recommended that this class be used in preference to
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 * <code>StringBuffer</code> as it will be faster under most implementations.
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 *
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 * <p>The principal operations on a <code>StringBuilder</code> are the
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 * <code>append</code> and <code>insert</code> methods, which are
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 * overloaded so as to accept data of any type. Each effectively
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 * converts a given datum to a string and then appends or inserts the
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 * characters of that string to the string builder. The
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 * <code>append</code> method always adds these characters at the end
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 * of the builder; the <code>insert</code> method adds the characters at
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 * a specified point.
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 * <p>
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 * For example, if <code>z</code> refers to a string builder object
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 * whose current contents are "<code>start</code>", then
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 * the method call <code>z.append("le")</code> would cause the string
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 * builder to contain "<code>startle</code>", whereas
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 * <code>z.insert(4, "le")</code> would alter the string builder to
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 * contain "<code>starlet</code>".
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 * <p>
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 * In general, if sb refers to an instance of a <code>StringBuilder</code>,
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 * then <code>sb.append(x)</code> has the same effect as
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 * <code>sb.insert(sb.length(),&nbsp;x)</code>.
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 *
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 * Every string builder has a capacity. As long as the length of the
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 * character sequence contained in the string builder does not exceed
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 * the capacity, it is not necessary to allocate a new internal
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 * buffer. If the internal buffer overflows, it is automatically made larger.
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 *
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 * <p>Instances of <code>StringBuilder</code> are not safe for
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 * use by multiple threads. If such synchronization is required then it is
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 * recommended that {@link java.lang.StringBuffer} be used.
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 *
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 * @author      Michael McCloskey
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 * @see         java.lang.StringBuffer
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 * @see         java.lang.String
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 * @since       1.5
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 */
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public final class StringBuilder
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    extends AbstractStringBuilder
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    implements java.io.Serializable, CharSequence
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{
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    /** use serialVersionUID for interoperability */
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    static final long serialVersionUID = 4383685877147921099L;
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    /**
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     * Constructs a string builder with no characters in it and an
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     * initial capacity of 16 characters.
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     */
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    public StringBuilder() {
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        super(16);
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    }
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    /**
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     * Constructs a string builder with no characters in it and an
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     * initial capacity specified by the <code>capacity</code> argument.
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     *
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     * @param      capacity  the initial capacity.
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     * @throws     NegativeArraySizeException  if the <code>capacity</code>
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     *               argument is less than <code>0</code>.
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     */
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    public StringBuilder(int capacity) {
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        super(capacity);
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    }
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    /**
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     * Constructs a string builder initialized to the contents of the
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     * specified string. The initial capacity of the string builder is
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     * <code>16</code> plus the length of the string argument.
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     *
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     * @param   str   the initial contents of the buffer.
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     * @throws    NullPointerException if <code>str</code> is <code>null</code>
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     */
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    public StringBuilder(String str) {
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        super(str.length() + 16);
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        append(str);
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    }
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    /**
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     * Constructs a string builder that contains the same characters
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     * as the specified <code>CharSequence</code>. The initial capacity of
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     * the string builder is <code>16</code> plus the length of the
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     * <code>CharSequence</code> argument.
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     *
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     * @param      seq   the sequence to copy.
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     * @throws    NullPointerException if <code>seq</code> is <code>null</code>
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     */
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    public StringBuilder(CharSequence seq) {
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        this(seq.length() + 16);
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        append(seq);
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    }
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    public StringBuilder append(Object obj) {
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        return append(String.valueOf(obj));
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    }
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    public StringBuilder append(String str) {
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        super.append(str);
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        return this;
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    }
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    // Appends the specified string builder to this sequence.
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    private StringBuilder append(StringBuilder sb) {
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        if (sb == null)
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            return append("null");
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        int len = sb.length();
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        int newcount = count + len;
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        if (newcount > value.length)
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            expandCapacity(newcount);
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        sb.getChars(0, len, value, count);
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        count = newcount;
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        return this;
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    }
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    /**
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     * Appends the specified <tt>StringBuffer</tt> to this sequence.
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     * <p>
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     * The characters of the <tt>StringBuffer</tt> argument are appended,
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     * in order, to this sequence, increasing the
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     * length of this sequence by the length of the argument.
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     * If <tt>sb</tt> is <tt>null</tt>, then the four characters
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     * <tt>"null"</tt> are appended to this sequence.
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     * <p>
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     * Let <i>n</i> be the length of this character sequence just prior to
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     * execution of the <tt>append</tt> method. Then the character at index
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     * <i>k</i> in the new character sequence is equal to the character at
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     * index <i>k</i> in the old character sequence, if <i>k</i> is less than
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     * <i>n</i>; otherwise, it is equal to the character at index <i>k-n</i>
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     * in the argument <code>sb</code>.
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     *
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     * @param   sb   the <tt>StringBuffer</tt> to append.
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     * @return  a reference to this object.
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     */
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    public StringBuilder append(StringBuffer sb) {
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        super.append(sb);
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        return this;
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    }
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    /**
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     */
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    public StringBuilder append(CharSequence s) {
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        if (s == null)
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            s = "null";
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        if (s instanceof String)
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            return this.append((String)s);
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        if (s instanceof StringBuffer)
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            return this.append((StringBuffer)s);
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        if (s instanceof StringBuilder)
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            return this.append((StringBuilder)s);
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        return this.append(s, 0, s.length());
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    }
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    /**
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     * @throws     IndexOutOfBoundsException {@inheritDoc}
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     */
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    public StringBuilder append(CharSequence s, int start, int end) {
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        super.append(s, start, end);
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        return this;
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    }
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    public StringBuilder append(char[] str) {
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        super.append(str);
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        return this;
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    }
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    /**
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     * @throws IndexOutOfBoundsException {@inheritDoc}
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     */
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    public StringBuilder append(char[] str, int offset, int len) {
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        super.append(str, offset, len);
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        return this;
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    }
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    public StringBuilder append(boolean b) {
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        super.append(b);
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        return this;
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    }
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    public StringBuilder append(char c) {
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        super.append(c);
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        return this;
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    }
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    public StringBuilder append(int i) {
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        super.append(i);
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        return this;
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    }
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    public StringBuilder append(long lng) {
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        super.append(lng);
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        return this;
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    }
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    public StringBuilder append(float f) {
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        super.append(f);
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        return this;
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    }
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    public StringBuilder append(double d) {
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        super.append(d);
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        return this;
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    }
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    /**
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     * @since 1.5
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     */
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    public StringBuilder appendCodePoint(int codePoint) {
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        super.appendCodePoint(codePoint);
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        return this;
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    }
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    /**
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     * @throws StringIndexOutOfBoundsException {@inheritDoc}
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     */
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    public StringBuilder delete(int start, int end) {
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        super.delete(start, end);
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        return this;
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    }
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    /**
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     * @throws StringIndexOutOfBoundsException {@inheritDoc}
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     */
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    public StringBuilder deleteCharAt(int index) {
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        super.deleteCharAt(index);
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        return this;
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    }
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    /**
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     * @throws StringIndexOutOfBoundsException {@inheritDoc}
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     */
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    public StringBuilder replace(int start, int end, String str) {
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        super.replace(start, end, str);
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        return this;
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    }
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    /**
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     * @throws StringIndexOutOfBoundsException {@inheritDoc}
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     */
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    public StringBuilder insert(int index, char[] str, int offset,
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                                int len)
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    {
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        super.insert(index, str, offset, len);
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        return this;
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    }
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    /**
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     * @throws StringIndexOutOfBoundsException {@inheritDoc}
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     */
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    public StringBuilder insert(int offset, Object obj) {
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        return insert(offset, String.valueOf(obj));
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    }
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    /**
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     * @throws StringIndexOutOfBoundsException {@inheritDoc}
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     */
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    public StringBuilder insert(int offset, String str) {
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        super.insert(offset, str);
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        return this;
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    }
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    /**
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     * @throws StringIndexOutOfBoundsException {@inheritDoc}
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     */
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    public StringBuilder insert(int offset, char[] str) {
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        super.insert(offset, str);
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        return this;
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    }
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    /**
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     * @throws IndexOutOfBoundsException {@inheritDoc}
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     */
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    public StringBuilder insert(int dstOffset, CharSequence s) {
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        if (s == null)
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            s = "null";
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        if (s instanceof String)
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            return this.insert(dstOffset, (String)s);
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        return this.insert(dstOffset, s, 0, s.length());
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    }
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    /**
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     * @throws IndexOutOfBoundsException {@inheritDoc}
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     */
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    public StringBuilder insert(int dstOffset, CharSequence s,
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                                int start, int end)
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    {
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        super.insert(dstOffset, s, start, end);
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        return this;
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    }
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    /**
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     * @throws StringIndexOutOfBoundsException {@inheritDoc}
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     */
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    public StringBuilder insert(int offset, boolean b) {
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        super.insert(offset, b);
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        return this;
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    }
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    /**
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     * @throws IndexOutOfBoundsException {@inheritDoc}
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     */
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    public StringBuilder insert(int offset, char c) {
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        super.insert(offset, c);
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        return this;
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    }
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    /**
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     * @throws StringIndexOutOfBoundsException {@inheritDoc}
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     */
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    public StringBuilder insert(int offset, int i) {
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        return insert(offset, String.valueOf(i));
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    }
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    /**
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     * @throws StringIndexOutOfBoundsException {@inheritDoc}
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     */
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    public StringBuilder insert(int offset, long l) {
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        return insert(offset, String.valueOf(l));
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    }
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    /**
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     * @throws StringIndexOutOfBoundsException {@inheritDoc}
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     */
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    public StringBuilder insert(int offset, float f) {
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        return insert(offset, String.valueOf(f));
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    }
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    /**
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     * @throws StringIndexOutOfBoundsException {@inheritDoc}
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     */
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    public StringBuilder insert(int offset, double d) {
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        return insert(offset, String.valueOf(d));
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    }
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    /**
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     * @throws NullPointerException {@inheritDoc}
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     */
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    public int indexOf(String str) {
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        return indexOf(str, 0);
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    }
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    /**
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     * @throws NullPointerException {@inheritDoc}
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     */
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    public int indexOf(String str, int fromIndex) {
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        return super.indexOf(str, fromIndex);
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    }
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    /**
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     * @throws NullPointerException {@inheritDoc}
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     */
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    public int lastIndexOf(String str) {
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        return lastIndexOf(str, count);
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    }
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    /**
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     * @throws NullPointerException {@inheritDoc}
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     */
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    public int lastIndexOf(String str, int fromIndex) {
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        return String.lastIndexOf(value, 0, count,
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                              str.toCharArray(), 0, str.length(), fromIndex);
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    }
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    public StringBuilder reverse() {
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        super.reverse();
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        return this;
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    }
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    public String toString() {
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        // Create a copy, don't share the array
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        return new String(value, 0, count);
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    }
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    /**
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     * Save the state of the <tt>StringBuilder</tt> instance to a stream
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     * (that is, serialize it).
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     *
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     * @serialData the number of characters currently stored in the string
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     *             builder (<tt>int</tt>), followed by the characters in the
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     *             string builder (<tt>char[]</tt>).   The length of the
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     *             <tt>char</tt> array may be greater than the number of
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     *             characters currently stored in the string builder, in which
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     *             case extra characters are ignored.
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     */
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//    private void writeObject(java.io.ObjectOutputStream s)
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//        throws java.io.IOException {
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//        s.defaultWriteObject();
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//        s.writeInt(count);
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//        s.writeObject(value);
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//    }
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    /**
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     * readObject is called to restore the state of the StringBuffer from
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     * a stream.
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     */
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//    private void readObject(java.io.ObjectInputStream s)
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//        throws java.io.IOException, ClassNotFoundException {
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//        s.defaultReadObject();
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//        count = s.readInt();
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//        value = (char[]) s.readObject();
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//    }
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}