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08a0a89b86
From-SVN: r26541
296 lines
5.8 KiB
Java
296 lines
5.8 KiB
Java
// PrintStream.java - Print string representations
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/* Copyright (C) 1998, 1999 Cygnus Solutions
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This file is part of libgcj.
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This software is copyrighted work licensed under the terms of the
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Libgcj License. Please consult the file "LIBGCJ_LICENSE" for
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details. */
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package java.io;
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import gnu.gcj.convert.UnicodeToBytes;
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/**
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* @author Tom Tromey <tromey@cygnus.com>
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* @date September 24, 1998
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*/
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/* Written using "Java Class Libraries", 2nd edition, ISBN 0-201-31002-3
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* "The Java Language Specification", ISBN 0-201-63451-1
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* Status: Not finished.
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*/
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public class PrintStream extends FilterOutputStream
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{
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/* Notice the implementation is quite similar to OutputStreamWriter.
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* This leads to some minor duplication, because neither inherits
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* from the other, and we want to maximize performance. */
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public boolean checkError ()
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{
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return error;
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}
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public void close ()
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{
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try
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{
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out.close();
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}
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catch (IOException e)
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{
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setError ();
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}
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}
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public void flush ()
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{
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try
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{
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out.flush();
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}
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catch (IOException e)
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{
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setError ();
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}
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}
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private synchronized void print (String str, boolean println)
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{
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try
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{
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writeChars(str, 0, str.length());
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if (println)
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writeChars(line_separator, 0, line_separator.length);
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if (auto_flush)
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flush();
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}
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catch (IOException e)
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{
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setError ();
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}
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}
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private synchronized void print (char[] chars, int pos, int len,
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boolean println)
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{
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try
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{
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writeChars(chars, pos, len);
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if (println)
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writeChars(line_separator, 0, line_separator.length);
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if (auto_flush)
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flush();
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}
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catch (IOException e)
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{
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setError ();
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}
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}
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/** Writes characters through to the inferior BufferedOutputStream. */
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private void writeChars(char[] buf, int offset, int count)
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throws IOException
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{
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while (count > 0)
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{
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// We must flush if out.count == out.buf.length.
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// It is probably a good idea to flush if out.buf is almost full.
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// This test is an approximation for "almost full".
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if (out.count + count >= out.buf.length)
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{
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out.flush();
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if (out.count != 0)
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throw new IOException("unable to flush output byte buffer");
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}
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converter.setOutput(out.buf, out.count);
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int converted = converter.write(buf, offset, count);
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offset += converted;
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count -= converted;
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out.count = converter.count;
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}
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}
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private void writeChars(String str, int offset, int count)
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throws IOException
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{
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while (count > 0)
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{
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// We must flush if out.count == out.buf.length.
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// It is probably a good idea to flush if out.buf is almost full.
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// This test is an approximation for "almost full".
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if (out.count + count >= out.buf.length)
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{
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out.flush();
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if (out.count != 0)
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throw new IOException("unable to flush output byte buffer");
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}
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converter.setOutput(out.buf, out.count);
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int converted = converter.write(str, offset, count, work);
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offset += converted;
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count -= converted;
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out.count = converter.count;
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}
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}
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public void print (boolean bool)
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{
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print(String.valueOf(bool), false);
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}
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public void print (int inum)
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{
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print(String.valueOf(inum), false);
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}
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public void print (long lnum)
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{
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print(String.valueOf(lnum), false);
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}
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public void print (float fnum)
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{
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print(String.valueOf(fnum), false);
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}
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public void print (double dnum)
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{
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print(String.valueOf(dnum), false);
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}
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public void print (Object obj)
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{
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print(obj == null ? "null" : obj.toString(), false);
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}
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public void print (String str)
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{
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print(str == null ? "null" : str, false);
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}
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public synchronized void print (char ch)
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{
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work[0] = ch;
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print(work, 0, 1, false);
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}
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public void print (char[] charArray)
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{
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print(charArray, 0, charArray.length, false);
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}
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public void println ()
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{
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print(line_separator, 0, line_separator.length, false);
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}
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public void println (boolean bool)
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{
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print(String.valueOf(bool), true);
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}
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public void println (int inum)
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{
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print(String.valueOf(inum), true);
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}
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public void println (long lnum)
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{
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print(String.valueOf(lnum), true);
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}
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public void println (float fnum)
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{
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print(String.valueOf(fnum), true);
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}
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public void println (double dnum)
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{
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print(String.valueOf(dnum), true);
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}
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public void println (Object obj)
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{
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print(obj == null ? "null" : obj.toString(), true);
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}
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public void println (String str)
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{
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print (str == null ? "null" : str, true);
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}
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public synchronized void println (char ch)
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{
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work[0] = ch;
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print(work, 0, 1, true);
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}
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public void println (char[] charArray)
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{
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print(charArray, 0, charArray.length, true);
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}
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public PrintStream (OutputStream out)
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{
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this(out, false);
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}
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public PrintStream (OutputStream out, boolean af)
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{
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super ((this.out = (out instanceof BufferedOutputStream
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? (BufferedOutputStream) out
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: new BufferedOutputStream(out, 250))));
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converter = UnicodeToBytes.getDefaultEncoder();
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error = false;
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auto_flush = af;
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}
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protected void setError ()
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{
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error = true;
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}
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public void write (int oneByte)
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{
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try
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{
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out.write(oneByte);
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if (auto_flush && oneByte == '\n')
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out.flush();
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}
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catch (IOException e)
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{
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setError ();
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}
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}
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public void write (byte[] buffer, int offset, int count)
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{
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try
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{
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out.write(buffer, offset, count);
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if (auto_flush)
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out.flush();
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}
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catch (IOException e)
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{
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setError ();
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}
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}
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BufferedOutputStream out;
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UnicodeToBytes converter;
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char[] work = new char[100];
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// True if error occurred.
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private boolean error;
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// True if auto-flush.
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private boolean auto_flush;
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// Line separator string.
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private static final char[] line_separator
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= System.getProperty("line.separator").toCharArray();
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}
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