73c3b12dd4
X-SVN-Rev: 6433
169 lines
4.8 KiB
Java
169 lines
4.8 KiB
Java
/**
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*******************************************************************************
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* Copyright (C) 1996-2001, International Business Machines Corporation and *
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* others. All Rights Reserved. *
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*******************************************************************************
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*
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* $Source: /xsrl/Nsvn/icu/unicodetools/com/ibm/text/utility/UTF8StreamWriter.java,v $
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* $Date: 2001/10/25 20:32:38 $
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* $Revision: 1.4 $
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*
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*******************************************************************************
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*/
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package com.ibm.text.utility;
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import java.io.*;
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/**
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* Utility class that writes UTF8.<br>
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* Main purpose is to supplant OutputStreamWriter(x, "UTF8"), since that has serious errors.
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* <br>
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* Example of Usage:
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* <pre>
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* PrintWriter log = new PrintWriter(
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* new UTF8StreamWriter(new FileOutputStream(fileName), 32*1024));
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* </pre>
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* NB: unsynchronized for simplicity and speed. The same object must NOT be used in multiple threads.
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*/
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// TODO: Fix case of surrogate pair crossing input buffer boundary
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public final class UTF8StreamWriter extends Writer {
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private OutputStream output;
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private byte[] bBuffer; // do a bit of buffering ourselves for efficiency
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private int bSafeEnd;
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private int bEnd;
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private int bIndex = 0;
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private int highSurrogate = 0;
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private boolean removeCR;
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public UTF8StreamWriter(OutputStream stream, int buffersize) {
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this(stream, buffersize, true);
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}
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public UTF8StreamWriter(OutputStream stream, int buffersize, boolean removeCR) {
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if (buffersize < 5) {
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throw new IllegalArgumentException("UTF8StreamWriter buffersize must be >= 5");
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}
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output = stream;
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bBuffer = new byte[buffersize];
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bEnd = buffersize;
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bSafeEnd = buffersize - 4;
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this.removeCR = removeCR;
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}
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private static final int
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NEED_2_BYTES = 1<<7,
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NEED_3_BYTES = 1<<(2*5 + 1),
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NEED_4_BYTES = 1<<(3*5 + 1);
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private static final int
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TRAILING_BOTTOM_MASK = 0x3F,
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TRAILING_TOP = 0x80;
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private static final int MAGIC = 0x10000 + ((0 - 0xD800) << 10) + (0 - 0xDC00);
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public final void write(char[] buffer, int cStart, int cLength) throws IOException {
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int cEnd = cStart + cLength;
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while (cStart < cEnd) {
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// write if we need to
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if (bIndex > bSafeEnd) {
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output.write(bBuffer, 0, bIndex);
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bIndex = 0;
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}
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// get code point
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int utf32 = buffer[cStart++];
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if (utf32 == 0x0D && removeCR) continue; // skip write
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// special check for surrogates
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if (highSurrogate != 0) {
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if (utf32 >= 0xDC00 && utf32 <= 0xDFFF) {
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writeCodePoint((highSurrogate << 10) + utf32 + MAGIC);
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highSurrogate = 0;
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continue;
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}
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writeCodePoint(highSurrogate);
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highSurrogate = 0;
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}
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if (0xD800 <= utf32 && utf32 <= 0xDBFF) {
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highSurrogate = utf32;
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continue;
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}
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// normal case
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writeCodePoint(utf32);
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}
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}
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private final void writeCodePoint(int utf32) {
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// convert to bytes
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if (utf32 < NEED_2_BYTES) {
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bBuffer[bIndex++] = (byte)utf32;
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return;
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}
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// Find out how many bytes we need to write
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// At this point, it is at least 2.
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//int count;
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int backIndex;
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int firstByteMark;
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if (utf32 < NEED_3_BYTES) {
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backIndex = bIndex += 2;
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firstByteMark = 0xC0;
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} else if (utf32 < NEED_4_BYTES) {
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backIndex = bIndex += 3;
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firstByteMark = 0xE0;
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bBuffer[--backIndex] = (byte)(TRAILING_TOP | (utf32 & TRAILING_BOTTOM_MASK));
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utf32 >>= 6;
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} else {
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backIndex = bIndex += 4;
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firstByteMark = 0xF0;
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bBuffer[--backIndex] = (byte)(TRAILING_TOP | (utf32 & TRAILING_BOTTOM_MASK));
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utf32 >>= 6;
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bBuffer[--backIndex] = (byte)(TRAILING_TOP | (utf32 & TRAILING_BOTTOM_MASK));
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utf32 >>= 6;
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};
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bBuffer[--backIndex] = (byte)(TRAILING_TOP | (utf32 & TRAILING_BOTTOM_MASK));
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utf32 >>= 6;
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bBuffer[--backIndex] = (byte)(firstByteMark | utf32);
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}
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private void internalFlush() throws IOException {
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if (highSurrogate != 0) {
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if (bIndex > bEnd) {
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output.write(bBuffer, 0, bIndex);
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bIndex = 0;
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}
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writeCodePoint(highSurrogate);
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highSurrogate = 0;
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}
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// write buffer if we need to
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if (bIndex != 0) {
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output.write(bBuffer, 0, bIndex);
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bIndex = 0;
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}
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}
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public void close() throws IOException {
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internalFlush();
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output.close();
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}
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public void flush() throws IOException {
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internalFlush();
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output.flush();
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}
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}
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