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446 lines
16 KiB
Java
446 lines
16 KiB
Java
// Mozilla has modified this file - see http://hg.mozilla.org/ for details.
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/*
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* Licensed to the Apache Software Foundation (ASF) under one or more
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* contributor license agreements. See the NOTICE file distributed with
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* this work for additional information regarding copyright ownership.
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* The ASF licenses this file to You under the Apache License, Version 2.0
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* (the "License"); you may not use this file except in compliance with
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* the License. You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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package org.mozilla.apache.commons.codec.binary;
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import org.mozilla.apache.commons.codec.BinaryDecoder;
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import org.mozilla.apache.commons.codec.BinaryEncoder;
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import org.mozilla.apache.commons.codec.DecoderException;
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import org.mozilla.apache.commons.codec.EncoderException;
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/**
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* Abstract superclass for Base-N encoders and decoders.
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*
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* <p>
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* This class is not thread-safe.
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* Each thread should use its own instance.
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* </p>
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*/
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public abstract class BaseNCodec implements BinaryEncoder, BinaryDecoder {
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/**
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* MIME chunk size per RFC 2045 section 6.8.
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*
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* <p>
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* The {@value} character limit does not count the trailing CRLF, but counts all other characters, including any
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* equal signs.
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* </p>
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*
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* @see <a href="http://www.ietf.org/rfc/rfc2045.txt">RFC 2045 section 6.8</a>
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*/
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public static final int MIME_CHUNK_SIZE = 76;
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/**
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* PEM chunk size per RFC 1421 section 4.3.2.4.
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*
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* <p>
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* The {@value} character limit does not count the trailing CRLF, but counts all other characters, including any
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* equal signs.
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* </p>
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*
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* @see <a href="http://tools.ietf.org/html/rfc1421">RFC 1421 section 4.3.2.4</a>
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*/
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public static final int PEM_CHUNK_SIZE = 64;
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private static final int DEFAULT_BUFFER_RESIZE_FACTOR = 2;
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/**
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* Defines the default buffer size - currently {@value}
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* - must be large enough for at least one encoded block+separator
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*/
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private static final int DEFAULT_BUFFER_SIZE = 8192;
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/** Mask used to extract 8 bits, used in decoding bytes */
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protected static final int MASK_8BITS = 0xff;
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/**
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* Byte used to pad output.
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*/
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protected static final byte PAD_DEFAULT = '='; // Allow static access to default
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protected final byte PAD = PAD_DEFAULT; // instance variable just in case it needs to vary later
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/** Number of bytes in each full block of unencoded data, e.g. 4 for Base64 and 5 for Base32 */
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private final int unencodedBlockSize;
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/** Number of bytes in each full block of encoded data, e.g. 3 for Base64 and 8 for Base32 */
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private final int encodedBlockSize;
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/**
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* Chunksize for encoding. Not used when decoding.
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* A value of zero or less implies no chunking of the encoded data.
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* Rounded down to nearest multiple of encodedBlockSize.
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*/
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protected final int lineLength;
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/**
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* Size of chunk separator. Not used unless {@link #lineLength} > 0.
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*/
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private final int chunkSeparatorLength;
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/**
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* Buffer for streaming.
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*/
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protected byte[] buffer;
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/**
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* Position where next character should be written in the buffer.
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*/
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protected int pos;
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/**
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* Position where next character should be read from the buffer.
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*/
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private int readPos;
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/**
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* Boolean flag to indicate the EOF has been reached. Once EOF has been reached, this object becomes useless,
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* and must be thrown away.
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*/
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protected boolean eof;
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/**
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* Variable tracks how many characters have been written to the current line. Only used when encoding. We use it to
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* make sure each encoded line never goes beyond lineLength (if lineLength > 0).
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*/
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protected int currentLinePos;
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/**
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* Writes to the buffer only occur after every 3/5 reads when encoding, and every 4/8 reads when decoding.
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* This variable helps track that.
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*/
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protected int modulus;
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/**
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* Note <code>lineLength</code> is rounded down to the nearest multiple of {@link #encodedBlockSize}
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* If <code>chunkSeparatorLength</code> is zero, then chunking is disabled.
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* @param unencodedBlockSize the size of an unencoded block (e.g. Base64 = 3)
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* @param encodedBlockSize the size of an encoded block (e.g. Base64 = 4)
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* @param lineLength if > 0, use chunking with a length <code>lineLength</code>
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* @param chunkSeparatorLength the chunk separator length, if relevant
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*/
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protected BaseNCodec(int unencodedBlockSize, int encodedBlockSize, int lineLength, int chunkSeparatorLength){
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this.unencodedBlockSize = unencodedBlockSize;
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this.encodedBlockSize = encodedBlockSize;
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this.lineLength = (lineLength > 0 && chunkSeparatorLength > 0) ? (lineLength / encodedBlockSize) * encodedBlockSize : 0;
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this.chunkSeparatorLength = chunkSeparatorLength;
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}
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/**
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* Returns true if this object has buffered data for reading.
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*
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* @return true if there is data still available for reading.
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*/
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boolean hasData() { // package protected for access from I/O streams
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return this.buffer != null;
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}
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/**
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* Returns the amount of buffered data available for reading.
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*
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* @return The amount of buffered data available for reading.
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*/
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int available() { // package protected for access from I/O streams
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return buffer != null ? pos - readPos : 0;
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}
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/**
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* Get the default buffer size. Can be overridden.
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*
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* @return {@link #DEFAULT_BUFFER_SIZE}
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*/
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protected int getDefaultBufferSize() {
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return DEFAULT_BUFFER_SIZE;
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}
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/** Increases our buffer by the {@link #DEFAULT_BUFFER_RESIZE_FACTOR}. */
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private void resizeBuffer() {
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if (buffer == null) {
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buffer = new byte[getDefaultBufferSize()];
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pos = 0;
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readPos = 0;
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} else {
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byte[] b = new byte[buffer.length * DEFAULT_BUFFER_RESIZE_FACTOR];
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System.arraycopy(buffer, 0, b, 0, buffer.length);
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buffer = b;
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}
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}
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/**
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* Ensure that the buffer has room for <code>size</code> bytes
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*
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* @param size minimum spare space required
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*/
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protected void ensureBufferSize(int size){
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if ((buffer == null) || (buffer.length < pos + size)){
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resizeBuffer();
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}
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}
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/**
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* Extracts buffered data into the provided byte[] array, starting at position bPos,
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* up to a maximum of bAvail bytes. Returns how many bytes were actually extracted.
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*
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* @param b
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* byte[] array to extract the buffered data into.
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* @param bPos
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* position in byte[] array to start extraction at.
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* @param bAvail
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* amount of bytes we're allowed to extract. We may extract fewer (if fewer are available).
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* @return The number of bytes successfully extracted into the provided byte[] array.
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*/
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int readResults(byte[] b, int bPos, int bAvail) { // package protected for access from I/O streams
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if (buffer != null) {
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int len = Math.min(available(), bAvail);
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System.arraycopy(buffer, readPos, b, bPos, len);
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readPos += len;
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if (readPos >= pos) {
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buffer = null; // so hasData() will return false, and this method can return -1
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}
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return len;
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}
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return eof ? -1 : 0;
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}
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/**
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* Checks if a byte value is whitespace or not.
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* Whitespace is taken to mean: space, tab, CR, LF
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* @param byteToCheck
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* the byte to check
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* @return true if byte is whitespace, false otherwise
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*/
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protected static boolean isWhiteSpace(byte byteToCheck) {
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switch (byteToCheck) {
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case ' ' :
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case '\n' :
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case '\r' :
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case '\t' :
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return true;
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default :
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return false;
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}
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}
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/**
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* Resets this object to its initial newly constructed state.
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*/
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private void reset() {
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buffer = null;
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pos = 0;
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readPos = 0;
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currentLinePos = 0;
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modulus = 0;
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eof = false;
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}
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/**
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* Encodes an Object using the Base-N algorithm. This method is provided in order to satisfy the requirements of the
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* Encoder interface, and will throw an EncoderException if the supplied object is not of type byte[].
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*
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* @param pObject
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* Object to encode
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* @return An object (of type byte[]) containing the Base-N encoded data which corresponds to the byte[] supplied.
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* @throws EncoderException
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* if the parameter supplied is not of type byte[]
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*/
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public Object encode(Object pObject) throws EncoderException {
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if (!(pObject instanceof byte[])) {
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throw new EncoderException("Parameter supplied to Base-N encode is not a byte[]");
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}
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return encode((byte[]) pObject);
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}
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/**
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* Encodes a byte[] containing binary data, into a String containing characters in the Base-N alphabet.
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*
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* @param pArray
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* a byte array containing binary data
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* @return A String containing only Base-N character data
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*/
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public String encodeToString(byte[] pArray) {
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return StringUtils.newStringUtf8(encode(pArray));
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}
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/**
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* Decodes an Object using the Base-N algorithm. This method is provided in order to satisfy the requirements of the
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* Decoder interface, and will throw a DecoderException if the supplied object is not of type byte[] or String.
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*
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* @param pObject
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* Object to decode
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* @return An object (of type byte[]) containing the binary data which corresponds to the byte[] or String supplied.
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* @throws DecoderException
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* if the parameter supplied is not of type byte[]
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*/
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public Object decode(Object pObject) throws DecoderException {
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if (pObject instanceof byte[]) {
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return decode((byte[]) pObject);
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} else if (pObject instanceof String) {
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return decode((String) pObject);
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} else {
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throw new DecoderException("Parameter supplied to Base-N decode is not a byte[] or a String");
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}
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}
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/**
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* Decodes a String containing characters in the Base-N alphabet.
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*
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* @param pArray
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* A String containing Base-N character data
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* @return a byte array containing binary data
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*/
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public byte[] decode(String pArray) {
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return decode(StringUtils.getBytesUtf8(pArray));
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}
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/**
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* Decodes a byte[] containing characters in the Base-N alphabet.
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*
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* @param pArray
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* A byte array containing Base-N character data
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* @return a byte array containing binary data
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*/
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public byte[] decode(byte[] pArray) {
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reset();
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if (pArray == null || pArray.length == 0) {
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return pArray;
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}
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decode(pArray, 0, pArray.length);
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decode(pArray, 0, -1); // Notify decoder of EOF.
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byte[] result = new byte[pos];
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readResults(result, 0, result.length);
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return result;
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}
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/**
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* Encodes a byte[] containing binary data, into a byte[] containing characters in the alphabet.
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*
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* @param pArray
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* a byte array containing binary data
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* @return A byte array containing only the basen alphabetic character data
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*/
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public byte[] encode(byte[] pArray) {
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reset();
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if (pArray == null || pArray.length == 0) {
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return pArray;
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}
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encode(pArray, 0, pArray.length);
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encode(pArray, 0, -1); // Notify encoder of EOF.
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byte[] buf = new byte[pos - readPos];
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readResults(buf, 0, buf.length);
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return buf;
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}
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/**
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* Encodes a byte[] containing binary data, into a String containing characters in the appropriate alphabet.
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* Uses UTF8 encoding.
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*
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* @param pArray a byte array containing binary data
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* @return String containing only character data in the appropriate alphabet.
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*/
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public String encodeAsString(byte[] pArray){
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return StringUtils.newStringUtf8(encode(pArray));
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}
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abstract void encode(byte[] pArray, int i, int length); // package protected for access from I/O streams
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abstract void decode(byte[] pArray, int i, int length); // package protected for access from I/O streams
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/**
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* Returns whether or not the <code>octet</code> is in the current alphabet.
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* Does not allow whitespace or pad.
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*
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* @param value The value to test
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*
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* @return <code>true</code> if the value is defined in the current alphabet, <code>false</code> otherwise.
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*/
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protected abstract boolean isInAlphabet(byte value);
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/**
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* Tests a given byte array to see if it contains only valid characters within the alphabet.
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* The method optionally treats whitespace and pad as valid.
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*
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* @param arrayOctet byte array to test
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* @param allowWSPad if <code>true</code>, then whitespace and PAD are also allowed
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*
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* @return <code>true</code> if all bytes are valid characters in the alphabet or if the byte array is empty;
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* <code>false</code>, otherwise
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*/
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public boolean isInAlphabet(byte[] arrayOctet, boolean allowWSPad) {
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for (int i = 0; i < arrayOctet.length; i++) {
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if (!isInAlphabet(arrayOctet[i]) &&
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(!allowWSPad || (arrayOctet[i] != PAD) && !isWhiteSpace(arrayOctet[i]))) {
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return false;
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}
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}
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return true;
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}
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/**
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* Tests a given String to see if it contains only valid characters within the alphabet.
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* The method treats whitespace and PAD as valid.
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*
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* @param basen String to test
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* @return <code>true</code> if all characters in the String are valid characters in the alphabet or if
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* the String is empty; <code>false</code>, otherwise
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* @see #isInAlphabet(byte[], boolean)
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*/
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public boolean isInAlphabet(String basen) {
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return isInAlphabet(StringUtils.getBytesUtf8(basen), true);
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}
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/**
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* Tests a given byte array to see if it contains any characters within the alphabet or PAD.
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*
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* Intended for use in checking line-ending arrays
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*
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* @param arrayOctet
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* byte array to test
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* @return <code>true</code> if any byte is a valid character in the alphabet or PAD; <code>false</code> otherwise
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*/
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protected boolean containsAlphabetOrPad(byte[] arrayOctet) {
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if (arrayOctet == null) {
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return false;
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}
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for (int i = 0; i < arrayOctet.length; i++) {
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if (PAD == arrayOctet[i] || isInAlphabet(arrayOctet[i])) {
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return true;
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}
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}
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return false;
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}
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/**
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* Calculates the amount of space needed to encode the supplied array.
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*
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* @param pArray byte[] array which will later be encoded
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*
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* @return amount of space needed to encoded the supplied array.
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* Returns a long since a max-len array will require > Integer.MAX_VALUE
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*/
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public long getEncodedLength(byte[] pArray) {
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// Calculate non-chunked size - rounded up to allow for padding
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// cast to long is needed to avoid possibility of overflow
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long len = ((pArray.length + unencodedBlockSize-1) / unencodedBlockSize) * (long) encodedBlockSize;
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if (lineLength > 0) { // We're using chunking
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// Round up to nearest multiple
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len += ((len + lineLength-1) / lineLength) * chunkSeparatorLength;
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}
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return len;
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}
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}
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