194 lines
7.0 KiB
Java
194 lines
7.0 KiB
Java
/*
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* Copyright 2014 Google Inc. All rights reserved.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* 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 com.google.flatbuffers;
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import java.nio.ByteBuffer;
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import static java.lang.Character.MIN_HIGH_SURROGATE;
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import static java.lang.Character.MIN_LOW_SURROGATE;
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import static java.lang.Character.MIN_SUPPLEMENTARY_CODE_POINT;
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public abstract class Utf8 {
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/**
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* Returns the number of bytes in the UTF-8-encoded form of {@code sequence}. For a string,
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* this method is equivalent to {@code string.getBytes(UTF_8).length}, but is more efficient in
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* both time and space.
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*
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* @throws IllegalArgumentException if {@code sequence} contains ill-formed UTF-16 (unpaired
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* surrogates)
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*/
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public abstract int encodedLength(CharSequence sequence);
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/**
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* Encodes the given characters to the target {@link ByteBuffer} using UTF-8 encoding.
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*
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* <p>Selects an optimal algorithm based on the type of {@link ByteBuffer} (i.e. heap or direct)
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* and the capabilities of the platform.
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*
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* @param in the source string to be encoded
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* @param out the target buffer to receive the encoded string.
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*/
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public abstract void encodeUtf8(CharSequence in, ByteBuffer out);
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/**
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* Decodes the given UTF-8 portion of the {@link ByteBuffer} into a {@link String}.
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*
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* @throws IllegalArgumentException if the input is not valid UTF-8.
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*/
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public abstract String decodeUtf8(ByteBuffer buffer, int offset, int length);
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private static Utf8 DEFAULT;
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/**
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* Get the default UTF-8 processor.
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* @return the default processor
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*/
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public static Utf8 getDefault() {
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if (DEFAULT == null) {
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DEFAULT = new Utf8Safe();
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}
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return DEFAULT;
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}
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/**
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* Set the default instance of the UTF-8 processor.
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* @param instance the new instance to use
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*/
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public static void setDefault(Utf8 instance) {
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DEFAULT = instance;
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}
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/**
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* Utility methods for decoding bytes into {@link String}. Callers are responsible for extracting
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* bytes (possibly using Unsafe methods), and checking remaining bytes. All other UTF-8 validity
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* checks and codepoint conversion happen in this class.
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*/
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static class DecodeUtil {
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/**
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* Returns whether this is a single-byte codepoint (i.e., ASCII) with the form '0XXXXXXX'.
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*/
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static boolean isOneByte(byte b) {
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return b >= 0;
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}
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/**
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* Returns whether this is a two-byte codepoint with the form '10XXXXXX'.
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*/
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static boolean isTwoBytes(byte b) {
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return b < (byte) 0xE0;
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}
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/**
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* Returns whether this is a three-byte codepoint with the form '110XXXXX'.
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*/
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static boolean isThreeBytes(byte b) {
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return b < (byte) 0xF0;
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}
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static void handleOneByte(byte byte1, char[] resultArr, int resultPos) {
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resultArr[resultPos] = (char) byte1;
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}
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static void handleTwoBytes(
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byte byte1, byte byte2, char[] resultArr, int resultPos)
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throws IllegalArgumentException {
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// Simultaneously checks for illegal trailing-byte in leading position (<= '11000000') and
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// overlong 2-byte, '11000001'.
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if (byte1 < (byte) 0xC2) {
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throw new IllegalArgumentException("Invalid UTF-8: Illegal leading byte in 2 bytes utf");
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}
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if (isNotTrailingByte(byte2)) {
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throw new IllegalArgumentException("Invalid UTF-8: Illegal trailing byte in 2 bytes utf");
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}
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resultArr[resultPos] = (char) (((byte1 & 0x1F) << 6) | trailingByteValue(byte2));
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}
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static void handleThreeBytes(
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byte byte1, byte byte2, byte byte3, char[] resultArr, int resultPos)
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throws IllegalArgumentException {
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if (isNotTrailingByte(byte2)
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// overlong? 5 most significant bits must not all be zero
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|| (byte1 == (byte) 0xE0 && byte2 < (byte) 0xA0)
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// check for illegal surrogate codepoints
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|| (byte1 == (byte) 0xED && byte2 >= (byte) 0xA0)
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|| isNotTrailingByte(byte3)) {
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throw new IllegalArgumentException("Invalid UTF-8");
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}
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resultArr[resultPos] = (char)
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(((byte1 & 0x0F) << 12) | (trailingByteValue(byte2) << 6) | trailingByteValue(byte3));
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}
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static void handleFourBytes(
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byte byte1, byte byte2, byte byte3, byte byte4, char[] resultArr, int resultPos)
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throws IllegalArgumentException{
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if (isNotTrailingByte(byte2)
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// Check that 1 <= plane <= 16. Tricky optimized form of:
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// valid 4-byte leading byte?
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// if (byte1 > (byte) 0xF4 ||
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// overlong? 4 most significant bits must not all be zero
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// byte1 == (byte) 0xF0 && byte2 < (byte) 0x90 ||
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// codepoint larger than the highest code point (U+10FFFF)?
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// byte1 == (byte) 0xF4 && byte2 > (byte) 0x8F)
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|| (((byte1 << 28) + (byte2 - (byte) 0x90)) >> 30) != 0
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|| isNotTrailingByte(byte3)
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|| isNotTrailingByte(byte4)) {
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throw new IllegalArgumentException("Invalid UTF-8");
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}
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int codepoint = ((byte1 & 0x07) << 18)
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| (trailingByteValue(byte2) << 12)
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| (trailingByteValue(byte3) << 6)
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| trailingByteValue(byte4);
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resultArr[resultPos] = DecodeUtil.highSurrogate(codepoint);
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resultArr[resultPos + 1] = DecodeUtil.lowSurrogate(codepoint);
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}
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/**
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* Returns whether the byte is not a valid continuation of the form '10XXXXXX'.
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*/
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private static boolean isNotTrailingByte(byte b) {
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return b > (byte) 0xBF;
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}
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/**
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* Returns the actual value of the trailing byte (removes the prefix '10') for composition.
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*/
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private static int trailingByteValue(byte b) {
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return b & 0x3F;
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}
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private static char highSurrogate(int codePoint) {
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return (char) ((MIN_HIGH_SURROGATE - (MIN_SUPPLEMENTARY_CODE_POINT >>> 10))
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+ (codePoint >>> 10));
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}
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private static char lowSurrogate(int codePoint) {
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return (char) (MIN_LOW_SURROGATE + (codePoint & 0x3ff));
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}
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}
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// These UTF-8 handling methods are copied from Guava's Utf8Unsafe class with a modification to throw
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// a protocol buffer local exception. This exception is then caught in CodedOutputStream so it can
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// fallback to more lenient behavior.
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static class UnpairedSurrogateException extends IllegalArgumentException {
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UnpairedSurrogateException(int index, int length) {
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super("Unpaired surrogate at index " + index + " of " + length);
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}
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}
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}
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