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The Apache Cassandra Project develops a highly scalable second-generation distributed database, bringing together Dynamo's fully distributed design and Bigtable's ColumnFamily-based data model.

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// DO NOT EDIT
// Generated by JFlex 1.8.2 http://jflex.de/
// source: src/java/org/apache/cassandra/index/sasi/analyzer/StandardTokenizerImpl.jflex

package org.apache.cassandra.index.sasi.analyzer;

/*
 * Licensed to the Apache Software Foundation (ASF) under one or more
 * contributor license agreements.  See the NOTICE file distributed with
 * this work for additional information regarding copyright ownership.
 * The ASF licenses this file to You under the Apache License, Version 2.0
 * (the "License"); you may not use this file except in compliance with
 * the License.  You may obtain a copy of the License at
 *
 *     http://www.apache.org/licenses/LICENSE-2.0
 *
 * Unless required by applicable law or agreed to in writing, software
 * distributed under the License is distributed on an "AS IS" BASIS,
 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
 * See the License for the specific language governing permissions and
 * limitations under the License.
 */

import java.util.Arrays;

/**
 * This class implements Word Break rules from the Unicode Text Segmentation 
 * algorithm, as specified in 
 * Unicode Standard Annex #29. 
 * 

* Tokens produced are of the following types: *

    *
  • <ALPHANUM>: A sequence of alphabetic and numeric characters
  • *
  • <NUM>: A number
  • *
  • <SOUTHEAST_ASIAN>: A sequence of characters from South and Southeast * Asian languages, including Thai, Lao, Myanmar, and Khmer
  • *
  • <IDEOGRAPHIC>: A single CJKV ideographic character
  • *
  • <HIRAGANA>: A single hiragana character
  • *
  • <KATAKANA>: A sequence of katakana characters
  • *
  • <HANGUL>: A sequence of Hangul characters
  • *
*/ // See https://github.com/jflex-de/jflex/issues/222 @SuppressWarnings("FallThrough") public final class StandardTokenizerImpl implements StandardTokenizerInterface { /** This character denotes the end of file. */ public static final int YYEOF = -1; /** Initial size of the lookahead buffer. */ private static final int ZZ_BUFFERSIZE = 4096; // Lexical states. public static final int YYINITIAL = 0; /** * ZZ_LEXSTATE[l] is the state in the DFA for the lexical state l * ZZ_LEXSTATE[l+1] is the state in the DFA for the lexical state l * at the beginning of a line * l is of the form l = 2*k, k a non negative integer */ private static final int ZZ_LEXSTATE[] = { 0, 0 }; /** * Top-level table for translating characters to character classes */ private static final int [] ZZ_CMAP_TOP = zzUnpackcmap_top(); private static final String ZZ_CMAP_TOP_PACKED_0 = "\1\0\1\u0100\1\u0200\1\u0300\1\u0400\1\u0500\1\u0600\1\u0700"+ "\1\u0800\1\u0900\1\u0a00\1\u0b00\1\u0c00\1\u0d00\1\u0e00\1\u0f00"+ "\1\u1000\1\u1100\1\u1200\1\u1300\1\u1400\1\u0100\1\u1500\1\u1600"+ "\1\u1700\1\u1800\1\u1900\1\u1a00\1\u1b00\1\u1c00\1\u0100\1\u1d00"+ "\1\u1e00\1\u1f00\2\u2000\1\u2100\7\u2000\1\u2200\1\u2300\1\u2400"+ "\1\u2500\1\u2600\1\u2700\1\u2800\1\u2900\31\u2a00\1\u2b00\121\u2a00"+ "\1\u2c00\4\u0100\1\u2d00\1\u0100\1\u2e00\1\u2f00\1\u3000\1\u3100"+ "\1\u3200\1\u3300\53\u1100\1\u3400\1\u3500\2\u2000\1\u3600\1\u3700"+ "\1\u3800\1\u3900\1\u3a00\31\u2000\1\u2a00\1\u3b00\1\u3c00\1\u0100"+ "\1\u3d00\1\u3e00\1\u3f00\1\u4000\1\u4100\1\u4200\1\u4300\1\u4400"+ "\3\u2000\1\u4500\1\u4600\1\u4700\1\u4800\1\u4900\3\u2000\1\u4a00"+ "\1\u4b00\4\u2000\1\u4c00\11\u2000\3\u0100\1\u4d00\1\u4e00\13\u2000"+ "\4\u0100\1\u4f00\63\u2000\2\u0100\1\u5000\4\u2000\1\u5100\100\u2000"+ "\1\u5200\40\u2000\1\u5300\1\u5400\1\u2000\1\u5500\1\u5600\1\u5700"+ "\1\u5800\26\u2000\1\u5900\2\u2000\1\u5a00\1\u5b00\15\u2000\246\u2a00"+ "\1\u5c00\20\u2a00\1\u5d00\1\u5e00\77\u2000\2\u2a00\1\u5e00\u0b05\u2000"+ "\1\u5f00\1\u6000\u02fe\u2000"; private static int [] zzUnpackcmap_top() { int [] result = new int[4352]; int offset = 0; offset = zzUnpackcmap_top(ZZ_CMAP_TOP_PACKED_0, offset, result); return result; } private static int zzUnpackcmap_top(String packed, int offset, int [] result) { int i = 0; /* index in packed string */ int j = offset; /* index in unpacked array */ int l = packed.length(); while (i < l) { int count = packed.charAt(i++); int value = packed.charAt(i++); do result[j++] = value; while (--count > 0); } return j; } /** * Second-level tables for translating characters to character classes */ private static final int [] ZZ_CMAP_BLOCKS = zzUnpackcmap_blocks(); private static final String ZZ_CMAP_BLOCKS_PACKED_0 = "\42\0\1\1\4\0\1\2\4\0\1\3\1\0\1\4"+ "\1\0\12\5\1\6\1\3\5\0\32\7\4\0\1\10"+ "\1\0\32\7\57\0\1\7\2\0\1\11\7\0\1\7"+ "\1\0\1\6\2\0\1\7\5\0\27\7\1\0\37\7"+ "\1\0\u01ca\7\4\0\14\7\5\0\1\6\10\0\5\7"+ "\7\0\1\7\1\0\1\7\21\0\160\11\5\7\1\0"+ 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"\321\0\71\7\307\0\105\7\13\0\1\7\56\11\20\0"+ "\4\11\15\7\140\0\1\17\1\20\u0163\0\5\11\3\0"+ "\26\11\2\0\7\11\36\0\4\11\224\0\3\11\273\0"+ "\125\7\1\0\107\7\1\0\2\7\2\0\1\7\2\0"+ "\2\7\2\0\4\7\1\0\14\7\1\0\1\7\1\0"+ "\7\7\1\0\101\7\1\0\4\7\2\0\10\7\1\0"+ "\7\7\1\0\34\7\1\0\4\7\1\0\5\7\1\0"+ "\1\7\3\0\7\7\1\0\u0154\7\2\0\31\7\1\0"+ "\31\7\1\0\37\7\1\0\31\7\1\0\37\7\1\0"+ "\31\7\1\0\37\7\1\0\31\7\1\0\37\7\1\0"+ "\31\7\1\0\10\7\2\0\62\5\4\7\1\0\33\7"+ "\1\0\2\7\1\0\1\7\2\0\1\7\1\0\12\7"+ "\1\0\4\7\1\0\1\7\1\0\1\7\6\0\1\7"+ "\4\0\1\7\1\0\1\7\1\0\1\7\1\0\3\7"+ "\1\0\2\7\1\0\1\7\2\0\1\7\1\0\1\7"+ "\1\0\1\7\1\0\1\7\1\0\1\7\1\0\2\7"+ "\1\0\1\7\2\0\4\7\1\0\7\7\1\0\4\7"+ "\1\0\4\7\1\0\1\7\1\0\12\7\1\0\21\7"+ "\5\0\3\7\1\0\5\7\1\0\21\7\u012a\0\32\216"+ "\1\20\377\0\327\16\51\0\65\16\13\0\336\16\343\0"+ "\1\11\36\0\140\11\200\0\360\11\20\0"; private static int [] zzUnpackcmap_blocks() { int [] result = new int[24832]; int offset = 0; offset = zzUnpackcmap_blocks(ZZ_CMAP_BLOCKS_PACKED_0, offset, result); return result; } private static int zzUnpackcmap_blocks(String packed, int offset, int [] result) { int i = 0; /* index in packed string */ int j = offset; /* index in unpacked array */ int l = packed.length(); while (i < l) { int count = packed.charAt(i++); int value = packed.charAt(i++); do result[j++] = value; while (--count > 0); } return j; } /** * Translates DFA states to action switch labels. */ private static final int [] ZZ_ACTION = zzUnpackAction(); private static final String ZZ_ACTION_PACKED_0 = "\1\0\1\1\1\2\1\3\1\1\1\3\1\4\1\5"+ "\1\6\1\7\1\10\26\1\1\0\1\2\21\0\2\3"+ "\12\0\1\3\11\0\1\3\55\0\1\1\115\0"; private static int [] zzUnpackAction() { int [] result = new int[198]; int offset = 0; offset = zzUnpackAction(ZZ_ACTION_PACKED_0, offset, result); return result; } private static int zzUnpackAction(String packed, int offset, int [] result) { int i = 0; /* index in packed string */ int j = offset; /* index in unpacked array */ int l = packed.length(); while (i < l) { int count = packed.charAt(i++); int value = packed.charAt(i++); do result[j++] = value; while (--count > 0); } return j; } /** * Translates a state to a row index in the transition table */ private static final int [] ZZ_ROWMAP = zzUnpackRowMap(); private static final String ZZ_ROWMAP_PACKED_0 = "\0\0\0\217\0\u011e\0\u01ad\0\u023c\0\u02cb\0\u035a\0\u03e9"+ "\0\u0478\0\u0507\0\u0596\0\u0625\0\u06b4\0\u0743\0\u07d2\0\u0861"+ "\0\u08f0\0\u097f\0\u0a0e\0\u0a9d\0\u0b2c\0\u0bbb\0\u0c4a\0\u0cd9"+ "\0\u0d68\0\u0df7\0\u0e86\0\u0f15\0\u0fa4\0\u1033\0\u10c2\0\u1151"+ "\0\u11e0\0\u126f\0\u12fe\0\u138d\0\u06b4\0\u141c\0\u07d2\0\u14ab"+ "\0\u153a\0\u097f\0\u0a0e\0\u0a9d\0\u0b2c\0\u0bbb\0\u15c9\0\u1658"+ "\0\u0d68\0\u0df7\0\u16e7\0\u1776\0\u1805\0\u1894\0\u1923\0\u19b2"+ "\0\u1a41\0\u1ad0\0\u1b5f\0\u1bee\0\u1c7d\0\u1d0c\0\u1d9b\0\u023c"+ "\0\u1e2a\0\u1eb9\0\u1f48\0\u1fd7\0\u2066\0\u20f5\0\u2184\0\u2213"+ "\0\u22a2\0\u2331\0\u23c0\0\u244f\0\u24de\0\u256d\0\u25fc\0\u268b"+ "\0\u271a\0\u27a9\0\u2838\0\u28c7\0\u2956\0\u29e5\0\u2a74\0\u2b03"+ "\0\u2b92\0\u2c21\0\u2cb0\0\u2d3f\0\u2dce\0\u2e5d\0\u2eec\0\u2f7b"+ "\0\u300a\0\u3099\0\u3128\0\u31b7\0\u3246\0\u32d5\0\u3364\0\u33f3"+ "\0\u3482\0\u3511\0\u35a0\0\u362f\0\u36be\0\u374d\0\u37dc\0\u11e0"+ "\0\u386b\0\u38fa\0\u3989\0\u3a18\0\u3aa7\0\u3b36\0\u3bc5\0\u3c54"+ "\0\u3ce3\0\u3d72\0\u3e01\0\u3e90\0\u3f1f\0\u3fae\0\u403d\0\u40cc"+ "\0\u415b\0\u41ea\0\u4279\0\u4308\0\u4397\0\u4426\0\u44b5\0\u4544"+ "\0\u45d3\0\u4662\0\u46f1\0\u4780\0\u480f\0\u489e\0\u492d\0\u49bc"+ "\0\u4a4b\0\u4ada\0\u4b69\0\u4bf8\0\u4c87\0\u4d16\0\u4da5\0\u4e34"+ "\0\u4ec3\0\u4f52\0\u4fe1\0\u5070\0\u50ff\0\u518e\0\u521d\0\u52ac"+ "\0\u533b\0\u53ca\0\u5459\0\u54e8\0\u5577\0\u5606\0\u5695\0\u5724"+ "\0\u57b3\0\u5842\0\u58d1\0\u5960\0\u59ef\0\u5a7e\0\u5b0d\0\u5b9c"+ "\0\u5c2b\0\u5cba\0\u5d49\0\u5dd8\0\u5e67\0\u5ef6\0\u5f85\0\u6014"+ "\0\u60a3\0\u6132\0\u61c1\0\u6250\0\u62df\0\u636e\0\u63fd\0\u648c"+ "\0\u651b\0\u65aa\0\u6639\0\u66c8\0\u6757\0\u67e6"; private static int [] zzUnpackRowMap() { int [] result = new int[198]; int offset = 0; offset = zzUnpackRowMap(ZZ_ROWMAP_PACKED_0, offset, result); return result; } private static int zzUnpackRowMap(String packed, int offset, int [] result) { int i = 0; /* index in packed string */ int j = offset; /* index in unpacked array */ int l = packed.length(); while (i < l) { int high = packed.charAt(i++) << 16; result[j++] = high | packed.charAt(i++); } return j; } /** * The transition table of the DFA */ private static final int [] ZZ_TRANS = zzUnpackTrans(); private static final String ZZ_TRANS_PACKED_0 = "\5\2\1\3\1\2\1\4\1\5\1\2\1\6\2\7"+ "\1\10\1\11\1\12\1\13\1\14\1\15\1\16\1\17"+ "\1\20\1\21\1\22\1\23\1\24\1\25\1\26\1\27"+ "\1\30\1\2\1\31\1\32\1\33\1\34\1\35\1\36"+ "\1\37\1\40\147\2\1\41\221\0\3\42\1\3\1\0"+ "\1\4\1\43\1\3\1\6\1\0\1\3\1\4\3\0"+ "\1\44\1\45\1\46\1\47\1\50\1\51\1\52\1\53"+ "\1\54\1\55\1\56\1\57\1\0\1\60\1\61\1\62"+ 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j = offset; /* index in unpacked array */ int l = packed.length(); while (i < l) { int count = packed.charAt(i++); int value = packed.charAt(i++); value--; do result[j++] = value; while (--count > 0); } return j; } /** Error code for "Unknown internal scanner error". */ private static final int ZZ_UNKNOWN_ERROR = 0; /** Error code for "could not match input". */ private static final int ZZ_NO_MATCH = 1; /** Error code for "pushback value was too large". */ private static final int ZZ_PUSHBACK_2BIG = 2; /** * Error messages for {@link #ZZ_UNKNOWN_ERROR}, {@link #ZZ_NO_MATCH}, and * {@link #ZZ_PUSHBACK_2BIG} respectively. */ private static final String ZZ_ERROR_MSG[] = { "Unknown internal scanner error", "Error: could not match input", "Error: pushback value was too large" }; /** * ZZ_ATTRIBUTE[aState] contains the attributes of state {@code aState} */ private static final int [] ZZ_ATTRIBUTE = zzUnpackAttribute(); private static final String ZZ_ATTRIBUTE_PACKED_0 = "\1\0\1\11\37\1\1\0\1\1\21\0\2\1\12\0"+ "\1\1\11\0\1\1\55\0\1\1\115\0"; private static int [] zzUnpackAttribute() { int [] result = new int[198]; int offset = 0; offset = zzUnpackAttribute(ZZ_ATTRIBUTE_PACKED_0, offset, result); return result; } private static int zzUnpackAttribute(String packed, int offset, int [] result) { int i = 0; /* index in packed string */ int j = offset; /* index in unpacked array */ int l = packed.length(); while (i < l) { int count = packed.charAt(i++); int value = packed.charAt(i++); do result[j++] = value; while (--count > 0); } return j; } /** Input device. */ private java.io.Reader zzReader; /** Current state of the DFA. */ private int zzState; /** Current lexical state. */ private int zzLexicalState = YYINITIAL; /** * This buffer contains the current text to be matched and is the source of the {@link #yytext()} * string. */ private char zzBuffer[] = new char[ZZ_BUFFERSIZE]; /** Text position at the last accepting state. */ private int zzMarkedPos; /** Current text position in the buffer. */ private int zzCurrentPos; /** Marks the beginning of the {@link #yytext()} string in the buffer. */ private int zzStartRead; /** Marks the last character in the buffer, that has been read from input. */ private int zzEndRead; /** * Whether the scanner is at the end of file. * @see #yyatEOF */ private boolean zzAtEOF; /** * The number of occupied positions in {@link #zzBuffer} beyond {@link #zzEndRead}. * *

When a lead/high surrogate has been read from the input stream into the final * {@link #zzBuffer} position, this will have a value of 1; otherwise, it will have a value of 0. */ private int zzFinalHighSurrogate = 0; /** Number of newlines encountered up to the start of the matched text. */ @SuppressWarnings("unused") private int yyline; /** Number of characters from the last newline up to the start of the matched text. */ @SuppressWarnings("unused") private int yycolumn; /** Number of characters up to the start of the matched text. */ private long yychar; /** Whether the scanner is currently at the beginning of a line. */ @SuppressWarnings("unused") private boolean zzAtBOL = true; /** Whether the user-EOF-code has already been executed. */ @SuppressWarnings("unused") private boolean zzEOFDone; /* user code: */ /** Alphanumeric sequences */ public static final int WORD_TYPE = StandardAnalyzer.TokenType.ALPHANUM.value; /** Numbers */ public static final int NUMERIC_TYPE = StandardAnalyzer.TokenType.NUM.value; /** * Chars in class \p{Line_Break = Complex_Context} are from South East Asian * scripts (Thai, Lao, Myanmar, Khmer, etc.). Sequences of these are kept * together as as a single token rather than broken up, because the logic * required to break them at word boundaries is too complex for UAX#29. *

* See Unicode Line Breaking Algorithm: http://www.unicode.org/reports/tr14/#SA */ public static final int SOUTH_EAST_ASIAN_TYPE = StandardAnalyzer.TokenType.SOUTHEAST_ASIAN.value; public static final int IDEOGRAPHIC_TYPE = StandardAnalyzer.TokenType.IDEOGRAPHIC.value; public static final int HIRAGANA_TYPE = StandardAnalyzer.TokenType.HIRAGANA.value; public static final int KATAKANA_TYPE = StandardAnalyzer.TokenType.KATAKANA.value; public static final int HANGUL_TYPE = StandardAnalyzer.TokenType.HANGUL.value; public final long yychar() { return yychar; } public String getText() { return String.valueOf(zzBuffer, zzStartRead, zzMarkedPos-zzStartRead); } public char[] getArray() { return Arrays.copyOfRange(zzBuffer, zzStartRead, zzMarkedPos); } public byte[] getBytes() { return getText().getBytes(); } /** * Creates a new scanner * * @param in the java.io.Reader to read input from. */ public StandardTokenizerImpl(java.io.Reader in) { this.zzReader = in; } /** * Translates raw input code points to DFA table row */ private static int zzCMap(int input) { int offset = input & 255; return offset == input ? ZZ_CMAP_BLOCKS[offset] : ZZ_CMAP_BLOCKS[ZZ_CMAP_TOP[input >> 8] | offset]; } /** * Refills the input buffer. * * @return {@code false} iff there was new input. * @exception java.io.IOException if any I/O-Error occurs */ private boolean zzRefill() throws java.io.IOException { /* first: make room (if you can) */ if (zzStartRead > 0) { zzEndRead += zzFinalHighSurrogate; zzFinalHighSurrogate = 0; System.arraycopy(zzBuffer, zzStartRead, zzBuffer, 0, zzEndRead - zzStartRead); /* translate stored positions */ zzEndRead -= zzStartRead; zzCurrentPos -= zzStartRead; zzMarkedPos -= zzStartRead; zzStartRead = 0; } /* is the buffer big enough? */ if (zzCurrentPos >= zzBuffer.length - zzFinalHighSurrogate) { /* if not: blow it up */ char newBuffer[] = new char[zzBuffer.length * 2]; System.arraycopy(zzBuffer, 0, newBuffer, 0, zzBuffer.length); zzBuffer = newBuffer; zzEndRead += zzFinalHighSurrogate; zzFinalHighSurrogate = 0; } /* fill the buffer with new input */ int requested = zzBuffer.length - zzEndRead; int numRead = zzReader.read(zzBuffer, zzEndRead, requested); /* not supposed to occur according to specification of java.io.Reader */ if (numRead == 0) { throw new java.io.IOException( "Reader returned 0 characters. See JFlex examples/zero-reader for a workaround."); } if (numRead > 0) { zzEndRead += numRead; if (Character.isHighSurrogate(zzBuffer[zzEndRead - 1])) { if (numRead == requested) { // We requested too few chars to encode a full Unicode character --zzEndRead; zzFinalHighSurrogate = 1; } else { // There is room in the buffer for at least one more char int c = zzReader.read(); // Expecting to read a paired low surrogate char if (c == -1) { return true; } else { zzBuffer[zzEndRead++] = (char)c; } } } /* potentially more input available */ return false; } /* numRead < 0 ==> end of stream */ return true; } /** * Closes the input reader. * * @throws java.io.IOException if the reader could not be closed. */ public final void yyclose() throws java.io.IOException { zzAtEOF = true; // indicate end of file zzEndRead = zzStartRead; // invalidate buffer if (zzReader != null) { zzReader.close(); } } /** * Resets the scanner to read from a new input stream. * *

Does not close the old reader. * *

All internal variables are reset, the old input stream cannot be reused (internal * buffer is discarded and lost). Lexical state is set to {@code ZZ_INITIAL}. * *

Internal scan buffer is resized down to its initial length, if it has grown. * * @param reader The new input stream. */ public final void yyreset(java.io.Reader reader) { zzReader = reader; zzEOFDone = false; yyResetPosition(); zzLexicalState = YYINITIAL; if (zzBuffer.length > ZZ_BUFFERSIZE) { zzBuffer = new char[ZZ_BUFFERSIZE]; } } /** * Resets the input position. */ private final void yyResetPosition() { zzAtBOL = true; zzAtEOF = false; zzCurrentPos = 0; zzMarkedPos = 0; zzStartRead = 0; zzEndRead = 0; zzFinalHighSurrogate = 0; yyline = 0; yycolumn = 0; yychar = 0L; } /** * Returns whether the scanner has reached the end of the reader it reads from. * * @return whether the scanner has reached EOF. */ public final boolean yyatEOF() { return zzAtEOF; } /** * Returns the current lexical state. * * @return the current lexical state. */ public final int yystate() { return zzLexicalState; } /** * Enters a new lexical state. * * @param newState the new lexical state */ public final void yybegin(int newState) { zzLexicalState = newState; } /** * Returns the text matched by the current regular expression. * * @return the matched text. */ public final String yytext() { return new String(zzBuffer, zzStartRead, zzMarkedPos-zzStartRead); } /** * Returns the character at the given position from the matched text. * *

It is equivalent to {@code yytext().charAt(pos)}, but faster. * * @param position the position of the character to fetch. A value from 0 to {@code yylength()-1}. * * @return the character at {@code position}. */ public final char yycharat(int position) { return zzBuffer[zzStartRead + position]; } /** * How many characters were matched. * * @return the length of the matched text region. */ public final int yylength() { return zzMarkedPos-zzStartRead; } /** * Reports an error that occurred while scanning. * *

In a well-formed scanner (no or only correct usage of {@code yypushback(int)} and a * match-all fallback rule) this method will only be called with things that * "Can't Possibly Happen". * *

If this method is called, something is seriously wrong (e.g. a JFlex bug producing a faulty * scanner etc.). * *

Usual syntax/scanner level error handling should be done in error fallback rules. * * @param errorCode the code of the error message to display. */ private static void zzScanError(int errorCode) { String message; try { message = ZZ_ERROR_MSG[errorCode]; } catch (ArrayIndexOutOfBoundsException e) { message = ZZ_ERROR_MSG[ZZ_UNKNOWN_ERROR]; } throw new Error(message); } /** * Pushes the specified amount of characters back into the input stream. * *

They will be read again by then next call of the scanning method. * * @param number the number of characters to be read again. This number must not be greater than * {@link #yylength()}. */ public void yypushback(int number) { if ( number > yylength() ) zzScanError(ZZ_PUSHBACK_2BIG); zzMarkedPos -= number; } /** * Resumes scanning until the next regular expression is matched, the end of input is encountered * or an I/O-Error occurs. * * @return the next token. * @exception java.io.IOException if any I/O-Error occurs. */ public int getNextToken() throws java.io.IOException { int zzInput; int zzAction; // cached fields: int zzCurrentPosL; int zzMarkedPosL; int zzEndReadL = zzEndRead; char[] zzBufferL = zzBuffer; int [] zzTransL = ZZ_TRANS; int [] zzRowMapL = ZZ_ROWMAP; int [] zzAttrL = ZZ_ATTRIBUTE; while (true) { zzMarkedPosL = zzMarkedPos; yychar+= zzMarkedPosL-zzStartRead; zzAction = -1; zzCurrentPosL = zzCurrentPos = zzStartRead = zzMarkedPosL; zzState = ZZ_LEXSTATE[zzLexicalState]; // set up zzAction for empty match case: int zzAttributes = zzAttrL[zzState]; if ( (zzAttributes & 1) == 1 ) { zzAction = zzState; } zzForAction: { while (true) { if (zzCurrentPosL < zzEndReadL) { zzInput = Character.codePointAt(zzBufferL, zzCurrentPosL, zzEndReadL); zzCurrentPosL += Character.charCount(zzInput); } else if (zzAtEOF) { zzInput = YYEOF; break zzForAction; } else { // store back cached positions zzCurrentPos = zzCurrentPosL; zzMarkedPos = zzMarkedPosL; boolean eof = zzRefill(); // get translated positions and possibly new buffer zzCurrentPosL = zzCurrentPos; zzMarkedPosL = zzMarkedPos; zzBufferL = zzBuffer; zzEndReadL = zzEndRead; if (eof) { zzInput = YYEOF; break zzForAction; } else { zzInput = Character.codePointAt(zzBufferL, zzCurrentPosL, zzEndReadL); zzCurrentPosL += Character.charCount(zzInput); } } int zzNext = zzTransL[ zzRowMapL[zzState] + zzCMap(zzInput) ]; if (zzNext == -1) break zzForAction; zzState = zzNext; zzAttributes = zzAttrL[zzState]; if ( (zzAttributes & 1) == 1 ) { zzAction = zzState; zzMarkedPosL = zzCurrentPosL; if ( (zzAttributes & 8) == 8 ) break zzForAction; } } } // store back cached position zzMarkedPos = zzMarkedPosL; if (zzInput == YYEOF && zzStartRead == zzCurrentPos) { zzAtEOF = true; { return StandardAnalyzer.TokenType.EOF.value; } } else { switch (zzAction < 0 ? zzAction : ZZ_ACTION[zzAction]) { case 1: { /* Break so we don't hit fall-through warning: */ break; /* Not numeric, word, ideographic, hiragana, or SE Asian -- ignore it. */ } // fall through case 9: break; case 2: { return NUMERIC_TYPE; } // fall through case 10: break; case 3: { return WORD_TYPE; } // fall through case 11: break; case 4: { return SOUTH_EAST_ASIAN_TYPE; } // fall through case 12: break; case 5: { return HANGUL_TYPE; } // fall through case 13: break; case 6: { return IDEOGRAPHIC_TYPE; } // fall through case 14: break; case 7: { return KATAKANA_TYPE; } // fall through case 15: break; case 8: { return HIRAGANA_TYPE; } // fall through case 16: break; default: zzScanError(ZZ_NO_MATCH); } } } } }





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