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/* The following code was generated by JFlex 1.4.1 on 6/29/14 12:25 AM */

/*
 * 02/15/2005
 *
 * SQLTokenMaker.java - Scanner for SQL.
 * 
 * This library is distributed under a modified BSD license.  See the included
 * RSyntaxTextArea.License.txt file for details.
 */
package org.fife.ui.rsyntaxtextarea.modes;

import java.io.*;
import javax.swing.text.Segment;

import org.fife.ui.rsyntaxtextarea.*;


/**
 * This class generates tokens representing a text stream as SQL.

* * This implementation was created using * JFlex 1.4.1; however, the generated file * was modified for performance. Memory allocation needs to be almost * completely removed to be competitive with the handwritten lexers (subclasses * of AbstractTokenMaker, so this class has been modified so that * Strings are never allocated (via yytext()), and the scanner never has to * worry about refilling its buffer (needlessly copying chars around). * We can achieve this because RText always scans exactly 1 line of tokens at a * time, and hands the scanner this line as an array of characters (a Segment * really). Since tokens contain pointers to char arrays instead of Strings * holding their contents, there is no need for allocating new memory for * Strings.

* * The actual algorithm generated for scanning has, of course, not been * modified.

* * If you wish to regenerate this file yourself, keep in mind the following: *

    *
  • The generated SQLTokenMaker.java file will contain two * definitions of both zzRefill and yyreset. * You should hand-delete the second of each definition (the ones * generated by the lexer), as these generated methods modify the input * buffer, which we'll never have to do.
  • *
  • You should also change the declaration/definition of zzBuffer to NOT * be initialized. This is a needless memory allocation for us since we * will be pointing the array somewhere else anyway.
  • *
  • You should NOT call yylex() on the generated scanner * directly; rather, you should use getTokenList as you would * with any other TokenMaker instance.
  • *
* * @author Robert Futrell * @version 0.5 * */ public class SQLTokenMaker extends AbstractJFlexTokenMaker { /** This character denotes the end of file */ public static final int YYEOF = -1; /** lexical states */ public static final int STRING = 1; public static final int YYINITIAL = 0; public static final int MLC = 3; public static final int CHAR = 2; /** * Translates characters to character classes */ private static final String ZZ_CMAP_PACKED = "\11\0\1\4\1\1\25\0\1\4\1\0\1\54\4\0\1\55\2\15"+ "\1\13\1\11\1\0\1\12\1\17\1\14\1\3\1\50\1\50\1\3"+ "\1\45\3\3\1\46\1\3\1\16\1\0\1\10\1\7\1\6\2\0"+ "\1\21\1\37\1\31\1\22\1\20\1\44\1\47\1\41\1\34\1\51"+ "\1\52\1\23\1\35\1\26\1\33\1\42\1\53\1\25\1\30\1\24"+ "\1\32\1\36\1\40\1\43\1\27\1\2\1\56\1\0\1\57\1\0"+ "\1\5\1\0\1\21\1\37\1\31\1\22\1\20\1\44\1\47\1\41"+ "\1\34\1\51\1\52\1\23\1\35\1\26\1\33\1\42\1\53\1\25"+ "\1\30\1\24\1\32\1\36\1\40\1\43\1\27\1\2\uff85\0"; /** * Translates characters to character classes */ private static final char [] ZZ_CMAP = zzUnpackCMap(ZZ_CMAP_PACKED); /** * Translates DFA states to action switch labels. */ private static final int [] ZZ_ACTION = zzUnpackAction(); private static final String ZZ_ACTION_PACKED_0 = "\4\0\1\1\1\2\1\1\1\3\1\4\5\5\1\6"+ "\1\1\1\7\27\1\1\10\1\11\1\12\1\13\1\14"+ "\1\15\1\13\1\16\1\17\1\13\1\20\1\13\1\0"+ "\1\21\1\22\4\1\1\23\45\1\2\23\4\1\1\23"+ "\7\1\1\23\22\1\1\24\1\13\1\25\1\7\1\0"+ "\3\1\1\26\51\1\1\23\4\1\1\23\2\1\1\23"+ "\22\1\1\23\4\1\1\23\4\1\1\23\17\1\1\23"+ "\35\1\1\23\5\1\1\23\10\1\1\23\5\1\1\23"+ "\11\1\1\23\42\1\1\23\4\1\1\23\16\1\1\26"+ "\4\1"; private static int [] zzUnpackAction() { int [] result = new int[354]; 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\60\0\140\0\220\0\300\0\300\0\360\0\u0120"+ "\0\u0150\0\u0180\0\300\0\u01b0\0\u01e0\0\u0210\0\300\0\u0240"+ "\0\u0270\0\u02a0\0\u02d0\0\u0300\0\u0330\0\u0360\0\u0390\0\u03c0"+ "\0\u03f0\0\u0420\0\u0450\0\u0480\0\u04b0\0\u04e0\0\u0510\0\u0540"+ "\0\u0570\0\u05a0\0\u05d0\0\u0600\0\u0630\0\u0660\0\u0690\0\u06c0"+ "\0\300\0\300\0\u06f0\0\u0720\0\300\0\u0750\0\u0780\0\300"+ "\0\u07b0\0\u07e0\0\300\0\u0810\0\u0840\0\u0870\0\300\0\u08a0"+ "\0\u08d0\0\u0900\0\u0930\0\u0960\0\u0990\0\u09c0\0\u09f0\0\u0a20"+ "\0\u0a50\0\u0a80\0\u0ab0\0\u0ae0\0\u0b10\0\u0b40\0\u0b70\0\u0ba0"+ "\0\u0bd0\0\u0c00\0\u0c30\0\u0c60\0\u0c90\0\u0cc0\0\u0cf0\0\u0d20"+ "\0\u0d50\0\u0d80\0\u0db0\0\u0de0\0\u0e10\0\u0e40\0\u0e70\0\u0ea0"+ "\0\u0ed0\0\u0f00\0\u0f30\0\u0f60\0\u0f90\0\u0fc0\0\u0ff0\0\u1020"+ "\0\u1050\0\u1080\0\360\0\u10b0\0\u10e0\0\u1110\0\u1140\0\u1170"+ "\0\u11a0\0\u11d0\0\u1200\0\u1230\0\u1260\0\u1290\0\u12c0\0\u12f0"+ "\0\u1320\0\u1350\0\u1380\0\u13b0\0\u13e0\0\u1410\0\u1440\0\u1470"+ "\0\u14a0\0\u14d0\0\u1500\0\u1530\0\u1560\0\u1590\0\u15c0\0\u15f0"+ "\0\u1620\0\u1650\0\300\0\300\0\300\0\u1680\0\u1680\0\u16b0"+ "\0\u16e0\0\u1710\0\360\0\u1740\0\u0960\0\u1770\0\u17a0\0\u17d0"+ "\0\u1800\0\u1830\0\u1860\0\u1890\0\u18c0\0\u18f0\0\u1920\0\u1950"+ "\0\u1980\0\u19b0\0\u19e0\0\u1a10\0\u1a40\0\u1a70\0\u1aa0\0\u1ad0"+ "\0\u1b00\0\u1b30\0\u1b60\0\u1b90\0\u1bc0\0\u1bf0\0\u1c20\0\u1c50"+ "\0\u1c80\0\u1cb0\0\u1ce0\0\u1d10\0\u1d40\0\u1d70\0\u1da0\0\u1dd0"+ "\0\u1e00\0\u1e30\0\u1e60\0\u1e90\0\u1ec0\0\u1ef0\0\u1f20\0\u1f50"+ "\0\u1f80\0\u1fb0\0\u1fe0\0\u2010\0\u2040\0\u2070\0\u20a0\0\u20d0"+ "\0\u2100\0\u2130\0\u2160\0\u2190\0\u21c0\0\u21f0\0\u2220\0\u2250"+ "\0\u2280\0\u22b0\0\u22e0\0\u2310\0\u2340\0\u2370\0\u12f0\0\u23a0"+ "\0\u23d0\0\u2400\0\u2430\0\u2460\0\u2490\0\u24c0\0\u24f0\0\u2520"+ "\0\u2550\0\u2580\0\u25b0\0\u25e0\0\u2610\0\u2640\0\u2670\0\u26a0"+ "\0\u26d0\0\u2700\0\u2730\0\u2760\0\u2790\0\u27c0\0\u27f0\0\u2820"+ "\0\u2850\0\u2880\0\u28b0\0\u28e0\0\u2910\0\u2940\0\u2970\0\u29a0"+ "\0\u29d0\0\u2a00\0\u2a30\0\u2a60\0\u2a90\0\u2ac0\0\u2af0\0\u2b20"+ "\0\u2b50\0\u2b80\0\u2bb0\0\u2be0\0\u2c10\0\u2c40\0\u2c70\0\u2ca0"+ "\0\u2cd0\0\u2d00\0\u2d30\0\u2d60\0\u2d90\0\u2dc0\0\u2df0\0\u15f0"+ "\0\u2e20\0\u2e50\0\u2e80\0\u2eb0\0\u2ee0\0\u0c30\0\u2f10\0\u2f40"+ "\0\u2f70\0\u2fa0\0\u2fd0\0\u3000\0\u3030\0\u3060\0\u0ff0\0\u3090"+ "\0\u30c0\0\u2040\0\u30f0\0\u3120\0\u2ca0\0\u3150\0\u3180\0\u31b0"+ "\0\u31e0\0\u3210\0\u3240\0\u3270\0\u32a0\0\u32d0\0\u3300\0\u3330"+ "\0\u3360\0\u3390\0\u33c0\0\u33f0\0\u3420\0\u3450\0\u3480\0\u34b0"+ "\0\u34e0\0\u3510\0\u3540\0\u3570\0\u35a0\0\u35d0\0\u3600\0\u3630"+ "\0\u3660\0\u3690\0\u36c0\0\u36f0\0\u3720\0\u3750\0\u3780\0\u37b0"+ "\0\u37e0\0\u3810\0\u3840\0\u3870\0\u38a0\0\u38d0\0\u3900\0\u3930"+ "\0\u3960\0\u3990\0\u39c0\0\u39f0\0\u3a20\0\u3a50\0\u3a80\0\u3ab0"+ "\0\u3ae0\0\u3b10\0\u3b40\0\u3b70\0\u3ba0\0\u3bd0\0\u3c00\0\u3c30"+ "\0\u3c60\0\u3c90\0\u3cc0\0\u3cf0\0\u3d20\0\u3d50\0\u3d80\0\u3db0"+ "\0\u3de0\0\u3e10"; private static int [] zzUnpackRowMap() { int [] result = new int[354]; 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 = "\1\5\1\6\1\7\1\10\1\11\1\5\1\12\1\13"+ "\1\14\1\13\1\15\1\13\1\16\1\17\1\20\1\21"+ "\1\22\1\23\1\24\1\25\1\26\1\27\1\30\1\31"+ "\1\32\1\33\1\34\1\35\1\36\1\37\1\40\1\41"+ "\1\42\1\43\1\44\1\7\1\45\2\10\1\46\1\10"+ "\1\47\1\50\1\7\1\51\1\52\1\53\1\5\1\54"+ "\1\55\52\54\1\56\3\54\1\57\1\60\53\57\1\61"+ "\2\57\1\62\1\63\11\62\1\64\44\62\62\0\2\7"+ "\1\0\1\7\12\0\34\7\7\0\1\10\13\0\1\21"+ "\1\65\24\0\2\10\1\0\1\10\13\0\1\11\62\0"+ "\1\13\56\0\2\13\62\0\1\66\60\0\1\67\46\0"+ "\1\7\15\0\25\7\2\0\1\7\1\0\3\7\7\0"+ "\1\21\14\0\1\65\24\0\2\21\1\0\1\21\11\0"+ "\2\7\1\0\1\7\12\0\23\7\1\70\10\7\6\0"+ "\2\7\1\0\1\7\12\0\2\7\1\71\1\72\2\7"+ "\1\73\1\7\1\74\1\7\1\75\3\7\1\76\15\7"+ "\6\0\2\7\1\0\1\7\12\0\1\77\1\100\3\7"+ "\1\101\5\7\1\102\1\103\17\7\6\0\2\7\1\0"+ "\1\7\12\0\1\104\12\7\1\105\1\106\17\7\6\0"+ "\2\7\1\0\1\7\12\0\1\107\1\110\3\7\1\111"+ "\1\7\1\112\3\7\1\113\1\114\17\7\6\0\2\7"+ "\1\0\1\7\12\0\1\115\13\7\1\116\17\7\6\0"+ "\2\7\1\0\1\7\12\0\12\7\1\117\1\120\20\7"+ 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"\1\0\1\7\12\0\14\7\1\u015c\17\7\6\0\2\7"+ "\1\0\1\7\12\0\10\7\1\u0100\23\7\6\0\2\7"+ "\1\0\1\7\12\0\21\7\1\213\12\7\6\0\2\7"+ "\1\0\1\7\12\0\15\7\1\u015d\16\7\6\0\2\7"+ "\1\0\1\7\12\0\1\u015e\33\7\6\0\2\7\1\0"+ "\1\7\12\0\10\7\1\u015f\23\7\6\0\2\7\1\0"+ "\1\7\12\0\4\7\1\u0160\27\7\6\0\2\7\1\0"+ "\1\7\12\0\1\7\1\u0161\32\7\6\0\2\7\1\0"+ "\1\7\12\0\15\7\1\u0162\16\7\6\0\2\7\1\0"+ "\1\7\12\0\22\7\1\213\11\7\4\0"; private static int [] zzUnpackTrans() { int [] result = new int[15936]; int offset = 0; offset = zzUnpackTrans(ZZ_TRANS_PACKED_0, offset, result); return result; } private static int zzUnpackTrans(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++); value--; do result[j++] = value; while (--count > 0); } return j; } /* error codes */ private static final int ZZ_UNKNOWN_ERROR = 0; private static final int ZZ_NO_MATCH = 1; private static final int ZZ_PUSHBACK_2BIG = 2; /* error messages for the codes above */ private static final String ZZ_ERROR_MSG[] = { "Unkown internal scanner error", "Error: could not match input", "Error: pushback value was too large" }; /** * ZZ_ATTRIBUTE[aState] contains the attributes of state aState */ private static final int [] ZZ_ATTRIBUTE = zzUnpackAttribute(); private static final String ZZ_ATTRIBUTE_PACKED_0 = "\4\0\2\11\4\1\1\11\3\1\1\11\31\1\2\11"+ "\2\1\1\11\2\1\1\11\2\1\1\11\1\1\1\0"+ "\1\1\1\11\113\1\3\11\1\1\1\0\333\1"; private static int [] zzUnpackAttribute() { int [] result = new int[354]; 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; } /** the input device */ private java.io.Reader zzReader; /** the current state of the DFA */ private int zzState; /** the current lexical state */ private int zzLexicalState = YYINITIAL; /** this buffer contains the current text to be matched and is the source of the yytext() string */ private char zzBuffer[]; /** the textposition at the last accepting state */ private int zzMarkedPos; /** the current text position in the buffer */ private int zzCurrentPos; /** startRead marks the beginning of the yytext() string in the buffer */ private int zzStartRead; /** endRead marks the last character in the buffer, that has been read from input */ private int zzEndRead; /** zzAtEOF == true <=> the scanner is at the EOF */ private boolean zzAtEOF; /* user code: */ /** * Constructor. This must be here because JFlex does not generate a * no-parameter constructor. */ public SQLTokenMaker() { super(); } /** * Adds the token specified to the current linked list of tokens. * * @param tokenType The token's type. */ private void addToken(int tokenType) { addToken(zzStartRead, zzMarkedPos-1, tokenType); } /** * Adds the token specified to the current linked list of tokens. * * @param tokenType The token's type. */ private void addToken(int start, int end, int tokenType) { int so = start + offsetShift; addToken(zzBuffer, start,end, tokenType, so); } /** * Adds the token specified to the current linked list of tokens. * * @param array The character array. * @param start The starting offset in the array. * @param end The ending offset in the array. * @param tokenType The token's type. * @param startOffset The offset in the document at which this token * occurs. */ @Override public void addToken(char[] array, int start, int end, int tokenType, int startOffset) { super.addToken(array, start,end, tokenType, startOffset); zzStartRead = zzMarkedPos; } /** * Overridden to return true so paren matching occurs for * SQL. * * @return true always. */ @Override public boolean getCurlyBracesDenoteCodeBlocks(int languageIndex) { return true; } /** * {@inheritDoc} */ @Override public String[] getLineCommentStartAndEnd(int languageIndex) { return new String[] { "--", null }; } /** * Returns the first token in the linked list of tokens generated * from text. This method must be implemented by * subclasses so they can correctly implement syntax highlighting. * * @param text The text from which to get tokens. * @param initialTokenType The token type we should start with. * @param startOffset The offset into the document at which * text starts. * @return The first Token in a linked list representing * the syntax highlighted text. */ public Token getTokenList(Segment text, int initialTokenType, int startOffset) { resetTokenList(); this.offsetShift = -text.offset + startOffset; // Start off in the proper state. int state = Token.NULL; switch (initialTokenType) { case Token.LITERAL_STRING_DOUBLE_QUOTE: state = STRING; start = text.offset; break; case Token.LITERAL_CHAR: state = CHAR; start = text.offset; break; case Token.COMMENT_MULTILINE: state = MLC; start = text.offset; break; default: state = Token.NULL; } s = text; try { yyreset(zzReader); yybegin(state); return yylex(); } catch (IOException ioe) { ioe.printStackTrace(); return new TokenImpl(); } } /** * Refills the input buffer. * * @return true if EOF was reached, otherwise * false. */ private boolean zzRefill() { return zzCurrentPos>=s.offset+s.count; } /** * 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 YY_INITIAL. * * @param reader the new input stream */ public final void yyreset(java.io.Reader reader) { // 's' has been updated. zzBuffer = s.array; /* * We replaced the line below with the two below it because zzRefill * no longer "refills" the buffer (since the way we do it, it's always * "full" the first time through, since it points to the segment's * array). So, we assign zzEndRead here. */ //zzStartRead = zzEndRead = s.offset; zzStartRead = s.offset; zzEndRead = zzStartRead + s.count - 1; zzCurrentPos = zzMarkedPos = s.offset; zzLexicalState = YYINITIAL; zzReader = reader; zzAtEOF = false; } /** * Creates a new scanner * There is also a java.io.InputStream version of this constructor. * * @param in the java.io.Reader to read input from. */ public SQLTokenMaker(java.io.Reader in) { this.zzReader = in; } /** * Creates a new scanner. * There is also java.io.Reader version of this constructor. * * @param in the java.io.Inputstream to read input from. */ public SQLTokenMaker(java.io.InputStream in) { this(new java.io.InputStreamReader(in)); } /** * Unpacks the compressed character translation table. * * @param packed the packed character translation table * @return the unpacked character translation table */ private static char [] zzUnpackCMap(String packed) { char [] map = new char[0x10000]; int i = 0; /* index in packed string */ int j = 0; /* index in unpacked array */ while (i < 178) { int count = packed.charAt(i++); char value = packed.charAt(i++); do map[j++] = value; while (--count > 0); } return map; } /** * Closes the input stream. */ public final void yyclose() throws java.io.IOException { zzAtEOF = true; /* indicate end of file */ zzEndRead = zzStartRead; /* invalidate buffer */ if (zzReader != null) zzReader.close(); } /** * Returns the current lexical state. */ public final int yystate() { return zzLexicalState; } /** * Enters a new lexical state * * @param newState the new lexical state */ @Override public final void yybegin(int newState) { zzLexicalState = newState; } /** * Returns the text matched by the current regular expression. */ public final String yytext() { return new String( zzBuffer, zzStartRead, zzMarkedPos-zzStartRead ); } /** * Returns the character at position pos from the * matched text. * * It is equivalent to yytext().charAt(pos), but faster * * @param pos the position of the character to fetch. * A value from 0 to yylength()-1. * * @return the character at position pos */ public final char yycharat(int pos) { return zzBuffer[zzStartRead+pos]; } /** * Returns the length of the matched text region. */ public final int yylength() { return zzMarkedPos-zzStartRead; } /** * Reports an error that occured while scanning. * * In a wellformed scanner (no or only correct usage of * 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 errormessage to display */ private 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 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 org.fife.ui.rsyntaxtextarea.Token yylex() throws java.io.IOException { int zzInput; int zzAction; // cached fields: int zzCurrentPosL; int zzMarkedPosL; int zzEndReadL = zzEndRead; char [] zzBufferL = zzBuffer; char [] zzCMapL = ZZ_CMAP; int [] zzTransL = ZZ_TRANS; int [] zzRowMapL = ZZ_ROWMAP; int [] zzAttrL = ZZ_ATTRIBUTE; while (true) { zzMarkedPosL = zzMarkedPos; zzAction = -1; zzCurrentPosL = zzCurrentPos = zzStartRead = zzMarkedPosL; zzState = zzLexicalState; zzForAction: { while (true) { if (zzCurrentPosL < zzEndReadL) zzInput = zzBufferL[zzCurrentPosL++]; 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 = zzBufferL[zzCurrentPosL++]; } } int zzNext = zzTransL[ zzRowMapL[zzState] + zzCMapL[zzInput] ]; if (zzNext == -1) break zzForAction; zzState = zzNext; int zzAttributes = zzAttrL[zzState]; if ( (zzAttributes & 1) == 1 ) { zzAction = zzState; zzMarkedPosL = zzCurrentPosL; if ( (zzAttributes & 8) == 8 ) break zzForAction; } } } // store back cached position zzMarkedPos = zzMarkedPosL; switch (zzAction < 0 ? zzAction : ZZ_ACTION[zzAction]) { case 20: { addToken(Token.PREPROCESSOR); } case 23: break; case 2: { addNullToken(); return firstToken; } case 24: break; case 21: { yybegin(YYINITIAL); addToken(start,zzStartRead+1, Token.COMMENT_MULTILINE); } case 25: break; case 18: { start = zzMarkedPos-2; yybegin(MLC); } case 26: break; case 4: { addToken(Token.WHITESPACE); } case 27: break; case 14: { addToken(start,zzStartRead-1, Token.LITERAL_CHAR); return firstToken; } case 28: break; case 9: { start = zzMarkedPos-1; yybegin(CHAR); } case 29: break; case 7: { addToken(Token.LITERAL_NUMBER_FLOAT); } case 30: break; case 19: { addToken(Token.RESERVED_WORD); } case 31: break; case 6: { addToken(Token.SEPARATOR); } case 32: break; case 15: { yybegin(YYINITIAL); addToken(start,zzStartRead, Token.LITERAL_CHAR); } case 33: break; case 1: { addToken(Token.IDENTIFIER); } case 34: break; case 22: { addToken(Token.FUNCTION); } case 35: break; case 12: { addToken(start,zzStartRead-1, Token.LITERAL_STRING_DOUBLE_QUOTE); return firstToken; } case 36: break; case 17: { addToken(Token.COMMENT_EOL); } case 37: break; case 8: { start = zzMarkedPos-1; yybegin(STRING); } case 38: break; case 3: { addToken(Token.LITERAL_NUMBER_DECIMAL_INT); } case 39: break; case 5: { addToken(Token.OPERATOR); } case 40: break; case 13: { yybegin(YYINITIAL); addToken(start,zzStartRead, Token.LITERAL_STRING_DOUBLE_QUOTE); } case 41: break; case 10: { addToken(Token.ERROR_IDENTIFIER); addNullToken(); return firstToken; } case 42: break; case 11: { } case 43: break; case 16: { addToken(start,zzStartRead-1, Token.COMMENT_MULTILINE); return firstToken; } case 44: break; default: if (zzInput == YYEOF && zzStartRead == zzCurrentPos) { zzAtEOF = true; switch (zzLexicalState) { case STRING: { addToken(start,zzStartRead-1, Token.LITERAL_STRING_DOUBLE_QUOTE); return firstToken; } case 355: break; case YYINITIAL: { addNullToken(); return firstToken; } case 356: break; case MLC: { addToken(start,zzStartRead-1, Token.COMMENT_MULTILINE); return firstToken; } case 357: break; case CHAR: { addToken(start,zzStartRead-1, Token.LITERAL_CHAR); return firstToken; } case 358: break; default: return null; } } else { zzScanError(ZZ_NO_MATCH); } } } } }




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