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net.ripe.db.whois.common.generated.ImportViaLexer Maven / Gradle / Ivy

/* The following code was generated by JFlex 1.4.3 on 2/08/15 8:21 PM */

package net.ripe.db.whois.common.generated;

import net.ripe.db.whois.common.rpsl.ParserHelper;

/*
  filename: import_via.flex

  description:
    Defines the tokenizer for an import-via attribute. Derived from
    mp_import.l.

  notes:
    Tokens are defined in the associated grammar, import_via.y.
*/


/**
 * This class is a scanner generated by 
 * JFlex 1.4.3
 * on 2/08/15 8:21 PM from the specification file
 * /Users/benjamin/Uni/COMP3500/rpsl4j-parser/src/main/parser/jflex/import_via.flex
 */
public class ImportViaLexer implements net.ripe.db.whois.common.rpsl.AttributeLexer {

  /** 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 = 16384;

  /** 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
  };

  /** 
   * Translates characters to character classes
   */
  private static final String ZZ_CMAP_PACKED = 
    "\11\0\1\47\1\47\25\0\1\1\11\0\1\54\1\24\1\57\1\2"+
    "\1\20\1\22\1\16\1\42\1\43\1\41\1\26\1\45\1\36\1\46"+
    "\1\44\1\40\1\21\2\0\1\50\3\0\1\11\1\25\1\32\1\33"+
    "\1\17\1\3\1\15\1\52\1\31\2\10\1\4\1\27\1\14\1\30"+
    "\1\13\1\10\1\6\1\12\1\5\1\35\1\34\1\10\1\51\1\37"+
    "\1\10\3\0\1\23\1\7\1\0\1\11\1\25\1\32\1\33\1\17"+
    "\1\3\1\15\1\52\1\31\2\10\1\4\1\27\1\14\1\30\1\13"+
    "\1\10\1\6\1\12\1\5\1\35\1\34\1\10\1\51\1\37\1\10"+
    "\1\55\1\0\1\56\1\53\uff81\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 =
    "\1\0\1\1\1\2\7\3\1\4\1\3\3\1\6\3"+
    "\1\5\2\1\1\0\3\3\1\0\4\3\1\6\13\3"+
    "\1\0\1\4\2\0\1\3\1\7\1\10\1\11\1\12"+
    "\4\3\1\13\12\3\1\14\1\15\2\0\3\3\2\0"+
    "\1\3\1\16\1\17\1\0\1\3\4\20\1\3\1\21"+
    "\1\22\12\3\1\23\2\0\1\4\1\0\1\24\1\3"+
    "\1\10\2\0\2\3\1\25\1\3\1\0\4\3\1\16"+
    "\3\3\1\26\2\3\1\0\2\3\1\27\2\0\1\30"+
    "\2\3\1\31\1\3\3\0\2\20\1\3\1\0\3\3"+
    "\1\32\1\3\1\33\3\3\1\0\1\3\3\0\1\4"+
    "\1\0\1\24\1\3\1\10\1\0\1\34\1\35\1\3"+
    "\1\36\1\37\1\3\1\40\1\0\1\41\3\3\5\0"+
    "\1\3\1\0\1\3\1\0\1\3\4\0\2\20\1\3"+
    "\2\0\3\3\1\0\4\3\3\0\1\4\1\0\1\24"+
    "\1\3\2\10\3\0\1\3\1\0\3\3\1\0\1\42"+
    "\5\0\1\43\2\0\1\44\1\0\1\3\5\0\2\20"+
    "\1\45\2\0\1\46\1\47\1\50\2\3\1\51\5\0"+
    "\1\24\1\52\2\10\1\0\2\53\4\0\1\3\1\0"+
    "\2\3\1\54\11\0\4\55\7\0\2\20\3\0\1\56"+
    "\1\3\3\0\1\24\1\57\2\10\5\0\1\3\1\0"+
    "\2\3\6\0\4\30\1\0\4\31\1\0\6\55\5\0"+
    "\2\20\3\0\1\60\1\61\3\0\2\10\1\0\1\53"+
    "\4\0\1\62\1\63\1\64\1\3\5\0\2\30\1\0"+
    "\2\31\1\0\4\55\3\0\2\20\4\0\1\65\1\66"+
    "\2\10\2\0\1\67\4\42\4\0\2\30\1\0\2\31"+
    "\1\0\4\55\2\0\2\20\1\0\4\50\3\0\2\10"+
    "\3\0\2\42\3\0\2\30\2\31\4\55\2\0\1\20"+
    "\1\70\2\50\2\0\2\71\2\10\2\0\2\42\4\0"+
    "\2\30\2\31\4\55\2\0\2\50\1\0\1\72\1\0"+
    "\2\10\1\0\1\36\1\37\2\42\2\0\2\30\2\31"+
    "\4\55\2\0\2\50\1\71\2\10\2\42\3\0\2\30"+
    "\2\31\4\55\2\0\2\50\2\10\1\0\2\42\1\0"+
    "\1\73\2\30\2\31\3\55\1\0\2\50\2\10\2\42"+
    "\1\0\1\73\1\0\1\30\1\31\1\55\2\50\2\10"+
    "\2\42\1\73\1\74\2\50\1\10\1\42\1\73\1\0"+
    "\1\50\1\10\2\75\1\0\1\75";

  private static int [] zzUnpackAction() {
    int [] result = new int[564];
    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\360\0\u0120\0\u0150"+
    "\0\u0180\0\u01b0\0\u01e0\0\u0210\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\300\0\u0480\0\u04b0\0\u04e0\0\u0510\0\u0540\0\u0570\0\u05a0"+
    "\0\u05d0\0\300\0\u0600\0\u0630\0\u0660\0\u0690\0\u06c0\0\u06f0"+
    "\0\u0720\0\u0750\0\u0780\0\u07b0\0\u07e0\0\u0810\0\u0840\0\u0870"+
    "\0\u08a0\0\u08d0\0\60\0\u0900\0\60\0\u0930\0\u0960\0\u0990"+
    "\0\u09c0\0\u09f0\0\300\0\u0a20\0\u0a50\0\u0a80\0\u0ab0\0\u0ae0"+
    "\0\u0b10\0\u0b40\0\u0b70\0\u0ba0\0\u0bd0\0\60\0\60\0\u0450"+
    "\0\u0c00\0\u0c30\0\u0c60\0\u0c90\0\u0cc0\0\u0cf0\0\u0d20\0\u0d50"+
    "\0\300\0\u0d80\0\u0db0\0\u0de0\0\u0e10\0\u0e40\0\u0e70\0\u0ea0"+
    "\0\300\0\u0ed0\0\u0f00\0\u0f30\0\u0f60\0\u0f90\0\u0fc0\0\u0ff0"+
    "\0\u1020\0\u1050\0\u1080\0\u10b0\0\300\0\u10e0\0\u1110\0\u1140"+
    "\0\u1170\0\u11a0\0\u11d0\0\u1200\0\u1230\0\u1260\0\u1290\0\u12c0"+
    "\0\300\0\u12f0\0\u1320\0\u1350\0\u1380\0\u13b0\0\u13e0\0\300"+
    "\0\u1410\0\u1440\0\u1470\0\300\0\u14a0\0\u14d0\0\u1500\0\u1530"+
    "\0\u1560\0\300\0\u1590\0\u15c0\0\u15f0\0\u1620\0\u1650\0\u1680"+
    "\0\u16b0\0\u16e0\0\u1710\0\u1740\0\u1770\0\u17a0\0\u17d0\0\u1800"+
    "\0\u1830\0\u1860\0\u1890\0\300\0\u18c0\0\300\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\u1260\0\u1bc0\0\u1bf0"+
    "\0\u1c20\0\u1c50\0\300\0\u1c80\0\300\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\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\300\0\u26d0\0\u2700\0\300\0\u2730"+
    "\0\u2760\0\u2790\0\u27c0\0\u27f0\0\u2820\0\u2850\0\u2880\0\u28b0"+
    "\0\300\0\u28e0\0\u2910\0\300\0\300\0\u2940\0\u2970\0\u29a0"+
    "\0\u29d0\0\u2a00\0\u2a30\0\u2a60\0\u2a90\0\u2ac0\0\u2af0\0\300"+
    "\0\u2b20\0\u2b50\0\u2b80\0\60\0\u2bb0\0\u2be0\0\u2c10\0\u2c40"+
    "\0\u2c70\0\u2ca0\0\u2cd0\0\u2d00\0\u2d30\0\300\0\u2d60\0\u2d90"+
    "\0\u2dc0\0\u2df0\0\u2e20\0\u2e50\0\u2e80\0\u2eb0\0\u2ee0\0\300"+
    "\0\u2f10\0\u2f40\0\u2f70\0\u2fa0\0\u2fd0\0\u3000\0\u3030\0\u3060"+
    "\0\u3090\0\u30c0\0\u30f0\0\u3120\0\u3150\0\u3180\0\u31b0\0\300"+
    "\0\u31e0\0\u3210\0\u3240\0\u3270\0\u2a90\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\60\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\300\0\60\0\u3ab0\0\u3ae0\0\u3b10\0\u3b40\0\u3b70"+
    "\0\u3ba0\0\u3330\0\u3bd0\0\u3c00\0\u3c30\0\u3c60\0\300\0\60"+
    "\0\300\0\u3c90\0\u3cc0\0\u3cf0\0\u3d20\0\u3d50\0\u3d80\0\u3db0"+
    "\0\u3de0\0\u3e10\0\u3e40\0\u3e70\0\u3ea0\0\u3ed0\0\u3f00\0\u3f30"+
    "\0\u3f60\0\u3f90\0\u3fc0\0\u3ff0\0\u4020\0\u4050\0\u4080\0\u40b0"+
    "\0\u40e0\0\u4110\0\60\0\u4140\0\u4170\0\u41a0\0\u41d0\0\u4200"+
    "\0\300\0\u4230\0\u4260\0\u4290\0\u42c0\0\u42f0\0\u4320\0\u4350"+
    "\0\u4380\0\u43b0\0\u43e0\0\u4410\0\u4440\0\u4470\0\u44a0\0\u44d0"+
    "\0\u4500\0\u4530\0\u4560\0\u4590\0\u45c0\0\u45f0\0\u4620\0\u4650"+
    "\0\u4680\0\u46b0\0\u46e0\0\u4710\0\u4740\0\u4770\0\u47a0\0\u47d0"+
    "\0\u4800\0\u4830\0\u4860\0\u4890\0\u48c0\0\u48f0\0\u4920\0\u4950"+
    "\0\u4980\0\u49b0\0\u49e0\0\u4a10\0\u4a40\0\u4a70\0\u4aa0\0\u4ad0"+
    "\0\u4b00\0\u4b30\0\u4b60\0\u4b90\0\60\0\u4bc0\0\u4bf0\0\u4c20"+
    "\0\u4c50\0\60\0\u4c80\0\u4cb0\0\u4ce0\0\u4d10\0\u4d40\0\u4d70"+
    "\0\u4da0\0\u4dd0\0\u4e00\0\u4e30\0\u4e60\0\u4e90\0\u4ec0\0\u4ef0"+
    "\0\u4f20\0\u4f50\0\u4f80\0\u4fb0\0\u4fe0\0\u5010\0\u5040\0\u5070"+
    "\0\u50a0\0\u50d0\0\60\0\u5100\0\u5130\0\u5160\0\u5190\0\60"+
    "\0\60\0\u51c0\0\u51f0\0\u5220\0\u5250\0\u5280\0\u52b0\0\u52e0"+
    "\0\u5310\0\u5340\0\u5370\0\u53a0\0\u53d0\0\u5400\0\u5430\0\u5460"+
    "\0\u5490\0\u5100\0\u54c0\0\u54f0\0\u5520\0\u5550\0\u5580\0\u55b0"+
    "\0\u55e0\0\u5610\0\u5640\0\u5670\0\u56a0\0\u56d0\0\u5700\0\u5730"+
    "\0\u5760\0\u5790\0\u57c0\0\u57f0\0\u5820\0\u5850\0\u5880\0\u58b0"+
    "\0\u58e0\0\u5910\0\u5940\0\u5970\0\u59a0\0\u59d0\0\u5a00\0\u5a30"+
    "\0\u5a60\0\u5a90\0\u5ac0\0\u5af0\0\u5b20\0\u5b50\0\u5b80\0\u5bb0"+
    "\0\u5be0\0\u5c10\0\u5c40\0\u5c70\0\u5ca0\0\u5cd0\0\u5d00\0\u5d30"+
    "\0\u5d60\0\u5d90\0\u5dc0\0\u5df0\0\u5e20\0\u5e50\0\u5e80\0\u5eb0"+
    "\0\u5ee0\0\u5f10\0\u5f40\0\u5f70\0\u5fa0\0\u5fd0\0\u6000\0\u6030"+
    "\0\60\0\u6060\0\u6090\0\u6090";

  private static int [] zzUnpackRowMap() {
    int [] result = new int[564];
    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\2\1\3\1\2\1\4\2\5\1\6\1\2\1\5"+
    "\1\7\1\10\1\11\1\12\1\5\1\13\1\14\1\15"+
    "\1\16\1\2\1\17\1\2\1\20\1\13\1\21\1\22"+
    "\1\23\1\24\1\25\2\5\1\13\1\5\7\13\1\3"+
    "\1\26\2\5\1\27\1\2\1\30\2\2\61\0\1\3"+
    "\45\0\1\3\12\0\1\31\1\32\1\33\1\5\1\34"+
    "\1\0\1\5\1\32\4\5\2\32\1\0\1\35\3\0"+
    "\2\32\3\5\2\32\2\5\1\32\1\5\7\32\2\0"+
    "\2\5\7\0\1\31\4\5\1\0\10\5\5\0\22\5"+
    "\2\0\2\5\7\0\1\31\4\5\1\0\2\5\1\36"+
    "\4\5\1\37\5\0\4\5\1\40\15\5\2\0\2\5"+
    "\7\0\1\31\1\41\1\5\1\42\1\5\1\0\1\5"+
    "\1\32\1\43\1\44\1\45\1\5\2\32\1\0\1\35"+
    "\3\0\2\32\3\5\1\46\1\32\2\5\1\32\1\5"+
    "\7\32\2\0\2\5\7\0\1\31\2\5\1\47\1\5"+
    "\1\0\7\5\1\50\5\0\22\5\2\0\2\5\7\0"+
    "\1\31\3\5\1\51\1\0\7\5\1\52\5\0\4\5"+
    "\1\53\15\5\2\0\2\5\7\0\1\31\4\5\1\0"+
    "\7\5\1\54\5\0\3\5\1\55\16\5\2\0\2\5"+
    "\10\0\1\56\5\0\1\56\4\0\1\57\1\56\1\60"+
    "\1\61\3\0\1\56\1\57\3\0\2\56\2\0\1\57"+
    "\1\0\7\57\13\0\1\31\1\32\3\5\1\0\1\5"+
    "\1\32\4\5\2\32\1\0\1\35\3\0\2\32\3\5"+
    "\2\32\2\5\1\32\1\5\7\32\2\0\1\62\1\5"+
    "\55\0\1\63\30\0\1\64\40\0\1\65\13\0\1\66"+
    "\5\0\1\65\1\0\1\66\7\0\1\66\1\0\7\66"+
    "\13\0\1\31\1\32\3\5\1\0\1\5\1\32\3\5"+
    "\1\67\2\32\1\0\1\35\3\0\2\32\3\5\2\32"+
    "\2\5\1\32\1\5\7\32\2\0\2\5\7\0\1\31"+
    "\4\5\1\0\3\5\1\70\3\5\1\71\5\0\3\5"+
    "\1\72\16\5\2\0\2\5\7\0\1\31\3\5\1\73"+
    "\1\0\2\5\1\74\5\5\5\0\22\5\2\0\2\5"+
    "\7\0\1\31\4\5\1\0\2\5\1\75\1\76\1\77"+
    "\1\100\2\5\5\0\22\5\2\0\2\5\7\0\1\31"+
    "\1\32\3\5\1\0\1\5\1\32\4\5\2\32\1\0"+
    "\1\35\3\0\1\101\1\32\1\5\1\102\1\5\2\32"+
    "\2\5\1\32\1\5\7\32\2\0\2\5\7\0\1\31"+
    "\1\32\3\5\1\0\1\5\1\32\1\5\1\103\2\5"+
    "\1\32\1\104\1\0\1\35\3\0\2\32\3\5\2\32"+
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    "\1\u0229\1\0\2\u0229\1\u0221\1\u022a\3\u0229\32\0\1\u0208"+
    "\1\155\40\0\1\u022b\5\0\1\u022b\4\0\2\u022b\2\0"+
    "\1\155\2\0\2\u022b\3\0\2\u022b\2\0\1\u022b\1\0"+
    "\7\u022b\27\0\1\u018a\2\0\1\u0110\4\0\1\u018a\7\0"+
    "\1\u018a\1\0\7\u018a\27\0\1\u0225\2\0\1\u0110\4\0"+
    "\1\u0225\7\0\1\u0225\1\0\1\u022c\6\u0225\14\0\1\u022d"+
    "\5\0\1\u022d\4\0\2\u022d\2\0\1\u021d\2\0\2\u022d"+
    "\3\0\2\u022d\2\0\1\u022d\1\0\7\u022d\27\0\1\u0228"+
    "\4\0\1\u022e\2\0\1\u0228\7\0\1\u0228\1\0\7\u0228"+
    "\27\0\1\u01a1\2\0\1\u0127\4\0\1\u01a1\7\0\1\u01a1"+
    "\1\0\7\u01a1\27\0\1\u0229\2\0\1\u0127\4\0\1\u0229"+
    "\7\0\1\u0229\1\0\1\u022f\6\u0229\14\0\1\u0230\5\0"+
    "\1\u0230\4\0\2\u0230\2\0\1\155\2\0\2\u0230\3\0"+
    "\2\u0230\2\0\1\u0230\1\0\7\u0230\27\0\1\u018a\2\0"+
    "\1\u0110\4\0\1\u018a\12\0\3\u018a\1\0\1\u018a\34\0"+
    "\1\u021d\37\0\1\u0231\13\0\1\u0232\5\0\1\u0231\1\0"+
    "\1\u0232\7\0\1\u0232\1\0\7\u0232\27\0\1\u01a1\2\0"+
    "\1\u0127\4\0\1\u01a1\12\0\3\u01a1\1\0\1\u01a1\34\0"+
    "\1\155\37\0\1\u0233\13\0\1\u0232\7\0\1\u0232\7\0"+
    "\1\u0232\1\0\7\u0232\27\0\1\u0234\7\0\1\u0234\7\0"+
    "\1\u0234\1\0\7\u0234\11\0";

  private static int [] zzUnpackTrans() {
    int [] result = new int[24768];
    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 =
    "\1\0\1\11\26\1\1\0\3\1\1\0\20\1\1\0"+
    "\1\1\2\0\1\1\1\11\1\1\1\11\20\1\2\11"+
    "\2\0\3\1\2\0\3\1\1\0\23\1\2\0\1\1"+
    "\1\0\3\1\2\0\4\1\1\0\13\1\1\0\3\1"+
    "\2\0\5\1\3\0\3\1\1\0\11\1\1\0\1\1"+
    "\3\0\1\1\1\0\3\1\1\0\7\1\1\0\4\1"+
    "\5\0\1\1\1\0\1\1\1\0\1\1\4\0\3\1"+
    "\2\0\3\1\1\0\4\1\3\0\1\1\1\0\4\1"+
    "\3\0\1\1\1\0\3\1\1\0\1\1\5\0\1\1"+
    "\2\0\1\1\1\0\1\1\5\0\3\1\2\0\6\1"+
    "\5\0\4\1\1\0\1\11\1\1\4\0\1\1\1\0"+
    "\3\1\11\0\4\1\7\0\2\1\3\0\2\1\3\0"+
    "\4\1\5\0\1\1\1\0\2\1\6\0\4\1\1\0"+
    "\4\1\1\0\1\11\5\1\5\0\2\1\3\0\1\1"+
    "\1\11\3\0\2\1\1\0\1\1\4\0\1\1\1\11"+
    "\2\1\5\0\2\1\1\0\2\1\1\0\4\1\3\0"+
    "\2\1\4\0\1\11\3\1\2\0\5\1\4\0\2\1"+
    "\1\0\2\1\1\0\4\1\2\0\2\1\1\0\4\1"+
    "\3\0\2\1\3\0\2\1\3\0\10\1\2\0\1\1"+
    "\1\11\2\1\2\0\1\11\3\1\2\0\2\1\4\0"+
    "\10\1\2\0\2\1\1\0\1\11\1\0\2\1\1\0"+
    "\2\11\2\1\2\0\10\1\2\0\7\1\3\0\10\1"+
    "\2\0\4\1\1\0\2\1\1\0\10\1\1\0\6\1"+
    "\1\0\1\1\1\0\20\1\1\0\2\1\1\11\1\1"+
    "\1\0\1\1";

  private static int [] zzUnpackAttribute() {
    int [] result = new int[564];
    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[] = new char[ZZ_BUFFERSIZE];

  /** 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;

  /** number of newlines encountered up to the start of the matched text */
  private int yyline;

  /** the number of characters up to the start of the matched text */
  private int yychar;

  /**
   * the number of characters from the last newline up to the start of the 
   * matched text
   */
  private int yycolumn;

  /** 
   * zzAtBOL == true <=> the scanner is currently at the beginning of a line
   */
  private boolean zzAtBOL = true;

  /** zzAtEOF == true <=> the scanner is at the EOF */
  private boolean zzAtEOF;

  /** denotes if the user-EOF-code has already been executed */
  private boolean zzEOFDone;

  /* user code: */
    /* store a reference to the parser object */
    private ImportViaParser yyparser;

    /* constructor taking an additional parser object */
    public ImportViaLexer(java.io.Reader r, ImportViaParser yyparser) {
        this(r);
        this.yyparser = yyparser;
    }

    /* assign value associated with current token to the external parser variable yylval. */
    private void storeTokenValue() {
        if ((this.yyparser != null) && (this.yyparser.yylval != null)) {
            yyparser.yylval.sval = yytext();
        }
    }


  /**
   * 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 ImportViaLexer(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 ImportViaLexer(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 < 170) {
      int  count = packed.charAt(i++);
      char value = packed.charAt(i++);
      do map[j++] = value; while (--count > 0);
    }
    return map;
  }


  /**
   * Refills the input buffer.
   *
   * @return      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) {
      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) {
      /* if not: blow it up */
      char newBuffer[] = new char[zzCurrentPos*2];
      System.arraycopy(zzBuffer, 0, newBuffer, 0, zzBuffer.length);
      zzBuffer = newBuffer;
    }

    /* finally: fill the buffer with new input */
    int numRead = zzReader.read(zzBuffer, zzEndRead,
                                            zzBuffer.length-zzEndRead);

    if (numRead > 0) {
      zzEndRead+= numRead;
      return false;
    }
    // unlikely but not impossible: read 0 characters, but not at end of stream    
    if (numRead == 0) {
      int c = zzReader.read();
      if (c == -1) {
        return true;
      } else {
        zzBuffer[zzEndRead++] = (char) c;
        return false;
      }     
    }

	// numRead < 0
    return true;
  }

    
  /**
   * 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();
  }


  /**
   * 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 ZZ_INITIAL.
   *
   * @param reader   the new input stream 
   */
  public final void yyreset(java.io.Reader reader) {
    zzReader = reader;
    zzAtBOL  = true;
    zzAtEOF  = false;
    zzEOFDone = false;
    zzEndRead = zzStartRead = 0;
    zzCurrentPos = zzMarkedPos = 0;
    yyline = yychar = yycolumn = 0;
    zzLexicalState = YYINITIAL;
  }


  /**
   * Returns 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.
   */
  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;
  }


  /**
   * Contains user EOF-code, which will be executed exactly once,
   * when the end of file is reached
   */
  private void zzDoEOF() throws java.io.IOException {
    if (!zzEOFDone) {
      zzEOFDone = true;
      yyclose();
    }
  }


  /**
   * 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 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;

      yychar+= zzMarkedPosL-zzStartRead;

      boolean zzR = false;
      for (zzCurrentPosL = zzStartRead; zzCurrentPosL < zzMarkedPosL;
                                                             zzCurrentPosL++) {
        switch (zzBufferL[zzCurrentPosL]) {
        case '\u000B':
        case '\u000C':
        case '\u0085':
        case '\u2028':
        case '\u2029':
          yyline++;
          yycolumn = 0;
          zzR = false;
          break;
        case '\r':
          yyline++;
          yycolumn = 0;
          zzR = true;
          break;
        case '\n':
          if (zzR)
            zzR = false;
          else {
            yyline++;
            yycolumn = 0;
          }
          break;
        default:
          zzR = false;
          yycolumn++;
        }
      }

      if (zzR) {
        // peek one character ahead if it is \n (if we have counted one line too much)
        boolean zzPeek;
        if (zzMarkedPosL < zzEndReadL)
          zzPeek = zzBufferL[zzMarkedPosL] == '\n';
        else if (zzAtEOF)
          zzPeek = false;
        else {
          boolean eof = zzRefill();
          zzEndReadL = zzEndRead;
          zzMarkedPosL = zzMarkedPos;
          zzBufferL = zzBuffer;
          if (eof) 
            zzPeek = false;
          else 
            zzPeek = zzBufferL[zzMarkedPosL] == '\n';
        }
        if (zzPeek) yyline--;
      }
      zzAction = -1;

      zzCurrentPosL = zzCurrentPos = zzStartRead = zzMarkedPosL;
  
      zzState = ZZ_LEXSTATE[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 13: 
          { return ImportViaParser.ASPATH_POSTFIX;
          }
        case 62: break;
        case 47: 
          { ParserHelper.validateIpv4(yytext());
    return ImportViaParser.TKN_IPV4;
          }
        case 63: break;
        case 49: 
          { return ImportViaParser.TKN_NEXT_HOP;
          }
        case 64: break;
        case 5: 
          { return ImportViaParser.OP_EQUAL;
          }
        case 65: break;
        case 29: 
          { ParserHelper.validateRangeMoreSpecificsOperators(yytext());
    return ImportViaParser.OP_MS;
          }
        case 66: break;
        case 26: 
          { return ImportViaParser.KEYW_SELF;
          }
        case 67: break;
        case 53: 
          { return ImportViaParser.KEYW_NO_EXPORT;
          }
        case 68: break;
        case 15: 
          { return ImportViaParser.KEYW_AFI;
          }
        case 69: break;
        case 36: 
          { return ImportViaParser.TKN_ASPATH;
          }
        case 70: break;
        case 9: 
          { return ImportViaParser.OP_MS;
          }
        case 71: break;
        case 28: 
          { ParserHelper.validateIpv6Prefix(yytext());
    return ImportViaParser.TKN_PRFXV6DC;
          }
        case 72: break;
        case 17: 
          { return ImportViaParser.OP_AND;
          }
        case 73: break;
        case 19: 
          { return ImportViaParser.OP_NOT;
          }
        case 74: break;
        case 31: 
          { return ImportViaParser.KEYW_AFI_VALUE_V6;
          }
        case 75: break;
        case 12: 
          { return ImportViaParser.OP_COMPARE;
          }
        case 76: break;
        case 58: 
          { return ImportViaParser.KEYW_NO_ADVERTISE;
          }
        case 77: break;
        case 11: 
          { return ImportViaParser.OP_OR;
          }
        case 78: break;
        case 59: 
          { ParserHelper.validateIpv6(yytext());
    return ImportViaParser.TKN_IPV6;
          }
        case 79: break;
        case 45: 
          { ParserHelper.validateAsRange(yytext());
    return ImportViaParser.TKN_ASRANGE;
          }
        case 80: break;
        case 2: 
          { ;
          }
        case 81: break;
        case 23: 
          { return ImportViaParser.KEYW_FROM;
          }
        case 82: break;
        case 61: 
          { ParserHelper.validateIpv6PrefixRange(yytext());
    return ImportViaParser.TKN_PRFXV6RNG;
          }
        case 83: break;
        case 4: 
          { storeTokenValue();
    return ImportViaParser.TKN_INT;
          }
        case 84: break;
        case 3: 
          { ParserHelper.validateDomainNameLabel(yytext());
    storeTokenValue();
    return ImportViaParser.TKN_DNS;
          }
        case 85: break;
        case 37: 
          { return ImportViaParser.KEYW_APPEND;
          }
        case 86: break;
        case 10: 
          { ParserHelper.validateMoreSpecificsOperator(yytext());
    return ImportViaParser.OP_MS;
          }
        case 87: break;
        case 51: 
          { return ImportViaParser.KEYW_IGP_COST;
          }
        case 88: break;
        case 8: 
          { ParserHelper.validateIpv6(yytext());
    return ImportViaParser.TKN_IPV6DC;
          }
        case 89: break;
        case 6: 
          { return ImportViaParser.KEYW_AT;
          }
        case 90: break;
        case 57: 
          { ParserHelper.validateIpv4PrefixRange(yytext());
    return ImportViaParser.TKN_PRFXV4RNG;
          }
        case 91: break;
        case 48: 
          { return ImportViaParser.KEYW_PROTOCOL;
          }
        case 92: break;
        case 25: 
          { return ImportViaParser.TKN_ASNAME;
          }
        case 93: break;
        case 7: 
          { return ImportViaParser.OP_APPEND;
          }
        case 94: break;
        case 54: 
          { ParserHelper.validateIpv4Prefix(yytext());
    return ImportViaParser.TKN_PRFXV4;
          }
        case 95: break;
        case 24: 
          { return ImportViaParser.TKN_RSNAME;
          }
        case 96: break;
        case 14: 
          { return ImportViaParser.TKN_PROTOCOL;
          }
        case 97: break;
        case 55: 
          { return ImportViaParser.TKN_COMMUNITY;
          }
        case 98: break;
        case 42: 
          { return ImportViaParser.KEYW_EXCEPT;
          }
        case 99: break;
        case 32: 
          { return ImportViaParser.KEYW_INTO;
          }
        case 100: break;
        case 50: 
          { return ImportViaParser.KEYW_INTERNET;
          }
        case 101: break;
        case 41: 
          { return ImportViaParser.KEYW_PEERAS;
          }
        case 102: break;
        case 43: 
          { ParserHelper.validateIpv6PrefixRange(yytext());
    return ImportViaParser.TKN_PRFXV6DCRNG;
          }
        case 103: break;
        case 21: 
          { return ImportViaParser.TKN_MED;
          }
        case 104: break;
        case 22: 
          { return ImportViaParser.TKN_DPA;
          }
        case 105: break;
        case 27: 
          { return ImportViaParser.TKN_PREF;
          }
        case 106: break;
        case 60: 
          { ParserHelper.validateIpv6Prefix(yytext());
    return ImportViaParser.TKN_PRFXV6;
          }
        case 107: break;
        case 34: 
          { return ImportViaParser.TKN_FLTRNAME;
          }
        case 108: break;
        case 16: 
          { ParserHelper.validateAsNumber(yytext());
    return ImportViaParser.TKN_ASNO;
          }
        case 109: break;
        case 1: 
          { return yytext().charAt(0);
          }
        case 110: break;
        case 44: 
          { return ImportViaParser.KEYW_DELETE;
          }
        case 111: break;
        case 40: 
          { return ImportViaParser.TKN_PRNGNAME;
          }
        case 112: break;
        case 39: 
          { return ImportViaParser.KEYW_ACCEPT;
          }
        case 113: break;
        case 35: 
          { return ImportViaParser.KEYW_REFINE;
          }
        case 114: break;
        case 52: 
          { return ImportViaParser.KEYW_CONTAINS;
          }
        case 115: break;
        case 38: 
          { return ImportViaParser.KEYW_ACTION;
          }
        case 116: break;
        case 30: 
          { return ImportViaParser.KEYW_AFI_VALUE_V4;
          }
        case 117: break;
        case 56: 
          { return ImportViaParser.KEYW_AFI_VALUE_ANY;
          }
        case 118: break;
        case 33: 
          { return ImportViaParser.TKN_COST;
          }
        case 119: break;
        case 46: 
          { return ImportViaParser.KEYW_PREPEND;
          }
        case 120: break;
        case 20: 
          { ParserHelper.validateCommunity(yytext());
    return ImportViaParser.TKN_COMM_NO;
          }
        case 121: break;
        case 18: 
          { return ImportViaParser.KEYW_ANY;
          }
        case 122: break;
        default: 
          if (zzInput == YYEOF && zzStartRead == zzCurrentPos) {
            zzAtEOF = true;
            zzDoEOF();
              { return 0; }
          } 
          else {
            zzScanError(ZZ_NO_MATCH);
          }
      }
    }
  }


}




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