/* The following code was generated by JFlex 1.7.0-SNAPSHOT tweaked for IntelliJ platform */ package org.jetbrains.kotlin.kdoc.lexer; import com.intellij.lexer.FlexLexer; import com.intellij.psi.TokenType; import com.intellij.psi.tree.IElementType; import com.intellij.util.text.CharArrayUtil; import java.lang.Character; import org.jetbrains.kotlin.kdoc.parser.KDocKnownTag; /** * This class is a scanner generated by * <a href="http://www.jflex.de/">JFlex</a> 1.7.0-SNAPSHOT * from the specification file <tt>/home/user/Workspace/Kotlin/kotlin/compiler/frontend/src/org/jetbrains/kotlin/kdoc/lexer/KDoc.flex</tt> */ class _KDocLexer implements FlexLexer { /** 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; public static final int LINE_BEGINNING = 2; public static final int CONTENTS_BEGINNING = 4; public static final int TAG_BEGINNING = 6; public static final int TAG_TEXT_BEGINNING = 8; public static final int CONTENTS = 10; public static final int CODE_BLOCK = 12; public static final int CODE_BLOCK_LINE_BEGINNING = 14; public static final int CODE_BLOCK_CONTENTS_BEGINNING = 16; public static final int INDENTED_CODE_BLOCK = 18; /** * 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, 1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8, 8, 6, 6 }; /** * Translates characters to character classes * Chosen bits are [11, 6, 4] * Total runtime size is 9472 bytes */ public static int ZZ_CMAP(int ch) { return ZZ_CMAP_A[(ZZ_CMAP_Y[(ZZ_CMAP_Z[ch>>10]<<6)|((ch>>4)&0x3f)]<<4)|(ch&0xf)]; } /* The ZZ_CMAP_Z table has 1088 entries */ static final char ZZ_CMAP_Z[] = zzUnpackCMap( "\1\0\1\1\1\2\1\3\1\4\1\5\1\6\1\7\1\10\3\11\1\12\6\13\1\14\23\13\1\15\1\13"+ "\1\16\1\11\12\13\1\17\10\11\1\20\1\21\1\22\1\23\1\24\62\11\1\25\12\11\51\13"+ "\1\26\24\11\1\27\u0381\11"); /* The ZZ_CMAP_Y table has 1536 entries */ static final char ZZ_CMAP_Y[] = zzUnpackCMap( "\1\0\1\1\1\2\1\3\1\4\1\5\1\6\1\7\1\10\1\1\1\11\1\12\1\13\1\14\1\13\1\14\23"+ "\13\1\15\1\1\7\13\1\16\1\17\1\20\10\1\1\21\1\22\1\13\1\23\1\13\1\24\2\13\1"+ "\25\10\13\1\26\3\13\1\24\2\13\1\27\1\13\2\1\1\30\1\13\1\31\1\30\1\13\1\32"+ "\4\1\1\13\1\33\1\34\2\1\1\30\2\33\1\1\1\35\1\30\5\13\1\36\1\37\1\40\1\1\1"+ "\41\1\13\1\1\1\42\3\1\2\13\1\43\1\44\24\1\1\45\2\13\1\46\1\1\1\47\1\17\1\1"+ "\1\50\1\51\1\52\1\53\1\1\1\54\1\17\1\55\1\56\1\51\1\52\1\57\1\1\1\60\1\1\1"+ "\61\1\62\1\23\1\52\1\63\1\1\1\64\1\17\1\44\1\50\1\51\1\52\1\63\1\1\1\54\1"+ "\17\1\44\1\65\1\66\1\67\1\70\3\1\1\71\1\72\1\41\1\52\1\73\2\1\1\17\1\1\1\72"+ "\1\41\1\52\1\74\1\1\1\75\1\17\1\1\1\72\1\41\1\52\1\76\2\1\1\17\1\1\1\77\1"+ "\100\1\13\1\101\1\15\3\1\1\30\2\13\1\102\1\15\3\1\1\103\1\104\1\105\1\106"+ "\1\107\1\110\2\1\1\64\3\1\1\111\1\13\1\33\1\1\1\112\7\1\2\13\1\113\2\1\1\43"+ "\4\1\2\13\1\43\2\13\1\114\5\13\1\115\4\13\1\116\4\13\1\76\1\14\3\13\2\117"+ "\2\13\1\117\1\13\1\24\2\120\1\14\1\24\1\13\1\24\1\120\2\13\1\14\1\33\4\1\5"+ "\13\1\121\1\30\45\13\1\122\1\15\1\30\1\33\4\13\1\123\1\64\1\124\1\17\1\13"+ "\1\17\1\13\1\17\1\124\1\64\3\13\1\55\1\1\1\125\4\1\5\13\1\32\2\13\1\114\5"+ "\1\1\13\1\126\3\1\1\13\1\127\1\121\70\1\6\13\1\130\11\1\11\13\1\130\5\13\1"+ "\76\1\13\1\131\2\13\1\131\1\132\1\13\1\127\3\13\1\133\1\134\1\135\1\126\1"+ "\134\2\1\1\136\1\137\1\64\1\140\1\1\1\141\2\1\1\13\1\17\4\1\1\142\1\143\1"+ "\144\1\145\1\146\1\1\2\13\1\55\147\1\1\147\1\1\1\150\1\151\1\30\4\13\1\152"+ "\1\30\5\13\1\77\1\13\1\126\1\30\4\13\1\24\1\1\1\13\1\32\3\1\1\13\40\1\133"+ "\13\1\43\4\1\132\13\1\43\5\1\10\13\1\126\67\1\72\13\1\55\25\1\22\13\1\127"+ "\3\13\1\33\11\1\1\15\1\153\1\52\1\154\1\155\6\13\1\17\1\1\1\156\25\13\1\127"+ "\1\1\4\13\1\157\2\13\1\32\2\1\1\126\3\1\1\160\1\42\1\1\1\71\1\161\7\13\1\126"+ "\1\140\1\1\1\30\1\162\1\30\1\33\1\77\4\13\1\24\1\163\1\164\1\165\1\1\1\166"+ "\1\13\1\14\1\167\2\127\2\1\7\13\1\33\40\1\1\13\1\24\1\1\1\13\1\33\3\1\1\13"+ "\1\127\6\1\11\13\1\127\66\1\1\170\2\13\1\171\74\1\5\13\1\161\3\13\1\124\1"+ "\172\1\173\1\174\3\13\1\175\1\176\1\13\1\177\1\200\1\41\24\13\1\201\1\13\1"+ "\41\1\202\1\13\1\202\1\13\1\161\1\13\1\161\1\24\1\13\1\24\1\13\1\52\1\13\1"+ "\52\1\13\1\203\3\1\55\13\1\15\22\1\41\13\1\127\36\1"); /* The ZZ_CMAP_A table has 2112 entries */ static final char ZZ_CMAP_A[] = zzUnpackCMap( "\11\0\1\1\1\11\1\12\1\13\1\12\22\0\1\17\3\0\1\3\3\0\1\21\1\22\1\15\3\0\1\4"+ "\1\14\12\2\6\0\1\16\32\3\1\5\1\20\1\6\1\0\1\3\1\7\32\3\3\0\1\10\6\0\1\12\14"+ "\0\4\3\4\0\1\3\12\0\1\3\4\0\1\3\5\0\27\3\1\0\17\3\11\0\2\3\4\0\14\3\16\0\5"+ "\3\11\0\1\3\13\0\1\3\13\0\1\3\1\0\3\3\1\0\1\3\1\0\4\3\1\0\34\3\1\0\6\3\1\0"+ "\5\3\4\0\2\3\10\0\14\3\2\0\2\3\7\0\26\3\2\0\1\3\6\0\10\3\10\0\13\3\5\0\3\3"+ "\33\0\6\3\1\0\1\3\17\0\2\3\7\0\2\3\12\0\3\3\2\0\2\3\1\0\16\3\15\0\11\3\13"+ "\0\1\3\22\0\26\3\3\0\1\3\2\0\1\3\7\0\10\3\5\0\10\3\2\0\2\3\2\0\26\3\1\0\7"+ "\3\1\0\1\3\3\0\4\3\3\0\1\3\16\0\2\3\1\0\5\3\21\0\6\3\4\0\2\3\1\0\2\3\1\0\2"+ "\3\1\0\2\3\17\0\4\3\1\0\1\3\3\0\3\3\20\0\11\3\1\0\2\3\1\0\2\3\1\0\5\3\3\0"+ "\1\3\2\0\1\3\22\0\1\3\1\0\6\3\3\0\3\3\1\0\4\3\3\0\2\3\1\0\1\3\1\0\2\3\3\0"+ "\2\3\3\0\3\3\3\0\10\3\1\0\3\3\17\0\1\3\13\0\10\3\1\0\6\3\1\0\5\3\6\0\4\3\1"+ "\0\5\3\3\0\1\3\20\0\1\3\1\0\12\3\13\0\22\3\3\0\10\3\1\0\11\3\1\0\1\3\2\0\1"+ "\3\1\0\2\3\13\0\1\3\1\0\2\3\1\0\1\3\2\0\2\3\1\0\1\3\2\0\1\3\6\0\4\3\1\0\7"+ "\3\1\0\3\3\1\0\1\3\1\0\1\3\2\0\2\3\1\0\4\3\1\0\2\3\11\0\1\3\2\0\5\3\1\0\1"+ "\3\25\0\2\3\2\0\10\3\1\0\7\3\10\0\4\3\4\0\2\3\1\0\5\3\1\0\2\3\5\0\11\3\7\0"+ "\12\3\5\0\4\3\5\0\17\3\1\0\1\3\1\0\4\3\2\0\1\3\1\0\4\3\2\0\7\3\1\0\5\3\13"+ "\0\15\3\2\0\14\3\3\0\17\3\1\0\2\3\7\0\1\3\3\0\2\3\3\0\15\3\3\0\16\3\2\0\14"+ "\3\4\0\6\3\2\0\6\3\2\0\10\3\1\0\1\3\1\0\1\3\1\0\1\3\1\0\6\3\1\0\7\3\1\0\1"+ "\3\3\0\3\3\1\0\7\3\3\0\4\3\2\0\6\3\14\0\2\12\25\0\1\3\4\0\1\3\14\0\1\3\15"+ "\0\1\3\2\0\1\3\4\0\1\3\2\0\12\3\1\0\1\3\3\0\5\3\6\0\1\3\1\0\1\3\1\0\1\3\1"+ "\0\4\3\1\0\3\3\1\0\7\3\3\0\3\3\5\0\5\3\13\0\3\3\11\0\11\3\7\0\5\3\2\0\5\3"+ "\3\0\7\3\6\0\3\3\3\0\5\3\5\0\1\3\1\0\10\3\1\0\5\3\1\0\1\3\1\0\2\3\1\0\2\3"+ "\1\0\12\3\3\0\15\3\2\0\16\3\3\0\2\3\13\0\5\3\1\0\25\3\4\0\1\3\2\0\6\3\2\0"+ "\6\3\2\0\6\3\2\0\3\3\3\0\2\3\3\0\2\3\11\0\14\3\1\0\16\3\1\0\2\3\1\0\7\3\2"+ "\0\1\3\1\0\14\3\1\0\2\3\3\0\1\3\2\0\1\3\2\0\1\3\2\0\2\3\2\0\4\3\1\0\14\3\1"+ "\0\1\3\1\0\7\3\1\0\21\3\1\0\4\3\2\0\10\3\1\0\7\3\1\0\14\3\1\0\4\3\1\0\5\3"+ "\1\0\1\3\3\0\12\3\4\0\23\3\1\0\7\3\1\0\6\3\6\0"); /** * Translates DFA states to action switch labels. */ private static final int [] ZZ_ACTION = zzUnpackAction(); private static final String ZZ_ACTION_PACKED_0 = "\11\0\3\1\1\2\1\3\3\2\1\4\1\5\1\4"+ "\3\2\1\6\1\7\2\2\1\10\1\11\3\10\1\12"+ "\1\0\1\13\6\0\1\4\1\14\1\15\4\0\1\16"+ "\2\0\1\17\1\4\1\20\1\21\1\0\2\22\1\0"+ "\1\23\1\3\1\24\1\23"; private static int [] zzUnpackAction() { int [] result = new int[63]; 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\23\0\46\0\71\0\114\0\137\0\162\0\205"+ "\0\230\0\253\0\276\0\321\0\253\0\344\0\367\0\u010a"+ "\0\u011d\0\u0130\0\u0143\0\u0156\0\u0169\0\321\0\u017c\0\u018f"+ "\0\u01a2\0\u01b5\0\u01c8\0\253\0\u01db\0\321\0\u01ee\0\u0201"+ "\0\u0214\0\u0227\0\253\0\321\0\u023a\0\u024d\0\u0260\0\u0273"+ "\0\u0286\0\u0299\0\253\0\u02ac\0\u02bf\0\u02d2\0\u02e5\0\u02f8"+ "\0\253\0\u030b\0\u031e\0\u0331\0\u0344\0\253\0\253\0\u0357"+ "\0\u023a\0\u0260\0\u036a\0\u023a\0\u0344\0\u037d\0\253"; private static int [] zzUnpackRowMap() { int [] result = new int[63]; 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 = "\11\12\3\0\1\13\1\14\5\12\1\15\1\16\3\15"+ "\1\17\1\15\1\20\1\21\1\22\1\0\1\22\1\15"+ "\1\23\1\15\1\24\1\25\3\15\1\16\3\15\1\17"+ "\1\15\1\20\1\21\1\22\1\0\1\22\1\15\1\26"+ "\1\27\1\24\1\25\3\15\1\30\1\15\1\31\1\15"+ "\1\32\3\15\1\30\1\0\1\30\1\15\1\26\1\15"+ "\1\30\4\15\1\30\3\15\1\33\3\15\1\30\1\0"+ "\1\30\1\15\1\26\1\15\1\30\4\15\1\16\3\15"+ "\1\17\1\15\1\20\1\21\1\22\1\0\1\22\1\15"+ "\1\26\1\15\1\24\1\25\2\15\1\34\1\35\7\34"+ "\1\35\1\0\1\35\1\34\1\36\1\34\1\35\4\34"+ "\1\35\5\34\1\37\1\40\1\35\1\0\1\35\1\34"+ "\1\41\1\34\1\35\4\34\1\35\5\34\1\37\1\40"+ "\1\35\1\0\1\35\1\34\1\36\1\34\1\35\3\34"+ "\40\0\1\42\21\0\1\43\1\44\6\0\1\16\7\0"+ "\1\22\1\0\1\22\3\0\1\22\3\0\3\45\1\46"+ "\1\45\1\0\1\47\14\45\7\0\1\50\23\0\1\51"+ "\13\0\1\22\7\0\1\22\1\0\1\22\3\0\1\22"+ "\17\0\1\43\1\23\6\0\1\22\7\0\1\22\1\0"+ "\1\22\3\0\1\52\10\0\2\53\17\0\1\54\20\0"+ "\1\30\7\0\1\30\1\0\1\30\3\0\1\30\5\0"+ "\3\31\21\0\1\55\22\0\1\56\20\0\1\35\7\0"+ "\1\35\1\0\1\35\3\0\1\35\12\0\1\57\23\0"+ "\1\60\26\0\1\43\1\41\22\0\1\61\5\0\5\45"+ "\1\0\1\47\16\45\3\46\1\0\1\62\21\45\1\0"+ "\1\47\12\45\1\63\1\45\7\0\1\64\23\0\1\64"+ "\13\0\1\22\7\0\1\22\1\0\1\22\3\0\1\65"+ "\5\0\2\54\21\0\3\55\1\0\1\66\16\0\3\56"+ "\1\0\1\67\23\0\1\70\23\0\1\70\12\0\5\71"+ "\1\0\1\72\12\71\1\63\1\71\5\63\1\73\14\63"+ "\1\74\11\64\3\0\7\64\1\0\1\22\7\0\1\22"+ "\1\0\1\22\3\0\1\75\4\0\1\70\7\0\1\76"+ "\1\0\1\70\3\0\1\70\3\0\22\73\1\77\1\0"+ "\1\76\11\0\1\76\3\0\1\76\3\0"; private static int [] zzUnpackTrans() { int [] result = new int[912]; 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 = { "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</code> */ private static final int [] ZZ_ATTRIBUTE = zzUnpackAttribute(); private static final String ZZ_ATTRIBUTE_PACKED_0 = "\11\0\1\11\2\1\1\11\16\1\1\11\5\1\1\0"+ "\1\11\6\0\1\1\1\11\1\1\4\0\1\11\2\0"+ "\2\1\2\11\1\0\2\1\1\0\3\1\1\11"; private static int [] zzUnpackAttribute() { int [] result = new int[63]; 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 CharSequence 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; /** * 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: */ public _KDocLexer() { this((java.io.Reader)null); } private boolean isLastToken() { return zzMarkedPos == zzBuffer.length(); } private boolean yytextContainLineBreaks() { return CharArrayUtil.containLineBreaks(zzBuffer, zzStartRead, zzMarkedPos); } private boolean nextIsNotWhitespace() { return zzMarkedPos <= zzBuffer.length() && !Character.isWhitespace(zzBuffer.charAt(zzMarkedPos + 1)); } private boolean prevIsNotWhitespace() { return zzMarkedPos != 0 && !Character.isWhitespace(zzBuffer.charAt(zzMarkedPos - 1)); } /** * Creates a new scanner * * @param in the java.io.Reader to read input from. */ _KDocLexer(java.io.Reader in) { this.zzReader = 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) { int size = 0; for (int i = 0, length = packed.length(); i < length; i += 2) { size += packed.charAt(i); } char[] map = new char[size]; int i = 0; /* index in packed string */ int j = 0; /* index in unpacked array */ while (i < packed.length()) { int count = packed.charAt(i++); char value = packed.charAt(i++); do map[j++] = value; while (--count > 0); } return map; } public final int getTokenStart() { return zzStartRead; } public final int getTokenEnd() { return getTokenStart() + yylength(); } public void reset(CharSequence buffer, int start, int end, int initialState) { zzBuffer = buffer; zzCurrentPos = zzMarkedPos = zzStartRead = start; zzAtEOF = false; zzAtBOL = true; zzEndRead = end; yybegin(initialState); } /** * Refills the input buffer. * * @return <code>false</code>, iff there was new input. * * @exception java.io.IOException if any I/O-Error occurs */ private boolean zzRefill() throws java.io.IOException { return true; } /** * 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 CharSequence yytext() { return zzBuffer.subSequence(zzStartRead, zzMarkedPos); } /** * Returns the character at position <tt>pos</tt> 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.charAt(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() { if (!zzEOFDone) { zzEOFDone = true; return; } } /** * 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 IElementType advance() throws java.io.IOException { int zzInput; int zzAction; // cached fields: int zzCurrentPosL; int zzMarkedPosL; int zzEndReadL = zzEndRead; CharSequence zzBufferL = zzBuffer; int [] zzTransL = ZZ_TRANS; int [] zzRowMapL = ZZ_ROWMAP; int [] zzAttrL = ZZ_ATTRIBUTE; while (true) { zzMarkedPosL = zzMarkedPos; 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] + ZZ_CMAP(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; zzDoEOF(); return null; } else { switch (zzAction < 0 ? zzAction : ZZ_ACTION[zzAction]) { case 1: { return TokenType.BAD_CHARACTER; } case 21: break; case 2: { yybegin(CONTENTS); return KDocTokens.TEXT; } case 22: break; case 3: { if(yystate() == CONTENTS_BEGINNING) { yybegin(INDENTED_CODE_BLOCK); return KDocTokens.CODE_BLOCK_TEXT; } } case 23: break; case 4: { if (yytextContainLineBreaks()) { yybegin(LINE_BEGINNING); return TokenType.WHITE_SPACE; } else { yybegin(yystate() == CONTENTS_BEGINNING ? CONTENTS_BEGINNING : CONTENTS); return KDocTokens.TEXT; // internal white space } } case 24: break; case 5: { yybegin(CONTENTS_BEGINNING); return KDocTokens.LEADING_ASTERISK; } case 25: break; case 6: { if (yytextContainLineBreaks()) { yybegin(LINE_BEGINNING); } return TokenType.WHITE_SPACE; } case 26: break; case 7: { yybegin(TAG_TEXT_BEGINNING); return KDocTokens.MARKDOWN_LINK; } case 27: break; case 8: { yybegin(yystate() == INDENTED_CODE_BLOCK ? INDENTED_CODE_BLOCK : CODE_BLOCK); return KDocTokens.CODE_BLOCK_TEXT; } case 28: break; case 9: { if (yytextContainLineBreaks()) { yybegin(yystate() == INDENTED_CODE_BLOCK ? LINE_BEGINNING : CODE_BLOCK_LINE_BEGINNING); return TokenType.WHITE_SPACE; } return KDocTokens.CODE_BLOCK_TEXT; } case 29: break; case 10: { yybegin(CODE_BLOCK_CONTENTS_BEGINNING); return KDocTokens.LEADING_ASTERISK; } case 30: break; case 11: { if (isLastToken()) return KDocTokens.END; else return KDocTokens.TEXT; } case 31: break; case 12: { yybegin(CONTENTS); return KDocTokens.MARKDOWN_ESCAPED_CHAR; } case 32: break; case 13: { KDocKnownTag tag = KDocKnownTag.Companion.findByTagName(zzBuffer.subSequence(zzStartRead, zzMarkedPos)); yybegin(tag != null && tag.isReferenceRequired() ? TAG_BEGINNING : TAG_TEXT_BEGINNING); return KDocTokens.TAG_NAME; } case 33: break; case 14: { yybegin(CONTENTS_BEGINNING); return KDocTokens.START; } case 34: break; case 15: { yybegin(CODE_BLOCK_LINE_BEGINNING); return KDocTokens.TEXT; } case 35: break; case 16: { yybegin(TAG_TEXT_BEGINNING); return KDocTokens.MARKDOWN_LINK; } case 36: break; case 17: { yybegin(CONTENTS); return KDocTokens.MARKDOWN_LINK; } case 37: break; case 18: // lookahead expression with fixed lookahead length zzMarkedPos = Character.offsetByCodePoints (zzBufferL/*, zzStartRead, zzEndRead - zzStartRead*/, zzMarkedPos, -1); { yybegin(CONTENTS); return KDocTokens.MARKDOWN_LINK; } case 38: break; case 19: { yybegin(CONTENTS); return KDocTokens.MARKDOWN_INLINE_LINK; } case 39: break; case 20: // lookahead expression with fixed base length zzMarkedPos = Character.offsetByCodePoints (zzBufferL/*, zzStartRead, zzEndRead - zzStartRead*/, zzStartRead, 3); { // Code fence end yybegin(CONTENTS); return KDocTokens.TEXT; } case 40: break; default: zzScanError(ZZ_NO_MATCH); } } } } }