Package org.antlr.v4.runtime.misc

Examples of org.antlr.v4.runtime.misc.IntervalSet


   * start.
   */
  @NotNull
  @Override
  public Handle plus(@NotNull GrammarAST plusAST, @NotNull Handle blk) {
    PlusBlockStartState blkStart = (PlusBlockStartState)blk.left;
    BlockEndState blkEnd = (BlockEndState)blk.right;
    preventEpsilonClosureBlocks.add(new Triple<Rule, ATNState, ATNState>(currentRule, blkStart, blkEnd));

    PlusLoopbackState loop = newState(PlusLoopbackState.class, plusAST);
    loop.nonGreedy = !((QuantifierAST)plusAST).isGreedy();
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  public Handle plus(@NotNull GrammarAST plusAST, @NotNull Handle blk) {
    PlusBlockStartState blkStart = (PlusBlockStartState)blk.left;
    BlockEndState blkEnd = (BlockEndState)blk.right;
    preventEpsilonClosureBlocks.add(new Triple<Rule, ATNState, ATNState>(currentRule, blkStart, blkEnd));

    PlusLoopbackState loop = newState(PlusLoopbackState.class, plusAST);
    loop.nonGreedy = !((QuantifierAST)plusAST).isGreedy();
    atn.defineDecisionState(loop);
    LoopEndState end = newState(LoopEndState.class, plusAST);
    blkStart.loopBackState = loop;
    end.loopBackState = loop;
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    ATNState right = newState(pred);

    AbstractPredicateTransition p;
    if (pred.getOptionString(LeftRecursiveRuleTransformer.PRECEDENCE_OPTION_NAME) != null) {
      int precedence = Integer.parseInt(pred.getOptionString(LeftRecursiveRuleTransformer.PRECEDENCE_OPTION_NAME));
      p = new PrecedencePredicateTransition(right, precedence);
    }
    else {
      boolean isCtxDependent = UseDefAnalyzer.actionIsContextDependent(pred);
      p = new PredicateTransition(right, currentRule.index, g.sempreds.get(pred), isCtxDependent);
    }
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      int precedence = Integer.parseInt(pred.getOptionString(LeftRecursiveRuleTransformer.PRECEDENCE_OPTION_NAME));
      p = new PrecedencePredicateTransition(right, precedence);
    }
    else {
      boolean isCtxDependent = UseDefAnalyzer.actionIsContextDependent(pred);
      p = new PredicateTransition(right, currentRule.index, g.sempreds.get(pred), isCtxDependent);
    }

    left.addTransition(p);
    pred.atnState = left;
    return new Handle(left, right);
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  /* start->ruleblock->end */
  @NotNull
  @Override
  public Handle rule(@NotNull GrammarAST ruleAST, @NotNull String name, @NotNull Handle blk) {
    Rule r = g.getRule(name);
    RuleStartState start = atn.ruleToStartState[r.index];
    epsilon(start, blk.left);
    RuleStopState stop = atn.ruleToStopState[r.index];
    epsilon(blk.right, stop);
    Handle h = new Handle(start, stop);
//    ATNPrinter ser = new ATNPrinter(g, h.left);
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    Rule r = g.getRule(node.getText());
    if ( r==null ) {
      g.tool.errMgr.grammarError(ErrorType.INTERNAL_ERROR, g.fileName, node.getToken(), "Rule "+node.getText()+" undefined");
      return null;
    }
    RuleStartState start = atn.ruleToStartState[r.index];
    ATNState left = newState(node);
    ATNState right = newState(node);
    int precedence = 0;
    if (((GrammarASTWithOptions)node).getOptionString(LeftRecursiveRuleTransformer.PRECEDENCE_OPTION_NAME) != null) {
      precedence = Integer.parseInt(((GrammarASTWithOptions)node).getOptionString(LeftRecursiveRuleTransformer.PRECEDENCE_OPTION_NAME));
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   */
  void createRuleStartAndStopATNStates() {
    atn.ruleToStartState = new RuleStartState[g.rules.size()];
    atn.ruleToStopState = new RuleStopState[g.rules.size()];
    for (Rule r : g.rules.values()) {
      RuleStartState start = newState(RuleStartState.class, r.ast);
      RuleStopState stop = newState(RuleStopState.class, r.ast);
      start.stopState = stop;
      start.isPrecedenceRule = r instanceof LeftRecursiveRule;
      start.setRuleIndex(r.index);
      stop.setRuleIndex(r.index);
      atn.ruleToStartState[r.index] = start;
      atn.ruleToStopState[r.index] = stop;
    }
  }
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  @Override
  public Handle rule(@NotNull GrammarAST ruleAST, @NotNull String name, @NotNull Handle blk) {
    Rule r = g.getRule(name);
    RuleStartState start = atn.ruleToStartState[r.index];
    epsilon(start, blk.left);
    RuleStopState stop = atn.ruleToStopState[r.index];
    epsilon(blk.right, stop);
    Handle h = new Handle(start, stop);
//    ATNPrinter ser = new ATNPrinter(g, h.left);
//    System.out.println(ruleAST.toStringTree()+":\n"+ser.asString());
    ruleAST.atnState = start;
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    // ignore tokens from existing option subtrees like:
    //    (ELEMENT_OPTIONS (= assoc right))
    //
    // element options are added back according to the values in the map
    // returned by getOptions().
    IntervalSet ignore = new IntervalSet();
    List<GrammarAST> optionsSubTrees = t.getNodesWithType(ELEMENT_OPTIONS);
    for (GrammarAST sub : optionsSubTrees) {
      ignore.add(sub.getTokenStartIndex(), sub.getTokenStopIndex());
    }

    // Individual labels appear as RULE_REF or TOKEN_REF tokens in the tree,
    // but do not support the ELEMENT_OPTIONS syntax. Make sure to not try
    // and add the tokenIndex option when writing these tokens.
    IntervalSet noOptions = new IntervalSet();
    List<GrammarAST> labeledSubTrees = t.getNodesWithType(new IntervalSet(ASSIGN,PLUS_ASSIGN));
    for (GrammarAST sub : labeledSubTrees) {
      noOptions.add(sub.getChild(0).getTokenStartIndex());
    }

    StringBuilder buf = new StringBuilder();
    for (int i=tokenStartIndex; i<=tokenStopIndex; i++) {
      if ( ignore.contains(i) ) {
        continue;
      }

      Token tok = tokenStream.get(i);

      StringBuilder elementOptions = new StringBuilder();
      if (!noOptions.contains(i)) {
        GrammarAST node = t.getNodeWithTokenIndex(tok.getTokenIndex());
        if ( node!=null &&
           (tok.getType()==TOKEN_REF ||
            tok.getType()==STRING_LITERAL ||
            tok.getType()==RULE_REF) )
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  @NotNull
  @Override
  public Handle set(@NotNull GrammarAST associatedAST, @NotNull List<GrammarAST> terminals, boolean invert) {
    ATNState left = newState(associatedAST);
    ATNState right = newState(associatedAST);
    IntervalSet set = new IntervalSet();
    for (GrammarAST t : terminals) {
      int ttype = g.getTokenType(t.getText());
      set.add(ttype);
    }
    if ( invert ) {
      left.addTransition(new NotSetTransition(right, set));
    }
    else {
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