comments for parser
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3 changed files with 91 additions and 73 deletions
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@ -15,6 +15,7 @@ namespace Compiler.Parser
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_tokenList = tokenList;
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}
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//A method to check the first token in _tokenList and remove it or raise accoarding error
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private void CheckFirstTokenAndRemove(TokenType expected)
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{
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if (_tokenList.Count == 0)
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@ -30,9 +31,13 @@ namespace Compiler.Parser
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_tokenList.RemoveAt(0);
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}
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//The main RDP function
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public Node Parse(NodeType nodeType)
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{
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//declare node to be returned
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Node n;
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//switch over the nodeType to check in which part of the parser we are
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switch (nodeType)
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{
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case NodeType.ProgramNode:
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@ -110,43 +115,57 @@ namespace Compiler.Parser
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throw new MissingTokenException(TokenType.IntegerLiteralToken);
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}
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//an expression always has a first term
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//this first term is parsed here
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Node firstTerm = Parse(NodeType.TermNode);
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n = firstTerm;
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//get next token
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Token expressionToken = _tokenList[0];
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//if the next token is a + or a - it must be a binary operator because we are in an expression
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//that means that this is not a plain constant but a BinaryOperator node
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while (expressionToken.TokenType == TokenType.AdditionToken ||
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expressionToken.TokenType == TokenType.NegationToken)
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{
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//remove the - or + token
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_tokenList.RemoveAt(0);
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switch (expressionToken.TokenType)
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{
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//1. create a BinOp Node
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//2. Add the first term as a child
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//3. Parse the rest as an expression and add it as the second term
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case TokenType.AdditionToken:
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n = new BinaryOperatorNode(OperatorType.Addition);
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n.Children.Add(firstTerm);
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n.Children.Add(Parse(NodeType.TermNode));
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n.Children.Add(Parse(NodeType.ExpressionNode));
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break;
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case TokenType.NegationToken:
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n = new BinaryOperatorNode(OperatorType.Subtraction);
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n.Children.Add(firstTerm);
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n.Children.Add(Parse(NodeType.TermNode));
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n.Children.Add(Parse(NodeType.ExpressionNode));
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break;
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default:
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//this should never happen because the while loop checks for token types, that are
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//handled by case statements above only
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throw new Exception("WeirdException");
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}
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//if there are still tokens left over pop one off
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if (_tokenList.Count > 0)
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{
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expressionToken = _tokenList[0];
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}
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else
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{
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//there must be tokens left because we are in an expression.
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throw new MissingTokenException(TokenType.IntegerLiteralToken);
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}
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}
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break;
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//the case for term node is almost the same as the one for expression node
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case NodeType.TermNode:
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@ -155,11 +174,13 @@ namespace Compiler.Parser
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throw new MissingTokenException(TokenType.IntegerLiteralToken);
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}
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//parse first factor
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Node firstFactor = Parse(NodeType.FactorNode);
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n = firstFactor;
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Token termToken = _tokenList[0];
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//parse second factor if it exists
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while (termToken.TokenType == TokenType.MultiplicationToken ||
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termToken.TokenType == TokenType.DivisionToken)
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{
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@ -169,13 +190,13 @@ namespace Compiler.Parser
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case TokenType.MultiplicationToken:
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n = new BinaryOperatorNode(OperatorType.Multiplication);
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n.Children.Add(firstFactor);
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n.Children.Add(Parse(NodeType.FactorNode));
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n.Children.Add(Parse(NodeType.TermNode));
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break;
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case TokenType.DivisionToken:
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n = new BinaryOperatorNode(OperatorType.Division);
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n.Children.Add(firstFactor);
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n.Children.Add(Parse(NodeType.FactorNode));
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n.Children.Add(Parse(NodeType.TermNode));
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break;
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default:
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throw new Exception("WeirdException");
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@ -193,6 +214,7 @@ namespace Compiler.Parser
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break;
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case NodeType.FactorNode:
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if (_tokenList.Count == 0)
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{
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@ -201,20 +223,31 @@ namespace Compiler.Parser
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Token factorToken = _tokenList[0];
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//switch over possible next tokens. There are three possible options
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switch (factorToken.TokenType)
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{
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//first option:
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//a parenthesised expression follows.
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case TokenType.OpenParenthesisToken:
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//check and remove openParenthesis (it has already been checked in the case, so removal would be enough)
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CheckFirstTokenAndRemove(TokenType.OpenParenthesisToken);
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//parse the things inside as an expression
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n = Parse(NodeType.ExpressionNode);
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//check if close parenthesis is supplied
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CheckFirstTokenAndRemove(TokenType.CloseParenthesisToken);
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break;
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//second option:
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//this is a unary operator expression
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case TokenType.NegationToken:
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case TokenType.BitwiseComplementToken:
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case TokenType.LogicalNegationToken:
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//just parse this as a unary operator node
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n = Parse(NodeType.UnaryOperatorNode);
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n.Children.Add(Parse(NodeType.FactorNode));
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break;
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//this is an integer literal.
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case TokenType.IntegerLiteralToken:
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//parse it as a constant
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n = Parse(NodeType.ConstantNode);
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break;
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default:
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@ -224,6 +257,7 @@ namespace Compiler.Parser
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break;
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//code to parse unary operator nodes
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case NodeType.UnaryOperatorNode:
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if (_tokenList.Count == 0)
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{
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@ -231,9 +265,11 @@ namespace Compiler.Parser
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}
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else
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{
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//get operator
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Token unaryOperator = _tokenList[0];
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_tokenList.RemoveAt(0);
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//switch over three different operators and parse the rest as an expression
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switch (unaryOperator.TokenType)
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{
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case TokenType.BitwiseComplementToken:
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@ -256,6 +292,7 @@ namespace Compiler.Parser
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break;
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//parse constant nodes
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case NodeType.ConstantNode:
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if (_tokenList.Count == 0)
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@ -276,6 +313,7 @@ namespace Compiler.Parser
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break;
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}
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//default case if the supplied NodeType is unknown
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default:
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throw new Exception("Unknown Node Type " + nodeType);
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}
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