mirror of
https://github.com/Ed94/LangStudies.git
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1259 lines
28 KiB
GDScript3
1259 lines
28 KiB
GDScript3
extends Node
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# This closesly follows the source provided in the lectures.
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# Later on after the lectures are complete or when I deem
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# Necessary there will be heavy refactors.
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const TokenType = \
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{
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Program = "Program",
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# Comments
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CommentLine = "CommentLine",
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CommentMultiLine = "CommentMultiLine",
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# Formatting
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Whitespace = "Whitespace",
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# Expressions
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ExpressionPStart = "ExpressionParenthesisStart",
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ExpressionPEnd = "ExpressionParenthesisEnd",
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expr_SqBStart = "ExpressionSquareBracketStart",
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expr_SqBEnd = "ExpressionSquareBracketEnd",
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# Logical
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RelationalOp = "RelationalOperator",
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EqualityOp = "EqualityOperator",
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Logical_And = "Logical_And_Op",
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Logical_Or = "Logical_Or_Op",
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Logical_Not = "Logical_Not_Op",
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# Arithmetic
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ComplexAssignment = "ComplexAssignment",
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Assignment = "Assignment",
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AdditiveOp = "AdditiveOperator",
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MultiplicativeOp = "MultiplicativeOperator",
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# Conditional
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Conditional_if = "if Conditional",
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Conditional_else = "else Conditional",
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# Statements
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StatementEnd = "StatementEnd",
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StmtBlockStart = "BlockStatementStart",
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StmtBlockEnd = "BlockStatementEnd",
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CommaDelimiter = "CommaDelimiter",
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MemberDelimiter = "MemberDelimiter",
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# Literals
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Number = "Number",
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String = "String",
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# Symbols
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Bool_true = "Boolean True",
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Bool_false = "Boolean False",
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VarDeclare = "Variable Declaration",
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Identifier = "Identifier",
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NullValue = "Null Value",
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While = "While",
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Do = "Do",
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For = "For",
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FuncDeclare = "Function Delcaration",
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Return = "Return"
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}
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const TokenSpec = \
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{
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# Comments
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TokenType.CommentLine : "^\\/\\/.*",
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TokenType.CommentMultiLine : "^\\/\\*[\\s\\S]*?\\*\\/",
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# Formatting
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TokenType.Whitespace : "^\\s+",
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# Expressions
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TokenType.ExpressionPStart : "^\\(",
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TokenType.ExpressionPEnd : "^\\)",
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TokenType.expr_SqBStart : "^\\[",
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TokenType.expr_SqBEnd : "^\\]",
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# Logical
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TokenType.RelationalOp : "^[>\\<]=?",
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TokenType.EqualityOp : "^[=!]=",
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TokenType.Logical_And : "^&&",
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TokenType.Logical_Or : "^\\|\\|",
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TokenType.Logical_Not : "^!",
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# Arithmetic
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TokenType.ComplexAssignment : "^[*\\/\\+\\-]=",
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TokenType.Assignment : "^=",
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TokenType.AdditiveOp : "^[+\\-]",
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TokenType.MultiplicativeOp : "^[*\\/]",
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# Literal
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TokenType.Number : "\\d+",
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TokenType.String : "^\"[^\"]*\"",
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TokenType.Conditional_if : "^\\bif\\b",
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TokenType.Conditional_else : "^\\belse\\b",
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# Statements
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TokenType.StatementEnd : "^;",
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TokenType.StmtBlockStart : "^{",
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TokenType.StmtBlockEnd : "^}",
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TokenType.CommaDelimiter : "^,",
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TokenType.MemberDelimiter : "^\\.",
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# Symbols
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TokenType.Bool_true : "^\\btrue\\b",
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TokenType.Bool_false : "^\\bfalse\\b",
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TokenType.VarDeclare : "^\\blet\\b",
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TokenType.NullValue : "^\\bnull\\b",
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TokenType.While : "^\\bwhile\\b",
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TokenType.Do : "^\\bdo\\b",
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TokenType.For : "^\\bfor\\b",
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TokenType.FuncDeclare : "^\\bdef\\b",
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TokenType.Return : "^\\breturn\\b",
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TokenType.Identifier : "^\\w+"
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}
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class Token:
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var Type : String
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var Value : String
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func to_Dictionary():
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var result = \
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{
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Type = self.Type,
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Value = self.Value
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}
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return result
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class Tokenizer:
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var SrcTxt : String
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var Cursor : int;
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# Sets up the tokenizer with the program source text.
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func init(programSrcText):
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SrcTxt = programSrcText
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Cursor = 0
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# Provides the next token in the source text.
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func next_Token():
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if reached_EndOfTxt() == true :
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return null
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var srcLeft = SrcTxt.substr(Cursor)
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var regex = RegEx.new()
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var token = Token.new()
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for type in TokenSpec :
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regex.compile(TokenSpec[type])
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var result = regex.search(srcLeft)
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if result == null || result.get_start() != 0 :
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continue
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# Skip Comments
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if type == TokenType.CommentLine || type == TokenType.CommentMultiLine :
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Cursor += result.get_string().length()
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return next_Token()
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# Skip Whitespace
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if type == TokenType.Whitespace :
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var addVal = result.get_string().length()
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Cursor += addVal
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return next_Token()
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token.Type = type
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token.Value = result.get_string()
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Cursor += ( result.get_string().length() )
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return token
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var assertStrTmplt = "next_token: Source text not understood by tokenizer at Cursor pos: {value}"
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var assertStr = assertStrTmplt.format({"value" : Cursor})
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assert(true != true, assertStr)
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return null
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func reached_EndOfTxt():
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return Cursor >= ( SrcTxt.length() )
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var GTokenizer = Tokenizer.new()
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const AST_Format = \
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{
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Dictionary = "Dictionary",
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SExpression = "S-Expression"
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}
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const SyntaxNodeType = \
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{
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NumericLiteral = "NumericLiteral",
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StringLiteral = "StringLiteral",
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ExpressionStatement = "ExpressionStatement",
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BlockStatement = "BlockStatement",
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EmptyStatement = "EmptyStatement",
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BinaryExpression = "BinaryExpression",
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Identifier = "Identifier",
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AssignmentExpression = "AssignmentExpression",
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VariableStatement = "VariableStatement",
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VariableDeclaration = "VariableDeclaration",
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ConditionalStatement = "ConditionalStatement",
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BooleanLiteral = "BooleanLiteral",
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NullLiteral = "NullLiteral",
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LogicalExpression = "LogicalExpression",
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UnaryExpression = "UnaryExpression",
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WhileStatement = "WhileStatement",
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DoWhileStatement = "DoWhileStatement",
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ForStatement = "ForStatement",
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FunctionDeclaration = "FunctionDeclaration",
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ReturnStatement = "ReturnStatement",
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MemberExpression = "MemberExpression",
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CallExpression = "CallExpression"
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}
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class SyntaxNode:
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var Type : String
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var Value # Not specifing a type implicity declares a Variant type.
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func array_Serialize(array, fn_objSerializer) :
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var result = []
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for entry in array :
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if typeof(entry) == TYPE_ARRAY :
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result.append( array_Serialize( entry, fn_objSerializer ))
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elif typeof(entry) == TYPE_OBJECT :
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fn_objSerializer.set_instance(entry)
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result.append( fn_objSerializer.call_func() )
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else :
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result.append( entry )
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return result
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func to_SExpression():
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var expression = [ Type ]
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if typeof(Value) == TYPE_ARRAY :
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var \
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to_SExpression_Fn = FuncRef.new()
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to_SExpression_Fn.set_function("to_SExpression")
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var array = array_Serialize( self.Value, to_SExpression_Fn )
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expression.append(array)
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return expression
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if typeof(Value) == TYPE_OBJECT :
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var result = [ Type, Value.to_SExpression() ]
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return result
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expression.append(Value)
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return expression
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func to_Dictionary():
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if typeof(Value) == TYPE_ARRAY :
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var \
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to_Dictionary_Fn = FuncRef.new()
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to_Dictionary_Fn.set_function("to_Dictionary")
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var array = array_Serialize( self.Value, to_Dictionary_Fn )
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var result = \
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{
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Type = self.Type,
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Value = array
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}
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return result
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if typeof(Value) == TYPE_OBJECT :
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var result = \
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{
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Type = self.Type,
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Value = self.Value.to_Dictionary()
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}
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return result
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var result = \
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{
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Type = self.Type,
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Value = self.Value
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}
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return result
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class Parser:
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var TokenizerRef : Tokenizer
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var NextToken : Token
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# --------------------------------------------------------------------- HELPERS
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# Gets the next token only if the current token is the specified intended token (tokenType)
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func eat(tokenType):
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var currToken = self.NextToken
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assert(currToken != null, "eat: NextToken was null")
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var assertStrTmplt = "eat: Unexpected token: {value}, expected: {type}"
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var assertStr = assertStrTmplt.format({"value" : currToken.Value, "type" : tokenType})
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assert(currToken.Type == tokenType, assertStr)
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NextToken = TokenizerRef.next_Token()
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return currToken
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func is_Literal():
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return \
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NextToken.Type == TokenType.Number \
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|| NextToken.Type == TokenType.String \
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|| NextToken.Type == TokenType.Bool_true \
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|| NextToken.Type == TokenType.Bool_false \
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|| NextToken.Type == TokenType.NullValue
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# BinaryExpression
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# : MultiplicativeExpression
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# | AdditiveExpression
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# ;
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func parse_BinaryExpression(parse_fn, operatorToken):
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var left = parse_fn.call_func()
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while NextToken.Type == operatorToken:
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var operator = eat(operatorToken)
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var right = parse_fn.call_func()
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var \
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nestedNode = SyntaxNode.new()
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nestedNode.Type = SyntaxNodeType.BinaryExpression
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nestedNode.Value = []
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nestedNode.Value.append(operator.Value)
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nestedNode.Value.append(left)
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nestedNode.Value.append(right)
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left = nestedNode;
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return left
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# LogicalExpression
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# : LogicalAndExpression
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# | LogicalOrExpression
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# ;
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func parse_LogicalExpression(parse_fn, operatorToken):
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var left = parse_fn.call_func()
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while NextToken.Type == operatorToken :
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var operator = eat(operatorToken).Value
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var right = parse_fn.call_func()
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var \
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nestedNode = SyntaxNode.new()
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nestedNode.Type = SyntaxNodeType.LogicalExpression
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nestedNode.Value = []
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nestedNode.Value.append(operator)
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nestedNode.Value.append(left)
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nestedNode.Value.append(right)
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left = nestedNode
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return left
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# ------------------------------------------------------------------ END HELPERS
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# Parses the text program description into an AST.
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func parse(TokenizerRef):
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self.TokenizerRef = TokenizerRef
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NextToken = TokenizerRef.next_Token()
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return parse_Program()
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# > parse
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# Program
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# : StatementList
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# : Literal
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# ;
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func parse_Program():
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var \
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node = SyntaxNode.new()
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node.Type = TokenType.Program
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node.Value = parse_StatementList(null)
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return node
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# > Program
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# > BlockStatement
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# StatementList
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# : Statement
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# | StatementList Statement -> Statement ...
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# ;
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func parse_StatementList(endToken):
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var statementList = [ parse_Statement() ]
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while NextToken != null && NextToken.Type != endToken :
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statementList.append( parse_Statement() )
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return statementList
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# > StatementList
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# > If_Statement
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# > WhileStatement
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# Statement
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# : ExpressionStatement
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# | BlockStatement
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# | EmptyStatement
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# | VariableStatement
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# | If_Statement
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# | IterationStatement
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# | FunctionDeclaration
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# | ReturnStatement
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# ;
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func parse_Statement():
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if NextToken == null :
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return null
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match NextToken.Type :
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TokenType.Conditional_if :
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return parse_If_Statement()
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TokenType.StatementEnd :
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return parse_EmptyStatement()
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TokenType.StmtBlockStart :
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return parse_BlockStatement()
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TokenType.VarDeclare :
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return parse_VariableStatement()
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TokenType.While :
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return parse_IterationStatement()
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TokenType.Do :
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return parse_IterationStatement()
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TokenType.For :
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return parse_IterationStatement()
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TokenType.FuncDeclare:
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return parse_FunctionDeclaration()
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TokenType.Return:
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return parse_ReturnStatement()
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return parse_ExpressionStatement()
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# If Statement
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# : if ( Expression ) Statement
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# | if ( Expression ) Statement else Statement
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# ;
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func parse_If_Statement():
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eat(TokenType.Conditional_if)
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eat(TokenType.ExpressionPStart)
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var condition = parse_Expression()
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eat(TokenType.ExpressionPEnd)
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var consequent = parse_Statement()
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var alternative = null
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if NextToken != null && NextToken.Type == TokenType.Conditional_else :
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eat(TokenType.Conditional_else)
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alternative = parse_Statement()
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var \
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node = SyntaxNode.new()
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node.Type = SyntaxNodeType.ConditionalStatement
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node.Value = [ condition, consequent, alternative ]
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return node
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# > Statement
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# EmptyStatement
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# ;
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func parse_EmptyStatement():
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eat(TokenType.StatementEnd)
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var \
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node = SyntaxNode.new()
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node.Type = SyntaxNodeType.EmptyStatement
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return node
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# > Statement
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# BlockStatement
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# : { OptStatementList }
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# ;
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func parse_BlockStatement():
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eat(TokenType.StmtBlockStart)
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var \
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node = SyntaxNode.new()
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node.Type = SyntaxNodeType.BlockStatement
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if NextToken.Type != TokenType.StmtBlockEnd :
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node.Value = parse_StatementList(TokenType.StmtBlockEnd)
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else :
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node.Value = []
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eat(TokenType.StmtBlockEnd)
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return node
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# > Statement
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# VariableStatement
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# : VariableStatementInit StatementEnd
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# ;
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func parse_VariableStatement():
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var varStatement = parse_VariableStatementInit()
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eat(TokenType.StatementEnd)
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return varStatement
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# > VariableStatement
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# VariableStatementInit
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# : VarDeclare VariableDeclarationList
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# ;
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func parse_VariableStatementInit():
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eat(TokenType.VarDeclare)
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var declarations = parse_VariableDeclarationList()
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var \
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node = SyntaxNode.new()
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node.Type = SyntaxNodeType.VariableStatement
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node.Value = declarations
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return node
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# > Statement
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# IterationStatement
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# : WhileStatement
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# | DoWhileStatement
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# | ForStatement
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# ;
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func parse_IterationStatement():
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match NextToken.Type:
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TokenType.While :
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return parse_WhileStatement()
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TokenType.Do :
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return parse_DoWhileStatement()
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TokenType.For :
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return parse_ForStatement()
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# > IterationStatement
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# WhileStatement
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# : while ( Expression ) Statement
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# ;
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func parse_WhileStatement():
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eat(TokenType.While)
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eat(TokenType.ExpressionPStart)
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var condition = parse_Expression()
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eat(TokenType.ExpressionPEnd)
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var body = parse_Statement()
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var \
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node = SyntaxNode.new()
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node.Type = SyntaxNodeType.WhileStatement
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node.Value = [ condition, body ]
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return node
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# > IterationStatement
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# DoWhileStatement
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# : do Statement while ( Expression )
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# ;
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func parse_DoWhileStatement():
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eat(TokenType.Do)
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var body = parse_Statement()
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eat(TokenType.While)
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eat(TokenType.ExpressionPStart)
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var condition = parse_Expression()
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eat(TokenType.ExpressionPEnd)
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eat(TokenType.StatementEnd)
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var \
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node = SyntaxNode.new()
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node.Type = SyntaxNodeType.DoWhileStatement
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node.Value = [ condition, body ]
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return node
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# > IterationStatement
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# ForStatement
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# : for (
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# OptForStatementInit ;
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# OptExpression ;
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# OptExpression
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# )
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# Statement
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# ;
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func parse_ForStatement():
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eat(TokenType.For)
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eat(TokenType.ExpressionPStart)
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var init = null
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var condition = null
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var update = null
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if NextToken.Type != TokenType.StatementEnd :
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init = parse_ForStatementInit()
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eat(TokenType.StatementEnd)
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if NextToken.Type != TokenType.StatementEnd :
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condition = parse_Expression()
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eat(TokenType.StatementEnd)
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if NextToken.Type != TokenType.ExpressionPEnd :
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update = parse_Expression()
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eat(TokenType.ExpressionPEnd)
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var body = parse_Statement()
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|
var \
|
|
node = SyntaxNode.new()
|
|
node.Type = SyntaxNodeType.ForStatement
|
|
node.Value = [ init, condition, update, body ]
|
|
|
|
return node
|
|
|
|
# > ForStatement
|
|
# ForStatementInit
|
|
# : VariableStatemetnInit
|
|
# | Expression
|
|
# ;
|
|
func parse_ForStatementInit():
|
|
if NextToken.Type == TokenType.VarDeclare :
|
|
return parse_VariableStatementInit()
|
|
|
|
return parse_Expression()
|
|
|
|
# > Statement
|
|
# FunctionDeclaration
|
|
# : FuncDeclare ( OptFomralParameterList ) BlockStatement
|
|
# ;
|
|
func parse_FunctionDeclaration():
|
|
|
|
eat(TokenType.FuncDeclare)
|
|
|
|
var name = parse_Identifier()
|
|
|
|
eat(TokenType.ExpressionPStart)
|
|
|
|
var params
|
|
if NextToken.Type != TokenType.ExpressionPEnd :
|
|
params = parse_FormalParameterList()
|
|
else :
|
|
params = []
|
|
|
|
eat(TokenType.ExpressionPEnd)
|
|
|
|
var body = parse_BlockStatement()
|
|
|
|
var \
|
|
node = SyntaxNode.new()
|
|
node.Type = SyntaxNodeType.FunctionDeclaration
|
|
node.Value = [ name, params, body ]
|
|
|
|
return node
|
|
|
|
# > FunctionDeclaration
|
|
# FormalParameterList
|
|
# : Identifier
|
|
# | FormalParameterList , Identifier
|
|
# ;
|
|
func parse_FormalParameterList():
|
|
var params = [ parse_Identifier() ]
|
|
|
|
while NextToken.Type == TokenType.CommaDelimiter :
|
|
eat(TokenType.CommaDelimiter)
|
|
params.append(parse_Identifier())
|
|
|
|
return params
|
|
|
|
# > Statement
|
|
# ReturnStatement
|
|
# : return OptExpression
|
|
# ;
|
|
func parse_ReturnStatement():
|
|
eat(TokenType.Return)
|
|
|
|
var argument = null
|
|
if NextToken.Type != TokenType.StatementEnd :
|
|
argument = parse_Expression()
|
|
|
|
var \
|
|
node = SyntaxNode.new()
|
|
node.Type = SyntaxNodeType.ReturnStatement
|
|
node.Value = argument
|
|
|
|
return node
|
|
|
|
# > Statement
|
|
# ExpressionStatement
|
|
# : Expression
|
|
# ;
|
|
func parse_ExpressionStatement():
|
|
var expression = parse_Expression()
|
|
eat(TokenType.StatementEnd)
|
|
|
|
var \
|
|
node = SyntaxNode.new()
|
|
node.Type = SyntaxNodeType.ExpressionStatement
|
|
node.Value = expression
|
|
|
|
return expression
|
|
|
|
# > ExpressionStatement
|
|
# > If_Statement
|
|
# > WhileStatement
|
|
# > PrimaryExpression
|
|
# Expression
|
|
# : AssignmentExpression
|
|
# ;
|
|
func parse_Expression():
|
|
return parse_AssignmentExpression()
|
|
|
|
# > VariableStatement
|
|
# VariableDeclarationList
|
|
# : VariableDeclaration
|
|
# | VariableDelcarationList , VariableDeclaration -> VariableDelcaration , ...
|
|
func parse_VariableDeclarationList():
|
|
var \
|
|
declarations = []
|
|
declarations.append(parse_VariableDeclaration())
|
|
|
|
while NextToken.Type == TokenType.CommaDelimiter :
|
|
eat(TokenType.CommaDelimiter)
|
|
declarations.append(parse_VariableDeclaration())
|
|
|
|
return declarations
|
|
|
|
# > VariableDeclarationList
|
|
# VariableDeclaration
|
|
# : Identifier OptVariableInitalizer
|
|
# ;
|
|
func parse_VariableDeclaration():
|
|
var identifier = parse_Identifier()
|
|
var initalizer
|
|
if NextToken.Type != TokenType.StatementEnd \
|
|
&& NextToken.Type != TokenType.CommaDelimiter :
|
|
initalizer = parse_VariableInitializer()
|
|
else :
|
|
initalizer = null
|
|
|
|
var \
|
|
node = SyntaxNode.new()
|
|
node.Type = SyntaxNodeType.VariableDeclaration
|
|
node.Value = [ identifier, initalizer ]
|
|
|
|
return node
|
|
|
|
# > VariableDeclaration
|
|
# VariableInitializer
|
|
# : Assignment AssignmentExpression
|
|
# ;
|
|
func parse_VariableInitializer():
|
|
eat(TokenType.Assignment)
|
|
|
|
return parse_AssignmentExpression()
|
|
|
|
# > Expression
|
|
# > VariableInitializer
|
|
# > AssignmentExpression
|
|
# AssignmentExpression
|
|
# : RelationalExpression
|
|
# | ResolvedSymbol AssignmentOperator AssignmetnExpression
|
|
# ;
|
|
func parse_AssignmentExpression():
|
|
var left = parse_LogicalOrExpression()
|
|
|
|
if NextToken.Type != TokenType.Assignment \
|
|
&& NextToken.Type != TokenType.ComplexAssignment :
|
|
return left
|
|
|
|
var assignmentOp;
|
|
|
|
if NextToken.Type == TokenType.Assignment :
|
|
assignmentOp = eat(TokenType.Assignment)
|
|
elif NextToken.Type == TokenType.ComplexAssignment :
|
|
assignmentOp = eat(TokenType.ComplexAssignment)
|
|
|
|
var \
|
|
node = SyntaxNode.new()
|
|
node.Type = SyntaxNodeType.AssignmentExpression
|
|
node.Value = \
|
|
[
|
|
assignmentOp.Value,
|
|
left,
|
|
parse_AssignmentExpression()
|
|
]
|
|
|
|
return node
|
|
|
|
# > VariableDeclaration
|
|
# > ParenthesizedExpression
|
|
# Identifier
|
|
# : IdentifierSymbol
|
|
# ;
|
|
func parse_Identifier():
|
|
var name = eat(TokenType.Identifier).Value
|
|
|
|
var \
|
|
node = SyntaxNode.new()
|
|
node.Type = SyntaxNodeType.Identifier
|
|
node.Value = name
|
|
|
|
return node
|
|
|
|
# > AssignmentExpression
|
|
# Logical Or Expression
|
|
# : LogicalAndExpression Logical_Or LogicalOrExpression
|
|
# | LogicalOrExpression
|
|
# ;
|
|
func parse_LogicalOrExpression():
|
|
var \
|
|
parseFn = FuncRef.new()
|
|
parseFn.set_instance(self)
|
|
parseFn.set_function("pasre_LogicalAndExpression")
|
|
|
|
return parse_LogicalExpression(parseFn, TokenType.Logical_Or)
|
|
|
|
# > LogicaOrExpression
|
|
# Logical And Expression
|
|
# : EqualityExpression Logical_And LogicalAndExpression
|
|
# | EqualityExpression
|
|
# ;
|
|
func pasre_LogicalAndExpression():
|
|
var \
|
|
parseFn = FuncRef.new()
|
|
parseFn.set_instance(self)
|
|
parseFn.set_function("parse_EqualityExpression")
|
|
|
|
return parse_LogicalExpression(parseFn, TokenType.Logical_And)
|
|
|
|
# Equality Operators: ==, !=
|
|
#
|
|
# > LogicalAndExpression
|
|
# EqualityExpression
|
|
# : RelationalExpression EqualityOp RelationalExpression
|
|
# | RelationalExpression
|
|
# ;
|
|
func parse_EqualityExpression():
|
|
var \
|
|
parseFn = FuncRef.new()
|
|
parseFn.set_instance(self)
|
|
parseFn.set_function("parse_RelationalExpression")
|
|
|
|
return parse_BinaryExpression(parseFn, TokenType.EqualityOp)
|
|
|
|
# Relational Operators: >, >=, <, <=
|
|
#
|
|
# > EqualityExpression
|
|
# Relational Expression
|
|
# : AdditiveExpression
|
|
# | AdditiveExpression RelationalOp RelationalExpression
|
|
# ;
|
|
func parse_RelationalExpression():
|
|
var \
|
|
parseFn = FuncRef.new()
|
|
parseFn.set_instance(self)
|
|
parseFn.set_function("parse_AdditiveExpression")
|
|
|
|
return parse_BinaryExpression(parseFn, TokenType.RelationalOp)
|
|
|
|
# > RelationalExpression
|
|
# AdditiveExpression
|
|
# : MultiplicativeExpression
|
|
# | AdditiveExpression AdditiveOp MultiplicativeExpression -> MultiplicativeExpression AdditiveOp ... Literal
|
|
# ;
|
|
func parse_AdditiveExpression():
|
|
var \
|
|
parseFn = FuncRef.new()
|
|
parseFn.set_instance(self)
|
|
parseFn.set_function("parse_MultiplicativeExpression")
|
|
|
|
return parse_BinaryExpression(parseFn, TokenType.AdditiveOp)
|
|
|
|
# > AdditiveExpression
|
|
# MultiplicativeExpression
|
|
# : UnaryExpressioon
|
|
# : MultiplicativeExpression MultiplicativeOp UnaryExpression -> UnaryExpression MultiplicativeOp ... Literal
|
|
# ;
|
|
func parse_MultiplicativeExpression():
|
|
var \
|
|
parseFn = FuncRef.new()
|
|
parseFn.set_instance(self)
|
|
parseFn.set_function("parse_UnaryExpression")
|
|
|
|
return parse_BinaryExpression(parseFn, TokenType.MultiplicativeOp)
|
|
|
|
# > MultiplicativeExpression
|
|
# > UnaryExpression
|
|
# UnaryExpression
|
|
# : ResolvedSymbol
|
|
# | AdditiveOp UnaryExpression
|
|
# | Logical_Not UnaryExpression
|
|
# ;
|
|
func parse_UnaryExpression():
|
|
var operator
|
|
match NextToken.Type:
|
|
TokenType.AdditiveOp:
|
|
operator = eat(TokenType.AdditiveOp).Value
|
|
TokenType.Logical_Not:
|
|
operator = eat(TokenType.Logical_Not).Value
|
|
|
|
if operator == null :
|
|
return parse_ResolvedSymbol()
|
|
|
|
var \
|
|
node = SyntaxNode.new()
|
|
node.Type = SyntaxNodeType.UnaryExpression
|
|
node.Value = [ operator, parse_UnaryExpression() ]
|
|
|
|
return node;
|
|
|
|
# > UnaryExpression
|
|
# > PrimaryExpression
|
|
# ResolvedSymbol (LeftHandExpression)
|
|
# : MemberExpression
|
|
# ;
|
|
func parse_ResolvedSymbol():
|
|
return parse_FunctionExpression()
|
|
|
|
# > ResolvedSymbol
|
|
# FunctionExpression
|
|
# : MemberExpression
|
|
# | CallExpression
|
|
# ;
|
|
func parse_FunctionExpression():
|
|
var member = parse_MemberExpression()
|
|
|
|
if NextToken.Type == TokenType.ExpressionPStart :
|
|
return parse_CallExpression(member)
|
|
|
|
return member
|
|
|
|
# > ResolvedSymbol
|
|
# MemberExpression
|
|
# : PrimaryExpression
|
|
# | MemberExpression . Identifier
|
|
# | MemberExpression [ Expression ]
|
|
# ;
|
|
func parse_MemberExpression():
|
|
var expression = parse_PrimaryExpression()
|
|
|
|
while NextToken.Type == TokenType.MemberDelimiter || NextToken.Type == TokenType.expr_SqBStart :
|
|
if NextToken.Type == TokenType.MemberDelimiter :
|
|
eat(TokenType.MemberDelimiter)
|
|
|
|
var member = parse_Identifier()
|
|
|
|
var \
|
|
node = SyntaxNode.new()
|
|
node.Type = SyntaxNodeType.MemberExpression
|
|
node.Value = [ false, expression, member ]
|
|
|
|
expression = node
|
|
|
|
if NextToken.Type == TokenType.expr_SqBStart :
|
|
eat(TokenType.expr_SqBStart)
|
|
|
|
var sbExpression = parse_Expression()
|
|
|
|
eat(TokenType.expr_SqBEnd)
|
|
|
|
var \
|
|
node = SyntaxNode.new()
|
|
node.Type = SyntaxNodeType.MemberExpression
|
|
node.Value = [ true, expression, sbExpression ]
|
|
|
|
expression = node
|
|
|
|
return expression
|
|
|
|
# > FunctionExpression
|
|
# CallExpression
|
|
# : Callee Arguments
|
|
# ;
|
|
#
|
|
# Callee
|
|
# : MemberExpression
|
|
# | CallExpression
|
|
# ;
|
|
func parse_CallExpression(callee):
|
|
var \
|
|
callExpression = SyntaxNode.new()
|
|
callExpression.Type = SyntaxNodeType.CallExpression
|
|
callExpression.Value = \
|
|
[
|
|
callee,
|
|
parse_Arguments()
|
|
]
|
|
|
|
if NextToken.Type == TokenType.ExpressionPStart :
|
|
callExpression = parse_CallExpression(callExpression)
|
|
|
|
return callExpression
|
|
|
|
# > CallExpression
|
|
# Arugments
|
|
# : ( OptArgumentList )
|
|
# ;
|
|
func parse_Arguments():
|
|
eat(TokenType.ExpressionPStart)
|
|
|
|
var argumentList = null
|
|
|
|
if NextToken.Type != TokenType.ExpressionPEnd :
|
|
argumentList = parse_ArgumentList()
|
|
|
|
eat(TokenType.ExpressionPEnd)
|
|
|
|
return argumentList
|
|
|
|
# > Arguments
|
|
# ArgumentList
|
|
# : AssignmentExpression
|
|
# | ArgumentList , AssignmentExpression
|
|
# ;
|
|
func parse_ArgumentList():
|
|
var argumentList = [ parse_AssignmentExpression() ]
|
|
|
|
while NextToken.Type == TokenType.CommaDelimiter :
|
|
eat(TokenType.CommaDelimiter)
|
|
|
|
argumentList.append( parse_AssignmentExpression() )
|
|
|
|
return argumentList
|
|
|
|
|
|
# > MemberExpression
|
|
# PrimaryExpression
|
|
# : Literal
|
|
# | ParenthesizedExpression
|
|
# ;
|
|
func parse_PrimaryExpression():
|
|
if is_Literal():
|
|
return parse_Literal()
|
|
|
|
match NextToken.Type:
|
|
TokenType.ExpressionPStart:
|
|
return parse_ParenthesizedExpression()
|
|
TokenType.Identifier:
|
|
var identifier = parse_Identifier()
|
|
|
|
if identifier.Type == SyntaxNodeType.Identifier :
|
|
return identifier
|
|
|
|
var assertStrTmplt = "parse_PrimaryExpression: (Identifier) Unexpected symbol: {value}"
|
|
var assertStr = assertStrTmplt.format({"value" : identifier.Type})
|
|
assert(true != true, assertStr)
|
|
|
|
return parse_ResolvedSymbol()
|
|
|
|
# > PrimaryExpression
|
|
# Literal
|
|
# : NumericLiteral
|
|
# | StringLiteral
|
|
# | BooleanLiteral
|
|
# | NullLiteral
|
|
# ;
|
|
func parse_Literal():
|
|
match NextToken.Type :
|
|
TokenType.Number:
|
|
return parse_NumericLiteral()
|
|
TokenType.String:
|
|
return parse_StringLiteral()
|
|
TokenType.Bool_true:
|
|
return parse_BooleanLiteral(TokenType.Bool_true)
|
|
TokenType.Bool_false:
|
|
return parse_BooleanLiteral(TokenType.Bool_false)
|
|
TokenType.NullValue:
|
|
return parse_NullLiteral()
|
|
|
|
assert(false, "parse_Literal: Was not able to detect valid literal type from NextToken")
|
|
|
|
# > PrimaryExpression
|
|
# ParenthesizedExpression
|
|
# : ( Expression )
|
|
# ;
|
|
func parse_ParenthesizedExpression():
|
|
eat(TokenType.ExpressionPStart)
|
|
|
|
var expression = parse_Expression()
|
|
|
|
eat(TokenType.ExpressionPEnd)
|
|
|
|
return expression
|
|
|
|
# > Literal
|
|
# NumericLiteral
|
|
# : Number
|
|
# ;
|
|
func parse_NumericLiteral():
|
|
var Token = eat(TokenType.Number)
|
|
var \
|
|
node = SyntaxNode.new()
|
|
node.Type = SyntaxNodeType.NumericLiteral
|
|
node.Value = int( Token.Value )
|
|
|
|
return node
|
|
|
|
# > Literal
|
|
# StringLiteral
|
|
# : String
|
|
# ;
|
|
func parse_StringLiteral():
|
|
var Token = eat(TokenType.String)
|
|
var \
|
|
node = SyntaxNode.new()
|
|
node.Type = SyntaxNodeType.StringLiteral
|
|
node.Value = Token.Value.substr( 1, Token.Value.length() - 2 )
|
|
|
|
return node
|
|
|
|
|
|
# > Literal
|
|
# BooleanLiteral
|
|
# : true
|
|
# | false
|
|
# ;
|
|
func parse_BooleanLiteral(token):
|
|
eat(token)
|
|
var value
|
|
if (TokenType.Bool_true == token) :
|
|
value = true
|
|
elif (TokenType.Bool_false == token) :
|
|
value = false
|
|
|
|
var \
|
|
node = SyntaxNode.new()
|
|
node.Type = SyntaxNodeType.BooleanLiteral
|
|
node.Value = value
|
|
|
|
return node
|
|
|
|
# > Literal
|
|
# NullLiteral
|
|
# : null
|
|
# ;
|
|
func parse_NullLiteral():
|
|
eat(TokenType.NullValue)
|
|
|
|
var \
|
|
node = SyntaxNode.new()
|
|
node.Type = SyntaxNodeType.NullLiteral
|
|
node.Value = null
|
|
|
|
return node
|
|
|
|
var GParser = Parser.new()
|
|
|
|
|
|
|
|
onready var TextOut = GScene.get_node("TextOutput")
|
|
|
|
func tout(text):
|
|
TextOut.insert_text_at_cursor(text)
|
|
|
|
const Tests = \
|
|
{
|
|
MultiStatement = \
|
|
{
|
|
Name = "Multi-Statement",
|
|
File = "1.Multi-Statement.uf"
|
|
},
|
|
BlockStatement = \
|
|
{
|
|
Name = "Block Statement",
|
|
File = "2.BlockStatement.uf"
|
|
},
|
|
BinaryExpression = \
|
|
{
|
|
Name = "Binary Expression",
|
|
File = "3.BinaryExpression.uf"
|
|
},
|
|
Assignment = \
|
|
{
|
|
Name = "Assignment",
|
|
File = "4.Assignment.uf"
|
|
},
|
|
VaraibleDeclaration = \
|
|
{
|
|
Name = "Variable Declaration",
|
|
File = "5.VariableDeclaration.uf"
|
|
},
|
|
Conditionals = \
|
|
{
|
|
Name = "Conditionals",
|
|
File = "6.Conditionals.uf"
|
|
},
|
|
Relations = \
|
|
{
|
|
Name = "Relations",
|
|
File = "7.Relations.uf"
|
|
},
|
|
Equality = \
|
|
{
|
|
Name = "Equality",
|
|
File = "8.Equality.uf"
|
|
},
|
|
Logical = \
|
|
{
|
|
Name = "Logical",
|
|
File = "9.Logical.uf"
|
|
},
|
|
Unary = \
|
|
{
|
|
Name = "Unary",
|
|
File = "10.Unary.uf"
|
|
},
|
|
Iteration = \
|
|
{
|
|
Name = "Iteration",
|
|
File = "11.Iteration.uf"
|
|
},
|
|
Functions = \
|
|
{
|
|
Name = "Functions",
|
|
File = "12.Functions.uf"
|
|
},
|
|
MemberExpressions = \
|
|
{
|
|
Name = "Member Expressions",
|
|
File = "13.MemberExpressions.uf"
|
|
}
|
|
}
|
|
|
|
func test(entry):
|
|
var introMessage = "Testing: {Name}\n"
|
|
var introMessageFormatted = introMessage.format({"Name" : entry.Name})
|
|
tout(introMessageFormatted)
|
|
|
|
var path
|
|
if Engine.editor_hint :
|
|
path = "res://../Tests/{TestName}"
|
|
else :
|
|
path = "res://../Builds/Tests/{TestName}"
|
|
var pathFormatted = path.format({"TestName" : entry.File})
|
|
|
|
var \
|
|
file = File.new()
|
|
file.open(pathFormatted, File.READ)
|
|
|
|
var programDescription = file.get_as_text()
|
|
file.close()
|
|
|
|
GTokenizer.init(programDescription)
|
|
var ast = GParser.parse(GTokenizer)
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|
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var json = JSON.print(ast.to_Dictionary(), '\t')
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|
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tout(json + "\n")
|
|
tout("Passed!\n")
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|
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# Main Entry point.
|
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func _ready():
|
|
for Key in Tests :
|
|
test(Tests[Key])
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