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require_relative "error"
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require_relative "expr"
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require_relative "stmt"
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module Lox
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class Parser
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def initialize(tokens)
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@tokens = tokens
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@current = 0
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end
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def parse!
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statements = []
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until eot?
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statements << declaration
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end
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statements
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rescue ParseError
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synchronize!
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end
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private
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def declaration
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return function("function") if match?(:FUN)
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return var_declaration if match?(:VAR)
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statement
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end
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def var_declaration
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name = consume!(:IDENTIFIER, "Expect variable name.")
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initializer = match?(:EQUAL) ? expression : nil
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consume!(:SEMICOLON, "Expect ';' after variable declaration.")
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Stmt::Var.new(name, initializer)
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end
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def while_stmt
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consume!(:LEFT_PAREN, "Expect '(' after 'if'.")
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cond = expression
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consume!(:RIGHT_PAREN, "Expect ')' after 'if'.")
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body = statement
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Stmt::While.new(cond, body)
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end
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def statement
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return for_stmt if match?(:FOR)
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return if_stmt if match?(:IF)
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return print if match?(:PRINT)
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return return_stmt if match?(:RETURN)
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return while_stmt if match?(:WHILE)
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return Stmt::Block.new(block) if match?(:LEFT_BRACE)
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expression_stmt
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end
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def for_stmt
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consume!(:LEFT_PAREN, "Expect '(' after 'if'.")
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initializer = if match?(:SEMICOLON)
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nil
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elsif match?(:VAR)
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var_declaration
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else
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expression_stmt
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end
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condition = !check?(:SEMICOLON) ? expression : Expr::Literal(true)
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consume!(:SEMICOLON, "Expect ';' after loop condition.")
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increment = !check?(:RIGHT_PAREN) ? expression : nil
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consume!(:RIGHT_PAREN, "Expect ')' after for clauses.")
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body = statement
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if increment
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body = Stmt::Block.new([
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body,
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Stmt::Expr.new(increment),
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])
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end
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body = Stmt::While.new(condition, body);
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if initializer
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body = Stmt::Block.new([
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initializer,
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body,
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])
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end
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body
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end
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def if_stmt
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consume!(:LEFT_PAREN, "Expect '(' after 'if'.")
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cond = expression
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consume!(:RIGHT_PAREN, "Expect ')' after 'if'.")
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then_stmt = statement
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else_stmt = match?(:ELSE) ? statement : nil
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Stmt::If.new(cond, then_stmt, else_stmt)
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end
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def print
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value = expression
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consume!(:SEMICOLON, "Expect ';' after value.")
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Stmt::Print.new(value)
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end
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def return_stmt
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keyword = prev
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value = check?(:SEMICOLON) ? nil : expression
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consume!(:SEMICOLON, "Expect ';' after return value.")
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Stmt::Return.new(keyword, value)
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end
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def expression_stmt
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value = expression
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consume!(:SEMICOLON, "Expect ';' after value.")
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Stmt::Expr.new(value)
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end
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def function(kind)
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name = consume!(:IDENTIFIER, "Expect #{kind} name.")
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consume!(:LEFT_PAREN, "Expect '(' after #{kind} name.")
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params = []
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unless check?(:RIGHT_PAREN)
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loop do
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raise ParseError.new(peek, "Can't have more than 255 parameters.") if params.size >= 255
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params << consume!(:IDENTIFIER, "Expect parameter name.")
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break unless match?(:COMMA)
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end
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end
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consume!(:RIGHT_PAREN, "Expect ')' after parameters.")
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consume!(:LEFT_BRACE, "Expect '{' before #{kind} body.")
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body = block
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Stmt::Function.new(name, params, body)
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end
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def block
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statements = []
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until check?(:RIGHT_BRACE) || eot?
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statements << declaration
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end
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consume!(:RIGHT_BRACE, "Expect '}' after block.")
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statements
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end
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def assignment
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expr = or_
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if match?(:EQUAL)
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eq = prev
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value = assignment
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raise ParseError.new(eq, "Invalid assignment target.") unless expr.instance_of?(Expr::Variable)
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return Expr::Assign.new(expr.name, value)
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end
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expr
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end
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def or_
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expr = and_
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while match?(:OR)
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op = prev
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right = and_
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expr = Expr::Logical.new(expr, op, right)
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end
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expr
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end
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def and_
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expr = equality
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while match?(:AND)
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op = prev
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right = equality
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expr = Expr::Logical.new(expr, op, right)
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end
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expr
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end
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def expression = assignment
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def equality
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expr = comparison
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while match?(:BANG_EQUAL, :EQUAL_EQUAL)
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op = prev
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right = comparison
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expr = Expr::Binary.new(expr, op, right)
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end
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expr
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end
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def comparison
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expr = term
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while match?(:GREATER, :GREATER_EQUAL, :LESS, :LESS_EQUAL)
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op = prev
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right = term
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expr = Expr::Binary.new(expr, op, right)
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end
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expr
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end
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def term
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expr = factor
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while match?(:MINUS, :PLUS)
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op = prev
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right = factor
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expr = Expr::Binary.new(expr, op, right)
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end
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expr
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end
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def factor
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expr = unary
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while match?(:SLASH, :STAR)
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op = prev
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right = unary
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expr = Expr::Binary.new(expr, op, right)
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end
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expr
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end
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def unary
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return call unless match?(:BANG, :MINUS)
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op = prev
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right = unary
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Expr::Unary.new(op, right)
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end
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def call
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expr = primary
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loop do
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if match?(:LEFT_PAREN)
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expr = finish_call(expr)
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else
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break
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end
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end
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expr
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end
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def finish_call(callee)
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args = []
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if !check?(:RIGHT_PAREN)
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loop do
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raise ParseError.new(peek, "Can't have more than 255 arguments.") if args.size >= 255
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args << expression
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break unless match?(:COMMA)
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end
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end
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paren = consume!(:RIGHT_PAREN, "Expect ')' after arguments.")
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Expr::Call.new(callee, paren, args)
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end
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def primary
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return Expr::Literal.new(false) if match?(:FALSE)
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return Expr::Literal.new(true) if match?(:TRUE)
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return Expr::Literal.new(nil) if match?(:NIL)
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return Expr::Literal.new(prev.literal) if match?(:NUMBER, :STRING)
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return Expr::Variable.new(prev) if match?(:IDENTIFIER)
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if match?(:LEFT_PAREN)
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expr = expression
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consume!(:RIGHT_PAREN, "Expect ')' after expression.")
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return Expr::Grouping.new(expr)
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end
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raise ParseError.new(peek, "Expect expression.")
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end
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private
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def match?(*types)
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return false unless check?(*types)
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advance!
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return true
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end
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def consume!(type, message)
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raise ParseError.new(peek, message) unless check?(type)
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advance!
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end
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def check?(*types)
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return false if eot?
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types.include?(peek.type)
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end
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def advance!
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@current += 1 unless eot?
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prev
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end
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def eot? = peek.type === :EOF
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def peek = @tokens.fetch(@current)
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def prev = @tokens.fetch(@current - 1)
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def synchronize!
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advance!
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until eot?
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return if prev.type == :SEMICOLON
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return if %i[CLASS FUN VAR FOR IF WHILE PRINT RETURN].include?(peek.type)
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advance!
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end
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end
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end
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end
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