211 lines
5.1 KiB
Ruby
211 lines
5.1 KiB
Ruby
module Vool
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class Compiler < AST::Processor
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def self.compile(input)
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ast = Parser::Ruby22.parse( input )
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self.new.process(ast)
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end
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# default to error, so non implemented stuff shows early
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def handler_missing(node)
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raise "Not implemented #{node.type} #{node}"
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end
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def on_class( statement )
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name , sup , body = *statement
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ClassStatement.new( get_name(name) , get_name(sup) , process_all(body) )
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end
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def on_def( statement )
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name , args , body = *statement
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arg_array = process_all( args )
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MethodStatement.new( name , arg_array , body )
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end
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def on_arg( arg )
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arg.first
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end
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#basic Values
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def on_self exp
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SelfStatement.new
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end
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def on_nil expression
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NilStatement.new
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end
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def on_int expression
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IntegerStatement.new(expression.children.first)
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end
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def on_float expression
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FloatStatement.new(expression.children.first)
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end
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def on_true expression
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TrueStatement.new
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end
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def on_false expression
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FalseStatement.new
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end
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def on_str expression
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StringStatement.new(expression.children.first)
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end
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alias :on_string :on_str
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def on_dstr expression
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raise "Not implemented dynamic strings (with interpolation)"
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end
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alias :on_xstr :on_dstr
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def on_sym expression
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SymbolStatement.new(expression.children.first)
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end
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alias :on_string :on_str
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def on_dsym
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raise "Not implemented dynamix symbols (with interpolation)"
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end
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def on_kwbegin statement
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ScopeStatement.new process_all( statement.children )
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end
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alias :on_begin :on_kwbegin
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# Array + Hashes
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def on_array expression
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ArrayStatement.new expression.children.collect{ |elem| process(elem) }
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end
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def on_hash expression
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hash = HashStatement.new
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expression.children.each do |elem|
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raise "Hash error, hash contains non pair: #{elem.type}" if elem.type != :pair
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hash.add( process(elem.children[0]) , process(elem.children[1]) )
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end
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hash
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end
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#Variables
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def on_lvar expression
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LocalVariable.new(expression.children.first)
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end
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def on_ivar expression
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InstanceVariable.new(instance_name(expression.children.first))
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end
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def on_cvar expression
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ClassVariable.new(expression.children.first.to_s[2 .. -1].to_sym)
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end
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def on_const expression
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scope = expression.children.first
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if scope
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raise "Only unscoped Names implemented #{scope}" unless scope.type == :cbase
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end
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ModuleName.new(expression.children[1])
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end
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# Assignements
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def on_lvasgn expression
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name = expression.children[0]
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value = process(expression.children[1])
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LocalAssignment.new(name,value)
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end
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def on_ivasgn expression
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name = expression.children[0]
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value = process(expression.children[1])
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InstanceAssignment.new(instance_name(name),value)
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end
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def on_return statement
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return_value = process(statement.children.first)
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ReturnStatement.new( return_value )
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end
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def on_while statement
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condition , statements = *statement
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w = WhileStatement.new( process(condition) )
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simplify_condition(w)
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w.statements = process(statements)
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w
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end
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def on_if statement
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condition , if_true , if_false = *statement
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w = IfStatement.new( process(condition) )
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simplify_condition(w)
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w.if_true = process(if_true)
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w.if_false = process(if_false)
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w
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end
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def on_send statement
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kids = statement.children.dup
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receiver = kids.shift
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name = kids.shift
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arguments = kids
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w = SendStatement.new( name )
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w.receiver = process(receiver) || SelfStatement.new
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w.arguments = process_all(arguments)
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w
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end
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def on_and expression
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name = expression.type
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left = process(expression.children[0])
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right = process( expression.children[1] )
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LogicalStatement.new( name , left , right)
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end
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alias :on_or :on_and
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# this is a call to super without args (z = zero arity)
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def on_zsuper exp
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w = SendStatement.new( nil )
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w.receiver = SuperStatement.new
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w
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end
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# this is a call to super with args and
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# same name as current method, which is set later
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def on_super( statement )
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w = SendStatement.new( nil )
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w.receiver = SuperStatement.new
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w.arguments = process_all(statement.children)
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w
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end
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def on_assignment statement
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name , value = *statement
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w = Assignment.new()
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w.name = process name
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w.value = process(value)
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w
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end
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private
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def simplify_condition( cond )
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return unless cond.condition.is_a?(ScopeStatement)
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cond.condition = cond.condition.first if cond.condition.single?
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end
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def instance_name sym
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sym.to_s[1 .. -1].to_sym
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end
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def get_name( statement )
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return nil unless statement
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raise "Not const #{statement}" unless statement.type == :const
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name = statement.children[1]
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raise "Not symbol #{name}" unless name.is_a? Symbol
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name
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end
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end
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end
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