elna/lib/Language/Elna/Glue.hs

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module Language.Elna.Glue
( glue
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) where
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import Control.Monad.Trans.State (State, gets, modify', runState)
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import Data.Bifunctor (Bifunctor(..))
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import Data.Foldable (Foldable(..))
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import Data.HashMap.Strict (HashMap)
import qualified Data.HashMap.Strict as HashMap
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import Data.Maybe (catMaybes)
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import Data.Vector (Vector)
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import qualified Data.Text.Lazy.Builder.Int as Text.Builder
import qualified Data.Text.Lazy.Builder as Text.Builder
import qualified Data.Text.Lazy as Text.Lazy
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import qualified Data.Vector as Vector
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import Data.Word (Word32)
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import qualified Language.Elna.Frontend.AST as AST
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import Language.Elna.Backend.Intermediate
( Label(..)
, Operand(..)
, Quadruple(..)
, Variable(..)
)
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import Language.Elna.Frontend.SymbolTable (SymbolTable)
import GHC.Records (HasField(..))
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data Paste = Paste
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{ temporaryCounter :: Word32
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, labelCounter :: Word32
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}
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newtype Glue a = Glue
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{ runGlue :: State Paste a }
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instance Functor Glue
where
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fmap f (Glue x) = Glue $ f <$> x
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instance Applicative Glue
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where
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pure = Glue . pure
(Glue f) <*> (Glue x) = Glue $ f <*> x
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instance Monad Glue
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where
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(Glue x) >>= f = Glue $ x >>= (runGlue . f)
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glue :: SymbolTable -> AST.Program -> HashMap AST.Identifier (Vector (Quadruple Variable))
glue globalTable
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= fst
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. flip runState Paste{ temporaryCounter = 0, labelCounter = 0 }
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. runGlue
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. program globalTable
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program
:: SymbolTable
-> AST.Program
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-> Glue (HashMap AST.Identifier (Vector (Quadruple Variable)))
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program globalTable (AST.Program declarations) = HashMap.fromList . catMaybes
<$> traverse (declaration globalTable) declarations
declaration
:: SymbolTable
-> AST.Declaration
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-> Glue (Maybe (AST.Identifier, Vector (Quadruple Variable)))
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declaration globalTable (AST.ProcedureDeclaration procedureName _ _ statements)
= Just
. (procedureName,)
. Vector.cons StartQuadruple
. flip Vector.snoc StopQuadruple
. fold
<$> traverse (statement globalTable) statements
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declaration _ (AST.TypeDefinition _ _) = pure Nothing
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statement :: SymbolTable -> AST.Statement -> Glue (Vector (Quadruple Variable))
statement _ AST.EmptyStatement = pure mempty
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statement localTable (AST.CallStatement (AST.Identifier callName) arguments) = do
visitedArguments <- traverse (expression localTable) arguments
let (parameterStatements, argumentStatements)
= bimap (Vector.fromList . fmap ParameterQuadruple) Vector.concat
$ unzip visitedArguments
in pure
$ Vector.snoc (argumentStatements <> parameterStatements)
$ CallQuadruple callName
$ fromIntegral
$ Vector.length argumentStatements
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statement localTable (AST.CompoundStatement statements) =
fold <$> traverse (statement localTable) statements
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statement localTable (AST.IfStatement ifCondition ifStatement elseStatement) = do
(conditionStatements, jumpConstructor) <- condition localTable ifCondition
ifLabel <- createLabel
endLabel <- createLabel
ifStatements <- statement localTable ifStatement
possibleElseStatements <- traverse (statement localTable) elseStatement
pure $ conditionStatements <> case possibleElseStatements of
Just elseStatements -> Vector.cons (jumpConstructor ifLabel) elseStatements
<> Vector.fromList [GoToQuadruple endLabel, LabelQuadruple ifLabel]
<> Vector.snoc ifStatements (LabelQuadruple endLabel)
Nothing -> Vector.fromList [jumpConstructor ifLabel, GoToQuadruple endLabel, LabelQuadruple ifLabel]
<> Vector.snoc ifStatements (LabelQuadruple endLabel)
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{- statement localTable (AST.AssignmentStatement variableAccess' assignee) = do
(rhsOperand, rhsStatements) <- expression localTable assignee
let variableType' = variableType variableAccess' localTable
accessResult <- variableAccess localTable variableAccess' Nothing variableType' mempty
pure $ rhsStatements <> case accessResult of
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(AST.Identifier identifier, Just accumulatedIndex, accumulatedStatements) ->
Vector.snoc accumulatedStatements
$ ArrayAssignQuadruple rhsOperand accumulatedIndex
$ Variable identifier
(AST.Identifier identifier, Nothing, accumulatedStatements) ->
Vector.snoc accumulatedStatements
$ AssignQuadruple rhsOperand
$ Variable identifier
statement localTable (AST.WhileStatement whileCondition whileStatement) = do
(conditionStatements, jumpConstructor) <- condition localTable whileCondition
startLabel <- createLabel
endLabel <- createLabel
conditionLabel <- createLabel
whileStatements <- statement localTable whileStatement
pure $ Vector.fromList [LabelQuadruple conditionLabel]
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<> conditionStatements
<> Vector.fromList [jumpConstructor startLabel, GoToQuadruple endLabel, LabelQuadruple startLabel]
<> whileStatements
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<> Vector.fromList [GoToQuadruple conditionLabel, LabelQuadruple endLabel] -}
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createTemporary :: Glue Variable
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createTemporary = do
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currentCounter <- Glue $ gets $ getField @"temporaryCounter"
Glue $ modify' modifier
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pure $ TempVariable currentCounter
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where
modifier generator = generator
{ temporaryCounter = getField @"temporaryCounter" generator + 1
}
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createLabel :: Glue Label
createLabel = do
currentCounter <- Glue $ gets $ getField @"labelCounter"
Glue $ modify' modifier
pure $ Label
$ Text.Lazy.toStrict
$ Text.Builder.toLazyText
$ ".L" <> Text.Builder.decimal currentCounter
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where
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modifier generator = generator
{ labelCounter = getField @"labelCounter" generator + 1
}
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condition
:: SymbolTable
-> AST.Condition
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-> Glue (Vector (Quadruple Variable), Label -> Quadruple Variable)
condition localTable (AST.EqualCondition lhs rhs) = do
(lhsOperand, lhsStatements) <- expression localTable lhs
(rhsOperand, rhsStatements) <- expression localTable rhs
pure
( lhsStatements <> rhsStatements
, EqualQuadruple lhsOperand rhsOperand
)
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condition localTable (AST.NonEqualCondition lhs rhs) = do
(lhsOperand, lhsStatements) <- expression localTable lhs
(rhsOperand, rhsStatements) <- expression localTable rhs
pure
( lhsStatements <> rhsStatements
, NonEqualQuadruple lhsOperand rhsOperand
)
condition localTable (AST.LessCondition lhs rhs) = do
(lhsOperand, lhsStatements) <- expression localTable lhs
(rhsOperand, rhsStatements) <- expression localTable rhs
pure (lhsStatements <> rhsStatements, LessQuadruple lhsOperand rhsOperand)
condition localTable (AST.GreaterCondition lhs rhs) = do
(lhsOperand, lhsStatements) <- expression localTable lhs
(rhsOperand, rhsStatements) <- expression localTable rhs
pure
( lhsStatements <> rhsStatements
, GreaterQuadruple lhsOperand rhsOperand
)
condition localTable (AST.LessOrEqualCondition lhs rhs) = do
(lhsOperand, lhsStatements) <- expression localTable lhs
(rhsOperand, rhsStatements) <- expression localTable rhs
pure
( lhsStatements <> rhsStatements
, LessOrEqualQuadruple lhsOperand rhsOperand
)
condition localTable (AST.GreaterOrEqualCondition lhs rhs) = do
(lhsOperand, lhsStatements) <- expression localTable lhs
(rhsOperand, rhsStatements) <- expression localTable rhs
pure
( lhsStatements <> rhsStatements
, GreaterOrEqualQuadruple lhsOperand rhsOperand
)
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{-
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import Language.Elna.Types (Type(..))
import qualified Language.Elna.SymbolTable as SymbolTable
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variableAccess
:: SymbolTable
-> AST.VariableAccess
-> Maybe Operand
-> Type
-> Vector Quadruple
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-> Glue (AST.Identifier, Maybe Operand, Vector Quadruple)
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variableAccess _ (AST.VariableAccess identifier) accumulatedIndex _ accumulatedStatements =
pure (identifier, accumulatedIndex, accumulatedStatements)
variableAccess localTable (AST.ArrayAccess access1 index1) Nothing (ArrayType _ baseType) _ = do
(indexPlace, statements) <- expression localTable index1
variableAccess localTable access1 (Just indexPlace) baseType statements
variableAccess localTable (AST.ArrayAccess arrayAccess' arrayIndex) (Just baseIndex) (ArrayType arraySize baseType) statements = do
(indexPlace, statements') <- expression localTable arrayIndex
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resultVariable <- createTemporary
let resultOperand = VariableOperand resultVariable
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indexCalculation = Vector.fromList
[ ProductQuadruple (IntOperand $ fromIntegral arraySize) baseIndex resultVariable
, AddQuadruple indexPlace resultOperand resultVariable
]
in variableAccess localTable arrayAccess' (Just resultOperand) baseType
$ statements <> indexCalculation <> statements'
variableAccess _ _ _ _ _ = error "Array access operator doesn't match the type."
variableType :: AST.VariableAccess -> SymbolTable -> Type
variableType (AST.VariableAccess identifier) symbolTable
| Just (TypeInfo type') <- SymbolTable.lookup identifier symbolTable = type'
| otherwise = error "Undefined type."
variableType (AST.ArrayAccess arrayAccess' _) symbolTable =
variableType arrayAccess' symbolTable
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-}
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expression :: SymbolTable -> AST.Expression -> Glue (Operand Variable, Vector (Quadruple Variable))
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expression localTable = \case
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(AST.LiteralExpression literal') -> pure (literal literal', mempty)
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(AST.SumExpression lhs rhs) -> binaryExpression AddQuadruple lhs rhs
(AST.SubtractionExpression lhs rhs) ->
binaryExpression SubtractionQuadruple lhs rhs
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(AST.NegationExpression negation) -> do
(operand, statements) <- expression localTable negation
tempVariable <- createTemporary
let negationQuadruple = NegationQuadruple operand tempVariable
pure
( VariableOperand tempVariable
, Vector.snoc statements negationQuadruple
)
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(AST.ProductExpression lhs rhs) ->
binaryExpression ProductQuadruple lhs rhs
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(AST.DivisionExpression lhs rhs) ->
binaryExpression DivisionQuadruple lhs rhs
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{- (AST.VariableExpression variableExpression) -> do
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let variableType' = variableType variableExpression localTable
variableAccess' <- variableAccess localTable variableExpression Nothing variableType' mempty
case variableAccess' of
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(AST.Identifier identifier, Nothing, statements) ->
pure (VariableOperand (Variable identifier), statements)
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(AST.Identifier identifier, Just operand, statements) -> do
arrayAddress <- createTemporary
let arrayStatement = ArrayQuadruple (Variable identifier) operand arrayAddress
pure
( VariableOperand arrayAddress
, Vector.snoc statements arrayStatement
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) -}
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where
binaryExpression f lhs rhs = do
(lhsOperand, lhsStatements) <- expression localTable lhs
(rhsOperand, rhsStatements) <- expression localTable rhs
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tempVariable <- createTemporary
let newQuadruple = f lhsOperand rhsOperand tempVariable
pure
( VariableOperand tempVariable
, Vector.snoc (lhsStatements <> rhsStatements) newQuadruple
)
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literal :: AST.Literal -> Operand Variable
literal (AST.DecimalLiteral integer) = IntOperand integer
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literal (AST.HexadecimalLiteral integer) = IntOperand integer
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literal (AST.CharacterLiteral character) = IntOperand $ fromIntegral character