Implement the while loop
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3.3.5
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3.3.6
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2
TODO
2
TODO
@ -14,8 +14,6 @@
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- Each temporary variable gets a tn register where n is the variable index. If
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there more variables the allocation will fail with out of bounds runtime
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error. Implement spill over.
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- The allocator puts temporary and local variables into the same registers,
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causing conflicts.
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# Language
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@ -5,6 +5,7 @@ module Language.Elna.Backend.Allocator
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) where
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import Data.HashMap.Strict (HashMap)
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import Data.Int (Int32)
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import Data.Word (Word32)
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import Data.Vector (Vector)
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import Language.Elna.Backend.Intermediate
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@ -17,11 +18,20 @@ import Language.Elna.Location (Identifier(..))
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import Control.Monad.Trans.Reader (ReaderT, asks, runReaderT)
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import Control.Monad.Trans.State (State, runState, modify')
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import GHC.Records (HasField(..))
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import Control.Monad.Trans.Class (MonadTrans(lift))
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import Control.Monad.Trans.Class (MonadTrans(..))
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import Control.Monad.Trans.Except (ExceptT(..), runExceptT, throwE)
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import Data.List ((!?))
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data Store r
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= RegisterStore r
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| StackStore Word32 r
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| StackStore Int32 r
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data AllocationError = AllocationError
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deriving Eq
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instance Show AllocationError
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where
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show = const "Ran out of registers during register allocation"
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newtype MachineConfiguration r = MachineConfiguration
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{ temporaryRegisters :: [r]
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@ -32,7 +42,7 @@ newtype MachineState = MachineState
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} deriving (Eq, Show)
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newtype Allocator r a = Allocator
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{ runAllocator :: ReaderT (MachineConfiguration r) (State MachineState) a
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{ runAllocator :: ExceptT AllocationError (ReaderT (MachineConfiguration r) (State MachineState)) a
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}
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instance forall r. Functor (Allocator r)
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@ -52,20 +62,22 @@ allocate
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:: forall r
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. MachineConfiguration r
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-> HashMap Identifier (Vector (Quadruple Variable))
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-> HashMap Identifier (ProcedureQuadruples (Store r))
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allocate machineConfiguration = fmap function
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-> Either AllocationError (HashMap Identifier (ProcedureQuadruples (Store r)))
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allocate machineConfiguration = traverse function
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where
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function :: Vector (Quadruple Variable) -> ProcedureQuadruples (Store r)
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run = flip runState (MachineState{ stackSize = 0 })
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. flip runReaderT machineConfiguration
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. runExceptT
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. runAllocator
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. mapM quadruple
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function :: Vector (Quadruple Variable) -> Either AllocationError (ProcedureQuadruples (Store r))
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function quadruples' =
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let (result, lastState)
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= flip runState (MachineState{ stackSize = 0 })
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$ flip runReaderT machineConfiguration
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$ runAllocator
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$ mapM quadruple quadruples'
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in ProcedureQuadruples
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{ quadruples = result
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, stackSize = getField @"stackSize" lastState
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}
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let (result, lastState) = run quadruples'
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in makeResult lastState <$> result
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makeResult MachineState{ stackSize } result = ProcedureQuadruples
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{ quadruples = result
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, stackSize = stackSize
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}
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quadruple :: Quadruple Variable -> Allocator r (Quadruple (Store r))
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quadruple = \case
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@ -131,11 +143,15 @@ operand (VariableOperand variableOperand) =
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storeVariable :: Variable -> Allocator r (Store r)
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storeVariable (TempVariable index) = do
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temporaryRegisters' <- Allocator $ asks $ getField @"temporaryRegisters"
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pure $ RegisterStore
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$ temporaryRegisters' !! fromIntegral index
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temporaryRegisters' <- Allocator $ lift $ asks $ getField @"temporaryRegisters"
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maybe (Allocator $ throwE AllocationError) (pure . RegisterStore)
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$ temporaryRegisters' !? fromIntegral index
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storeVariable (LocalVariable index) = do
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temporaryRegisters' <- Allocator $ asks $ getField @"temporaryRegisters"
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Allocator $ lift $ modify' $ MachineState . (+ 4) . getField @"stackSize"
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pure $ StackStore (index * 4)
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$ temporaryRegisters' !! pred (length temporaryRegisters' - fromIntegral index)
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temporaryRegisters' <- Allocator $ lift $ asks $ getField @"temporaryRegisters"
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Allocator $ lift $ lift $ modify' $ MachineState . (+ 4) . getField @"stackSize"
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maybe (Allocator $ throwE AllocationError) (pure . StackStore (fromIntegral (succ index) * (-4)))
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$ temporaryRegisters' !? pred (length temporaryRegisters' - fromIntegral index)
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storeVariable (ParameterVariable index) = do
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temporaryRegisters' <- Allocator $ lift $ asks $ getField @"temporaryRegisters"
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maybe (Allocator $ throwE AllocationError) (pure . StackStore (fromIntegral index * 4))
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$ temporaryRegisters' !? fromIntegral index
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@ -19,13 +19,14 @@ instance Show Label
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where
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show (Label label) = '.' : Text.unpack label
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data Variable = TempVariable Word32 | LocalVariable Word32
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data Variable = TempVariable Word32 | LocalVariable Word32 | ParameterVariable Word32
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deriving Eq
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instance Show Variable
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where
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show (LocalVariable variable) = '@' : show variable
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show (TempVariable variable) = '$' : show variable
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show (ParameterVariable variable) = '%' : show variable
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data Operand v
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= IntOperand Int32
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@ -71,7 +71,7 @@ data Statement
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= EmptyStatement
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| IfStatement Condition Statement (Maybe Statement)
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| AssignmentStatement VariableAccess Expression
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-- | WhileStatement Condition Statement
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| WhileStatement Condition Statement
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| CompoundStatement [Statement]
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| CallStatement Identifier [Expression]
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deriving Eq
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@ -86,8 +86,8 @@ instance Show Statement
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]
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show (AssignmentStatement lhs rhs) =
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concat [show lhs, " := ", show rhs, ";"]
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{-show (WhileStatement expression statement) =
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concat ["while (", show expression, ") ", show statement, ";"]-}
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show (WhileStatement expression statement) =
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concat ["while (", show expression, ") ", show statement, ";"]
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show (CompoundStatement statements) =
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concat ["{\n", unlines (show <$> statements), " }"]
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show (CallStatement name parameters) = show name <> "("
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@ -175,9 +175,9 @@ statement globalTable (AST.IfStatement ifCondition ifStatement elseStatement)
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statement globalTable (AST.AssignmentStatement lvalue rvalue)
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= variableAccess globalTable lvalue
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>> expression globalTable rvalue
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--statement globalTable (AST.WhileStatement whileCondition loop)
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-- = condition globalTable whileCondition
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-- >> statement globalTable loop
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statement globalTable (AST.WhileStatement whileCondition loop)
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= condition globalTable whileCondition
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>> statement globalTable loop
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condition :: SymbolTable -> AST.Condition -> NameAnalysis ()
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condition globalTable (AST.EqualCondition lhs rhs)
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@ -188,7 +188,7 @@ statementP
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<|> ifElseP
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<|> CompoundStatement <$> blockP (many statementP)
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<|> try assignmentP
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-- <|> try whileP
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<|> try whileP
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<|> callP
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<?> "statement"
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where
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@ -200,9 +200,9 @@ statementP
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<$> (symbol "if" *> parensP conditionP)
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<*> statementP
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<*> optional (symbol "else" *> statementP)
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{-whileP = WhileStatement
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whileP = WhileStatement
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<$> (symbol "while" *> parensP conditionP)
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<*> statementP -}
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<*> statementP
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assignmentP = AssignmentStatement
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<$> variableAccessP
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<* symbol ":="
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@ -101,11 +101,11 @@ statement globalTable = \case
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$ TypeAnalysis $ lift $ throwE $ InvalidConditionTypeError lhsType
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unless (rhsType == intType)
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$ TypeAnalysis $ lift $ throwE $ InvalidConditionTypeError rhsType
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{- AST.WhileStatement whileCondition whileStatement -> do
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AST.WhileStatement whileCondition whileStatement -> do
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conditionType <- condition globalTable whileCondition
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unless (conditionType == booleanType)
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$ TypeAnalysis $ lift $ throwE $ InvalidConditionTypeError conditionType
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statement globalTable whileStatement -}
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statement globalTable whileStatement
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AST.IfStatement ifCondition ifStatement elseStatement -> do
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conditionType <- condition globalTable ifCondition
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unless (conditionType == booleanType)
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@ -71,14 +71,16 @@ declaration
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:: SymbolTable
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-> AST.Declaration
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-> Glue (Maybe (AST.Identifier, Vector (Quadruple Variable)))
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declaration globalTable (AST.ProcedureDeclaration procedureName _ variableDeclarations statements)
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= traverse_ registerVariable variableDeclarations
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declaration globalTable (AST.ProcedureDeclaration procedureName parameters variableDeclarations statements)
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= traverseWithIndex registerVariable variableDeclarations
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>> traverseWithIndex registerParameter parameters
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>> nameQuadruplesTuple <$> traverse (statement globalTable) statements
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where
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registerVariable (AST.VariableDeclaration identifier _) = do
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currentCounter <- fmap (fromIntegral . HashMap.size)
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$ Glue $ gets $ getField @"localMap"
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Glue $ modify' $ modifier identifier $ LocalVariable currentCounter
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traverseWithIndex f = traverse_ (uncurry f) . zip [0..]
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registerParameter index (AST.Parameter identifier _ _) =
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Glue $ modify' $ modifier identifier $ ParameterVariable index
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registerVariable index (AST.VariableDeclaration identifier _) =
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Glue $ modify' $ modifier identifier $ LocalVariable index
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modifier identifier currentCounter generator = generator
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{ localMap = HashMap.insert identifier currentCounter
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$ getField @"localMap" generator
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@ -131,7 +133,7 @@ statement localTable (AST.AssignmentStatement variableAccess' assignee) = do
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. AssignQuadruple rhsOperand
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<$> lookupLocal identifier
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pure $ rhsStatements <> lhsStatements
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{- statement localTable (AST.WhileStatement whileCondition whileStatement) = do
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statement localTable (AST.WhileStatement whileCondition whileStatement) = do
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(conditionStatements, jumpConstructor) <- condition localTable whileCondition
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startLabel <- createLabel
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endLabel <- createLabel
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@ -141,7 +143,7 @@ statement localTable (AST.AssignmentStatement variableAccess' assignee) = do
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<> conditionStatements
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<> Vector.fromList [jumpConstructor startLabel, GoToQuadruple endLabel, LabelQuadruple startLabel]
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<> whileStatements
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<> Vector.fromList [GoToQuadruple conditionLabel, LabelQuadruple endLabel] -}
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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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@ -98,7 +98,7 @@ generateRiscV = flip evalState 0
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quadruple :: Word32 -> RiscVQuadruple -> RiscVGenerator (Vector Statement)
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quadruple stackSize StartQuadruple =
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let totalStackSize = stackSize + 4
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let totalStackSize = stackSize + 8
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in pure $ Vector.fromList
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[ Instruction (RiscV.BaseInstruction RiscV.OpImm $ RiscV.I RiscV.SP RiscV.ADDI RiscV.SP (negate totalStackSize))
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, Instruction (RiscV.BaseInstruction RiscV.Store $ RiscV.S 0 RiscV.SW RiscV.SP RiscV.S0)
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@ -106,7 +106,7 @@ quadruple stackSize StartQuadruple =
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, Instruction (RiscV.BaseInstruction RiscV.OpImm $ RiscV.I RiscV.S0 RiscV.ADDI RiscV.SP totalStackSize)
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]
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quadruple stackSize StopQuadruple =
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let totalStackSize = stackSize + 4
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let totalStackSize = stackSize + 8
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in pure $ Vector.fromList
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[ Instruction (RiscV.BaseInstruction RiscV.Load $ RiscV.I RiscV.S0 RiscV.LW RiscV.SP 0)
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, Instruction (RiscV.BaseInstruction RiscV.Load $ RiscV.I RiscV.RA RiscV.LW RiscV.SP 4)
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@ -438,7 +438,7 @@ loadFromStore (RegisterStore register) = (register, mempty)
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loadFromStore (StackStore offset register) =
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let loadInstruction = Instruction
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$ RiscV.BaseInstruction RiscV.Load
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$ RiscV.I register RiscV.LW RiscV.S0 offset
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$ RiscV.I register RiscV.LW RiscV.S0 (fromIntegral offset)
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in (register, Vector.singleton loadInstruction)
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storeToStore :: RiscVStore -> (RiscV.XRegister, Vector Statement)
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@ -446,5 +446,5 @@ storeToStore (RegisterStore register) = (register, mempty)
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storeToStore (StackStore offset register) =
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let storeInstruction = Instruction
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$ RiscV.BaseInstruction RiscV.Store
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$ RiscV.S offset RiscV.SW RiscV.S0 register
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$ RiscV.S (fromIntegral offset) RiscV.SW RiscV.S0 register
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in (register, Vector.singleton storeInstruction)
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@ -25,6 +25,7 @@ import Control.Exception (IOException, catch)
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-- 3 - Parse error.
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-- 4 - Name analysis error.
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-- 5 - Type error.
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-- 6 - Register allocation error.
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main :: IO ()
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main = execParser commandLine >>= withCommandLine
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@ -45,9 +46,9 @@ main = execParser commandLine >>= withCommandLine
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| Just typeError <- typeAnalysis symbolTable program =
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printAndExit 5 typeError
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| otherwise =
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let instructions = generateRiscV
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$ allocate riscVConfiguration
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$ glue symbolTable program
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in elfObject output $ riscv32Elf instructions
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let makeObject = elfObject output . riscv32Elf . generateRiscV
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in either (printAndExit 6) makeObject
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$ allocate riscVConfiguration
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$ glue symbolTable program
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printAndExit :: Show b => forall a. Int -> b -> IO a
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printAndExit failureCode e = print e >> exitWith (ExitFailure failureCode)
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1
tests/expectations/print_after_loop.txt
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1
tests/expectations/print_after_loop.txt
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@ -0,0 +1 @@
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2
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1
tests/expectations/print_in_proc.txt
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1
tests/expectations/print_in_proc.txt
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@ -0,0 +1 @@
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14
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tests/vm/print_after_loop.elna
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9
tests/vm/print_after_loop.elna
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proc main() {
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var x: int;
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x := 0;
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while (x < 2) {
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x := x + 1;
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}
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printi(x);
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}
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7
tests/vm/print_in_proc.elna
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7
tests/vm/print_in_proc.elna
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proc print2(a: int) {
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printi(a);
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}
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proc main() {
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print2(14);
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}
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