ghc-8.10.4: The GHC API
Safe HaskellNone
LanguageHaskell2010

StgSyn

Synopsis

Documentation

data StgArg Source #

Constructors

StgVarArg Id 
StgLitArg Literal 

Instances

Instances details
Outputable StgArg # 
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Defined in StgSyn

data GenStgTopBinding pass Source #

A top-level binding.

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OutputablePass pass => Outputable (GenStgTopBinding pass) # 
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data GenStgBinding pass Source #

Constructors

StgNonRec (BinderP pass) (GenStgRhs pass) 
StgRec [(BinderP pass, GenStgRhs pass)] 

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OutputablePass pass => Outputable (GenStgBinding pass) # 
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data GenStgExpr pass Source #

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OutputablePass pass => Outputable (GenStgExpr pass) # 
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Defined in StgSyn

Methods

ppr :: GenStgExpr pass -> SDoc Source #

pprPrec :: Rational -> GenStgExpr pass -> SDoc Source #

data GenStgRhs pass Source #

Constructors

StgRhsClosure 

Fields

StgRhsCon CostCentreStack DataCon [StgArg] 

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OutputablePass pass => Outputable (GenStgRhs pass) # 
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Defined in StgSyn

Methods

ppr :: GenStgRhs pass -> SDoc Source #

pprPrec :: Rational -> GenStgRhs pass -> SDoc Source #

type GenStgAlt pass = (AltCon, [BinderP pass], GenStgExpr pass) Source #

data AltType Source #

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Outputable AltType # 
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Defined in StgSyn

data StgPass Source #

Used as a data type index for the stgSyn AST

Constructors

Vanilla 
LiftLams 
CodeGen 

type family BinderP (pass :: StgPass) Source #

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type BinderP 'Vanilla # 
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type BinderP 'LiftLams # 
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Defined in StgLiftLams.Analysis

type BinderP 'CodeGen # 
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type family XRhsClosure (pass :: StgPass) Source #

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type XRhsClosure 'Vanilla # 
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type XRhsClosure 'LiftLams # 
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Defined in StgLiftLams.Analysis

type XRhsClosure 'CodeGen #

Code gen needs to track non-global free vars

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type family XLet (pass :: StgPass) Source #

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type XLet 'Vanilla # 
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type XLet 'LiftLams # 
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Defined in StgLiftLams.Analysis

type XLet 'CodeGen # 
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type family XLetNoEscape (pass :: StgPass) Source #

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type XLetNoEscape 'Vanilla # 
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type XLetNoEscape 'LiftLams # 
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Defined in StgLiftLams.Analysis

type XLetNoEscape 'CodeGen # 
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Defined in StgSyn

data NoExtFieldSilent Source #

Like NoExtField, but with an Outputable instance that returns empty.

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Eq NoExtFieldSilent # 
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Defined in StgSyn

Data NoExtFieldSilent # 
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Defined in StgSyn

Methods

gfoldl :: (forall d b. Data d => c (d -> b) -> d -> c b) -> (forall g. g -> c g) -> NoExtFieldSilent -> c NoExtFieldSilent Source #

gunfold :: (forall b r. Data b => c (b -> r) -> c r) -> (forall r. r -> c r) -> Constr -> c NoExtFieldSilent Source #

toConstr :: NoExtFieldSilent -> Constr Source #

dataTypeOf :: NoExtFieldSilent -> DataType Source #

dataCast1 :: Typeable t => (forall d. Data d => c (t d)) -> Maybe (c NoExtFieldSilent) Source #

dataCast2 :: Typeable t => (forall d e. (Data d, Data e) => c (t d e)) -> Maybe (c NoExtFieldSilent) Source #

gmapT :: (forall b. Data b => b -> b) -> NoExtFieldSilent -> NoExtFieldSilent Source #

gmapQl :: (r -> r' -> r) -> r -> (forall d. Data d => d -> r') -> NoExtFieldSilent -> r Source #

gmapQr :: forall r r'. (r' -> r -> r) -> r -> (forall d. Data d => d -> r') -> NoExtFieldSilent -> r Source #

gmapQ :: (forall d. Data d => d -> u) -> NoExtFieldSilent -> [u] Source #

gmapQi :: Int -> (forall d. Data d => d -> u) -> NoExtFieldSilent -> u Source #

gmapM :: Monad m => (forall d. Data d => d -> m d) -> NoExtFieldSilent -> m NoExtFieldSilent Source #

gmapMp :: MonadPlus m => (forall d. Data d => d -> m d) -> NoExtFieldSilent -> m NoExtFieldSilent Source #

gmapMo :: MonadPlus m => (forall d. Data d => d -> m d) -> NoExtFieldSilent -> m NoExtFieldSilent Source #

Ord NoExtFieldSilent # 
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Outputable NoExtFieldSilent # 
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noExtFieldSilent :: NoExtFieldSilent Source #

Used when constructing a term with an unused extension point that should not appear in pretty-printed output at all.

data UpdateFlag Source #

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Outputable UpdateFlag # 
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Defined in StgSyn

isDllConApp :: DynFlags -> Module -> DataCon -> [StgArg] -> Bool Source #

Does this constructor application refer to anything in a different *Windows* DLL? If so, we can't allocate it statically

stgArgType :: StgArg -> Type Source #

Type of an StgArg

Very half baked because we have lost the type arguments.

stripStgTicksTop :: (Tickish Id -> Bool) -> GenStgExpr p -> ([Tickish Id], GenStgExpr p) Source #

Strip ticks of a given type from an STG expression.

stripStgTicksTopE :: (Tickish Id -> Bool) -> GenStgExpr p -> GenStgExpr p Source #

Strip ticks of a given type from an STG expression returning only the expression.

stgCaseBndrInScope Source #

Arguments

:: AltType 
-> Bool

unarised?

-> Bool 

Given an alt type and whether the program is unarised, return whether the case binder is in scope.

Case binders of unboxed tuple or unboxed sum type always dead after the unariser has run. See Note [Post-unarisation invariants].