ghc-9.6.0.20230128: The GHC API
Copyright(c) The University of Glasgow 2001
LicenseBSD-style (see the file LICENSE)
MaintainerJeffrey Young <jeffrey.young@iohk.io> Luite Stegeman <luite.stegeman@iohk.io> Sylvain Henry <sylvain.henry@iohk.io> Josh Meredith <josh.meredith@iohk.io>
Stabilityexperimental
Safe HaskellSafe-Inferred
LanguageHaskell2010

GHC.StgToJS.Types

Description

Module that holds the Types required for the StgToJS pass

Synopsis

Documentation

type G = StateT GenState IO Source #

A State monad over IO holding the generator state.

data GenState Source #

The JS code generator state

Constructors

GenState 

Fields

data GenGroupState Source #

The JS code generator state relevant for the current binding group

Constructors

GenGroupState 

Fields

data StgToJSConfig Source #

The Configuration record for the StgToJS pass

Constructors

StgToJSConfig 

data ClosureInfo Source #

Information relevenat to code generation for closures.

Constructors

ClosureInfo 

Fields

Instances

Instances details
Generic ClosureInfo Source # 
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Associated Types

type Rep ClosureInfo :: Type -> Type Source #

Show ClosureInfo Source # 
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Binary ClosureInfo Source # 
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Eq ClosureInfo Source # 
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type Rep ClosureInfo Source # 
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data CIRegs Source #

Closure information, ClosureInfo, registers

Constructors

CIRegsUnknown

A value witnessing a state of unknown registers

CIRegs 

Fields

Instances

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Generic CIRegs Source # 
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type Rep CIRegs :: Type -> Type Source #

Show CIRegs Source # 
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NFData CIRegs Source # 
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Methods

rnf :: CIRegs -> () Source #

Binary CIRegs Source # 
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Eq CIRegs Source # 
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(==) :: CIRegs -> CIRegs -> Bool #

(/=) :: CIRegs -> CIRegs -> Bool #

Ord CIRegs Source # 
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type Rep CIRegs Source # 
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type Rep CIRegs = D1 ('MetaData "CIRegs" "GHC.StgToJS.Types" "ghc" 'False) (C1 ('MetaCons "CIRegsUnknown" 'PrefixI 'False) (U1 :: Type -> Type) :+: C1 ('MetaCons "CIRegs" 'PrefixI 'True) (S1 ('MetaSel ('Just "ciRegsSkip") 'NoSourceUnpackedness 'NoSourceStrictness 'DecidedLazy) (Rec0 Int) :*: S1 ('MetaSel ('Just "ciRegsTypes") 'NoSourceUnpackedness 'NoSourceStrictness 'DecidedLazy) (Rec0 [VarType])))

data CILayout Source #

Closure Information, ClosureInfo, layout

Constructors

CILayoutVariable

layout stored in object itself, first position from the start

CILayoutUnknown

fixed size, but content unknown (for example stack apply frame)

Fields

  • layoutSize :: !Int

    closure size in array positions, including entry

CILayoutFixed

whole layout known

Fields

Instances

Instances details
Generic CILayout Source # 
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type Rep CILayout :: Type -> Type Source #

Show CILayout Source # 
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NFData CILayout Source # 
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rnf :: CILayout -> () Source #

Binary CILayout Source # 
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Eq CILayout Source # 
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Ord CILayout Source # 
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type Rep CILayout Source # 
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type Rep CILayout = D1 ('MetaData "CILayout" "GHC.StgToJS.Types" "ghc" 'False) (C1 ('MetaCons "CILayoutVariable" 'PrefixI 'False) (U1 :: Type -> Type) :+: (C1 ('MetaCons "CILayoutUnknown" 'PrefixI 'True) (S1 ('MetaSel ('Just "layoutSize") 'NoSourceUnpackedness 'SourceStrict 'DecidedStrict) (Rec0 Int)) :+: C1 ('MetaCons "CILayoutFixed" 'PrefixI 'True) (S1 ('MetaSel ('Just "layoutSize") 'NoSourceUnpackedness 'SourceStrict 'DecidedStrict) (Rec0 Int) :*: S1 ('MetaSel ('Just "layout") 'NoSourceUnpackedness 'NoSourceStrictness 'DecidedLazy) (Rec0 [VarType]))))

data CIType Source #

The type of ClosureInfo

Constructors

CIFun 

Fields

CIThunk

The closure is a THUNK

CICon

The closure is a Constructor

Fields

CIPap

The closure is a Partial Application

CIBlackhole

The closure is a black hole

CIStackFrame

The closure is a stack frame

Instances

Instances details
Generic CIType Source # 
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type Rep CIType :: Type -> Type Source #

Show CIType Source # 
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NFData CIType Source # 
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rnf :: CIType -> () Source #

Binary CIType Source # 
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Eq CIType Source # 
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(==) :: CIType -> CIType -> Bool #

(/=) :: CIType -> CIType -> Bool #

Ord CIType Source # 
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type Rep CIType Source # 
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type Rep CIType = D1 ('MetaData "CIType" "GHC.StgToJS.Types" "ghc" 'False) ((C1 ('MetaCons "CIFun" 'PrefixI 'True) (S1 ('MetaSel ('Just "citArity") 'NoSourceUnpackedness 'SourceStrict 'DecidedStrict) (Rec0 Int) :*: S1 ('MetaSel ('Just "citRegs") 'NoSourceUnpackedness 'SourceStrict 'DecidedStrict) (Rec0 Int)) :+: (C1 ('MetaCons "CIThunk" 'PrefixI 'False) (U1 :: Type -> Type) :+: C1 ('MetaCons "CICon" 'PrefixI 'True) (S1 ('MetaSel ('Just "citConstructor") 'NoSourceUnpackedness 'SourceStrict 'DecidedStrict) (Rec0 Int)))) :+: (C1 ('MetaCons "CIPap" 'PrefixI 'False) (U1 :: Type -> Type) :+: (C1 ('MetaCons "CIBlackhole" 'PrefixI 'False) (U1 :: Type -> Type) :+: C1 ('MetaCons "CIStackFrame" 'PrefixI 'False) (U1 :: Type -> Type))))

newtype CIStatic Source #

Static references that must be kept alive

Constructors

CIStaticRefs 

Fields

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Monoid CIStatic Source # 
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Semigroup CIStatic Source # 
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Generic CIStatic Source # 
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type Rep CIStatic :: Type -> Type Source #

Show CIStatic Source # 
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ToJExpr CIStatic Source #

static refs: array = references, null = nothing to report note: only works after all top-level objects have been created

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Binary CIStatic Source # 
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Eq CIStatic Source # 
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type Rep CIStatic Source # 
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type Rep CIStatic = D1 ('MetaData "CIStatic" "GHC.StgToJS.Types" "ghc" 'True) (C1 ('MetaCons "CIStaticRefs" 'PrefixI 'True) (S1 ('MetaSel ('Just "staticRefs") 'NoSourceUnpackedness 'NoSourceStrictness 'DecidedLazy) (Rec0 [FastString])))

data VarType Source #

Free variable types

Constructors

PtrV

pointer = reference to heap object (closure object)

VoidV

no fields

DoubleV

A Double: one field

IntV

An Int (32bit because JS): one field

LongV

A Long: two fields one for the upper 32bits, one for the lower (NB: JS is little endian)

AddrV

a pointer not to the heap: two fields, array + index

RtsObjV

some RTS object from GHCJS (for example TVar#, MVar#, MutVar#, Weak#)

ObjV

some JS object, user supplied, be careful around these, can be anything

ArrV

boxed array

Instances

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Bounded VarType Source # 
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Enum VarType Source # 
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Generic VarType Source # 
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type Rep VarType :: Type -> Type Source #

Show VarType Source # 
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NFData VarType Source # 
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rnf :: VarType -> () Source #

ToJExpr VarType Source # 
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Binary VarType Source # 
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Eq VarType Source # 
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(==) :: VarType -> VarType -> Bool #

(/=) :: VarType -> VarType -> Bool #

Ord VarType Source # 
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type Rep VarType Source # 
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type Rep VarType = D1 ('MetaData "VarType" "GHC.StgToJS.Types" "ghc" 'False) (((C1 ('MetaCons "PtrV" 'PrefixI 'False) (U1 :: Type -> Type) :+: C1 ('MetaCons "VoidV" 'PrefixI 'False) (U1 :: Type -> Type)) :+: (C1 ('MetaCons "DoubleV" 'PrefixI 'False) (U1 :: Type -> Type) :+: C1 ('MetaCons "IntV" 'PrefixI 'False) (U1 :: Type -> Type))) :+: ((C1 ('MetaCons "LongV" 'PrefixI 'False) (U1 :: Type -> Type) :+: C1 ('MetaCons "AddrV" 'PrefixI 'False) (U1 :: Type -> Type)) :+: (C1 ('MetaCons "RtsObjV" 'PrefixI 'False) (U1 :: Type -> Type) :+: (C1 ('MetaCons "ObjV" 'PrefixI 'False) (U1 :: Type -> Type) :+: C1 ('MetaCons "ArrV" 'PrefixI 'False) (U1 :: Type -> Type)))))

data IdType Source #

The type of identifiers. These determine the suffix of generated functions in JS Land. For example, the entry function for the Just constructor is a IdConEntry which compiles to: function h$baseZCGHCziMaybeziJust_con_e() { return h$rs() }; which just returns whatever the stack point is pointing to. Whereas the entry function to Just is an IdEntry and does the work. It compiles to: function h$baseZCGHCziMaybeziJust_e() { var h$$baseZCGHCziMaybezieta_8KXnScrCjF5 = h$r2; h$r1 = h$c1(h$baseZCGHCziMaybeziJust_con_e, h$$baseZCGHCziMaybezieta_8KXnScrCjF5); return h$rs(); }; Which loads some payload from register 2, and applies the Constructor Entry function for the Just to the payload, returns the result in register 1 and returns whatever is on top of the stack

Constructors

IdPlain

A plain identifier for values, no suffix added

IdEntry

An entry function, suffix = "_e" in makeIdentForId

IdConEntry

A Constructor entry function, suffix = "_con_e" in makeIdentForId

Instances

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Enum IdType Source # 
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Eq IdType Source # 
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(==) :: IdType -> IdType -> Bool #

(/=) :: IdType -> IdType -> Bool #

Ord IdType Source # 
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data IdKey Source #

Keys to differentiate Ident's in the ID Cache

Constructors

IdKey !Int !Int !IdType 

Instances

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Eq IdKey Source # 
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(==) :: IdKey -> IdKey -> Bool #

(/=) :: IdKey -> IdKey -> Bool #

Ord IdKey Source # 
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compare :: IdKey -> IdKey -> Ordering #

(<) :: IdKey -> IdKey -> Bool #

(<=) :: IdKey -> IdKey -> Bool #

(>) :: IdKey -> IdKey -> Bool #

(>=) :: IdKey -> IdKey -> Bool #

max :: IdKey -> IdKey -> IdKey #

min :: IdKey -> IdKey -> IdKey #

data OtherSymb Source #

Some other symbol

Constructors

OtherSymb !Module !FastString 

Instances

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Eq OtherSymb Source # 
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Ord OtherSymb Source # 
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newtype IdCache Source #

The identifier cache indexed on IdKey local to a module

Constructors

IdCache (Map IdKey Ident) 

newtype GlobalIdCache Source #

The global Identifier Cache

Constructors

GlobalIdCache (UniqFM Ident (IdKey, Id)) 

data StackSlot Source #

A Stack Slot is either known or unknown. We avoid maybe here for more strictness.

Constructors

SlotId !Id !Int 
SlotUnknown 

Instances

Instances details
Eq StackSlot Source # 
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Ord StackSlot Source # 
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data StaticInfo Source #

Constructors

StaticInfo 

Fields

Instances

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Generic StaticInfo Source # 
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type Rep StaticInfo :: Type -> Type Source #

Show StaticInfo Source # 
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Binary StaticInfo Source # 
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Eq StaticInfo Source # 
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type Rep StaticInfo Source # 
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data StaticVal Source #

Constructors

StaticFun !FastString [StaticArg]

heap object for function

StaticThunk !(Maybe (FastString, [StaticArg]))

heap object for CAF (field is Nothing when thunk is initialized in an alternative way, like string thunks through h$str)

StaticUnboxed !StaticUnboxed

unboxed constructor (Bool, Int, Double etc)

StaticData !FastString [StaticArg]

regular datacon app

StaticList [StaticArg] (Maybe FastString)

list initializer (with optional tail)

Instances

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Generic StaticVal Source # 
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type Rep StaticVal :: Type -> Type Source #

Show StaticVal Source # 
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Binary StaticVal Source # 
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Eq StaticVal Source # 
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type Rep StaticVal Source # 
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data StaticUnboxed Source #

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Generic StaticUnboxed Source # 
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type Rep StaticUnboxed :: Type -> Type Source #

Show StaticUnboxed Source # 
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NFData StaticUnboxed Source # 
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rnf :: StaticUnboxed -> () Source #

Binary StaticUnboxed Source # 
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Eq StaticUnboxed Source # 
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Ord StaticUnboxed Source # 
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type Rep StaticUnboxed Source # 
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data StaticArg Source #

Static Arguments. Static Arguments are things that are statically allocated, i.e., they exist at program startup. These are static heap objects or literals or things that have been floated to the top level binding by ghc.

Constructors

StaticObjArg !FastString

reference to a heap object

StaticLitArg !StaticLit

literal

StaticConArg !FastString [StaticArg]

unfloated constructor

Instances

Instances details
Generic StaticArg Source # 
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type Rep StaticArg :: Type -> Type Source #

Show StaticArg Source # 
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Binary StaticArg Source # 
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Outputable StaticArg Source # 
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ppr :: StaticArg -> SDoc Source #

Eq StaticArg Source # 
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type Rep StaticArg Source # 
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data StaticLit Source #

A Static literal value

Constructors

BoolLit !Bool 
IntLit !Integer 
NullLit 
DoubleLit !SaneDouble 
StringLit !FastString 
BinLit !ByteString 
LabelLit !Bool !FastString

is function pointer, label (also used for string / binary init)

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Generic StaticLit Source # 
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type Rep StaticLit :: Type -> Type Source #

Show StaticLit Source # 
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ToJExpr StaticLit Source # 
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Binary StaticLit Source # 
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Outputable StaticLit Source # 
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ppr :: StaticLit -> SDoc Source #

Eq StaticLit Source # 
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type Rep StaticLit Source # 
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data ForeignJSRef Source #

A foreign reference to some JS code

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Generic ForeignJSRef Source # 
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type Rep ForeignJSRef :: Type -> Type Source #

Binary ForeignJSRef Source # 
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type Rep ForeignJSRef Source # 
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data LinkableUnit Source #

data used to generate one ObjUnit in our object file

Constructors

LinkableUnit 

Fields

data ObjUnit Source #

one toplevel block in the object file

Constructors

ObjUnit 

Fields

data ExpFun Source #

Constructors

ExpFun 

Fields

Instances

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Show ExpFun Source # 
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Binary ExpFun Source # 
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Eq ExpFun Source # 
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(==) :: ExpFun -> ExpFun -> Bool #

(/=) :: ExpFun -> ExpFun -> Bool #

Ord ExpFun Source # 
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data JSFFIType Source #

Types of FFI values

data TypedExpr Source #

Typed expression

Constructors

TypedExpr 

Fields

Instances

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Outputable TypedExpr Source # 
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ppr :: TypedExpr -> SDoc Source #

data PrimRes Source #

A Primop result is either an inlining of some JS payload, or a primitive call to a JS function defined in Shim files in base.

Constructors

PrimInline JStat

primop is inline, result is assigned directly

PRPrimCall JStat

primop is async call, primop returns the next function to run. result returned to stack top in registers

data ExprResult Source #

Constructors

ExprCont 
ExprInline (Maybe [JExpr]) 

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Eq ExprResult Source # 
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newtype ExprValData Source #

Constructors

ExprValData [JExpr] 

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Eq ExprValData Source # 
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data ClosureType Source #

A Closure is one of six types

Constructors

Thunk

The closure is a THUNK

Fun

The closure is a Function

Pap

The closure is a Partial Application

Con

The closure is a Constructor

Blackhole

The closure is a Blackhole

StackFrame

The closure is a stack frame

Instances

Instances details
Bounded ClosureType Source # 
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Enum ClosureType Source # 
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Show ClosureType Source # 
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ToJExpr ClosureType Source # 
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Eq ClosureType Source # 
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Ord ClosureType Source # 
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ctNum :: ClosureType -> Int Source #

Convert ClosureType to an Int

ctJsName :: ClosureType -> String Source #

Convert ClosureType to a String

data ThreadStatus Source #

A thread is in one of 4 states

Constructors

Running

The thread is running

Blocked

The thread is blocked

Finished

The thread is done

Died

The thread has died

Instances

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Bounded ThreadStatus Source # 
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Enum ThreadStatus Source # 
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Show ThreadStatus Source # 
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Eq ThreadStatus Source # 
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Ord ThreadStatus Source # 
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threadStatusNum :: ThreadStatus -> Int Source #

Convert the status of a thread in JS land to an Int

threadStatusJsName :: ThreadStatus -> String Source #

convert the status of a thread in JS land to a string