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|
{-# LANGUAGE CPP #-}
{-# LANGUAGE TypeFamilies #-}
{-# LANGUAGE RecordWildCards #-}
{-# LANGUAGE OverloadedStrings #-}
{-# LANGUAGE StrictData #-}
module HaskellCodeExplorer.AST.RenamedSource
( NameOccurrence(..)
, namesFromRenamedSource
) where
import BasicTypes (TupleSort(..))
import BooleanFormula (BooleanFormula(..))
import Data.Generics (Data, everything, extQ, mkQ)
import Data.Maybe (Maybe(..), mapMaybe)
import qualified Data.Text as T (Text)
import GHC
( AmbiguousFieldOcc(..)
, ConDecl(..)
, ConDeclField(..)
, DataFamInstDecl(..)
, FamilyDecl(..)
, FieldOcc(..)
, FixitySig(..)
, ForeignDecl(..)
, GenLocated(..)
, HsBindLR(..)
, HsExpr(..)
, HsPatSynDetails(..)
, HsRecField'(..)
, HsTupleSort(..)
, HsTyLit(..)
, HsTyPats
, HsTyVarBndr(..)
, HsType(..)
, IE(..)
, LHsBindLR
, LHsExpr
, LHsQTyVars(..)
, LHsType
, LPat
, LSig
, LTyClDecl
, Located
, HsBracket(..)
#if MIN_VERSION_GLASGOW_HASKELL(8,2,2,0)
, HsMatchContext(..)
, Match(..)
#else
, m_fixity
, MatchFixity(..)
#endif
, MatchGroup(..)
, Name
, Pat(..)
, PatSynBind(..)
, Sig(..)
, TyClDecl(..)
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
, FamEqn(..)
, HsDataDefn(..)
#else
, TyFamEqn(..)
#endif
, Type
, RoleAnnotDecl(..)
, InjectivityAnn (..)
, unLoc
)
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
import HsExtension (GhcRn)
#endif
import HaskellCodeExplorer.GhcUtils (hsPatSynDetails, ieLocNames)
import Prelude hiding (span)
import TysWiredIn
( nilDataConName
, tupleTyConName
, typeNatKind
, typeSymbolKind
)
import SrcLoc
( mkRealSrcSpan
, mkRealSrcLoc
, realSrcSpanEnd
, realSrcSpanStart
, srcLocCol
, srcLocFile
, srcLocLine
, SrcSpan(..)
)
data NameOccurrence
= NameOccurrence { locatedName :: Located (Maybe Name)
, description :: T.Text
, isBinder :: Bool }
| TyLitOccurrence { locatedName :: Located (Maybe Name)
, description :: T.Text
, kind :: Type }
-- | Here we are only interested in a small subset of all AST nodes, so it is
-- convenient to use generic functions
namesFromRenamedSource :: (Data a) => a -> [NameOccurrence]
namesFromRenamedSource =
everything
(++)
([] `mkQ` hsExprNames `extQ` matchGroupNames `extQ` bindNames `extQ`
patNames `extQ`
sigNames `extQ`
hsTypeNames `extQ`
tyClDeclNames `extQ`
familyDeclNames `extQ`
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
familyEqNames `extQ`
dataEqNames `extQ`
#else
tyFamilyEqNames `extQ`
tyFamilyDefEqNames `extQ`
dataFamInstDeclNames `extQ`
#endif
conDeclNames `extQ`
importNames `extQ`
hsTyVarBndrNames `extQ`
hsPatSynDetailsNames `extQ`
conDeclFieldNames `extQ`
hsRecFieldExprNames `extQ`
hsRecAmbFieldExprNames `extQ`
hsRecFieldPatNames `extQ`
foreignDeclNames `extQ`
roleAnnotationNames `extQ`
injectivityAnnotationNames)
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
fieldOccName :: Bool -> FieldOcc GhcRn -> NameOccurrence
#else
fieldOccName :: Bool -> FieldOcc Name -> NameOccurrence
#endif
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
fieldOccName _ (XFieldOcc _) = undefined
fieldOccName isBinder (FieldOcc name (L span _)) =
#else
fieldOccName isBinder (FieldOcc (L span _) name) =
#endif
NameOccurrence
{ locatedName = L span (Just name)
, description = "FieldOcc"
, isBinder = isBinder
}
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
conDeclFieldNames :: ConDeclField GhcRn -> [NameOccurrence]
#else
conDeclFieldNames :: ConDeclField Name -> [NameOccurrence]
#endif
conDeclFieldNames ConDeclField {..} =
map (fieldOccName True . unLoc) cd_fld_names
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
conDeclFieldNames _ = []
#endif
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
hsRecFieldExprNames :: HsRecField' (FieldOcc GhcRn) (LHsExpr GhcRn) -> [NameOccurrence]
#else
hsRecFieldExprNames :: HsRecField' (FieldOcc Name) (LHsExpr Name) -> [NameOccurrence]
#endif
hsRecFieldExprNames HsRecField {..} = [fieldOccName False $ unLoc hsRecFieldLbl]
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
hsRecAmbFieldExprNames :: HsRecField' (AmbiguousFieldOcc GhcRn) (LHsExpr GhcRn) -> [NameOccurrence]
#else
hsRecAmbFieldExprNames :: HsRecField' (AmbiguousFieldOcc Name) (LHsExpr Name) -> [NameOccurrence]
#endif
hsRecAmbFieldExprNames HsRecField {..} =
let (L span recField) = hsRecFieldLbl
mbName =
case recField of
Ambiguous _ _ -> Nothing
#if MIN_VERSION_GLASGOW_HASKELL(8,6,3,0)
Unambiguous name _ -> Just name
_ -> Nothing
#else
Unambiguous _ name -> Just name
#endif
in [ NameOccurrence
{ locatedName = L span mbName
, description = "AmbiguousFieldOcc"
, isBinder = False
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
hsRecFieldPatNames :: HsRecField' (FieldOcc GhcRn) (LPat GhcRn) -> [NameOccurrence]
#else
hsRecFieldPatNames :: HsRecField' (FieldOcc Name) (LPat Name) -> [NameOccurrence]
#endif
hsRecFieldPatNames HsRecField {..} = [fieldOccName False $ unLoc hsRecFieldLbl]
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
hsExprNames :: LHsExpr GhcRn -> [NameOccurrence]
#else
hsExprNames :: LHsExpr Name -> [NameOccurrence]
#endif
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
hsExprNames (L _span (HsVar _ name)) =
#else
hsExprNames (L _span (HsVar name)) =
#endif
[ NameOccurrence
{ locatedName = Just <$> name
, description = "HsVar"
, isBinder = False
}
]
hsExprNames (L span (ExplicitList _ _ exprs))
| null exprs =
[ NameOccurrence
{ locatedName = L span $ Just nilDataConName
, description = "ExplicitList"
, isBinder = False
}
]
| otherwise = []
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
hsExprNames (L _span (RecordCon _ name _)) =
#else
hsExprNames (L _span (RecordCon name _conLike _instFun _binds)) =
#endif
[ NameOccurrence
{ locatedName = Just <$> name
, description = "RecordCon"
, isBinder = False
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
hsExprNames (L _span (HsRecFld _ (Unambiguous name (L span _)))) =
#else
hsExprNames (L _span (HsRecFld (Unambiguous (L span _) name))) =
#endif
[ NameOccurrence
{ locatedName = L span (Just name)
, description = "HsRecFld"
, isBinder = False
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
hsExprNames (L _span (HsRecFld _ (Ambiguous _name (L span _)))) =
#else
hsExprNames (L _span (HsRecFld (Ambiguous (L span _) _name))) =
#endif
[ NameOccurrence
{ locatedName = L span Nothing
, description = "HsRecFld"
, isBinder = False
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
hsExprNames (L span (HsRnBracketOut _ (VarBr _ quote name) _)) =
#else
hsExprNames (L span (HsRnBracketOut (VarBr quote name) _)) =
#endif
case span of
RealSrcSpan realSpan ->
let start = realSrcSpanStart realSpan
end = realSrcSpanEnd realSpan
offset =
if quote
then 1 -- 'x
else 2 -- ''T
start' =
mkRealSrcLoc
(srcLocFile start)
(srcLocLine start)
(srcLocCol start + offset)
span' = RealSrcSpan $ mkRealSrcSpan start' end
in [ NameOccurrence
{ locatedName = L span' (Just name)
, description = "VarBr"
, isBinder = False
}
]
_ -> []
hsExprNames _ = []
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
matchGroupNames :: MatchGroup GhcRn (LHsExpr GhcRn) -> [NameOccurrence]
#else
matchGroupNames :: MatchGroup Name (LHsExpr Name) -> [NameOccurrence]
#endif
matchGroupNames =
#if MIN_VERSION_GLASGOW_HASKELL(8,2,2,0)
mapMaybe (fmap toNameOcc . matchContextName . m_ctxt . unLoc) .
#else
mapMaybe (fmap toNameOcc . matchFixityName . m_fixity . unLoc) .
#endif
unLoc . mg_alts
where
#if MIN_VERSION_GLASGOW_HASKELL(8,2,2,0)
--matchContextName :: HsMatchContext Name -> Maybe (Located Name)
matchContextName (FunRhs name _ _bool) = Just name
matchContextName _ = Nothing
#else
--matchFixityName :: MatchFixity Name -> Maybe (Located Name)
matchFixityName NonFunBindMatch = Nothing
matchFixityName (FunBindMatch name _bool) = Just name
#endif
--toNameOcc :: Located Name -> NameOccurrence
toNameOcc n =
NameOccurrence
{locatedName = Just <$> n, description = "Match", isBinder = True}
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
bindNames :: LHsBindLR GhcRn GhcRn -> [NameOccurrence]
#else
bindNames :: LHsBindLR Name Name -> [NameOccurrence]
#endif
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
bindNames (L _span (PatSynBind _ PSB {..})) =
#else
bindNames (L _span (PatSynBind PSB {..})) =
#endif
[ NameOccurrence
{ locatedName = Just <$> psb_id
, description = "PatSynBind"
, isBinder = True
}
]
bindNames _ = []
hsPatSynDetailsNames :: HsPatSynDetails (Located Name) -> [NameOccurrence]
hsPatSynDetailsNames =
map
(\name ->
NameOccurrence
{ locatedName = Just <$> name
, description = "HsPatSynDetails"
, isBinder = True
}) .
hsPatSynDetails
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
importNames :: IE GhcRn -> [NameOccurrence]
#else
importNames :: IE Name -> [NameOccurrence]
#endif
importNames =
map
(\name ->
NameOccurrence
{ locatedName = Just <$> name
, description = "IE"
, isBinder = False
}) .
ieLocNames
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
patNames :: LPat GhcRn -> [NameOccurrence]
#else
patNames :: LPat Name -> [NameOccurrence]
#endif
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
patNames (L _span (VarPat _ name)) =
#else
patNames (L _span (VarPat name)) =
#endif
[ NameOccurrence
{ locatedName = Just <$> name
, description = "VarPat"
, isBinder = True
}
]
patNames (L _span (ConPatIn name _)) =
[ NameOccurrence
{ locatedName = Just <$> name
, description = "ConPatIn"
, isBinder = False
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
patNames (L _span (AsPat _ name _)) =
#else
patNames (L _span (AsPat name _)) =
#endif
[ NameOccurrence
{ locatedName = Just <$> name
, description = "AsPat"
, isBinder = True
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
patNames (L _span (NPlusKPat _ name _ _ _ _)) =
#else
patNames (L _span (NPlusKPat name _ _ _ _ _)) =
#endif
[ NameOccurrence
{ locatedName = Just <$> name
, description = "NPlusKPat"
, isBinder = True
}
]
patNames _ = []
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
sigNames :: LSig GhcRn -> [NameOccurrence]
#else
sigNames :: LSig Name -> [NameOccurrence]
#endif
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
sigNames (L _span (TypeSig _ names _)) =
#else
sigNames (L _span (TypeSig names _)) =
#endif
map
(\n ->
NameOccurrence
{ locatedName = Just <$> n
, description = "TypeSig"
, isBinder = False
})
names
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
sigNames (L _span (PatSynSig _ names _)) = map (\name -> NameOccurrence (Just <$> name) "PatSynSig" False) names
#elif MIN_VERSION_GLASGOW_HASKELL(8,2,2,0)
sigNames (L _span (PatSynSig names _)) = map (\name -> NameOccurrence (Just <$> name) "PatSynSig" False) names
#else
sigNames (L _span (PatSynSig name _)) =
[ NameOccurrence
{ locatedName = Just <$> name
, description = "PatSynSig"
, isBinder = False
}
]
#endif
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
sigNames (L _span (ClassOpSig _ _ names _)) =
#else
sigNames (L _span (ClassOpSig _ names _)) =
#endif
map
(\n ->
NameOccurrence
{ locatedName = Just <$> n
, description = "ClassOpSig"
, isBinder = True
})
names
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
sigNames (L _span (FixSig _ (FixitySig _ names _))) =
#else
sigNames (L _span (FixSig (FixitySig names _))) =
#endif
map
(\n ->
NameOccurrence
{ locatedName = Just <$> n
, description = "FixitySig"
, isBinder = False
})
names
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
sigNames (L _span (InlineSig _ name _)) =
#else
sigNames (L _span (InlineSig name _)) =
#endif
[ NameOccurrence
{ locatedName = Just <$> name
, description = "InlineSig"
, isBinder = False
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
sigNames (L _span (SpecSig _ name _ _)) =
#else
sigNames (L _span (SpecSig name _ _)) =
#endif
[ NameOccurrence
{ locatedName = Just <$> name
, description = "SpecSig"
, isBinder = False
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
sigNames (L _span (MinimalSig _ _ (L _ boolFormula))) =
#else
sigNames (L _span (MinimalSig _ (L _ boolFormula))) =
#endif
map
(\n ->
NameOccurrence
{ locatedName = Just <$> n
, description = "MinimalSig"
, isBinder = False
}) .
boolFormulaNames $
boolFormula
where
boolFormulaNames :: BooleanFormula name -> [name]
boolFormulaNames (Var a) = [a]
boolFormulaNames (And fs) = concatMap (boolFormulaNames . unLoc) fs
boolFormulaNames (Or fs) = concatMap (boolFormulaNames . unLoc) fs
boolFormulaNames (Parens (L _ f)) = boolFormulaNames f
sigNames (L _ _) = []
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
hsTypeNames :: LHsType GhcRn -> [NameOccurrence]
#else
hsTypeNames :: LHsType Name -> [NameOccurrence]
#endif
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
hsTypeNames (L _span (HsTyVar _ _promoted name)) =
#elif MIN_VERSION_GLASGOW_HASKELL(8,2,2,0)
hsTypeNames (L _span (HsTyVar _promoted name)) =
#else
hsTypeNames (L _span (HsTyVar name)) =
#endif
[ NameOccurrence
{ locatedName = Just <$> name
, description = "HsTyVar"
, isBinder = False
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
hsTypeNames (L span (HsTyLit _ lit)) =
#else
hsTypeNames (L span (HsTyLit lit)) =
#endif
let kind =
case lit of
HsNumTy _ _ -> typeNatKind
HsStrTy _ _ -> typeSymbolKind
in [ TyLitOccurrence
{ locatedName = L span Nothing
, description = "HsTyLit"
, kind = kind
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
hsTypeNames (L _span (HsOpTy _ _ name _)) =
#else
hsTypeNames (L _span (HsOpTy _ name _)) =
#endif
[ NameOccurrence
{ locatedName = Just <$> name
, description = "HsOpTy"
, isBinder = False
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
hsTypeNames (L span (HsTupleTy _ tupleSort types))
#else
hsTypeNames (L span (HsTupleTy tupleSort types))
#endif
| null types =
let sort =
case tupleSort of
HsUnboxedTuple -> UnboxedTuple
HsBoxedTuple -> BoxedTuple
HsConstraintTuple -> ConstraintTuple
HsBoxedOrConstraintTuple -> BoxedTuple
in [ NameOccurrence
{ locatedName = L span (Just $ tupleTyConName sort 0)
, description = "HsTupleTy"
, isBinder = False
}
]
| otherwise = []
--https://ghc.haskell.org/trac/ghc/ticket/13737
--hsTypeNames (L span (HsExplicitListTy _kind types)) = ...
--hsTypeNames (L span (HsExplicitTupleTy _kind types)) = ...
hsTypeNames _ = []
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
hsTyVarBndrNames :: HsTyVarBndr GhcRn -> [NameOccurrence]
#else
hsTyVarBndrNames :: HsTyVarBndr Name -> [NameOccurrence]
#endif
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
hsTyVarBndrNames (UserTyVar _ n) =
#else
hsTyVarBndrNames (UserTyVar n) =
#endif
[ NameOccurrence
{ locatedName = Just <$> n
, description = "UserTyVar"
, isBinder = True
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
hsTyVarBndrNames (KindedTyVar _ n _) =
#else
hsTyVarBndrNames (KindedTyVar n _) =
#endif
[ NameOccurrence
{ locatedName = Just <$> n
, description = "KindedTyVar"
, isBinder = True
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
hsTyVarBndrNames _ = []
#endif
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
tyClDeclNames :: LTyClDecl GhcRn -> [NameOccurrence]
#else
tyClDeclNames :: LTyClDecl Name -> [NameOccurrence]
#endif
tyClDeclNames (L _span DataDecl {..}) =
[ NameOccurrence
{ locatedName = Just <$> tcdLName
, description = "DataDecl"
, isBinder = True
}
]
tyClDeclNames (L _span SynDecl {..}) =
[ NameOccurrence
{ locatedName = Just <$> tcdLName
, description = "SynDecl"
, isBinder = True
}
]
tyClDeclNames (L _span ClassDecl {..}) =
NameOccurrence
{ locatedName = Just <$> tcdLName
, description = "ClassDecl"
, isBinder = True
} :
concatMap
((\(names1, names2) -> map toNameOcc names1 ++ map toNameOcc names2) . unLoc)
tcdFDs
where
toNameOcc :: Located Name -> NameOccurrence
toNameOcc n =
NameOccurrence
{ locatedName = Just <$> n
, description = "FunDep"
, isBinder = False
}
tyClDeclNames _ = []
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
familyDeclNames :: FamilyDecl GhcRn -> [NameOccurrence]
#else
familyDeclNames :: FamilyDecl Name -> [NameOccurrence]
#endif
familyDeclNames FamilyDecl {..} =
[ NameOccurrence
{ locatedName = Just <$> fdLName
, description = "FamilyDecl"
, isBinder = True
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
familyDeclNames _ = []
#endif
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
familyEqNames :: FamEqn GhcRn (HsTyPats GhcRn) (LHsType GhcRn) -> [NameOccurrence]
familyEqNames FamEqn {feqn_tycon = tyCon} =
[ NameOccurrence
{ locatedName = Just <$> tyCon
, description = "FamEqn"
, isBinder = False
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
familyEqNames _ = []
#endif
dataEqNames :: FamEqn GhcRn (HsTyPats GhcRn) (HsDataDefn GhcRn) -> [NameOccurrence]
dataEqNames FamEqn {feqn_tycon = tyCon} =
[ NameOccurrence
{ locatedName = Just <$> tyCon
, description = "FamEqn"
, isBinder = False
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
dataEqNames _ = []
#endif
#else
tyFamilyEqNames :: TyFamEqn Name (HsTyPats Name) -> [NameOccurrence]
tyFamilyEqNames TyFamEqn {tfe_tycon = tyCon} =
[ NameOccurrence
{ locatedName = Just <$> tyCon
, description = "TyFamEqn"
, isBinder = False
}
]
tyFamilyDefEqNames :: TyFamEqn Name (LHsQTyVars Name) -> [NameOccurrence]
tyFamilyDefEqNames TyFamEqn {tfe_tycon = tyCon} =
[ NameOccurrence
{ locatedName = Just <$> tyCon
, description = "TyFamEqn"
, isBinder = False
}
]
dataFamInstDeclNames :: DataFamInstDecl Name -> [NameOccurrence]
dataFamInstDeclNames DataFamInstDecl {dfid_tycon = tyCon} =
[ NameOccurrence
{ locatedName = Just <$> tyCon
, description = "DataFamInstDecl"
, isBinder = False
}
]
#endif
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
conDeclNames :: ConDecl GhcRn -> [NameOccurrence]
#else
conDeclNames :: ConDecl Name -> [NameOccurrence]
#endif
conDeclNames con =
case con of
ConDeclGADT {con_names = names} ->
map
(\n ->
NameOccurrence
{ locatedName = Just <$> n
, description = "ConDeclGADT"
, isBinder = True
})
names
ConDeclH98 {con_name = name} ->
[ NameOccurrence
{ locatedName = Just <$> name
, description = "ConDeclH98"
, isBinder = True
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
_ -> []
#endif
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
foreignDeclNames :: ForeignDecl GhcRn -> [NameOccurrence]
#else
foreignDeclNames :: ForeignDecl Name -> [NameOccurrence]
#endif
foreignDeclNames decl =
[ NameOccurrence
{ locatedName = Just <$> fd_name decl
, description = "ForeignDecl"
, isBinder = True
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
roleAnnotationNames :: RoleAnnotDecl GhcRn -> [NameOccurrence]
#else
roleAnnotationNames :: RoleAnnotDecl Name -> [NameOccurrence]
#endif
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
roleAnnotationNames (RoleAnnotDecl _ n _) =
#else
roleAnnotationNames (RoleAnnotDecl n _) =
#endif
[ NameOccurrence
{ locatedName = Just <$> n
, description = "RoleAnnotDecl"
, isBinder = False
}
]
#if MIN_VERSION_GLASGOW_HASKELL(8,6,1,0)
roleAnnotationNames _ = []
#endif
#if MIN_VERSION_GLASGOW_HASKELL(8,4,3,0)
injectivityAnnotationNames :: InjectivityAnn GhcRn -> [NameOccurrence]
#else
injectivityAnnotationNames :: InjectivityAnn Name -> [NameOccurrence]
#endif
injectivityAnnotationNames (InjectivityAnn lhsName rhsNames) =
injAnnNameOcc lhsName : map injAnnNameOcc rhsNames
where
injAnnNameOcc :: GenLocated SrcSpan Name -> NameOccurrence
injAnnNameOcc n =
NameOccurrence
{ locatedName = Just <$> n
, description = "InjectivityAnn"
, isBinder = False
}
|