Cabal-syntax-3.12.1.0: A library for working with .cabal files
Safe HaskellSafe-Inferred
LanguageHaskell2010

Distribution.Types.ModuleRenaming

Synopsis

Documentation

data ModuleRenaming Source #

Renaming applied to the modules provided by a package. The boolean indicates whether or not to also include all of the original names of modules. Thus, ModuleRenaming False [] is "don't expose any modules, and ModuleRenaming True [(Data.Bool, Bool)] is, "expose all modules, but also expose Data.Bool as Bool". If a renaming is omitted you get the DefaultRenaming.

(NB: This is a list not a map so that we can preserve order.)

Constructors

ModuleRenaming [(ModuleName, ModuleName)]

A module renaming/thinning; e.g., (A as B, C as C) brings B and C into scope.

DefaultRenaming

The default renaming, bringing all exported modules into scope.

HidingRenaming [ModuleName]

Hiding renaming, e.g., hiding (A, B), bringing all exported modules into scope except the hidden ones.

Instances

Instances details
Parsec ModuleRenaming Source # 
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Pretty ModuleRenaming Source # 
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Structured ModuleRenaming Source # 
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Data ModuleRenaming Source # 
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Methods

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

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

toConstr :: ModuleRenaming -> Constr #

dataTypeOf :: ModuleRenaming -> DataType #

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

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

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

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

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

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

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

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

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

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

Generic ModuleRenaming Source # 
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Associated Types

type Rep ModuleRenaming :: Type -> Type #

Read ModuleRenaming Source # 
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Show ModuleRenaming Source # 
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Binary ModuleRenaming Source # 
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NFData ModuleRenaming Source # 
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Methods

rnf :: ModuleRenaming -> () #

Eq ModuleRenaming Source # 
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Ord ModuleRenaming Source # 
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type Rep ModuleRenaming Source # 
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type Rep ModuleRenaming = D1 ('MetaData "ModuleRenaming" "Distribution.Types.ModuleRenaming" "Cabal-syntax-3.12.1.0-IdRA6VeQqeX5uBVqXABfjL" 'False) (C1 ('MetaCons "ModuleRenaming" 'PrefixI 'False) (S1 ('MetaSel ('Nothing :: Maybe Symbol) 'NoSourceUnpackedness 'NoSourceStrictness 'DecidedLazy) (Rec0 [(ModuleName, ModuleName)])) :+: (C1 ('MetaCons "DefaultRenaming" 'PrefixI 'False) (U1 :: Type -> Type) :+: C1 ('MetaCons "HidingRenaming" 'PrefixI 'False) (S1 ('MetaSel ('Nothing :: Maybe Symbol) 'NoSourceUnpackedness 'NoSourceStrictness 'DecidedLazy) (Rec0 [ModuleName]))))

interpModuleRenaming :: ModuleRenaming -> ModuleName -> Maybe ModuleName Source #

Interpret a ModuleRenaming as a partial map from ModuleName to ModuleName. For efficiency, you should partially apply it with ModuleRenaming and then reuse it.

defaultRenaming :: ModuleRenaming Source #

The default renaming, if something is specified in build-depends only.

isDefaultRenaming :: ModuleRenaming -> Bool Source #

Tests if its the default renaming; we can use a more compact syntax in IncludeRenaming in this case.