Copyright | (C) 2012-2017 Nicolas Frisby (C) 2015-2017 Ryan Scott |
---|---|
License | BSD-style (see the file LICENSE) |
Maintainer | Ryan Scott |
Portability | Portable |
Safe Haskell | Safe |
Language | Haskell98 |
Data.Functor.Invariant
Contents
Description
Haskell98 invariant functors (also known as exponential functors).
For more information, see Edward Kmett's article "Rotten Bananas":
Synopsis
- class Invariant f where
- invmap :: (a -> b) -> (b -> a) -> f a -> f b
- invmapFunctor :: Functor f => (a -> b) -> (b -> a) -> f a -> f b
- genericInvmap :: (Generic1 f, Invariant (Rep1 f)) => (a -> b) -> (b -> a) -> f a -> f b
- newtype WrappedFunctor f a = WrapFunctor {
- unwrapFunctor :: f a
- invmapContravariant :: Contravariant f => (a -> b) -> (b -> a) -> f a -> f b
- newtype WrappedContravariant f a = WrapContravariant {
- unwrapContravariant :: f a
- class Invariant2 f where
- invmap2 :: (a -> c) -> (c -> a) -> (b -> d) -> (d -> b) -> f a b -> f c d
- invmap2Bifunctor :: Bifunctor f => (a -> c) -> (c -> a) -> (b -> d) -> (d -> b) -> f a b -> f c d
- newtype WrappedBifunctor (p :: k -> k1 -> Type) (a :: k) (b :: k1) :: forall k k1. (k -> k1 -> Type) -> k -> k1 -> Type = WrapBifunctor {
- unwrapBifunctor :: p a b
- invmap2Profunctor :: Profunctor f => (a -> c) -> (c -> a) -> (b -> d) -> (d -> b) -> f a b -> f c d
- newtype WrappedProfunctor p a b = WrapProfunctor {
- unwrapProfunctor :: p a b
Invariant
class Invariant f where Source #
Any * -> *
type parametric in the argument permits an instance of
Invariant
.
Instances should satisfy the following laws:
invmap id id = id invmap f2 f2' . invmap f1 f1' = invmap (f2 . f1) (f1' . f2')
Minimal complete definition
Nothing
Methods
invmap :: (a -> b) -> (b -> a) -> f a -> f b Source #
invmap :: (Generic1 f, Invariant (Rep1 f)) => (a -> b) -> (b -> a) -> f a -> f b Source #
Instances
invmapFunctor :: Functor f => (a -> b) -> (b -> a) -> f a -> f b Source #
Every Functor
is also an Invariant
functor.
GHC.Generics
With GHC 7.2 or later, Invariant
instances can be defined easily using GHC
generics like so:
{-# LANGUAGE DeriveGeneric, FlexibleContexts #-}
import Data.Functor.Invariant
import GHC.Generics
data T f a = T (f a) deriving Generic1
instance Invariant f => Invariant
(T f)
Be aware that generic Invariant
instances cannot be derived for data types
that have function arguments in which the last type parameter appears in a
position other than the result type (e.g., data Fun a = Fun (a -> a)
). For
these, you can derive them using the Data.Functor.Invariant.TH module.
genericInvmap :: (Generic1 f, Invariant (Rep1 f)) => (a -> b) -> (b -> a) -> f a -> f b Source #
A generic implementation of invmap
.
newtype WrappedFunctor f a Source #
Wrap a Functor
to be used as a member of Invariant
.
Constructors
WrapFunctor | |
Fields
|
Instances
invmapContravariant :: Contravariant f => (a -> b) -> (b -> a) -> f a -> f b Source #
Every Contravariant
functor is also an Invariant
functor.
newtype WrappedContravariant f a Source #
Wrap a Contravariant
functor to be used as a member of Invariant
.
Constructors
WrapContravariant | |
Fields
|
Instances
Invariant2
class Invariant2 f where Source #
Any * -> * -> *
type parametric in both arguments permits an instance of
Invariant2
.
Instances should satisfy the following laws:
invmap2 id id id id = id invmap2 f2 f2' g2 g2' . invmap2 f1 f1' g1 g1' = invmap2 (f2 . f1) (f1' . f2') (g2 . g1) (g1' . g2')
Instances
Invariant2 Either Source # | |
Defined in Data.Functor.Invariant | |
Invariant2 (,) Source # | |
Defined in Data.Functor.Invariant | |
Invariant2 Arg Source # | from Data.Semigroup |
Defined in Data.Functor.Invariant | |
Invariant2 Op Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 ((,,) a) Source # | |
Defined in Data.Functor.Invariant | |
Arrow arr => Invariant2 (WrappedArrow arr) Source # | from Control.Applicative |
Defined in Data.Functor.Invariant | |
Invariant2 (Const :: Type -> Type -> Type) Source # | from Control.Applicative |
Defined in Data.Functor.Invariant | |
Monad m => Invariant2 (Kleisli m) Source # | from Control.Arrow |
Defined in Data.Functor.Invariant | |
Invariant2 (Tagged :: Type -> Type -> Type) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 (Constant :: Type -> Type -> Type) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant f => Invariant2 (Costar f) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 (Forget r) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant f => Invariant2 (Star f) Source # | from the |
Defined in Data.Functor.Invariant | |
Arrow arr => Invariant2 (WrappedArrow arr) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 (CopastroSum p) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 (CotambaraSum p) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 (PastroSum p) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 p => Invariant2 (TambaraSum p) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 p => Invariant2 (Tambara p) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 p => Invariant2 (Closure p) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 (Environment p) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 p => Invariant2 (CofreeMapping p) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 (FreeMapping p) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 p => Invariant2 (Codensity p) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 (Cotambara p) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 (Pastro p) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 p => Invariant2 (CofreeTraversing p) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 (FreeTraversing p) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 (Yoneda p) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 ((->) :: Type -> Type -> Type) Source # | |
Defined in Data.Functor.Invariant | |
Invariant2 (K1 i :: Type -> Type -> Type) Source # | from GHC.Generics |
Defined in Data.Functor.Invariant | |
Invariant2 ((,,,) a b) Source # | |
Defined in Data.Functor.Invariant | |
Comonad w => Invariant2 (Cokleisli w) Source # | from the |
Defined in Data.Functor.Invariant | |
(Invariant f, Invariant2 p) => Invariant2 (Cayley f p) Source # | from the |
Defined in Data.Functor.Invariant | |
(Invariant2 p, Invariant2 q) => Invariant2 (Procompose p q) Source # | from the |
Defined in Data.Functor.Invariant | |
(Invariant2 p, Invariant2 q) => Invariant2 (Rift p q) Source # | from the |
Defined in Data.Functor.Invariant | |
(Invariant2 p, Invariant2 q) => Invariant2 (Ran p q) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 ((,,,,) a b c) Source # | |
Defined in Data.Functor.Invariant | |
Invariant f => Invariant2 (Clown f :: Type -> Type -> Type) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant2 p => Invariant2 (Flip p) Source # | from the |
Defined in Data.Functor.Invariant | |
Invariant g => Invariant2 (Joker g :: Type -> Type -> Type) Source # | from the |
Defined in Data.Functor.Invariant | |
Bifunctor p => Invariant2 (WrappedBifunctor p) Source # | from the |
Defined in Data.Functor.Invariant Methods invmap2 :: (a -> c) -> (c -> a) -> (b -> d) -> (d -> b) -> WrappedBifunctor p a b -> WrappedBifunctor p c d Source # | |
Profunctor p => Invariant2 (WrappedProfunctor p) Source # | |
Defined in Data.Functor.Invariant Methods invmap2 :: (a -> c) -> (c -> a) -> (b -> d) -> (d -> b) -> WrappedProfunctor p a b -> WrappedProfunctor p c d Source # | |
(Invariant2 f, Invariant2 g) => Invariant2 (Product f g) Source # | from the |
Defined in Data.Functor.Invariant | |
(Invariant2 p, Invariant2 q) => Invariant2 (Sum p q) Source # | from the |
Defined in Data.Functor.Invariant | |
(Invariant f, Invariant2 p) => Invariant2 (Tannen f p) Source # | from the |
Defined in Data.Functor.Invariant | |
(Invariant2 p, Invariant f, Invariant g) => Invariant2 (Biff p f g) Source # | from the |
Defined in Data.Functor.Invariant |
invmap2Bifunctor :: Bifunctor f => (a -> c) -> (c -> a) -> (b -> d) -> (d -> b) -> f a b -> f c d Source #
Every Bifunctor
is also an Invariant2
functor.
newtype WrappedBifunctor (p :: k -> k1 -> Type) (a :: k) (b :: k1) :: forall k k1. (k -> k1 -> Type) -> k -> k1 -> Type #
Constructors
WrapBifunctor | |
Fields
|
Instances
Generic1 (WrappedBifunctor p a :: k1 -> Type) | |
Defined in Data.Bifunctor.Wrapped Associated Types type Rep1 (WrappedBifunctor p a) :: k -> Type Methods from1 :: WrappedBifunctor p a a0 -> Rep1 (WrappedBifunctor p a) a0 to1 :: Rep1 (WrappedBifunctor p a) a0 -> WrappedBifunctor p a a0 | |
Bifoldable p => Bifoldable (WrappedBifunctor p) | |
Defined in Data.Bifunctor.Wrapped Methods bifold :: Monoid m => WrappedBifunctor p m m -> m bifoldMap :: Monoid m => (a -> m) -> (b -> m) -> WrappedBifunctor p a b -> m bifoldr :: (a -> c -> c) -> (b -> c -> c) -> c -> WrappedBifunctor p a b -> c bifoldl :: (c -> a -> c) -> (c -> b -> c) -> c -> WrappedBifunctor p a b -> c | |
Bifunctor p => Bifunctor (WrappedBifunctor p) | |
Defined in Data.Bifunctor.Wrapped Methods bimap :: (a -> b) -> (c -> d) -> WrappedBifunctor p a c -> WrappedBifunctor p b d first :: (a -> b) -> WrappedBifunctor p a c -> WrappedBifunctor p b c second :: (b -> c) -> WrappedBifunctor p a b -> WrappedBifunctor p a c | |
Bitraversable p => Bitraversable (WrappedBifunctor p) | |
Defined in Data.Bifunctor.Wrapped Methods bitraverse :: Applicative f => (a -> f c) -> (b -> f d) -> WrappedBifunctor p a b -> f (WrappedBifunctor p c d) | |
Biapplicative p => Biapplicative (WrappedBifunctor p) | |
Defined in Data.Bifunctor.Wrapped Methods bipure :: a -> b -> WrappedBifunctor p a b (<<*>>) :: WrappedBifunctor p (a -> b) (c -> d) -> WrappedBifunctor p a c -> WrappedBifunctor p b d biliftA2 :: (a -> b -> c) -> (d -> e -> f) -> WrappedBifunctor p a d -> WrappedBifunctor p b e -> WrappedBifunctor p c f (*>>) :: WrappedBifunctor p a b -> WrappedBifunctor p c d -> WrappedBifunctor p c d (<<*) :: WrappedBifunctor p a b -> WrappedBifunctor p c d -> WrappedBifunctor p a b | |
Bifunctor p => Invariant2 (WrappedBifunctor p) Source # | from the |
Defined in Data.Functor.Invariant Methods invmap2 :: (a -> c) -> (c -> a) -> (b -> d) -> (d -> b) -> WrappedBifunctor p a b -> WrappedBifunctor p c d Source # | |
Bifunctor p => Functor (WrappedBifunctor p a) | |
Defined in Data.Bifunctor.Wrapped Methods fmap :: (a0 -> b) -> WrappedBifunctor p a a0 -> WrappedBifunctor p a b (<$) :: a0 -> WrappedBifunctor p a b -> WrappedBifunctor p a a0 | |
Bifoldable p => Foldable (WrappedBifunctor p a) | |
Defined in Data.Bifunctor.Wrapped Methods fold :: Monoid m => WrappedBifunctor p a m -> m foldMap :: Monoid m => (a0 -> m) -> WrappedBifunctor p a a0 -> m foldr :: (a0 -> b -> b) -> b -> WrappedBifunctor p a a0 -> b foldr' :: (a0 -> b -> b) -> b -> WrappedBifunctor p a a0 -> b foldl :: (b -> a0 -> b) -> b -> WrappedBifunctor p a a0 -> b foldl' :: (b -> a0 -> b) -> b -> WrappedBifunctor p a a0 -> b foldr1 :: (a0 -> a0 -> a0) -> WrappedBifunctor p a a0 -> a0 foldl1 :: (a0 -> a0 -> a0) -> WrappedBifunctor p a a0 -> a0 toList :: WrappedBifunctor p a a0 -> [a0] null :: WrappedBifunctor p a a0 -> Bool length :: WrappedBifunctor p a a0 -> Int elem :: Eq a0 => a0 -> WrappedBifunctor p a a0 -> Bool maximum :: Ord a0 => WrappedBifunctor p a a0 -> a0 minimum :: Ord a0 => WrappedBifunctor p a a0 -> a0 sum :: Num a0 => WrappedBifunctor p a a0 -> a0 product :: Num a0 => WrappedBifunctor p a a0 -> a0 | |
Bitraversable p => Traversable (WrappedBifunctor p a) | |
Defined in Data.Bifunctor.Wrapped Methods traverse :: Applicative f => (a0 -> f b) -> WrappedBifunctor p a a0 -> f (WrappedBifunctor p a b) sequenceA :: Applicative f => WrappedBifunctor p a (f a0) -> f (WrappedBifunctor p a a0) mapM :: Monad m => (a0 -> m b) -> WrappedBifunctor p a a0 -> m (WrappedBifunctor p a b) sequence :: Monad m => WrappedBifunctor p a (m a0) -> m (WrappedBifunctor p a a0) | |
Bifunctor p => Invariant (WrappedBifunctor p a) Source # | from the |
Defined in Data.Functor.Invariant Methods invmap :: (a0 -> b) -> (b -> a0) -> WrappedBifunctor p a a0 -> WrappedBifunctor p a b Source # | |
Eq (p a b) => Eq (WrappedBifunctor p a b) | |
Defined in Data.Bifunctor.Wrapped Methods (==) :: WrappedBifunctor p a b -> WrappedBifunctor p a b -> Bool (/=) :: WrappedBifunctor p a b -> WrappedBifunctor p a b -> Bool | |
Ord (p a b) => Ord (WrappedBifunctor p a b) | |
Defined in Data.Bifunctor.Wrapped Methods compare :: WrappedBifunctor p a b -> WrappedBifunctor p a b -> Ordering (<) :: WrappedBifunctor p a b -> WrappedBifunctor p a b -> Bool (<=) :: WrappedBifunctor p a b -> WrappedBifunctor p a b -> Bool (>) :: WrappedBifunctor p a b -> WrappedBifunctor p a b -> Bool (>=) :: WrappedBifunctor p a b -> WrappedBifunctor p a b -> Bool max :: WrappedBifunctor p a b -> WrappedBifunctor p a b -> WrappedBifunctor p a b min :: WrappedBifunctor p a b -> WrappedBifunctor p a b -> WrappedBifunctor p a b | |
Read (p a b) => Read (WrappedBifunctor p a b) | |
Defined in Data.Bifunctor.Wrapped Methods readsPrec :: Int -> ReadS (WrappedBifunctor p a b) readList :: ReadS [WrappedBifunctor p a b] readPrec :: ReadPrec (WrappedBifunctor p a b) readListPrec :: ReadPrec [WrappedBifunctor p a b] | |
Show (p a b) => Show (WrappedBifunctor p a b) | |
Defined in Data.Bifunctor.Wrapped Methods showsPrec :: Int -> WrappedBifunctor p a b -> ShowS show :: WrappedBifunctor p a b -> String showList :: [WrappedBifunctor p a b] -> ShowS | |
Generic (WrappedBifunctor p a b) | |
Defined in Data.Bifunctor.Wrapped Associated Types type Rep (WrappedBifunctor p a b) :: Type -> Type Methods from :: WrappedBifunctor p a b -> Rep (WrappedBifunctor p a b) x to :: Rep (WrappedBifunctor p a b) x -> WrappedBifunctor p a b | |
type Rep1 (WrappedBifunctor p a :: k1 -> Type) | |
Defined in Data.Bifunctor.Wrapped type Rep1 (WrappedBifunctor p a :: k1 -> Type) = D1 (MetaData "WrappedBifunctor" "Data.Bifunctor.Wrapped" "bifunctors-5.5.4-FjcMlwZ5ubs8uJIgpQl17c" True) (C1 (MetaCons "WrapBifunctor" PrefixI True) (S1 (MetaSel (Just "unwrapBifunctor") NoSourceUnpackedness NoSourceStrictness DecidedLazy) (Rec1 (p a)))) | |
type Rep (WrappedBifunctor p a b) | |
Defined in Data.Bifunctor.Wrapped type Rep (WrappedBifunctor p a b) = D1 (MetaData "WrappedBifunctor" "Data.Bifunctor.Wrapped" "bifunctors-5.5.4-FjcMlwZ5ubs8uJIgpQl17c" True) (C1 (MetaCons "WrapBifunctor" PrefixI True) (S1 (MetaSel (Just "unwrapBifunctor") NoSourceUnpackedness NoSourceStrictness DecidedLazy) (Rec0 (p a b)))) |
invmap2Profunctor :: Profunctor f => (a -> c) -> (c -> a) -> (b -> d) -> (d -> b) -> f a b -> f c d Source #
Every Profunctor
is also an Invariant2
functor.
newtype WrappedProfunctor p a b Source #
Wrap a Profunctor
to be used as a member of Invariant2
.
Constructors
WrapProfunctor | |
Fields
|