Safe Haskell | Safe-Inferred |
---|---|
Language | Haskell2010 |
Data.Monoid.Compat
Documentation
Constructors
Product | |
Fields
|
Instances
Foldable Product | |
Defined in Data.Foldable Methods fold :: Monoid m => Product m -> m foldMap :: Monoid m => (a -> m) -> Product a -> m # foldMap' :: Monoid m => (a -> m) -> Product a -> m foldr :: (a -> b -> b) -> b -> Product a -> b # foldr' :: (a -> b -> b) -> b -> Product a -> b foldl :: (b -> a -> b) -> b -> Product a -> b # foldl' :: (b -> a -> b) -> b -> Product a -> b foldr1 :: (a -> a -> a) -> Product a -> a # foldl1 :: (a -> a -> a) -> Product a -> a # elem :: Eq a => a -> Product a -> Bool # maximum :: Ord a => Product a -> a # minimum :: Ord a => Product a -> a # | |
Traversable Product | |
Applicative Product | |
Functor Product | |
Monad Product | |
Generic1 Product | |
Num a => Monoid (Product a) | |
Num a => Semigroup (Product a) | |
Bounded a => Bounded (Product a) | |
Generic (Product a) | |
Num a => Num (Product a) | |
Defined in Data.Semigroup.Internal | |
Read a => Read (Product a) | |
Show a => Show (Product a) | |
Eq a => Eq (Product a) | |
Ord a => Ord (Product a) | |
type Rep1 Product | |
Defined in Data.Semigroup.Internal | |
type Rep (Product a) | |
Defined in Data.Semigroup.Internal |
Instances
Foldable Sum | |
Defined in Data.Foldable Methods fold :: Monoid m => Sum m -> m foldMap :: Monoid m => (a -> m) -> Sum a -> m # foldMap' :: Monoid m => (a -> m) -> Sum a -> m foldr :: (a -> b -> b) -> b -> Sum a -> b # foldr' :: (a -> b -> b) -> b -> Sum a -> b foldl :: (b -> a -> b) -> b -> Sum a -> b # foldl' :: (b -> a -> b) -> b -> Sum a -> b foldr1 :: (a -> a -> a) -> Sum a -> a # foldl1 :: (a -> a -> a) -> Sum a -> a # elem :: Eq a => a -> Sum a -> Bool # maximum :: Ord a => Sum a -> a # | |
Traversable Sum | |
Applicative Sum | |
Functor Sum | |
Monad Sum | |
Generic1 Sum | |
Num a => Monoid (Sum a) | |
Num a => Semigroup (Sum a) | |
Bounded a => Bounded (Sum a) | |
Generic (Sum a) | |
Num a => Num (Sum a) | |
Read a => Read (Sum a) | |
Show a => Show (Sum a) | |
Eq a => Eq (Sum a) | |
Ord a => Ord (Sum a) | |
type Rep1 Sum | |
Defined in Data.Semigroup.Internal | |
type Rep (Sum a) | |
Defined in Data.Semigroup.Internal |
class Semigroup a => Monoid a where #
Minimal complete definition
Instances
Monoid All | |
Monoid Any | |
Monoid Ordering | |
Monoid () | |
FiniteBits a => Monoid (And a) | |
FiniteBits a => Monoid (Iff a) | |
Bits a => Monoid (Ior a) | |
Bits a => Monoid (Xor a) | |
Monoid (Comparison a) | |
Monoid (Equivalence a) | |
Monoid (Predicate a) | |
Monoid a => Monoid (Identity a) | |
Monoid (First a) | |
Monoid (Last a) | |
(Ord a, Bounded a) => Monoid (Max a) | |
(Ord a, Bounded a) => Monoid (Min a) | |
Monoid m => Monoid (WrappedMonoid m) | |
Defined in Data.Semigroup Methods mempty :: WrappedMonoid m # mappend :: WrappedMonoid m -> WrappedMonoid m -> WrappedMonoid m # mconcat :: [WrappedMonoid m] -> WrappedMonoid m # | |
Monoid a => Monoid (Dual a) | |
Monoid (Endo a) | |
Num a => Monoid (Product a) | |
Num a => Monoid (Sum a) | |
Monoid a => Monoid (STM a) | |
Monoid a => Monoid (IO a) | |
Semigroup a => Monoid (Maybe a) | |
Monoid a => Monoid (a) | |
Monoid [a] | |
Monoid a => Monoid (Op a b) | |
Monoid (Proxy s) | |
Monoid a => Monoid (ST s a) | |
Monoid b => Monoid (a -> b) | |
(Monoid a, Monoid b) => Monoid (a, b) | |
Monoid a => Monoid (Const a b) | |
(Applicative f, Monoid a) => Monoid (Ap f a) | |
Alternative f => Monoid (Alt f a) | |
(Monoid a, Monoid b, Monoid c) => Monoid (a, b, c) | |
(Monoid (f a), Monoid (g a)) => Monoid (Product f g a) | |
(Monoid a, Monoid b, Monoid c, Monoid d) => Monoid (a, b, c, d) | |
Monoid (f (g a)) => Monoid (Compose f g a) | |
(Monoid a, Monoid b, Monoid c, Monoid d, Monoid e) => Monoid (a, b, c, d, e) | |
Instances
Foldable First | |
Defined in Data.Foldable Methods fold :: Monoid m => First m -> m foldMap :: Monoid m => (a -> m) -> First a -> m # foldMap' :: Monoid m => (a -> m) -> First a -> m foldr :: (a -> b -> b) -> b -> First a -> b # foldr' :: (a -> b -> b) -> b -> First a -> b foldl :: (b -> a -> b) -> b -> First a -> b # foldl' :: (b -> a -> b) -> b -> First a -> b foldr1 :: (a -> a -> a) -> First a -> a # foldl1 :: (a -> a -> a) -> First a -> a # elem :: Eq a => a -> First a -> Bool # maximum :: Ord a => First a -> a # minimum :: Ord a => First a -> a # | |
Traversable First | |
Applicative First | |
Functor First | |
Monad First | |
Generic1 First | |
Monoid (First a) | |
Semigroup (First a) | |
Generic (First a) | |
Read a => Read (First a) | |
Show a => Show (First a) | |
Eq a => Eq (First a) | |
Ord a => Ord (First a) | |
type Rep1 First | |
type Rep (First a) | |
Instances
Foldable Last | |
Defined in Data.Foldable Methods fold :: Monoid m => Last m -> m foldMap :: Monoid m => (a -> m) -> Last a -> m # foldMap' :: Monoid m => (a -> m) -> Last a -> m foldr :: (a -> b -> b) -> b -> Last a -> b # foldr' :: (a -> b -> b) -> b -> Last a -> b foldl :: (b -> a -> b) -> b -> Last a -> b # foldl' :: (b -> a -> b) -> b -> Last a -> b foldr1 :: (a -> a -> a) -> Last a -> a # foldl1 :: (a -> a -> a) -> Last a -> a # elem :: Eq a => a -> Last a -> Bool # maximum :: Ord a => Last a -> a # | |
Traversable Last | |
Applicative Last | |
Functor Last | |
Monad Last | |
Generic1 Last | |
Monoid (Last a) | |
Semigroup (Last a) | |
Generic (Last a) | |
Read a => Read (Last a) | |
Show a => Show (Last a) | |
Eq a => Eq (Last a) | |
Ord a => Ord (Last a) | |
type Rep1 Last | |
type Rep (Last a) | |
Instances
Foldable Dual | |
Defined in Data.Foldable Methods fold :: Monoid m => Dual m -> m foldMap :: Monoid m => (a -> m) -> Dual a -> m # foldMap' :: Monoid m => (a -> m) -> Dual a -> m foldr :: (a -> b -> b) -> b -> Dual a -> b # foldr' :: (a -> b -> b) -> b -> Dual a -> b foldl :: (b -> a -> b) -> b -> Dual a -> b # foldl' :: (b -> a -> b) -> b -> Dual a -> b foldr1 :: (a -> a -> a) -> Dual a -> a # foldl1 :: (a -> a -> a) -> Dual a -> a # elem :: Eq a => a -> Dual a -> Bool # maximum :: Ord a => Dual a -> a # | |
Traversable Dual | |
Applicative Dual | |
Functor Dual | |
Monad Dual | |
Generic1 Dual | |
Monoid a => Monoid (Dual a) | |
Semigroup a => Semigroup (Dual a) | |
Bounded a => Bounded (Dual a) | |
Generic (Dual a) | |
Read a => Read (Dual a) | |
Show a => Show (Dual a) | |
Eq a => Eq (Dual a) | |
Ord a => Ord (Dual a) | |
type Rep1 Dual | |
Defined in Data.Semigroup.Internal | |
type Rep (Dual a) | |
Defined in Data.Semigroup.Internal |
newtype Ap (f :: k -> Type) (a :: k) #
Instances
Generic1 (Ap f :: k -> Type) | |
MonadFail f => MonadFail (Ap f) | |
Defined in Data.Monoid | |
Foldable f => Foldable (Ap f) | |
Defined in Data.Foldable Methods fold :: Monoid m => Ap f m -> m foldMap :: Monoid m => (a -> m) -> Ap f a -> m # foldMap' :: Monoid m => (a -> m) -> Ap f a -> m foldr :: (a -> b -> b) -> b -> Ap f a -> b # foldr' :: (a -> b -> b) -> b -> Ap f a -> b foldl :: (b -> a -> b) -> b -> Ap f a -> b # foldl' :: (b -> a -> b) -> b -> Ap f a -> b foldr1 :: (a -> a -> a) -> Ap f a -> a # foldl1 :: (a -> a -> a) -> Ap f a -> a # elem :: Eq a => a -> Ap f a -> Bool # maximum :: Ord a => Ap f a -> a # | |
Traversable f => Traversable (Ap f) | |
Alternative f => Alternative (Ap f) | |
Applicative f => Applicative (Ap f) | |
Functor f => Functor (Ap f) | |
Monad f => Monad (Ap f) | |
MonadPlus f => MonadPlus (Ap f) | |
(Applicative f, Monoid a) => Monoid (Ap f a) | |
(Applicative f, Semigroup a) => Semigroup (Ap f a) | |
(Applicative f, Bounded a) => Bounded (Ap f a) | |
Enum (f a) => Enum (Ap f a) | |
Defined in Data.Monoid | |
Generic (Ap f a) | |
(Applicative f, Num a) => Num (Ap f a) | |
Read (f a) => Read (Ap f a) | |
Show (f a) => Show (Ap f a) | |
Eq (f a) => Eq (Ap f a) | |
Ord (f a) => Ord (Ap f a) | |
type Rep1 (Ap f :: k -> Type) | |
Defined in Data.Monoid | |
type Rep (Ap f a) | |
Defined in Data.Monoid |
newtype Alt (f :: k -> Type) (a :: k) #
Instances
Generic1 (Alt f :: k -> Type) | |
Foldable f => Foldable (Alt f) | |
Defined in Data.Foldable Methods fold :: Monoid m => Alt f m -> m foldMap :: Monoid m => (a -> m) -> Alt f a -> m # foldMap' :: Monoid m => (a -> m) -> Alt f a -> m foldr :: (a -> b -> b) -> b -> Alt f a -> b # foldr' :: (a -> b -> b) -> b -> Alt f a -> b foldl :: (b -> a -> b) -> b -> Alt f a -> b # foldl' :: (b -> a -> b) -> b -> Alt f a -> b foldr1 :: (a -> a -> a) -> Alt f a -> a # foldl1 :: (a -> a -> a) -> Alt f a -> a # elem :: Eq a => a -> Alt f a -> Bool # maximum :: Ord a => Alt f a -> a # minimum :: Ord a => Alt f a -> a # | |
Contravariant f => Contravariant (Alt f) | |
Traversable f => Traversable (Alt f) | |
Alternative f => Alternative (Alt f) | |
Applicative f => Applicative (Alt f) | |
Functor f => Functor (Alt f) | |
Monad f => Monad (Alt f) | |
MonadPlus f => MonadPlus (Alt f) | |
Alternative f => Monoid (Alt f a) | |
Alternative f => Semigroup (Alt f a) | |
Enum (f a) => Enum (Alt f a) | |
Generic (Alt f a) | |
Num (f a) => Num (Alt f a) | |
Read (f a) => Read (Alt f a) | |
Show (f a) => Show (Alt f a) | |
Eq (f a) => Eq (Alt f a) | |
Ord (f a) => Ord (Alt f a) | |
Defined in Data.Semigroup.Internal | |
type Rep1 (Alt f :: k -> Type) | |
Defined in Data.Semigroup.Internal | |
type Rep (Alt f a) | |
Defined in Data.Semigroup.Internal |