| Copyright | (C) 2010-2015 Maximilian Bolingbroke 2015-2019 Oleg Grenrus |
|---|---|
| License | BSD-3-Clause (see the file LICENSE) |
| Maintainer | Oleg Grenrus <oleg.grenrus@iki.fi> |
| Safe Haskell | Safe |
| Language | Haskell2010 |
Algebra.Lattice.Op
Description
Documentation
The opposite lattice of a given lattice. That is, switch meets and joins.
Instances
| Foldable Op Source # | |||||
Defined in Algebra.Lattice.Op Methods foldMap :: Monoid m => (a -> m) -> Op a -> m foldMap' :: Monoid m => (a -> m) -> Op a -> m foldr :: (a -> b -> b) -> b -> Op a -> b foldr' :: (a -> b -> b) -> b -> Op a -> b foldl :: (b -> a -> b) -> b -> Op a -> b foldl' :: (b -> a -> b) -> b -> Op a -> b foldr1 :: (a -> a -> a) -> Op a -> a foldl1 :: (a -> a -> a) -> Op a -> a | |||||
| Traversable Op Source # | |||||
| Applicative Op Source # | |||||
| Functor Op Source # | |||||
| Monad Op Source # | |||||
| Generic1 Op Source # | |||||
Defined in Algebra.Lattice.Op Associated Types
| |||||
| Arbitrary a => Arbitrary (Op a) Source # | |||||
| CoArbitrary a => CoArbitrary (Op a) Source # | |||||
Defined in Algebra.Lattice.Op Methods coarbitrary :: Op a -> Gen b -> Gen b | |||||
| Function a => Function (Op a) Source # | |||||
Defined in Algebra.Lattice.Op | |||||
| Data a => Data (Op a) Source # | |||||
Defined in Algebra.Lattice.Op Methods gfoldl :: (forall d b. Data d => c (d -> b) -> d -> c b) -> (forall g. g -> c g) -> Op a -> c (Op a) gunfold :: (forall b r. Data b => c (b -> r) -> c r) -> (forall r. r -> c r) -> Constr -> c (Op a) dataTypeOf :: Op a -> DataType dataCast1 :: Typeable t => (forall d. Data d => c (t d)) -> Maybe (c (Op a)) dataCast2 :: Typeable t => (forall d e. (Data d, Data e) => c (t d e)) -> Maybe (c (Op a)) gmapT :: (forall b. Data b => b -> b) -> Op a -> Op a gmapQl :: (r -> r' -> r) -> r -> (forall d. Data d => d -> r') -> Op a -> r gmapQr :: forall r r'. (r' -> r -> r) -> r -> (forall d. Data d => d -> r') -> Op a -> r gmapQ :: (forall d. Data d => d -> u) -> Op a -> [u] gmapQi :: Int -> (forall d. Data d => d -> u) -> Op a -> u gmapM :: Monad m => (forall d. Data d => d -> m d) -> Op a -> m (Op a) gmapMp :: MonadPlus m => (forall d. Data d => d -> m d) -> Op a -> m (Op a) gmapMo :: MonadPlus m => (forall d. Data d => d -> m d) -> Op a -> m (Op a) | |||||
| Generic (Op a) Source # | |||||
Defined in Algebra.Lattice.Op Associated Types
| |||||
| Read a => Read (Op a) Source # | |||||
Defined in Algebra.Lattice.Op | |||||
| Show a => Show (Op a) Source # | |||||
| NFData a => NFData (Op a) Source # | |||||
Defined in Algebra.Lattice.Op | |||||
| Eq a => Eq (Op a) Source # | |||||
| Ord a => Ord (Op a) Source # | |||||
| Hashable a => Hashable (Op a) Source # | |||||
Defined in Algebra.Lattice.Op | |||||
| BoundedMeetSemiLattice a => BoundedJoinSemiLattice (Op a) Source # | |||||
Defined in Algebra.Lattice.Op | |||||
| BoundedJoinSemiLattice a => BoundedMeetSemiLattice (Op a) Source # | |||||
Defined in Algebra.Lattice.Op | |||||
| Lattice a => Lattice (Op a) Source # | |||||
| PartialOrd a => PartialOrd (Op a) Source # | |||||
| Finite a => Finite (Op a) Source # | |||||
Defined in Algebra.Lattice.Op | |||||
| Universe a => Universe (Op a) Source # | |||||
Defined in Algebra.Lattice.Op | |||||
| type Rep1 Op Source # | |||||
Defined in Algebra.Lattice.Op type Rep1 Op = D1 ('MetaData "Op" "Algebra.Lattice.Op" "lattices-2.2.1.1-J46lACPEOTBKo73SIhecCd" 'True) (C1 ('MetaCons "Op" 'PrefixI 'True) (S1 ('MetaSel ('Just "getOp") 'NoSourceUnpackedness 'NoSourceStrictness 'DecidedLazy) Par1)) | |||||
| type Rep (Op a) Source # | |||||
Defined in Algebra.Lattice.Op type Rep (Op a) = D1 ('MetaData "Op" "Algebra.Lattice.Op" "lattices-2.2.1.1-J46lACPEOTBKo73SIhecCd" 'True) (C1 ('MetaCons "Op" 'PrefixI 'True) (S1 ('MetaSel ('Just "getOp") 'NoSourceUnpackedness 'NoSourceStrictness 'DecidedLazy) (Rec0 a))) | |||||