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Within LTS Haskell 24.6 (ghc-9.10.2)
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scanSequence :: (b -> a -> b) -> b -> Sequence a -> Sequence bmath-functions Numeric.Series Analog of scanl for sequence.
class C sh =>
ShapeSequence shcomfort-array Data.Array.Comfort.Storable.Dim2 No documentation available.
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comfort-array Data.Array.Comfort.Storable.Dim2 No documentation available.
bisequenceL :: (Bicrosswalk t, Align f) => t (f a) (f b) -> f (t a b)semialign Data.Crosswalk No documentation available.
class HAp h =>
HSequence (h :: k -> Type -> l -> Type)sop-core Data.SOP A generalization of sequenceA.
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sop-core Data.SOP Corresponds to sequenceA. Lifts an applicative functor out of a structure. Instances:
hsequence', sequence'_NP :: (SListI xs , Applicative f) => NP (f :.: g) xs -> f (NP g xs ) hsequence', sequence'_NS :: (SListI xs , Applicative f) => NS (f :.: g) xs -> f (NS g xs ) hsequence', sequence'_POP :: (SListI2 xss, Applicative f) => POP (f :.: g) xss -> f (POP g xss) hsequence', sequence'_SOP :: (SListI2 xss, Applicative f) => SOP (f :.: g) xss -> f (SOP g xss)
class HAp h =>
HSequence (h :: k -> Type -> l -> Type)sop-core Data.SOP.Classes A generalization of sequenceA.
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sop-core Data.SOP.Classes Corresponds to sequenceA. Lifts an applicative functor out of a structure. Instances:
hsequence', sequence'_NP :: (SListI xs , Applicative f) => NP (f :.: g) xs -> f (NP g xs ) hsequence', sequence'_NS :: (SListI xs , Applicative f) => NS (f :.: g) xs -> f (NS g xs ) hsequence', sequence'_POP :: (SListI2 xss, Applicative f) => POP (f :.: g) xss -> f (POP g xss) hsequence', sequence'_SOP :: (SListI2 xss, Applicative f) => SOP (f :.: g) xss -> f (SOP g xss)
class HAp h =>
HSequence (h :: k -> Type -> l -> Type)generics-sop Generics.SOP A generalization of sequenceA.
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generics-sop Generics.SOP Corresponds to sequenceA. Lifts an applicative functor out of a structure. Instances:
hsequence', sequence'_NP :: (SListI xs , Applicative f) => NP (f :.: g) xs -> f (NP g xs ) hsequence', sequence'_NS :: (SListI xs , Applicative f) => NS (f :.: g) xs -> f (NS g xs ) hsequence', sequence'_POP :: (SListI2 xss, Applicative f) => POP (f :.: g) xss -> f (POP g xss) hsequence', sequence'_SOP :: (SListI2 xss, Applicative f) => SOP (f :.: g) xss -> f (SOP g xss)