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  1. enumFromThen :: forall (m :: Type -> Type) a r . (Monad m, Enum a) => a -> a -> Stream (Of a) m r

    streaming Streaming.Prelude

    An infinite sequence of enumerable values at a fixed distance, determined by the first and second values. See the discussion of enumFrom

    >>> S.print $ S.take 3 $ S.enumFromThen 100 200
    100
    200
    300
    

  2. enumFromN :: forall (v :: Type -> Type) (n :: Nat) a . (KnownNat n, Vector v a, Num a) => a -> Vector v n a

    vector-sized Data.Vector.Generic.Sized

    O(n) Yield a vector of length n containing the values x, x+1, ... x + (n - 1). The length is inferred from the type.

  3. enumFromN' :: forall (v :: Type -> Type) (n :: Nat) a p . (KnownNat n, Vector v a, Num a) => a -> p n -> Vector v n a

    vector-sized Data.Vector.Generic.Sized

    O(n) Yield a vector of length n containing the values x, x+1, ..., x + (n - 1) The length is given explicitly as a Proxy argument.

  4. enumFromStepN :: forall (v :: Type -> Type) (n :: Nat) a . (KnownNat n, Vector v a, Num a) => a -> a -> Vector v n a

    vector-sized Data.Vector.Generic.Sized

    O(n) Yield a vector of the given length containing the values x, x+y, x+2y, ... x + (n - 1)y. The length is inferred from the type.

  5. enumFromStepN' :: forall (v :: Type -> Type) (n :: Nat) a p . (KnownNat n, Vector v a, Num a) => a -> a -> p n -> Vector v n a

    vector-sized Data.Vector.Generic.Sized

    O(n) Yield a vector of the given length containing the values x, x+y, x+2y, ..., x + (n - 1)y. The length is given explicitly as a Proxy argument.

  6. enumFromN :: forall (n :: Nat) a . (KnownNat n, Prim a, Num a) => a -> Vector n a

    vector-sized Data.Vector.Primitive.Sized

    O(n) Yield a vector of length n containing the values x, x+1, ..., x + (n - 1). The length is inferred from the type.

  7. enumFromN' :: forall (n :: Nat) a p . (KnownNat n, Prim a, Num a) => a -> p n -> Vector n a

    vector-sized Data.Vector.Primitive.Sized

    O(n) Yield a vector of length n containing the values x, x+1, ..., x + (n - 1). The length is given explicitly as a Proxy argument.

  8. enumFromStepN :: forall (n :: Nat) a . (KnownNat n, Prim a, Num a) => a -> a -> Vector n a

    vector-sized Data.Vector.Primitive.Sized

    O(n) Yield a vector of the given length containing the values x, x+y, x+2y, ..., x + (n - 1)y. The length is inferred from the type.

  9. enumFromStepN' :: forall (n :: Nat) a p . (KnownNat n, Prim a, Num a) => a -> a -> p n -> Vector n a

    vector-sized Data.Vector.Primitive.Sized

    O(n) Yield a vector of the given length containing the values x, x+y, x+2y, ..., x + (n - 1)y. The length is given explicitly as a Proxy argument.

  10. enumFromN :: forall (n :: Nat) a . (KnownNat n, Num a) => a -> Vector n a

    vector-sized Data.Vector.Sized

    O(n) Yield a vector of length n containing the values x, x+1, ..., x + (n - 1). The length is inferred from the type.

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