264 lines
6.5 KiB
TypeScript
264 lines
6.5 KiB
TypeScript
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/**
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* @since 2.0.0
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*/
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import { Alt1 } from './Alt'
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import { Applicative1 } from './Applicative'
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import { Apply1 } from './Apply'
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import { Chain1 } from './Chain'
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import { ChainRec1 } from './ChainRec'
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import { Comonad1 } from './Comonad'
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import { Eq } from './Eq'
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import { Foldable1 } from './Foldable'
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import { Functor1 } from './Functor'
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import { Monad1 } from './Monad'
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import { Monoid } from './Monoid'
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import { Pointed1 } from './Pointed'
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import { Show } from './Show'
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import { PipeableTraverse1, Traversable1 } from './Traversable'
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/**
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* @category model
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* @since 2.0.0
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*/
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export declare type Identity<A> = A
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/**
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* `map` can be used to turn functions `(a: A) => B` into functions `(fa: F<A>) => F<B>` whose argument and return types
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* use the type constructor `F` to represent some computational context.
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*
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* @category mapping
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* @since 2.0.0
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*/
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export declare const map: <A, B>(f: (a: A) => B) => (fa: Identity<A>) => Identity<B>
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/**
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* @since 2.0.0
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*/
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export declare const ap: <A>(fa: Identity<A>) => <B>(fab: Identity<(a: A) => B>) => Identity<B>
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/**
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* @category constructors
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* @since 2.0.0
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*/
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export declare const of: <A>(a: A) => Identity<A>
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/**
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* Composes computations in sequence, using the return value of one computation to determine the next computation.
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*
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* @category sequencing
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* @since 2.0.0
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*/
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export declare const chain: <A, B>(f: (a: A) => Identity<B>) => (ma: Identity<A>) => Identity<B>
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/**
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* @since 2.0.0
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*/
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export declare const extend: <A, B>(f: (wa: Identity<A>) => B) => (wa: Identity<A>) => Identity<B>
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/**
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* @category Extract
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* @since 2.6.2
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*/
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export declare const extract: <A>(wa: Identity<A>) => A
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/**
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* @since 2.0.0
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*/
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export declare const duplicate: <A>(ma: Identity<A>) => Identity<Identity<A>>
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/**
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* @category sequencing
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* @since 2.0.0
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*/
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export declare const flatten: <A>(mma: Identity<Identity<A>>) => Identity<A>
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/**
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* @category folding
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* @since 2.0.0
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*/
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export declare const reduce: <A, B>(b: B, f: (b: B, a: A) => B) => (fa: Identity<A>) => B
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/**
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* @category folding
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* @since 2.0.0
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*/
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export declare const foldMap: <M>(M: Monoid<M>) => <A>(f: (a: A) => M) => (fa: Identity<A>) => M
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/**
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* @category folding
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* @since 2.0.0
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*/
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export declare const reduceRight: <A, B>(b: B, f: (a: A, b: B) => B) => (fa: Identity<A>) => B
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/**
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* @category traversing
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* @since 2.6.3
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*/
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export declare const traverse: PipeableTraverse1<URI>
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/**
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* @category traversing
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* @since 2.6.3
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*/
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export declare const sequence: Traversable1<URI>['sequence']
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/**
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* Less strict version of [`alt`](#alt).
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*
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* The `W` suffix (short for **W**idening) means that the return types will be merged.
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*
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* @category error handling
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* @since 2.9.0
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*/
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export declare const altW: <B>(that: () => Identity<B>) => <A>(fa: Identity<A>) => Identity<A | B>
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/**
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* Identifies an associative operation on a type constructor. It is similar to `Semigroup`, except that it applies to
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* types of kind `* -> *`.
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*
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* @category error handling
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* @since 2.0.0
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*/
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export declare const alt: <A>(that: () => Identity<A>) => (fa: Identity<A>) => Identity<A>
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/**
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* @category type lambdas
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* @since 2.0.0
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*/
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export declare const URI = 'Identity'
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/**
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* @category type lambdas
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* @since 2.0.0
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*/
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export declare type URI = typeof URI
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declare module './HKT' {
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interface URItoKind<A> {
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readonly [URI]: Identity<A>
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}
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}
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/**
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* @category instances
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* @since 2.0.0
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*/
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export declare const getShow: <A>(S: Show<A>) => Show<Identity<A>>
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/**
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* @category instances
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* @since 2.0.0
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*/
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export declare const getEq: <A>(E: Eq<A>) => Eq<Identity<A>>
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/**
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* @category instances
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* @since 2.7.0
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*/
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export declare const Functor: Functor1<URI>
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/**
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* @category mapping
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* @since 2.10.0
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*/
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export declare const flap: <A>(a: A) => <B>(fab: (a: A) => B) => B
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/**
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* @category instances
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* @since 2.10.0
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*/
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export declare const Pointed: Pointed1<URI>
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/**
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* @category instances
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* @since 2.10.0
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*/
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export declare const Apply: Apply1<URI>
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/**
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* Combine two effectful actions, keeping only the result of the first.
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*
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* @since 2.0.0
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*/
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export declare const apFirst: <B>(second: B) => <A>(first: A) => A
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/**
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* Combine two effectful actions, keeping only the result of the second.
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*
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* @since 2.0.0
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*/
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export declare const apSecond: <B>(second: B) => <A>(first: A) => B
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/**
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* @category instances
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* @since 2.7.0
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*/
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export declare const Applicative: Applicative1<URI>
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/**
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* @category instances
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* @since 2.10.0
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*/
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export declare const Chain: Chain1<URI>
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/**
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* @category instances
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* @since 2.7.0
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*/
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export declare const Monad: Monad1<URI>
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/**
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* Composes computations in sequence, using the return value of one computation to determine the next computation and
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* keeping only the result of the first.
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*
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* @category sequencing
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* @since 2.0.0
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*/
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export declare const chainFirst: <A, B>(f: (a: A) => B) => (first: A) => A
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/**
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* @category instances
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* @since 2.7.0
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*/
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export declare const Foldable: Foldable1<URI>
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/**
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* @category instances
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* @since 2.7.0
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*/
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export declare const Traversable: Traversable1<URI>
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/**
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* @category instances
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* @since 2.7.0
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*/
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export declare const Alt: Alt1<URI>
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/**
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* @category instances
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* @since 2.7.0
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*/
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export declare const Comonad: Comonad1<URI>
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/**
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* @category instances
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* @since 2.7.0
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*/
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export declare const ChainRec: ChainRec1<URI>
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/**
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* @category do notation
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* @since 2.9.0
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*/
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export declare const Do: Identity<{}>
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/**
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* @category do notation
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* @since 2.8.0
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*/
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export declare const bindTo: <N extends string>(name: N) => <A>(fa: A) => { readonly [K in N]: A }
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declare const let_: <N extends string, A, B>(
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name: Exclude<N, keyof A>,
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f: (a: A) => B
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) => (fa: A) => { readonly [K in N | keyof A]: K extends keyof A ? A[K] : B }
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export {
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/**
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* @category do notation
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* @since 2.13.0
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*/
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let_ as let
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}
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/**
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* @category do notation
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* @since 2.8.0
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*/
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export declare const bind: <N extends string, A, B>(
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name: Exclude<N, keyof A>,
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f: (a: A) => B
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) => (ma: A) => { readonly [K in N | keyof A]: K extends keyof A ? A[K] : B }
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/**
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* @category do notation
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* @since 2.8.0
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*/
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export declare const apS: <N extends string, A, B>(
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name: Exclude<N, keyof A>,
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fb: B
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) => (fa: A) => { readonly [K in N | keyof A]: K extends keyof A ? A[K] : B }
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/**
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* This instance is deprecated, use small, specific instances instead.
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* For example if a function needs a `Functor` instance, pass `I.Functor` instead of `I.identity`
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* (where `I` is from `import I from 'fp-ts/Identity'`)
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*
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* @category zone of death
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* @since 2.0.0
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* @deprecated
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*/
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export declare const identity: Monad1<URI> &
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Foldable1<URI> &
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Traversable1<URI> &
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Alt1<URI> &
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Comonad1<URI> &
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ChainRec1<URI>
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