591 lines
16 KiB
TypeScript
591 lines
16 KiB
TypeScript
/**
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* @since 2.3.0
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*/
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import { Applicative2 } from './Applicative'
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import { Apply2 } from './Apply'
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import { Chain2 } from './Chain'
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import { FromIO2 } from './FromIO'
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import { FromReader2 } from './FromReader'
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import { FromTask2 } from './FromTask'
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import { Functor2 } from './Functor'
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import { IO } from './IO'
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import { Monad2 } from './Monad'
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import { MonadIO2 } from './MonadIO'
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import { MonadTask2 } from './MonadTask'
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import { Monoid } from './Monoid'
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import { Pointed2 } from './Pointed'
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import * as R from './Reader'
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import * as RIO from './ReaderIO'
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import { ReadonlyNonEmptyArray } from './ReadonlyNonEmptyArray'
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import { Semigroup } from './Semigroup'
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import * as T from './Task'
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import ReaderIO = RIO.ReaderIO
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import Task = T.Task
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/**
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* @category model
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* @since 2.3.0
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*/
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export interface ReaderTask<R, A> {
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(r: R): Task<A>
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}
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/**
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* @category conversions
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* @since 2.3.0
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*/
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export declare const fromReader: <R, A>(fa: R.Reader<R, A>) => ReaderTask<R, A>
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/**
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* @category conversions
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* @since 2.3.0
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*/
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export declare const fromTask: <A, R = unknown>(fa: Task<A>) => ReaderTask<R, A>
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/**
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* @category conversions
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* @since 2.3.0
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*/
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export declare const fromIO: <A, R = unknown>(fa: IO<A>) => ReaderTask<R, A>
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/**
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* @category conversions
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* @since 2.13.0
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*/
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export declare const fromReaderIO: <R, A>(fa: ReaderIO<R, A>) => ReaderTask<R, A>
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/**
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* Changes the value of the local context during the execution of the action `ma` (similar to `Contravariant`'s
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* `contramap`).
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*
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* @since 2.3.0
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*/
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export declare const local: <R2, R1>(f: (r2: R2) => R1) => <A>(ma: ReaderTask<R1, A>) => ReaderTask<R2, A>
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/**
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* Less strict version of [`asksReaderTask`](#asksreadertask).
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*
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* The `W` suffix (short for **W**idening) means that the environment types will be merged.
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*
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* @category constructors
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* @since 2.11.0
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*/
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export declare const asksReaderTaskW: <R1, R2, A>(f: (r1: R1) => ReaderTask<R2, A>) => ReaderTask<R1 & R2, A>
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/**
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* Effectfully accesses the environment.
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*
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* @category constructors
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* @since 2.11.0
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*/
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export declare const asksReaderTask: <R, A>(f: (r: R) => ReaderTask<R, A>) => ReaderTask<R, 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 2.3.0
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*/
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export declare const map: <A, B>(f: (a: A) => B) => <R>(fa: ReaderTask<R, A>) => ReaderTask<R, B>
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/**
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* @since 2.3.0
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*/
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export declare const ap: <R, A>(fa: ReaderTask<R, A>) => <B>(fab: ReaderTask<R, (a: A) => B>) => ReaderTask<R, B>
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/**
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* Less strict version of [`ap`](#ap).
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*
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* The `W` suffix (short for **W**idening) means that the environment types will be merged.
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*
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* @since 2.8.0
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*/
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export declare const apW: <R2, A>(
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fa: ReaderTask<R2, A>
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) => <R1, B>(fab: ReaderTask<R1, (a: A) => B>) => ReaderTask<R1 & R2, B>
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/**
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* @category constructors
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* @since 2.3.0
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*/
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export declare const of: <R = unknown, A = never>(a: A) => ReaderTask<R, 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 2.3.0
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*/
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export declare const chain: <A, R, B>(f: (a: A) => ReaderTask<R, B>) => (ma: ReaderTask<R, A>) => ReaderTask<R, B>
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/**
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* Less strict version of [`chain`](#chain).
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*
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* The `W` suffix (short for **W**idening) means that the environment types will be merged.
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*
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* @category sequencing
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* @since 2.6.7
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*/
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export declare const chainW: <R2, A, B>(
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f: (a: A) => ReaderTask<R2, B>
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) => <R1>(ma: ReaderTask<R1, A>) => ReaderTask<R1 & R2, B>
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/**
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* Less strict version of [`flatten`](#flatten).
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*
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* The `W` suffix (short for **W**idening) means that the environment types will be merged.
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*
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* @category sequencing
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* @since 2.11.0
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*/
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export declare const flattenW: <R1, R2, A>(mma: ReaderTask<R1, ReaderTask<R2, A>>) => ReaderTask<R1 & R2, A>
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/**
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* @category sequencing
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* @since 2.3.0
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*/
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export declare const flatten: <R, A>(mma: ReaderTask<R, ReaderTask<R, A>>) => ReaderTask<R, A>
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/**
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* @category type lambdas
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* @since 2.3.0
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*/
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export declare const URI = 'ReaderTask'
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/**
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* @category type lambdas
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* @since 2.3.0
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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 URItoKind2<E, A> {
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readonly [URI]: ReaderTask<E, A>
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}
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}
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/**
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* @category instances
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* @since 2.7.0
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*/
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export declare const Functor: Functor2<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) => <E, B>(fab: ReaderTask<E, (a: A) => B>) => ReaderTask<E, 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: Pointed2<URI>
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/**
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* Runs computations in parallel.
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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 ApplyPar: Apply2<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 2.3.0
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*/
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export declare const apFirst: <E, B>(second: ReaderTask<E, B>) => <A>(first: ReaderTask<E, A>) => ReaderTask<E, 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 2.3.0
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*/
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export declare const apSecond: <E, B>(second: ReaderTask<E, B>) => <A>(first: ReaderTask<E, A>) => ReaderTask<E, B>
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/**
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* Runs computations in parallel.
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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 ApplicativePar: Applicative2<URI>
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/**
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* Runs computations sequentially.
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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 ApplySeq: Apply2<URI>
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/**
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* Runs computations sequentially.
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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 ApplicativeSeq: Applicative2<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: Chain2<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 Monad: Monad2<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 MonadIO: MonadIO2<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 MonadTask: MonadTask2<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 2.3.0
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*/
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export declare const chainFirst: <A, R, B>(
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f: (a: A) => ReaderTask<R, B>
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) => (first: ReaderTask<R, A>) => ReaderTask<R, A>
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/**
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* Less strict version of [`chainFirst`](#chainfirst).
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*
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* The `W` suffix (short for **W**idening) means that the environment types will be merged.
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*
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* @category sequencing
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* @since 2.11.0
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*/
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export declare const chainFirstW: <R2, A, B>(
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f: (a: A) => ReaderTask<R2, B>
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) => <R1>(ma: ReaderTask<R1, A>) => ReaderTask<R1 & R2, A>
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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 FromIO: FromIO2<URI>
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/**
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* @category lifting
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* @since 2.4.0
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*/
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export declare const fromIOK: <A extends ReadonlyArray<unknown>, B>(
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f: (...a: A) => IO<B>
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) => <R = unknown>(...a: A) => ReaderTask<R, B>
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/**
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* @category sequencing
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* @since 2.4.0
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*/
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export declare const chainIOK: <A, B>(f: (a: A) => IO<B>) => <R>(first: ReaderTask<R, A>) => ReaderTask<R, B>
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/**
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* @category sequencing
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* @since 2.10.0
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*/
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export declare const chainFirstIOK: <A, B>(f: (a: A) => IO<B>) => <R>(first: ReaderTask<R, A>) => ReaderTask<R, A>
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/**
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* @category instances
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* @since 2.11.0
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*/
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export declare const FromReader: FromReader2<URI>
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/**
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* Reads the current context.
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*
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* @category constructors
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* @since 2.3.0
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*/
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export declare const ask: <R>() => ReaderTask<R, R>
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/**
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* Projects a value from the global context in a `ReaderTask`.
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*
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* @category constructors
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* @since 2.3.0
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*/
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export declare const asks: <R, A>(f: (r: R) => A) => ReaderTask<R, A>
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/**
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* @category lifting
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* @since 2.11.0
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*/
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export declare const fromReaderK: <A extends ReadonlyArray<unknown>, R, B>(
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f: (...a: A) => R.Reader<R, B>
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) => (...a: A) => ReaderTask<R, B>
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/**
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* @category sequencing
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* @since 2.11.0
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*/
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export declare const chainReaderK: <A, R, B>(f: (a: A) => R.Reader<R, B>) => (ma: ReaderTask<R, A>) => ReaderTask<R, B>
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/**
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* Less strict version of [`chainReaderK`](#chainreaderk).
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*
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* The `W` suffix (short for **W**idening) means that the environment types will be merged.
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*
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* @category sequencing
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* @since 2.11.0
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*/
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export declare const chainReaderKW: <A, R1, B>(
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f: (a: A) => R.Reader<R1, B>
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) => <R2>(ma: ReaderTask<R2, A>) => ReaderTask<R1 & R2, B>
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/**
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* @category sequencing
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* @since 2.11.0
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*/
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export declare const chainFirstReaderK: <A, R, B>(
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f: (a: A) => R.Reader<R, B>
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) => (ma: ReaderTask<R, A>) => ReaderTask<R, A>
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/**
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* Less strict version of [`chainFirstReaderK`](#chainfirstreaderk).
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*
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* The `W` suffix (short for **W**idening) means that the environment types will be merged.
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*
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* @category sequencing
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* @since 2.11.0
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*/
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export declare const chainFirstReaderKW: <A, R1, B>(
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f: (a: A) => R.Reader<R1, B>
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) => <R2>(ma: ReaderTask<R2, A>) => ReaderTask<R1 & R2, A>
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/**
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* @category lifting
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* @since 2.13.0
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*/
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export declare const fromReaderIOK: <A extends readonly unknown[], R, B>(
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f: (...a: A) => RIO.ReaderIO<R, B>
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) => (...a: A) => ReaderTask<R, B>
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/**
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* Less strict version of [`chainReaderIOK`](#chainreaderiok).
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*
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* @category sequencing
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* @since 2.13.0
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*/
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export declare const chainReaderIOKW: <A, R2, B>(
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f: (a: A) => ReaderIO<R2, B>
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) => <R1>(ma: ReaderTask<R1, A>) => ReaderTask<R1 & R2, B>
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/**
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* @category sequencing
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* @since 2.13.0
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*/
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export declare const chainReaderIOK: <A, R, B>(
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f: (a: A) => ReaderIO<R, B>
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) => (ma: ReaderTask<R, A>) => ReaderTask<R, B>
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/**
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* Less strict version of [`chainFirstReaderIOK`](#chainfirstreaderiok).
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*
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* @category sequencing
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* @since 2.13.0
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*/
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export declare const chainFirstReaderIOKW: <A, R2, B>(
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f: (a: A) => ReaderIO<R2, B>
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) => <R1>(ma: ReaderTask<R1, A>) => ReaderTask<R1 & R2, A>
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/**
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* @category sequencing
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* @since 2.13.0
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*/
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export declare const chainFirstReaderIOK: <A, R, B>(
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f: (a: A) => ReaderIO<R, B>
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) => (ma: ReaderTask<R, A>) => ReaderTask<R, A>
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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 FromTask: FromTask2<URI>
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/**
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* @category lifting
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* @since 2.4.0
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*/
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export declare const fromTaskK: <A extends ReadonlyArray<unknown>, B>(
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f: (...a: A) => T.Task<B>
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) => <R = unknown>(...a: A) => ReaderTask<R, B>
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/**
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* @category sequencing
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* @since 2.4.0
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*/
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export declare const chainTaskK: <A, B>(f: (a: A) => T.Task<B>) => <R>(first: ReaderTask<R, A>) => ReaderTask<R, B>
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/**
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* @category sequencing
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* @since 2.10.0
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*/
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export declare const chainFirstTaskK: <A, B>(f: (a: A) => T.Task<B>) => <R>(first: ReaderTask<R, A>) => ReaderTask<R, A>
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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: ReaderTask<unknown, {}>
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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>(
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name: N
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) => <E, A>(fa: ReaderTask<E, A>) => ReaderTask<E, { 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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) => <E>(fa: ReaderTask<E, A>) => ReaderTask<E, { 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, E, B>(
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name: Exclude<N, keyof A>,
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f: (a: A) => ReaderTask<E, B>
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) => (ma: ReaderTask<E, A>) => ReaderTask<E, { readonly [K in N | keyof A]: K extends keyof A ? A[K] : B }>
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/**
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* The `W` suffix (short for **W**idening) means that the environment types will be merged.
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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 bindW: <N extends string, A, R2, B>(
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name: Exclude<N, keyof A>,
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f: (a: A) => ReaderTask<R2, B>
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) => <R1>(fa: ReaderTask<R1, A>) => ReaderTask<
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R1 & R2,
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{
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readonly [K in keyof A | N]: K extends keyof A ? A[K] : B
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}
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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 apS: <N extends string, A, E, B>(
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name: Exclude<N, keyof A>,
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fb: ReaderTask<E, B>
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) => (fa: ReaderTask<E, A>) => ReaderTask<E, { readonly [K in N | keyof A]: K extends keyof A ? A[K] : B }>
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/**
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* Less strict version of [`apS`](#aps).
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*
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* The `W` suffix (short for **W**idening) means that the environment types will be merged.
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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 apSW: <A, N extends string, R2, B>(
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name: Exclude<N, keyof A>,
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fb: ReaderTask<R2, B>
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) => <R1>(fa: ReaderTask<R1, A>) => ReaderTask<
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R1 & R2,
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{
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readonly [K in keyof A | N]: K extends keyof A ? A[K] : B
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}
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>
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/**
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* @since 2.11.0
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*/
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export declare const ApT: ReaderTask<unknown, readonly []>
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/**
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* Equivalent to `ReadonlyNonEmptyArray#traverseWithIndex(Applicative)`.
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*
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* @category traversing
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* @since 2.11.0
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*/
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export declare const traverseReadonlyNonEmptyArrayWithIndex: <A, R, B>(
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f: (index: number, a: A) => ReaderTask<R, B>
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) => (as: ReadonlyNonEmptyArray<A>) => ReaderTask<R, ReadonlyNonEmptyArray<B>>
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/**
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* Equivalent to `ReadonlyArray#traverseWithIndex(Applicative)`.
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*
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* @category traversing
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* @since 2.11.0
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*/
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export declare const traverseReadonlyArrayWithIndex: <A, R, B>(
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f: (index: number, a: A) => ReaderTask<R, B>
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) => (as: readonly A[]) => ReaderTask<R, readonly B[]>
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/**
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* Equivalent to `ReadonlyNonEmptyArray#traverseWithIndex(ApplicativeSeq)`.
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*
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* @category traversing
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* @since 2.11.0
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*/
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export declare const traverseReadonlyNonEmptyArrayWithIndexSeq: <R, A, B>(
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f: (index: number, a: A) => ReaderTask<R, B>
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) => (as: ReadonlyNonEmptyArray<A>) => ReaderTask<R, ReadonlyNonEmptyArray<B>>
|
|
/**
|
|
* Equivalent to `ReadonlyArray#traverseWithIndex(ApplicativeSeq)`.
|
|
*
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* @category traversing
|
|
* @since 2.11.0
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|
*/
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export declare const traverseReadonlyArrayWithIndexSeq: <R, A, B>(
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|
f: (index: number, a: A) => ReaderTask<R, B>
|
|
) => (as: readonly A[]) => ReaderTask<R, readonly B[]>
|
|
/**
|
|
* Equivalent to `ReadonlyArray#traverseWithIndex(Applicative)`.
|
|
*
|
|
* @category traversing
|
|
* @since 2.9.0
|
|
*/
|
|
export declare const traverseArrayWithIndex: <R, A, B>(
|
|
f: (index: number, a: A) => ReaderTask<R, B>
|
|
) => (as: ReadonlyArray<A>) => ReaderTask<R, ReadonlyArray<B>>
|
|
/**
|
|
* Equivalent to `ReadonlyArray#traverseWithIndex(Applicative)`.
|
|
*
|
|
* @category traversing
|
|
* @since 2.9.0
|
|
*/
|
|
export declare const traverseArray: <R, A, B>(
|
|
f: (a: A) => ReaderTask<R, B>
|
|
) => (as: readonly A[]) => ReaderTask<R, readonly B[]>
|
|
/**
|
|
* Equivalent to `ReadonlyArray#sequence(Applicative)`.
|
|
*
|
|
* @category traversing
|
|
* @since 2.9.0
|
|
*/
|
|
export declare const sequenceArray: <R, A>(arr: ReadonlyArray<ReaderTask<R, A>>) => ReaderTask<R, ReadonlyArray<A>>
|
|
/**
|
|
* Equivalent to `ReadonlyArray#traverseWithIndex(ApplicativeSeq)`.
|
|
*
|
|
* @category traversing
|
|
* @since 2.10.0
|
|
*/
|
|
export declare const traverseSeqArrayWithIndex: <R, A, B>(
|
|
f: (index: number, a: A) => ReaderTask<R, B>
|
|
) => (as: ReadonlyArray<A>) => ReaderTask<R, ReadonlyArray<B>>
|
|
/**
|
|
* Equivalent to `ReadonlyArray#traverse(ApplicativeSeq)`.
|
|
*
|
|
* @category traversing
|
|
* @since 2.10.0
|
|
*/
|
|
export declare const traverseSeqArray: <R, A, B>(
|
|
f: (a: A) => ReaderTask<R, B>
|
|
) => (as: readonly A[]) => ReaderTask<R, readonly B[]>
|
|
/**
|
|
* Use `traverseReadonlyArrayWithIndexSeq` instead.
|
|
*
|
|
* @category zone of death
|
|
* @since 2.10.0
|
|
* @deprecated
|
|
*/
|
|
export declare const sequenceSeqArray: <R, A>(arr: ReadonlyArray<ReaderTask<R, A>>) => ReaderTask<R, ReadonlyArray<A>>
|
|
/**
|
|
* This instance is deprecated, use small, specific instances instead.
|
|
* For example if a function needs a `Functor` instance, pass `RT.Functor` instead of `RT.readerTask`
|
|
* (where `RT` is from `import RT from 'fp-ts/ReaderTask'`)
|
|
*
|
|
* @category zone of death
|
|
* @since 2.3.0
|
|
* @deprecated
|
|
*/
|
|
export declare const readerTask: MonadTask2<URI>
|
|
/**
|
|
* This instance is deprecated, use small, specific instances instead.
|
|
* For example if a function needs a `Functor` instance, pass `RT.Functor` instead of `RT.readerTaskSeq`
|
|
* (where `RT` is from `import RT from 'fp-ts/ReaderTask'`)
|
|
*
|
|
* @category zone of death
|
|
* @since 2.3.0
|
|
* @deprecated
|
|
*/
|
|
export declare const readerTaskSeq: typeof readerTask
|
|
/**
|
|
* Use [`getApplySemigroup`](./Apply.ts.html#getapplysemigroup) instead.
|
|
*
|
|
* @category zone of death
|
|
* @since 2.3.0
|
|
* @deprecated
|
|
*/
|
|
export declare const getSemigroup: <R, A>(S: Semigroup<A>) => Semigroup<ReaderTask<R, A>>
|
|
/**
|
|
* Use [`getApplicativeMonoid`](./Applicative.ts.html#getapplicativemonoid) instead.
|
|
*
|
|
* @category zone of death
|
|
* @since 2.3.0
|
|
* @deprecated
|
|
*/
|
|
export declare const getMonoid: <R, A>(M: Monoid<A>) => Monoid<ReaderTask<R, A>>
|
|
/**
|
|
* @category zone of death
|
|
* @since 2.4.0
|
|
* @deprecated
|
|
*/
|
|
export declare function run<R, A>(ma: ReaderTask<R, A>, r: R): Promise<A>
|