<A>(value: A): (self: PubSub<A>) => Effect.Effect<boolean>
<A>(self: PubSub<A>, value: A): Effect.Effect<boolean>Publishes a message to the PubSub as an Effect, returning whether the
message was accepted.
When to use
Use when you need to publish from effectful code and let the configured PubSub strategy handle surplus messages.
Details
The effect succeeds with false if the PubSub is shut down. If the message
cannot be accepted immediately, the configured strategy decides how surplus
messages are handled.
Example (Publishing a message)
import { Effect, PubSub } from "effect"
const program = Effect.gen(function*() {
const pubsub = yield* PubSub.bounded<string>(10)
// Publish a message
const published = yield* PubSub.publish(pubsub, "Hello World")
console.log("Message published:", published) // true
yield* Effect.scoped(Effect.gen(function*() {
const subscription = yield* PubSub.subscribe(pubsub)
yield* PubSub.publish(pubsub, "Hello")
const message = yield* PubSub.take(subscription)
console.log("Received:", message) // "Hello"
}))
})export const const publish: {
<A>(value: A): (
self: PubSub<A>
) => Effect.Effect<boolean>
<A>(
self: PubSub<A>,
value: A
): Effect.Effect<boolean>
}
Publishes a message to the PubSub as an Effect, returning whether the
message was accepted.
When to use
Use when you need to publish from effectful code and let the configured
PubSub strategy handle surplus messages.
Details
The effect succeeds with false if the PubSub is shut down. If the message
cannot be accepted immediately, the configured strategy decides how surplus
messages are handled.
Example (Publishing a message)
import { Effect, PubSub } from "effect"
const program = Effect.gen(function*() {
const pubsub = yield* PubSub.bounded<string>(10)
// Publish a message
const published = yield* PubSub.publish(pubsub, "Hello World")
console.log("Message published:", published) // true
yield* Effect.scoped(Effect.gen(function*() {
const subscription = yield* PubSub.subscribe(pubsub)
yield* PubSub.publish(pubsub, "Hello")
const message = yield* PubSub.take(subscription)
console.log("Received:", message) // "Hello"
}))
})
publish: {
<function (type parameter) A in <A>(value: A): (self: PubSub<A>) => Effect.Effect<boolean>A>(value: Avalue: function (type parameter) A in <A>(value: A): (self: PubSub<A>) => Effect.Effect<boolean>A): (self: PubSub<A>(parameter) self: {
pubsub: PubSub.Atomic<A>;
subscribers: PubSub.Subscribers<A>;
scope: Scope.Closeable;
shutdownHook: Latch.Latch;
shutdownFlag: MutableRef.MutableRef<boolean>;
strategy: PubSub.Strategy<A>;
pipe: { <A>(this: A): A; <A, B = never>(this: A, ab: (_: A) => B): B; <A, B = never, C = never>(this: A, ab: (_: A) => B, bc: (_: B) => C): C; <A, B = never, C = never, D = never>(this: A, ab: (_: A) => B, bc: (_: B) => C, cd: (_: C) => D): D; <…;
}
self: interface PubSub<in out A>A PubSub<A> is an asynchronous message hub into which publishers can publish
messages of type A and subscribers can subscribe to take messages of type
A.
Example (Publishing and subscribing to messages)
import { Effect, PubSub } from "effect"
const program = Effect.gen(function*() {
// Create a bounded PubSub with capacity 10
const pubsub = yield* PubSub.bounded<string>(10)
// Subscribe and consume messages
yield* Effect.scoped(Effect.gen(function*() {
const subscription = yield* PubSub.subscribe(pubsub)
// Publish messages
yield* PubSub.publish(pubsub, "Hello")
yield* PubSub.publish(pubsub, "World")
const message1 = yield* PubSub.take(subscription)
const message2 = yield* PubSub.take(subscription)
console.log(message1, message2) // "Hello", "World"
}))
})
Companion namespace containing the low-level building blocks used by
PubSub, including atomic implementations, backing subscriptions, replay
windows, and delivery strategies.
PubSub<function (type parameter) A in <A>(value: A): (self: PubSub<A>) => Effect.Effect<boolean>A>) => import EffectEffect.interface Effect<out A, out E = never, out R = never>The Effect interface defines a value that lazily describes a workflow or
job. The workflow requires some context R, and may fail with an error of
type E, or succeed with a value of type A.
When to use
Use when you need to represent a lazy, composable workflow that can require
services, fail with a typed error, or succeed with a typed value.
Details
Effect values model resourceful interaction with the outside world,
including synchronous, asynchronous, concurrent, and parallel interaction.
They use a fiber-based concurrency model, with built-in support for
scheduling, fine-grained interruption, structured concurrency, and high
scalability.
To run an Effect value, you need a Runtime, which is a type that is
capable of executing Effect values.
Effect<boolean>
<function (type parameter) A in <A>(self: PubSub<A>, value: A): Effect.Effect<boolean>A>(self: PubSub<A>(parameter) self: {
pubsub: PubSub.Atomic<A>;
subscribers: PubSub.Subscribers<A>;
scope: Scope.Closeable;
shutdownHook: Latch.Latch;
shutdownFlag: MutableRef.MutableRef<boolean>;
strategy: PubSub.Strategy<A>;
pipe: { <A>(this: A): A; <A, B = never>(this: A, ab: (_: A) => B): B; <A, B = never, C = never>(this: A, ab: (_: A) => B, bc: (_: B) => C): C; <A, B = never, C = never, D = never>(this: A, ab: (_: A) => B, bc: (_: B) => C, cd: (_: C) => D): D; <…;
}
self: interface PubSub<in out A>A PubSub<A> is an asynchronous message hub into which publishers can publish
messages of type A and subscribers can subscribe to take messages of type
A.
Example (Publishing and subscribing to messages)
import { Effect, PubSub } from "effect"
const program = Effect.gen(function*() {
// Create a bounded PubSub with capacity 10
const pubsub = yield* PubSub.bounded<string>(10)
// Subscribe and consume messages
yield* Effect.scoped(Effect.gen(function*() {
const subscription = yield* PubSub.subscribe(pubsub)
// Publish messages
yield* PubSub.publish(pubsub, "Hello")
yield* PubSub.publish(pubsub, "World")
const message1 = yield* PubSub.take(subscription)
const message2 = yield* PubSub.take(subscription)
console.log(message1, message2) // "Hello", "World"
}))
})
Companion namespace containing the low-level building blocks used by
PubSub, including atomic implementations, backing subscriptions, replay
windows, and delivery strategies.
PubSub<function (type parameter) A in <A>(self: PubSub<A>, value: A): Effect.Effect<boolean>A>, value: Avalue: function (type parameter) A in <A>(self: PubSub<A>, value: A): Effect.Effect<boolean>A): import EffectEffect.interface Effect<out A, out E = never, out R = never>The Effect interface defines a value that lazily describes a workflow or
job. The workflow requires some context R, and may fail with an error of
type E, or succeed with a value of type A.
When to use
Use when you need to represent a lazy, composable workflow that can require
services, fail with a typed error, or succeed with a typed value.
Details
Effect values model resourceful interaction with the outside world,
including synchronous, asynchronous, concurrent, and parallel interaction.
They use a fiber-based concurrency model, with built-in support for
scheduling, fine-grained interruption, structured concurrency, and high
scalability.
To run an Effect value, you need a Runtime, which is a type that is
capable of executing Effect values.
Effect<boolean>
} = dual<(...args: Array<any>) => any, <A>(self: PubSub<A>, value: A) => Effect.Effect<boolean>>(arity: 2, body: <A>(self: PubSub<A>, value: A) => Effect.Effect<boolean>): ((...args: Array<any>) => any) & (<A>(self: PubSub<A>, value: A) => Effect.Effect<boolean>) (+1 overload)Creates a function that can be called in data-first style or data-last
(pipe-friendly) style.
When to use
Use to expose one implementation through both direct and pipe-friendly
call styles.
Details
Pass either the arity of the uncurried function or a predicate that decides
whether the current call is data-first. Arity is the common case. Use a
predicate when optional arguments make arity ambiguous.
Example (Selecting data-first or data-last style by arity)
import { Function, pipe } from "effect"
const sum = Function.dual<
(that: number) => (self: number) => number,
(self: number, that: number) => number
>(2, (self, that) => self + that)
console.log(sum(2, 3)) // 5
console.log(pipe(2, sum(3))) // 5
Example (Defining overloads with call signatures)
import { Function, pipe } from "effect"
const sum: {
(that: number): (self: number) => number
(self: number, that: number): number
} = Function.dual(2, (self: number, that: number): number => self + that)
console.log(sum(2, 3)) // 5
console.log(pipe(2, sum(3))) // 5
Example (Selecting data-first or data-last style with a predicate)
import { Function, pipe } from "effect"
const sum = Function.dual<
(that: number) => (self: number) => number,
(self: number, that: number) => number
>(
(args) => args.length === 2,
(self, that) => self + that
)
console.log(sum(2, 3)) // 5
console.log(pipe(2, sum(3))) // 5
dual(2, <function (type parameter) A in <A>(self: PubSub<A>, value: A): Effect.Effect<boolean>A>(self: PubSub<A>(parameter) self: {
pubsub: PubSub.Atomic<A>;
subscribers: PubSub.Subscribers<A>;
scope: Scope.Closeable;
shutdownHook: Latch.Latch;
shutdownFlag: MutableRef.MutableRef<boolean>;
strategy: PubSub.Strategy<A>;
pipe: { <A>(this: A): A; <A, B = never>(this: A, ab: (_: A) => B): B; <A, B = never, C = never>(this: A, ab: (_: A) => B, bc: (_: B) => C): C; <A, B = never, C = never, D = never>(this: A, ab: (_: A) => B, bc: (_: B) => C, cd: (_: C) => D): D; <…;
}
self: interface PubSub<in out A>A PubSub<A> is an asynchronous message hub into which publishers can publish
messages of type A and subscribers can subscribe to take messages of type
A.
Example (Publishing and subscribing to messages)
import { Effect, PubSub } from "effect"
const program = Effect.gen(function*() {
// Create a bounded PubSub with capacity 10
const pubsub = yield* PubSub.bounded<string>(10)
// Subscribe and consume messages
yield* Effect.scoped(Effect.gen(function*() {
const subscription = yield* PubSub.subscribe(pubsub)
// Publish messages
yield* PubSub.publish(pubsub, "Hello")
yield* PubSub.publish(pubsub, "World")
const message1 = yield* PubSub.take(subscription)
const message2 = yield* PubSub.take(subscription)
console.log(message1, message2) // "Hello", "World"
}))
})
Companion namespace containing the low-level building blocks used by
PubSub, including atomic implementations, backing subscriptions, replay
windows, and delivery strategies.
PubSub<function (type parameter) A in <A>(self: PubSub<A>, value: A): Effect.Effect<boolean>A>, value: Avalue: function (type parameter) A in <A>(self: PubSub<A>, value: A): Effect.Effect<boolean>A): import EffectEffect.interface Effect<out A, out E = never, out R = never>The Effect interface defines a value that lazily describes a workflow or
job. The workflow requires some context R, and may fail with an error of
type E, or succeed with a value of type A.
When to use
Use when you need to represent a lazy, composable workflow that can require
services, fail with a typed error, or succeed with a typed value.
Details
Effect values model resourceful interaction with the outside world,
including synchronous, asynchronous, concurrent, and parallel interaction.
They use a fiber-based concurrency model, with built-in support for
scheduling, fine-grained interruption, structured concurrency, and high
scalability.
To run an Effect value, you need a Runtime, which is a type that is
capable of executing Effect values.
Effect<boolean> =>
import EffectEffect.const suspend: <A, E, R>(
effect: LazyArg<Effect<A, E, R>>
) => Effect<A, E, R>
Creates an Effect lazily, delaying construction until it is needed.
When to use
Use when you need to defer the evaluation of an effect until it is required.
Details
suspend takes a thunk that represents an effect and delays creating it
until the suspended effect is evaluated. This is useful for optimizing
expensive computations, managing circular dependencies such as recursive
functions, and helping TypeScript unify return types when branches construct
different effects. Any side effects or scoped captures inside the thunk are
re-executed on each invocation.
Example (Lazily evaluating side effects)
import { Effect } from "effect"
let i = 0
const bad = Effect.succeed(i++)
const good = Effect.suspend(() => Effect.succeed(i++))
console.log(Effect.runSync(bad)) // Output: 0
console.log(Effect.runSync(bad)) // Output: 0
console.log(Effect.runSync(good)) // Output: 1
console.log(Effect.runSync(good)) // Output: 2
Example (Suspending recursive Fibonacci evaluation)
import { Effect } from "effect"
const blowsUp = (n: number): Effect.Effect<number> =>
n < 2
? Effect.succeed(1)
: Effect.zipWith(blowsUp(n - 1), blowsUp(n - 2), (a, b) => a + b)
// console.log(Effect.runSync(blowsUp(32)))
// crash: JavaScript heap out of memory
const allGood = (n: number): Effect.Effect<number> =>
n < 2
? Effect.succeed(1)
: Effect.zipWith(
Effect.suspend(() => allGood(n - 1)),
Effect.suspend(() => allGood(n - 2)),
(a, b) => a + b
)
console.log(Effect.runSync(allGood(32)))
// Output: 3524578
Example (Helping TypeScript infer recursive effect types)
import { Effect } from "effect"
// Without suspend, TypeScript may struggle with type inference.
// Inferred type:
// (a: number, b: number) =>
// Effect<never, Error, never> | Effect<number, never, never>
const withoutSuspend = (a: number, b: number) =>
b === 0
? Effect.fail(new Error("Cannot divide by zero"))
: Effect.succeed(a / b)
// Using suspend to unify return types.
// Inferred type:
// (a: number, b: number) => Effect<number, Error, never>
const withSuspend = (a: number, b: number) =>
Effect.suspend(() =>
b === 0
? Effect.fail(new Error("Cannot divide by zero"))
: Effect.succeed(a / b)
)
suspend(() => {
if (self: PubSub<A>(parameter) self: {
pubsub: PubSub.Atomic<A>;
subscribers: PubSub.Subscribers<A>;
scope: Scope.Closeable;
shutdownHook: Latch.Latch;
shutdownFlag: MutableRef.MutableRef<boolean>;
strategy: PubSub.Strategy<A>;
pipe: { <A>(this: A): A; <A, B = never>(this: A, ab: (_: A) => B): B; <A, B = never, C = never>(this: A, ab: (_: A) => B, bc: (_: B) => C): C; <A, B = never, C = never, D = never>(this: A, ab: (_: A) => B, bc: (_: B) => C, cd: (_: C) => D): D; <…;
}
self.PubSub<in out A>.shutdownFlag: MutableRef.MutableRef<boolean>(property) PubSub<in out A>.shutdownFlag: {
current: T;
pipe: { <A>(this: A): A; <A, B = never>(this: A, ab: (_: A) => B): B; <A, B = never, C = never>(this: A, ab: (_: A) => B, bc: (_: B) => C): C; <A, B = never, C = never, D = never>(this: A, ab: (_: A) => B, bc: (_: B) => C, cd: (_: C) => D): D; <…;
toString: () => string;
toJSON: () => unknown;
}
shutdownFlag.MutableRef<boolean>.current: booleancurrent) {
return import EffectEffect.const succeed: <A>(value: A) => Effect<A>Creates an Effect that always succeeds with a given value.
When to use
Use when an effect should complete successfully with a specific value without any errors
or external dependencies.
Example (Creating a successful effect)
import { Effect } from "effect"
// Creating an effect that represents a successful scenario
//
// ┌─── Effect<number, never, never>
// ▼
const success = Effect.succeed(42)
succeed(false)
}
if (self: PubSub<A>(parameter) self: {
pubsub: PubSub.Atomic<A>;
subscribers: PubSub.Subscribers<A>;
scope: Scope.Closeable;
shutdownHook: Latch.Latch;
shutdownFlag: MutableRef.MutableRef<boolean>;
strategy: PubSub.Strategy<A>;
pipe: { <A>(this: A): A; <A, B = never>(this: A, ab: (_: A) => B): B; <A, B = never, C = never>(this: A, ab: (_: A) => B, bc: (_: B) => C): C; <A, B = never, C = never, D = never>(this: A, ab: (_: A) => B, bc: (_: B) => C, cd: (_: C) => D): D; <…;
}
self.PubSub<A>.pubsub: PubSub.Atomic<A>(property) PubSub<A>.pubsub: {
capacity: number;
isEmpty: () => boolean;
isFull: () => boolean;
size: () => number;
publish: (value: A) => boolean;
publishAll: (elements: Iterable<A>) => Array<A>;
slide: () => void;
subscribe: () => PubSub.BackingSubscription<A>;
replayWindow: () => PubSub.ReplayWindow<A>;
}
pubsub.PubSub<in out A>.Atomic<A>.publish(value: A): booleanpublish(value: Avalue)) {
self: PubSub<A>(parameter) self: {
pubsub: PubSub.Atomic<A>;
subscribers: PubSub.Subscribers<A>;
scope: Scope.Closeable;
shutdownHook: Latch.Latch;
shutdownFlag: MutableRef.MutableRef<boolean>;
strategy: PubSub.Strategy<A>;
pipe: { <A>(this: A): A; <A, B = never>(this: A, ab: (_: A) => B): B; <A, B = never, C = never>(this: A, ab: (_: A) => B, bc: (_: B) => C): C; <A, B = never, C = never, D = never>(this: A, ab: (_: A) => B, bc: (_: B) => C, cd: (_: C) => D): D; <…;
}
self.PubSub<A>.strategy: PubSub.Strategy<A>(property) PubSub<A>.strategy: {
shutdown: Effect.Effect<void>;
handleSurplus: (pubsub: PubSub.Atomic<A>, subscribers: PubSub.Subscribers<A>, elements: Iterable<A>, isShutdown: MutableRef.MutableRef<boolean>) => Effect.Effect<boolean>;
onPubSubEmptySpaceUnsafe: (pubsub: PubSub.Atomic<A>, subscribers: PubSub.Subscribers<A>) => void;
completePollersUnsafe: (pubsub: PubSub.Atomic<A>, subscribers: PubSub.Subscribers<A>, subscription: PubSub.BackingSubscription<A>, pollers: MutableList.MutableList<Deferred.Deferred<A, never>>) => void;
completeSubscribersUnsafe: (pubsub: PubSub.Atomic<A>, subscribers: PubSub.Subscribers<A>) => void;
}
strategy.PubSub<in out A>.Strategy<A>.completeSubscribersUnsafe(pubsub: PubSub<in out A>.Atomic<A>, subscribers: PubSub.Subscribers<A>): voidDescribes how publishers should signal to subscribers waiting for
additional values from the PubSub that new values are available.
completeSubscribersUnsafe(self: PubSub<A>(parameter) self: {
pubsub: PubSub.Atomic<A>;
subscribers: PubSub.Subscribers<A>;
scope: Scope.Closeable;
shutdownHook: Latch.Latch;
shutdownFlag: MutableRef.MutableRef<boolean>;
strategy: PubSub.Strategy<A>;
pipe: { <A>(this: A): A; <A, B = never>(this: A, ab: (_: A) => B): B; <A, B = never, C = never>(this: A, ab: (_: A) => B, bc: (_: B) => C): C; <A, B = never, C = never, D = never>(this: A, ab: (_: A) => B, bc: (_: B) => C, cd: (_: C) => D): D; <…;
}
self.PubSub<A>.pubsub: PubSub.Atomic<A>(property) PubSub<A>.pubsub: {
capacity: number;
isEmpty: () => boolean;
isFull: () => boolean;
size: () => number;
publish: (value: A) => boolean;
publishAll: (elements: Iterable<A>) => Array<A>;
slide: () => void;
subscribe: () => PubSub.BackingSubscription<A>;
replayWindow: () => PubSub.ReplayWindow<A>;
}
pubsub, self: PubSub<A>(parameter) self: {
pubsub: PubSub.Atomic<A>;
subscribers: PubSub.Subscribers<A>;
scope: Scope.Closeable;
shutdownHook: Latch.Latch;
shutdownFlag: MutableRef.MutableRef<boolean>;
strategy: PubSub.Strategy<A>;
pipe: { <A>(this: A): A; <A, B = never>(this: A, ab: (_: A) => B): B; <A, B = never, C = never>(this: A, ab: (_: A) => B, bc: (_: B) => C): C; <A, B = never, C = never, D = never>(this: A, ab: (_: A) => B, bc: (_: B) => C, cd: (_: C) => D): D; <…;
}
self.PubSub<A>.subscribers: PubSub.Subscribers<A>(property) PubSub<A>.subscribers: {
clear: () => void;
delete: (key: PubSub.BackingSubscription<A>) => boolean;
forEach: (callbackfn: (value: Set<MutableList.MutableList<Deferred.Deferred<A, never>>>, key: PubSub.BackingSubscription<A>, map: Map<PubSub.BackingSubscription<A>, Set<MutableList.MutableList<Deferred.Deferred<A, never>>>>) => void, thisArg?: any)…;
get: (key: PubSub.BackingSubscription<A>) => Set<MutableList.MutableList<Deferred.Deferred<A, never>>> | undefined;
has: (key: PubSub.BackingSubscription<A>) => boolean;
set: (key: PubSub.BackingSubscription<A>, value: Set<MutableList.MutableList<Deferred.Deferred<A, never>>>) => PubSub.Subscribers<A>;
size: number;
entries: () => MapIterator<[PubSub.BackingSubscription<A>, Set<MutableList.MutableList<Deferred.Deferred<A, never>>>]>;
keys: () => MapIterator<PubSub.BackingSubscription<A>>;
values: () => MapIterator<Set<MutableList.MutableList<Deferred.Deferred<A, never>>>>;
}
subscribers)
return import EffectEffect.const succeed: <A>(value: A) => Effect<A>Creates an Effect that always succeeds with a given value.
When to use
Use when an effect should complete successfully with a specific value without any errors
or external dependencies.
Example (Creating a successful effect)
import { Effect } from "effect"
// Creating an effect that represents a successful scenario
//
// ┌─── Effect<number, never, never>
// ▼
const success = Effect.succeed(42)
succeed(true)
}
return self: PubSub<A>(parameter) self: {
pubsub: PubSub.Atomic<A>;
subscribers: PubSub.Subscribers<A>;
scope: Scope.Closeable;
shutdownHook: Latch.Latch;
shutdownFlag: MutableRef.MutableRef<boolean>;
strategy: PubSub.Strategy<A>;
pipe: { <A>(this: A): A; <A, B = never>(this: A, ab: (_: A) => B): B; <A, B = never, C = never>(this: A, ab: (_: A) => B, bc: (_: B) => C): C; <A, B = never, C = never, D = never>(this: A, ab: (_: A) => B, bc: (_: B) => C, cd: (_: C) => D): D; <…;
}
self.PubSub<A>.strategy: PubSub.Strategy<A>(property) PubSub<A>.strategy: {
shutdown: Effect.Effect<void>;
handleSurplus: (pubsub: PubSub.Atomic<A>, subscribers: PubSub.Subscribers<A>, elements: Iterable<A>, isShutdown: MutableRef.MutableRef<boolean>) => Effect.Effect<boolean>;
onPubSubEmptySpaceUnsafe: (pubsub: PubSub.Atomic<A>, subscribers: PubSub.Subscribers<A>) => void;
completePollersUnsafe: (pubsub: PubSub.Atomic<A>, subscribers: PubSub.Subscribers<A>, subscription: PubSub.BackingSubscription<A>, pollers: MutableList.MutableList<Deferred.Deferred<A, never>>) => void;
completeSubscribersUnsafe: (pubsub: PubSub.Atomic<A>, subscribers: PubSub.Subscribers<A>) => void;
}
strategy.function PubSub(pubsub: PubSub.Atomic<A>, subscribers: PubSub.Subscribers<A>, elements: Iterable<A>, isShutdown: MutableRef.MutableRef<boolean>): Effect.Effect<boolean>Describes how publishers should signal to subscribers that they are
waiting for space to become available in the PubSub.
handleSurplus(
self: PubSub<A>(parameter) self: {
pubsub: PubSub.Atomic<A>;
subscribers: PubSub.Subscribers<A>;
scope: Scope.Closeable;
shutdownHook: Latch.Latch;
shutdownFlag: MutableRef.MutableRef<boolean>;
strategy: PubSub.Strategy<A>;
pipe: { <A>(this: A): A; <A, B = never>(this: A, ab: (_: A) => B): B; <A, B = never, C = never>(this: A, ab: (_: A) => B, bc: (_: B) => C): C; <A, B = never, C = never, D = never>(this: A, ab: (_: A) => B, bc: (_: B) => C, cd: (_: C) => D): D; <…;
}
self.PubSub<A>.pubsub: PubSub.Atomic<A>(property) PubSub<A>.pubsub: {
capacity: number;
isEmpty: () => boolean;
isFull: () => boolean;
size: () => number;
publish: (value: A) => boolean;
publishAll: (elements: Iterable<A>) => Array<A>;
slide: () => void;
subscribe: () => PubSub.BackingSubscription<A>;
replayWindow: () => PubSub.ReplayWindow<A>;
}
pubsub,
self: PubSub<A>(parameter) self: {
pubsub: PubSub.Atomic<A>;
subscribers: PubSub.Subscribers<A>;
scope: Scope.Closeable;
shutdownHook: Latch.Latch;
shutdownFlag: MutableRef.MutableRef<boolean>;
strategy: PubSub.Strategy<A>;
pipe: { <A>(this: A): A; <A, B = never>(this: A, ab: (_: A) => B): B; <A, B = never, C = never>(this: A, ab: (_: A) => B, bc: (_: B) => C): C; <A, B = never, C = never, D = never>(this: A, ab: (_: A) => B, bc: (_: B) => C, cd: (_: C) => D): D; <…;
}
self.PubSub<A>.subscribers: PubSub.Subscribers<A>(property) PubSub<A>.subscribers: {
clear: () => void;
delete: (key: PubSub.BackingSubscription<A>) => boolean;
forEach: (callbackfn: (value: Set<MutableList.MutableList<Deferred.Deferred<A, never>>>, key: PubSub.BackingSubscription<A>, map: Map<PubSub.BackingSubscription<A>, Set<MutableList.MutableList<Deferred.Deferred<A, never>>>>) => void, thisArg?: any)…;
get: (key: PubSub.BackingSubscription<A>) => Set<MutableList.MutableList<Deferred.Deferred<A, never>>> | undefined;
has: (key: PubSub.BackingSubscription<A>) => boolean;
set: (key: PubSub.BackingSubscription<A>, value: Set<MutableList.MutableList<Deferred.Deferred<A, never>>>) => PubSub.Subscribers<A>;
size: number;
entries: () => MapIterator<[PubSub.BackingSubscription<A>, Set<MutableList.MutableList<Deferred.Deferred<A, never>>>]>;
keys: () => MapIterator<PubSub.BackingSubscription<A>>;
values: () => MapIterator<Set<MutableList.MutableList<Deferred.Deferred<A, never>>>>;
}
subscribers,
[value: Avalue],
self: PubSub<A>(parameter) self: {
pubsub: PubSub.Atomic<A>;
subscribers: PubSub.Subscribers<A>;
scope: Scope.Closeable;
shutdownHook: Latch.Latch;
shutdownFlag: MutableRef.MutableRef<boolean>;
strategy: PubSub.Strategy<A>;
pipe: { <A>(this: A): A; <A, B = never>(this: A, ab: (_: A) => B): B; <A, B = never, C = never>(this: A, ab: (_: A) => B, bc: (_: B) => C): C; <A, B = never, C = never, D = never>(this: A, ab: (_: A) => B, bc: (_: B) => C, cd: (_: C) => D): D; <…;
}
self.PubSub<in out A>.shutdownFlag: MutableRef.MutableRef<boolean>(property) PubSub<in out A>.shutdownFlag: {
current: T;
pipe: { <A>(this: A): A; <A, B = never>(this: A, ab: (_: A) => B): B; <A, B = never, C = never>(this: A, ab: (_: A) => B, bc: (_: B) => C): C; <A, B = never, C = never, D = never>(this: A, ab: (_: A) => B, bc: (_: B) => C, cd: (_: C) => D): D; <…;
toString: () => string;
toJSON: () => unknown;
}
shutdownFlag
)
}))