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sema4

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sema4

Semaphore using `async` and `await`

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npmnpm
Version
0.0.3
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sema4

pipeline status coverage report Code Climate maintainability Auto All Contributors Prettier Licence: MIT

A semaphore implementation using promises. A Fork of vercel/async-sema.

Table of Contents

Features

  • Universal - Works in all modern browsers, Node.js, and Deno and supports CLI usage.
  • Tested - Greater than 80% test coverage.
  • Typed - Out of the box TypeScript declarations.

Usage

Browsers Load sema4 directly from esm.sh
<script type="module">
  import { Sema } from 'https://esm.sh/sema4';
</script>
Deno Load sema4 directly from esm.sh
import { Sema } from 'https://esm.sh/sema4?dts';
Node 18+

Install with npm install sema4, or yarn add sema4

import { Sema } from 'sema4';

API

Sema

Constructor(maxConcurrency, { initFn, pauseFn, resumeFn, capacity })

NameTypeOptionalDefaultDescription
maxConcurrencyIntegerNohttps://gitlab.comThe maximum number of callers allowed to acquire the semaphore concurrently
options.initFnFunctionYes() => '1'The function that is used to initialize the tokens used to manage the semaphore
options.pauseFnFunctionYes*The function that is called to opportunistically request pausing the incoming stream of data, instead of piling up waiting promises and possibly running out of memory
options.resumeFnFunctionYes*N/AThe function that is called when there is room again to accept new waiters on the semaphore. This function must be declared if a pauseFn is declared
options.capacityIntegerYes10Sets the size of the pre-allocated waiting list inside the semaphore. This is typically used by high performance where the developer can make a rough estimate of the number of concurrent users of a semaphore.

async sema.drain()

Drains the semaphore and returns all the initialized tokens in an array. Draining is an ideal way to ensure there are no pending async tasks, for example before a process will terminate.

sema.waiting()

Returns the number of callers waiting on the semaphore, i.e. the number of pending promises.

sema.tryAcquire()

Attempt to acquire a token from the semaphore, if one is available immediately. Otherwise, return undefined.

async sema.acquire()

Acquire a token from the semaphore, thus decrement the number of available execution slots. If initFn is not used then the return value of the function can be discarded.

sema.release(token)

Release the semaphore, thus increment the number of free execution slots. If initFn is used then the token returned by acquire() should be given as an argument when calling this function.

createRateLimiter(rptu, { timeUnit, uniformDistribution })

Creates a rate limiter function that blocks with a promise whenever the rate limit is hit and resolves the promise once the call rate is within the limit.

NameTypeOptionalDefaultDescription
rptuIntegerNoNumber of tasks allowed per timeUnit
options.timeUnitIntegerYes1000Defines the width of the rate limiting window in milliseconds
options.uniformDistributionBooleanYesFalseEnforces a discrete uniform distribution over time. Setting the uniformDistribution option is mainly useful in a situation where the flow of rate limit function calls is continuous and and occurring faster than timeUnit (e.g. reading a file) and not enabling it would cause the maximum number of calls to resolve immediately (thus exhaust the limit immediately) and therefore the next bunch of calls would need to wait for timeUnit milliseconds. However if the flow is sparse then this option may make the code run slower with no advantages.

Examples

import { Sema } from 'sema4';

function foo() {
  const s = new Sema(
    4, // Allow 4 concurrent async calls
    {
      capacity: 100, // Preallocated space for 100 tokens
    },
  );

  async function fetchData(x) {
    await s.acquire();

    try {
      console.log(s.waiting() + ' calls to fetch are waiting');
      // Perform some async tasks here...
    } finally {
      s.release();
    }
  }

  return Promise.all(array.map(fetchData));
}
import { RateLimit } from 'sema4';

async function bar() {
  const lim = RateLimit(5); // Limit to 5 tasks per default timeUnit

  for (let i = 0; i < n; i++) {
    await lim();
    // Perform some async tasks here...
  }
}

Contributors

In addition to the contributors of the parent repository vercel/async-sema, these lovely people have helped keep this library going.

Justin Dalrymple

Keywords

semaphore

FAQs

Package last updated on 13 Dec 2023

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