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The MIT License (MIT)
Copyright 2017 Andrey Sitnik <andrey@sitnik.ru>
Permission is hereby granted, free of charge, to any person obtaining a copy of
this software and associated documentation files (the "Software"), to deal in
the Software without restriction, including without limitation the rights to
use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of
the Software, and to permit persons to whom the Software is furnished to do so,
subject to the following conditions:
The above copyright notice and this permission notice shall be included in all
copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS
FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR
COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER
IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.

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# Nano ID
<img src="https://ai.github.io/nanoid/logo.svg" align="right"
alt="Nano ID logo by Anton Lovchikov" width="180" height="94">
**English** | [Русский](./README.ru.md) | [简体中文](./README.zh-CN.md) | [Bahasa Indonesia](./README.id-ID.md)
A tiny, secure, URL-friendly, unique string ID generator for JavaScript.
> “An amazing level of senseless perfectionism,
> which is simply impossible not to respect.”
* **Small.** 130 bytes (minified and gzipped). No dependencies.
[Size Limit] controls the size.
* **Fast.** It is 2 times faster than UUID.
* **Safe.** It uses hardware random generator. Can be used in clusters.
* **Short IDs.** It uses a larger alphabet than UUID (`A-Za-z0-9_-`).
So ID size was reduced from 36 to 21 symbols.
* **Portable.** Nano ID was ported
to [20 programming languages](#other-programming-languages).
```js
import { nanoid } from 'nanoid'
model.id = nanoid() //=> "V1StGXR8_Z5jdHi6B-myT"
```
Supports modern browsers, IE [with Babel], Node.js and React Native.
[online tool]: https://gitpod.io/#https://github.com/ai/nanoid/
[with Babel]: https://developer.epages.com/blog/coding/how-to-transpile-node-modules-with-babel-and-webpack-in-a-monorepo/
[Size Limit]: https://github.com/ai/size-limit
<a href="https://evilmartians.com/?utm_source=nanoid">
<img src="https://evilmartians.com/badges/sponsored-by-evil-martians.svg"
alt="Sponsored by Evil Martians" width="236" height="54">
</a>
## Docs
Read full docs **[here](https://github.com/ai/nanoid#readme)**.

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let random = async bytes => crypto.getRandomValues(new Uint8Array(bytes))
let customAlphabet = (alphabet, defaultSize = 21) => {
// First, a bitmask is necessary to generate the ID. The bitmask makes bytes
// values closer to the alphabet size. The bitmask calculates the closest
// `2^31 - 1` number, which exceeds the alphabet size.
// For example, the bitmask for the alphabet size 30 is 31 (00011111).
// `Math.clz32` is not used, because it is not available in browsers.
let mask = (2 << (Math.log(alphabet.length - 1) / Math.LN2)) - 1
// Though, the bitmask solution is not perfect since the bytes exceeding
// the alphabet size are refused. Therefore, to reliably generate the ID,
// the random bytes redundancy has to be satisfied.
// Note: every hardware random generator call is performance expensive,
// because the system call for entropy collection takes a lot of time.
// So, to avoid additional system calls, extra bytes are requested in advance.
// Next, a step determines how many random bytes to generate.
// The number of random bytes gets decided upon the ID size, mask,
// alphabet size, and magic number 1.6 (using 1.6 peaks at performance
// according to benchmarks).
// `-~f => Math.ceil(f)` if f is a float
// `-~i => i + 1` if i is an integer
let step = -~((1.6 * mask * defaultSize) / alphabet.length)
return async (size = defaultSize) => {
let id = ''
while (true) {
let bytes = crypto.getRandomValues(new Uint8Array(step))
// A compact alternative for `for (var i = 0; i < step; i++)`.
let i = step | 0
while (i--) {
// Adding `|| ''` refuses a random byte that exceeds the alphabet size.
id += alphabet[bytes[i] & mask] || ''
if (id.length === size) return id
}
}
}
}
let nanoid = async (size = 21) => {
let id = ''
let bytes = crypto.getRandomValues(new Uint8Array((size |= 0)))
// A compact alternative for `for (var i = 0; i < step; i++)`.
while (size--) {
// It is incorrect to use bytes exceeding the alphabet size.
// The following mask reduces the random byte in the 0-255 value
// range to the 0-63 value range. Therefore, adding hacks, such
// as empty string fallback or magic numbers, is unneccessary because
// the bitmask trims bytes down to the alphabet size.
let byte = bytes[size] & 63
if (byte < 36) {
// `0-9a-z`
id += byte.toString(36)
} else if (byte < 62) {
// `A-Z`
id += (byte - 26).toString(36).toUpperCase()
} else if (byte < 63) {
id += '_'
} else {
id += '-'
}
}
return id
}
module.exports = { nanoid, customAlphabet, random }

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let random = async bytes => crypto.getRandomValues(new Uint8Array(bytes))
let customAlphabet = (alphabet, defaultSize = 21) => {
let mask = (2 << (Math.log(alphabet.length - 1) / Math.LN2)) - 1
let step = -~((1.6 * mask * defaultSize) / alphabet.length)
return async (size = defaultSize) => {
let id = ''
while (true) {
let bytes = crypto.getRandomValues(new Uint8Array(step))
let i = step | 0
while (i--) {
id += alphabet[bytes[i] & mask] || ''
if (id.length === size) return id
}
}
}
}
let nanoid = async (size = 21) => {
let id = ''
let bytes = crypto.getRandomValues(new Uint8Array((size |= 0)))
while (size--) {
let byte = bytes[size] & 63
if (byte < 36) {
id += byte.toString(36)
} else if (byte < 62) {
id += (byte - 26).toString(36).toUpperCase()
} else if (byte < 63) {
id += '_'
} else {
id += '-'
}
}
return id
}
export { nanoid, customAlphabet, random }

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let crypto = require('crypto')
let { urlAlphabet } = require('../url-alphabet/index.cjs')
// `crypto.randomFill()` is a little faster than `crypto.randomBytes()`,
// because it is possible to use in combination with `Buffer.allocUnsafe()`.
let random = bytes =>
new Promise((resolve, reject) => {
// `Buffer.allocUnsafe()` is faster because it doesnt flush the memory.
// Memory flushing is unnecessary since the buffer allocation itself resets
// the memory with the new bytes.
crypto.randomFill(Buffer.allocUnsafe(bytes), (err, buf) => {
if (err) {
reject(err)
} else {
resolve(buf)
}
})
})
let customAlphabet = (alphabet, defaultSize = 21) => {
// First, a bitmask is necessary to generate the ID. The bitmask makes bytes
// values closer to the alphabet size. The bitmask calculates the closest
// `2^31 - 1` number, which exceeds the alphabet size.
// For example, the bitmask for the alphabet size 30 is 31 (00011111).
let mask = (2 << (31 - Math.clz32((alphabet.length - 1) | 1))) - 1
// Though, the bitmask solution is not perfect since the bytes exceeding
// the alphabet size are refused. Therefore, to reliably generate the ID,
// the random bytes redundancy has to be satisfied.
// Note: every hardware random generator call is performance expensive,
// because the system call for entropy collection takes a lot of time.
// So, to avoid additional system calls, extra bytes are requested in advance.
// Next, a step determines how many random bytes to generate.
// The number of random bytes gets decided upon the ID size, mask,
// alphabet size, and magic number 1.6 (using 1.6 peaks at performance
// according to benchmarks).
let step = Math.ceil((1.6 * mask * defaultSize) / alphabet.length)
let tick = (id, size = defaultSize) =>
random(step).then(bytes => {
// A compact alternative for `for (var i = 0; i < step; i++)`.
let i = step
while (i--) {
// Adding `|| ''` refuses a random byte that exceeds the alphabet size.
id += alphabet[bytes[i] & mask] || ''
if (id.length >= size) return id
}
return tick(id, size)
})
return size => tick('', size)
}
let nanoid = (size = 21) =>
random((size |= 0)).then(bytes => {
let id = ''
// A compact alternative for `for (var i = 0; i < step; i++)`.
while (size--) {
// It is incorrect to use bytes exceeding the alphabet size.
// The following mask reduces the random byte in the 0-255 value
// range to the 0-63 value range. Therefore, adding hacks, such
// as empty string fallback or magic numbers, is unneccessary because
// the bitmask trims bytes down to the alphabet size.
id += urlAlphabet[bytes[size] & 63]
}
return id
})
module.exports = { nanoid, customAlphabet, random }

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/**
* Generate secure URL-friendly unique ID. The non-blocking version.
*
* By default, the ID will have 21 symbols to have a collision probability
* similar to UUID v4.
*
* ```js
* import { nanoid } from 'nanoid/async'
* nanoid().then(id => {
* model.id = id
* })
* ```
*
* @param size Size of the ID. The default size is 21.
* @returns A promise with a random string.
*/
export function nanoid(size?: number): Promise<string>
/**
* A low-level function.
* Generate secure unique ID with custom alphabet. The non-blocking version.
*
* Alphabet must contain 256 symbols or less. Otherwise, the generator
* will not be secure.
*
* @param alphabet Alphabet used to generate the ID.
* @param defaultSize Size of the ID. The default size is 21.
* @returns A function that returns a promise with a random string.
*
* ```js
* import { customAlphabet } from 'nanoid/async'
* const nanoid = customAlphabet('0123456789абвгдеё', 5)
* nanoid().then(id => {
* model.id = id //=> "8ё56а"
* })
* ```
*/
export function customAlphabet(
alphabet: string,
defaultSize?: number
): (size?: number) => Promise<string>
/**
* Generate an array of random bytes collected from hardware noise.
*
* ```js
* import { random } from 'nanoid/async'
* random(5).then(bytes => {
* bytes //=> [10, 67, 212, 67, 89]
* })
* ```
*
* @param bytes Size of the array.
* @returns A promise with a random bytes array.
*/
export function random(bytes: number): Promise<Uint8Array>

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import crypto from 'crypto'
import { urlAlphabet } from '../url-alphabet/index.js'
let random = bytes =>
new Promise((resolve, reject) => {
crypto.randomFill(Buffer.allocUnsafe(bytes), (err, buf) => {
if (err) {
reject(err)
} else {
resolve(buf)
}
})
})
let customAlphabet = (alphabet, defaultSize = 21) => {
let mask = (2 << (31 - Math.clz32((alphabet.length - 1) | 1))) - 1
let step = Math.ceil((1.6 * mask * defaultSize) / alphabet.length)
let tick = (id, size = defaultSize) =>
random(step).then(bytes => {
let i = step
while (i--) {
id += alphabet[bytes[i] & mask] || ''
if (id.length >= size) return id
}
return tick(id, size)
})
return size => tick('', size)
}
let nanoid = (size = 21) =>
random((size |= 0)).then(bytes => {
let id = ''
while (size--) {
id += urlAlphabet[bytes[size] & 63]
}
return id
})
export { nanoid, customAlphabet, random }

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import { getRandomBytesAsync } from 'expo-random'
import { urlAlphabet } from '../url-alphabet/index.js'
let random = getRandomBytesAsync
let customAlphabet = (alphabet, defaultSize = 21) => {
let mask = (2 << (31 - Math.clz32((alphabet.length - 1) | 1))) - 1
let step = Math.ceil((1.6 * mask * defaultSize) / alphabet.length)
let tick = (id, size = defaultSize) =>
random(step).then(bytes => {
let i = step
while (i--) {
id += alphabet[bytes[i] & mask] || ''
if (id.length >= size) return id
}
return tick(id, size)
})
return size => tick('', size)
}
let nanoid = (size = 21) =>
random((size |= 0)).then(bytes => {
let id = ''
while (size--) {
id += urlAlphabet[bytes[size] & 63]
}
return id
})
export { nanoid, customAlphabet, random }

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{
"type": "module",
"main": "index.cjs",
"module": "index.js",
"react-native": {
"./index.js": "./index.native.js"
},
"browser": {
"./index.js": "./index.browser.js",
"./index.cjs": "./index.browser.cjs"
}
}

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#!/usr/bin/env node
let { nanoid, customAlphabet } = require('..')
function print(msg) {
process.stdout.write(msg + '\n')
}
function error(msg) {
process.stderr.write(msg + '\n')
process.exit(1)
}
if (process.argv.includes('--help') || process.argv.includes('-h')) {
print(`
Usage
$ nanoid [options]
Options
-s, --size Generated ID size
-a, --alphabet Alphabet to use
-h, --help Show this help
Examples
$ nanoid --s 15
S9sBF77U6sDB8Yg
$ nanoid --size 10 --alphabet abc
bcabababca`)
process.exit()
}
let alphabet, size
for (let i = 2; i < process.argv.length; i++) {
let arg = process.argv[i]
if (arg === '--size' || arg === '-s') {
size = Number(process.argv[i + 1])
i += 1
if (Number.isNaN(size) || size <= 0) {
error('Size must be positive integer')
}
} else if (arg === '--alphabet' || arg === '-a') {
alphabet = process.argv[i + 1]
i += 1
} else {
error('Unknown argument ' + arg)
}
}
if (alphabet) {
let customNanoid = customAlphabet(alphabet, size)
print(customNanoid())
} else {
print(nanoid(size))
}

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// This file replaces `index.js` in bundlers like webpack or Rollup,
// according to `browser` config in `package.json`.
let { urlAlphabet } = require('./url-alphabet/index.cjs')
let random = bytes => crypto.getRandomValues(new Uint8Array(bytes))
let customRandom = (alphabet, defaultSize, getRandom) => {
// First, a bitmask is necessary to generate the ID. The bitmask makes bytes
// values closer to the alphabet size. The bitmask calculates the closest
// `2^31 - 1` number, which exceeds the alphabet size.
// For example, the bitmask for the alphabet size 30 is 31 (00011111).
// `Math.clz32` is not used, because it is not available in browsers.
let mask = (2 << (Math.log(alphabet.length - 1) / Math.LN2)) - 1
// Though, the bitmask solution is not perfect since the bytes exceeding
// the alphabet size are refused. Therefore, to reliably generate the ID,
// the random bytes redundancy has to be satisfied.
// Note: every hardware random generator call is performance expensive,
// because the system call for entropy collection takes a lot of time.
// So, to avoid additional system calls, extra bytes are requested in advance.
// Next, a step determines how many random bytes to generate.
// The number of random bytes gets decided upon the ID size, mask,
// alphabet size, and magic number 1.6 (using 1.6 peaks at performance
// according to benchmarks).
// `-~f => Math.ceil(f)` if f is a float
// `-~i => i + 1` if i is an integer
let step = -~((1.6 * mask * defaultSize) / alphabet.length)
return (size = defaultSize) => {
let id = ''
while (true) {
let bytes = getRandom(step)
// A compact alternative for `for (var i = 0; i < step; i++)`.
let j = step | 0
while (j--) {
// Adding `|| ''` refuses a random byte that exceeds the alphabet size.
id += alphabet[bytes[j] & mask] || ''
if (id.length === size) return id
}
}
}
}
let customAlphabet = (alphabet, size = 21) =>
customRandom(alphabet, size, random)
let nanoid = (size = 21) =>
crypto.getRandomValues(new Uint8Array(size)).reduce((id, byte) => {
// It is incorrect to use bytes exceeding the alphabet size.
// The following mask reduces the random byte in the 0-255 value
// range to the 0-63 value range. Therefore, adding hacks, such
// as empty string fallback or magic numbers, is unneccessary because
// the bitmask trims bytes down to the alphabet size.
byte &= 63
if (byte < 36) {
// `0-9a-z`
id += byte.toString(36)
} else if (byte < 62) {
// `A-Z`
id += (byte - 26).toString(36).toUpperCase()
} else if (byte > 62) {
id += '-'
} else {
id += '_'
}
return id
}, '')
module.exports = { nanoid, customAlphabet, customRandom, urlAlphabet, random }

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import { urlAlphabet } from './url-alphabet/index.js'
let random = bytes => crypto.getRandomValues(new Uint8Array(bytes))
let customRandom = (alphabet, defaultSize, getRandom) => {
let mask = (2 << (Math.log(alphabet.length - 1) / Math.LN2)) - 1
let step = -~((1.6 * mask * defaultSize) / alphabet.length)
return (size = defaultSize) => {
let id = ''
while (true) {
let bytes = getRandom(step)
let j = step | 0
while (j--) {
id += alphabet[bytes[j] & mask] || ''
if (id.length === size) return id
}
}
}
}
let customAlphabet = (alphabet, size = 21) =>
customRandom(alphabet, size, random)
let nanoid = (size = 21) =>
crypto.getRandomValues(new Uint8Array(size)).reduce((id, byte) => {
byte &= 63
if (byte < 36) {
id += byte.toString(36)
} else if (byte < 62) {
id += (byte - 26).toString(36).toUpperCase()
} else if (byte > 62) {
id += '-'
} else {
id += '_'
}
return id
}, '')
export { nanoid, customAlphabet, customRandom, urlAlphabet, random }

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let crypto = require('crypto')
let { urlAlphabet } = require('./url-alphabet/index.cjs')
// It is best to make fewer, larger requests to the crypto module to
// avoid system call overhead. So, random numbers are generated in a
// pool. The pool is a Buffer that is larger than the initial random
// request size by this multiplier. The pool is enlarged if subsequent
// requests exceed the maximum buffer size.
const POOL_SIZE_MULTIPLIER = 128
let pool, poolOffset
let fillPool = bytes => {
if (!pool || pool.length < bytes) {
pool = Buffer.allocUnsafe(bytes * POOL_SIZE_MULTIPLIER)
crypto.randomFillSync(pool)
poolOffset = 0
} else if (poolOffset + bytes > pool.length) {
crypto.randomFillSync(pool)
poolOffset = 0
}
poolOffset += bytes
}
let random = bytes => {
// `|=` convert `bytes` to number to prevent `valueOf` abusing and pool pollution
fillPool((bytes |= 0))
return pool.subarray(poolOffset - bytes, poolOffset)
}
let customRandom = (alphabet, defaultSize, getRandom) => {
// First, a bitmask is necessary to generate the ID. The bitmask makes bytes
// values closer to the alphabet size. The bitmask calculates the closest
// `2^31 - 1` number, which exceeds the alphabet size.
// For example, the bitmask for the alphabet size 30 is 31 (00011111).
let mask = (2 << (31 - Math.clz32((alphabet.length - 1) | 1))) - 1
// Though, the bitmask solution is not perfect since the bytes exceeding
// the alphabet size are refused. Therefore, to reliably generate the ID,
// the random bytes redundancy has to be satisfied.
// Note: every hardware random generator call is performance expensive,
// because the system call for entropy collection takes a lot of time.
// So, to avoid additional system calls, extra bytes are requested in advance.
// Next, a step determines how many random bytes to generate.
// The number of random bytes gets decided upon the ID size, mask,
// alphabet size, and magic number 1.6 (using 1.6 peaks at performance
// according to benchmarks).
let step = Math.ceil((1.6 * mask * defaultSize) / alphabet.length)
return (size = defaultSize) => {
let id = ''
while (true) {
let bytes = getRandom(step)
// A compact alternative for `for (let i = 0; i < step; i++)`.
let i = step
while (i--) {
// Adding `|| ''` refuses a random byte that exceeds the alphabet size.
id += alphabet[bytes[i] & mask] || ''
if (id.length === size) return id
}
}
}
}
let customAlphabet = (alphabet, size = 21) =>
customRandom(alphabet, size, random)
let nanoid = (size = 21) => {
// `|=` convert `size` to number to prevent `valueOf` abusing and pool pollution
fillPool((size |= 0))
let id = ''
// We are reading directly from the random pool to avoid creating new array
for (let i = poolOffset - size; i < poolOffset; i++) {
// It is incorrect to use bytes exceeding the alphabet size.
// The following mask reduces the random byte in the 0-255 value
// range to the 0-63 value range. Therefore, adding hacks, such
// as empty string fallback or magic numbers, is unneccessary because
// the bitmask trims bytes down to the alphabet size.
id += urlAlphabet[pool[i] & 63]
}
return id
}
module.exports = { nanoid, customAlphabet, customRandom, urlAlphabet, random }

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/**
* Generate secure URL-friendly unique ID.
*
* By default, the ID will have 21 symbols to have a collision probability
* similar to UUID v4.
*
* ```js
* import { nanoid } from 'nanoid'
* model.id = nanoid() //=> "Uakgb_J5m9g-0JDMbcJqL"
* ```
*
* @param size Size of the ID. The default size is 21.
* @returns A random string.
*/
export function nanoid(size?: number): string
/**
* Generate secure unique ID with custom alphabet.
*
* Alphabet must contain 256 symbols or less. Otherwise, the generator
* will not be secure.
*
* @param alphabet Alphabet used to generate the ID.
* @param defaultSize Size of the ID. The default size is 21.
* @returns A random string generator.
*
* ```js
* const { customAlphabet } = require('nanoid')
* const nanoid = customAlphabet('0123456789абвгдеё', 5)
* nanoid() //=> "8ё56а"
* ```
*/
export function customAlphabet(
alphabet: string,
defaultSize?: number
): (size?: number) => string
/**
* Generate unique ID with custom random generator and alphabet.
*
* Alphabet must contain 256 symbols or less. Otherwise, the generator
* will not be secure.
*
* ```js
* import { customRandom } from 'nanoid/format'
*
* const nanoid = customRandom('abcdef', 5, size => {
* const random = []
* for (let i = 0; i < size; i++) {
* random.push(randomByte())
* }
* return random
* })
*
* nanoid() //=> "fbaef"
* ```
*
* @param alphabet Alphabet used to generate a random string.
* @param size Size of the random string.
* @param random A random bytes generator.
* @returns A random string generator.
*/
export function customRandom(
alphabet: string,
size: number,
random: (bytes: number) => Uint8Array
): () => string
/**
* URL safe symbols.
*
* ```js
* import { urlAlphabet } from 'nanoid'
* const nanoid = customAlphabet(urlAlphabet, 10)
* nanoid() //=> "Uakgb_J5m9"
* ```
*/
export const urlAlphabet: string
/**
* Generate an array of random bytes collected from hardware noise.
*
* ```js
* import { customRandom, random } from 'nanoid'
* const nanoid = customRandom("abcdef", 5, random)
* ```
*
* @param bytes Size of the array.
* @returns An array of random bytes.
*/
export function random(bytes: number): Uint8Array

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/**
* Generate secure URL-friendly unique ID.
*
* By default, the ID will have 21 symbols to have a collision probability
* similar to UUID v4.
*
* ```js
* import { nanoid } from 'nanoid'
* model.id = nanoid() //=> "Uakgb_J5m9g-0JDMbcJqL"
* ```
*
* @param size Size of the ID. The default size is 21.
* @returns A random string.
*/
export function nanoid(size?: number): string
/**
* Generate secure unique ID with custom alphabet.
*
* Alphabet must contain 256 symbols or less. Otherwise, the generator
* will not be secure.
*
* @param alphabet Alphabet used to generate the ID.
* @param defaultSize Size of the ID. The default size is 21.
* @returns A random string generator.
*
* ```js
* const { customAlphabet } = require('nanoid')
* const nanoid = customAlphabet('0123456789абвгдеё', 5)
* nanoid() //=> "8ё56а"
* ```
*/
export function customAlphabet(
alphabet: string,
defaultSize?: number
): (size?: number) => string
/**
* Generate unique ID with custom random generator and alphabet.
*
* Alphabet must contain 256 symbols or less. Otherwise, the generator
* will not be secure.
*
* ```js
* import { customRandom } from 'nanoid/format'
*
* const nanoid = customRandom('abcdef', 5, size => {
* const random = []
* for (let i = 0; i < size; i++) {
* random.push(randomByte())
* }
* return random
* })
*
* nanoid() //=> "fbaef"
* ```
*
* @param alphabet Alphabet used to generate a random string.
* @param size Size of the random string.
* @param random A random bytes generator.
* @returns A random string generator.
*/
export function customRandom(
alphabet: string,
size: number,
random: (bytes: number) => Uint8Array
): () => string
/**
* URL safe symbols.
*
* ```js
* import { urlAlphabet } from 'nanoid'
* const nanoid = customAlphabet(urlAlphabet, 10)
* nanoid() //=> "Uakgb_J5m9"
* ```
*/
export const urlAlphabet: string
/**
* Generate an array of random bytes collected from hardware noise.
*
* ```js
* import { customRandom, random } from 'nanoid'
* const nanoid = customRandom("abcdef", 5, random)
* ```
*
* @param bytes Size of the array.
* @returns An array of random bytes.
*/
export function random(bytes: number): Uint8Array

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import crypto from 'crypto'
import { urlAlphabet } from './url-alphabet/index.js'
const POOL_SIZE_MULTIPLIER = 128
let pool, poolOffset
let fillPool = bytes => {
if (!pool || pool.length < bytes) {
pool = Buffer.allocUnsafe(bytes * POOL_SIZE_MULTIPLIER)
crypto.randomFillSync(pool)
poolOffset = 0
} else if (poolOffset + bytes > pool.length) {
crypto.randomFillSync(pool)
poolOffset = 0
}
poolOffset += bytes
}
let random = bytes => {
fillPool((bytes |= 0))
return pool.subarray(poolOffset - bytes, poolOffset)
}
let customRandom = (alphabet, defaultSize, getRandom) => {
let mask = (2 << (31 - Math.clz32((alphabet.length - 1) | 1))) - 1
let step = Math.ceil((1.6 * mask * defaultSize) / alphabet.length)
return (size = defaultSize) => {
let id = ''
while (true) {
let bytes = getRandom(step)
let i = step
while (i--) {
id += alphabet[bytes[i] & mask] || ''
if (id.length === size) return id
}
}
}
}
let customAlphabet = (alphabet, size = 21) =>
customRandom(alphabet, size, random)
let nanoid = (size = 21) => {
fillPool((size |= 0))
let id = ''
for (let i = poolOffset - size; i < poolOffset; i++) {
id += urlAlphabet[pool[i] & 63]
}
return id
}
export { nanoid, customAlphabet, customRandom, urlAlphabet, random }

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export let nanoid=(t=21)=>crypto.getRandomValues(new Uint8Array(t)).reduce(((t,e)=>t+=(e&=63)<36?e.toString(36):e<62?(e-26).toString(36).toUpperCase():e<63?"_":"-"),"");

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// This alphabet uses `A-Za-z0-9_-` symbols.
// The order of characters is optimized for better gzip and brotli compression.
// References to the same file (works both for gzip and brotli):
// `'use`, `andom`, and `rict'`
// References to the brotli default dictionary:
// `-26T`, `1983`, `40px`, `75px`, `bush`, `jack`, `mind`, `very`, and `wolf`
let urlAlphabet =
'useandom-26T198340PX75pxJACKVERYMINDBUSHWOLF_GQZbfghjklqvwyzrict'
let customAlphabet = (alphabet, defaultSize = 21) => {
return (size = defaultSize) => {
let id = ''
// A compact alternative for `for (var i = 0; i < step; i++)`.
let i = size | 0
while (i--) {
// `| 0` is more compact and faster than `Math.floor()`.
id += alphabet[(Math.random() * alphabet.length) | 0]
}
return id
}
}
let nanoid = (size = 21) => {
let id = ''
// A compact alternative for `for (var i = 0; i < step; i++)`.
let i = size | 0
while (i--) {
// `| 0` is more compact and faster than `Math.floor()`.
id += urlAlphabet[(Math.random() * 64) | 0]
}
return id
}
module.exports = { nanoid, customAlphabet }

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app_vue/node_modules/nanoid/non-secure/index.d.ts generated vendored Normal file
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/**
* Generate URL-friendly unique ID. This method uses the non-secure
* predictable random generator with bigger collision probability.
*
* ```js
* import { nanoid } from 'nanoid/non-secure'
* model.id = nanoid() //=> "Uakgb_J5m9g-0JDMbcJqL"
* ```
*
* @param size Size of the ID. The default size is 21.
* @returns A random string.
*/
export function nanoid(size?: number): string
/**
* Generate a unique ID based on a custom alphabet.
* This method uses the non-secure predictable random generator
* with bigger collision probability.
*
* @param alphabet Alphabet used to generate the ID.
* @param defaultSize Size of the ID. The default size is 21.
* @returns A random string generator.
*
* ```js
* import { customAlphabet } from 'nanoid/non-secure'
* const nanoid = customAlphabet('0123456789абвгдеё', 5)
* model.id = //=> "8ё56а"
* ```
*/
export function customAlphabet(
alphabet: string,
defaultSize?: number
): (size?: number) => string

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let urlAlphabet =
'useandom-26T198340PX75pxJACKVERYMINDBUSHWOLF_GQZbfghjklqvwyzrict'
let customAlphabet = (alphabet, defaultSize = 21) => {
return (size = defaultSize) => {
let id = ''
let i = size | 0
while (i--) {
id += alphabet[(Math.random() * alphabet.length) | 0]
}
return id
}
}
let nanoid = (size = 21) => {
let id = ''
let i = size | 0
while (i--) {
id += urlAlphabet[(Math.random() * 64) | 0]
}
return id
}
export { nanoid, customAlphabet }

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app_vue/node_modules/nanoid/non-secure/package.json generated vendored Normal file
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{
"type": "module",
"main": "index.cjs",
"module": "index.js",
"react-native": "index.js"
}

89
app_vue/node_modules/nanoid/package.json generated vendored Normal file
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{
"name": "nanoid",
"version": "3.3.11",
"description": "A tiny (116 bytes), secure URL-friendly unique string ID generator",
"keywords": [
"uuid",
"random",
"id",
"url"
],
"engines": {
"node": "^10 || ^12 || ^13.7 || ^14 || >=15.0.1"
},
"funding": [
{
"type": "github",
"url": "https://github.com/sponsors/ai"
}
],
"author": "Andrey Sitnik <andrey@sitnik.ru>",
"license": "MIT",
"repository": "ai/nanoid",
"browser": {
"./index.js": "./index.browser.js",
"./async/index.js": "./async/index.browser.js",
"./async/index.cjs": "./async/index.browser.cjs",
"./index.cjs": "./index.browser.cjs"
},
"react-native": "index.js",
"bin": "./bin/nanoid.cjs",
"sideEffects": false,
"types": "./index.d.ts",
"type": "module",
"main": "index.cjs",
"module": "index.js",
"exports": {
".": {
"react-native": "./index.browser.js",
"browser": "./index.browser.js",
"require": {
"types": "./index.d.cts",
"default": "./index.cjs"
},
"import": {
"types": "./index.d.ts",
"default": "./index.js"
},
"default": "./index.js"
},
"./package.json": "./package.json",
"./async/package.json": "./async/package.json",
"./async": {
"browser": "./async/index.browser.js",
"require": {
"types": "./index.d.cts",
"default": "./async/index.cjs"
},
"import": {
"types": "./index.d.ts",
"default": "./async/index.js"
},
"default": "./async/index.js"
},
"./non-secure/package.json": "./non-secure/package.json",
"./non-secure": {
"require": {
"types": "./index.d.cts",
"default": "./non-secure/index.cjs"
},
"import": {
"types": "./index.d.ts",
"default": "./non-secure/index.js"
},
"default": "./non-secure/index.js"
},
"./url-alphabet/package.json": "./url-alphabet/package.json",
"./url-alphabet": {
"require": {
"types": "./index.d.cts",
"default": "./url-alphabet/index.cjs"
},
"import": {
"types": "./index.d.ts",
"default": "./url-alphabet/index.js"
},
"default": "./url-alphabet/index.js"
}
}
}

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// This alphabet uses `A-Za-z0-9_-` symbols.
// The order of characters is optimized for better gzip and brotli compression.
// Same as in non-secure/index.js
let urlAlphabet =
'useandom-26T198340PX75pxJACKVERYMINDBUSHWOLF_GQZbfghjklqvwyzrict'
module.exports = { urlAlphabet }

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app_vue/node_modules/nanoid/url-alphabet/index.js generated vendored Normal file
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let urlAlphabet =
'useandom-26T198340PX75pxJACKVERYMINDBUSHWOLF_GQZbfghjklqvwyzrict'
export { urlAlphabet }

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{
"type": "module",
"main": "index.cjs",
"module": "index.js",
"react-native": "index.js"
}