umami/lib/crypto.js

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import crypto from 'crypto';
import { v4, v5, validate } from 'uuid';
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import bcrypt from 'bcryptjs';
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import { JWT, JWE, JWK } from 'jose';
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import { startOfMonth } from 'date-fns';
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const SALT_ROUNDS = 10;
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const KEY = JWK.asKey(Buffer.from(secret()));
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const ROTATING_SALT = hash(startOfMonth(new Date()).toUTCString());
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const CHARS = 'abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789';
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export function hash(...args) {
return crypto.createHash('sha512').update(args.join('')).digest('hex');
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}
export function secret() {
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return hash(process.env.HASH_SALT || process.env.DATABASE_URL);
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}
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export function salt() {
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return v5(hash(secret(), ROTATING_SALT), v5.DNS);
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}
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export function uuid(...args) {
if (!args.length) return v4();
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return v5(args.join(''), salt());
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}
export function isValidUuid(s) {
return validate(s);
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}
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export function getRandomChars(n) {
let s = '';
for (let i = 0; i < n; i++) {
s += CHARS[Math.floor(Math.random() * CHARS.length)];
}
return s;
}
export function hashPassword(password) {
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return bcrypt.hashSync(password, SALT_ROUNDS);
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}
export function checkPassword(password, hash) {
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return bcrypt.compareSync(password, hash);
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}
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export async function createToken(payload) {
return JWT.sign(payload, KEY);
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}
export async function parseToken(token) {
try {
return JWT.verify(token, KEY);
} catch {
return null;
}
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}
export async function createSecureToken(payload) {
return JWE.encrypt(await createToken(payload), KEY);
}
export async function parseSecureToken(token) {
try {
const result = await JWE.decrypt(token, KEY);
return parseToken(result.toString());
} catch {
return null;
}
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}