2018-01-24 18:23:13 +00:00
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import { arrayToB64, b64ToArray } from './utils';
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2018-06-21 00:05:33 +00:00
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import ECE from './ece.js';
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2018-01-24 18:23:13 +00:00
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const encoder = new TextEncoder();
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const decoder = new TextDecoder();
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2018-01-31 19:12:36 +00:00
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export default class Keychain {
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2018-01-24 18:23:13 +00:00
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constructor(secretKeyB64, nonce, ivB64) {
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this._nonce = nonce || 'yRCdyQ1EMSA3mo4rqSkuNQ==';
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if (ivB64) {
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this.iv = b64ToArray(ivB64);
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} else {
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this.iv = window.crypto.getRandomValues(new Uint8Array(12));
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}
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if (secretKeyB64) {
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this.rawSecret = b64ToArray(secretKeyB64);
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} else {
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this.rawSecret = window.crypto.getRandomValues(new Uint8Array(16));
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}
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this.secretKeyPromise = window.crypto.subtle.importKey(
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'raw',
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this.rawSecret,
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'HKDF',
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false,
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['deriveKey']
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);
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this.encryptKeyPromise = this.secretKeyPromise.then(function(secretKey) {
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return window.crypto.subtle.deriveKey(
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{
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name: 'HKDF',
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salt: new Uint8Array(),
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info: encoder.encode('encryption'),
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hash: 'SHA-256'
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},
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secretKey,
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{
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name: 'AES-GCM',
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length: 128
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},
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false,
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['encrypt', 'decrypt']
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);
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});
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this.metaKeyPromise = this.secretKeyPromise.then(function(secretKey) {
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return window.crypto.subtle.deriveKey(
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{
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name: 'HKDF',
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salt: new Uint8Array(),
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info: encoder.encode('metadata'),
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hash: 'SHA-256'
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},
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secretKey,
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{
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name: 'AES-GCM',
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length: 128
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},
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false,
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['encrypt', 'decrypt']
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);
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});
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this.authKeyPromise = this.secretKeyPromise.then(function(secretKey) {
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return window.crypto.subtle.deriveKey(
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{
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name: 'HKDF',
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salt: new Uint8Array(),
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info: encoder.encode('authentication'),
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hash: 'SHA-256'
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},
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secretKey,
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{
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name: 'HMAC',
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hash: { name: 'SHA-256' }
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},
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true,
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['sign']
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);
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});
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}
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get nonce() {
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return this._nonce;
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}
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set nonce(n) {
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2018-01-30 20:15:09 +00:00
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if (n && n !== this._nonce) {
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this._nonce = n;
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2018-01-24 18:23:13 +00:00
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}
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}
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setIV(ivB64) {
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this.iv = b64ToArray(ivB64);
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}
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setPassword(password, shareUrl) {
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this.authKeyPromise = window.crypto.subtle
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.importKey('raw', encoder.encode(password), { name: 'PBKDF2' }, false, [
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'deriveKey'
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])
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.then(passwordKey =>
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window.crypto.subtle.deriveKey(
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{
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name: 'PBKDF2',
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salt: encoder.encode(shareUrl),
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iterations: 100,
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hash: 'SHA-256'
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},
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passwordKey,
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{
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name: 'HMAC',
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hash: 'SHA-256'
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},
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true,
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['sign']
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)
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);
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}
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setAuthKey(authKeyB64) {
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this.authKeyPromise = window.crypto.subtle.importKey(
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'raw',
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b64ToArray(authKeyB64),
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{
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name: 'HMAC',
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hash: 'SHA-256'
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},
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true,
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['sign']
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);
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}
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async authKeyB64() {
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const authKey = await this.authKeyPromise;
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const rawAuth = await window.crypto.subtle.exportKey('raw', authKey);
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return arrayToB64(new Uint8Array(rawAuth));
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}
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async authHeader() {
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const authKey = await this.authKeyPromise;
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const sig = await window.crypto.subtle.sign(
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{
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name: 'HMAC'
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},
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authKey,
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b64ToArray(this.nonce)
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);
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return `send-v1 ${arrayToB64(new Uint8Array(sig))}`;
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}
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async encryptFile(plaintext) {
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const encryptKey = await this.encryptKeyPromise;
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const ciphertext = await window.crypto.subtle.encrypt(
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{
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name: 'AES-GCM',
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iv: this.iv,
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tagLength: 128
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},
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encryptKey,
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plaintext
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);
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return ciphertext;
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}
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async encryptMetadata(metadata) {
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const metaKey = await this.metaKeyPromise;
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const ciphertext = await window.crypto.subtle.encrypt(
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{
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name: 'AES-GCM',
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iv: new Uint8Array(12),
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tagLength: 128
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},
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metaKey,
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encoder.encode(
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JSON.stringify({
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iv: arrayToB64(this.iv),
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name: metadata.name,
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type: metadata.type || 'application/octet-stream'
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})
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)
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);
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return ciphertext;
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}
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2018-06-22 20:17:23 +00:00
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encryptStream(plaintext) {
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2018-06-21 00:05:33 +00:00
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const enc = new ECE(plaintext, this.rawSecret, 'encrypt');
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return enc;
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}
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2018-06-22 20:17:23 +00:00
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decryptStream(encstream) {
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2018-06-21 00:05:33 +00:00
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const dec = new ECE(encstream, this.rawSecret, 'decrypt');
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return dec;
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}
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2018-01-24 18:23:13 +00:00
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async decryptFile(ciphertext) {
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const encryptKey = await this.encryptKeyPromise;
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const plaintext = await window.crypto.subtle.decrypt(
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{
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name: 'AES-GCM',
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iv: this.iv,
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tagLength: 128
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},
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encryptKey,
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ciphertext
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);
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return plaintext;
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}
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async decryptMetadata(ciphertext) {
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const metaKey = await this.metaKeyPromise;
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const plaintext = await window.crypto.subtle.decrypt(
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{
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name: 'AES-GCM',
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iv: new Uint8Array(12),
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tagLength: 128
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},
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metaKey,
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ciphertext
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);
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return JSON.parse(decoder.decode(plaintext));
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}
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}
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