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add ece transformers
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41
app/blobslicer.js
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41
app/blobslicer.js
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const streams = require('web-streams-polyfill');
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class BlobSlicer {
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constructor(blob, size, decrypt) {
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this.blob = blob;
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this.size = size;
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this.index = 0;
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this.decrypt = decrypt;
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}
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pull(controller) {
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return new Promise((resolve, reject) => {
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const bytesLeft = this.blob.size - this.index;
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if (bytesLeft <= 0) {
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controller.close();
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return resolve();
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}
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let size = 0;
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if (this.decrypt && this.index === 0) {
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size = Math.min(21, bytesLeft);
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} else {
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size = Math.min(this.size, bytesLeft);
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}
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const blob = this.blob.slice(this.index, this.index + size);
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const reader = new FileReader();
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reader.onload = function() {
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controller.enqueue(new Uint8Array(this.result));
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resolve();
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};
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reader.onerror = reject;
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reader.readAsArrayBuffer(blob);
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this.index += size;
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});
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}
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}
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export default class BlobSliceStream extends streams.ReadableStream {
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constructor(blob, size, decrypt) {
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super(new BlobSlicer(blob, size, decrypt));
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}
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}
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237
app/ece.js
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237
app/ece.js
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require('buffer');
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const NONCE_LENGTH = 12;
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const TAG_LENGTH = 16;
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const KEY_LENGTH = 16;
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const MODE_ENCRYPT = 'encrypt';
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const MODE_DECRYPT = 'decrypt';
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const encoder = new TextEncoder();
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function generateSalt(len) {
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const randSalt = new Uint8Array(len);
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window.crypto.getRandomValues(randSalt);
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return randSalt.buffer;
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}
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/*
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mode: string, either 'encrypt' or 'decrypt'
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ikm: Uint8Array containing key of KEY_LENGTH length
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rs: int containing record size, optional
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salt: ArrayBuffer containing salt of KEY_LENGTH length, optional
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The transform stream takes data as UInt8Arrays on the writable side, and outputs
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UInt8Arrays on the readable side.
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*/
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export default class ECETransformer {
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constructor(mode, ikm, rs, salt) {
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this.mode = mode;
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this.prevChunk;
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this.params = {};
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this.seq = 0;
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this.firstchunk = true;
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this.rs = rs || 1024;
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this.ikm = ikm.buffer;
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this.params.salt = salt;
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if (!salt) {
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this.params.salt = generateSalt(KEY_LENGTH);
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}
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}
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async generateKey() {
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const inputKey = await window.crypto.subtle.importKey(
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'raw',
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this.ikm,
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'HKDF',
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false,
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['deriveKey']
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);
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return window.crypto.subtle.deriveKey(
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{
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name: 'HKDF',
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salt: this.params.salt,
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info: encoder.encode('Content-Encoding: aes128gcm\0'),
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hash: 'SHA-256'
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},
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inputKey,
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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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async generateNonceBase() {
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const inputKey = await window.crypto.subtle.importKey(
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'raw',
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this.ikm,
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'HKDF',
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false,
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['deriveKey']
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);
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const base = await window.crypto.subtle.exportKey(
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'raw',
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await window.crypto.subtle.deriveKey(
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{
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name: 'HKDF',
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salt: this.params.salt,
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info: encoder.encode('Content-Encoding: nonce\0'),
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hash: 'SHA-256'
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},
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inputKey,
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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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true,
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['encrypt', 'decrypt']
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)
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);
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return Buffer.from(base.slice(0, NONCE_LENGTH));
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}
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generateNonce(seq) {
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const nonce = Buffer.from(this.params.nonceBase);
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const m = nonce.readUIntBE(nonce.length - 4, 4);
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const xor = (m ^ seq) >>> 0; //forces unsigned int xor
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nonce.writeUIntBE(xor, nonce.length - 4, 4);
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const m2 = nonce.readUIntBE(nonce.length - 8, 4);
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const xor2 = (m2 ^ (seq >>> 4)) >>> 0;
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nonce.writeUIntBE(xor2, nonce.length - 8, 4);
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return nonce;
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}
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pad(data, isLast) {
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const len = data.length;
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if (len + TAG_LENGTH >= this.rs) {
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throw new Error('data too large for record size');
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}
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if (isLast) {
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const padding = Buffer.alloc(1);
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padding.writeUInt8(2, 0);
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return Buffer.concat([data, padding]);
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} else {
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const padding = Buffer.alloc(this.rs - len - TAG_LENGTH);
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padding.fill(0);
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padding.writeUInt8(1, 0);
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return Buffer.concat([data, padding]);
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}
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}
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unpad(data, isLast) {
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for (let i = data.length - 1; i >= 0; i--) {
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if (data[i]) {
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if (isLast) {
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if (data[i] !== 2) {
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throw new Error('delimiter of final record is not 2');
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}
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} else {
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if (data[i] !== 1) {
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throw new Error('delimiter of not final record is not 1');
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}
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}
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return data.slice(0, i);
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}
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}
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throw new Error('no delimiter found');
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}
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createHeader() {
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const nums = Buffer.alloc(5);
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nums.writeUIntBE(this.rs, 0, 4);
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nums.writeUIntBE(0, 4, 1);
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return Buffer.concat([Buffer.from(this.params.salt), nums]);
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}
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//salt is arraybuffer, rs is int, length is int
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readHeader(buffer) {
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if (buffer.length < 21) {
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throw new Error('chunk too small for reading header');
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}
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const header = {};
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header.salt = buffer.buffer.slice(0, KEY_LENGTH);
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header.rs = buffer.readUIntBE(KEY_LENGTH, 4);
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const idlen = buffer.readUInt8(KEY_LENGTH + 4);
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header.length = idlen + KEY_LENGTH + 5;
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return header;
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}
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async encryptRecord(buffer, seq, isLast) {
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const nonce = this.generateNonce(seq);
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const encrypted = await window.crypto.subtle.encrypt(
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{ name: 'AES-GCM', iv: nonce },
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this.params.key,
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this.pad(buffer, isLast)
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);
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return Buffer.from(encrypted);
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}
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async decryptRecord(buffer, seq, isLast) {
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const nonce = this.generateNonce(seq);
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const data = await window.crypto.subtle.decrypt(
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{
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name: 'AES-GCM',
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iv: nonce,
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tagLength: 128
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},
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this.params.key,
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buffer
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);
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return this.unpad(Buffer.from(data), isLast);
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}
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async start(controller) {
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if (this.mode === MODE_ENCRYPT) {
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this.params.key = await this.generateKey();
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this.params.nonceBase = await this.generateNonceBase();
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controller.enqueue(this.createHeader());
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} else if (this.mode !== MODE_DECRYPT) {
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throw new Error('mode must be either encrypt or decrypt');
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}
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}
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async transformPrevChunk(isLast, controller) {
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if (this.mode === MODE_ENCRYPT) {
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controller.enqueue(
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await this.encryptRecord(this.prevChunk, this.seq, isLast)
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);
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this.seq++;
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} else {
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if (this.seq === 0) {
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//the first chunk during decryption contains only the header
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const header = this.readHeader(this.prevChunk);
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this.params.salt = header.salt;
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this.rs = header.rs;
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this.params.key = await this.generateKey();
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this.params.nonceBase = await this.generateNonceBase();
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} else {
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controller.enqueue(
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await this.decryptRecord(this.prevChunk, this.seq - 1, isLast)
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);
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}
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this.seq++;
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}
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}
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async transform(chunk, controller) {
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if (!this.firstchunk) {
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await this.transformPrevChunk(false, controller);
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}
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this.firstchunk = false;
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this.prevChunk = Buffer.from(chunk.buffer);
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}
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async flush(controller) {
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if (this.prevChunk) {
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await this.transformPrevChunk(true, controller);
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}
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}
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}
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88
test/frontend/tests/streaming-tests.js
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88
test/frontend/tests/streaming-tests.js
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const streams = require('web-streams-polyfill');
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const ece = require('http_ece');
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require('buffer');
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import assert from 'assert';
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import { b64ToArray } from '../../../app/utils';
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import ECETransformer from '../../../app/ece.js';
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import BlobSliceStream from '../../../app/blobslicer.js';
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const decoder = new TextDecoder('utf-8');
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const rs = 36;
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const str = 'You are the dancing queen, young and sweet, only seventeen.';
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const testSalt = 'I1BsxtFttlv3u_Oo94xnmw';
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const keystr = 'yqdlZ-tYemfogSmv7Ws5PQ';
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const buffer = Buffer.from(str);
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const params = {
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version: 'aes128gcm',
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rs: rs,
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salt: testSalt,
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keyid: '',
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key: keystr
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};
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const encrypted = ece.encrypt(buffer, params);
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const decrypted = ece.decrypt(encrypted, params);
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describe('Streaming', function() {
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//testing against http_ece's implementation
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describe('ECE', function() {
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const key = b64ToArray(keystr);
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const salt = b64ToArray(testSalt).buffer;
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const blob = new Blob([str], { type: 'text/plain' });
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it('blob slice stream works', async function() {
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const rs = await new BlobSliceStream(blob, 100);
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const reader = rs.getReader();
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let result = '';
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let state = await reader.read();
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while (!state.done) {
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result = decoder.decode(state.value);
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state = await reader.read();
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}
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assert.equal(result, str);
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});
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it('can encrypt', async function() {
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const enc = new streams.TransformStream(
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new ECETransformer('encrypt', key, rs, salt)
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);
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const rstream = await new BlobSliceStream(blob, rs - 17);
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const reader = rstream.pipeThrough(enc).getReader();
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let result = Buffer.from([]);
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let state = await reader.read();
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while (!state.done) {
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result = Buffer.concat([result, state.value]);
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state = await reader.read();
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}
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assert.deepEqual(result, encrypted);
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});
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it('can decrypt', async function() {
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const encBlob = new Blob([encrypted]);
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const dec = new streams.TransformStream(
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new ECETransformer('decrypt', key, rs)
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);
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const rstream = await new BlobSliceStream(encBlob, rs, true);
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const reader = rstream.pipeThrough(dec).getReader();
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let result = Buffer.from([]);
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let state = await reader.read();
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while (!state.done) {
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result = Buffer.concat([result, state.value]);
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state = await reader.read();
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}
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assert.deepEqual(result, decrypted);
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});
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});
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});
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