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			265 lines
		
	
	
		
			7.4 KiB
		
	
	
	
		
			JavaScript
		
	
			
		
		
	
	
			265 lines
		
	
	
		
			7.4 KiB
		
	
	
	
		
			JavaScript
		
	
/* global dcodeIO, Internal, libsignal, sodium */
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/* eslint-disable no-console */
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/* eslint-disable strict */
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const functions = {
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  arrayBufferToStringBase64,
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  fromBase64ToArrayBuffer,
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  fromHexToArrayBuffer,
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  verifySignature,
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  DecryptAESGCM,
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  deriveSymmetricKey,
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  encryptForPubkey,
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  generateEphemeralKeyPair,
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  decryptAttachmentBuffer,
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  encryptAttachmentBuffer,
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  bytesFromString,
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};
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onmessage = async e => {
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  const [jobId, fnName, ...args] = e.data;
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  try {
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    const fn = functions[fnName];
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    if (!fn) {
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      throw new Error(`Worker: job ${jobId} did not find function ${fnName}`);
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    }
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    const result = await fn(...args);
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    postMessage([jobId, null, result]);
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  } catch (error) {
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    const errorForDisplay = prepareErrorForPostMessage(error);
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    postMessage([jobId, errorForDisplay]);
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  }
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};
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function prepareErrorForPostMessage(error) {
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  if (!error) {
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    return null;
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  }
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  if (error.stack) {
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    return error.stack;
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  }
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  return error.message;
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}
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function arrayBufferToStringBase64(arrayBuffer) {
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  return dcodeIO.ByteBuffer.wrap(arrayBuffer).toString('base64');
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}
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function fromBase64ToArrayBuffer(base64Str) {
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  return dcodeIO.ByteBuffer.wrap(base64Str, 'base64').toArrayBuffer();
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}
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function fromHexToArray(hexStr) {
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  return new Uint8Array(dcodeIO.ByteBuffer.wrap(hexStr, 'hex').toArrayBuffer());
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}
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function fromHexToArrayBuffer(hexStr) {
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  return dcodeIO.ByteBuffer.wrap(hexStr, 'hex').toArrayBuffer();
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}
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function bytesFromString(string) {
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  return dcodeIO.ByteBuffer.wrap(string, 'utf8').toArrayBuffer();
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}
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// hexString, base64String, base64String
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async function verifySignature(senderPubKey, messageBase64, signatureBase64) {
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  try {
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    if (typeof senderPubKey !== 'string') {
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      throw new Error('senderPubKey type not correct');
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    }
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    if (typeof messageBase64 !== 'string') {
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      throw new Error('messageBase64 type not correct');
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    }
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    if (typeof signatureBase64 !== 'string') {
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      throw new Error('signatureBase64 type not correct');
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    }
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    const messageData = new Uint8Array(fromBase64ToArrayBuffer(messageBase64));
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    const signature = new Uint8Array(fromBase64ToArrayBuffer(signatureBase64));
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    // verify returns true if the signature is not correct
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    const verifyRet = Internal.curve25519.verify(
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      fromHexToArray(senderPubKey),
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      messageData,
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      signature
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    );
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    if (verifyRet) {
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      console.warn('Invalid signature');
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      return false;
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    }
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    return true;
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  } catch (e) {
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    console.warn('verifySignature got an error:', e);
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    return false;
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  }
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}
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const NONCE_LENGTH = 12;
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// uint8array, uint8array
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async function deriveSymmetricKey(x25519PublicKey, x25519PrivateKey) {
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  assertArrayBufferView(x25519PublicKey);
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  assertArrayBufferView(x25519PrivateKey);
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  const ephemeralSecret = await libsignal.Curve.async.calculateAgreement(
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    x25519PublicKey.buffer,
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    x25519PrivateKey.buffer
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  );
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  const salt = bytesFromString('LOKI');
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  const key = await crypto.subtle.importKey(
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    'raw',
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    salt,
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    { name: 'HMAC', hash: { name: 'SHA-256' } },
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    false,
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    ['sign']
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  );
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  const symmetricKey = await crypto.subtle.sign(
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    { name: 'HMAC', hash: 'SHA-256' },
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    key,
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    ephemeralSecret
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  );
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  return symmetricKey;
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}
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async function generateEphemeralKeyPair() {
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  const keys = await libsignal.Curve.async.generateKeyPair();
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  // Signal protocol prepends with "0x05"
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  keys.pubKey = keys.pubKey.slice(1);
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  return keys;
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}
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function assertArrayBufferView(val) {
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  if (!ArrayBuffer.isView(val)) {
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    throw new Error('val type not correct');
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  }
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}
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// encryptForPubkey: hexString, payloadBytes: Uint8Array
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async function encryptForPubkey(pubkeyX25519str, payloadBytes) {
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  try {
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    if (typeof pubkeyX25519str !== 'string') {
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      throw new Error('pubkeyX25519str type not correct');
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    }
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    assertArrayBufferView(payloadBytes);
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    const ephemeral = await generateEphemeralKeyPair();
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    const pubkeyX25519Buffer = fromHexToArray(pubkeyX25519str);
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    const symmetricKey = await deriveSymmetricKey(
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      pubkeyX25519Buffer,
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      new Uint8Array(ephemeral.privKey)
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    );
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    const ciphertext = await EncryptAESGCM(symmetricKey, payloadBytes);
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    return { ciphertext, symmetricKey, ephemeralKey: ephemeral.pubKey };
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  } catch (e) {
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    console.warn('encryptForPubkey got an error:', e);
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    return null;
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  }
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}
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async function EncryptAESGCM(symmetricKey, plaintext) {
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  const nonce = crypto.getRandomValues(new Uint8Array(NONCE_LENGTH));
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  const key = await crypto.subtle.importKey('raw', symmetricKey, { name: 'AES-GCM' }, false, [
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    'encrypt',
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  ]);
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  const ciphertext = await crypto.subtle.encrypt(
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    { name: 'AES-GCM', iv: nonce, tagLength: 128 },
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    key,
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    plaintext
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  );
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  const ivAndCiphertext = new Uint8Array(NONCE_LENGTH + ciphertext.byteLength);
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  ivAndCiphertext.set(nonce);
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  ivAndCiphertext.set(new Uint8Array(ciphertext), nonce.byteLength);
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  return ivAndCiphertext;
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}
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// uint8array, uint8array
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async function DecryptAESGCM(symmetricKey, ivAndCiphertext) {
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  assertArrayBufferView(symmetricKey);
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  assertArrayBufferView(ivAndCiphertext);
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  const nonce = ivAndCiphertext.buffer.slice(0, NONCE_LENGTH);
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  const ciphertext = ivAndCiphertext.buffer.slice(NONCE_LENGTH);
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  const key = await crypto.subtle.importKey(
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    'raw',
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    symmetricKey.buffer,
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    { name: 'AES-GCM' },
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    false,
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    ['decrypt']
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  );
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  return crypto.subtle.decrypt({ name: 'AES-GCM', iv: nonce }, key, ciphertext);
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}
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async function getSodium() {
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  await sodium.ready;
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  return sodium;
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}
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// Uint8Array, ArrayBuffer
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async function decryptAttachmentBuffer(encryptingKey, bufferIn) {
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  const sodium = await getSodium();
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  const header = new Uint8Array(
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    bufferIn.slice(0, sodium.crypto_secretstream_xchacha20poly1305_HEADERBYTES)
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  );
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  const encryptedBuffer = new Uint8Array(
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    bufferIn.slice(sodium.crypto_secretstream_xchacha20poly1305_HEADERBYTES)
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  );
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  try {
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    /* Decrypt the stream: initializes the state, using the key and a header */
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    const state = sodium.crypto_secretstream_xchacha20poly1305_init_pull(header, encryptingKey);
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    // what if ^ this call fail (? try to load as a unencrypted attachment?)
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    const messageTag = sodium.crypto_secretstream_xchacha20poly1305_pull(state, encryptedBuffer);
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    // we expect the final tag to be there. If not, we might have an issue with this file
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    // maybe not encrypted locally?
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    if (messageTag.tag === sodium.crypto_secretstream_xchacha20poly1305_TAG_FINAL) {
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      return messageTag.message;
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    }
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  } catch (e) {
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    console.warn('Failed to load the file as an encrypted one', e);
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  }
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  return new Uint8Array();
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}
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// Uint8Array, ArrayBuffer
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async function encryptAttachmentBuffer(encryptingKey, bufferIn) {
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  const sodium = await getSodium();
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  try {
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    const uintArrayIn = new Uint8Array(bufferIn);
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    /* Set up a new stream: initialize the state and create the header */
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    const { state, header } = sodium.crypto_secretstream_xchacha20poly1305_init_push(encryptingKey);
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    /* Now, encrypt the buffer. */
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    const bufferOut = sodium.crypto_secretstream_xchacha20poly1305_push(
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      state,
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      uintArrayIn,
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      null,
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      sodium.crypto_secretstream_xchacha20poly1305_TAG_FINAL
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    );
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    const encryptedBufferWithHeader = new Uint8Array(bufferOut.length + header.length);
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    encryptedBufferWithHeader.set(header);
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    encryptedBufferWithHeader.set(bufferOut, header.length);
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    return { encryptedBufferWithHeader, header };
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  } catch (e) {
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    console.warn('encryptAttachmentBuffer error: ', e);
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    return null;
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  }
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}
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