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268 lines
7.8 KiB
JavaScript
268 lines
7.8 KiB
JavaScript
define([
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'/bower_components/tweetnacl/nacl-fast.min.js',
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], function () {
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var Nacl = window.nacl;
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var PARANOIA = true;
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var plainChunkLength = 128 * 1024;
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var cypherChunkLength = 131088;
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var computeEncryptedSize = function (bytes, meta) {
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var metasize = Nacl.util.decodeUTF8(JSON.stringify(meta)).length;
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var chunks = Math.ceil(bytes / plainChunkLength);
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return metasize + 18 + (chunks * 16) + bytes;
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};
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var encodePrefix = function (p) {
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return [
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65280, // 255 << 8
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255,
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].map(function (n, i) {
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return (p & n) >> ((1 - i) * 8);
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});
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};
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var decodePrefix = function (A) {
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return (A[0] << 8) | A[1];
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};
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var slice = function (A) {
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return Array.prototype.slice.call(A);
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};
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var createNonce = function () {
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return new Uint8Array(new Array(24).fill(0));
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};
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var increment = function (N) {
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var l = N.length;
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while (l-- > 1) {
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if (PARANOIA) {
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if (typeof(N[l]) !== 'number') {
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throw new Error('E_UNSAFE_TYPE');
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}
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if (N[l] > 255) {
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throw new Error('E_OUT_OF_BOUNDS');
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}
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}
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/* jshint probably suspects this is unsafe because we lack types
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but as long as this is only used on nonces, it should be safe */
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if (N[l] !== 255) { return void N[l]++; } // jshint ignore:line
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N[l] = 0;
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// you don't need to worry about this running out.
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// you'd need a REAAAALLY big file
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if (l === 0) {
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throw new Error('E_NONCE_TOO_LARGE');
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}
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}
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};
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var joinChunks = function (chunks) {
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return new Blob(chunks);
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};
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var concatBuffer = function (a, b) { // TODO make this not so ugly
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return new Uint8Array(slice(a).concat(slice(b)));
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};
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var fetchMetadata = function (src, cb) {
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var done = false;
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var CB = function (err, res) {
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if (done) { return; }
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done = true;
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cb(err, res);
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};
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var xhr = new XMLHttpRequest();
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xhr.open("GET", src, true);
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xhr.setRequestHeader('Range', 'bytes=0-1');
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xhr.responseType = 'arraybuffer';
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xhr.onload = function () {
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if (/^4/.test('' + this.status)) { return CB('XHR_ERROR'); }
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var res = new Uint8Array(xhr.response);
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var size = decodePrefix(res);
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var xhr2 = new XMLHttpRequest();
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xhr2.open("GET", src, true);
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xhr2.setRequestHeader('Range', 'bytes=2-' + (size + 2));
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xhr2.responseType = 'arraybuffer';
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xhr2.onload = function () {
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if (/^4/.test('' + this.status)) { return CB('XHR_ERROR'); }
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var res2 = new Uint8Array(xhr2.response);
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var all = concatBuffer(res, res2);
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CB(void 0, all);
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};
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xhr2.send(null);
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};
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xhr.send(null);
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};
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var decryptMetadata = function (u8, key) {
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var prefix = u8.subarray(0, 2);
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var metadataLength = decodePrefix(prefix);
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var metaBox = new Uint8Array(u8.subarray(2, 2 + metadataLength));
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var metaChunk = Nacl.secretbox.open(metaBox, createNonce(), key);
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try {
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return JSON.parse(Nacl.util.encodeUTF8(metaChunk));
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}
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catch (e) { return null; }
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};
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var fetchDecryptedMetadata = function (src, key, cb) {
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if (typeof(src) !== 'string') {
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return window.setTimeout(function () {
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cb('NO_SOURCE');
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});
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}
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fetchMetadata(src, function (e, buffer) {
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if (e) { return cb(e); }
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cb(void 0, decryptMetadata(buffer, key));
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});
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};
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var decrypt = function (u8, key, done, progress) {
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var MAX = u8.length;
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var _progress = function (offset) {
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if (typeof(progress) !== 'function') { return; }
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progress(Math.min(1, offset / MAX));
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};
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var nonce = createNonce();
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var i = 0;
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var prefix = u8.subarray(0, 2);
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var metadataLength = decodePrefix(prefix);
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var res = {
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metadata: undefined,
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};
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var metaBox = new Uint8Array(u8.subarray(2, 2 + metadataLength));
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var metaChunk = Nacl.secretbox.open(metaBox, nonce, key);
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increment(nonce);
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try {
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res.metadata = JSON.parse(Nacl.util.encodeUTF8(metaChunk));
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} catch (e) {
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return window.setTimeout(function () {
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done('E_METADATA_DECRYPTION');
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});
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}
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if (!res.metadata) {
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return void setTimeout(function () {
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done('NO_METADATA');
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});
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}
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var takeChunk = function (cb) {
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var start = i * cypherChunkLength + 2 + metadataLength;
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var end = start + cypherChunkLength;
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i++;
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var box = new Uint8Array(u8.subarray(start, end));
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// decrypt the chunk
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var plaintext = Nacl.secretbox.open(box, nonce, key);
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increment(nonce);
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if (!plaintext) { return cb('DECRYPTION_ERROR'); }
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_progress(end);
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cb(void 0, plaintext);
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};
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var chunks = [];
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var again = function () {
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takeChunk(function (e, plaintext) {
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if (e) {
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return setTimeout(function () {
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done(e);
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});
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}
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if (plaintext) {
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if ((2 + metadataLength + i * cypherChunkLength) < u8.length) { // not done
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chunks.push(plaintext);
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return setTimeout(again);
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}
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chunks.push(plaintext);
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res.content = joinChunks(chunks);
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return done(void 0, res);
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}
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done('UNEXPECTED_ENDING');
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});
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};
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again();
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};
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// metadata
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/* { filename: 'raccoon.jpg', type: 'image/jpeg' } */
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var encrypt = function (u8, metadata, key) {
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var nonce = createNonce();
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// encode metadata
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var metaBuffer = Array.prototype.slice
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.call(Nacl.util.decodeUTF8(JSON.stringify(metadata)));
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var plaintext = new Uint8Array(metaBuffer);
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var i = 0;
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var state = 0;
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var next = function (cb) {
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if (state === 2) { return void cb(); }
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var start;
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var end;
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var part;
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var box;
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if (state === 0) { // metadata...
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part = new Uint8Array(plaintext);
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box = Nacl.secretbox(part, nonce, key);
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increment(nonce);
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if (box.length > 65535) {
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return void cb('METADATA_TOO_LARGE');
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}
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var prefixed = new Uint8Array(encodePrefix(box.length)
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.concat(slice(box)));
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state++;
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return void cb(void 0, prefixed);
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}
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// encrypt the rest of the file...
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start = i * plainChunkLength;
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end = start + plainChunkLength;
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part = u8.subarray(start, end);
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box = Nacl.secretbox(part, nonce, key);
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increment(nonce);
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i++;
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// regular data is done
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if (i * plainChunkLength >= u8.length) { state = 2; }
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return void cb(void 0, box);
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};
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return next;
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};
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return {
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decrypt: decrypt,
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encrypt: encrypt,
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joinChunks: joinChunks,
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computeEncryptedSize: computeEncryptedSize,
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decryptMetadata: decryptMetadata,
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fetchMetadata: fetchMetadata,
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fetchDecryptedMetadata: fetchDecryptedMetadata,
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};
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});
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