2017-04-17 20:37:26 +02:00
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/*
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Copyright (C) 2013-2017 Grégory Soutadé
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This file is part of gPass.
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gPass is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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gPass is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with gPass. If not, see <http://www.gnu.org/licenses/>.
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*/
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var default_preferences = {"pbkdf2_level": 1000,
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"account_url": "https://gpass-demo.soutade.fr/demo"};
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2017-04-17 20:37:26 +02:00
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var browser = browser;
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if (typeof chrome !== 'undefined')
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browser = chrome;
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2017-04-17 20:37:26 +02:00
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var crypto = crypto || window.crypto;
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// https://stackoverflow.com/questions/6965107/converting-between-strings-and-arraybuffers
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function ab2str(buf) {
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return String.fromCharCode.apply(null, new Uint8Array(buf));
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}
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// https://developers.google.com/web/updates/2012/06/How-to-convert-ArrayBuffer-to-and-from-String
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function str2ab2(str) {
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var chars = []
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for (var i=0, strLen=str.length; i < strLen; i++) {
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chars.push(str.charCodeAt(i));
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}
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return new Uint8Array(chars);
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}
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function str2ab(str) {
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var buf = new ArrayBuffer(str.length); // 2 bytes for each char
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// var buf = new ArrayBuffer(str.length*2); // 2 bytes for each char
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var bufView = new Uint8Array(buf);
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for (var i=0, strLen=str.length; i < strLen; i++) {
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bufView[i] = str.charCodeAt(i);
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}
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return bufView;
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}
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2017-04-17 20:37:26 +02:00
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function crypto_pbkdf2(mkey, salt, level)
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2017-04-17 20:37:26 +02:00
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{
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AESCBC = {
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name: "AES-CBC",
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length: 256,
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}
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var key = str2ab(mkey);
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return crypto.subtle.importKey("raw", key, {name: "PBKDF2"}, false, ["deriveBits", "deriveKey"])
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.then(function(key){
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//sha-256
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return crypto.subtle.deriveKey({
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name: "PBKDF2",
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salt: str2ab(salt),
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iterations: level,
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hash: "SHA-256",
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}, key, AESCBC, false, ["encrypt", "decrypt", "unwrapKey", "wrapKey"])
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.then(function(key) {
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return key;
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})
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.catch(function(err){
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console.log("Error derive key " + err);
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});
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})
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.catch(function(err) {
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console.log("Error import key" + err);
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});
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}
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2017-04-17 20:37:26 +02:00
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function simple_pbkdf2(mkey, salt, level)
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{
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AESCBC = {
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name: "AES-CBC",
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length: 256,
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}
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var key = str2ab(mkey);
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return crypto.subtle.importKey("raw", key, {name: "PBKDF2"}, false, ["deriveBits", "deriveKey"])
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.then(function(key){
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//sha-256
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return crypto.subtle.deriveKey({
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name: "PBKDF2",
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salt: str2ab(salt),
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iterations: level,
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hash: "SHA-256",
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}, key, AESCBC, true, ["unwrapKey", "wrapKey"])
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.then(function(key) {
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return crypto.subtle.exportKey("raw", key)
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.then(function (key) {
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return ab2str(key);
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});
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})
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.catch(function(err){
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console.log("Error derive key " + err);
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});
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})
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.catch(function(err) {
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console.log("Error import key" + err);
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});
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}
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function _encrypt(mkey, iv, data)
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{
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while ((data.length % 16))
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data += "\0";
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data = str2ab(data);
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promise = mkey.then(function(mkey){
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return crypto.subtle.encrypt({
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name: "AES-CBC",
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2017-04-17 20:37:26 +02:00
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iv: iv
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2017-04-17 20:37:26 +02:00
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}, mkey, data)})
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.then(function(encrypted) {
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return ab2str(encrypted);
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})
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.catch(function(encryption) {
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console.log("Encryption rejected " + encryption);
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});
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return promise;
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}
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2017-04-17 20:37:26 +02:00
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async function _decrypt(mkey, iv, data)
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2017-04-17 20:37:26 +02:00
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{
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while ((data.length % 16))
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data += "\0";
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2017-04-17 20:37:26 +02:00
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nulliv = new Uint8Array([0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]);
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2017-04-17 20:37:26 +02:00
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pkcs7_padding = new Uint8Array([16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16]);
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2017-04-17 20:37:26 +02:00
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pkcs7_padding = await _encrypt(mkey, nulliv, ab2str(pkcs7_padding));
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2017-04-17 20:37:26 +02:00
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data = str2ab(data + pkcs7_padding);
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promise = mkey.then(function(mkey){
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return crypto.subtle.decrypt({
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name: "AES-CBC",
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2017-04-17 20:37:26 +02:00
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iv: iv
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2017-04-17 20:37:26 +02:00
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}, mkey, data)})
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.then(function(decrypted) {
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return ab2str(decrypted);
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})
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.catch(function(decryption) {
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console.log("Decryption rejected " + decryption);
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});
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return promise;
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}
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2017-04-17 20:37:26 +02:00
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async function encrypt_ecb(mkey, data)
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2017-04-17 20:37:26 +02:00
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{
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var result = "";
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2017-04-17 20:37:26 +02:00
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nulliv = new Uint8Array([0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]);
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2017-04-17 20:37:26 +02:00
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while (data.length > 16)
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{
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2017-04-17 20:37:26 +02:00
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res = await _encrypt(mkey, nulliv, data.slice(0, 16));
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2017-04-17 20:37:26 +02:00
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// Remove PKCS7 padding
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result += res.slice(0, 16);
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data = data.slice(16);
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}
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2017-04-17 20:37:26 +02:00
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res = await _encrypt(mkey, nulliv, data);
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2017-04-17 20:37:26 +02:00
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result += res.slice(0, 16);
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return result;
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}
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2017-04-17 20:37:26 +02:00
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async function decrypt_ecb(mkey, data)
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2017-04-17 20:37:26 +02:00
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{
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var result = "";
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2017-04-17 20:37:26 +02:00
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nulliv = new Uint8Array([0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]);
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2017-04-17 20:37:26 +02:00
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while (data.length > 16)
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{
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2017-04-17 20:37:26 +02:00
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res = await _decrypt(mkey, nulliv, data.slice(0, 16));
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2017-04-17 20:37:26 +02:00
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// Remove PKCS7 padding
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result += res.slice(0, 16);
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data = data.slice(16);
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}
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2017-04-17 20:37:26 +02:00
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res = await _decrypt(mkey, nulliv, data);
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2017-04-17 20:37:26 +02:00
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result += res.slice(0, 16);
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return result;
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}
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2017-04-17 20:37:26 +02:00
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async function encrypt_cbc(mkey, iv, data)
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{
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var result = await _encrypt(mkey, str2ab(iv), data);
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// Remove PKCS7 padding
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return result.slice(0, result.length-16);
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}
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async function decrypt_cbc(mkey, iv, data)
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{
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var result = await _decrypt(mkey, str2ab(iv), data);
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// Remove PKCS7 padding
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return result.slice(0, result.length-16);
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}
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async function digest(data)
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{
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return crypto.subtle.digest("SHA-256", str2ab(data)).then(function (hash) {
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return ab2str(hash);
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});
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}
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