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module.exports = {
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// Simple encryption methods:
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encrypt,
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decrypt,
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// More advanced encryption methods:
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keyFromPassword,
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encryptWithKey,
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decryptWithKey,
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// Buffer <-> String methods
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convertArrayBufferViewtoString,
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convertStringToArrayBufferView,
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// Buffer <-> Hex string methods
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serializeBufferForStorage,
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serializeBufferFromStorage,
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// Buffer <-> base64 string methods
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encodeBufferToBase64,
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decodeBase64ToBuffer,
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generateSalt,
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}
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// Takes a Pojo, returns cypher text.
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function encrypt (password, dataObj) {
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return keyFromPassword(password)
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.then(function (passwordDerivedKey) {
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return encryptWithKey(passwordDerivedKey, dataObj)
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})
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}
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function encryptWithKey (key, dataObj) {
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var data = JSON.stringify(dataObj)
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var dataBuffer = convertStringToArrayBufferView(data)
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var vector = global.crypto.getRandomValues(new Uint8Array(16))
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return global.crypto.subtle.encrypt({
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name: 'AES-GCM',
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iv: vector,
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}, key, dataBuffer).then(function (buf) {
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var buffer = new Uint8Array(buf)
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var vectorStr = encodeBufferToBase64(vector)
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var vaultStr = encodeBufferToBase64(buffer)
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return `${vaultStr}\\${vectorStr}`
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})
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}
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// Takes encrypted text, returns the restored Pojo.
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function decrypt (password, text) {
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return keyFromPassword(password)
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.then(function (key) {
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return decryptWithKey(key, text)
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})
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}
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function decryptWithKey (key, text) {
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const parts = text.split('\\')
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const encryptedData = decodeBase64ToBuffer(parts[0])
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const vector = decodeBase64ToBuffer(parts[1])
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return crypto.subtle.decrypt({name: 'AES-GCM', iv: vector}, key, encryptedData)
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.then(function (result) {
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const decryptedData = new Uint8Array(result)
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const decryptedStr = convertArrayBufferViewtoString(decryptedData)
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const decryptedObj = JSON.parse(decryptedStr)
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return decryptedObj
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})
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.catch(function (reason) {
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throw new Error('Incorrect password')
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})
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}
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function convertStringToArrayBufferView (str) {
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var bytes = new Uint8Array(str.length)
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for (var i = 0; i < str.length; i++) {
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bytes[i] = str.charCodeAt(i)
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}
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return bytes
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}
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function convertArrayBufferViewtoString (buffer) {
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var str = ''
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for (var i = 0; i < buffer.byteLength; i++) {
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str += String.fromCharCode(buffer[i])
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}
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return str
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}
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function keyFromPassword (password) {
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var passBuffer = convertStringToArrayBufferView(password)
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return global.crypto.subtle.digest('SHA-256', passBuffer)
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.then(function (passHash) {
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return global.crypto.subtle.importKey('raw', passHash, {name: 'AES-GCM'}, false, ['encrypt', 'decrypt'])
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})
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}
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function serializeBufferFromStorage (str) {
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var stripStr = (str.slice(0, 2) === '0x') ? str.slice(2) : str
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var buf = new Uint8Array(stripStr.length / 2)
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for (var i = 0; i < stripStr.length; i += 2) {
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var seg = stripStr.substr(i, 2)
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buf[i / 2] = parseInt(seg, 16)
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}
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return buf
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}
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// Should return a string, ready for storage, in hex format.
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function serializeBufferForStorage (buffer) {
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var result = '0x'
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var len = buffer.length || buffer.byteLength
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for (var i = 0; i < len; i++) {
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result += unprefixedHex(buffer[i])
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}
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return result
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}
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function unprefixedHex (num) {
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var hex = num.toString(16)
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while (hex.length < 2) {
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hex = '0' + hex
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}
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return hex
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}
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function encodeBufferToBase64 (buf) {
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var b64encoded = btoa(String.fromCharCode.apply(null, buf))
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return b64encoded
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}
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function decodeBase64ToBuffer (base64) {
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var buf = new Uint8Array(atob(base64).split('')
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.map(function (c) {
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return c.charCodeAt(0)
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}))
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return buf
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}
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function generateSalt (byteCount = 32) {
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var view = new Uint8Array(byteCount)
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global.crypto.getRandomValues(view)
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var b64encoded = btoa(String.fromCharCode.apply(null, view))
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return b64encoded
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}
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