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595 lines
17 KiB
595 lines
17 KiB
const ethUtil = require('ethereumjs-util')
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const BN = ethUtil.BN
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const bip39 = require('bip39')
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const EventEmitter = require('events').EventEmitter
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const ObservableStore = require('obs-store')
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const filter = require('promise-filter')
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const encryptor = require('browser-passworder')
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const sigUtil = require('eth-sig-util')
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const normalizeAddress = sigUtil.normalize
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// Keyrings:
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const SimpleKeyring = require('eth-simple-keyring')
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const HdKeyring = require('eth-hd-keyring')
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const keyringTypes = [
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SimpleKeyring,
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HdKeyring,
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]
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class KeyringController extends EventEmitter {
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// PUBLIC METHODS
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//
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// THE FIRST SECTION OF METHODS ARE PUBLIC-FACING,
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// MEANING THEY ARE USED BY CONSUMERS OF THIS CLASS.
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//
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// THEIR SURFACE AREA SHOULD BE CHANGED WITH GREAT CARE.
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constructor (opts) {
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super()
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const initState = opts.initState || {}
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this.keyringTypes = keyringTypes
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this.store = new ObservableStore(initState)
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this.memStore = new ObservableStore({
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isUnlocked: false,
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keyringTypes: this.keyringTypes.map(krt => krt.type),
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keyrings: [],
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identities: {},
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})
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this.ethStore = opts.ethStore
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this.encryptor = encryptor
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this.keyrings = []
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this.getNetwork = opts.getNetwork
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}
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// Full Update
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// returns Promise( @object state )
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//
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// Emits the `update` event and
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// returns a Promise that resolves to the current state.
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//
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// Frequently used to end asynchronous chains in this class,
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// indicating consumers can often either listen for updates,
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// or accept a state-resolving promise to consume their results.
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//
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// Not all methods end with this, that might be a nice refactor.
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fullUpdate () {
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this.emit('update')
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return Promise.resolve(this.memStore.getState())
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}
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// Create New Vault And Keychain
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// @string password - The password to encrypt the vault with
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//
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// returns Promise( @object state )
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//
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// Destroys any old encrypted storage,
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// creates a new encrypted store with the given password,
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// randomly creates a new HD wallet with 1 account,
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// faucets that account on the testnet.
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createNewVaultAndKeychain (password) {
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return this.persistAllKeyrings(password)
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.then(this.createFirstKeyTree.bind(this))
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.then(this.fullUpdate.bind(this))
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}
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// CreateNewVaultAndRestore
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// @string password - The password to encrypt the vault with
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// @string seed - The BIP44-compliant seed phrase.
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//
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// returns Promise( @object state )
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//
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// Destroys any old encrypted storage,
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// creates a new encrypted store with the given password,
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// creates a new HD wallet from the given seed with 1 account.
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createNewVaultAndRestore (password, seed) {
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if (typeof password !== 'string') {
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return Promise.reject('Password must be text.')
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}
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if (!bip39.validateMnemonic(seed)) {
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return Promise.reject(new Error('Seed phrase is invalid.'))
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}
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this.clearKeyrings()
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return this.persistAllKeyrings(password)
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.then(() => {
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return this.addNewKeyring('HD Key Tree', {
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mnemonic: seed,
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numberOfAccounts: 1,
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})
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})
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.then((firstKeyring) => {
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return firstKeyring.getAccounts()
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})
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.then((accounts) => {
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const firstAccount = accounts[0]
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if (!firstAccount) throw new Error('KeyringController - First Account not found.')
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const hexAccount = normalizeAddress(firstAccount)
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this.emit('newAccount', hexAccount)
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return this.setupAccounts(accounts)
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})
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.then(this.persistAllKeyrings.bind(this, password))
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.then(this.fullUpdate.bind(this))
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}
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// Set Locked
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// returns Promise( @object state )
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//
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// This method deallocates all secrets, and effectively locks metamask.
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setLocked () {
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// set locked
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this.password = null
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this.memStore.updateState({ isUnlocked: false })
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// remove keyrings
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this.keyrings = []
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this._updateMemStoreKeyrings()
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return this.fullUpdate()
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}
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// Submit Password
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// @string password
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//
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// returns Promise( @object state )
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//
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// Attempts to decrypt the current vault and load its keyrings
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// into memory.
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//
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// Temporarily also migrates any old-style vaults first, as well.
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// (Pre MetaMask 3.0.0)
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submitPassword (password) {
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return this.unlockKeyrings(password)
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.then((keyrings) => {
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this.keyrings = keyrings
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return this.fullUpdate()
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})
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}
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// Add New Keyring
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// @string type
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// @object opts
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//
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// returns Promise( @Keyring keyring )
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//
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// Adds a new Keyring of the given `type` to the vault
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// and the current decrypted Keyrings array.
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//
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// All Keyring classes implement a unique `type` string,
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// and this is used to retrieve them from the keyringTypes array.
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addNewKeyring (type, opts) {
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const Keyring = this.getKeyringClassForType(type)
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const keyring = new Keyring(opts)
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return keyring.deserialize(opts)
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.then(() => {
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return keyring.getAccounts()
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})
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.then((accounts) => {
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return this.checkForDuplicate(type, accounts)
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})
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.then((checkedAccounts) => {
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this.keyrings.push(keyring)
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return this.setupAccounts(checkedAccounts)
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})
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.then(() => this.persistAllKeyrings())
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.then(() => this._updateMemStoreKeyrings())
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.then(() => this.fullUpdate())
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.then(() => {
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return keyring
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})
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}
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// For now just checks for simple key pairs
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// but in the future
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// should possibly add HD and other types
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//
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checkForDuplicate (type, newAccount) {
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return this.getAccounts()
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.then((accounts) => {
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switch (type) {
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case 'Simple Key Pair':
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const isNotIncluded = !accounts.find((key) => key === newAccount[0] || key === ethUtil.stripHexPrefix(newAccount[0]))
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return (isNotIncluded) ? Promise.resolve(newAccount) : Promise.reject(new Error('The account you\'re are trying to import is a duplicate'))
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default:
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return Promise.resolve(newAccount)
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}
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})
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}
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// Add New Account
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// @number keyRingNum
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//
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// returns Promise( @object state )
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//
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// Calls the `addAccounts` method on the Keyring
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// in the kryings array at index `keyringNum`,
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// and then saves those changes.
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addNewAccount (selectedKeyring) {
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return selectedKeyring.addAccounts(1)
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.then(this.setupAccounts.bind(this))
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.then(this.persistAllKeyrings.bind(this))
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.then(this._updateMemStoreKeyrings.bind(this))
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.then(this.fullUpdate.bind(this))
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}
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// Save Account Label
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// @string account
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// @string label
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//
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// returns Promise( @string label )
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//
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// Persists a nickname equal to `label` for the specified account.
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saveAccountLabel (account, label) {
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try {
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const hexAddress = normalizeAddress(account)
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// update state on diskStore
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const state = this.store.getState()
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const walletNicknames = state.walletNicknames || {}
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walletNicknames[hexAddress] = label
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this.store.updateState({ walletNicknames })
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// update state on memStore
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const identities = this.memStore.getState().identities
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identities[hexAddress].name = label
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this.memStore.updateState({ identities })
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return Promise.resolve(label)
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} catch (err) {
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return Promise.reject(err)
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}
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}
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// Export Account
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// @string address
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//
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// returns Promise( @string privateKey )
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//
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// Requests the private key from the keyring controlling
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// the specified address.
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//
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// Returns a Promise that may resolve with the private key string.
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exportAccount (address) {
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try {
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return this.getKeyringForAccount(address)
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.then((keyring) => {
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return keyring.exportAccount(normalizeAddress(address))
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})
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} catch (e) {
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return Promise.reject(e)
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}
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}
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// SIGNING METHODS
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//
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// This method signs tx and returns a promise for
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// TX Manager to update the state after signing
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signTransaction (ethTx, _fromAddress) {
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const fromAddress = normalizeAddress(_fromAddress)
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return this.getKeyringForAccount(fromAddress)
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.then((keyring) => {
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return keyring.signTransaction(fromAddress, ethTx)
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})
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}
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// Sign Message
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// @object msgParams
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//
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// returns Promise(@buffer rawSig)
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//
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// Attempts to sign the provided @object msgParams.
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signMessage (msgParams) {
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const address = normalizeAddress(msgParams.from)
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return this.getKeyringForAccount(address)
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.then((keyring) => {
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return keyring.signMessage(address, msgParams.data)
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})
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}
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// Sign Personal Message
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// @object msgParams
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//
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// returns Promise(@buffer rawSig)
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//
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// Attempts to sign the provided @object msgParams.
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// Prefixes the hash before signing as per the new geth behavior.
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signPersonalMessage (msgParams) {
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const address = normalizeAddress(msgParams.from)
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return this.getKeyringForAccount(address)
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.then((keyring) => {
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return keyring.signPersonalMessage(address, msgParams.data)
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})
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}
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// PRIVATE METHODS
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//
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// THESE METHODS ARE ONLY USED INTERNALLY TO THE KEYRING-CONTROLLER
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// AND SO MAY BE CHANGED MORE LIBERALLY THAN THE ABOVE METHODS.
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// Create First Key Tree
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// returns @Promise
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//
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// Clears the vault,
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// creates a new one,
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// creates a random new HD Keyring with 1 account,
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// makes that account the selected account,
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// faucets that account on testnet,
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// puts the current seed words into the state tree.
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createFirstKeyTree () {
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this.clearKeyrings()
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return this.addNewKeyring('HD Key Tree', { numberOfAccounts: 1 })
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.then((keyring) => {
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return keyring.getAccounts()
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})
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.then((accounts) => {
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const firstAccount = accounts[0]
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if (!firstAccount) throw new Error('KeyringController - No account found on keychain.')
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const hexAccount = normalizeAddress(firstAccount)
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this.emit('newAccount', hexAccount)
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this.emit('newVault', hexAccount)
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return this.setupAccounts(accounts)
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})
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.then(this.persistAllKeyrings.bind(this))
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}
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// Setup Accounts
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// @array accounts
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//
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// returns @Promise(@object account)
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//
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// Initializes the provided account array
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// Gives them numerically incremented nicknames,
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// and adds them to the ethStore for regular balance checking.
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setupAccounts (accounts) {
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return this.getAccounts()
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.then((loadedAccounts) => {
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const arr = accounts || loadedAccounts
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return Promise.all(arr.map((account) => {
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return this.getBalanceAndNickname(account)
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}))
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})
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}
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// Get Balance And Nickname
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// @string account
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//
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// returns Promise( @string label )
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//
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// Takes an account address and an iterator representing
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// the current number of named accounts.
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getBalanceAndNickname (account) {
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if (!account) {
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throw new Error('Problem loading account.')
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}
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const address = normalizeAddress(account)
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this.ethStore.addAccount(address)
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return this.createNickname(address)
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}
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// Create Nickname
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// @string address
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//
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// returns Promise( @string label )
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//
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// Takes an address, and assigns it an incremented nickname, persisting it.
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createNickname (address) {
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const hexAddress = normalizeAddress(address)
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const identities = this.memStore.getState().identities
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const currentIdentityCount = Object.keys(identities).length + 1
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const nicknames = this.store.getState().walletNicknames || {}
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const existingNickname = nicknames[hexAddress]
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const name = existingNickname || `Account ${currentIdentityCount}`
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identities[hexAddress] = {
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address: hexAddress,
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name,
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}
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this.memStore.updateState({ identities })
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return this.saveAccountLabel(hexAddress, name)
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}
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// Persist All Keyrings
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// @password string
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//
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// returns Promise
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//
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// Iterates the current `keyrings` array,
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// serializes each one into a serialized array,
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// encrypts that array with the provided `password`,
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// and persists that encrypted string to storage.
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persistAllKeyrings (password = this.password) {
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if (typeof password === 'string') {
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this.password = password
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this.memStore.updateState({ isUnlocked: true })
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}
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return Promise.all(this.keyrings.map((keyring) => {
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return Promise.all([keyring.type, keyring.serialize()])
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.then((serializedKeyringArray) => {
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// Label the output values on each serialized Keyring:
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return {
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type: serializedKeyringArray[0],
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data: serializedKeyringArray[1],
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}
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})
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}))
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.then((serializedKeyrings) => {
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return this.encryptor.encrypt(this.password, serializedKeyrings)
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})
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.then((encryptedString) => {
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this.store.updateState({ vault: encryptedString })
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return true
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})
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}
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// Unlock Keyrings
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// @string password
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//
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// returns Promise( @array keyrings )
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//
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// Attempts to unlock the persisted encrypted storage,
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// initializing the persisted keyrings to RAM.
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unlockKeyrings (password) {
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const encryptedVault = this.store.getState().vault
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if (!encryptedVault) {
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throw new Error('Cannot unlock without a previous vault.')
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}
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return this.encryptor.decrypt(password, encryptedVault)
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.then((vault) => {
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this.password = password
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this.memStore.updateState({ isUnlocked: true })
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vault.forEach(this.restoreKeyring.bind(this))
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return this.keyrings
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})
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}
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// Restore Keyring
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// @object serialized
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//
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// returns Promise( @Keyring deserialized )
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//
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// Attempts to initialize a new keyring from the provided
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// serialized payload.
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//
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// On success, returns the resulting @Keyring instance.
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restoreKeyring (serialized) {
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const { type, data } = serialized
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const Keyring = this.getKeyringClassForType(type)
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const keyring = new Keyring()
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return keyring.deserialize(data)
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.then(() => {
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return keyring.getAccounts()
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})
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.then((accounts) => {
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return this.setupAccounts(accounts)
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})
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.then(() => {
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this.keyrings.push(keyring)
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this._updateMemStoreKeyrings()
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return keyring
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})
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}
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// Get Keyring Class For Type
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// @string type
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//
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// Returns @class Keyring
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//
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// Searches the current `keyringTypes` array
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// for a Keyring class whose unique `type` property
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// matches the provided `type`,
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// returning it if it exists.
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getKeyringClassForType (type) {
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return this.keyringTypes.find(kr => kr.type === type)
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}
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getKeyringsByType (type) {
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return this.keyrings.filter((keyring) => keyring.type === type)
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}
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// Get Accounts
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// returns Promise( @Array[ @string accounts ] )
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//
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// Returns the public addresses of all current accounts
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// managed by all currently unlocked keyrings.
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getAccounts () {
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const keyrings = this.keyrings || []
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return Promise.all(keyrings.map(kr => kr.getAccounts()))
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.then((keyringArrays) => {
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return keyringArrays.reduce((res, arr) => {
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return res.concat(arr)
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}, [])
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})
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}
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// Get Keyring For Account
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// @string address
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//
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// returns Promise(@Keyring keyring)
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//
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// Returns the currently initialized keyring that manages
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// the specified `address` if one exists.
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getKeyringForAccount (address) {
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const hexed = normalizeAddress(address)
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log.debug(`KeyringController - getKeyringForAccount: ${hexed}`)
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return Promise.all(this.keyrings.map((keyring) => {
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return Promise.all([
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keyring,
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keyring.getAccounts(),
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])
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}))
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.then(filter((candidate) => {
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const accounts = candidate[1].map(normalizeAddress)
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return accounts.includes(hexed)
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}))
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.then((winners) => {
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if (winners && winners.length > 0) {
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return winners[0][0]
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} else {
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throw new Error('No keyring found for the requested account.')
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}
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})
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}
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// Display For Keyring
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// @Keyring keyring
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//
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// returns Promise( @Object { type:String, accounts:Array } )
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//
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// Is used for adding the current keyrings to the state object.
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displayForKeyring (keyring) {
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return keyring.getAccounts()
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.then((accounts) => {
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return {
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type: keyring.type,
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accounts: accounts,
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}
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})
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}
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// Add Gas Buffer
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// @string gas (as hexadecimal value)
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//
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// returns @string bufferedGas (as hexadecimal value)
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//
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// Adds a healthy buffer of gas to an initial gas estimate.
|
|
addGasBuffer (gas) {
|
|
const gasBuffer = new BN('100000', 10)
|
|
const bnGas = new BN(ethUtil.stripHexPrefix(gas), 16)
|
|
const correct = bnGas.add(gasBuffer)
|
|
return ethUtil.addHexPrefix(correct.toString(16))
|
|
}
|
|
|
|
// Clear Keyrings
|
|
//
|
|
// Deallocates all currently managed keyrings and accounts.
|
|
// Used before initializing a new vault.
|
|
clearKeyrings () {
|
|
let accounts
|
|
try {
|
|
accounts = Object.keys(this.ethStore.getState())
|
|
} catch (e) {
|
|
accounts = []
|
|
}
|
|
accounts.forEach((address) => {
|
|
this.ethStore.removeAccount(address)
|
|
})
|
|
|
|
// clear keyrings from memory
|
|
this.keyrings = []
|
|
this.memStore.updateState({
|
|
keyrings: [],
|
|
identities: {},
|
|
})
|
|
}
|
|
|
|
_updateMemStoreKeyrings () {
|
|
Promise.all(this.keyrings.map(this.displayForKeyring))
|
|
.then((keyrings) => {
|
|
this.memStore.updateState({ keyrings })
|
|
})
|
|
}
|
|
|
|
}
|
|
|
|
module.exports = KeyringController
|
|
|