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548 lines
22 KiB
548 lines
22 KiB
#!/usr/bin/env python
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#
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# Electrum - Lightweight Bitcoin Client
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# Copyright (C) 2015 Thomas Voegtlin
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#
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# Permission is hereby granted, free of charge, to any person
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# obtaining a copy of this software and associated documentation files
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# (the "Software"), to deal in the Software without restriction,
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# including without limitation the rights to use, copy, modify, merge,
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# publish, distribute, sublicense, and/or sell copies of the Software,
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# and to permit persons to whom the Software is furnished to do so,
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# subject to the following conditions:
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#
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# The above copyright notice and this permission notice shall be
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# included in all copies or substantial portions of the Software.
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#
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# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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# EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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# MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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# NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
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# BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
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# ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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# CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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# SOFTWARE.
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import socket
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import os
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import re
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import requests
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import json
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from hashlib import sha256
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from urlparse import urljoin
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from urllib import quote
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import electrum
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from electrum import bitcoin
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from electrum import keystore
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from electrum.bitcoin import *
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from electrum.mnemonic import Mnemonic
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from electrum import version
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from electrum.wallet import Multisig_Wallet, Deterministic_Wallet, Wallet
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from electrum.i18n import _
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from electrum.plugins import BasePlugin, run_hook, hook
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from electrum.util import NotEnoughFunds
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# signing_xpub is hardcoded so that the wallet can be restored from seed, without TrustedCoin's server
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signing_xpub = "xpub661MyMwAqRbcGnMkaTx2594P9EDuiEqMq25PM2aeG6UmwzaohgA6uDmNsvSUV8ubqwA3Wpste1hg69XHgjUuCD5HLcEp2QPzyV1HMrPppsL"
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billing_xpub = "xpub6DTBdtBB8qUmH5c77v8qVGVoYk7WjJNpGvutqjLasNG1mbux6KsojaLrYf2sRhXAVU4NaFuHhbD9SvVPRt1MB1MaMooRuhHcAZH1yhQ1qDU"
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SEED_PREFIX = version.SEED_PREFIX_2FA
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DISCLAIMER = [
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_("Two-factor authentication is a service provided by TrustedCoin. "
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"It uses a multi-signature wallet, where you own 2 of 3 keys. "
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"The third key is stored on a remote server that signs transactions on "
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"your behalf. To use this service, you will need a smartphone with "
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"Google Authenticator installed."),
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_("A small fee will be charged on each transaction that uses the "
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"remote server. You may check and modify your billing preferences "
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"once the installation is complete."),
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_("Note that your coins are not locked in this service. You may withdraw "
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"your funds at any time and at no cost, without the remote server, by "
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"using the 'restore wallet' option with your wallet seed."),
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_("The next step will generate the seed of your wallet. This seed will "
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"NOT be saved in your computer, and it must be stored on paper. "
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"To be safe from malware, you may want to do this on an offline "
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"computer, and move your wallet later to an online computer."),
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]
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RESTORE_MSG = _("Enter the seed for your 2-factor wallet:")
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class TrustedCoinException(Exception):
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def __init__(self, message, status_code=0):
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Exception.__init__(self, message)
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self.status_code = status_code
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class TrustedCoinCosignerClient(object):
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def __init__(self, user_agent=None, base_url='https://api.trustedcoin.com/2/'):
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self.base_url = base_url
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self.debug = False
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self.user_agent = user_agent
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def send_request(self, method, relative_url, data=None):
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kwargs = {'headers': {}}
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if self.user_agent:
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kwargs['headers']['user-agent'] = self.user_agent
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if method == 'get' and data:
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kwargs['params'] = data
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elif method == 'post' and data:
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kwargs['data'] = json.dumps(data)
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kwargs['headers']['content-type'] = 'application/json'
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url = urljoin(self.base_url, relative_url)
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if self.debug:
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print '%s %s %s' % (method, url, data)
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response = requests.request(method, url, **kwargs)
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if self.debug:
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print response.text
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print
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if response.status_code != 200:
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message = str(response.text)
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if response.headers.get('content-type') == 'application/json':
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r = response.json()
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if 'message' in r:
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message = r['message']
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raise TrustedCoinException(message, response.status_code)
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if response.headers.get('content-type') == 'application/json':
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return response.json()
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else:
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return response.text
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def get_terms_of_service(self, billing_plan='electrum-per-tx-otp'):
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"""
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Returns the TOS for the given billing plan as a plain/text unicode string.
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:param billing_plan: the plan to return the terms for
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"""
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payload = {'billing_plan': billing_plan}
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return self.send_request('get', 'tos', payload)
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def create(self, xpubkey1, xpubkey2, email, billing_plan='electrum-per-tx-otp'):
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"""
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Creates a new cosigner resource.
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:param xpubkey1: a bip32 extended public key (customarily the hot key)
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:param xpubkey2: a bip32 extended public key (customarily the cold key)
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:param email: a contact email
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:param billing_plan: the billing plan for the cosigner
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"""
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payload = {
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'email': email,
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'xpubkey1': xpubkey1,
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'xpubkey2': xpubkey2,
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'billing_plan': billing_plan,
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}
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return self.send_request('post', 'cosigner', payload)
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def auth(self, id, otp):
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"""
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Attempt to authenticate for a particular cosigner.
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:param id: the id of the cosigner
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:param otp: the one time password
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"""
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payload = {'otp': otp}
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return self.send_request('post', 'cosigner/%s/auth' % quote(id), payload)
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def get(self, id):
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""" Get billing info """
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return self.send_request('get', 'cosigner/%s' % quote(id))
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def get_challenge(self, id):
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""" Get challenge to reset Google Auth secret """
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return self.send_request('get', 'cosigner/%s/otp_secret' % quote(id))
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def reset_auth(self, id, challenge, signatures):
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""" Reset Google Auth secret """
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payload = {'challenge':challenge, 'signatures':signatures}
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return self.send_request('post', 'cosigner/%s/otp_secret' % quote(id), payload)
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def sign(self, id, transaction, otp):
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"""
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Attempt to authenticate for a particular cosigner.
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:param id: the id of the cosigner
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:param transaction: the hex encoded [partially signed] compact transaction to sign
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:param otp: the one time password
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"""
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payload = {
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'otp': otp,
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'transaction': transaction
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}
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return self.send_request('post', 'cosigner/%s/sign' % quote(id), payload)
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def transfer_credit(self, id, recipient, otp, signature_callback):
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"""
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Tranfer a cosigner's credits to another cosigner.
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:param id: the id of the sending cosigner
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:param recipient: the id of the recipient cosigner
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:param otp: the one time password (of the sender)
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:param signature_callback: a callback that signs a text message using xpubkey1/0/0 returning a compact sig
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"""
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payload = {
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'otp': otp,
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'recipient': recipient,
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'timestamp': int(time.time()),
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}
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relative_url = 'cosigner/%s/transfer' % quote(id)
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full_url = urljoin(self.base_url, relative_url)
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headers = {
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'x-signature': signature_callback(full_url + '\n' + json.dumps(payload))
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}
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return self.send_request('post', relative_url, payload, headers)
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server = TrustedCoinCosignerClient(user_agent="Electrum/" + version.ELECTRUM_VERSION)
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class Wallet_2fa(Multisig_Wallet):
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def __init__(self, storage):
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self.m, self.n = 2, 3
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Deterministic_Wallet.__init__(self, storage)
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self.is_billing = False
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self.billing_info = None
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def can_sign_without_server(self):
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return not self.keystores['x2/'].is_watching_only()
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def get_user_id(self):
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return get_user_id(self.storage)
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def get_max_amount(self, config, inputs, recipient, fee):
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from electrum.transaction import Transaction
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sendable = sum(map(lambda x:x['value'], inputs))
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for i in inputs:
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self.add_input_info(i)
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xf = self.extra_fee()
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_type, addr = recipient
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if xf and sendable >= xf:
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billing_address = self.billing_info['billing_address']
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sendable -= xf
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outputs = [(_type, addr, sendable),
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(TYPE_ADDRESS, billing_address, xf)]
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else:
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outputs = [(_type, addr, sendable)]
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dummy_tx = Transaction.from_io(inputs, outputs)
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if fee is None:
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fee = self.estimate_fee(config, dummy_tx.estimated_size())
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amount = max(0, sendable - fee)
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return amount, fee
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def extra_fee(self):
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if self.can_sign_without_server():
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return 0
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if self.billing_info.get('tx_remaining'):
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return 0
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if self.is_billing:
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return 0
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price = int(self.price_per_tx.get(1))
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assert price <= 100000
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return price
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def make_unsigned_transaction(self, coins, outputs, config,
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fixed_fee=None, change_addr=None):
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mk_tx = lambda o: Multisig_Wallet.make_unsigned_transaction(
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self, coins, o, config, fixed_fee, change_addr)
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fee = self.extra_fee()
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if fee:
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address = self.billing_info['billing_address']
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fee_output = (TYPE_ADDRESS, address, fee)
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try:
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tx = mk_tx(outputs + [fee_output])
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except NotEnoughFunds:
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# trustedcoin won't charge if the total inputs is
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# lower than their fee
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tx = mk_tx(outputs)
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if tx.input_value() >= fee:
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raise
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self.print_error("not charging for this tx")
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else:
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tx = mk_tx(outputs)
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return tx
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def sign_transaction(self, tx, password):
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Multisig_Wallet.sign_transaction(self, tx, password)
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if tx.is_complete():
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return
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if not self.auth_code:
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self.print_error("sign_transaction: no auth code")
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return
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long_user_id, short_id = self.get_user_id()
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tx_dict = tx.as_dict()
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raw_tx = tx_dict["hex"]
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r = server.sign(short_id, raw_tx, self.auth_code)
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if r:
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raw_tx = r.get('transaction')
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tx.update(raw_tx)
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self.print_error("twofactor: is complete", tx.is_complete())
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# Utility functions
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def get_user_id(storage):
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def make_long_id(xpub_hot, xpub_cold):
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return bitcoin.sha256(''.join(sorted([xpub_hot, xpub_cold])))
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xpub1 = storage.get('x1/')['xpub']
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xpub2 = storage.get('x2/')['xpub']
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long_id = make_long_id(xpub1, xpub2)
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short_id = hashlib.sha256(long_id).hexdigest()
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return long_id, short_id
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def make_xpub(xpub, s):
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version, _, _, _, c, cK = deserialize_xpub(xpub)
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cK2, c2 = bitcoin._CKD_pub(cK, c, s)
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return bitcoin.serialize_xpub(version, c2, cK2)
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def make_billing_address(wallet, num):
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long_id, short_id = wallet.get_user_id()
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xpub = make_xpub(billing_xpub, long_id)
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version, _, _, _, c, cK = deserialize_xpub(xpub)
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cK, c = bitcoin.CKD_pub(cK, c, num)
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return bitcoin.public_key_to_p2pkh(cK)
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class TrustedCoinPlugin(BasePlugin):
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wallet_class = Wallet_2fa
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def __init__(self, parent, config, name):
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BasePlugin.__init__(self, parent, config, name)
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self.wallet_class.plugin = self
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@staticmethod
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def is_valid_seed(seed):
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return bitcoin.is_new_seed(seed, SEED_PREFIX)
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def is_available(self):
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return True
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def is_enabled(self):
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return True
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@hook
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def get_additional_fee(self, wallet, tx):
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if type(wallet) != Wallet_2fa:
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return
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address = wallet.billing_info['billing_address']
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for _type, addr, amount in tx.outputs():
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if _type == TYPE_ADDRESS and addr == address:
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return amount
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def request_billing_info(self, wallet):
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billing_info = server.get(wallet.get_user_id()[1])
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billing_address = make_billing_address(wallet, billing_info['billing_index'])
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assert billing_address == billing_info['billing_address']
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wallet.billing_info = billing_info
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wallet.price_per_tx = dict(billing_info['price_per_tx'])
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return True
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def make_seed(self):
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return Mnemonic('english').make_seed(seed_type='2fa', num_bits=128)
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@hook
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def do_clear(self, window):
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window.wallet.is_billing = False
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def show_disclaimer(self, wizard):
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wizard.set_icon(':icons/trustedcoin-wizard.png')
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wizard.stack = []
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wizard.confirm_dialog(title='Disclaimer', message='\n\n'.join(DISCLAIMER), run_next = lambda x: wizard.run('choose_seed'))
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def choose_seed(self, wizard):
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title = _('Create or restore')
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message = _('Do you want to create a new seed, or to restore a wallet using an existing seed?')
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choices = [
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('create_seed', _('Create a new seed')),
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('restore_wallet', _('I already have a seed')),
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]
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wizard.choice_dialog(title=title, message=message, choices=choices, run_next=wizard.run)
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def create_seed(self, wizard):
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seed = self.make_seed()
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f = lambda x: wizard.request_passphrase(seed, x)
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wizard.show_seed_dialog(run_next=f, seed_text=seed)
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def xkeys_from_seed(self, seed, passphrase):
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words = seed.split()
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n = len(words)
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# old version use long seed phrases
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if n >= 24:
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assert passphrase == ''
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xprv1, xpub1 = keystore.xkeys_from_seed(' '.join(words[0:12]), '', "m/")
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xprv2, xpub2 = keystore.xkeys_from_seed(' '.join(words[12:]), '', "m/")
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elif n==12:
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xprv1, xpub1 = keystore.xkeys_from_seed(seed, passphrase, "m/0'/")
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xprv2, xpub2 = keystore.xkeys_from_seed(seed, passphrase, "m/1'/")
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else:
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raise BaseException('unrecognized seed length')
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return xprv1, xpub1, xprv2, xpub2
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def create_keystore(self, wizard, seed, passphrase):
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# this overloads the wizard's method
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xprv1, xpub1, xprv2, xpub2 = self.xkeys_from_seed(seed, passphrase)
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k1 = keystore.from_xprv(xprv1)
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k2 = keystore.from_xpub(xpub2)
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wizard.request_password(run_next=lambda pw, encrypt: self.on_password(wizard, pw, encrypt, k1, k2))
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def on_password(self, wizard, password, encrypt, k1, k2):
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k1.update_password(None, password)
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wizard.storage.set_password(password, encrypt)
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wizard.storage.put('x1/', k1.dump())
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wizard.storage.put('x2/', k2.dump())
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wizard.storage.write()
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msg = [
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_("Your wallet file is: %s.")%os.path.abspath(wizard.storage.path),
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_("You need to be online in order to complete the creation of "
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"your wallet. If you generated your seed on an offline "
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'computer, click on "%s" to close this window, move your '
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"wallet file to an online computer, and reopen it with "
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"Electrum.") % _('Cancel'),
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_('If you are online, click on "%s" to continue.') % _('Next')
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]
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msg = '\n\n'.join(msg)
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wizard.stack = []
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wizard.confirm_dialog(title='', message=msg, run_next = lambda x: wizard.run('create_remote_key'))
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def restore_wallet(self, wizard):
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wizard.opt_bip39 = False
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wizard.opt_ext = True
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title = _("Restore two-factor Wallet")
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f = lambda seed, is_bip39, is_ext: wizard.run('on_restore_seed', seed, is_ext)
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wizard.restore_seed_dialog(run_next=f, test=self.is_valid_seed)
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def on_restore_seed(self, wizard, seed, is_ext):
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f = lambda x: self.restore_choice(wizard, seed, x)
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wizard.passphrase_dialog(run_next=f) if is_ext else f('')
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def restore_choice(self, wizard, seed, passphrase):
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wizard.set_icon(':icons/trustedcoin-wizard.png')
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wizard.stack = []
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title = _('Restore 2FA wallet')
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msg = ' '.join([
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'You are going to restore a wallet protected with two-factor authentication.',
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'Do you want to keep using two-factor authentication with this wallet,',
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'or do you want to disable it, and have two master private keys in your wallet?'
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])
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choices = [('keep', 'Keep'), ('disable', 'Disable')]
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f = lambda x: self.on_choice(wizard, seed, passphrase, x)
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wizard.choice_dialog(choices=choices, message=msg, title=title, run_next=f)
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def on_choice(self, wizard, seed, passphrase, x):
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if x == 'disable':
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f = lambda pw, encrypt: wizard.run('on_restore_pw', seed, passphrase, pw, encrypt)
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wizard.request_password(run_next=f)
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else:
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self.create_keystore(wizard, seed, passphrase)
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def on_restore_pw(self, wizard, seed, passphrase, password, encrypt):
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storage = wizard.storage
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xprv1, xpub1, xprv2, xpub2 = self.xkeys_from_seed(seed, passphrase)
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k1 = keystore.from_xprv(xprv1)
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k2 = keystore.from_xprv(xprv2)
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k1.add_seed(seed)
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k1.update_password(None, password)
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k2.update_password(None, password)
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storage.put('x1/', k1.dump())
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storage.put('x2/', k2.dump())
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long_user_id, short_id = get_user_id(storage)
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xpub3 = make_xpub(signing_xpub, long_user_id)
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k3 = keystore.from_xpub(xpub3)
|
|
storage.put('x3/', k3.dump())
|
|
storage.set_password(password, encrypt)
|
|
wizard.wallet = Wallet_2fa(storage)
|
|
wizard.create_addresses()
|
|
|
|
def create_remote_key(self, wizard):
|
|
email = self.accept_terms_of_use(wizard)
|
|
xpub1 = wizard.storage.get('x1/')['xpub']
|
|
xpub2 = wizard.storage.get('x2/')['xpub']
|
|
# Generate third key deterministically.
|
|
long_user_id, short_id = get_user_id(wizard.storage)
|
|
xpub3 = make_xpub(signing_xpub, long_user_id)
|
|
# secret must be sent by the server
|
|
try:
|
|
r = server.create(xpub1, xpub2, email)
|
|
except socket.error:
|
|
wizard.show_message('Server not reachable, aborting')
|
|
return
|
|
except TrustedCoinException as e:
|
|
if e.status_code == 409:
|
|
r = None
|
|
else:
|
|
raise e
|
|
if r is None:
|
|
otp_secret = None
|
|
else:
|
|
otp_secret = r.get('otp_secret')
|
|
if not otp_secret:
|
|
wizard.show_message(_('Error'))
|
|
return
|
|
_xpub3 = r['xpubkey_cosigner']
|
|
_id = r['id']
|
|
try:
|
|
assert _id == short_id, ("user id error", _id, short_id)
|
|
assert xpub3 == _xpub3, ("xpub3 error", xpub3, _xpub3)
|
|
except Exception as e:
|
|
wizard.show_message(str(e))
|
|
return
|
|
self.check_otp(wizard, short_id, otp_secret, xpub3)
|
|
|
|
def check_otp(self, wizard, short_id, otp_secret, xpub3):
|
|
otp, reset = self.request_otp_dialog(wizard, short_id, otp_secret)
|
|
if otp:
|
|
self.do_auth(wizard, short_id, otp, xpub3)
|
|
elif reset:
|
|
wizard.opt_bip39 = False
|
|
wizard.opt_ext = True
|
|
f = lambda seed, is_bip39, is_ext: wizard.run('on_reset_seed', short_id, seed, is_ext, xpub3)
|
|
wizard.restore_seed_dialog(run_next=f, test=self.is_valid_seed)
|
|
|
|
def on_reset_seed(self, wizard, short_id, seed, is_ext, xpub3):
|
|
f = lambda passphrase: wizard.run('on_reset_auth', short_id, seed, passphrase, xpub3)
|
|
wizard.passphrase_dialog(run_next=f) if is_ext else f('')
|
|
|
|
def do_auth(self, wizard, short_id, otp, xpub3):
|
|
try:
|
|
server.auth(short_id, otp)
|
|
except:
|
|
wizard.show_message(_('Incorrect password'))
|
|
return
|
|
k3 = keystore.from_xpub(xpub3)
|
|
wizard.storage.put('x3/', k3.dump())
|
|
wizard.storage.put('use_trustedcoin', True)
|
|
wizard.storage.write()
|
|
wizard.wallet = Wallet_2fa(wizard.storage)
|
|
wizard.run('create_addresses')
|
|
|
|
def on_reset_auth(self, wizard, short_id, seed, passphrase, xpub3):
|
|
xprv1, xpub1, xprv2, xpub2 = self.xkeys_from_seed(seed, passphrase)
|
|
try:
|
|
assert xpub1 == wizard.storage.get('x1/')['xpub']
|
|
assert xpub2 == wizard.storage.get('x2/')['xpub']
|
|
except:
|
|
wizard.show_message(_('Incorrect seed'))
|
|
return
|
|
r = server.get_challenge(short_id)
|
|
challenge = r.get('challenge')
|
|
message = 'TRUSTEDCOIN CHALLENGE: ' + challenge
|
|
def f(xprv):
|
|
_, _, _, _, c, k = deserialize_xprv(xprv)
|
|
pk = bip32_private_key([0, 0], k, c)
|
|
key = regenerate_key(pk)
|
|
compressed = is_compressed(pk)
|
|
sig = key.sign_message(message, compressed)
|
|
return base64.b64encode(sig)
|
|
|
|
signatures = [f(x) for x in [xprv1, xprv2]]
|
|
r = server.reset_auth(short_id, challenge, signatures)
|
|
new_secret = r.get('otp_secret')
|
|
if not new_secret:
|
|
wizard.show_message(_('Request rejected by server'))
|
|
return
|
|
self.check_otp(wizard, short_id, new_secret, xpub3)
|
|
|
|
@hook
|
|
def get_action(self, storage):
|
|
if storage.get('wallet_type') != '2fa':
|
|
return
|
|
if not storage.get('x1/'):
|
|
return self, 'show_disclaimer'
|
|
if not storage.get('x2/'):
|
|
return self, 'show_disclaimer'
|
|
if not storage.get('x3/'):
|
|
return self, 'create_remote_key'
|
|
|