electrum-bitcoinprivate/plugins/keepkey/keepkey.py

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from binascii import unhexlify
from sys import stderr
import electrum
from electrum import bitcoin
from electrum.account import BIP32_Account
from electrum.bitcoin import bc_address_to_hash_160, xpub_from_pubkey
from electrum.i18n import _
from electrum.plugins import BasePlugin, hook
from electrum.transaction import deserialize, is_extended_pubkey
from electrum.wallet import BIP32_Hardware_Wallet
from electrum.util import print_error
try:
from keepkeylib.client import types
from keepkeylib.client import proto, BaseClient, ProtocolMixin
from keepkeylib.transport import ConnectionError
from keepkeylib.transport_hid import HidTransport
KEEPKEY = True
except ImportError:
KEEPKEY = False
import keepkeylib.ckd_public as ckd_public
def log(msg):
stderr.write("%s\n" % msg)
stderr.flush()
def give_error(message):
print_error(message)
raise Exception(message)
class KeepKeyWallet(BIP32_Hardware_Wallet):
wallet_type = 'keepkey'
root_derivation = "m/44'/0'"
device = 'KeepKey'
class KeepKeyPlugin(BasePlugin):
def __init__(self, parent, config, name):
BasePlugin.__init__(self, parent, config, name)
self._is_available = self._init()
self.wallet = None
self.handler = None
self.client = None
self.transport = None
def constructor(self, s):
return KeepKeyWallet(s)
def _init(self):
return KEEPKEY
def is_available(self):
if not self._is_available:
return False
if not self.wallet:
return False
if self.wallet.storage.get('wallet_type') != 'keepkey':
return False
return True
def set_enabled(self, enabled):
self.wallet.storage.put('use_' + self.name, enabled)
def is_enabled(self):
if not self.is_available():
return False
if self.wallet.has_seed():
return False
return True
def compare_version(self, major, minor=0, patch=0):
features = self.get_client().features
v = [features.major_version, features.minor_version, features.patch_version]
self.print_error('firmware version', v)
return cmp(v, [major, minor, patch])
def atleast_version(self, major, minor=0, patch=0):
return self.compare_version(major, minor, patch) >= 0
def get_client(self):
if not KEEPKEY:
give_error('please install github.com/keepkey/python-keepkey')
if not self.client or self.client.bad:
d = HidTransport.enumerate()
if not d:
give_error('Could not connect to your KeepKey. Please verify the cable is connected and that no other app is using it.')
self.transport = HidTransport(d[0])
self.client = QtGuiKeepKeyClient(self.transport)
self.client.handler = self.handler
self.client.set_tx_api(self)
self.client.bad = False
if not self.atleast_version(1, 0, 0):
self.client = None
give_error('Outdated KeepKey firmware. Please update the firmware from https://www.keepkey.com')
return self.client
@hook
def close_wallet(self):
print_error("keepkey: clear session")
if self.client:
self.client.clear_session()
self.client.transport.close()
self.client = None
self.wallet = None
def show_address(self, address):
self.wallet.check_proper_device()
try:
address_path = self.wallet.address_id(address)
address_n = self.get_client().expand_path(address_path)
except Exception, e:
give_error(e)
try:
self.get_client().get_address('Bitcoin', address_n, True)
except Exception, e:
give_error(e)
finally:
self.handler.stop()
def sign_transaction(self, tx, prev_tx, xpub_path):
self.prev_tx = prev_tx
self.xpub_path = xpub_path
client = self.get_client()
inputs = self.tx_inputs(tx, True)
outputs = self.tx_outputs(tx)
try:
signed_tx = client.sign_tx('Bitcoin', inputs, outputs)[1]
except Exception, e:
self.handler.stop()
give_error(e)
self.handler.stop()
raw = signed_tx.encode('hex')
tx.update_signatures(raw)
def tx_inputs(self, tx, for_sig=False):
inputs = []
for txin in tx.inputs:
txinputtype = types.TxInputType()
if txin.get('is_coinbase'):
prev_hash = "\0"*32
prev_index = 0xffffffff # signed int -1
else:
if for_sig:
x_pubkeys = txin['x_pubkeys']
if len(x_pubkeys) == 1:
x_pubkey = x_pubkeys[0]
xpub, s = BIP32_Account.parse_xpubkey(x_pubkey)
xpub_n = self.get_client().expand_path(self.xpub_path[xpub])
txinputtype.address_n.extend(xpub_n + s)
else:
def f(x_pubkey):
if is_extended_pubkey(x_pubkey):
xpub, s = BIP32_Account.parse_xpubkey(x_pubkey)
else:
xpub = xpub_from_pubkey(x_pubkey.decode('hex'))
s = []
node = ckd_public.deserialize(xpub)
return types.HDNodePathType(node=node, address_n=s)
pubkeys = map(f, x_pubkeys)
multisig = types.MultisigRedeemScriptType(
pubkeys=pubkeys,
signatures=map(lambda x: x.decode('hex') if x else '', txin.get('signatures')),
m=txin.get('num_sig'),
)
txinputtype = types.TxInputType(
script_type=types.SPENDMULTISIG,
multisig= multisig
)
# find which key is mine
for x_pubkey in x_pubkeys:
if is_extended_pubkey(x_pubkey):
xpub, s = BIP32_Account.parse_xpubkey(x_pubkey)
if xpub in self.xpub_path:
xpub_n = self.get_client().expand_path(self.xpub_path[xpub])
txinputtype.address_n.extend(xpub_n + s)
break
prev_hash = unhexlify(txin['prevout_hash'])
prev_index = txin['prevout_n']
txinputtype.prev_hash = prev_hash
txinputtype.prev_index = prev_index
if 'scriptSig' in txin:
script_sig = txin['scriptSig'].decode('hex')
txinputtype.script_sig = script_sig
if 'sequence' in txin:
sequence = txin['sequence']
txinputtype.sequence = sequence
inputs.append(txinputtype)
return inputs
def tx_outputs(self, tx):
outputs = []
for type, address, amount in tx.outputs:
assert type == 'address'
txoutputtype = types.TxOutputType()
if self.wallet.is_change(address):
address_path = self.wallet.address_id(address)
address_n = self.get_client().expand_path(address_path)
txoutputtype.address_n.extend(address_n)
else:
txoutputtype.address = address
txoutputtype.amount = amount
addrtype, hash_160 = bc_address_to_hash_160(address)
if addrtype == 0:
txoutputtype.script_type = types.PAYTOADDRESS
elif addrtype == 5:
txoutputtype.script_type = types.PAYTOSCRIPTHASH
else:
raise BaseException('addrtype')
outputs.append(txoutputtype)
return outputs
def electrum_tx_to_txtype(self, tx):
t = types.TransactionType()
d = deserialize(tx.raw)
t.version = d['version']
t.lock_time = d['lockTime']
inputs = self.tx_inputs(tx)
t.inputs.extend(inputs)
for vout in d['outputs']:
o = t.bin_outputs.add()
o.amount = vout['value']
o.script_pubkey = vout['scriptPubKey'].decode('hex')
return t
def get_tx(self, tx_hash):
tx = self.prev_tx[tx_hash]
tx.deserialize()
return self.electrum_tx_to_txtype(tx)
class KeepKeyGuiMixin(object):
def __init__(self, *args, **kwargs):
super(KeepKeyGuiMixin, self).__init__(*args, **kwargs)
def callback_ButtonRequest(self, msg):
if msg.code == 3:
message = "Confirm transaction outputs on KeepKey device to continue"
elif msg.code == 8:
message = "Confirm transaction fee on KeepKey device to continue"
elif msg.code == 7:
message = "Confirm message to sign on KeepKey device to continue"
elif msg.code == 10:
message = "Confirm address on KeepKey device to continue"
else:
message = "Check KeepKey device to continue"
cancel_callback=self.cancel if msg.code in [3, 8] else None
self.handler.show_message(message, cancel_callback)
return proto.ButtonAck()
def callback_PinMatrixRequest(self, msg):
if msg.type == 1:
desc = 'current PIN'
elif msg.type == 2:
desc = 'new PIN'
elif msg.type == 3:
desc = 'new PIN again'
else:
desc = 'PIN'
pin = self.handler.get_pin("Please enter KeepKey %s" % desc)
if not pin:
return proto.Cancel()
return proto.PinMatrixAck(pin=pin)
def callback_PassphraseRequest(self, req):
msg = _("Please enter your KeepKey passphrase.")
passphrase = self.handler.get_passphrase(msg)
if passphrase is None:
return proto.Cancel()
return proto.PassphraseAck(passphrase=passphrase)
def callback_WordRequest(self, msg):
#TODO
log("Enter one word of mnemonic: ")
word = raw_input()
return proto.WordAck(word=word)
if KEEPKEY:
class QtGuiKeepKeyClient(ProtocolMixin, KeepKeyGuiMixin, BaseClient):
def call_raw(self, msg):
try:
resp = BaseClient.call_raw(self, msg)
except ConnectionError:
self.bad = True
raise
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return resp