Add private key input to keyfile crate, handle empty bytes in in serialize
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@ -2,11 +2,12 @@
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import logging
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import binascii
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# third-party imports
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# external imports
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from rlp import encode as rlp_encode
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# local imports
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from crypto_dev_signer.common import strip_hex_prefix, add_hex_prefix
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from hexathon import (
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strip_0x,
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add_0x,
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)
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logg = logging.getLogger(__name__)
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@ -23,9 +24,12 @@ class Transaction:
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class EIP155Transaction:
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def __init__(self, tx, nonce, chainId=1):
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to = binascii.unhexlify(strip_hex_prefix(tx['to']))
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data = binascii.unhexlify(strip_hex_prefix(tx['data']))
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to = None
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data = None
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if tx['to'] != None:
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to = binascii.unhexlify(strip_0x(tx['to'], allow_empty=True))
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if tx['data'] != None:
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data = binascii.unhexlify(strip_0x(tx['data'], allow_empty=True))
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gas_price = None
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start_gas = None
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@ -75,7 +79,7 @@ class EIP155Transaction:
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self.v = chainId
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self.r = b''
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self.s = b''
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self.sender = strip_hex_prefix(tx['from'])
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self.sender = strip_0x(tx['from'])
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def __canonical_order(self):
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@ -93,6 +97,7 @@ class EIP155Transaction:
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return s
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def bytes_serialize(self):
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s = self.__canonical_order()
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b = b''
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@ -108,15 +113,15 @@ class EIP155Transaction:
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def serialize(self):
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tx = {
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'nonce': add_hex_prefix(self.nonce.hex()),
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'gasPrice': add_hex_prefix(self.gas_price.hex()),
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'gas': add_hex_prefix(self.start_gas.hex()),
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'to': add_hex_prefix(self.to.hex()),
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'value': add_hex_prefix(self.value.hex()),
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'data': add_hex_prefix(self.data.hex()),
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'v': add_hex_prefix(self.v.hex()),
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'r': add_hex_prefix(self.r.hex()),
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's': add_hex_prefix(self.s.hex()),
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'nonce': add_0x(self.nonce.hex(), allow_empty=True),
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'gasPrice': add_0x(self.gas_price.hex()),
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'gas': add_0x(self.start_gas.hex()),
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'to': add_0x(self.to.hex()),
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'value': add_0x(self.value.hex(), allow_empty=True),
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'data': add_0x(self.data.hex()),
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'v': add_0x(self.v.hex(), allow_empty=True),
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'r': add_0x(self.r.hex(), allow_empty=True),
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's': add_0x(self.s.hex(), allow_empty=True),
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}
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if tx['data'] == '':
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tx['data'] = '0x'
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@ -44,7 +44,7 @@ class Keystore:
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return self.import_raw_key(private_key, password)
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def import_keystore_file(self, keystore_file, password=''):
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private_key = keyfile.from_file(keystore_file)
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private_key = keyfile.from_file(keystore_file, password)
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#return self.import_keystore_data(keystore_content, password)
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return self.import_raw_key(private_key, password)
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return self.import_raw_key(private_key)
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#return kes
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@ -13,7 +13,6 @@ import sha3
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# local imports
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from crypto_dev_signer.encoding import private_key_to_address
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logging.basicConfig(level=logging.DEBUG)
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logg = logging.getLogger()
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algo_keywords = [
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@ -8,6 +8,7 @@ import getpass
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# external impors
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import coincurve
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from hexathon import strip_0x
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# local imports
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from crypto_dev_signer.keystore.keyfile import (
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@ -21,6 +22,7 @@ logg = logging.getLogger()
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argparser = argparse.ArgumentParser()
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argparser.add_argument('-d', type=str, help='decrypt file')
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argparser.add_argument('-k', type=str, help='load key from file')
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argparser.add_argument('-v', action='store_true', help='be verbose')
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args = argparser.parse_args()
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@ -31,7 +33,15 @@ mode = 'create'
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if args.d:
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mode = 'decrypt'
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pk_hex = os.environ.get('PRIVATE_KEY')
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if args.k != None:
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f = open(args.k, 'r')
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pk_hex = f.read(66)
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f.close()
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def main():
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global pk_hex
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passphrase = os.environ.get('PASSPHRASE')
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r = None
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if mode == 'decrypt':
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@ -45,6 +55,11 @@ def main():
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elif mode == 'create':
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if passphrase == None:
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passphrase = getpass.getpass('encryption phrase: ')
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pk_bytes = None
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if pk_hex != None:
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pk_hex = strip_0x(pk_hex)
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pk_bytes = bytes.fromhex(pk_hex)
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else:
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pk_bytes = os.urandom(32)
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pk = coincurve.PrivateKey(secret=pk_bytes)
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o = to_dict(pk, passphrase)
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