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trezor-firmware/tools/encfs_aes_getpass.py

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#!/usr/bin/env python3
'''
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Use TREZOR as a hardware key for opening EncFS filesystem!
Usage:
encfs --standard --extpass=./encfs_aes_getpass.py ~/.crypt ~/crypt
'''
import os
import sys
import json
import hashlib
import binascii
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from trezorlib.client import TrezorClient
from trezorlib.transport import enumerate_devices
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def wait_for_devices():
devices = enumerate_devices()
while not len(devices):
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sys.stderr.write("Please connect TREZOR to computer and press Enter...")
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input()
devices = enumerate_devices()
return devices
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def choose_device(devices):
if not len(devices):
raise RuntimeError("No TREZOR connected!")
if len(devices) == 1:
try:
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return devices[0]
except IOError:
raise RuntimeError("Device is currently in use")
i = 0
sys.stderr.write("----------------------------\n")
sys.stderr.write("Available devices:\n")
for d in devices:
try:
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client = TrezorClient(d)
except IOError:
sys.stderr.write("[-] <device is currently in use>\n")
continue
if client.features.label:
sys.stderr.write("[%d] %s\n" % (i, client.features.label))
else:
sys.stderr.write("[%d] <no label>\n" % i)
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client.close()
i += 1
sys.stderr.write("----------------------------\n")
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sys.stderr.write("Please choose device to use:")
try:
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device_id = int(input())
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return devices[device_id]
except Exception:
raise ValueError("Invalid choice, exiting...")
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def main():
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if 'encfs_root' not in os.environ:
sys.stderr.write('\nThis is not a standalone script and is not meant to be run independently.\n')
sys.stderr.write('\nUsage: encfs --standard --extpass=./encfs_aes_getpass.py ~/.crypt ~/crypt\n')
sys.exit(1)
devices = wait_for_devices()
transport = choose_device(devices)
client = TrezorClient(transport)
rootdir = os.environ['encfs_root'] # Read "man encfs" for more
passw_file = os.path.join(rootdir, 'password.dat')
if not os.path.exists(passw_file):
# New encfs drive, let's generate password
sys.stderr.write('Please provide label for new drive: ')
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label = input()
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sys.stderr.write('Computer asked TREZOR for new strong password.\n')
sys.stderr.write('Please confirm the action on your device ...\n')
# 32 bytes, good for AES
trezor_entropy = client.get_entropy(32)
urandom_entropy = os.urandom(32)
passw = hashlib.sha256(trezor_entropy + urandom_entropy).digest()
if len(passw) != 32:
raise ValueError("32 bytes password expected")
bip32_path = [10, 0]
passw_encrypted = client.encrypt_keyvalue(bip32_path, label, passw, False, True)
data = {'label': label,
'bip32_path': bip32_path,
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'password_encrypted_hex': binascii.hexlify(passw_encrypted).decode()}
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json.dump(data, open(passw_file, 'w'))
# Let's load password
data = json.load(open(passw_file, 'r'))
sys.stderr.write('Please confirm the action on your device ...\n')
passw = client.decrypt_keyvalue(data['bip32_path'],
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data['label'],
binascii.unhexlify(data['password_encrypted_hex']),
False, True)
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print(passw)
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if __name__ == '__main__':
main()