mirror of
https://github.com/borgbackup/borg.git
synced 2024-12-25 09:19:31 +00:00
178 lines
6.5 KiB
Python
178 lines
6.5 KiB
Python
from __future__ import with_statement
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from getpass import getpass
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import hashlib
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import os
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import msgpack
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import zlib
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from pbkdf2 import pbkdf2
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from Crypto.Cipher import AES
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from Crypto.Hash import SHA256, HMAC
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from Crypto.Util import Counter
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from Crypto.Util.number import bytes_to_long, long_to_bytes
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from Crypto.Random import get_random_bytes
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from .helpers import IntegrityError, get_keys_dir
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PREFIX = '\0' * 8
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class Key(object):
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FILE_ID = 'DARC KEY'
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def __init__(self, store=None):
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if store:
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self.open(self.find_key_file(store))
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def find_key_file(self, store):
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id = store.id.encode('hex')
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keys_dir = get_keys_dir()
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for name in os.listdir(keys_dir):
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filename = os.path.join(keys_dir, name)
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with open(filename, 'rb') as fd:
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line = fd.readline().strip()
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if line and line.startswith(self.FILE_ID) and line[9:] == id:
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return filename
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raise Exception('Key file for store with ID %s not found' % id)
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def open(self, filename):
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with open(filename, 'rb') as fd:
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lines = fd.readlines()
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if not lines[0].startswith(self.FILE_ID) != self.FILE_ID:
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raise ValueError('Not a DARC key file')
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self.store_id = lines[0][len(self.FILE_ID):].strip().decode('hex')
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cdata = (''.join(lines[1:])).decode('base64')
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self.password = ''
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data = self.decrypt_key_file(cdata, '')
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while not data:
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self.password = getpass('Key password: ')
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if not self.password:
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raise Exception('Key decryption failed')
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data = self.decrypt_key_file(cdata, self.password)
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if not data:
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print 'Incorrect password'
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key = msgpack.unpackb(data)
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if key['version'] != 1:
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raise IntegrityError('Invalid key file header')
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self.store_id = key['store_id']
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self.enc_key = key['enc_key']
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self.enc_hmac_key = key['enc_hmac_key']
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self.id_key = key['id_key']
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self.chunk_seed = key['chunk_seed']
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self.counter = Counter.new(64, initial_value=1, prefix=PREFIX)
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def post_manifest_load(self, config):
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iv = bytes_to_long(config['aes_counter'])+100
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self.counter = Counter.new(64, initial_value=iv, prefix=PREFIX)
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def pre_manifest_write(self, manifest):
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manifest.config['aes_counter'] = long_to_bytes(self.counter.next_value(), 8)
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def encrypt_key_file(self, data, password):
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salt = get_random_bytes(32)
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iterations = 2000
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key = pbkdf2(password, salt, 32, iterations, hashlib.sha256)
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hash = HMAC.new(key, data, SHA256).digest()
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cdata = AES.new(key, AES.MODE_CTR, counter=Counter.new(128)).encrypt(data)
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d = {
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'version': 1,
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'salt': salt,
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'iterations': iterations,
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'algorithm': 'SHA256',
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'hash': hash,
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'data': cdata,
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}
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return msgpack.packb(d)
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def decrypt_key_file(self, data, password):
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d = msgpack.unpackb(data)
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assert d['version'] == 1
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assert d['algorithm'] == 'SHA256'
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key = pbkdf2(password, d['salt'], 32, d['iterations'], hashlib.sha256)
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data = AES.new(key, AES.MODE_CTR, counter=Counter.new(128)).decrypt(d['data'])
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if HMAC.new(key, data, SHA256).digest() != d['hash']:
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return None
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return data
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def save(self, path, password):
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key = {
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'version': 1,
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'store_id': self.store_id,
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'enc_key': self.enc_key,
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'enc_hmac_key': self.enc_hmac_key,
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'id_key': self.enc_key,
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'chunk_seed': self.chunk_seed,
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}
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data = self.encrypt_key_file(msgpack.packb(key), password)
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with open(path, 'wb') as fd:
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fd.write('%s %s\n' % (self.FILE_ID, self.store_id.encode('hex')))
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fd.write(data.encode('base64'))
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print 'Key file "%s" created' % path
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def chpass(self):
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password, password2 = 1, 2
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while password != password2:
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password = getpass('New password: ')
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password2 = getpass('New password again: ')
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if password != password2:
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print 'Passwords do not match'
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self.save(self.path, password)
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return 0
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@staticmethod
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def create(store, filename, password=None):
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i = 1
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path = filename
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while os.path.exists(path):
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i += 1
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path = filename + '.%d' % i
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if password is not None:
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password2 = password
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else:
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password, password2 = 1, 2
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while password != password2:
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password = getpass('Keychain password: ')
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password2 = getpass('Keychain password again: ')
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if password != password2:
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print 'Passwords do not match'
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key = Key()
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key.store_id = store.id
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# Chunk AES256 encryption key
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key.enc_key = get_random_bytes(32)
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# Chunk encryption HMAC key
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key.enc_hmac_key = get_random_bytes(32)
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# Chunk id HMAC key
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key.id_key = get_random_bytes(32)
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# Chunkifier seed
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key.chunk_seed = bytes_to_long(get_random_bytes(4))
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# Convert to signed int32
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if key.chunk_seed & 0x80000000:
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key.chunk_seed = key.chunk_seed - 0xffffffff - 1
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key.save(path, password)
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return 0
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def id_hash(self, data):
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"""Return HMAC hash using the "id" HMAC key
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"""
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return HMAC.new(self.id_key, data, SHA256).digest()
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def encrypt(self, data):
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data = zlib.compress(data)
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nonce = long_to_bytes(self.counter.next_value(), 8)
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data = ''.join((nonce, AES.new(self.enc_key, AES.MODE_CTR, '',
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counter=self.counter).encrypt(data)))
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hash = HMAC.new(self.enc_hmac_key, data, SHA256).digest()
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return ''.join(('\0', hash, data))
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def decrypt(self, id, data):
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if data[0] != '\0':
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raise IntegrityError('Invalid encryption envelope')
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hash = data[1:33]
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if HMAC.new(self.enc_hmac_key, data[33:], SHA256).digest() != hash:
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raise IntegrityError('Encryption envelope checksum mismatch')
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nonce = bytes_to_long(data[33:41])
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counter = Counter.new(64, initial_value=nonce, prefix=PREFIX)
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data = zlib.decompress(AES.new(self.enc_key, AES.MODE_CTR, counter=counter).decrypt(data[41:]))
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if id and HMAC.new(self.id_key, data, SHA256).digest() != id:
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raise IntegrityError('Chunk id verification failed')
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return data
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