crypto.py 17 KB

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  1. # ============================================================================
  2. # This file is part of Pwman3.
  3. #
  4. # Pwman3 is free software; you can redistribute it and/or modify
  5. # it under the terms of the GNU General Public License, version 2
  6. # as published by the Free Software Foundation;
  7. #
  8. # Pwman3 is distributed in the hope that it will be useful,
  9. # but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. # GNU General Public License for more details.
  12. #
  13. # You should have received a copy of the GNU General Public License
  14. # along with Pwman3; if not, write to the Free Software
  15. # Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
  16. # ============================================================================
  17. # Copyright (C) 2012 Oz Nahum <nahumoz@gmail.com>
  18. # ============================================================================
  19. # Copyright (C) 2006 Ivan Kelly <ivan@ivankelly.net>
  20. # ============================================================================
  21. """
  22. Encryption Module used by PwmanDatabase
  23. Supports AES, ARC2, Blowfish, CAST, DES, DES3, IDEA, RC5.
  24. Usage:
  25. import pwman.util.crypto.CryptoEngine as CryptoEngine
  26. from pwman.util.crypto import CryptoEngine
  27. class myCallback(CryptoEngine.Callback):
  28. def execute(self):
  29. return "mykey"
  30. params = {'encryptionAlgorithm': 'AES',
  31. 'encryptionCallback': callbackFunction}
  32. CryptoEngine.init(params)
  33. crypto = CryptoEngine.get()
  34. ciphertext = crypto.encrypt("plaintext")
  35. plaintext = cyypto.decrypt(ciphertext)
  36. """
  37. from __future__ import print_function
  38. from Crypto.Cipher import Blowfish as cBlowfish
  39. from Crypto.Cipher import AES as cAES
  40. from Crypto.Cipher import ARC2 as cARC2
  41. from Crypto.Cipher import CAST as cCAST
  42. from Crypto.Cipher import DES as cDES
  43. from Crypto.Cipher import DES3 as cDES3
  44. from Crypto.Random import OSRNG
  45. from pwman.util.callback import Callback
  46. import pwman.util.config as config
  47. try:
  48. import cPickle
  49. except ImportError:
  50. import pickle as cPickle
  51. import time
  52. import sys
  53. import ctypes
  54. import hashlib
  55. import base64
  56. def zerome(string):
  57. """
  58. securely erase strings ...
  59. for windows: ctypes.cdll.msvcrt.memset
  60. """
  61. bufsize = len(string) + 1
  62. offset = sys.getsizeof(string) - bufsize
  63. ctypes.memset(id(string) + offset, 0, bufsize)
  64. # Use this to tell if crypto is successful or not
  65. _TAG = "PWMANCRYPTO"
  66. _INSTANCE = None
  67. class CryptoException(Exception):
  68. """Generic Crypto Exception."""
  69. def __init__(self, message):
  70. self.message = message
  71. def __str__(self):
  72. return "CryptoException: " + self.message
  73. class CryptoUnsupportedException(CryptoException):
  74. """Unsupported feature requested."""
  75. def __str__(self):
  76. return "CryptoUnsupportedException: " + self.message
  77. class CryptoBadKeyException(CryptoException):
  78. """Encryption key is incorrect."""
  79. def __str__(self):
  80. return "CryptoBadKeyException: " + self.message
  81. class CryptoNoKeyException(CryptoException):
  82. """No key has been initalised."""
  83. def __str__(self):
  84. return "CryptoNoKeyException: " + self.message
  85. class CryptoNoCallbackException(CryptoException):
  86. """No Callback has been set."""
  87. def __str__(self):
  88. return "CryptoNoCallbackException: " + self.message
  89. class CryptoEngine(object):
  90. """
  91. Cryptographic Engine, overrides CryptoEngineOld.
  92. The main change is that _getcipher_real is now hashing the key
  93. before encrypting it.
  94. This method can eventually remove the call to _retrievedata,
  95. which used to strip the _TAG from the plain text string or return
  96. the cPickle object as string.
  97. Since we don't use cPickle to serialize object anymore, we can
  98. safely aim towards removing this method. Thus, removing also
  99. the _TAG in the beginning of each string as per recommendation of
  100. Ralf Herzog.
  101. """
  102. _timeoutcount = 0
  103. _instance = None
  104. _instance_new = None
  105. _callback = None
  106. @classmethod
  107. def get(cls, dbver=0.5):
  108. """
  109. CryptoEngine.get() -> CryptoEngine
  110. Return an instance of CryptoEngine.
  111. If no instance is found, a CryptoException is raised.
  112. """
  113. if CryptoEngine._instance:
  114. return CryptoEngine._instance
  115. if CryptoEngine._instance_new:
  116. return CryptoEngine._instance_new
  117. keycrypted = config.get_value("Encryption", "keycrypted")
  118. algo = config.get_value("Encryption", "algorithm")
  119. if not algo:
  120. raise CryptoException("Parameters missing, no algorithm given")
  121. try:
  122. timeout = int(config.get_value("Encryption", "timeout"))
  123. except ValueError:
  124. timeout = -1
  125. kwargs = {'keycrypted': keycrypted, 'algorithm': algo,
  126. 'timeout': timeout}
  127. if dbver < 0.5:
  128. CryptoEngine._instance = CryptoEngineOld(**kwargs)
  129. return CryptoEngine._instance
  130. if dbver >= 0.5:
  131. CryptoEngine._instance_new = CryptoEngine(**kwargs)
  132. return CryptoEngine._instance_new
  133. def __init__(self, keycrypted=None, algorithm='AES', timeout=-1):
  134. """
  135. Initialise the Cryptographic Engine
  136. """
  137. self._algo = algorithm
  138. self._keycrypted = keycrypted if keycrypted else None
  139. self._timeout = timeout
  140. self._cipher = None
  141. def auth(self, key):
  142. """
  143. authenticate using a given key
  144. """
  145. tmpcipher = self._getcipher_real(key, self._algo)
  146. s = base64.b64decode(self._keycrypted)
  147. plainkey = tmpcipher.decrypt(s)
  148. key = self._retrievedata(plainkey)
  149. key = base64.b64decode(str(key))
  150. self._cipher = self._getcipher_real(key, self._algo)
  151. def encrypt(self, obj):
  152. """
  153. encrypt(obj) -> ciphertext
  154. Encrypt obj and return its ciphertext. obj must be a picklable class.
  155. Can raise a CryptoException and CryptoUnsupportedException"""
  156. cipher = self._getcipher()
  157. plaintext = self._preparedata(obj, cipher.block_size)
  158. ciphertext = cipher.encrypt(plaintext)
  159. return str(ciphertext).encode('base64')
  160. def decrypt(self, ciphertext):
  161. """
  162. decrypt(ciphertext) -> obj
  163. Decrypt ciphertext and returns the obj that was encrypted.
  164. If key is bad, a CryptoBadKeyException is raised
  165. Can also raise a CryptoException and CryptoUnsupportedException"""
  166. cipher = self._getcipher()
  167. ciphertext = base64.b64decode(str(ciphertext))
  168. plaintext = cipher.decrypt(ciphertext)
  169. return self._retrievedata(plaintext)
  170. def set_cryptedkey(self, key):
  171. """
  172. hold _keycrypted
  173. """
  174. self._keycrypted = key
  175. def get_cryptedkey(self):
  176. """
  177. return _keycrypted
  178. """
  179. return self._keycrypted
  180. @property
  181. def callback(self):
  182. """
  183. return call back function
  184. """
  185. return self._callback
  186. @callback.setter
  187. def callback(self, callback):
  188. if isinstance(callback, Callback):
  189. self._callback = callback
  190. else:
  191. raise CryptoNoCallbackException("callback must be an instance of"
  192. " Callback!")
  193. def changepassword(self):
  194. """
  195. Creates a new key from a user given password.
  196. The key itself is actually stored in the database as
  197. a chiper text. This key is encrypted using a random byte string.
  198. """
  199. if self._callback is None:
  200. raise CryptoNoCallbackException("No call back class has been "
  201. "specified")
  202. if self._keycrypted is None:
  203. # Generate a new key, 32 byts in length, if that's
  204. # too long for the Cipher, _getCipherReal will sort it out
  205. random = OSRNG.new()
  206. randombytes = random.read(32)
  207. key = base64.b64encode(str(randombytes))+'\n'
  208. else:
  209. password = self._callback.getsecret(("Please enter your current "
  210. "password"))
  211. cipher = self._getcipher_real(password, self._algo)
  212. plainkey = cipher.decrypt(str(self._keycrypted).decode('base64'))
  213. key = self._retrievedata(plainkey)
  214. newpassword1 = self._callback.getnewsecret(("Please enter your new"
  215. " password"))
  216. newpassword2 = self._callback.getnewsecret(("Please enter your new"
  217. "password again"))
  218. while newpassword1 != newpassword2:
  219. print("Passwords do not match!")
  220. newpassword1 = self._callback.getnewsecret(("Please enter your new"
  221. " password"))
  222. newpassword2 = self._callback.getnewsecret(("Please enter your new"
  223. " password again"))
  224. newcipher = self._getcipher_real(newpassword1, self._algo)
  225. self._keycrypted = str(newcipher.encrypt(
  226. self._preparedata(key,
  227. newcipher.block_size)
  228. )).encode('base64')
  229. # newpassword1, newpassword2 are not needed any more so we erase
  230. # them
  231. zerome(newpassword1)
  232. zerome(newpassword2)
  233. del(newpassword1)
  234. del(newpassword2)
  235. # we also want to create the cipher if there isn't one already
  236. # so this CryptoEngine can be used from now on
  237. if self._cipher is None:
  238. self._cipher = self._getcipher_real(str(key).decode('base64'),
  239. self._algo)
  240. CryptoEngine._timeoutcount = time.time()
  241. return self._keycrypted
  242. def alive(self):
  243. """
  244. check if we have cipher
  245. """
  246. if self._cipher is not None:
  247. return True
  248. else:
  249. return False
  250. def forget(self):
  251. """
  252. discard cipher
  253. """
  254. self._cipher = None
  255. def _pre_check_get_chiper(self):
  256. if (self._cipher is not None
  257. and (self._timeout == -1
  258. or (time.time() -
  259. CryptoEngine._timeoutcount) < self._timeout)):
  260. return self._cipher
  261. if self._callback is None:
  262. raise CryptoNoCallbackException("No Callback exception")
  263. if self._keycrypted is None:
  264. raise CryptoNoKeyException("Encryption key has not been generated")
  265. def _getcipher(self):
  266. """
  267. get cypher from user, to decrypt DB
  268. """
  269. if self._pre_check_get_chiper():
  270. return self._cipher
  271. max_tries = 5
  272. tries = 0
  273. key = None
  274. while tries < max_tries:
  275. try:
  276. password = self._callback.getsecret("Please enter your "
  277. "password")
  278. tmpcipher = self._getcipher_real(password, self._algo)
  279. plainkey = tmpcipher.decrypt(str(self._keycrypted).decode(
  280. 'base64'))
  281. key = self._retrievedata(plainkey)
  282. break
  283. except CryptoBadKeyException:
  284. print("Wrong password.")
  285. tries += 1
  286. if not key:
  287. raise CryptoBadKeyException("Wrong password entered {x} times; "
  288. "giving up ".format(x=max_tries))
  289. try:
  290. key = str(key).decode('base64')
  291. except Exception:
  292. key = cPickle.loads(key)
  293. key = str(key).decode('base64')
  294. self._cipher = self._getcipher_real(key,
  295. self._algo)
  296. CryptoEngine._timeoutcount = time.time()
  297. return self._cipher
  298. def _getcipher_real(self, key, algo):
  299. """
  300. do the real job of decrypting using functions
  301. form PyCrypto
  302. """
  303. if (algo == "AES"):
  304. if sys.version_info.major > 2:
  305. key = key.encode('utf-8')
  306. for i in range(1000):
  307. key = hashlib.sha256(key)
  308. key = key.digest()
  309. key = hashlib.sha256(key)
  310. cipher = cAES.new(key.digest(), cAES.MODE_ECB)
  311. elif (algo == 'ARC2'):
  312. cipher = cARC2.new(key, cARC2.MODE_ECB)
  313. elif (algo == 'ARC4'):
  314. raise CryptoUnsupportedException("ARC4 is currently unsupported")
  315. elif (algo == 'Blowfish'):
  316. cipher = cBlowfish.new(key, cBlowfish.MODE_ECB)
  317. elif (algo == 'CAST'):
  318. cipher = cCAST.new(key, cCAST.MODE_ECB)
  319. elif (algo == 'DES'):
  320. if len(key) != 8:
  321. raise Exception("DES Encrypted keys must be 8 characters "
  322. "long!")
  323. cipher = cDES.new(key, cDES.MODE_ECB)
  324. elif (algo == 'DES3'):
  325. key = hashlib.sha224(key)
  326. cipher = cDES3.new(key.digest()[:24], cDES3.MODE_ECB)
  327. elif (algo == 'XOR'):
  328. raise CryptoUnsupportedException("XOR is currently unsupported")
  329. else:
  330. raise CryptoException("Invalid algorithm specified")
  331. return cipher
  332. def _preparedata(self, obj, blocksize):
  333. """
  334. prepare data before encrypting
  335. """
  336. plaintext = obj
  337. numblocks = (len(plaintext)/blocksize) + 1
  338. newdatasize = blocksize*numblocks
  339. return plaintext.ljust(newdatasize)
  340. def _retrievedata(self, plaintext):
  341. """
  342. retrieve encrypted data
  343. """
  344. try:
  345. plaintext.decode('utf-8')
  346. except UnicodeDecodeError:
  347. raise CryptoBadKeyException("Error decrypting, bad key")
  348. return plaintext
  349. class CryptoEngineOld(CryptoEngine):
  350. def _getcipher_real(self, key, algo):
  351. """
  352. do the real job of decrypting using functions
  353. form PyCrypto
  354. """
  355. if (algo == "AES"):
  356. key = self._padkey(key, [16, 24, 32])
  357. cipher = cAES.new(key, cAES.MODE_ECB)
  358. elif (algo == 'ARC2'):
  359. cipher = cARC2.new(key, cARC2.MODE_ECB)
  360. elif (algo == 'ARC4'):
  361. raise CryptoUnsupportedException("ARC4 is currently unsupported")
  362. elif (algo == 'Blowfish'):
  363. cipher = cBlowfish.new(key, cBlowfish.MODE_ECB)
  364. elif (algo == 'CAST'):
  365. cipher = cCAST.new(key, cCAST.MODE_ECB)
  366. elif (algo == 'DES'):
  367. self._padkey(key, [8])
  368. cipher = cDES.new(key, cDES.MODE_ECB)
  369. elif (algo == 'DES3'):
  370. key = self._padkey(key, [16, 24])
  371. cipher = cDES3.new(key, cDES3.MODE_ECB)
  372. elif (algo == 'XOR'):
  373. raise CryptoUnsupportedException("XOR is currently unsupported")
  374. else:
  375. raise CryptoException("Invalid algorithm specified")
  376. return cipher
  377. def _padkey(self, key, acceptable_lengths):
  378. """
  379. pad key with extra string
  380. """
  381. maxlen = max(acceptable_lengths)
  382. keylen = len(key)
  383. if (keylen > maxlen):
  384. return key[0:maxlen]
  385. acceptable_lengths.sort()
  386. acceptable_lengths.reverse()
  387. newkeylen = None
  388. for i in acceptable_lengths:
  389. if (i < keylen):
  390. break
  391. newkeylen = i
  392. return key.ljust(newkeylen)
  393. def _preparedata(self, obj, blocksize):
  394. """
  395. prepare data before encrypting
  396. """
  397. plaintext = _TAG + obj
  398. numblocks = (len(plaintext)/blocksize) + 1
  399. newdatasize = blocksize*numblocks
  400. return plaintext.ljust(newdatasize)
  401. def _retrievedata(self, plaintext):
  402. """
  403. retrieve encrypted data
  404. """
  405. # startswith(_TAG) is to make sure the decryption
  406. # is correct! However this method is SHIT! It is dangerous,
  407. # and exposes the datebase.
  408. # Instead we sould make sure that the string is composed of legal
  409. # printable stuff and not garbage
  410. # string.printable is one such set
  411. try:
  412. plaintext.decode('utf-8')
  413. except UnicodeDecodeError:
  414. raise CryptoBadKeyException("Error decrypting, bad key")
  415. if (plaintext.startswith(_TAG)):
  416. plaintext = plaintext[len(_TAG):]
  417. try:
  418. # old db version used to write stuff to db with
  419. # plaintext = cPickle.dumps(obj)
  420. # DONE: completely remove this block, and convert
  421. # the DB to a completely plain text ...
  422. # See the above CryptoEngine
  423. # This implies that the coversion from OLD DATABASE FORMAT has
  424. # plain strings too ...
  425. return cPickle.loads(plaintext)
  426. except (TypeError, ValueError, cPickle.UnpicklingError, EOFError):
  427. return plaintext