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/Lib/test/test_ssl.py

https://bitbucket.org/pombredanne/cpython
Python | 2035 lines | 1848 code | 95 blank | 92 comment | 196 complexity | 466e3a8b8c1b233f8a75e2fdbb7b06b7 MD5 | raw file
Possible License(s): 0BSD

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  1. # Test the support for SSL and sockets
  2. import sys
  3. import unittest
  4. from test import support
  5. import socket
  6. import select
  7. import time
  8. import gc
  9. import os
  10. import errno
  11. import pprint
  12. import tempfile
  13. import urllib.request
  14. import traceback
  15. import asyncore
  16. import weakref
  17. import platform
  18. import functools
  19. ssl = support.import_module("ssl")
  20. PROTOCOLS = [
  21. ssl.PROTOCOL_SSLv3,
  22. ssl.PROTOCOL_SSLv23, ssl.PROTOCOL_TLSv1
  23. ]
  24. if hasattr(ssl, 'PROTOCOL_SSLv2'):
  25. PROTOCOLS.append(ssl.PROTOCOL_SSLv2)
  26. HOST = support.HOST
  27. data_file = lambda name: os.path.join(os.path.dirname(__file__), name)
  28. # The custom key and certificate files used in test_ssl are generated
  29. # using Lib/test/make_ssl_certs.py.
  30. # Other certificates are simply fetched from the Internet servers they
  31. # are meant to authenticate.
  32. CERTFILE = data_file("keycert.pem")
  33. BYTES_CERTFILE = os.fsencode(CERTFILE)
  34. ONLYCERT = data_file("ssl_cert.pem")
  35. ONLYKEY = data_file("ssl_key.pem")
  36. BYTES_ONLYCERT = os.fsencode(ONLYCERT)
  37. BYTES_ONLYKEY = os.fsencode(ONLYKEY)
  38. CERTFILE_PROTECTED = data_file("keycert.passwd.pem")
  39. ONLYKEY_PROTECTED = data_file("ssl_key.passwd.pem")
  40. KEY_PASSWORD = "somepass"
  41. CAPATH = data_file("capath")
  42. BYTES_CAPATH = os.fsencode(CAPATH)
  43. SVN_PYTHON_ORG_ROOT_CERT = data_file("https_svn_python_org_root.pem")
  44. EMPTYCERT = data_file("nullcert.pem")
  45. BADCERT = data_file("badcert.pem")
  46. WRONGCERT = data_file("XXXnonexisting.pem")
  47. BADKEY = data_file("badkey.pem")
  48. NOKIACERT = data_file("nokia.pem")
  49. DHFILE = data_file("dh512.pem")
  50. BYTES_DHFILE = os.fsencode(DHFILE)
  51. def handle_error(prefix):
  52. exc_format = ' '.join(traceback.format_exception(*sys.exc_info()))
  53. if support.verbose:
  54. sys.stdout.write(prefix + exc_format)
  55. def can_clear_options():
  56. # 0.9.8m or higher
  57. return ssl._OPENSSL_API_VERSION >= (0, 9, 8, 13, 15)
  58. def no_sslv2_implies_sslv3_hello():
  59. # 0.9.7h or higher
  60. return ssl.OPENSSL_VERSION_INFO >= (0, 9, 7, 8, 15)
  61. # Issue #9415: Ubuntu hijacks their OpenSSL and forcefully disables SSLv2
  62. def skip_if_broken_ubuntu_ssl(func):
  63. if hasattr(ssl, 'PROTOCOL_SSLv2'):
  64. @functools.wraps(func)
  65. def f(*args, **kwargs):
  66. try:
  67. ssl.SSLContext(ssl.PROTOCOL_SSLv2)
  68. except ssl.SSLError:
  69. if (ssl.OPENSSL_VERSION_INFO == (0, 9, 8, 15, 15) and
  70. platform.linux_distribution() == ('debian', 'squeeze/sid', '')):
  71. raise unittest.SkipTest("Patched Ubuntu OpenSSL breaks behaviour")
  72. return func(*args, **kwargs)
  73. return f
  74. else:
  75. return func
  76. class BasicSocketTests(unittest.TestCase):
  77. def test_constants(self):
  78. #ssl.PROTOCOL_SSLv2
  79. ssl.PROTOCOL_SSLv23
  80. ssl.PROTOCOL_SSLv3
  81. ssl.PROTOCOL_TLSv1
  82. ssl.CERT_NONE
  83. ssl.CERT_OPTIONAL
  84. ssl.CERT_REQUIRED
  85. ssl.OP_CIPHER_SERVER_PREFERENCE
  86. ssl.OP_SINGLE_DH_USE
  87. if ssl.HAS_ECDH:
  88. ssl.OP_SINGLE_ECDH_USE
  89. if ssl.OPENSSL_VERSION_INFO >= (1, 0):
  90. ssl.OP_NO_COMPRESSION
  91. self.assertIn(ssl.HAS_SNI, {True, False})
  92. self.assertIn(ssl.HAS_ECDH, {True, False})
  93. def test_random(self):
  94. v = ssl.RAND_status()
  95. if support.verbose:
  96. sys.stdout.write("\n RAND_status is %d (%s)\n"
  97. % (v, (v and "sufficient randomness") or
  98. "insufficient randomness"))
  99. data, is_cryptographic = ssl.RAND_pseudo_bytes(16)
  100. self.assertEqual(len(data), 16)
  101. self.assertEqual(is_cryptographic, v == 1)
  102. if v:
  103. data = ssl.RAND_bytes(16)
  104. self.assertEqual(len(data), 16)
  105. else:
  106. self.assertRaises(ssl.SSLError, ssl.RAND_bytes, 16)
  107. self.assertRaises(TypeError, ssl.RAND_egd, 1)
  108. self.assertRaises(TypeError, ssl.RAND_egd, 'foo', 1)
  109. ssl.RAND_add("this is a random string", 75.0)
  110. def test_parse_cert(self):
  111. # note that this uses an 'unofficial' function in _ssl.c,
  112. # provided solely for this test, to exercise the certificate
  113. # parsing code
  114. p = ssl._ssl._test_decode_cert(CERTFILE)
  115. if support.verbose:
  116. sys.stdout.write("\n" + pprint.pformat(p) + "\n")
  117. self.assertEqual(p['issuer'],
  118. ((('countryName', 'XY'),),
  119. (('localityName', 'Castle Anthrax'),),
  120. (('organizationName', 'Python Software Foundation'),),
  121. (('commonName', 'localhost'),))
  122. )
  123. self.assertEqual(p['notAfter'], 'Oct 5 23:01:56 2020 GMT')
  124. self.assertEqual(p['notBefore'], 'Oct 8 23:01:56 2010 GMT')
  125. self.assertEqual(p['serialNumber'], 'D7C7381919AFC24E')
  126. self.assertEqual(p['subject'],
  127. ((('countryName', 'XY'),),
  128. (('localityName', 'Castle Anthrax'),),
  129. (('organizationName', 'Python Software Foundation'),),
  130. (('commonName', 'localhost'),))
  131. )
  132. self.assertEqual(p['subjectAltName'], (('DNS', 'localhost'),))
  133. # Issue #13034: the subjectAltName in some certificates
  134. # (notably projects.developer.nokia.com:443) wasn't parsed
  135. p = ssl._ssl._test_decode_cert(NOKIACERT)
  136. if support.verbose:
  137. sys.stdout.write("\n" + pprint.pformat(p) + "\n")
  138. self.assertEqual(p['subjectAltName'],
  139. (('DNS', 'projects.developer.nokia.com'),
  140. ('DNS', 'projects.forum.nokia.com'))
  141. )
  142. def test_DER_to_PEM(self):
  143. with open(SVN_PYTHON_ORG_ROOT_CERT, 'r') as f:
  144. pem = f.read()
  145. d1 = ssl.PEM_cert_to_DER_cert(pem)
  146. p2 = ssl.DER_cert_to_PEM_cert(d1)
  147. d2 = ssl.PEM_cert_to_DER_cert(p2)
  148. self.assertEqual(d1, d2)
  149. if not p2.startswith(ssl.PEM_HEADER + '\n'):
  150. self.fail("DER-to-PEM didn't include correct header:\n%r\n" % p2)
  151. if not p2.endswith('\n' + ssl.PEM_FOOTER + '\n'):
  152. self.fail("DER-to-PEM didn't include correct footer:\n%r\n" % p2)
  153. def test_openssl_version(self):
  154. n = ssl.OPENSSL_VERSION_NUMBER
  155. t = ssl.OPENSSL_VERSION_INFO
  156. s = ssl.OPENSSL_VERSION
  157. self.assertIsInstance(n, int)
  158. self.assertIsInstance(t, tuple)
  159. self.assertIsInstance(s, str)
  160. # Some sanity checks follow
  161. # >= 0.9
  162. self.assertGreaterEqual(n, 0x900000)
  163. # < 2.0
  164. self.assertLess(n, 0x20000000)
  165. major, minor, fix, patch, status = t
  166. self.assertGreaterEqual(major, 0)
  167. self.assertLess(major, 2)
  168. self.assertGreaterEqual(minor, 0)
  169. self.assertLess(minor, 256)
  170. self.assertGreaterEqual(fix, 0)
  171. self.assertLess(fix, 256)
  172. self.assertGreaterEqual(patch, 0)
  173. self.assertLessEqual(patch, 26)
  174. self.assertGreaterEqual(status, 0)
  175. self.assertLessEqual(status, 15)
  176. # Version string as returned by OpenSSL, the format might change
  177. self.assertTrue(s.startswith("OpenSSL {:d}.{:d}.{:d}".format(major, minor, fix)),
  178. (s, t))
  179. @support.cpython_only
  180. def test_refcycle(self):
  181. # Issue #7943: an SSL object doesn't create reference cycles with
  182. # itself.
  183. s = socket.socket(socket.AF_INET)
  184. ss = ssl.wrap_socket(s)
  185. wr = weakref.ref(ss)
  186. del ss
  187. self.assertEqual(wr(), None)
  188. def test_wrapped_unconnected(self):
  189. # Methods on an unconnected SSLSocket propagate the original
  190. # OSError raise by the underlying socket object.
  191. s = socket.socket(socket.AF_INET)
  192. ss = ssl.wrap_socket(s)
  193. self.assertRaises(OSError, ss.recv, 1)
  194. self.assertRaises(OSError, ss.recv_into, bytearray(b'x'))
  195. self.assertRaises(OSError, ss.recvfrom, 1)
  196. self.assertRaises(OSError, ss.recvfrom_into, bytearray(b'x'), 1)
  197. self.assertRaises(OSError, ss.send, b'x')
  198. self.assertRaises(OSError, ss.sendto, b'x', ('0.0.0.0', 0))
  199. def test_timeout(self):
  200. # Issue #8524: when creating an SSL socket, the timeout of the
  201. # original socket should be retained.
  202. for timeout in (None, 0.0, 5.0):
  203. s = socket.socket(socket.AF_INET)
  204. s.settimeout(timeout)
  205. ss = ssl.wrap_socket(s)
  206. self.assertEqual(timeout, ss.gettimeout())
  207. def test_errors(self):
  208. sock = socket.socket()
  209. self.assertRaisesRegex(ValueError,
  210. "certfile must be specified",
  211. ssl.wrap_socket, sock, keyfile=CERTFILE)
  212. self.assertRaisesRegex(ValueError,
  213. "certfile must be specified for server-side operations",
  214. ssl.wrap_socket, sock, server_side=True)
  215. self.assertRaisesRegex(ValueError,
  216. "certfile must be specified for server-side operations",
  217. ssl.wrap_socket, sock, server_side=True, certfile="")
  218. s = ssl.wrap_socket(sock, server_side=True, certfile=CERTFILE)
  219. self.assertRaisesRegex(ValueError, "can't connect in server-side mode",
  220. s.connect, (HOST, 8080))
  221. with self.assertRaises(OSError) as cm:
  222. with socket.socket() as sock:
  223. ssl.wrap_socket(sock, certfile=WRONGCERT)
  224. self.assertEqual(cm.exception.errno, errno.ENOENT)
  225. with self.assertRaises(OSError) as cm:
  226. with socket.socket() as sock:
  227. ssl.wrap_socket(sock, certfile=CERTFILE, keyfile=WRONGCERT)
  228. self.assertEqual(cm.exception.errno, errno.ENOENT)
  229. with self.assertRaises(OSError) as cm:
  230. with socket.socket() as sock:
  231. ssl.wrap_socket(sock, certfile=WRONGCERT, keyfile=WRONGCERT)
  232. self.assertEqual(cm.exception.errno, errno.ENOENT)
  233. def test_match_hostname(self):
  234. def ok(cert, hostname):
  235. ssl.match_hostname(cert, hostname)
  236. def fail(cert, hostname):
  237. self.assertRaises(ssl.CertificateError,
  238. ssl.match_hostname, cert, hostname)
  239. cert = {'subject': ((('commonName', 'example.com'),),)}
  240. ok(cert, 'example.com')
  241. ok(cert, 'ExAmple.cOm')
  242. fail(cert, 'www.example.com')
  243. fail(cert, '.example.com')
  244. fail(cert, 'example.org')
  245. fail(cert, 'exampleXcom')
  246. cert = {'subject': ((('commonName', '*.a.com'),),)}
  247. ok(cert, 'foo.a.com')
  248. fail(cert, 'bar.foo.a.com')
  249. fail(cert, 'a.com')
  250. fail(cert, 'Xa.com')
  251. fail(cert, '.a.com')
  252. cert = {'subject': ((('commonName', 'a.*.com'),),)}
  253. ok(cert, 'a.foo.com')
  254. fail(cert, 'a..com')
  255. fail(cert, 'a.com')
  256. cert = {'subject': ((('commonName', 'f*.com'),),)}
  257. ok(cert, 'foo.com')
  258. ok(cert, 'f.com')
  259. fail(cert, 'bar.com')
  260. fail(cert, 'foo.a.com')
  261. fail(cert, 'bar.foo.com')
  262. # Slightly fake real-world example
  263. cert = {'notAfter': 'Jun 26 21:41:46 2011 GMT',
  264. 'subject': ((('commonName', 'linuxfrz.org'),),),
  265. 'subjectAltName': (('DNS', 'linuxfr.org'),
  266. ('DNS', 'linuxfr.com'),
  267. ('othername', '<unsupported>'))}
  268. ok(cert, 'linuxfr.org')
  269. ok(cert, 'linuxfr.com')
  270. # Not a "DNS" entry
  271. fail(cert, '<unsupported>')
  272. # When there is a subjectAltName, commonName isn't used
  273. fail(cert, 'linuxfrz.org')
  274. # A pristine real-world example
  275. cert = {'notAfter': 'Dec 18 23:59:59 2011 GMT',
  276. 'subject': ((('countryName', 'US'),),
  277. (('stateOrProvinceName', 'California'),),
  278. (('localityName', 'Mountain View'),),
  279. (('organizationName', 'Google Inc'),),
  280. (('commonName', 'mail.google.com'),))}
  281. ok(cert, 'mail.google.com')
  282. fail(cert, 'gmail.com')
  283. # Only commonName is considered
  284. fail(cert, 'California')
  285. # Neither commonName nor subjectAltName
  286. cert = {'notAfter': 'Dec 18 23:59:59 2011 GMT',
  287. 'subject': ((('countryName', 'US'),),
  288. (('stateOrProvinceName', 'California'),),
  289. (('localityName', 'Mountain View'),),
  290. (('organizationName', 'Google Inc'),))}
  291. fail(cert, 'mail.google.com')
  292. # No DNS entry in subjectAltName but a commonName
  293. cert = {'notAfter': 'Dec 18 23:59:59 2099 GMT',
  294. 'subject': ((('countryName', 'US'),),
  295. (('stateOrProvinceName', 'California'),),
  296. (('localityName', 'Mountain View'),),
  297. (('commonName', 'mail.google.com'),)),
  298. 'subjectAltName': (('othername', 'blabla'), )}
  299. ok(cert, 'mail.google.com')
  300. # No DNS entry subjectAltName and no commonName
  301. cert = {'notAfter': 'Dec 18 23:59:59 2099 GMT',
  302. 'subject': ((('countryName', 'US'),),
  303. (('stateOrProvinceName', 'California'),),
  304. (('localityName', 'Mountain View'),),
  305. (('organizationName', 'Google Inc'),)),
  306. 'subjectAltName': (('othername', 'blabla'),)}
  307. fail(cert, 'google.com')
  308. # Empty cert / no cert
  309. self.assertRaises(ValueError, ssl.match_hostname, None, 'example.com')
  310. self.assertRaises(ValueError, ssl.match_hostname, {}, 'example.com')
  311. def test_server_side(self):
  312. # server_hostname doesn't work for server sockets
  313. ctx = ssl.SSLContext(ssl.PROTOCOL_SSLv23)
  314. with socket.socket() as sock:
  315. self.assertRaises(ValueError, ctx.wrap_socket, sock, True,
  316. server_hostname="some.hostname")
  317. def test_unknown_channel_binding(self):
  318. # should raise ValueError for unknown type
  319. s = socket.socket(socket.AF_INET)
  320. ss = ssl.wrap_socket(s)
  321. with self.assertRaises(ValueError):
  322. ss.get_channel_binding("unknown-type")
  323. @unittest.skipUnless("tls-unique" in ssl.CHANNEL_BINDING_TYPES,
  324. "'tls-unique' channel binding not available")
  325. def test_tls_unique_channel_binding(self):
  326. # unconnected should return None for known type
  327. s = socket.socket(socket.AF_INET)
  328. ss = ssl.wrap_socket(s)
  329. self.assertIsNone(ss.get_channel_binding("tls-unique"))
  330. # the same for server-side
  331. s = socket.socket(socket.AF_INET)
  332. ss = ssl.wrap_socket(s, server_side=True, certfile=CERTFILE)
  333. self.assertIsNone(ss.get_channel_binding("tls-unique"))
  334. class ContextTests(unittest.TestCase):
  335. @skip_if_broken_ubuntu_ssl
  336. def test_constructor(self):
  337. if hasattr(ssl, 'PROTOCOL_SSLv2'):
  338. ctx = ssl.SSLContext(ssl.PROTOCOL_SSLv2)
  339. ctx = ssl.SSLContext(ssl.PROTOCOL_SSLv23)
  340. ctx = ssl.SSLContext(ssl.PROTOCOL_SSLv3)
  341. ctx = ssl.SSLContext(ssl.PROTOCOL_TLSv1)
  342. self.assertRaises(TypeError, ssl.SSLContext)
  343. self.assertRaises(ValueError, ssl.SSLContext, -1)
  344. self.assertRaises(ValueError, ssl.SSLContext, 42)
  345. @skip_if_broken_ubuntu_ssl
  346. def test_protocol(self):
  347. for proto in PROTOCOLS:
  348. ctx = ssl.SSLContext(proto)
  349. self.assertEqual(ctx.protocol, proto)
  350. def test_ciphers(self):
  351. ctx = ssl.SSLContext(ssl.PROTOCOL_TLSv1)
  352. ctx.set_ciphers("ALL")
  353. ctx.set_ciphers("DEFAULT")
  354. with self.assertRaisesRegex(ssl.SSLError, "No cipher can be selected"):
  355. ctx.set_ciphers("^$:,;?*'dorothyx")
  356. @skip_if_broken_ubuntu_ssl
  357. def test_options(self):
  358. ctx = ssl.SSLContext(ssl.PROTOCOL_TLSv1)
  359. # OP_ALL is the default value
  360. self.assertEqual(ssl.OP_ALL, ctx.options)
  361. ctx.options |= ssl.OP_NO_SSLv2
  362. self.assertEqual(ssl.OP_ALL | ssl.OP_NO_SSLv2,
  363. ctx.options)
  364. ctx.options |= ssl.OP_NO_SSLv3
  365. self.assertEqual(ssl.OP_ALL | ssl.OP_NO_SSLv2 | ssl.OP_NO_SSLv3,
  366. ctx.options)
  367. if can_clear_options():
  368. ctx.options = (ctx.options & ~ssl.OP_NO_SSLv2) | ssl.OP_NO_TLSv1
  369. self.assertEqual(ssl.OP_ALL | ssl.OP_NO_TLSv1 | ssl.OP_NO_SSLv3,
  370. ctx.options)
  371. ctx.options = 0
  372. self.assertEqual(0, ctx.options)
  373. else:
  374. with self.assertRaises(ValueError):
  375. ctx.options = 0
  376. def test_verify(self):
  377. ctx = ssl.SSLContext(ssl.PROTOCOL_TLSv1)
  378. # Default value
  379. self.assertEqual(ctx.verify_mode, ssl.CERT_NONE)
  380. ctx.verify_mode = ssl.CERT_OPTIONAL
  381. self.assertEqual(ctx.verify_mode, ssl.CERT_OPTIONAL)
  382. ctx.verify_mode = ssl.CERT_REQUIRED
  383. self.assertEqual(ctx.verify_mode, ssl.CERT_REQUIRED)
  384. ctx.verify_mode = ssl.CERT_NONE
  385. self.assertEqual(ctx.verify_mode, ssl.CERT_NONE)
  386. with self.assertRaises(TypeError):
  387. ctx.verify_mode = None
  388. with self.assertRaises(ValueError):
  389. ctx.verify_mode = 42
  390. def test_load_cert_chain(self):
  391. ctx = ssl.SSLContext(ssl.PROTOCOL_TLSv1)
  392. # Combined key and cert in a single file
  393. ctx.load_cert_chain(CERTFILE)
  394. ctx.load_cert_chain(CERTFILE, keyfile=CERTFILE)
  395. self.assertRaises(TypeError, ctx.load_cert_chain, keyfile=CERTFILE)
  396. with self.assertRaises(OSError) as cm:
  397. ctx.load_cert_chain(WRONGCERT)
  398. self.assertEqual(cm.exception.errno, errno.ENOENT)
  399. with self.assertRaisesRegex(ssl.SSLError, "PEM lib"):
  400. ctx.load_cert_chain(BADCERT)
  401. with self.assertRaisesRegex(ssl.SSLError, "PEM lib"):
  402. ctx.load_cert_chain(EMPTYCERT)
  403. # Separate key and cert
  404. ctx = ssl.SSLContext(ssl.PROTOCOL_TLSv1)
  405. ctx.load_cert_chain(ONLYCERT, ONLYKEY)
  406. ctx.load_cert_chain(certfile=ONLYCERT, keyfile=ONLYKEY)
  407. ctx.load_cert_chain(certfile=BYTES_ONLYCERT, keyfile=BYTES_ONLYKEY)
  408. with self.assertRaisesRegex(ssl.SSLError, "PEM lib"):
  409. ctx.load_cert_chain(ONLYCERT)
  410. with self.assertRaisesRegex(ssl.SSLError, "PEM lib"):
  411. ctx.load_cert_chain(ONLYKEY)
  412. with self.assertRaisesRegex(ssl.SSLError, "PEM lib"):
  413. ctx.load_cert_chain(certfile=ONLYKEY, keyfile=ONLYCERT)
  414. # Mismatching key and cert
  415. ctx = ssl.SSLContext(ssl.PROTOCOL_TLSv1)
  416. with self.assertRaisesRegex(ssl.SSLError, "key values mismatch"):
  417. ctx.load_cert_chain(SVN_PYTHON_ORG_ROOT_CERT, ONLYKEY)
  418. # Password protected key and cert
  419. ctx.load_cert_chain(CERTFILE_PROTECTED, password=KEY_PASSWORD)
  420. ctx.load_cert_chain(CERTFILE_PROTECTED, password=KEY_PASSWORD.encode())
  421. ctx.load_cert_chain(CERTFILE_PROTECTED,
  422. password=bytearray(KEY_PASSWORD.encode()))
  423. ctx.load_cert_chain(ONLYCERT, ONLYKEY_PROTECTED, KEY_PASSWORD)
  424. ctx.load_cert_chain(ONLYCERT, ONLYKEY_PROTECTED, KEY_PASSWORD.encode())
  425. ctx.load_cert_chain(ONLYCERT, ONLYKEY_PROTECTED,
  426. bytearray(KEY_PASSWORD.encode()))
  427. with self.assertRaisesRegex(TypeError, "should be a string"):
  428. ctx.load_cert_chain(CERTFILE_PROTECTED, password=True)
  429. with self.assertRaises(ssl.SSLError):
  430. ctx.load_cert_chain(CERTFILE_PROTECTED, password="badpass")
  431. with self.assertRaisesRegex(ValueError, "cannot be longer"):
  432. # openssl has a fixed limit on the password buffer.
  433. # PEM_BUFSIZE is generally set to 1kb.
  434. # Return a string larger than this.
  435. ctx.load_cert_chain(CERTFILE_PROTECTED, password=b'a' * 102400)
  436. # Password callback
  437. def getpass_unicode():
  438. return KEY_PASSWORD
  439. def getpass_bytes():
  440. return KEY_PASSWORD.encode()
  441. def getpass_bytearray():
  442. return bytearray(KEY_PASSWORD.encode())
  443. def getpass_badpass():
  444. return "badpass"
  445. def getpass_huge():
  446. return b'a' * (1024 * 1024)
  447. def getpass_bad_type():
  448. return 9
  449. def getpass_exception():
  450. raise Exception('getpass error')
  451. class GetPassCallable:
  452. def __call__(self):
  453. return KEY_PASSWORD
  454. def getpass(self):
  455. return KEY_PASSWORD
  456. ctx.load_cert_chain(CERTFILE_PROTECTED, password=getpass_unicode)
  457. ctx.load_cert_chain(CERTFILE_PROTECTED, password=getpass_bytes)
  458. ctx.load_cert_chain(CERTFILE_PROTECTED, password=getpass_bytearray)
  459. ctx.load_cert_chain(CERTFILE_PROTECTED, password=GetPassCallable())
  460. ctx.load_cert_chain(CERTFILE_PROTECTED,
  461. password=GetPassCallable().getpass)
  462. with self.assertRaises(ssl.SSLError):
  463. ctx.load_cert_chain(CERTFILE_PROTECTED, password=getpass_badpass)
  464. with self.assertRaisesRegex(ValueError, "cannot be longer"):
  465. ctx.load_cert_chain(CERTFILE_PROTECTED, password=getpass_huge)
  466. with self.assertRaisesRegex(TypeError, "must return a string"):
  467. ctx.load_cert_chain(CERTFILE_PROTECTED, password=getpass_bad_type)
  468. with self.assertRaisesRegex(Exception, "getpass error"):
  469. ctx.load_cert_chain(CERTFILE_PROTECTED, password=getpass_exception)
  470. # Make sure the password function isn't called if it isn't needed
  471. ctx.load_cert_chain(CERTFILE, password=getpass_exception)
  472. def test_load_verify_locations(self):
  473. ctx = ssl.SSLContext(ssl.PROTOCOL_TLSv1)
  474. ctx.load_verify_locations(CERTFILE)
  475. ctx.load_verify_locations(cafile=CERTFILE, capath=None)
  476. ctx.load_verify_locations(BYTES_CERTFILE)
  477. ctx.load_verify_locations(cafile=BYTES_CERTFILE, capath=None)
  478. self.assertRaises(TypeError, ctx.load_verify_locations)
  479. self.assertRaises(TypeError, ctx.load_verify_locations, None, None)
  480. with self.assertRaises(OSError) as cm:
  481. ctx.load_verify_locations(WRONGCERT)
  482. self.assertEqual(cm.exception.errno, errno.ENOENT)
  483. with self.assertRaisesRegex(ssl.SSLError, "PEM lib"):
  484. ctx.load_verify_locations(BADCERT)
  485. ctx.load_verify_locations(CERTFILE, CAPATH)
  486. ctx.load_verify_locations(CERTFILE, capath=BYTES_CAPATH)
  487. # Issue #10989: crash if the second argument type is invalid
  488. self.assertRaises(TypeError, ctx.load_verify_locations, None, True)
  489. def test_load_dh_params(self):
  490. ctx = ssl.SSLContext(ssl.PROTOCOL_TLSv1)
  491. ctx.load_dh_params(DHFILE)
  492. if os.name != 'nt':
  493. ctx.load_dh_params(BYTES_DHFILE)
  494. self.assertRaises(TypeError, ctx.load_dh_params)
  495. self.assertRaises(TypeError, ctx.load_dh_params, None)
  496. with self.assertRaises(FileNotFoundError) as cm:
  497. ctx.load_dh_params(WRONGCERT)
  498. self.assertEqual(cm.exception.errno, errno.ENOENT)
  499. with self.assertRaises(ssl.SSLError) as cm:
  500. ctx.load_dh_params(CERTFILE)
  501. @skip_if_broken_ubuntu_ssl
  502. def test_session_stats(self):
  503. for proto in PROTOCOLS:
  504. ctx = ssl.SSLContext(proto)
  505. self.assertEqual(ctx.session_stats(), {
  506. 'number': 0,
  507. 'connect': 0,
  508. 'connect_good': 0,
  509. 'connect_renegotiate': 0,
  510. 'accept': 0,
  511. 'accept_good': 0,
  512. 'accept_renegotiate': 0,
  513. 'hits': 0,
  514. 'misses': 0,
  515. 'timeouts': 0,
  516. 'cache_full': 0,
  517. })
  518. def test_set_default_verify_paths(self):
  519. # There's not much we can do to test that it acts as expected,
  520. # so just check it doesn't crash or raise an exception.
  521. ctx = ssl.SSLContext(ssl.PROTOCOL_TLSv1)
  522. ctx.set_default_verify_paths()
  523. @unittest.skipUnless(ssl.HAS_ECDH, "ECDH disabled on this OpenSSL build")
  524. def test_set_ecdh_curve(self):
  525. ctx = ssl.SSLContext(ssl.PROTOCOL_TLSv1)
  526. ctx.set_ecdh_curve("prime256v1")
  527. ctx.set_ecdh_curve(b"prime256v1")
  528. self.assertRaises(TypeError, ctx.set_ecdh_curve)
  529. self.assertRaises(TypeError, ctx.set_ecdh_curve, None)
  530. self.assertRaises(ValueError, ctx.set_ecdh_curve, "foo")
  531. self.assertRaises(ValueError, ctx.set_ecdh_curve, b"foo")
  532. class SSLErrorTests(unittest.TestCase):
  533. def test_str(self):
  534. # The str() of a SSLError doesn't include the errno
  535. e = ssl.SSLError(1, "foo")
  536. self.assertEqual(str(e), "foo")
  537. self.assertEqual(e.errno, 1)
  538. # Same for a subclass
  539. e = ssl.SSLZeroReturnError(1, "foo")
  540. self.assertEqual(str(e), "foo")
  541. self.assertEqual(e.errno, 1)
  542. def test_lib_reason(self):
  543. # Test the library and reason attributes
  544. ctx = ssl.SSLContext(ssl.PROTOCOL_TLSv1)
  545. with self.assertRaises(ssl.SSLError) as cm:
  546. ctx.load_dh_params(CERTFILE)
  547. self.assertEqual(cm.exception.library, 'PEM')
  548. self.assertEqual(cm.exception.reason, 'NO_START_LINE')
  549. s = str(cm.exception)
  550. self.assertTrue(s.startswith("[PEM: NO_START_LINE] no start line"), s)
  551. def test_subclass(self):
  552. # Check that the appropriate SSLError subclass is raised
  553. # (this only tests one of them)
  554. ctx = ssl.SSLContext(ssl.PROTOCOL_TLSv1)
  555. with socket.socket() as s:
  556. s.bind(("127.0.0.1", 0))
  557. s.listen(5)
  558. with socket.socket() as c:
  559. c.connect(s.getsockname())
  560. c.setblocking(False)
  561. c = ctx.wrap_socket(c, False, do_handshake_on_connect=False)
  562. with self.assertRaises(ssl.SSLWantReadError) as cm:
  563. c.do_handshake()
  564. s = str(cm.exception)
  565. self.assertTrue(s.startswith("The operation did not complete (read)"), s)
  566. # For compatibility
  567. self.assertEqual(cm.exception.errno, ssl.SSL_ERROR_WANT_READ)
  568. class NetworkedTests(unittest.TestCase):
  569. def test_connect(self):
  570. with support.transient_internet("svn.python.org"):
  571. s = ssl.wrap_socket(socket.socket(socket.AF_INET),
  572. cert_reqs=ssl.CERT_NONE)
  573. try:
  574. s.connect(("svn.python.org", 443))
  575. self.assertEqual({}, s.getpeercert())
  576. finally:
  577. s.close()
  578. # this should fail because we have no verification certs
  579. s = ssl.wrap_socket(socket.socket(socket.AF_INET),
  580. cert_reqs=ssl.CERT_REQUIRED)
  581. self.assertRaisesRegex(ssl.SSLError, "certificate verify failed",
  582. s.connect, ("svn.python.org", 443))
  583. s.close()
  584. # this should succeed because we specify the root cert
  585. s = ssl.wrap_socket(socket.socket(socket.AF_INET),
  586. cert_reqs=ssl.CERT_REQUIRED,
  587. ca_certs=SVN_PYTHON_ORG_ROOT_CERT)
  588. try:
  589. s.connect(("svn.python.org", 443))
  590. self.assertTrue(s.getpeercert())
  591. finally:
  592. s.close()
  593. def test_connect_ex(self):
  594. # Issue #11326: check connect_ex() implementation
  595. with support.transient_internet("svn.python.org"):
  596. s = ssl.wrap_socket(socket.socket(socket.AF_INET),
  597. cert_reqs=ssl.CERT_REQUIRED,
  598. ca_certs=SVN_PYTHON_ORG_ROOT_CERT)
  599. try:
  600. self.assertEqual(0, s.connect_ex(("svn.python.org", 443)))
  601. self.assertTrue(s.getpeercert())
  602. finally:
  603. s.close()
  604. def test_non_blocking_connect_ex(self):
  605. # Issue #11326: non-blocking connect_ex() should allow handshake
  606. # to proceed after the socket gets ready.
  607. with support.transient_internet("svn.python.org"):
  608. s = ssl.wrap_socket(socket.socket(socket.AF_INET),
  609. cert_reqs=ssl.CERT_REQUIRED,
  610. ca_certs=SVN_PYTHON_ORG_ROOT_CERT,
  611. do_handshake_on_connect=False)
  612. try:
  613. s.setblocking(False)
  614. rc = s.connect_ex(('svn.python.org', 443))
  615. # EWOULDBLOCK under Windows, EINPROGRESS elsewhere
  616. self.assertIn(rc, (0, errno.EINPROGRESS, errno.EWOULDBLOCK))
  617. # Wait for connect to finish
  618. select.select([], [s], [], 5.0)
  619. # Non-blocking handshake
  620. while True:
  621. try:
  622. s.do_handshake()
  623. break
  624. except ssl.SSLWantReadError:
  625. select.select([s], [], [], 5.0)
  626. except ssl.SSLWantWriteError:
  627. select.select([], [s], [], 5.0)
  628. # SSL established
  629. self.assertTrue(s.getpeercert())
  630. finally:
  631. s.close()
  632. def test_timeout_connect_ex(self):
  633. # Issue #12065: on a timeout, connect_ex() should return the original
  634. # errno (mimicking the behaviour of non-SSL sockets).
  635. with support.transient_internet("svn.python.org"):
  636. s = ssl.wrap_socket(socket.socket(socket.AF_INET),
  637. cert_reqs=ssl.CERT_REQUIRED,
  638. ca_certs=SVN_PYTHON_ORG_ROOT_CERT,
  639. do_handshake_on_connect=False)
  640. try:
  641. s.settimeout(0.0000001)
  642. rc = s.connect_ex(('svn.python.org', 443))
  643. if rc == 0:
  644. self.skipTest("svn.python.org responded too quickly")
  645. self.assertIn(rc, (errno.EAGAIN, errno.EWOULDBLOCK))
  646. finally:
  647. s.close()
  648. def test_connect_ex_error(self):
  649. with support.transient_internet("svn.python.org"):
  650. s = ssl.wrap_socket(socket.socket(socket.AF_INET),
  651. cert_reqs=ssl.CERT_REQUIRED,
  652. ca_certs=SVN_PYTHON_ORG_ROOT_CERT)
  653. try:
  654. self.assertEqual(errno.ECONNREFUSED,
  655. s.connect_ex(("svn.python.org", 444)))
  656. finally:
  657. s.close()
  658. def test_connect_with_context(self):
  659. with support.transient_internet("svn.python.org"):
  660. # Same as test_connect, but with a separately created context
  661. ctx = ssl.SSLContext(ssl.PROTOCOL_SSLv23)
  662. s = ctx.wrap_socket(socket.socket(socket.AF_INET))
  663. s.connect(("svn.python.org", 443))
  664. try:
  665. self.assertEqual({}, s.getpeercert())
  666. finally:
  667. s.close()
  668. # Same with a server hostname
  669. s = ctx.wrap_socket(socket.socket(socket.AF_INET),
  670. server_hostname="svn.python.org")
  671. if ssl.HAS_SNI:
  672. s.connect(("svn.python.org", 443))
  673. s.close()
  674. else:
  675. self.assertRaises(ValueError, s.connect, ("svn.python.org", 443))
  676. # This should fail because we have no verification certs
  677. ctx.verify_mode = ssl.CERT_REQUIRED
  678. s = ctx.wrap_socket(socket.socket(socket.AF_INET))
  679. self.assertRaisesRegex(ssl.SSLError, "certificate verify failed",
  680. s.connect, ("svn.python.org", 443))
  681. s.close()
  682. # This should succeed because we specify the root cert
  683. ctx.load_verify_locations(SVN_PYTHON_ORG_ROOT_CERT)
  684. s = ctx.wrap_socket(socket.socket(socket.AF_INET))
  685. s.connect(("svn.python.org", 443))
  686. try:
  687. cert = s.getpeercert()
  688. self.assertTrue(cert)
  689. finally:
  690. s.close()
  691. def test_connect_capath(self):
  692. # Verify server certificates using the `capath` argument
  693. # NOTE: the subject hashing algorithm has been changed between
  694. # OpenSSL 0.9.8n and 1.0.0, as a result the capath directory must
  695. # contain both versions of each certificate (same content, different
  696. # filename) for this test to be portable across OpenSSL releases.
  697. with support.transient_internet("svn.python.org"):
  698. ctx = ssl.SSLContext(ssl.PROTOCOL_SSLv23)
  699. ctx.verify_mode = ssl.CERT_REQUIRED
  700. ctx.load_verify_locations(capath=CAPATH)
  701. s = ctx.wrap_socket(socket.socket(socket.AF_INET))
  702. s.connect(("svn.python.org", 443))
  703. try:
  704. cert = s.getpeercert()
  705. self.assertTrue(cert)
  706. finally:
  707. s.close()
  708. # Same with a bytes `capath` argument
  709. ctx = ssl.SSLContext(ssl.PROTOCOL_SSLv23)
  710. ctx.verify_mode = ssl.CERT_REQUIRED
  711. ctx.load_verify_locations(capath=BYTES_CAPATH)
  712. s = ctx.wrap_socket(socket.socket(socket.AF_INET))
  713. s.connect(("svn.python.org", 443))
  714. try:
  715. cert = s.getpeercert()
  716. self.assertTrue(cert)
  717. finally:
  718. s.close()
  719. @unittest.skipIf(os.name == "nt", "Can't use a socket as a file under Windows")
  720. def test_makefile_close(self):
  721. # Issue #5238: creating a file-like object with makefile() shouldn't
  722. # delay closing the underlying "real socket" (here tested with its
  723. # file descriptor, hence skipping the test under Windows).
  724. with support.transient_internet("svn.python.org"):
  725. ss = ssl.wrap_socket(socket.socket(socket.AF_INET))
  726. ss.connect(("svn.python.org", 443))
  727. fd = ss.fileno()
  728. f = ss.makefile()
  729. f.close()
  730. # The fd is still open
  731. os.read(fd, 0)
  732. # Closing the SSL socket should close the fd too
  733. ss.close()
  734. gc.collect()
  735. with self.assertRaises(OSError) as e:
  736. os.read(fd, 0)
  737. self.assertEqual(e.exception.errno, errno.EBADF)
  738. def test_non_blocking_handshake(self):
  739. with support.transient_internet("svn.python.org"):
  740. s = socket.socket(socket.AF_INET)
  741. s.connect(("svn.python.org", 443))
  742. s.setblocking(False)
  743. s = ssl.wrap_socket(s,
  744. cert_reqs=ssl.CERT_NONE,
  745. do_handshake_on_connect=False)
  746. count = 0
  747. while True:
  748. try:
  749. count += 1
  750. s.do_handshake()
  751. break
  752. except ssl.SSLWantReadError:
  753. select.select([s], [], [])
  754. except ssl.SSLWantWriteError:
  755. select.select([], [s], [])
  756. s.close()
  757. if support.verbose:
  758. sys.stdout.write("\nNeeded %d calls to do_handshake() to establish session.\n" % count)
  759. def test_get_server_certificate(self):
  760. def _test_get_server_certificate(host, port, cert=None):
  761. with support.transient_internet(host):
  762. pem = ssl.get_server_certificate((host, port))
  763. if not pem:
  764. self.fail("No server certificate on %s:%s!" % (host, port))
  765. try:
  766. pem = ssl.get_server_certificate((host, port), ca_certs=CERTFILE)
  767. except ssl.SSLError as x:
  768. #should fail
  769. if support.verbose:
  770. sys.stdout.write("%s\n" % x)
  771. else:
  772. self.fail("Got server certificate %s for %s:%s!" % (pem, host, port))
  773. pem = ssl.get_server_certificate((host, port), ca_certs=cert)
  774. if not pem:
  775. self.fail("No server certificate on %s:%s!" % (host, port))
  776. if support.verbose:
  777. sys.stdout.write("\nVerified certificate for %s:%s is\n%s\n" % (host, port ,pem))
  778. _test_get_server_certificate('svn.python.org', 443, SVN_PYTHON_ORG_ROOT_CERT)
  779. if support.IPV6_ENABLED:
  780. _test_get_server_certificate('ipv6.google.com', 443)
  781. def test_ciphers(self):
  782. remote = ("svn.python.org", 443)
  783. with support.transient_internet(remote[0]):
  784. s = ssl.wrap_socket(socket.socket(socket.AF_INET),
  785. cert_reqs=ssl.CERT_NONE, ciphers="ALL")
  786. s.connect(remote)
  787. s = ssl.wrap_socket(socket.socket(socket.AF_INET),
  788. cert_reqs=ssl.CERT_NONE, ciphers="DEFAULT")
  789. s.connect(remote)
  790. # Error checking can happen at instantiation or when connecting
  791. with self.assertRaisesRegex(ssl.SSLError, "No cipher can be selected"):
  792. with socket.socket(socket.AF_INET) as sock:
  793. s = ssl.wrap_socket(sock,
  794. cert_reqs=ssl.CERT_NONE, ciphers="^$:,;?*'dorothyx")
  795. s.connect(remote)
  796. def test_algorithms(self):
  797. # Issue #8484: all algorithms should be available when verifying a
  798. # certificate.
  799. # SHA256 was added in OpenSSL 0.9.8
  800. if ssl.OPENSSL_VERSION_INFO < (0, 9, 8, 0, 15):
  801. self.skipTest("SHA256 not available on %r" % ssl.OPENSSL_VERSION)
  802. # sha256.tbs-internet.com needs SNI to use the correct certificate
  803. if not ssl.HAS_SNI:
  804. self.skipTest("SNI needed for this test")
  805. # https://sha2.hboeck.de/ was used until 2011-01-08 (no route to host)
  806. remote = ("sha256.tbs-internet.com", 443)
  807. sha256_cert = os.path.join(os.path.dirname(__file__), "sha256.pem")
  808. with support.transient_internet("sha256.tbs-internet.com"):
  809. ctx = ssl.SSLContext(ssl.PROTOCOL_TLSv1)
  810. ctx.verify_mode = ssl.CERT_REQUIRED
  811. ctx.load_verify_locations(sha256_cert)
  812. s = ctx.wrap_socket(socket.socket(socket.AF_INET),
  813. server_hostname="sha256.tbs-internet.com")
  814. try:
  815. s.connect(remote)
  816. if support.verbose:
  817. sys.stdout.write("\nCipher with %r is %r\n" %
  818. (remote, s.cipher()))
  819. sys.stdout.write("Certificate is:\n%s\n" %
  820. pprint.pformat(s.getpeercert()))
  821. finally:
  822. s.close()
  823. try:
  824. import threading
  825. except ImportError:
  826. _have_threads = False
  827. else:
  828. _have_threads = True
  829. from test.ssl_servers import make_https_server
  830. class ThreadedEchoServer(threading.Thread):
  831. class ConnectionHandler(threading.Thread):
  832. """A mildly complicated class, because we want it to work both
  833. with and without the SSL wrapper around the socket connection, so
  834. that we can test the STARTTLS functionality."""
  835. def __init__(self, server, connsock, addr):
  836. self.server = server
  837. self.running = False
  838. self.sock = connsock
  839. self.addr = addr
  840. self.sock.setblocking(1)
  841. self.sslconn = None
  842. threading.Thread.__init__(self)
  843. self.daemon = True
  844. def wrap_conn(self):
  845. try:
  846. self.sslconn = self.server.context.wrap_socket(
  847. self.sock, server_side=True)
  848. self.server.selected_protocols.append(self.sslconn.selected_npn_protocol())
  849. except ssl.SSLError as e:
  850. # XXX Various errors can have happened here, for example
  851. # a mismatching protocol version, an invalid certificate,
  852. # or a low-level bug. This should be made more discriminating.
  853. self.server.conn_errors.append(e)
  854. if self.server.chatty:
  855. handle_error("\n server: bad connection attempt from " + repr(self.addr) + ":\n")
  856. self.running = False
  857. self.server.stop()
  858. self.close()
  859. return False
  860. else:
  861. if self.server.context.verify_mode == ssl.CERT_REQUIRED:
  862. cert = self.sslconn.getpeercert()
  863. if support.verbose and self.server.chatty:
  864. sys.stdout.write(" client cert is " + pprint.pformat(cert) + "\n")
  865. cert_binary = self.sslconn.getpeercert(True)
  866. if support.verbose and self.server.chatty:
  867. sys.stdout.write(" cert binary is " + str(len(cert_binary)) + " bytes\n")
  868. cipher = self.sslconn.cipher()
  869. if support.verbose and self.server.chatty:
  870. sys.stdout.write(" server: connection cipher is now " + str(cipher) + "\n")
  871. sys.stdout.write(" server: selected protocol is now "
  872. + str(self.sslconn.selected_npn_protocol()) + "\n")
  873. return True
  874. def read(self):
  875. if self.sslconn:
  876. return self.sslconn.read()
  877. else:
  878. return self.sock.recv(1024)
  879. def write(self, bytes):
  880. if self.sslconn:
  881. return self.sslconn.write(bytes)
  882. else:
  883. return self.sock.send(bytes)
  884. def close(self):
  885. if self.sslconn:
  886. self.sslconn.close()
  887. else:
  888. self.sock.close()
  889. def run(self):
  890. self.running = True
  891. if not self.server.starttls_server:
  892. if not self.wrap_conn():
  893. return
  894. while self.running:
  895. try:
  896. msg = self.read()
  897. stripped = msg.strip()
  898. if not stripped:
  899. # eof, so quit this handler
  900. self.running = False
  901. self.close()
  902. elif stripped == b'over':
  903. if support.verbose and self.server.connectionchatty:
  904. sys.stdout.write(" server: client closed connection\n")
  905. self.close()
  906. return
  907. elif (self.server.starttls_server and
  908. stripped == b'STARTTLS'):
  909. if support.verbose and self.server.connectionchatty:
  910. sys.stdout.write(" server: read STARTTLS from client, sending OK...\n")
  911. self.write(b"OK\n")
  912. if not self.wrap_conn():
  913. return
  914. elif (self.server.starttls_server and self.sslconn
  915. and stripped == b'ENDTLS'):
  916. if support.verbose and self.server.connectionchatty:
  917. sys.stdout.write(" server: read ENDTLS from client, sending OK...\n")
  918. self.write(b"OK\n")
  919. self.sock = self.sslconn.unwrap()
  920. self.sslconn = None
  921. if support.verbose and self.server.connectionchatty:
  922. sys.stdout.write(" server: connection is now unencrypted...\n")
  923. elif stripped == b'CB tls-unique':
  924. if support.verbose and self.server.connectionchatty:
  925. sys.stdout.write(" server: read CB tls-unique from client, sending our CB data...\n")
  926. data = self.sslconn.get_channel_binding("tls-unique")
  927. self.write(repr(data).encode("us-ascii") + b"\n")
  928. else:
  929. if (support.verbose and
  930. self.server.connectionchatty):
  931. ctype = (self.sslconn and "encrypted") or "unencrypted"
  932. sys.stdout.write(" server: read %r (%s), sending back %r (%s)...\n"
  933. % (msg, ctype, msg.lower(), ctype))
  934. self.write(msg.lower())
  935. except OSError:
  936. if self.server.chatty:
  937. handle_error("Test server failure:\n")
  938. self.close()
  939. self.running = False
  940. # normally, we'd just stop here, but for the test
  941. # harness, we want to stop the server
  942. self.server.stop()
  943. def __init__(self, certificate=None, ssl_version=None,
  944. certreqs=None, cacerts=None,
  945. chatty=True, connectionchatty=False, starttls_server=False,
  946. npn_protocols=None, ciphers=None, context=None):
  947. if context:
  948. self.context = context
  949. else:
  950. self.context = ssl.SSLContext(ssl_version
  951. if ssl_version is not None
  952. else ssl.PROTOCOL_TLSv1)
  953. self.context.verify_mode = (certreqs if certreqs is not None
  954. else ssl.CERT_NONE)
  955. if cacerts:
  956. self.context.load_verify_locations(cacerts)
  957. if certificate:
  958. self.context.load_cert_chain(certificate)
  959. if npn_protocols:
  960. self.context.set_npn_protocols(npn_protocols)
  961. if ciphers:
  962. self.context.set_ciphers(ciphers)
  963. self.chatty = chatty
  964. self.connectionchatty = connectionchatty
  965. self.starttls_server = starttls_server
  966. self.sock = socket.socket()
  967. self.port = support.bind_port(self.sock)
  968. self.flag = None
  969. self.active = False
  970. self.selected_protocols = []
  971. self.conn_errors = []
  972. threading.Thread.__init__(self)
  973. self.daemon = True
  974. def __enter__(self):
  975. self.start(threading.Event())
  976. self.flag.wait()
  977. return self
  978. def __exit__(self, *args):
  979. self.stop()
  980. self.join()
  981. def start(self, flag=None):
  982. self.flag = flag
  983. threading.Thread.start(self)
  984. def run(self):
  985. self.sock.settimeout(0.05)
  986. self.sock.listen(5)
  987. self.active = True
  988. if self.flag:
  989. # signal an event
  990. self.flag.set()
  991. while self.active:
  992. try:
  993. newconn, connaddr = self.sock.accept()
  994. if support.verbose and self.chatty:
  995. sys.stdout.write(' server: new connection from '
  996. + repr(connaddr) + '\n')
  997. handler = self.ConnectionHandler(self, newconn, connaddr)
  998. handler.start()
  999. handler.join()
  1000. except socket.timeout:
  1001. pass
  1002. except KeyboardInterrupt:
  1003. self.stop()
  1004. self.sock.close()
  1005. def stop(self):
  1006. self.active = False
  1007. class AsyncoreEchoServer(threading.Thread):
  1008. # this one's based on asyncore.dispatcher
  1009. class EchoServer (asyncore.dispatcher):
  1010. class ConnectionHandler (asyncore.dispatcher_with_send):
  1011. def __init__(self, conn, certfile):
  1012. self.socket = ssl.wrap_socket(conn, server_side=True,
  1013. certfile=certfile,
  1014. do_handshake_on_connect=False)
  1015. asyncore.dispatcher_with_send.__init__(self, self.socket)
  1016. self._ssl_accepting = True
  1017. self._do_ssl_handshake()
  1018. def readable(self):
  1019. if isinstance(self.socket, ssl.SSLSocket):
  1020. while self.socket.pending() > 0:
  1021. self.handle_read_event()
  1022. return True
  1023. def _do_ssl_handshake(self):
  1024. try:
  1025. self.socket.do_handshake()
  1026. except (ssl.SSLWantReadError, ssl.SSLWantWriteError):
  1027. return
  1028. except ssl.SSLEOFError:
  1029. return self.handle_close()
  1030. except ssl.SSLError:
  1031. raise
  1032. except OSError as err:
  1033. if err.args[0] == errno.ECONNABORTED:
  1034. return self.handle_close()
  1035. else:
  1036. self._ssl_accepting = False
  1037. def handle_read(self):
  1038. if self._ssl_accepting:
  1039. self._do_ssl_handshake()
  1040. else:
  1041. data = self.recv(1024)
  1042. if support.verbose:
  1043. sys.stdout.write(" server: read %s from client\n" % repr(data))
  1044. if not data:

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