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"""tests for passlib.context
this file is a clone of the 1.5 test_context.py,
containing the tests using the legacy CryptPolicy api.
it's being preserved here to ensure the old api doesn't break
(until Passlib 1.8, when this and the legacy api will be removed).
"""
#=============================================================================
# imports
#=============================================================================
from __future__ import with_statement
# core
from logging import getLogger
import os
import warnings
# site
try:
from pkg_resources import resource_filename
except ImportError:
resource_filename = None
# pkg
from passlib import hash
from passlib.context import CryptContext, CryptPolicy, LazyCryptContext
from passlib.utils import to_bytes, to_unicode
import passlib.utils.handlers as uh
from passlib.tests.utils import TestCase, set_file
from passlib.registry import (register_crypt_handler_path,
_has_crypt_handler as has_crypt_handler,
_unload_handler_name as unload_handler_name,
)
# module
log = getLogger(__name__)
#=============================================================================
#
#=============================================================================
class CryptPolicyTest(TestCase):
"""test CryptPolicy object"""
# TODO: need to test user categories w/in all this
descriptionPrefix = "CryptPolicy"
#===================================================================
# sample crypt policies used for testing
#===================================================================
#---------------------------------------------------------------
# sample 1 - average config file
#---------------------------------------------------------------
# NOTE: copy of this is stored in file passlib/tests/sample_config_1s.cfg
sample_config_1s = """\
[passlib]
schemes = des_crypt, md5_crypt, bsdi_crypt, sha512_crypt
default = md5_crypt
all.vary_rounds = 10%%
bsdi_crypt.max_rounds = 30000
bsdi_crypt.default_rounds = 25000
sha512_crypt.max_rounds = 50000
sha512_crypt.min_rounds = 40000
"""
sample_config_1s_path = os.path.abspath(os.path.join(
os.path.dirname(__file__), "sample_config_1s.cfg"))
if not os.path.exists(sample_config_1s_path) and resource_filename:
# in case we're zipped up in an egg.
sample_config_1s_path = resource_filename("passlib.tests",
"sample_config_1s.cfg")
# make sure sample_config_1s uses \n linesep - tests rely on this
assert sample_config_1s.startswith("[passlib]\nschemes")
sample_config_1pd = dict(
schemes = [ "des_crypt", "md5_crypt", "bsdi_crypt", "sha512_crypt"],
default = "md5_crypt",
# NOTE: not maintaining backwards compat for rendering to "10%"
all__vary_rounds = 0.1,
bsdi_crypt__max_rounds = 30000,
bsdi_crypt__default_rounds = 25000,
sha512_crypt__max_rounds = 50000,
sha512_crypt__min_rounds = 40000,
)
sample_config_1pid = {
"schemes": "des_crypt, md5_crypt, bsdi_crypt, sha512_crypt",
"default": "md5_crypt",
# NOTE: not maintaining backwards compat for rendering to "10%"
"all.vary_rounds": 0.1,
"bsdi_crypt.max_rounds": 30000,
"bsdi_crypt.default_rounds": 25000,
"sha512_crypt.max_rounds": 50000,
"sha512_crypt.min_rounds": 40000,
}
sample_config_1prd = dict(
schemes = [ hash.des_crypt, hash.md5_crypt, hash.bsdi_crypt, hash.sha512_crypt],
default = "md5_crypt", # NOTE: passlib <= 1.5 was handler obj.
# NOTE: not maintaining backwards compat for rendering to "10%"
all__vary_rounds = 0.1,
bsdi_crypt__max_rounds = 30000,
bsdi_crypt__default_rounds = 25000,
sha512_crypt__max_rounds = 50000,
sha512_crypt__min_rounds = 40000,
)
#---------------------------------------------------------------
# sample 2 - partial policy & result of overlay on sample 1
#---------------------------------------------------------------
sample_config_2s = """\
[passlib]
bsdi_crypt.min_rounds = 29000
bsdi_crypt.max_rounds = 35000
bsdi_crypt.default_rounds = 31000
sha512_crypt.min_rounds = 45000
"""
sample_config_2pd = dict(
# using this to test full replacement of existing options
bsdi_crypt__min_rounds = 29000,
bsdi_crypt__max_rounds = 35000,
bsdi_crypt__default_rounds = 31000,
# using this to test partial replacement of existing options
sha512_crypt__min_rounds=45000,
)
sample_config_12pd = dict(
schemes = [ "des_crypt", "md5_crypt", "bsdi_crypt", "sha512_crypt"],
default = "md5_crypt",
# NOTE: not maintaining backwards compat for rendering to "10%"
all__vary_rounds = 0.1,
bsdi_crypt__min_rounds = 29000,
bsdi_crypt__max_rounds = 35000,
bsdi_crypt__default_rounds = 31000,
sha512_crypt__max_rounds = 50000,
sha512_crypt__min_rounds=45000,
)
#---------------------------------------------------------------
# sample 3 - just changing default
#---------------------------------------------------------------
sample_config_3pd = dict(
default="sha512_crypt",
)
sample_config_123pd = dict(
schemes = [ "des_crypt", "md5_crypt", "bsdi_crypt", "sha512_crypt"],
default = "sha512_crypt",
# NOTE: not maintaining backwards compat for rendering to "10%"
all__vary_rounds = 0.1,
bsdi_crypt__min_rounds = 29000,
bsdi_crypt__max_rounds = 35000,
bsdi_crypt__default_rounds = 31000,
sha512_crypt__max_rounds = 50000,
sha512_crypt__min_rounds=45000,
)
#---------------------------------------------------------------
# sample 4 - category specific
#---------------------------------------------------------------
sample_config_4s = """
[passlib]
schemes = sha512_crypt
all.vary_rounds = 10%%
default.sha512_crypt.max_rounds = 20000
admin.all.vary_rounds = 5%%
admin.sha512_crypt.max_rounds = 40000
"""
sample_config_4pd = dict(
schemes = [ "sha512_crypt" ],
# NOTE: not maintaining backwards compat for rendering to "10%"
all__vary_rounds = 0.1,
sha512_crypt__max_rounds = 20000,
# NOTE: not maintaining backwards compat for rendering to "5%"
admin__all__vary_rounds = 0.05,
admin__sha512_crypt__max_rounds = 40000,
)
#---------------------------------------------------------------
# sample 5 - to_string & deprecation testing
#---------------------------------------------------------------
sample_config_5s = sample_config_1s + """\
deprecated = des_crypt
admin__context__deprecated = des_crypt, bsdi_crypt
"""
sample_config_5pd = sample_config_1pd.copy()
sample_config_5pd.update(
deprecated = [ "des_crypt" ],
admin__context__deprecated = [ "des_crypt", "bsdi_crypt" ],
)
sample_config_5pid = sample_config_1pid.copy()
sample_config_5pid.update({
"deprecated": "des_crypt",
"admin.context.deprecated": "des_crypt, bsdi_crypt",
})
sample_config_5prd = sample_config_1prd.copy()
sample_config_5prd.update({
# XXX: should deprecated return the actual handlers in this case?
# would have to modify how policy stores info, for one.
"deprecated": ["des_crypt"],
"admin__context__deprecated": ["des_crypt", "bsdi_crypt"],
})
#===================================================================
# constructors
#===================================================================
def setUp(self):
TestCase.setUp(self)
warnings.filterwarnings("ignore",
r"The CryptPolicy class has been deprecated")
warnings.filterwarnings("ignore",
r"the method.*hash_needs_update.*is deprecated")
warnings.filterwarnings("ignore", "The 'all' scheme is deprecated.*")
warnings.filterwarnings("ignore", "bsdi_crypt rounds should be odd")
def test_00_constructor(self):
"""test CryptPolicy() constructor"""
policy = CryptPolicy(**self.sample_config_1pd)
self.assertEqual(policy.to_dict(), self.sample_config_1pd)
policy = CryptPolicy(self.sample_config_1pd)
self.assertEqual(policy.to_dict(), self.sample_config_1pd)
self.assertRaises(TypeError, CryptPolicy, {}, {})
self.assertRaises(TypeError, CryptPolicy, {}, dummy=1)
# check key with too many separators is rejected
self.assertRaises(TypeError, CryptPolicy,
schemes = [ "des_crypt", "md5_crypt", "bsdi_crypt", "sha512_crypt"],
bad__key__bsdi_crypt__max_rounds = 30000,
)
# check nameless handler rejected
class nameless(uh.StaticHandler):
name = None
self.assertRaises(ValueError, CryptPolicy, schemes=[nameless])
# check scheme must be name or crypt handler
self.assertRaises(TypeError, CryptPolicy, schemes=[uh.StaticHandler])
# check name conflicts are rejected
class dummy_1(uh.StaticHandler):
name = 'dummy_1'
self.assertRaises(KeyError, CryptPolicy, schemes=[dummy_1, dummy_1])
# with unknown deprecated value
self.assertRaises(KeyError, CryptPolicy,
schemes=['des_crypt'],
deprecated=['md5_crypt'])
# with unknown default value
self.assertRaises(KeyError, CryptPolicy,
schemes=['des_crypt'],
default='md5_crypt')
def test_01_from_path_simple(self):
"""test CryptPolicy.from_path() constructor"""
# NOTE: this is separate so it can also run under GAE
# test preset stored in existing file
path = self.sample_config_1s_path
policy = CryptPolicy.from_path(path)
self.assertEqual(policy.to_dict(), self.sample_config_1pd)
# test if path missing
self.assertRaises(EnvironmentError, CryptPolicy.from_path, path + 'xxx')
def test_01_from_path(self):
"""test CryptPolicy.from_path() constructor with encodings"""
path = self.mktemp()
# test "\n" linesep
set_file(path, self.sample_config_1s)
policy = CryptPolicy.from_path(path)
self.assertEqual(policy.to_dict(), self.sample_config_1pd)
# test "\r\n" linesep
set_file(path, self.sample_config_1s.replace("\n","\r\n"))
policy = CryptPolicy.from_path(path)
self.assertEqual(policy.to_dict(), self.sample_config_1pd)
# test with custom encoding
uc2 = to_bytes(self.sample_config_1s, "utf-16", source_encoding="utf-8")
set_file(path, uc2)
policy = CryptPolicy.from_path(path, encoding="utf-16")
self.assertEqual(policy.to_dict(), self.sample_config_1pd)
def test_02_from_string(self):
"""test CryptPolicy.from_string() constructor"""
# test "\n" linesep
policy = CryptPolicy.from_string(self.sample_config_1s)
self.assertEqual(policy.to_dict(), self.sample_config_1pd)
# test "\r\n" linesep
policy = CryptPolicy.from_string(
self.sample_config_1s.replace("\n","\r\n"))
self.assertEqual(policy.to_dict(), self.sample_config_1pd)
# test with unicode
data = to_unicode(self.sample_config_1s)
policy = CryptPolicy.from_string(data)
self.assertEqual(policy.to_dict(), self.sample_config_1pd)
# test with non-ascii-compatible encoding
uc2 = to_bytes(self.sample_config_1s, "utf-16", source_encoding="utf-8")
policy = CryptPolicy.from_string(uc2, encoding="utf-16")
self.assertEqual(policy.to_dict(), self.sample_config_1pd)
# test category specific options
policy = CryptPolicy.from_string(self.sample_config_4s)
self.assertEqual(policy.to_dict(), self.sample_config_4pd)
def test_03_from_source(self):
"""test CryptPolicy.from_source() constructor"""
# pass it a path
policy = CryptPolicy.from_source(self.sample_config_1s_path)
self.assertEqual(policy.to_dict(), self.sample_config_1pd)
# pass it a string
policy = CryptPolicy.from_source(self.sample_config_1s)
self.assertEqual(policy.to_dict(), self.sample_config_1pd)
# pass it a dict (NOTE: make a copy to detect in-place modifications)
policy = CryptPolicy.from_source(self.sample_config_1pd.copy())
self.assertEqual(policy.to_dict(), self.sample_config_1pd)
# pass it existing policy
p2 = CryptPolicy.from_source(policy)
self.assertIs(policy, p2)
# pass it something wrong
self.assertRaises(TypeError, CryptPolicy.from_source, 1)
self.assertRaises(TypeError, CryptPolicy.from_source, [])
def test_04_from_sources(self):
"""test CryptPolicy.from_sources() constructor"""
# pass it empty list
self.assertRaises(ValueError, CryptPolicy.from_sources, [])
# pass it one-element list
policy = CryptPolicy.from_sources([self.sample_config_1s])
self.assertEqual(policy.to_dict(), self.sample_config_1pd)
# pass multiple sources
policy = CryptPolicy.from_sources(
[
self.sample_config_1s_path,
self.sample_config_2s,
self.sample_config_3pd,
])
self.assertEqual(policy.to_dict(), self.sample_config_123pd)
def test_05_replace(self):
"""test CryptPolicy.replace() constructor"""
p1 = CryptPolicy(**self.sample_config_1pd)
# check overlaying sample 2
p2 = p1.replace(**self.sample_config_2pd)
self.assertEqual(p2.to_dict(), self.sample_config_12pd)
# check repeating overlay makes no change
p2b = p2.replace(**self.sample_config_2pd)
self.assertEqual(p2b.to_dict(), self.sample_config_12pd)
# check overlaying sample 3
p3 = p2.replace(self.sample_config_3pd)
self.assertEqual(p3.to_dict(), self.sample_config_123pd)
def test_06_forbidden(self):
"""test CryptPolicy() forbidden kwds"""
# salt not allowed to be set
self.assertRaises(KeyError, CryptPolicy,
schemes=["des_crypt"],
des_crypt__salt="xx",
)
self.assertRaises(KeyError, CryptPolicy,
schemes=["des_crypt"],
all__salt="xx",
)
# schemes not allowed for category
self.assertRaises(KeyError, CryptPolicy,
schemes=["des_crypt"],
user__context__schemes=["md5_crypt"],
)
#===================================================================
# reading
#===================================================================
def test_10_has_schemes(self):
"""test has_schemes() method"""
p1 = CryptPolicy(**self.sample_config_1pd)
self.assertTrue(p1.has_schemes())
p3 = CryptPolicy(**self.sample_config_3pd)
self.assertTrue(not p3.has_schemes())
def test_11_iter_handlers(self):
"""test iter_handlers() method"""
p1 = CryptPolicy(**self.sample_config_1pd)
s = self.sample_config_1prd['schemes']
self.assertEqual(list(p1.iter_handlers()), s)
p3 = CryptPolicy(**self.sample_config_3pd)
self.assertEqual(list(p3.iter_handlers()), [])
def test_12_get_handler(self):
"""test get_handler() method"""
p1 = CryptPolicy(**self.sample_config_1pd)
# check by name
self.assertIs(p1.get_handler("bsdi_crypt"), hash.bsdi_crypt)
# check by missing name
self.assertIs(p1.get_handler("sha256_crypt"), None)
self.assertRaises(KeyError, p1.get_handler, "sha256_crypt", required=True)
# check default
self.assertIs(p1.get_handler(), hash.md5_crypt)
def test_13_get_options(self):
"""test get_options() method"""
p12 = CryptPolicy(**self.sample_config_12pd)
self.assertEqual(p12.get_options("bsdi_crypt"),dict(
# NOTE: not maintaining backwards compat for rendering to "10%"
vary_rounds = 0.1,
min_rounds = 29000,
max_rounds = 35000,
default_rounds = 31000,
))
self.assertEqual(p12.get_options("sha512_crypt"),dict(
# NOTE: not maintaining backwards compat for rendering to "10%"
vary_rounds = 0.1,
min_rounds = 45000,
max_rounds = 50000,
))
p4 = CryptPolicy.from_string(self.sample_config_4s)
self.assertEqual(p4.get_options("sha512_crypt"), dict(
# NOTE: not maintaining backwards compat for rendering to "10%"
vary_rounds=0.1,
max_rounds=20000,
))
self.assertEqual(p4.get_options("sha512_crypt", "user"), dict(
# NOTE: not maintaining backwards compat for rendering to "10%"
vary_rounds=0.1,
max_rounds=20000,
))
self.assertEqual(p4.get_options("sha512_crypt", "admin"), dict(
# NOTE: not maintaining backwards compat for rendering to "5%"
vary_rounds=0.05,
max_rounds=40000,
))
def test_14_handler_is_deprecated(self):
"""test handler_is_deprecated() method"""
pa = CryptPolicy(**self.sample_config_1pd)
pb = CryptPolicy(**self.sample_config_5pd)
self.assertFalse(pa.handler_is_deprecated("des_crypt"))
self.assertFalse(pa.handler_is_deprecated(hash.bsdi_crypt))
self.assertFalse(pa.handler_is_deprecated("sha512_crypt"))
self.assertTrue(pb.handler_is_deprecated("des_crypt"))
self.assertFalse(pb.handler_is_deprecated(hash.bsdi_crypt))
self.assertFalse(pb.handler_is_deprecated("sha512_crypt"))
# check categories as well
self.assertTrue(pb.handler_is_deprecated("des_crypt", "user"))
self.assertFalse(pb.handler_is_deprecated("bsdi_crypt", "user"))
self.assertTrue(pb.handler_is_deprecated("des_crypt", "admin"))
self.assertTrue(pb.handler_is_deprecated("bsdi_crypt", "admin"))
# check deprecation is overridden per category
pc = CryptPolicy(
schemes=["md5_crypt", "des_crypt"],
deprecated=["md5_crypt"],
user__context__deprecated=["des_crypt"],
)
self.assertTrue(pc.handler_is_deprecated("md5_crypt"))
self.assertFalse(pc.handler_is_deprecated("des_crypt"))
self.assertFalse(pc.handler_is_deprecated("md5_crypt", "user"))
self.assertTrue(pc.handler_is_deprecated("des_crypt", "user"))
def test_15_min_verify_time(self):
"""test get_min_verify_time() method"""
# silence deprecation warnings for min verify time
warnings.filterwarnings("ignore", category=DeprecationWarning)
pa = CryptPolicy()
self.assertEqual(pa.get_min_verify_time(), 0)
self.assertEqual(pa.get_min_verify_time('admin'), 0)
pb = pa.replace(min_verify_time=.1)
self.assertEqual(pb.get_min_verify_time(), 0)
self.assertEqual(pb.get_min_verify_time('admin'), 0)
#===================================================================
# serialization
#===================================================================
def test_20_iter_config(self):
"""test iter_config() method"""
p5 = CryptPolicy(**self.sample_config_5pd)
self.assertEqual(dict(p5.iter_config()), self.sample_config_5pd)
self.assertEqual(dict(p5.iter_config(resolve=True)), self.sample_config_5prd)
self.assertEqual(dict(p5.iter_config(ini=True)), self.sample_config_5pid)
def test_21_to_dict(self):
"""test to_dict() method"""
p5 = CryptPolicy(**self.sample_config_5pd)
self.assertEqual(p5.to_dict(), self.sample_config_5pd)
self.assertEqual(p5.to_dict(resolve=True), self.sample_config_5prd)
def test_22_to_string(self):
"""test to_string() method"""
pa = CryptPolicy(**self.sample_config_5pd)
s = pa.to_string() # NOTE: can't compare string directly, ordering etc may not match
pb = CryptPolicy.from_string(s)
self.assertEqual(pb.to_dict(), self.sample_config_5pd)
s = pa.to_string(encoding="latin-1")
self.assertIsInstance(s, bytes)
#===================================================================
#
#===================================================================
#=============================================================================
# CryptContext
#=============================================================================
class CryptContextTest(TestCase):
"""test CryptContext class"""
descriptionPrefix = "CryptContext"
def setUp(self):
TestCase.setUp(self)
warnings.filterwarnings("ignore",
r"CryptContext\(\)\.replace\(\) has been deprecated.*")
warnings.filterwarnings("ignore",
r"The CryptContext ``policy`` keyword has been deprecated.*")
warnings.filterwarnings("ignore", ".*(CryptPolicy|context\.policy).*(has|have) been deprecated.*")
warnings.filterwarnings("ignore",
r"the method.*hash_needs_update.*is deprecated")
#===================================================================
# constructor
#===================================================================
def test_00_constructor(self):
"""test constructor"""
# create crypt context using handlers
cc = CryptContext([hash.md5_crypt, hash.bsdi_crypt, hash.des_crypt])
c,b,a = cc.policy.iter_handlers()
self.assertIs(a, hash.des_crypt)
self.assertIs(b, hash.bsdi_crypt)
self.assertIs(c, hash.md5_crypt)
# create context using names
cc = CryptContext(["md5_crypt", "bsdi_crypt", "des_crypt"])
c,b,a = cc.policy.iter_handlers()
self.assertIs(a, hash.des_crypt)
self.assertIs(b, hash.bsdi_crypt)
self.assertIs(c, hash.md5_crypt)
# policy kwd
policy = cc.policy
cc = CryptContext(policy=policy)
self.assertEqual(cc.to_dict(), policy.to_dict())
cc = CryptContext(policy=policy, default="bsdi_crypt")
self.assertNotEqual(cc.to_dict(), policy.to_dict())
self.assertEqual(cc.to_dict(), dict(schemes=["md5_crypt","bsdi_crypt","des_crypt"],
default="bsdi_crypt"))
self.assertRaises(TypeError, setattr, cc, 'policy', None)
self.assertRaises(TypeError, CryptContext, policy='x')
def test_01_replace(self):
"""test replace()"""
cc = CryptContext(["md5_crypt", "bsdi_crypt", "des_crypt"])
self.assertIs(cc.policy.get_handler(), hash.md5_crypt)
cc2 = cc.replace()
self.assertIsNot(cc2, cc)
# NOTE: was not able to maintain backward compatibility with this...
##self.assertIs(cc2.policy, cc.policy)
cc3 = cc.replace(default="bsdi_crypt")
self.assertIsNot(cc3, cc)
# NOTE: was not able to maintain backward compatibility with this...
##self.assertIs(cc3.policy, cc.policy)
self.assertIs(cc3.policy.get_handler(), hash.bsdi_crypt)
def test_02_no_handlers(self):
"""test no handlers"""
# check constructor...
cc = CryptContext()
self.assertRaises(KeyError, cc.identify, 'hash', required=True)
self.assertRaises(KeyError, cc.hash, 'secret')
self.assertRaises(KeyError, cc.verify, 'secret', 'hash')
# check updating policy after the fact...
cc = CryptContext(['md5_crypt'])
p = CryptPolicy(schemes=[])
cc.policy = p
self.assertRaises(KeyError, cc.identify, 'hash', required=True)
self.assertRaises(KeyError, cc.hash, 'secret')
self.assertRaises(KeyError, cc.verify, 'secret', 'hash')
#===================================================================
# policy adaptation
#===================================================================
sample_policy_1 = dict(
schemes = [ "des_crypt", "md5_crypt", "phpass", "bsdi_crypt",
"sha256_crypt"],
deprecated = [ "des_crypt", ],
default = "sha256_crypt",
bsdi_crypt__max_rounds = 30,
bsdi_crypt__default_rounds = 25,
bsdi_crypt__vary_rounds = 0,
sha256_crypt__max_rounds = 3000,
sha256_crypt__min_rounds = 2000,
sha256_crypt__default_rounds = 3000,
phpass__ident = "H",
phpass__default_rounds = 7,
)
def test_12_hash_needs_update(self):
"""test hash_needs_update() method"""
cc = CryptContext(**self.sample_policy_1)
# check deprecated scheme
self.assertTrue(cc.hash_needs_update('9XXD4trGYeGJA'))
self.assertFalse(cc.hash_needs_update('$1$J8HC2RCr$HcmM.7NxB2weSvlw2FgzU0'))
# check min rounds
self.assertTrue(cc.hash_needs_update('$5$rounds=1999$jD81UCoo.zI.UETs$Y7qSTQ6mTiU9qZB4fRr43wRgQq4V.5AAf7F97Pzxey/'))
self.assertFalse(cc.hash_needs_update('$5$rounds=2000$228SSRje04cnNCaQ$YGV4RYu.5sNiBvorQDlO0WWQjyJVGKBcJXz3OtyQ2u8'))
# check max rounds
self.assertFalse(cc.hash_needs_update('$5$rounds=3000$fS9iazEwTKi7QPW4$VasgBC8FqlOvD7x2HhABaMXCTh9jwHclPA9j5YQdns.'))
self.assertTrue(cc.hash_needs_update('$5$rounds=3001$QlFHHifXvpFX4PLs$/0ekt7lSs/lOikSerQ0M/1porEHxYq7W/2hdFpxA3fA'))
#===================================================================
# border cases
#===================================================================
def test_30_nonstring_hash(self):
"""test non-string hash values cause error"""
warnings.filterwarnings("ignore", ".*needs_update.*'scheme' keyword is deprecated.*")
#
# test hash=None or some other non-string causes TypeError
# and that explicit-scheme code path behaves the same.
#
cc = CryptContext(["des_crypt"])
for hash, kwds in [
(None, {}),
# NOTE: 'scheme' kwd is deprecated...
(None, {"scheme": "des_crypt"}),
(1, {}),
((), {}),
]:
self.assertRaises(TypeError, cc.hash_needs_update, hash, **kwds)
cc2 = CryptContext(["mysql323"])
self.assertRaises(TypeError, cc2.hash_needs_update, None)
#===================================================================
# eoc
#===================================================================
#=============================================================================
# LazyCryptContext
#=============================================================================
class dummy_2(uh.StaticHandler):
name = "dummy_2"
class LazyCryptContextTest(TestCase):
descriptionPrefix = "LazyCryptContext"
def setUp(self):
TestCase.setUp(self)
# make sure this isn't registered before OR after
unload_handler_name("dummy_2")
self.addCleanup(unload_handler_name, "dummy_2")
# silence some warnings
warnings.filterwarnings("ignore",
r"CryptContext\(\)\.replace\(\) has been deprecated")
warnings.filterwarnings("ignore", ".*(CryptPolicy|context\.policy).*(has|have) been deprecated.*")
def test_kwd_constructor(self):
"""test plain kwds"""
self.assertFalse(has_crypt_handler("dummy_2"))
register_crypt_handler_path("dummy_2", "passlib.tests.test_context")
cc = LazyCryptContext(iter(["dummy_2", "des_crypt"]), deprecated=["des_crypt"])
self.assertFalse(has_crypt_handler("dummy_2", True))
self.assertTrue(cc.policy.handler_is_deprecated("des_crypt"))
self.assertEqual(cc.policy.schemes(), ["dummy_2", "des_crypt"])
self.assertTrue(has_crypt_handler("dummy_2", True))
def test_callable_constructor(self):
"""test create_policy() hook, returning CryptPolicy"""
self.assertFalse(has_crypt_handler("dummy_2"))
register_crypt_handler_path("dummy_2", "passlib.tests.test_context")
def create_policy(flag=False):
self.assertTrue(flag)
return CryptPolicy(schemes=iter(["dummy_2", "des_crypt"]), deprecated=["des_crypt"])
cc = LazyCryptContext(create_policy=create_policy, flag=True)
self.assertFalse(has_crypt_handler("dummy_2", True))
self.assertTrue(cc.policy.handler_is_deprecated("des_crypt"))
self.assertEqual(cc.policy.schemes(), ["dummy_2", "des_crypt"])
self.assertTrue(has_crypt_handler("dummy_2", True))
#=============================================================================
# eof
#=============================================================================

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"""passlib.tests -- unittests for passlib.crypto._md4"""
#=============================================================================
# imports
#=============================================================================
from __future__ import with_statement, division
# core
from binascii import hexlify
import hashlib
# site
# pkg
# module
from passlib.utils.compat import bascii_to_str, PY3, u
from passlib.crypto.digest import lookup_hash
from passlib.tests.utils import TestCase, skipUnless
# local
__all__ = [
"_Common_MD4_Test",
"MD4_Builtin_Test",
"MD4_SSL_Test",
]
#=============================================================================
# test pure-python MD4 implementation
#=============================================================================
class _Common_MD4_Test(TestCase):
"""common code for testing md4 backends"""
vectors = [
# input -> hex digest
# test vectors from http://www.faqs.org/rfcs/rfc1320.html - A.5
(b"", "31d6cfe0d16ae931b73c59d7e0c089c0"),
(b"a", "bde52cb31de33e46245e05fbdbd6fb24"),
(b"abc", "a448017aaf21d8525fc10ae87aa6729d"),
(b"message digest", "d9130a8164549fe818874806e1c7014b"),
(b"abcdefghijklmnopqrstuvwxyz", "d79e1c308aa5bbcdeea8ed63df412da9"),
(b"ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789", "043f8582f241db351ce627e153e7f0e4"),
(b"12345678901234567890123456789012345678901234567890123456789012345678901234567890", "e33b4ddc9c38f2199c3e7b164fcc0536"),
]
def get_md4_const(self):
"""
get md4 constructor --
overridden by subclasses to use alternate backends.
"""
return lookup_hash("md4").const
def test_attrs(self):
"""informational attributes"""
h = self.get_md4_const()()
self.assertEqual(h.name, "md4")
self.assertEqual(h.digest_size, 16)
self.assertEqual(h.block_size, 64)
def test_md4_update(self):
"""update() method"""
md4 = self.get_md4_const()
h = md4(b'')
self.assertEqual(h.hexdigest(), "31d6cfe0d16ae931b73c59d7e0c089c0")
h.update(b'a')
self.assertEqual(h.hexdigest(), "bde52cb31de33e46245e05fbdbd6fb24")
h.update(b'bcdefghijklmnopqrstuvwxyz')
self.assertEqual(h.hexdigest(), "d79e1c308aa5bbcdeea8ed63df412da9")
if PY3:
# reject unicode, hash should return digest of b''
h = md4()
self.assertRaises(TypeError, h.update, u('a'))
self.assertEqual(h.hexdigest(), "31d6cfe0d16ae931b73c59d7e0c089c0")
else:
# coerce unicode to ascii, hash should return digest of b'a'
h = md4()
h.update(u('a'))
self.assertEqual(h.hexdigest(), "bde52cb31de33e46245e05fbdbd6fb24")
def test_md4_hexdigest(self):
"""hexdigest() method"""
md4 = self.get_md4_const()
for input, hex in self.vectors:
out = md4(input).hexdigest()
self.assertEqual(out, hex)
def test_md4_digest(self):
"""digest() method"""
md4 = self.get_md4_const()
for input, hex in self.vectors:
out = bascii_to_str(hexlify(md4(input).digest()))
self.assertEqual(out, hex)
def test_md4_copy(self):
"""copy() method"""
md4 = self.get_md4_const()
h = md4(b'abc')
h2 = h.copy()
h2.update(b'def')
self.assertEqual(h2.hexdigest(), '804e7f1c2586e50b49ac65db5b645131')
h.update(b'ghi')
self.assertEqual(h.hexdigest(), 'c5225580bfe176f6deeee33dee98732c')
#------------------------------------------------------------------------
# create subclasses to test various backends
#------------------------------------------------------------------------
def has_native_md4(): # pragma: no cover -- runtime detection
"""
check if hashlib natively supports md4.
"""
try:
hashlib.new("md4")
return True
except ValueError:
# not supported - ssl probably missing (e.g. ironpython)
return False
@skipUnless(has_native_md4(), "hashlib lacks ssl/md4 support")
class MD4_SSL_Test(_Common_MD4_Test):
descriptionPrefix = "hashlib.new('md4')"
# NOTE: we trust ssl got md4 implementation right,
# this is more to test our test is correct :)
def setUp(self):
super(MD4_SSL_Test, self).setUp()
# make sure we're using right constructor.
self.assertEqual(self.get_md4_const().__module__, "hashlib")
class MD4_Builtin_Test(_Common_MD4_Test):
descriptionPrefix = "passlib.crypto._md4.md4()"
def setUp(self):
super(MD4_Builtin_Test, self).setUp()
if has_native_md4():
# Temporarily make lookup_hash() use builtin pure-python implementation,
# by monkeypatching hashlib.new() to ensure we fall back to passlib's md4 class.
orig = hashlib.new
def wrapper(name, *args):
if name == "md4":
raise ValueError("md4 disabled for testing")
return orig(name, *args)
self.patchAttr(hashlib, "new", wrapper)
# flush cache before & after test, since we're mucking with it.
lookup_hash.clear_cache()
self.addCleanup(lookup_hash.clear_cache)
# make sure we're using right constructor.
self.assertEqual(self.get_md4_const().__module__, "passlib.crypto._md4")
#=============================================================================
# eof
#=============================================================================

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"""passlib.tests -- unittests for passlib.crypto.des"""
#=============================================================================
# imports
#=============================================================================
from __future__ import with_statement, division
# core
from functools import partial
# site
# pkg
# module
from passlib.utils import getrandbytes
from passlib.tests.utils import TestCase
#=============================================================================
# test DES routines
#=============================================================================
class DesTest(TestCase):
descriptionPrefix = "passlib.crypto.des"
# test vectors taken from http://www.skepticfiles.org/faq/testdes.htm
des_test_vectors = [
# key, plaintext, ciphertext
(0x0000000000000000, 0x0000000000000000, 0x8CA64DE9C1B123A7),
(0xFFFFFFFFFFFFFFFF, 0xFFFFFFFFFFFFFFFF, 0x7359B2163E4EDC58),
(0x3000000000000000, 0x1000000000000001, 0x958E6E627A05557B),
(0x1111111111111111, 0x1111111111111111, 0xF40379AB9E0EC533),
(0x0123456789ABCDEF, 0x1111111111111111, 0x17668DFC7292532D),
(0x1111111111111111, 0x0123456789ABCDEF, 0x8A5AE1F81AB8F2DD),
(0x0000000000000000, 0x0000000000000000, 0x8CA64DE9C1B123A7),
(0xFEDCBA9876543210, 0x0123456789ABCDEF, 0xED39D950FA74BCC4),
(0x7CA110454A1A6E57, 0x01A1D6D039776742, 0x690F5B0D9A26939B),
(0x0131D9619DC1376E, 0x5CD54CA83DEF57DA, 0x7A389D10354BD271),
(0x07A1133E4A0B2686, 0x0248D43806F67172, 0x868EBB51CAB4599A),
(0x3849674C2602319E, 0x51454B582DDF440A, 0x7178876E01F19B2A),
(0x04B915BA43FEB5B6, 0x42FD443059577FA2, 0xAF37FB421F8C4095),
(0x0113B970FD34F2CE, 0x059B5E0851CF143A, 0x86A560F10EC6D85B),
(0x0170F175468FB5E6, 0x0756D8E0774761D2, 0x0CD3DA020021DC09),
(0x43297FAD38E373FE, 0x762514B829BF486A, 0xEA676B2CB7DB2B7A),
(0x07A7137045DA2A16, 0x3BDD119049372802, 0xDFD64A815CAF1A0F),
(0x04689104C2FD3B2F, 0x26955F6835AF609A, 0x5C513C9C4886C088),
(0x37D06BB516CB7546, 0x164D5E404F275232, 0x0A2AEEAE3FF4AB77),
(0x1F08260D1AC2465E, 0x6B056E18759F5CCA, 0xEF1BF03E5DFA575A),
(0x584023641ABA6176, 0x004BD6EF09176062, 0x88BF0DB6D70DEE56),
(0x025816164629B007, 0x480D39006EE762F2, 0xA1F9915541020B56),
(0x49793EBC79B3258F, 0x437540C8698F3CFA, 0x6FBF1CAFCFFD0556),
(0x4FB05E1515AB73A7, 0x072D43A077075292, 0x2F22E49BAB7CA1AC),
(0x49E95D6D4CA229BF, 0x02FE55778117F12A, 0x5A6B612CC26CCE4A),
(0x018310DC409B26D6, 0x1D9D5C5018F728C2, 0x5F4C038ED12B2E41),
(0x1C587F1C13924FEF, 0x305532286D6F295A, 0x63FAC0D034D9F793),
(0x0101010101010101, 0x0123456789ABCDEF, 0x617B3A0CE8F07100),
(0x1F1F1F1F0E0E0E0E, 0x0123456789ABCDEF, 0xDB958605F8C8C606),
(0xE0FEE0FEF1FEF1FE, 0x0123456789ABCDEF, 0xEDBFD1C66C29CCC7),
(0x0000000000000000, 0xFFFFFFFFFFFFFFFF, 0x355550B2150E2451),
(0xFFFFFFFFFFFFFFFF, 0x0000000000000000, 0xCAAAAF4DEAF1DBAE),
(0x0123456789ABCDEF, 0x0000000000000000, 0xD5D44FF720683D0D),
(0xFEDCBA9876543210, 0xFFFFFFFFFFFFFFFF, 0x2A2BB008DF97C2F2),
]
def test_01_expand(self):
"""expand_des_key()"""
from passlib.crypto.des import expand_des_key, shrink_des_key, \
_KDATA_MASK, INT_56_MASK
# make sure test vectors are preserved (sans parity bits)
# uses ints, bytes are tested under # 02
for key1, _, _ in self.des_test_vectors:
key2 = shrink_des_key(key1)
key3 = expand_des_key(key2)
# NOTE: this assumes expand_des_key() sets parity bits to 0
self.assertEqual(key3, key1 & _KDATA_MASK)
# type checks
self.assertRaises(TypeError, expand_des_key, 1.0)
# too large
self.assertRaises(ValueError, expand_des_key, INT_56_MASK+1)
self.assertRaises(ValueError, expand_des_key, b"\x00"*8)
# too small
self.assertRaises(ValueError, expand_des_key, -1)
self.assertRaises(ValueError, expand_des_key, b"\x00"*6)
def test_02_shrink(self):
"""shrink_des_key()"""
from passlib.crypto.des import expand_des_key, shrink_des_key, INT_64_MASK
rng = self.getRandom()
# make sure reverse works for some random keys
# uses bytes, ints are tested under # 01
for i in range(20):
key1 = getrandbytes(rng, 7)
key2 = expand_des_key(key1)
key3 = shrink_des_key(key2)
self.assertEqual(key3, key1)
# type checks
self.assertRaises(TypeError, shrink_des_key, 1.0)
# too large
self.assertRaises(ValueError, shrink_des_key, INT_64_MASK+1)
self.assertRaises(ValueError, shrink_des_key, b"\x00"*9)
# too small
self.assertRaises(ValueError, shrink_des_key, -1)
self.assertRaises(ValueError, shrink_des_key, b"\x00"*7)
def _random_parity(self, key):
"""randomize parity bits"""
from passlib.crypto.des import _KDATA_MASK, _KPARITY_MASK, INT_64_MASK
rng = self.getRandom()
return (key & _KDATA_MASK) | (rng.randint(0,INT_64_MASK) & _KPARITY_MASK)
def test_03_encrypt_bytes(self):
"""des_encrypt_block()"""
from passlib.crypto.des import (des_encrypt_block, shrink_des_key,
_pack64, _unpack64)
# run through test vectors
for key, plaintext, correct in self.des_test_vectors:
# convert to bytes
key = _pack64(key)
plaintext = _pack64(plaintext)
correct = _pack64(correct)
# test 64-bit key
result = des_encrypt_block(key, plaintext)
self.assertEqual(result, correct, "key=%r plaintext=%r:" %
(key, plaintext))
# test 56-bit version
key2 = shrink_des_key(key)
result = des_encrypt_block(key2, plaintext)
self.assertEqual(result, correct, "key=%r shrink(key)=%r plaintext=%r:" %
(key, key2, plaintext))
# test with random parity bits
for _ in range(20):
key3 = _pack64(self._random_parity(_unpack64(key)))
result = des_encrypt_block(key3, plaintext)
self.assertEqual(result, correct, "key=%r rndparity(key)=%r plaintext=%r:" %
(key, key3, plaintext))
# check invalid keys
stub = b'\x00' * 8
self.assertRaises(TypeError, des_encrypt_block, 0, stub)
self.assertRaises(ValueError, des_encrypt_block, b'\x00'*6, stub)
# check invalid input
self.assertRaises(TypeError, des_encrypt_block, stub, 0)
self.assertRaises(ValueError, des_encrypt_block, stub, b'\x00'*7)
# check invalid salts
self.assertRaises(ValueError, des_encrypt_block, stub, stub, salt=-1)
self.assertRaises(ValueError, des_encrypt_block, stub, stub, salt=1<<24)
# check invalid rounds
self.assertRaises(ValueError, des_encrypt_block, stub, stub, 0, rounds=0)
def test_04_encrypt_ints(self):
"""des_encrypt_int_block()"""
from passlib.crypto.des import des_encrypt_int_block
# run through test vectors
for key, plaintext, correct in self.des_test_vectors:
# test 64-bit key
result = des_encrypt_int_block(key, plaintext)
self.assertEqual(result, correct, "key=%r plaintext=%r:" %
(key, plaintext))
# test with random parity bits
for _ in range(20):
key3 = self._random_parity(key)
result = des_encrypt_int_block(key3, plaintext)
self.assertEqual(result, correct, "key=%r rndparity(key)=%r plaintext=%r:" %
(key, key3, plaintext))
# check invalid keys
self.assertRaises(TypeError, des_encrypt_int_block, b'\x00', 0)
self.assertRaises(ValueError, des_encrypt_int_block, -1, 0)
# check invalid input
self.assertRaises(TypeError, des_encrypt_int_block, 0, b'\x00')
self.assertRaises(ValueError, des_encrypt_int_block, 0, -1)
# check invalid salts
self.assertRaises(ValueError, des_encrypt_int_block, 0, 0, salt=-1)
self.assertRaises(ValueError, des_encrypt_int_block, 0, 0, salt=1<<24)
# check invalid rounds
self.assertRaises(ValueError, des_encrypt_int_block, 0, 0, 0, rounds=0)
#=============================================================================
# eof
#=============================================================================

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"""tests for passlib.utils.(des|pbkdf2|md4)"""
#=============================================================================
# imports
#=============================================================================
from __future__ import with_statement, division
# core
from binascii import hexlify
import hashlib
import warnings
# site
# pkg
# module
from passlib.exc import UnknownHashError
from passlib.utils.compat import PY3, u, JYTHON
from passlib.tests.utils import TestCase, TEST_MODE, skipUnless, hb
#=============================================================================
# test assorted crypto helpers
#=============================================================================
class HashInfoTest(TestCase):
"""test various crypto functions"""
descriptionPrefix = "passlib.crypto.digest"
#: list of formats norm_hash_name() should support
norm_hash_formats = ["hashlib", "iana"]
#: test cases for norm_hash_name()
#: each row contains (iana name, hashlib name, ... 0+ unnormalized names)
norm_hash_samples = [
# real hashes
("md5", "md5", "SCRAM-MD5-PLUS", "MD-5"),
("sha1", "sha-1", "SCRAM-SHA-1", "SHA1"),
("sha256", "sha-256", "SHA_256", "sha2-256"),
("ripemd160", "ripemd-160", "SCRAM-RIPEMD-160", "RIPEmd160",
# NOTE: there was an older "RIPEMD" & "RIPEMD-128", but python treates "RIPEMD"
# as alias for "RIPEMD-160"
"ripemd", "SCRAM-RIPEMD"),
# fake hashes (to check if fallback normalization behaves sanely)
("sha4_256", "sha4-256", "SHA4-256", "SHA-4-256"),
("test128", "test-128", "TEST128"),
("test2", "test2", "TEST-2"),
("test3_128", "test3-128", "TEST-3-128"),
]
def test_norm_hash_name(self):
"""norm_hash_name()"""
from itertools import chain
from passlib.crypto.digest import norm_hash_name, _known_hash_names
# snapshot warning state, ignore unknown hash warnings
ctx = warnings.catch_warnings()
ctx.__enter__()
self.addCleanup(ctx.__exit__)
warnings.filterwarnings("ignore", '.*unknown hash')
warnings.filterwarnings("ignore", '.*unsupported hash')
# test string types
self.assertEqual(norm_hash_name(u("MD4")), "md4")
self.assertEqual(norm_hash_name(b"MD4"), "md4")
self.assertRaises(TypeError, norm_hash_name, None)
# test selected results
for row in chain(_known_hash_names, self.norm_hash_samples):
for idx, format in enumerate(self.norm_hash_formats):
correct = row[idx]
for value in row:
result = norm_hash_name(value, format)
self.assertEqual(result, correct,
"name=%r, format=%r:" % (value,
format))
def test_lookup_hash_ctor(self):
"""lookup_hash() -- constructor"""
from passlib.crypto.digest import lookup_hash
# invalid/unknown names should be rejected
self.assertRaises(ValueError, lookup_hash, "new")
self.assertRaises(ValueError, lookup_hash, "__name__")
self.assertRaises(ValueError, lookup_hash, "sha4")
# 1. should return hashlib builtin if found
self.assertEqual(lookup_hash("md5"), (hashlib.md5, 16, 64))
# 2. should return wrapper around hashlib.new() if found
try:
hashlib.new("sha")
has_sha = True
except ValueError:
has_sha = False
if has_sha:
record = lookup_hash("sha")
const = record[0]
self.assertEqual(record, (const, 20, 64))
self.assertEqual(hexlify(const(b"abc").digest()),
b"0164b8a914cd2a5e74c4f7ff082c4d97f1edf880")
else:
self.assertRaises(ValueError, lookup_hash, "sha")
# 3. should fall back to builtin md4
try:
hashlib.new("md4")
has_md4 = True
except ValueError:
has_md4 = False
record = lookup_hash("md4")
const = record[0]
if not has_md4:
from passlib.crypto._md4 import md4
self.assertIs(const, md4)
self.assertEqual(record, (const, 16, 64))
self.assertEqual(hexlify(const(b"abc").digest()),
b"a448017aaf21d8525fc10ae87aa6729d")
# should memoize records
self.assertIs(lookup_hash("md5"), lookup_hash("md5"))
def test_lookup_hash_w_unknown_name(self):
"""lookup_hash() -- unknown hash name"""
from passlib.crypto.digest import lookup_hash
# unknown names should be rejected by default
self.assertRaises(UnknownHashError, lookup_hash, "xxx256")
# required=False should return stub record instead
info = lookup_hash("xxx256", required=False)
self.assertFalse(info.supported)
self.assertRaisesRegex(UnknownHashError, "unknown hash: 'xxx256'", info.const)
self.assertEqual(info.name, "xxx256")
self.assertEqual(info.digest_size, None)
self.assertEqual(info.block_size, None)
# should cache stub records
info2 = lookup_hash("xxx256", required=False)
self.assertIs(info2, info)
def test_mock_fips_mode(self):
"""
lookup_hash() -- test set_mock_fips_mode()
"""
from passlib.crypto.digest import lookup_hash, _set_mock_fips_mode
# check if md5 is available so we can test mock helper
if not lookup_hash("md5", required=False).supported:
raise self.skipTest("md5 not supported")
# enable monkeypatch to mock up fips mode
_set_mock_fips_mode()
self.addCleanup(_set_mock_fips_mode, False)
pat = "'md5' hash disabled for fips"
self.assertRaisesRegex(UnknownHashError, pat, lookup_hash, "md5")
info = lookup_hash("md5", required=False)
self.assertRegex(info.error_text, pat)
self.assertRaisesRegex(UnknownHashError, pat, info.const)
# should use hardcoded fallback info
self.assertEqual(info.digest_size, 16)
self.assertEqual(info.block_size, 64)
def test_lookup_hash_metadata(self):
"""lookup_hash() -- metadata"""
from passlib.crypto.digest import lookup_hash
# quick test of metadata using known reference - sha256
info = lookup_hash("sha256")
self.assertEqual(info.name, "sha256")
self.assertEqual(info.iana_name, "sha-256")
self.assertEqual(info.block_size, 64)
self.assertEqual(info.digest_size, 32)
self.assertIs(lookup_hash("SHA2-256"), info)
# quick test of metadata using known reference - md5
info = lookup_hash("md5")
self.assertEqual(info.name, "md5")
self.assertEqual(info.iana_name, "md5")
self.assertEqual(info.block_size, 64)
self.assertEqual(info.digest_size, 16)
def test_lookup_hash_alt_types(self):
"""lookup_hash() -- alternate types"""
from passlib.crypto.digest import lookup_hash
info = lookup_hash("sha256")
self.assertIs(lookup_hash(info), info)
self.assertIs(lookup_hash(info.const), info)
self.assertRaises(TypeError, lookup_hash, 123)
# TODO: write full test of compile_hmac() -- currently relying on pbkdf2_hmac() tests
#=============================================================================
# test PBKDF1 support
#=============================================================================
class Pbkdf1_Test(TestCase):
"""test kdf helpers"""
descriptionPrefix = "passlib.crypto.digest.pbkdf1"
pbkdf1_tests = [
# (password, salt, rounds, keylen, hash, result)
#
# from http://www.di-mgt.com.au/cryptoKDFs.html
#
(b'password', hb('78578E5A5D63CB06'), 1000, 16, 'sha1', hb('dc19847e05c64d2faf10ebfb4a3d2a20')),
#
# custom
#
(b'password', b'salt', 1000, 0, 'md5', b''),
(b'password', b'salt', 1000, 1, 'md5', hb('84')),
(b'password', b'salt', 1000, 8, 'md5', hb('8475c6a8531a5d27')),
(b'password', b'salt', 1000, 16, 'md5', hb('8475c6a8531a5d27e386cd496457812c')),
(b'password', b'salt', 1000, None, 'md5', hb('8475c6a8531a5d27e386cd496457812c')),
(b'password', b'salt', 1000, None, 'sha1', hb('4a8fd48e426ed081b535be5769892fa396293efb')),
]
if not JYTHON: # FIXME: find out why not jython, or reenable this.
pbkdf1_tests.append(
(b'password', b'salt', 1000, None, 'md4', hb('f7f2e91100a8f96190f2dd177cb26453'))
)
def test_known(self):
"""test reference vectors"""
from passlib.crypto.digest import pbkdf1
for secret, salt, rounds, keylen, digest, correct in self.pbkdf1_tests:
result = pbkdf1(digest, secret, salt, rounds, keylen)
self.assertEqual(result, correct)
def test_border(self):
"""test border cases"""
from passlib.crypto.digest import pbkdf1
def helper(secret=b'secret', salt=b'salt', rounds=1, keylen=1, hash='md5'):
return pbkdf1(hash, secret, salt, rounds, keylen)
helper()
# salt/secret wrong type
self.assertRaises(TypeError, helper, secret=1)
self.assertRaises(TypeError, helper, salt=1)
# non-existent hashes
self.assertRaises(ValueError, helper, hash='missing')
# rounds < 1 and wrong type
self.assertRaises(ValueError, helper, rounds=0)
self.assertRaises(TypeError, helper, rounds='1')
# keylen < 0, keylen > block_size, and wrong type
self.assertRaises(ValueError, helper, keylen=-1)
self.assertRaises(ValueError, helper, keylen=17, hash='md5')
self.assertRaises(TypeError, helper, keylen='1')
#=============================================================================
# test PBKDF2-HMAC support
#=============================================================================
# import the test subject
from passlib.crypto.digest import pbkdf2_hmac, PBKDF2_BACKENDS
# NOTE: relying on tox to verify this works under all the various backends.
class Pbkdf2Test(TestCase):
"""test pbkdf2() support"""
descriptionPrefix = "passlib.crypto.digest.pbkdf2_hmac() <backends: %s>" % ", ".join(PBKDF2_BACKENDS)
pbkdf2_test_vectors = [
# (result, secret, salt, rounds, keylen, digest="sha1")
#
# from rfc 3962
#
# test case 1 / 128 bit
(
hb("cdedb5281bb2f801565a1122b2563515"),
b"password", b"ATHENA.MIT.EDUraeburn", 1, 16
),
# test case 2 / 128 bit
(
hb("01dbee7f4a9e243e988b62c73cda935d"),
b"password", b"ATHENA.MIT.EDUraeburn", 2, 16
),
# test case 2 / 256 bit
(
hb("01dbee7f4a9e243e988b62c73cda935da05378b93244ec8f48a99e61ad799d86"),
b"password", b"ATHENA.MIT.EDUraeburn", 2, 32
),
# test case 3 / 256 bit
(
hb("5c08eb61fdf71e4e4ec3cf6ba1f5512ba7e52ddbc5e5142f708a31e2e62b1e13"),
b"password", b"ATHENA.MIT.EDUraeburn", 1200, 32
),
# test case 4 / 256 bit
(
hb("d1daa78615f287e6a1c8b120d7062a493f98d203e6be49a6adf4fa574b6e64ee"),
b"password", b'\x12\x34\x56\x78\x78\x56\x34\x12', 5, 32
),
# test case 5 / 256 bit
(
hb("139c30c0966bc32ba55fdbf212530ac9c5ec59f1a452f5cc9ad940fea0598ed1"),
b"X"*64, b"pass phrase equals block size", 1200, 32
),
# test case 6 / 256 bit
(
hb("9ccad6d468770cd51b10e6a68721be611a8b4d282601db3b36be9246915ec82a"),
b"X"*65, b"pass phrase exceeds block size", 1200, 32
),
#
# from rfc 6070
#
(
hb("0c60c80f961f0e71f3a9b524af6012062fe037a6"),
b"password", b"salt", 1, 20,
),
(
hb("ea6c014dc72d6f8ccd1ed92ace1d41f0d8de8957"),
b"password", b"salt", 2, 20,
),
(
hb("4b007901b765489abead49d926f721d065a429c1"),
b"password", b"salt", 4096, 20,
),
# just runs too long - could enable if ALL option is set
##(
##
## hb("eefe3d61cd4da4e4e9945b3d6ba2158c2634e984"),
## "password", "salt", 16777216, 20,
##),
(
hb("3d2eec4fe41c849b80c8d83662c0e44a8b291a964cf2f07038"),
b"passwordPASSWORDpassword",
b"saltSALTsaltSALTsaltSALTsaltSALTsalt",
4096, 25,
),
(
hb("56fa6aa75548099dcc37d7f03425e0c3"),
b"pass\00word", b"sa\00lt", 4096, 16,
),
#
# from example in http://grub.enbug.org/Authentication
#
(
hb("887CFF169EA8335235D8004242AA7D6187A41E3187DF0CE14E256D85ED"
"97A97357AAA8FF0A3871AB9EEFF458392F462F495487387F685B7472FC"
"6C29E293F0A0"),
b"hello",
hb("9290F727ED06C38BA4549EF7DE25CF5642659211B7FC076F2D28FEFD71"
"784BB8D8F6FB244A8CC5C06240631B97008565A120764C0EE9C2CB0073"
"994D79080136"),
10000, 64, "sha512"
),
#
# test vectors from fastpbkdf2 <https://github.com/ctz/fastpbkdf2/blob/master/testdata.py>
#
(
hb('55ac046e56e3089fec1691c22544b605f94185216dde0465e68b9d57c20dacbc'
'49ca9cccf179b645991664b39d77ef317c71b845b1e30bd509112041d3a19783'),
b'passwd', b'salt', 1, 64, 'sha256',
),
(
hb('4ddcd8f60b98be21830cee5ef22701f9641a4418d04c0414aeff08876b34ab56'
'a1d425a1225833549adb841b51c9b3176a272bdebba1d078478f62b397f33c8d'),
b'Password', b'NaCl', 80000, 64, 'sha256',
),
(
hb('120fb6cffcf8b32c43e7225256c4f837a86548c92ccc35480805987cb70be17b'),
b'password', b'salt', 1, 32, 'sha256',
),
(
hb('ae4d0c95af6b46d32d0adff928f06dd02a303f8ef3c251dfd6e2d85a95474c43'),
b'password', b'salt', 2, 32, 'sha256',
),
(
hb('c5e478d59288c841aa530db6845c4c8d962893a001ce4e11a4963873aa98134a'),
b'password', b'salt', 4096, 32, 'sha256',
),
(
hb('348c89dbcbd32b2f32d814b8116e84cf2b17347ebc1800181c4e2a1fb8dd53e1c'
'635518c7dac47e9'),
b'passwordPASSWORDpassword', b'saltSALTsaltSALTsaltSALTsaltSALTsalt',
4096, 40, 'sha256',
),
(
hb('9e83f279c040f2a11aa4a02b24c418f2d3cb39560c9627fa4f47e3bcc2897c3d'),
b'', b'salt', 1024, 32, 'sha256',
),
(
hb('ea5808411eb0c7e830deab55096cee582761e22a9bc034e3ece925225b07bf46'),
b'password', b'', 1024, 32, 'sha256',
),
(
hb('89b69d0516f829893c696226650a8687'),
b'pass\x00word', b'sa\x00lt', 4096, 16, 'sha256',
),
(
hb('867f70cf1ade02cff3752599a3a53dc4af34c7a669815ae5d513554e1c8cf252'),
b'password', b'salt', 1, 32, 'sha512',
),
(
hb('e1d9c16aa681708a45f5c7c4e215ceb66e011a2e9f0040713f18aefdb866d53c'),
b'password', b'salt', 2, 32, 'sha512',
),
(
hb('d197b1b33db0143e018b12f3d1d1479e6cdebdcc97c5c0f87f6902e072f457b5'),
b'password', b'salt', 4096, 32, 'sha512',
),
(
hb('6e23f27638084b0f7ea1734e0d9841f55dd29ea60a834466f3396bac801fac1eeb'
'63802f03a0b4acd7603e3699c8b74437be83ff01ad7f55dac1ef60f4d56480c35e'
'e68fd52c6936'),
b'passwordPASSWORDpassword', b'saltSALTsaltSALTsaltSALTsaltSALTsalt',
1, 72, 'sha512',
),
(
hb('0c60c80f961f0e71f3a9b524af6012062fe037a6'),
b'password', b'salt', 1, 20, 'sha1',
),
#
# custom tests
#
(
hb('e248fb6b13365146f8ac6307cc222812'),
b"secret", b"salt", 10, 16, "sha1",
),
(
hb('e248fb6b13365146f8ac6307cc2228127872da6d'),
b"secret", b"salt", 10, None, "sha1",
),
(
hb('b1d5485772e6f76d5ebdc11b38d3eff0a5b2bd50dc11f937e86ecacd0cd40d1b'
'9113e0734e3b76a3'),
b"secret", b"salt", 62, 40, "md5",
),
(
hb('ea014cc01f78d3883cac364bb5d054e2be238fb0b6081795a9d84512126e3129'
'062104d2183464c4'),
b"secret", b"salt", 62, 40, "md4",
),
]
def test_known(self):
"""test reference vectors"""
for row in self.pbkdf2_test_vectors:
correct, secret, salt, rounds, keylen = row[:5]
digest = row[5] if len(row) == 6 else "sha1"
result = pbkdf2_hmac(digest, secret, salt, rounds, keylen)
self.assertEqual(result, correct)
def test_backends(self):
"""verify expected backends are present"""
from passlib.crypto.digest import PBKDF2_BACKENDS
# check for fastpbkdf2
try:
import fastpbkdf2
has_fastpbkdf2 = True
except ImportError:
has_fastpbkdf2 = False
self.assertEqual("fastpbkdf2" in PBKDF2_BACKENDS, has_fastpbkdf2)
# check for hashlib
try:
from hashlib import pbkdf2_hmac
has_hashlib_ssl = pbkdf2_hmac.__module__ != "hashlib"
except ImportError:
has_hashlib_ssl = False
self.assertEqual("hashlib-ssl" in PBKDF2_BACKENDS, has_hashlib_ssl)
# check for appropriate builtin
from passlib.utils.compat import PY3
if PY3:
self.assertIn("builtin-from-bytes", PBKDF2_BACKENDS)
else:
# XXX: only true as long as this is preferred over hexlify
self.assertIn("builtin-unpack", PBKDF2_BACKENDS)
def test_border(self):
"""test border cases"""
def helper(secret=b'password', salt=b'salt', rounds=1, keylen=None, digest="sha1"):
return pbkdf2_hmac(digest, secret, salt, rounds, keylen)
helper()
# invalid rounds
self.assertRaises(ValueError, helper, rounds=-1)
self.assertRaises(ValueError, helper, rounds=0)
self.assertRaises(TypeError, helper, rounds='x')
# invalid keylen
helper(keylen=1)
self.assertRaises(ValueError, helper, keylen=-1)
self.assertRaises(ValueError, helper, keylen=0)
# NOTE: hashlib actually throws error for keylen>=MAX_SINT32,
# but pbkdf2 forbids anything > MAX_UINT32 * digest_size
self.assertRaises(OverflowError, helper, keylen=20*(2**32-1)+1)
self.assertRaises(TypeError, helper, keylen='x')
# invalid secret/salt type
self.assertRaises(TypeError, helper, salt=5)
self.assertRaises(TypeError, helper, secret=5)
# invalid hash
self.assertRaises(ValueError, helper, digest='foo')
self.assertRaises(TypeError, helper, digest=5)
def test_default_keylen(self):
"""test keylen==None"""
def helper(secret=b'password', salt=b'salt', rounds=1, keylen=None, digest="sha1"):
return pbkdf2_hmac(digest, secret, salt, rounds, keylen)
self.assertEqual(len(helper(digest='sha1')), 20)
self.assertEqual(len(helper(digest='sha256')), 32)
#=============================================================================
# eof
#=============================================================================