Implement basic crypto
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.gitignore
vendored
1
.gitignore
vendored
@ -4,3 +4,4 @@
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/venv
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__javascript__
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__pycache__
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refs
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@ -28,11 +28,11 @@ for f in eos.js_tests; do
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perl -0777 -pi -e "s/__pragma__ \('.*?'\)//gs" eos/__javascript__/$f.js
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# Transcrypt by default suppresses stack traces for some reason??
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perl -0777 -pi -e "s/__except0__.__cause__ = null;//g" eos/__javascript__/$f.js
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perl -0777 -pi -e 's/__except0__.__cause__ = null;//g' eos/__javascript__/$f.js
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# Disable handling of special attributes
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perl -0777 -pi -e "s/var __specialattrib__ = function \(attrib\) \{/var __specialattrib__ = function (attrib) { return false;/g" eos/__javascript__/$f.js
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perl -0777 -pi -e 's/var __specialattrib__ = function \(attrib\) \{/var __specialattrib__ = function (attrib) { return false;/g' eos/__javascript__/$f.js
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# Transcrypt bug
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perl -0777 -pi -e "s/EosObject.EosObject/EosObject/g" eos/__javascript__/$f.js
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perl -0777 -pi -e 's/property.call \((.*?), \g1.\g1.__impl__(.*?)\)/property.call ($1, $1.__impl__$2)/g' eos/__javascript__/$f.js
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done
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@ -16,6 +16,8 @@
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from eos.core.objects import EosObject
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import random
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# Load jsbn{,2}.js
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lib = __pragma__('js', '''
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(function() {{
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@ -34,6 +36,8 @@ lib = __pragma__('js', '''
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class BigInt(EosObject):
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def __init__(self, a, b=10):
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super().__init__()
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if isinstance(a, str):
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self.impl = lib.nbi()
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self.impl.fromString(a, b)
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@ -93,6 +97,41 @@ class BigInt(EosObject):
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if not isinstance(modulo, BigInt):
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modulo = BigInt(modulo)
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return BigInt(self.impl.modPow(other.impl, modulo.impl))
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def serialise(self):
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return str(self)
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@classmethod
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def deserialise(cls, value):
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return cls(value)
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# Returns a random BigInt from lower_bound to upper_bound, both inclusive
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@classmethod
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def noncrypto_random(cls, lower_bound, upper_bound):
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if not isinstance(lower_bound, cls):
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lower_bound = cls(lower_bound)
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if not isinstance(upper_bound, cls):
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upper_bound = cls(upper_bound)
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bound_range = upper_bound - lower_bound + 1
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bound_range_bits = bound_range.impl.bitLength()
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# Generate a sufficiently large number; work 32 bits at a time
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current_range = 0 # bits
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max_int = 2 ** 32 - 1
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big_number = cls(0)
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while current_range < bound_range_bits:
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random_number = cls(random.randint(0, max_int))
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big_number = (big_number << 32) | random_number
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current_range = current_range + 32
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# Since this is the non-crypto version, just do it modulo
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return lower_bound + (big_number % bound_range)
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@classmethod
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def crypto_random(cls, lower_bound, upper_bound):
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# TODO
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return cls.noncrypto_random(lower_bound, upper_bound)
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# TNYI: No native pow() support
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def pow(a, b, c=None):
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@ -16,8 +16,13 @@
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from eos.core.objects import EosObject
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import random
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system_random = random.SystemRandom()
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class BigInt(EosObject):
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def __init__(self, a, b=10):
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super().__init__()
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self.impl = int(a, b) if isinstance(a, str) else int(a)
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def __pow__(self, other, modulo=None):
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@ -28,12 +33,24 @@ class BigInt(EosObject):
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if not isinstance(modulo, BigInt):
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modulo = BigInt(modulo)
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return BigInt(self.impl.__pow__(other.impl, modulo.impl))
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def serialise(self):
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return str(self)
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@classmethod
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def deserialise(cls, value):
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return cls(value)
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# Returns a random BigInt from lower_bound to upper_bound, both inclusive
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@classmethod
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def noncrypto_random(cls, lower_bound, upper_bound):
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return cls(random.randint(int(lower_bound), int(upper_bound)))
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@classmethod
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def crypto_random(cls, lower_bound, upper_bound):
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return cls(system_random.randint(int(lower_bound), int(upper_bound)))
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for func in [
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'__add__', '__sub__', '__mul__', '__mod__', '__or__', '__lshift__', '__xor__',
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'__eq__', '__ne__', '__lt__', '__gt__', '__le__', '__ge__',
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'__str__'
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]:
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for func in ['__add__', '__sub__', '__mul__', '__mod__', '__or__', '__lshift__', '__xor__']:
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def make_operator_func(func_):
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# Create a closure
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def operator_func(self, other):
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@ -42,3 +59,21 @@ for func in [
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return BigInt(getattr(self.impl, func_)(other.impl))
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return operator_func
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setattr(BigInt, func, make_operator_func(func))
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for func in ['__eq__', '__ne__', '__lt__', '__gt__', '__le__', '__ge__']:
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def make_operator_func(func_):
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# Create a closure
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def operator_func(self, other):
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if not isinstance(other, BigInt):
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other = BigInt(other)
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return getattr(self.impl, func_)(other.impl)
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return operator_func
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setattr(BigInt, func, make_operator_func(func))
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for func in ['__str__', '__int__']:
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def make_operator_func(func_):
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# Create a closure
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def operator_func(self):
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return getattr(self.impl, func_)()
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return operator_func
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setattr(BigInt, func, make_operator_func(func))
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@ -38,6 +38,10 @@ class EosTestCase:
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raise Error('Assertion failed: ' + str(a) + ' != ' + str(b))
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def assertEqualJSON(self, a, b):
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if isinstance(a, EosObject):
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a = EosObject.serialise_and_wrap(a)
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if isinstance(b, EosObject):
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b = EosObject.serialise_and_wrap(b)
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self.assertEqual(EosObject.to_json(a), EosObject.to_json(b))
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def py_only(func):
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@ -18,3 +18,4 @@ import eos.js
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import eos.core.tests
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import eos.base.tests
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import eos.psgjjr.tests
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84
eos/psgjjr/crypto.py
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84
eos/psgjjr/crypto.py
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@ -0,0 +1,84 @@
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# Eos - Verifiable elections
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# Copyright © 2017 RunasSudo (Yingtong Li)
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#
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# This program is free software: you can redistribute it and/or modify
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# it under the terms of the GNU Affero General Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU Affero General Public License for more details.
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#
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# You should have received a copy of the GNU Affero General Public License
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# along with this program. If not, see <http://www.gnu.org/licenses/>.
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from eos.core.bigint import *
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from eos.core.objects import *
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class CyclicGroup(EmbeddedObject):
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p = EmbeddedObjectField(BigInt)
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g = EmbeddedObjectField(BigInt)
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@property
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def q(self):
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# p = 2q + 1
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return (self.p - ONE) // TWO
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def random_element(self, crypto_random=True):
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crypto_method = BigInt.crypto_random if crypto_random else BigInt.noncrypto_random
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return crypto_method(ONE, self.p - ONE)
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# RFC 3526
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DEFAULT_GROUP = CyclicGroup(
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p=BigInt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g=TWO
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)
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class EGPublicKey(EmbeddedObject):
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group = EmbeddedObjectField(CyclicGroup)
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X = EmbeddedObjectField(BigInt)
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# HAC 8.18
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def encrypt(self, message):
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# Choose an element 1 <= k <= p - 2
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k = BigInt.crypto_random(ONE, self.group.p - TWO)
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gamma = pow(self.group.g, k, self.group.p)
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delta = (message * pow(self.X, k, self.group.p)) % self.group.p
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return EGCiphertext(public_key=self, gamma=gamma, delta=delta)
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class EGPrivateKey(EmbeddedObject):
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public_key = EmbeddedObjectField(EGPublicKey)
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x = EmbeddedObjectField(BigInt)
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# HAC 8.17
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@staticmethod
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def generate():
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# Choose an element 1 <= x <= p - 2
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x = BigInt.crypto_random(ONE, DEFAULT_GROUP.p - TWO)
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# Calculate the public key as G^x
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X = pow(DEFAULT_GROUP.g, x, DEFAULT_GROUP.p)
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pk = EGPublicKey(group=DEFAULT_GROUP, X=X)
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sk = EGPrivateKey(public_key=pk, x=x)
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return sk
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# HAC 8.18
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def decrypt(self, ciphertext):
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if (
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ciphertext.gamma <= ZERO or ciphertext.gamma >= self.public_key.group.p or
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ciphertext.delta <= ZERO or ciphertext.delta >= self.public_key.group.p
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):
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raise Exception('Ciphertext is malformed')
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gamma_inv = pow(ciphertext.gamma, self.public_key.group.p - ONE - self.x, self.public_key.group.p)
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return (gamma_inv * ciphertext.delta) % self.public_key.group.p
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class EGCiphertext(EmbeddedObject):
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public_key = EmbeddedObjectField(EGPublicKey)
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gamma = EmbeddedObjectField(BigInt) # G^k
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delta = EmbeddedObjectField(BigInt) # M X^k
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28
eos/psgjjr/tests.py
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28
eos/psgjjr/tests.py
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# Eos - Verifiable elections
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# Copyright © 2017 RunasSudo (Yingtong Li)
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#
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# This program is free software: you can redistribute it and/or modify
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# it under the terms of the GNU Affero General Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU Affero General Public License for more details.
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#
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# You should have received a copy of the GNU Affero General Public License
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# along with this program. If not, see <http://www.gnu.org/licenses/>.
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from eos.core.tests import *
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from eos.core.bigint import *
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from eos.psgjjr.crypto import *
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class EGTestCase(EosTestCase):
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def test_eg(self):
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pt = BigInt.noncrypto_random(ONE, DEFAULT_GROUP.p - ONE)
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sk = EGPrivateKey.generate()
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ct = sk.public_key.encrypt(pt)
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m = sk.decrypt(ct)
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self.assertEqualJSON(pt, m)
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