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05/09/2024 06:57:58 AM
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HMAC.py
7.14 KB
04/03/2018 01:26:21 PM
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MD2.py
2.67 KB
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MD4.py
2.65 KB
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MD5.py
2.8 KB
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RIPEMD.py
2.93 KB
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SHA.py
2.77 KB
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SHA224.py
2.78 KB
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SHA256.py
2.79 KB
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SHA384.py
2.79 KB
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SHA512.py
2.78 KB
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_MD2.cpython-36m-x86_64-linux-gnu.so
15.39 KB
04/03/2018 01:26:21 PM
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_MD4.cpython-36m-x86_64-linux-gnu.so
15.45 KB
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_RIPEMD160.cpython-36m-x86_64-linux-gnu.so
19.39 KB
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_SHA224.cpython-36m-x86_64-linux-gnu.so
15.39 KB
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_SHA256.cpython-36m-x86_64-linux-gnu.so
15.39 KB
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_SHA384.cpython-36m-x86_64-linux-gnu.so
15.39 KB
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_SHA512.cpython-36m-x86_64-linux-gnu.so
15.39 KB
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__init__.py
2.38 KB
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__pycache__
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05/09/2024 06:57:58 AM
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hashalgo.py
3.89 KB
10/14/2013 09:38:10 PM
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Editing: RIPEMD.py
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# -*- coding: utf-8 -*- # # =================================================================== # The contents of this file are dedicated to the public domain. To # the extent that dedication to the public domain is not available, # everyone is granted a worldwide, perpetual, royalty-free, # non-exclusive license to exercise all rights associated with the # contents of this file for any purpose whatsoever. # No rights are reserved. # # THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, # EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF # MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND # NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS # BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN # ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN # CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE # SOFTWARE. # =================================================================== """RIPEMD-160 cryptographic hash algorithm. RIPEMD-160_ produces the 160 bit digest of a message. >>> from Crypto.Hash import RIPEMD >>> >>> h = RIPEMD.new() >>> h.update(b'Hello') >>> print h.hexdigest() RIPEMD-160 stands for RACE Integrity Primitives Evaluation Message Digest with a 160 bit digest. It was invented by Dobbertin, Bosselaers, and Preneel. This algorithm is considered secure, although it has not been scrutinized as extensively as SHA-1. Moreover, it provides an informal security level of just 80bits. .. _RIPEMD-160: http://homes.esat.kuleuven.be/~bosselae/ripemd160.html """ _revision__ = "$Id$" __all__ = ['new', 'digest_size', 'RIPEMD160Hash' ] from Crypto.Util.py3compat import * from Crypto.Hash.hashalgo import HashAlgo import Crypto.Hash._RIPEMD160 as _RIPEMD160 hashFactory = _RIPEMD160 class RIPEMD160Hash(HashAlgo): """Class that implements a RIPMD-160 hash :undocumented: block_size """ #: ASN.1 Object identifier (OID):: #: #: id-ripemd160 OBJECT IDENTIFIER ::= { #: iso(1) identified-organization(3) teletrust(36) #: algorithm(3) hashAlgorithm(2) ripemd160(1) #: } #: #: This value uniquely identifies the RIPMD-160 algorithm. oid = b("\x06\x05\x2b\x24\x03\x02\x01") digest_size = 20 block_size = 64 def __init__(self, data=None): HashAlgo.__init__(self, hashFactory, data) def new(self, data=None): return RIPEMD160Hash(data) def new(data=None): """Return a fresh instance of the hash object. :Parameters: data : byte string The very first chunk of the message to hash. It is equivalent to an early call to `RIPEMD160Hash.update()`. Optional. :Return: A `RIPEMD160Hash` object """ return RIPEMD160Hash().new(data) #: The size of the resulting hash in bytes. digest_size = RIPEMD160Hash.digest_size #: The internal block size of the hash algorithm in bytes. block_size = RIPEMD160Hash.block_size