/opt/imunify360/venv/lib/python3.11/site-packages/Crypto/Hash
NameSizeModeActions
__pycache__/-0755rm
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BLAKE2s.py94290644editdlrm
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CMAC.py103510644editdlrm
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cSHAKE128.py63170644editdlrm
cSHAKE128.pyi4990644editdlrm
cSHAKE256.py22020644editdlrm
cSHAKE256.pyi2310644editdlrm
HMAC.py70240644editdlrm
HMAC.pyi6240644editdlrm
KangarooTwelve.py90290644editdlrm
KangarooTwelve.pyi5720644editdlrm
keccak.py75430644editdlrm
keccak.pyi7410644editdlrm
KMAC128.py59490644editdlrm
KMAC128.pyi9030644editdlrm
KMAC256.py29060644editdlrm
KMAC256.pyi2260644editdlrm
MD2.py61110644editdlrm
MD2.pyi4920644editdlrm
MD4.py65820644editdlrm
MD4.pyi5320644editdlrm
MD5.py66180644editdlrm
MD5.pyi4920644editdlrm
Poly1305.py80740644editdlrm
Poly1305.pyi6650644editdlrm
RIPEMD.py11990644editdlrm
RIPEMD.pyi940644editdlrm
RIPEMD160.py63980644editdlrm
RIPEMD160.pyi5160644editdlrm
SHA.py11480644editdlrm
SHA.pyi1610644editdlrm
SHA1.py66900644editdlrm
SHA1.pyi5360644editdlrm
SHA3_224.py61790644editdlrm
SHA3_224.pyi6050644editdlrm
SHA3_256.py61790644editdlrm
SHA3_256.pyi6050644editdlrm
SHA3_384.py62740644editdlrm
SHA3_384.pyi6050644editdlrm
SHA3_512.py61310644editdlrm
SHA3_512.pyi6050644editdlrm
SHA224.py69010644editdlrm
SHA224.pyi5440644editdlrm
SHA256.py68970644editdlrm
SHA256.pyi6120644editdlrm
SHA384.py68990644editdlrm
SHA384.pyi5440644editdlrm
SHA512.py77200644editdlrm
SHA512.pyi6220644editdlrm
SHAKE128.py47610644editdlrm
SHAKE128.pyi4370644editdlrm
SHAKE256.py47620644editdlrm
SHAKE256.pyi4370644editdlrm
TupleHash128.py47200644editdlrm
TupleHash128.pyi6520644editdlrm
TupleHash256.py29100644editdlrm
TupleHash256.pyi1440644editdlrm
_BLAKE2b.abi3.so161280755editdlrm
_BLAKE2s.abi3.so161280755editdlrm
_ghash_clmul.abi3.so159520755editdlrm
_ghash_portable.abi3.so158560755editdlrm
_keccak.abi3.so205120755editdlrm
_MD2.abi3.so161760755editdlrm
_MD4.abi3.so162160755editdlrm
_MD5.abi3.so163280755editdlrm
_poly1305.abi3.so163200755editdlrm
_RIPEMD160.abi3.so202400755editdlrm
_SHA1.abi3.so204240755editdlrm
_SHA224.abi3.so245440755editdlrm
_SHA256.abi3.so245440755editdlrm
_SHA384.abi3.so286480755editdlrm
_SHA512.abi3.so286800755editdlrm
__init__.py12390644editdlrm
__init__.pyi00644editdlrm
Edit: /opt/imunify360/venv/lib/python3.11/site-packages/Crypto/Hash/MD4.py (6582B)
# =================================================================== # # Copyright (c) 2014, Legrandin # All rights reserved. # # Redistribution and use in source and binary forms, with or without # modification, are permitted provided that the following conditions # are met: # # 1. Redistributions of source code must retain the above copyright # notice, this list of conditions and the following disclaimer. # 2. Redistributions in binary form must reproduce the above copyright # notice, this list of conditions and the following disclaimer in # the documentation and/or other materials provided with the # distribution. # # THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS # "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT # LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS # FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE # COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, # INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, # BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; # LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER # CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT # LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN # ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE # POSSIBILITY OF SUCH DAMAGE. # =================================================================== """ MD4 is specified in RFC1320_ and produces the 128 bit digest of a message. >>> from Crypto.Hash import MD4 >>> >>> h = MD4.new() >>> h.update(b'Hello') >>> print h.hexdigest() MD4 stand for Message Digest version 4, and it was invented by Rivest in 1990. This algorithm is insecure. Do not use it for new designs. .. _RFC1320: http://tools.ietf.org/html/rfc1320 """ from Crypto.Util.py3compat import bord from Crypto.Util._raw_api import (load_pycryptodome_raw_lib, VoidPointer, SmartPointer, create_string_buffer, get_raw_buffer, c_size_t, c_uint8_ptr) _raw_md4_lib = load_pycryptodome_raw_lib( "Crypto.Hash._MD4", """ int md4_init(void **shaState); int md4_destroy(void *shaState); int md4_update(void *hs, const uint8_t *buf, size_t len); int md4_digest(const void *shaState, uint8_t digest[20]); int md4_copy(const void *src, void *dst); """) class MD4Hash(object): """Class that implements an MD4 hash """ #: The size of the resulting hash in bytes. digest_size = 16 #: The internal block size of the hash algorithm in bytes. block_size = 64 #: ASN.1 Object ID oid = "1.2.840.113549.2.4" def __init__(self, data=None): state = VoidPointer() result = _raw_md4_lib.md4_init(state.address_of()) if result: raise ValueError("Error %d while instantiating MD4" % result) self._state = SmartPointer(state.get(), _raw_md4_lib.md4_destroy) if data: self.update(data) def update(self, data): """Continue hashing of a message by consuming the next chunk of data. Repeated calls are equivalent to a single call with the concatenation of all the arguments. In other words: >>> m.update(a); m.update(b) is equivalent to: >>> m.update(a+b) :Parameters: data : byte string/byte array/memoryview The next chunk of the message being hashed. """ result = _raw_md4_lib.md4_update(self._state.get(), c_uint8_ptr(data), c_size_t(len(data))) if result: raise ValueError("Error %d while instantiating MD4" % result) def digest(self): """Return the **binary** (non-printable) digest of the message that has been hashed so far. This method does not change the state of the hash object. You can continue updating the object after calling this function. :Return: A byte string of `digest_size` bytes. It may contain non-ASCII characters, including null bytes. """ bfr = create_string_buffer(self.digest_size) result = _raw_md4_lib.md4_digest(self._state.get(), bfr) if result: raise ValueError("Error %d while instantiating MD4" % result) return get_raw_buffer(bfr) def hexdigest(self): """Return the **printable** digest of the message that has been hashed so far. This method does not change the state of the hash object. :Return: A string of 2* `digest_size` characters. It contains only hexadecimal ASCII digits. """ return "".join(["%02x" % bord(x) for x in self.digest()]) def copy(self): """Return a copy ("clone") of the hash object. The copy will have the same internal state as the original hash object. This can be used to efficiently compute the digests of strings that share a common initial substring. :Return: A hash object of the same type """ clone = MD4Hash() result = _raw_md4_lib.md4_copy(self._state.get(), clone._state.get()) if result: raise ValueError("Error %d while copying MD4" % result) return clone def new(self, data=None): return MD4Hash(data) def new(data=None): """Return a fresh instance of the hash object. :Parameters: data : byte string/byte array/memoryview The very first chunk of the message to hash. It is equivalent to an early call to `MD4Hash.update()`. Optional. :Return: A `MD4Hash` object """ return MD4Hash().new(data) #: The size of the resulting hash in bytes. digest_size = MD4Hash.digest_size #: The internal block size of the hash algorithm in bytes. block_size = MD4Hash.block_size