Result for 0138DCC735D2AA9C88A3A65C82D352D2BD234CEB

Query result

Key Value
FileName./usr/lib64/python3.6/site-packages/Cryptodome/Cipher/_raw_ecb.cpython-36m-x86_64-linux-gnu.so
FileSize6024
MD583786D562652E430EE3263B0B8114627
SHA-10138DCC735D2AA9C88A3A65C82D352D2BD234CEB
SHA-256FAB2995A167B0D81ED62286DF00A6D24AE11ED2CD13B5FD26BAF680CD5BECBC7
SSDEEP48:Rbm2v0MBWB5j0lFMgz7dcfBCRqGf+A0eydgAbgYdoQxnWpa:RRcMBWB5YLM052dI+A+vPnWpa
TLSHT1D2C1EF47FB21C92FD6661378802F437473F4A49902635B233B04FB392D437A85AA16DA
hashlookup:parent-total1
hashlookup:trust55

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Parents (Total: 1)

The searched file hash is included in 1 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
MD56DA423C805809E5DFF5E0B2DA7C68F2B
PackageArchx86_64
PackageDescriptionPyCryptodomex is a self-contained Python package of low-level cryptographic primitives. Unlike PyCryptodome, it resides in its own namespace `Cryptodome`. PyCryptodome is a fork of PyCrypto. It brings several enhancements with respect to the last official version of PyCrypto (2.6.1), for instance: * Authenticated encryption modes (GCM, CCM, EAX, SIV, OCB) * Accelerated AES on Intel platforms via AES-NI * First class support for PyPy * Elliptic curves cryptography (NIST P-256 curve only) * Better and more compact API (`nonce` and `iv` attributes for ciphers, automatic generation of random nonces and IVs, simplified CTR cipher mode, and more) * SHA-3 (including SHAKE XOFs), SHA-512/t and BLAKE2 hash algorithms * Salsa20 and ChaCha20 stream ciphers * Poly1305 MAC * ChaCha20-Poly1305 authenticated cipher * scrypt and HKDF * Deterministic (EC)DSA * Password-protected PKCS#8 key containers * Shamir's Secret Sharing scheme * Random numbers get sourced directly from the OS (and not from a CSPRNG in userspace) * Simplified install process, including better support for Windows * Cleaner RSA and DSA key generation (largely based on FIPS 186-4) * Major clean ups and simplification of the code base PyCryptodomex is not a wrapper to a separate C library like *OpenSSL*. To the largest possible extent, algorithms are implemented in pure Python. Only the pieces that are extremely critical to performance (e.g. block ciphers) are implemented as C extensions.
PackageNamepython3-pycryptodomex
PackageReleaselp151.2.4
PackageVersion3.9.9
SHA-19820BB8E1B54F02B5F528CC7A01A3C730BA05CF1
SHA-256BBA2A6679BA9BE56D00DCD45C7FB16F3B9FA6EED46D757A5DB12DC855908577D