Result for 01C6D4E23AD0F7317BD95DCB2D63EB355D8E46D8

Query result

Key Value
FileName./usr/lib64/python3.6/site-packages/Crypto/PublicKey/__pycache__/DSA.cpython-36.pyc
FileSize19279
MD53056692A3A8724824FC616E207296F8A
SHA-101C6D4E23AD0F7317BD95DCB2D63EB355D8E46D8
SHA-256BAE8D8A9942A78C8BA27C32B82D1ECDECF1D7D3D5C7E0643CA4EB98A9B9C9DF5
SSDEEP384:dWp/nquvxoFkvafIKn8ZYBADmn3iRQb2zGF16kQ6:dWJnqYbvaf8ZYBADiSS2zm16kQ6
TLSHT151823ADE67815B8BF8A2FDF681A98E248735A09B234DD74B300C81DE1F497847E691D4
hashlookup:parent-total2
hashlookup:trust60

Network graph view

Parents (Total: 2)

The searched file hash is included in 2 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
MD5B3EC47B56FC0DB0D57BDE146F177911F
PackageArchx86_64
PackageDescriptionPyCryptodome is a self-contained Python package of low-level cryptographic primitives. PyCryptodome is a fork of PyCrypto, residing in the `Crypto` namespace for better drop-in compatibility, while 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) and BLAKE2 hash algorithms * Salsa20 and ChaCha20 stream ciphers * 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 PyCryptodome 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-pycryptodome
PackageReleaselp151.1.6
PackageVersion3.6.6
SHA-133715528E2401CAC71E5AD20CCD3A11172F1E008
SHA-256CE1E2DA1F3CC5EFF402D2C7A3393CAF28800EEE1E2F0973FFB8FB8E45DFAF6D1
Key Value
MD5B1B9CAA69CD850A4ABCFE26EC1619FD0
PackageArchx86_64
PackageDescriptionPyCryptodome is a self-contained Python package of low-level cryptographic primitives. PyCryptodome is a fork of PyCrypto, residing in the `Crypto` namespace for better drop-in compatibility, while 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) and BLAKE2 hash algorithms * Salsa20 and ChaCha20 stream ciphers * 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 PyCryptodome 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-pycryptodome
PackageReleaselp150.1.1
PackageVersion3.6.6
SHA-18E30305E0566160D74C17CFD744EC9AB02EAA8CC
SHA-256F9588EEF7E4BA321C5B7B6A40E62D901E2D5ED68A81A6F18C2F3747D1D744913