Result for 0839D4FDEBF522800304235B368F1AA1644885EC

Query result

Key Value
FileName./usr/lib/python3.8/site-packages/Cryptodome/SelfTest/Hash/__pycache__/test_SHA3_384.cpython-38.pyc
FileSize2005
MD5167CA1BC02D65DC7B82FB70C21DA25AF
SHA-10839D4FDEBF522800304235B368F1AA1644885EC
SHA-25617D52574DC3F9EE38991F1A50C953FC584132D986F385970488CD0485F2019EC
SSDEEP24:ECRe2DJmkhVjMZBH/ZycwsVmI4TuE6gz3DXLf0ZEw2M2ppGRalkLP9mug3HHQvM:62J9qBH/Z7/VPELz3DXLfufSoPoHHt
TLSHT1FD418488E593E9C8FAA5F6F8D4125434B961D372C9C8450E0B54716F6FC814626F06EC
hashlookup:parent-total3
hashlookup:trust65

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Parents (Total: 3)

The searched file hash is included in 3 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
MD529138EA82288B01586B64DC9A4896532
PackageArchi586
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.
PackageMaintainerhttps://bugs.opensuse.org
PackageNamepython38-pycryptodomex
PackageRelease1.3
PackageVersion3.12.0
SHA-13A87667C9BADE6B0EEA90A7BBBC3366C01E601A9
SHA-25620145606810E59176F5A3296301B6DD446C30B10B95E5AF3EC28954DBB04EFD2
Key Value
MD55BA89B4AD2D1F8EE03C8D5CBD3245A89
PackageArcharmv7hl
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.
PackageNamepython38-pycryptodomex
PackageRelease26.8
PackageVersion3.12.0
SHA-1C0AF009BAC4BECABF412325A04564CD941A6AA39
SHA-256ED765A7E4FAC2A622851FE1722E369D31E45965B6822C9F90CF7DC90D076A677
Key Value
MD59B9E02DB9E5AD7EC7CBD4558BF85CB69
PackageArchi586
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.
PackageNamepython38-pycryptodomex
PackageRelease26.9
PackageVersion3.12.0
SHA-15714DD87B056E1157EFB2CDCA21A37BDDD8D7EEB
SHA-25638418AC49F3AAA4B64B2AB4E6767E3D43B0229861CB5820D518ACDFC376F2201