python-pycryptodome/python-pycryptodome.spec

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#
# spec file for package python-pycryptodome
#
# Copyright (c) 2021 SUSE LLC
#
# All modifications and additions to the file contributed by third parties
# remain the property of their copyright owners, unless otherwise agreed
# upon. The license for this file, and modifications and additions to the
# file, is the same license as for the pristine package itself (unless the
# license for the pristine package is not an Open Source License, in which
# case the license is the MIT License). An "Open Source License" is a
# license that conforms to the Open Source Definition (Version 1.9)
# published by the Open Source Initiative.
# Please submit bugfixes or comments via https://bugs.opensuse.org/
#
%{?!python_module:%define python_module() python-%{**} python3-%{**}}
%define oldpython python
Name: python-pycryptodome
Version: 3.10.1
Release: 0
Summary: Cryptographic library for Python
License: BSD-2-Clause
Group: Development/Languages/Python
URL: https://www.pycryptodome.org
Source: https://github.com/Legrandin/pycryptodome/archive/v%{version}.tar.gz
BuildRequires: %{python_module devel}
BuildRequires: %{python_module setuptools}
BuildRequires: fdupes
BuildRequires: python-rpm-macros
%if !0%{?_no_weakdeps}
# PyCryptodome uses gmp via cffi as runtime optimization
# would be better, if libgmp* would provide gmp
Suggests: libgmp10
Suggests: python-cffi
%endif
Accepting request 605178 from home:frispete:python - fix condition to act as drop in replacement for python-pycrypto - Update to 3.6.1 (15 April 2018) - New features * Added Google Wycheproof tests (https://github.com/google/wycheproof) for RSA, DSA, ECDSA, GCM, SIV, EAX, CMAC. * New parameter ``mac_len`` (length of MAC tag) for CMAC. - Resolved issues * In certain circumstances (at counter wrapping, which happens on average after 32 GBi) AES GCM produced wrong ciphertexts. * Method ``encrypt()`` of AES SIV cipher could be still called, whereas only ``encrypt_and_digest()`` should be allowed. - Update to 3.6.0 (8 April 2018) - New features * Introduced ``export_key`` and deprecated ``exportKey`` for DSA and RSA key objects. * Ciphers and hash functions accept ``memoryview`` objects in input. * Added support for SHA-512/224 and SHA-512/256. - Resolved issues * Reintroduced `Crypto.__version__` variable as in PyCrypto. * Fixed compilation problem with MinGW. - Update to 3.5.1 (8 March 2018) - Resolved issues * GH#142. Fix mismatch with declaration and definition of addmul128. - Update to 3.5.0 (7 March 2018) - New features * Import and export of ECC curves in compressed form. * The initial counter for a cipher in CTR mode can be a byte string (in addition to an integer). * Faster PBKDF2 for HMAC-based PRFs (at least 20x for short passwords, OBS-URL: https://build.opensuse.org/request/show/605178 OBS-URL: https://build.opensuse.org/package/show/devel:languages:python/python-pycryptodome?expand=0&rev=8
2018-05-08 06:25:27 +00:00
Provides: python-pycrypto = %{version}
Obsoletes: python-pycrypto < %{version}
%ifpython2
Provides: %{oldpython}-pycrypto = %{version}
Obsoletes: %{oldpython}-pycrypto < %{version}
%endif
%python_subpackages
%description
PyCryptodome 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), 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
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.
%prep
%setup -q -n pycryptodome-%{version}
%build
export LC_ALL=en_US.UTF-8
export CFLAGS="%{optflags}"
%python_build
%install
export LC_ALL=en_US.UTF-8
%python_install
%python_expand %fdupes %{buildroot}%{$python_sitearch}
%check
export LC_ALL=en_US.UTF-8
%python_exec setup.py test
%files %{python_files}
%license LICENSE.rst
%doc AUTHORS.rst Changelog.rst README.rst
%{python_sitearch}/Crypto/
%{python_sitearch}/pycryptodome-%{version}-py*.egg-info
%changelog