openssl pylint issue fixes
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814aae5166
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8659c5313d
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@ -2,22 +2,20 @@
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# See LICENSE for details.
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#
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# Software slightly changed by Jonathan Warren <bitmessage at-symbol jonwarren.org>
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# pylint: disable=protected-access
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"""
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This module loads openssl libs with ctypes and incapsulates
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needed openssl functionality in class _OpenSSL.
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"""
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# pylint: disable=protected-access
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import sys
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import ctypes
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OpenSSL = None
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class CipherName:
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class CipherName(object):
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"""Class returns cipher name, pointer and blocksize"""
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# pylint: disable=old-style-class
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def __init__(self, name, pointer, blocksize):
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self._name = name
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self._pointer = pointer
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@ -73,11 +71,11 @@ def get_version(library):
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return (version, hexversion, cflags)
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class _OpenSSL:
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class _OpenSSL(object):
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"""
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Wrapper for OpenSSL using ctypes
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"""
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# pylint: disable=too-many-statements, too-many-instance-attributes, old-style-class
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# pylint: disable=too-many-statements, too-many-instance-attributes
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def __init__(self, library):
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"""
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Build the wrapper
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@ -140,7 +138,8 @@ class _OpenSSL:
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self.EC_KEY_get0_group.restype = ctypes.c_void_p
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self.EC_KEY_get0_group.argtypes = [ctypes.c_void_p]
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self.EC_POINT_get_affine_coordinates_GFp = self._lib.EC_POINT_get_affine_coordinates_GFp
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self.EC_POINT_get_affine_coordinates_GFp = \
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self._lib.EC_POINT_get_affine_coordinates_GFp
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self.EC_POINT_get_affine_coordinates_GFp.restype = ctypes.c_int
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self.EC_POINT_get_affine_coordinates_GFp.argtypes = [ctypes.c_void_p,
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ctypes.c_void_p,
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@ -163,7 +162,8 @@ class _OpenSSL:
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self.EC_KEY_set_group.argtypes = [ctypes.c_void_p,
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ctypes.c_void_p]
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self.EC_POINT_set_affine_coordinates_GFp = self._lib.EC_POINT_set_affine_coordinates_GFp
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self.EC_POINT_set_affine_coordinates_GFp = \
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self._lib.EC_POINT_set_affine_coordinates_GFp
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self.EC_POINT_set_affine_coordinates_GFp.restype = ctypes.c_int
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self.EC_POINT_set_affine_coordinates_GFp.argtypes = [ctypes.c_void_p,
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ctypes.c_void_p,
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@ -297,7 +297,8 @@ class _OpenSSL:
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self.EVP_CipherUpdate = self._lib.EVP_CipherUpdate
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self.EVP_CipherUpdate.restype = ctypes.c_int
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self.EVP_CipherUpdate.argtypes = [ctypes.c_void_p,
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ctypes.c_void_p, ctypes.c_void_p, ctypes.c_void_p, ctypes.c_int]
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ctypes.c_void_p, ctypes.c_void_p,
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ctypes.c_void_p, ctypes.c_int]
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self.EVP_CipherFinal_ex = self._lib.EVP_CipherFinal_ex
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self.EVP_CipherFinal_ex.restype = ctypes.c_int
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@ -330,12 +331,14 @@ class _OpenSSL:
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self.ECDSA_sign = self._lib.ECDSA_sign
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self.ECDSA_sign.restype = ctypes.c_int
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self.ECDSA_sign.argtypes = [ctypes.c_int, ctypes.c_void_p,
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ctypes.c_int, ctypes.c_void_p, ctypes.c_void_p, ctypes.c_void_p]
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ctypes.c_int, ctypes.c_void_p,
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ctypes.c_void_p, ctypes.c_void_p]
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self.ECDSA_verify = self._lib.ECDSA_verify
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self.ECDSA_verify.restype = ctypes.c_int
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self.ECDSA_verify.argtypes = [ctypes.c_int, ctypes.c_void_p,
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ctypes.c_int, ctypes.c_void_p, ctypes.c_int, ctypes.c_void_p]
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ctypes.c_int, ctypes.c_void_p,
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ctypes.c_int, ctypes.c_void_p]
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if self._hexversion >= 0x10100000 and not self._libreSSL:
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self.EVP_MD_CTX_new = self._lib.EVP_MD_CTX_new
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@ -393,7 +396,8 @@ class _OpenSSL:
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self.HMAC = self._lib.HMAC
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self.HMAC.restype = ctypes.c_void_p
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self.HMAC.argtypes = [ctypes.c_void_p, ctypes.c_void_p, ctypes.c_int,
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ctypes.c_void_p, ctypes.c_int, ctypes.c_void_p, ctypes.c_void_p]
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ctypes.c_void_p, ctypes.c_int,
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ctypes.c_void_p, ctypes.c_void_p]
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try:
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self.PKCS5_PBKDF2_HMAC = self._lib.PKCS5_PBKDF2_HMAC
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@ -530,17 +534,29 @@ class _OpenSSL:
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def _set_ciphers(self):
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self.cipher_algo = {
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'aes-128-cbc': CipherName('aes-128-cbc', self.EVP_aes_128_cbc, 16),
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'aes-256-cbc': CipherName('aes-256-cbc', self.EVP_aes_256_cbc, 16),
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'aes-128-cfb': CipherName('aes-128-cfb', self.EVP_aes_128_cfb128, 16),
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'aes-256-cfb': CipherName('aes-256-cfb', self.EVP_aes_256_cfb128, 16),
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'aes-128-ofb': CipherName('aes-128-ofb', self._lib.EVP_aes_128_ofb, 16),
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'aes-256-ofb': CipherName('aes-256-ofb', self._lib.EVP_aes_256_ofb, 16),
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# 'aes-128-ctr': CipherName('aes-128-ctr', self._lib.EVP_aes_128_ctr, 16),
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# 'aes-256-ctr': CipherName('aes-256-ctr', self._lib.EVP_aes_256_ctr, 16),
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'bf-cfb': CipherName('bf-cfb', self.EVP_bf_cfb64, 8),
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'bf-cbc': CipherName('bf-cbc', self.EVP_bf_cbc, 8),
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'rc4': CipherName('rc4', self.EVP_rc4, 128), # 128 is the initialisation size not block size
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'aes-128-cbc': CipherName(
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'aes-128-cbc', self.EVP_aes_128_cbc, 16),
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'aes-256-cbc': CipherName(
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'aes-256-cbc', self.EVP_aes_256_cbc, 16),
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'aes-128-cfb': CipherName(
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'aes-128-cfb', self.EVP_aes_128_cfb128, 16),
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'aes-256-cfb': CipherName(
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'aes-256-cfb', self.EVP_aes_256_cfb128, 16),
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'aes-128-ofb': CipherName(
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'aes-128-ofb', self._lib.EVP_aes_128_ofb, 16),
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'aes-256-ofb': CipherName(
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'aes-256-ofb', self._lib.EVP_aes_256_ofb, 16),
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# 'aes-128-ctr': CipherName(
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# 'aes-128-ctr', self._lib.EVP_aes_128_ctr, 16),
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# 'aes-256-ctr': CipherName(
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# 'aes-256-ctr', self._lib.EVP_aes_256_ctr, 16),
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'bf-cfb': CipherName(
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'bf-cfb', self.EVP_bf_cfb64, 8),
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'bf-cbc': CipherName(
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'bf-cbc', self.EVP_bf_cbc, 8),
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# 128 is the initialisation size not block size
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'rc4': CipherName(
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'rc4', self.EVP_rc4, 128),
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}
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def _set_curves(self):
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raise Exception("Unknown curve")
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return self.curves[name]
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def get_curve_by_id(self, id):
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def get_curve_by_id(self, id_):
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"""
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returns the name of a elliptic curve with his id
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"""
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# pylint: disable=redefined-builtin
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res = None
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for i in self.curves:
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if self.curves[i] == id:
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if self.curves[i] == id_:
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res = i
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break
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if res is None:
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@ -618,32 +633,31 @@ class _OpenSSL:
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"""
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OpenSSL random function
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"""
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# pylint: disable=redefined-builtin
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buffer = self.malloc(0, size)
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# This pyelliptic library, by default, didn't check the return value of RAND_bytes. It is
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# evidently possible that it returned an error and not-actually-random data. However, in
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# tests on various operating systems, while generating hundreds of gigabytes of random
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# strings of various sizes I could not get an error to occur. Also Bitcoin doesn't check
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# the return value of RAND_bytes either.
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buffer_ = self.malloc(0, size)
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# This pyelliptic library, by default, didn't check the return value
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# of RAND_bytes. It is evidently possible that it returned an error
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# and not-actually-random data. However, in tests on various
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# operating systems, while generating hundreds of gigabytes of random
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# strings of various sizes I could not get an error to occur.
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# Also Bitcoin doesn't check the return value of RAND_bytes either.
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# Fixed in Bitmessage version 0.4.2 (in source code on 2013-10-13)
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while self.RAND_bytes(buffer, size) != 1:
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while self.RAND_bytes(buffer_, size) != 1:
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import time
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time.sleep(1)
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return buffer.raw
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return buffer_.raw
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def malloc(self, data, size):
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"""
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returns a create_string_buffer (ctypes)
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"""
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# pylint: disable=redefined-builtin
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buffer = None
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buffer_ = None
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if data != 0:
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if sys.version_info.major == 3 and isinstance(data, type('')):
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data = data.encode()
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buffer = self.create_string_buffer(data, size)
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buffer_ = self.create_string_buffer(data, size)
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else:
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buffer = self.create_string_buffer(size)
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return buffer
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buffer_ = self.create_string_buffer(size)
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return buffer_
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def loadOpenSSL():
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if getattr(sys, 'frozen', None):
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if 'darwin' in sys.platform:
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libdir.extend([
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path.join(environ['RESOURCEPATH'], '..', 'Frameworks', 'libcrypto.dylib'),
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path.join(environ['RESOURCEPATH'], '..', 'Frameworks', 'libcrypto.1.1.0.dylib'),
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path.join(environ['RESOURCEPATH'], '..', 'Frameworks', 'libcrypto.1.0.2.dylib'),
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path.join(environ['RESOURCEPATH'], '..', 'Frameworks', 'libcrypto.1.0.1.dylib'),
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path.join(environ['RESOURCEPATH'], '..', 'Frameworks', 'libcrypto.1.0.0.dylib'),
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path.join(environ['RESOURCEPATH'], '..', 'Frameworks', 'libcrypto.0.9.8.dylib'),
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path.join(
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environ['RESOURCEPATH'], '..',
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'Frameworks', 'libcrypto.dylib'),
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path.join(
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environ['RESOURCEPATH'], '..',
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'Frameworks', 'libcrypto.1.1.0.dylib'),
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path.join(
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environ['RESOURCEPATH'], '..',
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'Frameworks', 'libcrypto.1.0.2.dylib'),
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path.join(
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environ['RESOURCEPATH'], '..',
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'Frameworks', 'libcrypto.1.0.1.dylib'),
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path.join(
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environ['RESOURCEPATH'], '..',
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'Frameworks', 'libcrypto.1.0.0.dylib'),
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path.join(
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environ['RESOURCEPATH'], '..',
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'Frameworks', 'libcrypto.0.9.8.dylib'),
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])
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elif 'win32' in sys.platform or 'win64' in sys.platform:
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libdir.append(path.join(sys._MEIPASS, 'libeay32.dll'))
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path.join(sys._MEIPASS, 'libssl.so.0.9.8'),
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])
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if 'darwin' in sys.platform:
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libdir.extend(['libcrypto.dylib', '/usr/local/opt/openssl/lib/libcrypto.dylib'])
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libdir.extend([
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'libcrypto.dylib', '/usr/local/opt/openssl/lib/libcrypto.dylib'])
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elif 'win32' in sys.platform or 'win64' in sys.platform:
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libdir.append('libeay32.dll')
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else:
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libdir.append('libssl.so')
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libdir.append('libcrypto.so.1.0.0')
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libdir.append('libssl.so.1.0.0')
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if 'linux' in sys.platform or 'darwin' in sys.platform or 'bsd' in sys.platform:
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if 'linux' in sys.platform or 'darwin' in sys.platform \
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or 'bsd' in sys.platform:
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libdir.append(find_library('ssl'))
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elif 'win32' in sys.platform or 'win64' in sys.platform:
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libdir.append(find_library('libeay32'))
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@ -700,7 +728,8 @@ def loadOpenSSL():
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return
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except:
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pass
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raise Exception("Couldn't find and load the OpenSSL library. You must install it.")
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raise Exception(
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"Couldn't find and load the OpenSSL library. You must install it.")
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loadOpenSSL()
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