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# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at
#
# http://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or
# implied.
# See the License for the specific language governing permissions and
# limitations under the License.
from __future__ import absolute_import, division, print_function
import sys
import threading
from cryptography.hazmat.bindings.utils import build_ffi
_OSX_PRE_INCLUDE = """
#ifdef __APPLE__
#include <AvailabilityMacros.h>
#define __ORIG_DEPRECATED_IN_MAC_OS_X_VERSION_10_7_AND_LATER \
DEPRECATED_IN_MAC_OS_X_VERSION_10_7_AND_LATER
#undef DEPRECATED_IN_MAC_OS_X_VERSION_10_7_AND_LATER
#define DEPRECATED_IN_MAC_OS_X_VERSION_10_7_AND_LATER
#endif
"""
_OSX_POST_INCLUDE = """
#ifdef __APPLE__
#undef DEPRECATED_IN_MAC_OS_X_VERSION_10_7_AND_LATER
#define DEPRECATED_IN_MAC_OS_X_VERSION_10_7_AND_LATER \
__ORIG_DEPRECATED_IN_MAC_OS_X_VERSION_10_7_AND_LATER
#endif
"""
class Binding(object):
"""
OpenSSL API wrapper.
"""
_module_prefix = "cryptography.hazmat.bindings.openssl."
_modules = [
"aes",
"asn1",
"bignum",
"bio",
"cmac",
"cms",
"conf",
"crypto",
"dh",
"dsa",
"ec",
"ecdh",
"ecdsa",
"engine",
"err",
"evp",
"hmac",
"nid",
"objects",
"opensslv",
"osrandom_engine",
"pem",
"pkcs7",
"pkcs12",
"rand",
"rsa",
"ssl",
"x509",
"x509name",
"x509v3",
]
_locks = None
_lock_cb_handle = None
_lock_init_lock = threading.Lock()
ffi = None
lib = None
def __init__(self):
self._ensure_ffi_initialized()
@classmethod
def _ensure_ffi_initialized(cls):
if cls.ffi is not None and cls.lib is not None:
return
# OpenSSL goes by a different library name on different operating
# systems.
if sys.platform != "win32":
libraries = ["crypto", "ssl"]
else: # pragma: no cover
libraries = ["libeay32", "ssleay32", "advapi32"]
cls.ffi, cls.lib = build_ffi(
module_prefix=cls._module_prefix,
modules=cls._modules,
pre_include=_OSX_PRE_INCLUDE,
post_include=_OSX_POST_INCLUDE,
libraries=libraries,
)
res = cls.lib.Cryptography_add_osrandom_engine()
assert res != 0
@classmethod
def is_available(cls):
# For now, OpenSSL is considered our "default" binding, so we treat it
# as always available.
return True
@classmethod
def init_static_locks(cls):
with cls._lock_init_lock:
cls._ensure_ffi_initialized()
if not cls._lock_cb_handle:
cls._lock_cb_handle = cls.ffi.callback(
"void(int, int, const char *, int)",
cls._lock_cb
)
# Use Python's implementation if available, importing _ssl triggers
# the setup for this.
__import__("_ssl")
if cls.lib.CRYPTO_get_locking_callback() != cls.ffi.NULL:
return
# If nothing else has setup a locking callback already, we set up
# our own
num_locks = cls.lib.CRYPTO_num_locks()
cls._locks = [threading.Lock() for n in range(num_locks)]
cls.lib.CRYPTO_set_locking_callback(cls._lock_cb_handle)
@classmethod
def _lock_cb(cls, mode, n, file, line):
lock = cls._locks[n]
if mode & cls.lib.CRYPTO_LOCK:
lock.acquire()
elif mode & cls.lib.CRYPTO_UNLOCK:
lock.release()
else:
raise RuntimeError(
"Unknown lock mode {0}: lock={1}, file={2}, line={3}.".format(
mode, n, file, line
)
)
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