Fix some minor style nits. (I'll leave adding __all__ and making the
docstrings conform to PEP 8 to someone else.)
This commit is contained in:
parent
b61506989e
commit
5b8b1555de
84
Lib/ssl.py
84
Lib/ssl.py
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@ -1,8 +1,7 @@
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# Wrapper module for _ssl, providing some additional facilities
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# implemented in Python. Written by Bill Janssen.
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"""\
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This module provides some more Pythonic support for SSL.
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"""This module provides some more Pythonic support for SSL.
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Object types:
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@ -61,18 +60,20 @@ import _ssl # if we can't import it, let the error propagate
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from _ssl import SSLError
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from _ssl import CERT_NONE, CERT_OPTIONAL, CERT_REQUIRED
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from _ssl import PROTOCOL_SSLv2, PROTOCOL_SSLv3, PROTOCOL_SSLv23, PROTOCOL_TLSv1
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from _ssl import (PROTOCOL_SSLv2, PROTOCOL_SSLv3, PROTOCOL_SSLv23,
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PROTOCOL_TLSv1)
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from _ssl import RAND_status, RAND_egd, RAND_add
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from _ssl import \
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SSL_ERROR_ZERO_RETURN, \
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SSL_ERROR_WANT_READ, \
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SSL_ERROR_WANT_WRITE, \
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SSL_ERROR_WANT_X509_LOOKUP, \
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SSL_ERROR_SYSCALL, \
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SSL_ERROR_SSL, \
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SSL_ERROR_WANT_CONNECT, \
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SSL_ERROR_EOF, \
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SSL_ERROR_INVALID_ERROR_CODE
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from _ssl import (
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SSL_ERROR_ZERO_RETURN,
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SSL_ERROR_WANT_READ,
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SSL_ERROR_WANT_WRITE,
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SSL_ERROR_WANT_X509_LOOKUP,
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SSL_ERROR_SYSCALL,
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SSL_ERROR_SSL,
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SSL_ERROR_WANT_CONNECT,
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SSL_ERROR_EOF,
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SSL_ERROR_INVALID_ERROR_CODE,
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)
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from socket import socket, AF_INET, SOCK_STREAM, error
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from socket import getnameinfo as _getnameinfo
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@ -80,7 +81,7 @@ from socket import error as socket_error
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import base64 # for DER-to-PEM translation
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_can_dup_socket = hasattr(socket, "dup")
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class SSLSocket (socket):
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class SSLSocket(socket):
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"""This class implements a subtype of socket.socket that wraps
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the underlying OS socket in an SSL context when necessary, and
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@ -102,7 +103,8 @@ class SSLSocket (socket):
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if _can_dup_socket:
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nfd = os.dup(fd)
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try:
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wrapper = socket.__init__(self, family=sock.family, type=sock.type, proto=sock.proto, fileno=nfd)
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socket.__init__(self, family=sock.family, type=sock.type,
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proto=sock.proto, fileno=nfd)
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except:
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if nfd != fd:
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os.close(nfd)
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@ -152,7 +154,6 @@ class SSLSocket (socket):
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pass
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def read(self, len=1024, buffer=None):
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"""Read up to LEN bytes and return them.
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Return zero-length string on EOF."""
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@ -169,7 +170,6 @@ class SSLSocket (socket):
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raise
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def write(self, data):
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"""Write DATA to the underlying SSL channel. Returns
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number of bytes of DATA actually transmitted."""
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@ -177,7 +177,6 @@ class SSLSocket (socket):
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return self._sslobj.write(data)
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def getpeercert(self, binary_form=False):
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"""Returns a formatted version of the data in the
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certificate provided by the other end of the SSL channel.
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Return None if no certificate was provided, {} if a
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@ -186,16 +185,14 @@ class SSLSocket (socket):
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self._checkClosed()
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return self._sslobj.peer_certificate(binary_form)
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def cipher (self):
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def cipher(self):
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self._checkClosed()
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if not self._sslobj:
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return None
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else:
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return self._sslobj.cipher()
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def send (self, data, flags=0):
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def send(self, data, flags=0):
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self._checkClosed()
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if self._sslobj:
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if flags != 0:
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@ -217,7 +214,7 @@ class SSLSocket (socket):
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else:
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return socket.send(self, data, flags)
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def send_to (self, data, addr, flags=0):
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def send_to(self, data, addr, flags=0):
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self._checkClosed()
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if self._sslobj:
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raise ValueError("send_to not allowed on instances of %s" %
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@ -225,7 +222,7 @@ class SSLSocket (socket):
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else:
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return socket.send_to(self, data, addr, flags)
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def sendall (self, data, flags=0):
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def sendall(self, data, flags=0):
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self._checkClosed()
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if self._sslobj:
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amount = len(data)
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@ -237,13 +234,13 @@ class SSLSocket (socket):
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else:
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return socket.sendall(self, data, flags)
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def recv (self, buflen=1024, flags=0):
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def recv(self, buflen=1024, flags=0):
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self._checkClosed()
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if self._sslobj:
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if flags != 0:
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raise ValueError(
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"non-zero flags not allowed in calls to recv_into() on %s" %
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self.__class__)
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"non-zero flags not allowed in calls to recv_into() on %s" %
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self.__class__)
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while True:
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try:
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return self.read(buflen)
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@ -255,7 +252,7 @@ class SSLSocket (socket):
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else:
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return socket.recv(self, buflen, flags)
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def recv_into (self, buffer, nbytes=None, flags=0):
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def recv_into(self, buffer, nbytes=None, flags=0):
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self._checkClosed()
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if buffer and (nbytes is None):
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nbytes = len(buffer)
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@ -264,8 +261,8 @@ class SSLSocket (socket):
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if self._sslobj:
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if flags != 0:
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raise ValueError(
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"non-zero flags not allowed in calls to recv_into() on %s" %
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self.__class__)
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"non-zero flags not allowed in calls to recv_into() on %s" %
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self.__class__)
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while True:
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try:
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v = self.read(nbytes, buffer)
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@ -279,7 +276,7 @@ class SSLSocket (socket):
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else:
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return socket.recv_into(self, buffer, nbytes, flags)
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def recv_from (self, addr, buflen=1024, flags=0):
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def recv_from(self, addr, buflen=1024, flags=0):
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self._checkClosed()
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if self._sslobj:
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raise ValueError("recv_from not allowed on instances of %s" %
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@ -287,27 +284,26 @@ class SSLSocket (socket):
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else:
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return socket.recv_from(self, addr, buflen, flags)
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def pending (self):
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def pending(self):
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self._checkClosed()
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if self._sslobj:
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return self._sslobj.pending()
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else:
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return 0
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def shutdown (self, how):
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def shutdown(self, how):
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self._checkClosed()
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self._sslobj = None
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socket.shutdown(self, how)
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def _real_close (self):
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def _real_close(self):
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self._sslobj = None
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# self._closed = True
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if self._base:
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self._base.close()
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socket._real_close(self)
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def do_handshake (self):
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def do_handshake(self):
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"""Perform a TLS/SSL handshake."""
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try:
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raise
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def connect(self, addr):
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"""Connects to remote ADDR, and then wraps the connection in
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an SSL channel."""
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self.do_handshake()
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def accept(self):
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"""Accepts a new connection from a remote client, and returns
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a tuple containing that new connection wrapped with a server-side
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SSL channel, and the address of the remote client."""
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return (SSLSocket(sock=newsock,
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keyfile=self.keyfile, certfile=self.certfile,
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server_side=True,
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cert_reqs=self.cert_reqs, ssl_version=self.ssl_version,
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cert_reqs=self.cert_reqs,
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ssl_version=self.ssl_version,
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ca_certs=self.ca_certs,
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do_handshake_on_connect=self.do_handshake_on_connect),
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do_handshake_on_connect=
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self.do_handshake_on_connect),
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addr)
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# some utility functions
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def cert_time_to_seconds(cert_time):
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"""Takes a date-time string in standard ASN1_print form
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("MON DAY 24HOUR:MINUTE:SEC YEAR TIMEZONE") and return
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a Python time value in seconds past the epoch."""
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PEM_FOOTER = "-----END CERTIFICATE-----"
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def DER_cert_to_PEM_cert(der_cert_bytes):
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"""Takes a certificate in binary DER format and returns the
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PEM version of it as a string."""
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PEM_FOOTER + '\n')
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def PEM_cert_to_DER_cert(pem_cert_string):
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"""Takes a certificate in ASCII PEM format and returns the
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DER-encoded version of it as a byte sequence"""
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d = pem_cert_string.strip()[len(PEM_HEADER):-len(PEM_FOOTER)]
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return base64.decodestring(d.encode('ASCII', 'strict'))
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def get_server_certificate (addr, ssl_version=PROTOCOL_SSLv3, ca_certs=None):
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def get_server_certificate(addr, ssl_version=PROTOCOL_SSLv3, ca_certs=None):
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"""Retrieve the certificate from the server at the specified address,
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and return it as a PEM-encoded string.
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If 'ca_certs' is specified, validate the server cert against it.
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s.close()
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return DER_cert_to_PEM_cert(dercert)
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def get_protocol_name (protocol_code):
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def get_protocol_name(protocol_code):
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if protocol_code == PROTOCOL_TLSv1:
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return "TLSv1"
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elif protocol_code == PROTOCOL_SSLv23:
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