mirror of
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292 lines
9.4 KiB
Python
292 lines
9.4 KiB
Python
"""Plugin common functions."""
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import os
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import re
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import shutil
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import tempfile
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import OpenSSL
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import pkg_resources
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import zope.interface
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from acme.jose import util as jose_util
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from letsencrypt import constants
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from letsencrypt import interfaces
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from letsencrypt import le_util
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def option_namespace(name):
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"""ArgumentParser options namespace (prefix of all options)."""
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return name + "-"
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def dest_namespace(name):
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"""ArgumentParser dest namespace (prefix of all destinations)."""
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return name.replace("-", "_") + "_"
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private_ips_regex = re.compile(
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r"(^127\.0\.0\.1)|(^10\.)|(^172\.1[6-9]\.)|"
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r"(^172\.2[0-9]\.)|(^172\.3[0-1]\.)|(^192\.168\.)")
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hostname_regex = re.compile(
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r"^(([a-z0-9]|[a-z0-9][a-z0-9\-]*[a-z0-9])\.)*[a-z]+$", re.IGNORECASE)
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@zope.interface.implementer(interfaces.IPlugin)
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class Plugin(object):
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"""Generic plugin."""
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# provider is not inherited, subclasses must define it on their own
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# @zope.interface.provider(interfaces.IPluginFactory)
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def __init__(self, config, name):
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self.config = config
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self.name = name
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@jose_util.abstractclassmethod
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def add_parser_arguments(cls, add):
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"""Add plugin arguments to the CLI argument parser.
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NOTE: If some of your flags interact with others, you can
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use cli.report_config_interaction to register this to ensure
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values are correctly saved/overridable during renewal.
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:param callable add: Function that proxies calls to
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`argparse.ArgumentParser.add_argument` prepending options
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with unique plugin name prefix.
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"""
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@classmethod
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def inject_parser_options(cls, parser, name):
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"""Inject parser options.
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See `~.IPlugin.inject_parser_options` for docs.
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"""
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# dummy function, doesn't check if dest.startswith(self.dest_namespace)
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def add(arg_name_no_prefix, *args, **kwargs):
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# pylint: disable=missing-docstring
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return parser.add_argument(
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"--{0}{1}".format(option_namespace(name), arg_name_no_prefix),
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*args, **kwargs)
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return cls.add_parser_arguments(add)
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@property
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def option_namespace(self):
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"""ArgumentParser options namespace (prefix of all options)."""
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return option_namespace(self.name)
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def option_name(self, name):
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"""Option name (include plugin namespace)."""
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return self.option_namespace + name
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@property
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def dest_namespace(self):
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"""ArgumentParser dest namespace (prefix of all destinations)."""
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return dest_namespace(self.name)
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def dest(self, var):
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"""Find a destination for given variable ``var``."""
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# this should do exactly the same what ArgumentParser(arg),
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# does to "arg" to compute "dest"
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return self.dest_namespace + var.replace("-", "_")
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def conf(self, var):
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"""Find a configuration value for variable ``var``."""
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return getattr(self.config, self.dest(var))
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# other
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class Addr(object):
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r"""Represents an virtual host address.
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:param str addr: addr part of vhost address
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:param str port: port number or \*, or ""
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"""
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def __init__(self, tup, ipv6=False):
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self.tup = tup
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self.ipv6 = ipv6
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@classmethod
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def fromstring(cls, str_addr):
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"""Initialize Addr from string."""
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if str_addr.startswith('['):
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# ipv6 addresses starts with [
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endIndex = str_addr.rfind(']')
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host = str_addr[:endIndex + 1]
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port = ''
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if len(str_addr) > endIndex + 2 and str_addr[endIndex + 1] == ':':
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port = str_addr[endIndex + 2:]
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return cls((host, port), ipv6=True)
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else:
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tup = str_addr.partition(':')
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return cls((tup[0], tup[2]))
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def __str__(self):
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if self.tup[1]:
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return "%s:%s" % self.tup
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return self.tup[0]
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def __eq__(self, other):
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if isinstance(other, self.__class__):
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if self.ipv6:
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# compare normalized to take different
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# styles of representation into account
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return (other.ipv6 and
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self._normalize_ipv6(self.tup[0]) ==
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self._normalize_ipv6(other.tup[0]) and
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self.tup[1] == other.tup[1])
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else:
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return self.tup == other.tup
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return False
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def __hash__(self):
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return hash(self.tup)
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def get_addr(self):
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"""Return addr part of Addr object."""
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return self.tup[0]
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def get_port(self):
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"""Return port."""
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return self.tup[1]
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def get_addr_obj(self, port):
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"""Return new address object with same addr and new port."""
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return self.__class__((self.tup[0], port), self.ipv6)
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def _normalize_ipv6(self, addr):
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"""Return IPv6 address in normalized form, helper function"""
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addr = addr.lstrip("[")
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addr = addr.rstrip("]")
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return self._explode_ipv6(addr)
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def get_ipv6_exploded(self):
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"""Return IPv6 in normalized form"""
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if self.ipv6:
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return ":".join(self._normalize_ipv6(self.tup[0]))
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return ""
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def _explode_ipv6(self, addr):
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"""Explode IPv6 address for comparison"""
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result = ['0', '0', '0', '0', '0', '0', '0', '0']
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addr_list = addr.split(":")
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if len(addr_list) > len(result):
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# too long, truncate
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addr_list = addr_list[0:len(result)]
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append_to_end = False
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for i in range(0, len(addr_list)):
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block = addr_list[i]
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if len(block) == 0:
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# encountered ::, so rest of the blocks should be
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# appended to the end
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append_to_end = True
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continue
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elif len(block) > 1:
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# remove leading zeros
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block = block.lstrip("0")
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if not append_to_end:
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result[i] = str(block)
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else:
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# count the location from the end using negative indices
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result[i-len(addr_list)] = str(block)
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return result
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class TLSSNI01(object):
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"""Abstract base for TLS-SNI-01 challenge performers"""
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def __init__(self, configurator):
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self.configurator = configurator
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self.achalls = []
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self.indices = []
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self.challenge_conf = os.path.join(
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configurator.config.config_dir, "le_tls_sni_01_cert_challenge.conf")
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# self.completed = 0
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def add_chall(self, achall, idx=None):
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"""Add challenge to TLSSNI01 object to perform at once.
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:param .KeyAuthorizationAnnotatedChallenge achall: Annotated
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TLSSNI01 challenge.
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:param int idx: index to challenge in a larger array
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"""
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self.achalls.append(achall)
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if idx is not None:
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self.indices.append(idx)
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def get_cert_path(self, achall):
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"""Returns standardized name for challenge certificate.
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:param .KeyAuthorizationAnnotatedChallenge achall: Annotated
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tls-sni-01 challenge.
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:returns: certificate file name
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:rtype: str
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"""
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return os.path.join(self.configurator.config.work_dir,
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achall.chall.encode("token") + ".crt")
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def get_key_path(self, achall):
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"""Get standardized path to challenge key."""
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return os.path.join(self.configurator.config.work_dir,
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achall.chall.encode("token") + '.pem')
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def _setup_challenge_cert(self, achall, cert_key=None):
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"""Generate and write out challenge certificate."""
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cert_path = self.get_cert_path(achall)
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key_path = self.get_key_path(achall)
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# Register the path before you write out the file
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self.configurator.reverter.register_file_creation(True, key_path)
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self.configurator.reverter.register_file_creation(True, cert_path)
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response, (cert, key) = achall.response_and_validation(
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cert_key=cert_key)
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cert_pem = OpenSSL.crypto.dump_certificate(
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OpenSSL.crypto.FILETYPE_PEM, cert)
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key_pem = OpenSSL.crypto.dump_privatekey(
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OpenSSL.crypto.FILETYPE_PEM, key)
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# Write out challenge cert and key
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with open(cert_path, "wb") as cert_chall_fd:
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cert_chall_fd.write(cert_pem)
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with le_util.safe_open(key_path, 'wb', chmod=0o400) as key_file:
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key_file.write(key_pem)
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return response
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# test utils used by letsencrypt_apache/letsencrypt_nginx (hence
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# "pragma: no cover") TODO: this might quickly lead to dead code (also
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# c.f. #383)
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def setup_ssl_options(config_dir, src, dest): # pragma: no cover
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"""Move the ssl_options into position and return the path."""
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option_path = os.path.join(config_dir, dest)
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shutil.copyfile(src, option_path)
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return option_path
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def dir_setup(test_dir, pkg): # pragma: no cover
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"""Setup the directories necessary for the configurator."""
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temp_dir = tempfile.mkdtemp("temp")
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config_dir = tempfile.mkdtemp("config")
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work_dir = tempfile.mkdtemp("work")
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os.chmod(temp_dir, constants.CONFIG_DIRS_MODE)
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os.chmod(config_dir, constants.CONFIG_DIRS_MODE)
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os.chmod(work_dir, constants.CONFIG_DIRS_MODE)
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test_configs = pkg_resources.resource_filename(
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pkg, os.path.join("testdata", test_dir))
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shutil.copytree(
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test_configs, os.path.join(temp_dir, test_dir), symlinks=True)
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return temp_dir, config_dir, work_dir
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