forked from MirrorHub/synapse
Support ACME for certificate provisioning (#4384)
This commit is contained in:
parent
12699a701f
commit
6129e52f43
8 changed files with 301 additions and 39 deletions
1
changelog.d/4384.feature
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1
changelog.d/4384.feature
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@ -0,0 +1 @@
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Synapse can now automatically provision TLS certificates via ACME (the protocol used by CAs like Let's Encrypt).
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@ -10,12 +10,12 @@
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# can be passed on the commandline for debugging.
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import argparse
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from concurrent.futures import ThreadPoolExecutor
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import os
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import signal
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import subprocess
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import sys
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import threading
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from concurrent.futures import ThreadPoolExecutor
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DISTS = (
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"debian:stretch",
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@ -13,10 +13,12 @@
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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import gc
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import logging
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import os
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import sys
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import traceback
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from six import iteritems
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@ -324,17 +326,12 @@ def setup(config_options):
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events.USE_FROZEN_DICTS = config.use_frozen_dicts
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tls_server_context_factory = context_factory.ServerContextFactory(config)
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tls_client_options_factory = context_factory.ClientTLSOptionsFactory(config)
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database_engine = create_engine(config.database_config)
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config.database_config["args"]["cp_openfun"] = database_engine.on_new_connection
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hs = SynapseHomeServer(
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config.server_name,
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db_config=config.database_config,
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tls_server_context_factory=tls_server_context_factory,
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tls_client_options_factory=tls_client_options_factory,
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config=config,
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version_string="Synapse/" + get_version_string(synapse),
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database_engine=database_engine,
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@ -361,12 +358,53 @@ def setup(config_options):
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logger.info("Database prepared in %s.", config.database_config['name'])
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hs.setup()
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hs.start_listening()
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@defer.inlineCallbacks
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def start():
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hs.get_pusherpool().start()
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hs.get_datastore().start_profiling()
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hs.get_datastore().start_doing_background_updates()
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try:
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# Check if the certificate is still valid.
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cert_days_remaining = hs.config.is_disk_cert_valid()
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if hs.config.acme_enabled:
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# If ACME is enabled, we might need to provision a certificate
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# before starting.
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acme = hs.get_acme_handler()
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# Start up the webservices which we will respond to ACME
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# challenges with.
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yield acme.start_listening()
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# We want to reprovision if cert_days_remaining is None (meaning no
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# certificate exists), or the days remaining number it returns
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# is less than our re-registration threshold.
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if (cert_days_remaining is None) or (
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not cert_days_remaining > hs.config.acme_reprovision_threshold
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):
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yield acme.provision_certificate()
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# Read the certificate from disk and build the context factories for
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# TLS.
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hs.config.read_certificate_from_disk()
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hs.tls_server_context_factory = context_factory.ServerContextFactory(config)
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hs.tls_client_options_factory = context_factory.ClientTLSOptionsFactory(
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config
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)
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# It is now safe to start your Synapse.
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hs.start_listening()
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hs.get_pusherpool().start()
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hs.get_datastore().start_profiling()
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hs.get_datastore().start_doing_background_updates()
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except Exception as e:
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# If a DeferredList failed (like in listening on the ACME listener),
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# we need to print the subfailure explicitly.
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if isinstance(e, defer.FirstError):
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e.subFailure.printTraceback(sys.stderr)
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sys.exit(1)
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# Something else went wrong when starting. Print it and bail out.
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traceback.print_exc(file=sys.stderr)
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sys.exit(1)
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reactor.callWhenRunning(start)
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@ -367,7 +367,7 @@ class Config(object):
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if not keys_directory:
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keys_directory = os.path.dirname(config_files[-1])
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config_dir_path = os.path.abspath(keys_directory)
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self.config_dir_path = os.path.abspath(keys_directory)
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specified_config = {}
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for config_file in config_files:
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@ -379,7 +379,7 @@ class Config(object):
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server_name = specified_config["server_name"]
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config_string = self.generate_config(
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config_dir_path=config_dir_path,
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config_dir_path=self.config_dir_path,
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data_dir_path=os.getcwd(),
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server_name=server_name,
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generate_secrets=False,
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@ -13,45 +13,38 @@
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# See the License for the specific language governing permissions and
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# limitations under the License.
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import logging
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import os
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from datetime import datetime
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from hashlib import sha256
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from unpaddedbase64 import encode_base64
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from OpenSSL import crypto
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from ._base import Config
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from synapse.config._base import Config
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logger = logging.getLogger()
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class TlsConfig(Config):
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def read_config(self, config):
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self.tls_certificate = self.read_tls_certificate(
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config.get("tls_certificate_path")
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)
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self.tls_certificate_file = config.get("tls_certificate_path")
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acme_config = config.get("acme", {})
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self.acme_enabled = acme_config.get("enabled", False)
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self.acme_url = acme_config.get(
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"url", "https://acme-v01.api.letsencrypt.org/directory"
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)
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self.acme_port = acme_config.get("port", 8449)
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self.acme_bind_addresses = acme_config.get("bind_addresses", ["127.0.0.1"])
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self.acme_reprovision_threshold = acme_config.get("reprovision_threshold", 30)
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self.tls_certificate_file = os.path.abspath(config.get("tls_certificate_path"))
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self.tls_private_key_file = os.path.abspath(config.get("tls_private_key_path"))
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self._original_tls_fingerprints = config["tls_fingerprints"]
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self.tls_fingerprints = list(self._original_tls_fingerprints)
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self.no_tls = config.get("no_tls", False)
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if self.no_tls:
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self.tls_private_key = None
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else:
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self.tls_private_key = self.read_tls_private_key(
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config.get("tls_private_key_path")
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)
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self.tls_fingerprints = config["tls_fingerprints"]
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# Check that our own certificate is included in the list of fingerprints
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# and include it if it is not.
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x509_certificate_bytes = crypto.dump_certificate(
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crypto.FILETYPE_ASN1,
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self.tls_certificate
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)
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sha256_fingerprint = encode_base64(sha256(x509_certificate_bytes).digest())
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sha256_fingerprints = set(f["sha256"] for f in self.tls_fingerprints)
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if sha256_fingerprint not in sha256_fingerprints:
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self.tls_fingerprints.append({u"sha256": sha256_fingerprint})
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# This config option applies to non-federation HTTP clients
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# (e.g. for talking to recaptcha, identity servers, and such)
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# It should never be used in production, and is intended for
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"use_insecure_ssl_client_just_for_testing_do_not_use"
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)
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self.tls_certificate = None
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self.tls_private_key = None
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def is_disk_cert_valid(self):
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"""
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Is the certificate we have on disk valid, and if so, for how long?
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Returns:
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int: Days remaining of certificate validity.
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None: No certificate exists.
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"""
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if not os.path.exists(self.tls_certificate_file):
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return None
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try:
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with open(self.tls_certificate_file, 'rb') as f:
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cert_pem = f.read()
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except Exception:
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logger.exception("Failed to read existing certificate off disk!")
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raise
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try:
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tls_certificate = crypto.load_certificate(crypto.FILETYPE_PEM, cert_pem)
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except Exception:
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logger.exception("Failed to parse existing certificate off disk!")
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raise
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# YYYYMMDDhhmmssZ -- in UTC
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expires_on = datetime.strptime(
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tls_certificate.get_notAfter().decode('ascii'), "%Y%m%d%H%M%SZ"
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)
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now = datetime.utcnow()
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days_remaining = (expires_on - now).days
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return days_remaining
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def read_certificate_from_disk(self):
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"""
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Read the certificates from disk.
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"""
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self.tls_certificate = self.read_tls_certificate(self.tls_certificate_file)
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if not self.no_tls:
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self.tls_private_key = self.read_tls_private_key(self.tls_private_key_file)
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self.tls_fingerprints = list(self._original_tls_fingerprints)
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# Check that our own certificate is included in the list of fingerprints
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# and include it if it is not.
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x509_certificate_bytes = crypto.dump_certificate(
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crypto.FILETYPE_ASN1, self.tls_certificate
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)
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sha256_fingerprint = encode_base64(sha256(x509_certificate_bytes).digest())
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sha256_fingerprints = set(f["sha256"] for f in self.tls_fingerprints)
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if sha256_fingerprint not in sha256_fingerprints:
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self.tls_fingerprints.append({u"sha256": sha256_fingerprint})
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def default_config(self, config_dir_path, server_name, **kwargs):
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base_key_name = os.path.join(config_dir_path, server_name)
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tls_certificate_path = base_key_name + ".tls.crt"
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tls_private_key_path = base_key_name + ".tls.key"
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return """\
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return (
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"""\
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# PEM encoded X509 certificate for TLS.
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# You can replace the self-signed certificate that synapse
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# autogenerates on launch with your own SSL certificate + key pair
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#
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tls_fingerprints: []
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# tls_fingerprints: [{"sha256": "<base64_encoded_sha256_fingerprint>"}]
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""" % locals()
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## Support for ACME certificate auto-provisioning.
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# acme:
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# enabled: false
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## ACME path.
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## If you only want to test, use the staging url:
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## https://acme-staging.api.letsencrypt.org/directory
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# url: 'https://acme-v01.api.letsencrypt.org/directory'
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## Port number (to listen for the HTTP-01 challenge).
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## Using port 80 requires utilising something like authbind, or proxying to it.
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# port: 8449
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## Hosts to bind to.
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# bind_addresses: ['127.0.0.1']
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## How many days remaining on a certificate before it is renewed.
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# reprovision_threshold: 30
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"""
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% locals()
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)
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def read_tls_certificate(self, cert_path):
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cert_pem = self.read_file(cert_path, "tls_certificate")
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147
synapse/handlers/acme.py
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147
synapse/handlers/acme.py
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# -*- coding: utf-8 -*-
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# Copyright 2019 New Vector Ltd
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#
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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import logging
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import attr
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from zope.interface import implementer
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from twisted.internet import defer
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from twisted.internet.endpoints import serverFromString
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from twisted.python.filepath import FilePath
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from twisted.python.url import URL
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from twisted.web import server, static
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from twisted.web.resource import Resource
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logger = logging.getLogger(__name__)
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try:
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from txacme.interfaces import ICertificateStore
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@attr.s
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@implementer(ICertificateStore)
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class ErsatzStore(object):
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"""
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A store that only stores in memory.
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"""
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certs = attr.ib(default=attr.Factory(dict))
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def store(self, server_name, pem_objects):
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self.certs[server_name] = [o.as_bytes() for o in pem_objects]
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return defer.succeed(None)
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except ImportError:
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# txacme is missing
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pass
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class AcmeHandler(object):
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def __init__(self, hs):
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self.hs = hs
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self.reactor = hs.get_reactor()
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@defer.inlineCallbacks
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def start_listening(self):
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# Configure logging for txacme, if you need to debug
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# from eliot import add_destinations
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# from eliot.twisted import TwistedDestination
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#
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# add_destinations(TwistedDestination())
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from txacme.challenges import HTTP01Responder
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from txacme.service import AcmeIssuingService
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from txacme.endpoint import load_or_create_client_key
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from txacme.client import Client
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from josepy.jwa import RS256
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self._store = ErsatzStore()
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responder = HTTP01Responder()
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self._issuer = AcmeIssuingService(
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cert_store=self._store,
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client_creator=(
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lambda: Client.from_url(
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reactor=self.reactor,
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url=URL.from_text(self.hs.config.acme_url),
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key=load_or_create_client_key(
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FilePath(self.hs.config.config_dir_path)
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),
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alg=RS256,
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)
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),
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clock=self.reactor,
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responders=[responder],
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)
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well_known = Resource()
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well_known.putChild(b'acme-challenge', responder.resource)
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responder_resource = Resource()
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responder_resource.putChild(b'.well-known', well_known)
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responder_resource.putChild(b'check', static.Data(b'OK', b'text/plain'))
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srv = server.Site(responder_resource)
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listeners = []
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for host in self.hs.config.acme_bind_addresses:
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logger.info(
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"Listening for ACME requests on %s:%s", host, self.hs.config.acme_port
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)
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endpoint = serverFromString(
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self.reactor, "tcp:%s:interface=%s" % (self.hs.config.acme_port, host)
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)
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listeners.append(endpoint.listen(srv))
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# Make sure we are registered to the ACME server. There's no public API
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# for this, it is usually triggered by startService, but since we don't
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# want it to control where we save the certificates, we have to reach in
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# and trigger the registration machinery ourselves.
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self._issuer._registered = False
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yield self._issuer._ensure_registered()
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# Return a Deferred that will fire when all the servers have started up.
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yield defer.DeferredList(listeners, fireOnOneErrback=True, consumeErrors=True)
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@defer.inlineCallbacks
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def provision_certificate(self):
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logger.warning("Reprovisioning %s", self.hs.hostname)
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try:
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yield self._issuer.issue_cert(self.hs.hostname)
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except Exception:
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logger.exception("Fail!")
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raise
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logger.warning("Reprovisioned %s, saving.", self.hs.hostname)
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cert_chain = self._store.certs[self.hs.hostname]
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try:
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with open(self.hs.config.tls_private_key_file, "wb") as private_key_file:
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for x in cert_chain:
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if x.startswith(b"-----BEGIN RSA PRIVATE KEY-----"):
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private_key_file.write(x)
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with open(self.hs.config.tls_certificate_file, "wb") as certificate_file:
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for x in cert_chain:
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if x.startswith(b"-----BEGIN CERTIFICATE-----"):
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certificate_file.write(x)
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except Exception:
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logger.exception("Failed saving!")
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raise
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defer.returnValue(True)
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@ -79,6 +79,10 @@ CONDITIONAL_REQUIREMENTS = {
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# ConsentResource uses select_autoescape, which arrived in jinja 2.9
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"resources.consent": ["Jinja2>=2.9"],
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# ACME support is required to provision TLS certificates from authorities
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# that use the protocol, such as Let's Encrypt.
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"acme": ["txacme>=0.9.2"],
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"saml2": ["pysaml2>=4.5.0"],
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"url_preview": ["lxml>=3.5.0"],
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"test": ["mock>=2.0"],
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@ -46,6 +46,7 @@ from synapse.federation.transport.client import TransportLayerClient
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from synapse.groups.attestations import GroupAttestationSigning, GroupAttestionRenewer
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from synapse.groups.groups_server import GroupsServerHandler
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from synapse.handlers import Handlers
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from synapse.handlers.acme import AcmeHandler
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from synapse.handlers.appservice import ApplicationServicesHandler
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from synapse.handlers.auth import AuthHandler, MacaroonGenerator
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from synapse.handlers.deactivate_account import DeactivateAccountHandler
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@ -129,6 +130,7 @@ class HomeServer(object):
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'sync_handler',
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'typing_handler',
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'room_list_handler',
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'acme_handler',
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'auth_handler',
|
||||
'device_handler',
|
||||
'e2e_keys_handler',
|
||||
|
@ -310,6 +312,9 @@ class HomeServer(object):
|
|||
def build_e2e_room_keys_handler(self):
|
||||
return E2eRoomKeysHandler(self)
|
||||
|
||||
def build_acme_handler(self):
|
||||
return AcmeHandler(self)
|
||||
|
||||
def build_application_service_api(self):
|
||||
return ApplicationServiceApi(self)
|
||||
|
||||
|
|
Loading…
Reference in a new issue