203 lines
		
	
	
		
			6.1 KiB
		
	
	
	
		
			Python
		
	
	
			
		
		
	
	
			203 lines
		
	
	
		
			6.1 KiB
		
	
	
	
		
			Python
		
	
	
# -*- coding: utf-8 -*-
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# Copyright 2014, 2015 OpenMarket 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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from twisted.internet import defer
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from _base import SQLBaseStore
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from syutil.base64util import encode_base64
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from synapse.crypto.event_signing import compute_event_reference_hash
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class SignatureStore(SQLBaseStore):
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    """Persistence for event signatures and hashes"""
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    def _get_event_content_hashes_txn(self, txn, event_id):
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        """Get all the hashes for a given Event.
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        Args:
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            txn (cursor):
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            event_id (str): Id for the Event.
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        Returns:
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            A dict of algorithm -> hash.
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        """
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        query = (
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            "SELECT algorithm, hash"
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            " FROM event_content_hashes"
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            " WHERE event_id = ?"
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        )
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        txn.execute(query, (event_id, ))
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        return dict(txn.fetchall())
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    def _store_event_content_hash_txn(self, txn, event_id, algorithm,
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                                      hash_bytes):
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        """Store a hash for a Event
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        Args:
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            txn (cursor):
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            event_id (str): Id for the Event.
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            algorithm (str): Hashing algorithm.
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            hash_bytes (bytes): Hash function output bytes.
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        """
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        self._simple_insert_txn(
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            txn,
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            "event_content_hashes",
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            {
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                "event_id": event_id,
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                "algorithm": algorithm,
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                "hash": buffer(hash_bytes),
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            },
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        )
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    def get_event_reference_hashes(self, event_ids):
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        def f(txn):
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            return [
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                self._get_event_reference_hashes_txn(txn, ev)
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                for ev in event_ids
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            ]
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        return self.runInteraction(
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            "get_event_reference_hashes",
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            f
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        )
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    @defer.inlineCallbacks
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    def add_event_hashes(self, event_ids):
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        hashes = yield self.get_event_reference_hashes(
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            event_ids
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        )
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        hashes = [
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            {
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                k: encode_base64(v) for k, v in h.items()
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                if k == "sha256"
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            }
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            for h in hashes
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        ]
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        defer.returnValue(zip(event_ids, hashes))
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    def _get_event_reference_hashes_txn(self, txn, event_id):
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        """Get all the hashes for a given PDU.
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        Args:
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            txn (cursor):
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            event_id (str): Id for the Event.
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        Returns:
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            A dict of algorithm -> hash.
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        """
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        query = (
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            "SELECT algorithm, hash"
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            " FROM event_reference_hashes"
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            " WHERE event_id = ?"
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        )
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        txn.execute(query, (event_id, ))
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        return {k: v for k, v in txn.fetchall()}
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    def _store_event_reference_hashes_txn(self, txn, events):
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        """Store a hash for a PDU
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        Args:
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            txn (cursor):
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            events (list): list of Events.
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        """
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        vals = []
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        for event in events:
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            ref_alg, ref_hash_bytes = compute_event_reference_hash(event)
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            vals.append({
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                "event_id": event.event_id,
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                "algorithm": ref_alg,
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                "hash": buffer(ref_hash_bytes),
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            })
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        self._simple_insert_many_txn(
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            txn,
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            table="event_reference_hashes",
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            values=vals,
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        )
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    def _get_event_signatures_txn(self, txn, event_id):
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        """Get all the signatures for a given PDU.
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        Args:
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            txn (cursor):
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            event_id (str): Id for the Event.
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        Returns:
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            A dict of sig name -> dict(key_id -> signature_bytes)
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        """
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        query = (
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            "SELECT signature_name, key_id, signature"
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            " FROM event_signatures"
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            " WHERE event_id = ? "
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        )
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        txn.execute(query, (event_id, ))
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        rows = txn.fetchall()
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        res = {}
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        for name, key, sig in rows:
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            res.setdefault(name, {})[key] = sig
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        return res
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    def _store_event_signature_txn(self, txn, event_id, signature_name, key_id,
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                                   signature_bytes):
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        """Store a signature from the origin server for a PDU.
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        Args:
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            txn (cursor):
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            event_id (str): Id for the Event.
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            origin (str): origin of the Event.
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            key_id (str): Id for the signing key.
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            signature (bytes): The signature.
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        """
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        self._simple_insert_txn(
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            txn,
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            "event_signatures",
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            {
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                "event_id": event_id,
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                "signature_name": signature_name,
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                "key_id": key_id,
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                "signature": buffer(signature_bytes),
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            },
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        )
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    def _get_prev_event_hashes_txn(self, txn, event_id):
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        """Get all the hashes for previous PDUs of a PDU
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        Args:
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            txn (cursor):
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            event_id (str): Id for the Event.
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        Returns:
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            dict of (pdu_id, origin) -> dict of algorithm -> hash_bytes.
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        """
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        query = (
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            "SELECT prev_event_id, algorithm, hash"
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            " FROM event_edge_hashes"
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            " WHERE event_id = ?"
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        )
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        txn.execute(query, (event_id, ))
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        results = {}
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        for prev_event_id, algorithm, hash_bytes in txn.fetchall():
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            hashes = results.setdefault(prev_event_id, {})
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            hashes[algorithm] = hash_bytes
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        return results
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    def _store_prev_event_hash_txn(self, txn, event_id, prev_event_id,
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                                   algorithm, hash_bytes):
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        self._simple_insert_txn(
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            txn,
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            "event_edge_hashes",
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            {
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                "event_id": event_id,
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                "prev_event_id": prev_event_id,
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                "algorithm": algorithm,
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                "hash": buffer(hash_bytes),
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            },
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        )
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