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Keep fallback key marked as used if it's re-uploaded (#11382)
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changelog.d/11382.misc
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1
changelog.d/11382.misc
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@ -0,0 +1 @@
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Keep fallback key marked as used if it's re-uploaded.
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@ -408,29 +408,58 @@ class EndToEndKeyWorkerStore(EndToEndKeyBackgroundStore):
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fallback_keys: the keys to set. This is a map from key ID (which is
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of the form "algorithm:id") to key data.
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"""
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await self.db_pool.runInteraction(
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"set_e2e_fallback_keys_txn",
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self._set_e2e_fallback_keys_txn,
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user_id,
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device_id,
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fallback_keys,
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)
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await self.invalidate_cache_and_stream(
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"get_e2e_unused_fallback_key_types", (user_id, device_id)
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)
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def _set_e2e_fallback_keys_txn(
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self, txn: Connection, user_id: str, device_id: str, fallback_keys: JsonDict
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) -> None:
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# fallback_keys will usually only have one item in it, so using a for
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# loop (as opposed to calling simple_upsert_many_txn) won't be too bad
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# FIXME: make sure that only one key per algorithm is uploaded
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for key_id, fallback_key in fallback_keys.items():
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algorithm, key_id = key_id.split(":", 1)
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await self.db_pool.simple_upsert(
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"e2e_fallback_keys_json",
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old_key_json = self.db_pool.simple_select_one_onecol_txn(
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txn,
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table="e2e_fallback_keys_json",
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keyvalues={
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"user_id": user_id,
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"device_id": device_id,
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"algorithm": algorithm,
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},
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values={
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"key_id": key_id,
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"key_json": json_encoder.encode(fallback_key),
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"used": False,
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},
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desc="set_e2e_fallback_key",
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retcol="key_json",
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allow_none=True,
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)
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await self.invalidate_cache_and_stream(
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"get_e2e_unused_fallback_key_types", (user_id, device_id)
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)
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new_key_json = encode_canonical_json(fallback_key).decode("utf-8")
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# If the uploaded key is the same as the current fallback key,
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# don't do anything. This prevents marking the key as unused if it
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# was already used.
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if old_key_json != new_key_json:
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self.db_pool.simple_upsert_txn(
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txn,
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table="e2e_fallback_keys_json",
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keyvalues={
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"user_id": user_id,
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"device_id": device_id,
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"algorithm": algorithm,
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},
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values={
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"key_id": key_id,
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"key_json": json_encoder.encode(fallback_key),
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"used": False,
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},
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)
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@cached(max_entries=10000)
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async def get_e2e_unused_fallback_key_types(
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@ -162,6 +162,7 @@ class E2eKeysHandlerTestCase(unittest.HomeserverTestCase):
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local_user = "@boris:" + self.hs.hostname
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device_id = "xyz"
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fallback_key = {"alg1:k1": "key1"}
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fallback_key2 = {"alg1:k2": "key2"}
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otk = {"alg1:k2": "key2"}
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# we shouldn't have any unused fallback keys yet
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@ -213,6 +214,35 @@ class E2eKeysHandlerTestCase(unittest.HomeserverTestCase):
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{"failures": {}, "one_time_keys": {local_user: {device_id: fallback_key}}},
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)
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# re-uploading the same fallback key should still result in no unused fallback
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# keys
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self.get_success(
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self.handler.upload_keys_for_user(
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local_user,
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device_id,
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{"org.matrix.msc2732.fallback_keys": fallback_key},
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)
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)
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res = self.get_success(
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self.store.get_e2e_unused_fallback_key_types(local_user, device_id)
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)
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self.assertEqual(res, [])
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# uploading a new fallback key should result in an unused fallback key
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self.get_success(
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self.handler.upload_keys_for_user(
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local_user,
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device_id,
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{"org.matrix.msc2732.fallback_keys": fallback_key2},
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)
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)
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res = self.get_success(
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self.store.get_e2e_unused_fallback_key_types(local_user, device_id)
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)
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self.assertEqual(res, ["alg1"])
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# if the user uploads a one-time key, the next claim should fetch the
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# one-time key, and then go back to the fallback
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self.get_success(
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@ -238,7 +268,7 @@ class E2eKeysHandlerTestCase(unittest.HomeserverTestCase):
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)
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self.assertEqual(
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res,
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{"failures": {}, "one_time_keys": {local_user: {device_id: fallback_key}}},
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{"failures": {}, "one_time_keys": {local_user: {device_id: fallback_key2}}},
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)
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def test_replace_master_key(self):
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