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This is being introduced as part of Sliding Sync but doesn't have any sliding window component. It's just a way to get E2EE events without having to sit through a big initial sync (`/sync` v2). And we can avoid encryption events being backed up by the main sync response or vice-versa. Part of some Sliding Sync simplification/experimentation. See [this discussion](https://github.com/element-hq/synapse/pull/17167#discussion_r1610495866) for why it may not be as useful as we thought. Based on: - https://github.com/matrix-org/matrix-spec-proposals/pull/3575 - https://github.com/matrix-org/matrix-spec-proposals/pull/3885 - https://github.com/matrix-org/matrix-spec-proposals/pull/3884
457 lines
16 KiB
Python
457 lines
16 KiB
Python
#
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# This file is licensed under the Affero General Public License (AGPL) version 3.
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#
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# Copyright 2022 The Matrix.org Foundation C.I.C.
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# Copyright (C) 2023 New Vector, Ltd
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#
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# This program is free software: you can redistribute it and/or modify
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# it under the terms of the GNU Affero General Public License as
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# published by the Free Software Foundation, either version 3 of the
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# License, or (at your option) any later version.
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#
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# See the GNU Affero General Public License for more details:
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# <https://www.gnu.org/licenses/agpl-3.0.html>.
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#
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# Originally licensed under the Apache License, Version 2.0:
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# <http://www.apache.org/licenses/LICENSE-2.0>.
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#
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# [This file includes modifications made by New Vector Limited]
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#
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#
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from http import HTTPStatus
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from twisted.internet.defer import ensureDeferred
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from twisted.test.proto_helpers import MemoryReactor
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from synapse.api.errors import NotFoundError
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from synapse.rest import admin, devices, sync
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from synapse.rest.client import keys, login, register
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from synapse.server import HomeServer
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from synapse.types import JsonDict, UserID, create_requester
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from synapse.util import Clock
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from tests import unittest
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class DevicesTestCase(unittest.HomeserverTestCase):
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servlets = [
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admin.register_servlets,
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login.register_servlets,
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sync.register_servlets,
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]
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def prepare(self, reactor: MemoryReactor, clock: Clock, hs: HomeServer) -> None:
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self.handler = hs.get_device_handler()
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@unittest.override_config({"delete_stale_devices_after": 72000000})
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def test_delete_stale_devices(self) -> None:
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"""Tests that stale devices are automatically removed after a set time of
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inactivity.
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The configuration is set to delete devices that haven't been used in the past 20h.
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"""
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# Register a user and creates 2 devices for them.
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user_id = self.register_user("user", "password")
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tok1 = self.login("user", "password", device_id="abc")
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tok2 = self.login("user", "password", device_id="def")
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# Sync them so they have a last_seen value.
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self.make_request("GET", "/sync", access_token=tok1)
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self.make_request("GET", "/sync", access_token=tok2)
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# Advance half a day and sync again with one of the devices, so that the next
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# time the background job runs we don't delete this device (since it will look
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# for devices that haven't been used for over an hour).
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self.reactor.advance(43200)
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self.make_request("GET", "/sync", access_token=tok1)
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# Advance another half a day, and check that the device that has synced still
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# exists but the one that hasn't has been removed.
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self.reactor.advance(43200)
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self.get_success(self.handler.get_device(user_id, "abc"))
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self.get_failure(self.handler.get_device(user_id, "def"), NotFoundError)
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class DehydratedDeviceTestCase(unittest.HomeserverTestCase):
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servlets = [
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admin.register_servlets_for_client_rest_resource,
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login.register_servlets,
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register.register_servlets,
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devices.register_servlets,
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keys.register_servlets,
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]
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def prepare(self, reactor: MemoryReactor, clock: Clock, hs: HomeServer) -> None:
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self.registration = hs.get_registration_handler()
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self.message_handler = hs.get_device_message_handler()
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def test_PUT(self) -> None:
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"""Sanity-check that we can PUT a dehydrated device.
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Detects https://github.com/matrix-org/synapse/issues/14334.
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"""
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alice = self.register_user("alice", "correcthorse")
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token = self.login(alice, "correcthorse")
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# Have alice update their device list
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channel = self.make_request(
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"PUT",
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"_matrix/client/unstable/org.matrix.msc2697.v2/dehydrated_device",
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{
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"device_data": {
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"algorithm": "org.matrix.msc2697.v1.dehydration.v1.olm",
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"account": "dehydrated_device",
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},
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"device_keys": {
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"user_id": "@alice:test",
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"device_id": "device1",
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"valid_until_ts": "80",
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"algorithms": [
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"m.olm.curve25519-aes-sha2",
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],
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"keys": {
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"<algorithm>:<device_id>": "<key_base64>",
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},
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"signatures": {
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"<user_id>": {"<algorithm>:<device_id>": "<signature_base64>"}
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},
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},
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},
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access_token=token,
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shorthand=False,
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)
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self.assertEqual(channel.code, HTTPStatus.OK, channel.json_body)
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device_id = channel.json_body.get("device_id")
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self.assertIsInstance(device_id, str)
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@unittest.override_config(
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{"experimental_features": {"msc2697_enabled": False, "msc3814_enabled": True}}
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)
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def test_dehydrate_msc3814(self) -> None:
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user = self.register_user("mikey", "pass")
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token = self.login(user, "pass", device_id="device1")
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content: JsonDict = {
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"device_data": {
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"algorithm": "m.dehydration.v1.olm",
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},
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"device_id": "device1",
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"initial_device_display_name": "foo bar",
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"device_keys": {
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"user_id": "@mikey:test",
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"device_id": "device1",
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"valid_until_ts": "80",
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"algorithms": [
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"m.olm.curve25519-aes-sha2",
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],
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"keys": {
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"<algorithm>:<device_id>": "<key_base64>",
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},
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"signatures": {
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"<user_id>": {"<algorithm>:<device_id>": "<signature_base64>"}
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},
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},
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"fallback_keys": {
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"alg1:device1": "f4llb4ckk3y",
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"signed_<algorithm>:<device_id>": {
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"fallback": "true",
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"key": "f4llb4ckk3y",
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"signatures": {
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"<user_id>": {"<algorithm>:<device_id>": "<key_base64>"}
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},
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},
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},
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"one_time_keys": {"alg1:k1": "0net1m3k3y"},
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}
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channel = self.make_request(
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"PUT",
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"_matrix/client/unstable/org.matrix.msc3814.v1/dehydrated_device",
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content=content,
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access_token=token,
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shorthand=False,
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)
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self.assertEqual(channel.code, 200)
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device_id = channel.json_body.get("device_id")
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assert device_id is not None
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self.assertIsInstance(device_id, str)
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self.assertEqual("device1", device_id)
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# test that we can now GET the dehydrated device info
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channel = self.make_request(
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"GET",
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"_matrix/client/unstable/org.matrix.msc3814.v1/dehydrated_device",
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access_token=token,
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shorthand=False,
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)
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self.assertEqual(channel.code, 200)
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returned_device_id = channel.json_body.get("device_id")
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self.assertEqual(returned_device_id, device_id)
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device_data = channel.json_body.get("device_data")
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expected_device_data = {
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"algorithm": "m.dehydration.v1.olm",
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}
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self.assertEqual(device_data, expected_device_data)
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# test that the keys are correctly uploaded
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channel = self.make_request(
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"POST",
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"/_matrix/client/r0/keys/query",
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{
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"device_keys": {
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user: ["device1"],
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},
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},
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token,
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)
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self.assertEqual(channel.code, 200)
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self.assertEqual(
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channel.json_body["device_keys"][user][device_id]["keys"],
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content["device_keys"]["keys"],
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)
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# first claim should return the onetime key we uploaded
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res = self.get_success(
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self.hs.get_e2e_keys_handler().claim_one_time_keys(
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{user: {device_id: {"alg1": 1}}},
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UserID.from_string(user),
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timeout=None,
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always_include_fallback_keys=False,
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)
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)
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self.assertEqual(
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res,
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{
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"failures": {},
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"one_time_keys": {user: {device_id: {"alg1:k1": "0net1m3k3y"}}},
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},
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)
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# second claim should return fallback key
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res2 = self.get_success(
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self.hs.get_e2e_keys_handler().claim_one_time_keys(
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{user: {device_id: {"alg1": 1}}},
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UserID.from_string(user),
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timeout=None,
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always_include_fallback_keys=False,
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)
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)
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self.assertEqual(
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res2,
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{
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"failures": {},
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"one_time_keys": {user: {device_id: {"alg1:device1": "f4llb4ckk3y"}}},
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},
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)
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# create another device for the user
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(
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new_device_id,
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_,
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_,
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_,
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) = self.get_success(
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self.registration.register_device(
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user_id=user,
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device_id=None,
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initial_display_name="new device",
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)
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)
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requester = create_requester(user, device_id=new_device_id)
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# Send a message to the dehydrated device
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ensureDeferred(
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self.message_handler.send_device_message(
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requester=requester,
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message_type="test.message",
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messages={user: {device_id: {"body": "test_message"}}},
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)
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)
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self.pump()
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# make sure we can fetch the message with our dehydrated device id
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channel = self.make_request(
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"POST",
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f"_matrix/client/unstable/org.matrix.msc3814.v1/dehydrated_device/{device_id}/events",
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content={},
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access_token=token,
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shorthand=False,
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)
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self.assertEqual(channel.code, 200)
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expected_content = {"body": "test_message"}
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self.assertEqual(channel.json_body["events"][0]["content"], expected_content)
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# fetch messages again and make sure that the message was not deleted
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channel = self.make_request(
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"POST",
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f"_matrix/client/unstable/org.matrix.msc3814.v1/dehydrated_device/{device_id}/events",
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content={},
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access_token=token,
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shorthand=False,
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)
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self.assertEqual(channel.code, 200)
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self.assertEqual(channel.json_body["events"][0]["content"], expected_content)
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next_batch_token = channel.json_body.get("next_batch")
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# make sure fetching messages with next batch token works - there are no unfetched
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# messages so we should receive an empty array
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content = {"next_batch": next_batch_token}
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channel = self.make_request(
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"POST",
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f"_matrix/client/unstable/org.matrix.msc3814.v1/dehydrated_device/{device_id}/events",
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content=content,
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access_token=token,
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shorthand=False,
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)
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self.assertEqual(channel.code, 200)
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self.assertEqual(channel.json_body["events"], [])
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# make sure we can delete the dehydrated device
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channel = self.make_request(
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"DELETE",
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"_matrix/client/unstable/org.matrix.msc3814.v1/dehydrated_device",
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access_token=token,
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shorthand=False,
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)
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self.assertEqual(channel.code, 200)
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# ...and after deleting it is no longer available
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channel = self.make_request(
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"GET",
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"_matrix/client/unstable/org.matrix.msc3814.v1/dehydrated_device",
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access_token=token,
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shorthand=False,
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)
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self.assertEqual(channel.code, 401)
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@unittest.override_config(
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{"experimental_features": {"msc2697_enabled": False, "msc3814_enabled": True}}
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)
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def test_msc3814_dehydrated_device_delete_works(self) -> None:
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user = self.register_user("mikey", "pass")
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token = self.login(user, "pass", device_id="device1")
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content: JsonDict = {
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"device_data": {
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"algorithm": "m.dehydration.v1.olm",
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},
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"device_id": "device2",
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"initial_device_display_name": "foo bar",
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"device_keys": {
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"user_id": "@mikey:test",
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"device_id": "device2",
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"valid_until_ts": "80",
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"algorithms": [
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"m.olm.curve25519-aes-sha2",
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],
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"keys": {
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"<algorithm>:<device_id>": "<key_base64>",
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},
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"signatures": {
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"<user_id>": {"<algorithm>:<device_id>": "<signature_base64>"}
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},
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},
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}
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channel = self.make_request(
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"PUT",
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"_matrix/client/unstable/org.matrix.msc3814.v1/dehydrated_device",
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content=content,
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access_token=token,
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shorthand=False,
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)
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self.assertEqual(channel.code, 200)
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device_id = channel.json_body.get("device_id")
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assert device_id is not None
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self.assertIsInstance(device_id, str)
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self.assertEqual("device2", device_id)
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# ensure that keys were uploaded and available
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channel = self.make_request(
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"POST",
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"/_matrix/client/r0/keys/query",
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{
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"device_keys": {
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user: ["device2"],
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},
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},
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token,
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)
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self.assertEqual(
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channel.json_body["device_keys"][user]["device2"]["keys"],
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{
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"<algorithm>:<device_id>": "<key_base64>",
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},
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)
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# delete the dehydrated device
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channel = self.make_request(
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"DELETE",
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"_matrix/client/unstable/org.matrix.msc3814.v1/dehydrated_device",
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access_token=token,
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shorthand=False,
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)
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self.assertEqual(channel.code, 200)
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# ensure that keys are no longer available for deleted device
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channel = self.make_request(
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"POST",
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"/_matrix/client/r0/keys/query",
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{
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"device_keys": {
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user: ["device2"],
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},
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},
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token,
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)
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self.assertEqual(channel.json_body["device_keys"], {"@mikey:test": {}})
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# check that an old device is deleted when user PUTs a new device
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# First, create a device
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content["device_id"] = "device3"
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content["device_keys"]["device_id"] = "device3"
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channel = self.make_request(
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"PUT",
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"_matrix/client/unstable/org.matrix.msc3814.v1/dehydrated_device",
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content=content,
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access_token=token,
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shorthand=False,
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)
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self.assertEqual(channel.code, 200)
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device_id = channel.json_body.get("device_id")
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assert device_id is not None
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self.assertIsInstance(device_id, str)
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self.assertEqual("device3", device_id)
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# create a second device without deleting first device
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content["device_id"] = "device4"
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content["device_keys"]["device_id"] = "device4"
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channel = self.make_request(
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"PUT",
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"_matrix/client/unstable/org.matrix.msc3814.v1/dehydrated_device",
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content=content,
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access_token=token,
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shorthand=False,
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)
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self.assertEqual(channel.code, 200)
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device_id = channel.json_body.get("device_id")
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assert device_id is not None
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self.assertIsInstance(device_id, str)
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self.assertEqual("device4", device_id)
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# check that the second device that was created is what is returned when we GET
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channel = self.make_request(
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"GET",
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"_matrix/client/unstable/org.matrix.msc3814.v1/dehydrated_device",
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access_token=token,
|
|
shorthand=False,
|
|
)
|
|
self.assertEqual(channel.code, 200)
|
|
returned_device_id = channel.json_body["device_id"]
|
|
self.assertEqual(returned_device_id, "device4")
|
|
|
|
# and that if we query the keys for the first device they are not there
|
|
channel = self.make_request(
|
|
"POST",
|
|
"/_matrix/client/r0/keys/query",
|
|
{
|
|
"device_keys": {
|
|
user: ["device3"],
|
|
},
|
|
},
|
|
token,
|
|
)
|
|
self.assertEqual(channel.json_body["device_keys"], {"@mikey:test": {}})
|