MatrixSynapse/synapse/replication/tcp/streams/_base.py

634 lines
20 KiB
Python

# Copyright 2017 Vector Creations Ltd
# Copyright 2019 New Vector Ltd
#
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at
#
# http://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License.
import heapq
import logging
from collections import namedtuple
from typing import (
TYPE_CHECKING,
Any,
Awaitable,
Callable,
List,
Optional,
Tuple,
TypeVar,
)
import attr
from synapse.replication.http.streams import ReplicationGetStreamUpdates
if TYPE_CHECKING:
from synapse.server import HomeServer
logger = logging.getLogger(__name__)
# the number of rows to request from an update_function.
_STREAM_UPDATE_TARGET_ROW_COUNT = 100
# Some type aliases to make things a bit easier.
# A stream position token
Token = int
# The type of a stream update row, after JSON deserialisation, but before
# parsing with Stream.parse_row (which turns it into a `ROW_TYPE`). Normally it's
# just a row from a database query, though this is dependent on the stream in question.
#
StreamRow = TypeVar("StreamRow", bound=Tuple)
# The type returned by the update_function of a stream, as well as get_updates(),
# get_updates_since, etc.
#
# It consists of a triplet `(updates, new_last_token, limited)`, where:
# * `updates` is a list of `(token, row)` entries.
# * `new_last_token` is the new position in stream.
# * `limited` is whether there are more updates to fetch.
#
StreamUpdateResult = Tuple[List[Tuple[Token, StreamRow]], Token, bool]
# The type of an update_function for a stream
#
# The arguments are:
#
# * instance_name: the writer of the stream
# * from_token: the previous stream token: the starting point for fetching the
# updates
# * to_token: the new stream token: the point to get updates up to
# * target_row_count: a target for the number of rows to be returned.
#
# The update_function is expected to return up to _approximately_ target_row_count rows.
# If there are more updates available, it should set `limited` in the result, and
# it will be called again to get the next batch.
#
UpdateFunction = Callable[[str, Token, Token, int], Awaitable[StreamUpdateResult]]
class Stream:
"""Base class for the streams.
Provides a `get_updates()` function that returns new updates since the last
time it was called.
"""
NAME: str # The name of the stream
# The type of the row. Used by the default impl of parse_row.
ROW_TYPE: Any = None
@classmethod
def parse_row(cls, row: StreamRow):
"""Parse a row received over replication
By default, assumes that the row data is an array object and passes its contents
to the constructor of the ROW_TYPE for this stream.
Args:
row: row data from the incoming RDATA command, after json decoding
Returns:
ROW_TYPE object for this stream
"""
return cls.ROW_TYPE(*row)
def __init__(
self,
local_instance_name: str,
current_token_function: Callable[[str], Token],
update_function: UpdateFunction,
):
"""Instantiate a Stream
`current_token_function` and `update_function` are callbacks which
should be implemented by subclasses.
`current_token_function` takes an instance name, which is a writer to
the stream, and returns the position in the stream of the writer (as
viewed from the current process). On the writer process this is where
the writer has successfully written up to, whereas on other processes
this is the position which we have received updates up to over
replication. (Note that most streams have a single writer and so their
implementations ignore the instance name passed in).
`update_function` is called to get updates for this stream between a
pair of stream tokens. See the `UpdateFunction` type definition for more
info.
Args:
local_instance_name: The instance name of the current process
current_token_function: callback to get the current token, as above
update_function: callback go get stream updates, as above
"""
self.local_instance_name = local_instance_name
self.current_token = current_token_function
self.update_function = update_function
# The token from which we last asked for updates
self.last_token = self.current_token(self.local_instance_name)
def discard_updates_and_advance(self):
"""Called when the stream should advance but the updates would be discarded,
e.g. when there are no currently connected workers.
"""
self.last_token = self.current_token(self.local_instance_name)
async def get_updates(self) -> StreamUpdateResult:
"""Gets all updates since the last time this function was called (or
since the stream was constructed if it hadn't been called before).
Returns:
A triplet `(updates, new_last_token, limited)`, where `updates` is
a list of `(token, row)` entries, `new_last_token` is the new
position in stream, and `limited` is whether there are more updates
to fetch.
"""
current_token = self.current_token(self.local_instance_name)
updates, current_token, limited = await self.get_updates_since(
self.local_instance_name, self.last_token, current_token
)
self.last_token = current_token
return updates, current_token, limited
async def get_updates_since(
self, instance_name: str, from_token: Token, upto_token: Token
) -> StreamUpdateResult:
"""Like get_updates except allows specifying from when we should
stream updates
Returns:
A triplet `(updates, new_last_token, limited)`, where `updates` is
a list of `(token, row)` entries, `new_last_token` is the new
position in stream, and `limited` is whether there are more updates
to fetch.
"""
from_token = int(from_token)
if from_token == upto_token:
return [], upto_token, False
updates, upto_token, limited = await self.update_function(
instance_name,
from_token,
upto_token,
_STREAM_UPDATE_TARGET_ROW_COUNT,
)
return updates, upto_token, limited
def current_token_without_instance(
current_token: Callable[[], int]
) -> Callable[[str], int]:
"""Takes a current token callback function for a single writer stream
that doesn't take an instance name parameter and wraps it in a function that
does accept an instance name parameter but ignores it.
"""
return lambda instance_name: current_token()
def make_http_update_function(hs, stream_name: str) -> UpdateFunction:
"""Makes a suitable function for use as an `update_function` that queries
the master process for updates.
"""
client = ReplicationGetStreamUpdates.make_client(hs)
async def update_function(
instance_name: str, from_token: int, upto_token: int, limit: int
) -> StreamUpdateResult:
result = await client(
instance_name=instance_name,
stream_name=stream_name,
from_token=from_token,
upto_token=upto_token,
)
return result["updates"], result["upto_token"], result["limited"]
return update_function
class BackfillStream(Stream):
"""We fetched some old events and either we had never seen that event before
or it went from being an outlier to not.
"""
BackfillStreamRow = namedtuple(
"BackfillStreamRow",
(
"event_id", # str
"room_id", # str
"type", # str
"state_key", # str, optional
"redacts", # str, optional
"relates_to", # str, optional
),
)
NAME = "backfill"
ROW_TYPE = BackfillStreamRow
def __init__(self, hs):
self.store = hs.get_datastore()
super().__init__(
hs.get_instance_name(),
self._current_token,
self.store.get_all_new_backfill_event_rows,
)
def _current_token(self, instance_name: str) -> int:
# The backfill stream over replication operates on *positive* numbers,
# which means we need to negate it.
return -self.store._backfill_id_gen.get_current_token_for_writer(instance_name)
class PresenceStream(Stream):
PresenceStreamRow = namedtuple(
"PresenceStreamRow",
(
"user_id", # str
"state", # str
"last_active_ts", # int
"last_federation_update_ts", # int
"last_user_sync_ts", # int
"status_msg", # str
"currently_active", # bool
),
)
NAME = "presence"
ROW_TYPE = PresenceStreamRow
def __init__(self, hs: "HomeServer"):
store = hs.get_datastore()
if hs.get_instance_name() in hs.config.worker.writers.presence:
# on the presence writer, query the presence handler
presence_handler = hs.get_presence_handler()
from synapse.handlers.presence import PresenceHandler
assert isinstance(presence_handler, PresenceHandler)
update_function: UpdateFunction = presence_handler.get_all_presence_updates
else:
# Query presence writer process
update_function = make_http_update_function(hs, self.NAME)
super().__init__(
hs.get_instance_name(),
current_token_without_instance(store.get_current_presence_token),
update_function,
)
class PresenceFederationStream(Stream):
"""A stream used to send ad hoc presence updates over federation.
Streams the remote destination and the user ID of the presence state to
send.
"""
@attr.s(slots=True, auto_attribs=True)
class PresenceFederationStreamRow:
destination: str
user_id: str
NAME = "presence_federation"
ROW_TYPE = PresenceFederationStreamRow
def __init__(self, hs: "HomeServer"):
federation_queue = hs.get_presence_handler().get_federation_queue()
super().__init__(
hs.get_instance_name(),
federation_queue.get_current_token,
federation_queue.get_replication_rows,
)
class TypingStream(Stream):
TypingStreamRow = namedtuple(
"TypingStreamRow", ("room_id", "user_ids") # str # list(str)
)
NAME = "typing"
ROW_TYPE = TypingStreamRow
def __init__(self, hs: "HomeServer"):
writer_instance = hs.config.worker.writers.typing
if writer_instance == hs.get_instance_name():
# On the writer, query the typing handler
typing_writer_handler = hs.get_typing_writer_handler()
update_function: Callable[
[str, int, int, int], Awaitable[Tuple[List[Tuple[int, Any]], int, bool]]
] = typing_writer_handler.get_all_typing_updates
current_token_function = typing_writer_handler.get_current_token
else:
# Query the typing writer process
update_function = make_http_update_function(hs, self.NAME)
current_token_function = hs.get_typing_handler().get_current_token
super().__init__(
hs.get_instance_name(),
current_token_without_instance(current_token_function),
update_function,
)
class ReceiptsStream(Stream):
ReceiptsStreamRow = namedtuple(
"ReceiptsStreamRow",
(
"room_id", # str
"receipt_type", # str
"user_id", # str
"event_id", # str
"data", # dict
),
)
NAME = "receipts"
ROW_TYPE = ReceiptsStreamRow
def __init__(self, hs):
store = hs.get_datastore()
super().__init__(
hs.get_instance_name(),
current_token_without_instance(store.get_max_receipt_stream_id),
store.get_all_updated_receipts,
)
class PushRulesStream(Stream):
"""A user has changed their push rules"""
PushRulesStreamRow = namedtuple("PushRulesStreamRow", ("user_id",)) # str
NAME = "push_rules"
ROW_TYPE = PushRulesStreamRow
def __init__(self, hs):
self.store = hs.get_datastore()
super().__init__(
hs.get_instance_name(),
self._current_token,
self.store.get_all_push_rule_updates,
)
def _current_token(self, instance_name: str) -> int:
push_rules_token = self.store.get_max_push_rules_stream_id()
return push_rules_token
class PushersStream(Stream):
"""A user has added/changed/removed a pusher"""
PushersStreamRow = namedtuple(
"PushersStreamRow",
("user_id", "app_id", "pushkey", "deleted"), # str # str # str # bool
)
NAME = "pushers"
ROW_TYPE = PushersStreamRow
def __init__(self, hs):
store = hs.get_datastore()
super().__init__(
hs.get_instance_name(),
current_token_without_instance(store.get_pushers_stream_token),
store.get_all_updated_pushers_rows,
)
class CachesStream(Stream):
"""A cache was invalidated on the master and no other stream would invalidate
the cache on the workers
"""
@attr.s(slots=True)
class CachesStreamRow:
"""Stream to inform workers they should invalidate their cache.
Attributes:
cache_func: Name of the cached function.
keys: The entry in the cache to invalidate. If None then will
invalidate all.
invalidation_ts: Timestamp of when the invalidation took place.
"""
cache_func = attr.ib(type=str)
keys = attr.ib(type=Optional[List[Any]])
invalidation_ts = attr.ib(type=int)
NAME = "caches"
ROW_TYPE = CachesStreamRow
def __init__(self, hs):
store = hs.get_datastore()
super().__init__(
hs.get_instance_name(),
store.get_cache_stream_token_for_writer,
store.get_all_updated_caches,
)
class PublicRoomsStream(Stream):
"""The public rooms list changed"""
PublicRoomsStreamRow = namedtuple(
"PublicRoomsStreamRow",
(
"room_id", # str
"visibility", # str
"appservice_id", # str, optional
"network_id", # str, optional
),
)
NAME = "public_rooms"
ROW_TYPE = PublicRoomsStreamRow
def __init__(self, hs):
store = hs.get_datastore()
super().__init__(
hs.get_instance_name(),
current_token_without_instance(store.get_current_public_room_stream_id),
store.get_all_new_public_rooms,
)
class DeviceListsStream(Stream):
"""Either a user has updated their devices or a remote server needs to be
told about a device update.
"""
@attr.s(slots=True)
class DeviceListsStreamRow:
entity = attr.ib(type=str)
NAME = "device_lists"
ROW_TYPE = DeviceListsStreamRow
def __init__(self, hs):
store = hs.get_datastore()
super().__init__(
hs.get_instance_name(),
current_token_without_instance(store.get_device_stream_token),
store.get_all_device_list_changes_for_remotes,
)
class ToDeviceStream(Stream):
"""New to_device messages for a client"""
ToDeviceStreamRow = namedtuple("ToDeviceStreamRow", ("entity",)) # str
NAME = "to_device"
ROW_TYPE = ToDeviceStreamRow
def __init__(self, hs):
store = hs.get_datastore()
super().__init__(
hs.get_instance_name(),
current_token_without_instance(store.get_to_device_stream_token),
store.get_all_new_device_messages,
)
class TagAccountDataStream(Stream):
"""Someone added/removed a tag for a room"""
TagAccountDataStreamRow = namedtuple(
"TagAccountDataStreamRow", ("user_id", "room_id", "data") # str # str # dict
)
NAME = "tag_account_data"
ROW_TYPE = TagAccountDataStreamRow
def __init__(self, hs):
store = hs.get_datastore()
super().__init__(
hs.get_instance_name(),
current_token_without_instance(store.get_max_account_data_stream_id),
store.get_all_updated_tags,
)
class AccountDataStream(Stream):
"""Global or per room account data was changed"""
AccountDataStreamRow = namedtuple(
"AccountDataStreamRow",
("user_id", "room_id", "data_type"), # str # Optional[str] # str
)
NAME = "account_data"
ROW_TYPE = AccountDataStreamRow
def __init__(self, hs: "HomeServer"):
self.store = hs.get_datastore()
super().__init__(
hs.get_instance_name(),
current_token_without_instance(self.store.get_max_account_data_stream_id),
self._update_function,
)
async def _update_function(
self, instance_name: str, from_token: int, to_token: int, limit: int
) -> StreamUpdateResult:
limited = False
global_results = await self.store.get_updated_global_account_data(
from_token, to_token, limit
)
# if the global results hit the limit, we'll need to limit the room results to
# the same stream token.
if len(global_results) >= limit:
to_token = global_results[-1][0]
limited = True
room_results = await self.store.get_updated_room_account_data(
from_token, to_token, limit
)
# likewise, if the room results hit the limit, limit the global results to
# the same stream token.
if len(room_results) >= limit:
to_token = room_results[-1][0]
limited = True
# convert the global results to the right format, and limit them to the to_token
# at the same time
global_rows = (
(stream_id, (user_id, None, account_data_type))
for stream_id, user_id, account_data_type in global_results
if stream_id <= to_token
)
# we know that the room_results are already limited to `to_token` so no need
# for a check on `stream_id` here.
room_rows = (
(stream_id, (user_id, room_id, account_data_type))
for stream_id, user_id, room_id, account_data_type in room_results
)
# We need to return a sorted list, so merge them together.
#
# Note: We order only by the stream ID to work around a bug where the
# same stream ID could appear in both `global_rows` and `room_rows`,
# leading to a comparison between the data tuples. The comparison could
# fail due to attempting to compare the `room_id` which results in a
# `TypeError` from comparing a `str` vs `None`.
updates = list(heapq.merge(room_rows, global_rows, key=lambda row: row[0]))
return updates, to_token, limited
class GroupServerStream(Stream):
GroupsStreamRow = namedtuple(
"GroupsStreamRow",
("group_id", "user_id", "type", "content"), # str # str # str # dict
)
NAME = "groups"
ROW_TYPE = GroupsStreamRow
def __init__(self, hs):
store = hs.get_datastore()
super().__init__(
hs.get_instance_name(),
current_token_without_instance(store.get_group_stream_token),
store.get_all_groups_changes,
)
class UserSignatureStream(Stream):
"""A user has signed their own device with their user-signing key"""
UserSignatureStreamRow = namedtuple("UserSignatureStreamRow", ("user_id")) # str
NAME = "user_signature"
ROW_TYPE = UserSignatureStreamRow
def __init__(self, hs):
store = hs.get_datastore()
super().__init__(
hs.get_instance_name(),
current_token_without_instance(store.get_device_stream_token),
store.get_all_user_signature_changes_for_remotes,
)