769 lines
26 KiB
Python
769 lines
26 KiB
Python
# Copyright 2014-2016 OpenMarket Ltd
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# Copyright 2019 The Matrix.org Foundation C.I.C.
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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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""" Thread-local-alike tracking of log contexts within synapse
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This module provides objects and utilities for tracking contexts through
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synapse code, so that log lines can include a request identifier, and so that
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CPU and database activity can be accounted for against the request that caused
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them.
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See doc/log_contexts.rst for details on how this works.
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"""
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import inspect
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import logging
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import threading
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import types
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from typing import TYPE_CHECKING, Optional, Tuple, TypeVar, Union
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from typing_extensions import Literal
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from twisted.internet import defer, threads
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if TYPE_CHECKING:
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from synapse.logging.scopecontextmanager import _LogContextScope
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logger = logging.getLogger(__name__)
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try:
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import resource
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# Python doesn't ship with a definition of RUSAGE_THREAD but it's defined
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# to be 1 on linux so we hard code it.
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RUSAGE_THREAD = 1
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# If the system doesn't support RUSAGE_THREAD then this should throw an
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# exception.
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resource.getrusage(RUSAGE_THREAD)
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is_thread_resource_usage_supported = True
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def get_thread_resource_usage():
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return resource.getrusage(RUSAGE_THREAD)
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except Exception:
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# If the system doesn't support resource.getrusage(RUSAGE_THREAD) then we
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# won't track resource usage.
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is_thread_resource_usage_supported = False
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def get_thread_resource_usage():
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return None
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# get an id for the current thread.
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#
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# threading.get_ident doesn't actually return an OS-level tid, and annoyingly,
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# on Linux it actually returns the same value either side of a fork() call. However
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# we only fork in one place, so it's not worth the hoop-jumping to get a real tid.
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#
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get_thread_id = threading.get_ident
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class ContextResourceUsage(object):
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"""Object for tracking the resources used by a log context
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Attributes:
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ru_utime (float): user CPU time (in seconds)
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ru_stime (float): system CPU time (in seconds)
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db_txn_count (int): number of database transactions done
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db_sched_duration_sec (float): amount of time spent waiting for a
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database connection
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db_txn_duration_sec (float): amount of time spent doing database
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transactions (excluding scheduling time)
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evt_db_fetch_count (int): number of events requested from the database
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"""
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__slots__ = [
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"ru_stime",
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"ru_utime",
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"db_txn_count",
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"db_txn_duration_sec",
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"db_sched_duration_sec",
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"evt_db_fetch_count",
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]
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def __init__(self, copy_from: "Optional[ContextResourceUsage]" = None) -> None:
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"""Create a new ContextResourceUsage
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Args:
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copy_from (ContextResourceUsage|None): if not None, an object to
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copy stats from
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"""
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if copy_from is None:
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self.reset()
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else:
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# FIXME: mypy can't infer the types set via reset() above, so specify explicitly for now
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self.ru_utime = copy_from.ru_utime # type: float
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self.ru_stime = copy_from.ru_stime # type: float
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self.db_txn_count = copy_from.db_txn_count # type: int
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self.db_txn_duration_sec = copy_from.db_txn_duration_sec # type: float
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self.db_sched_duration_sec = copy_from.db_sched_duration_sec # type: float
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self.evt_db_fetch_count = copy_from.evt_db_fetch_count # type: int
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def copy(self) -> "ContextResourceUsage":
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return ContextResourceUsage(copy_from=self)
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def reset(self) -> None:
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self.ru_stime = 0.0
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self.ru_utime = 0.0
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self.db_txn_count = 0
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self.db_txn_duration_sec = 0.0
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self.db_sched_duration_sec = 0.0
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self.evt_db_fetch_count = 0
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def __repr__(self) -> str:
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return (
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"<ContextResourceUsage ru_stime='%r', ru_utime='%r', "
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"db_txn_count='%r', db_txn_duration_sec='%r', "
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"db_sched_duration_sec='%r', evt_db_fetch_count='%r'>"
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) % (
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self.ru_stime,
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self.ru_utime,
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self.db_txn_count,
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self.db_txn_duration_sec,
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self.db_sched_duration_sec,
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self.evt_db_fetch_count,
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)
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def __iadd__(self, other: "ContextResourceUsage") -> "ContextResourceUsage":
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"""Add another ContextResourceUsage's stats to this one's.
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Args:
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other (ContextResourceUsage): the other resource usage object
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"""
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self.ru_utime += other.ru_utime
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self.ru_stime += other.ru_stime
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self.db_txn_count += other.db_txn_count
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self.db_txn_duration_sec += other.db_txn_duration_sec
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self.db_sched_duration_sec += other.db_sched_duration_sec
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self.evt_db_fetch_count += other.evt_db_fetch_count
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return self
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def __isub__(self, other: "ContextResourceUsage") -> "ContextResourceUsage":
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self.ru_utime -= other.ru_utime
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self.ru_stime -= other.ru_stime
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self.db_txn_count -= other.db_txn_count
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self.db_txn_duration_sec -= other.db_txn_duration_sec
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self.db_sched_duration_sec -= other.db_sched_duration_sec
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self.evt_db_fetch_count -= other.evt_db_fetch_count
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return self
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def __add__(self, other: "ContextResourceUsage") -> "ContextResourceUsage":
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res = ContextResourceUsage(copy_from=self)
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res += other
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return res
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def __sub__(self, other: "ContextResourceUsage") -> "ContextResourceUsage":
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res = ContextResourceUsage(copy_from=self)
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res -= other
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return res
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LoggingContextOrSentinel = Union["LoggingContext", "_Sentinel"]
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class _Sentinel(object):
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"""Sentinel to represent the root context"""
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__slots__ = ["previous_context", "finished", "request", "scope", "tag"]
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def __init__(self) -> None:
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# Minimal set for compatibility with LoggingContext
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self.previous_context = None
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self.finished = False
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self.request = None
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self.scope = None
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self.tag = None
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def __str__(self):
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return "sentinel"
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def copy_to(self, record):
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pass
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def copy_to_twisted_log_entry(self, record):
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record["request"] = None
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record["scope"] = None
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def start(self):
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pass
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def stop(self):
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pass
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def add_database_transaction(self, duration_sec):
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pass
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def add_database_scheduled(self, sched_sec):
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pass
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def record_event_fetch(self, event_count):
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pass
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def __nonzero__(self):
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return False
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__bool__ = __nonzero__ # python3
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SENTINEL_CONTEXT = _Sentinel()
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class LoggingContext(object):
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"""Additional context for log formatting. Contexts are scoped within a
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"with" block.
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If a parent is given when creating a new context, then:
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- logging fields are copied from the parent to the new context on entry
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- when the new context exits, the cpu usage stats are copied from the
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child to the parent
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Args:
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name (str): Name for the context for debugging.
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parent_context (LoggingContext|None): The parent of the new context
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"""
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__slots__ = [
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"previous_context",
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"name",
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"parent_context",
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"_resource_usage",
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"usage_start",
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"main_thread",
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"finished",
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"request",
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"tag",
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"scope",
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]
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def __init__(self, name=None, parent_context=None, request=None) -> None:
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self.previous_context = current_context()
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self.name = name
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# track the resources used by this context so far
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self._resource_usage = ContextResourceUsage()
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# The thread resource usage when the logcontext became active. None
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# if the context is not currently active.
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self.usage_start = None
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self.main_thread = get_thread_id()
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self.request = None
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self.tag = ""
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self.scope = None # type: Optional[_LogContextScope]
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# keep track of whether we have hit the __exit__ block for this context
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# (suggesting that the the thing that created the context thinks it should
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# be finished, and that re-activating it would suggest an error).
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self.finished = False
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self.parent_context = parent_context
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if self.parent_context is not None:
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self.parent_context.copy_to(self)
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if request is not None:
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# the request param overrides the request from the parent context
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self.request = request
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def __str__(self) -> str:
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if self.request:
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return str(self.request)
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return "%s@%x" % (self.name, id(self))
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def __enter__(self) -> "LoggingContext":
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"""Enters this logging context into thread local storage"""
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old_context = set_current_context(self)
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if self.previous_context != old_context:
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logger.warning(
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"Expected previous context %r, found %r",
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self.previous_context,
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old_context,
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)
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return self
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def __exit__(self, type, value, traceback) -> None:
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"""Restore the logging context in thread local storage to the state it
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was before this context was entered.
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Returns:
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None to avoid suppressing any exceptions that were thrown.
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"""
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current = set_current_context(self.previous_context)
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if current is not self:
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if current is SENTINEL_CONTEXT:
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logger.warning("Expected logging context %s was lost", self)
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else:
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logger.warning(
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"Expected logging context %s but found %s", self, current
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)
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# the fact that we are here suggests that the caller thinks that everything
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# is done and dusted for this logcontext, and further activity will not get
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# recorded against the correct metrics.
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self.finished = True
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def copy_to(self, record) -> None:
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"""Copy logging fields from this context to a log record or
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another LoggingContext
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"""
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# we track the current request
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record.request = self.request
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# we also track the current scope:
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record.scope = self.scope
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def copy_to_twisted_log_entry(self, record) -> None:
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"""
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Copy logging fields from this context to a Twisted log record.
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"""
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record["request"] = self.request
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record["scope"] = self.scope
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def start(self) -> None:
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if get_thread_id() != self.main_thread:
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logger.warning("Started logcontext %s on different thread", self)
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return
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if self.finished:
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logger.warning("Re-starting finished log context %s", self)
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# If we haven't already started record the thread resource usage so
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# far
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if self.usage_start:
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logger.warning("Re-starting already-active log context %s", self)
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else:
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self.usage_start = get_thread_resource_usage()
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def stop(self) -> None:
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if get_thread_id() != self.main_thread:
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logger.warning("Stopped logcontext %s on different thread", self)
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return
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# When we stop, let's record the cpu used since we started
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if not self.usage_start:
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# Log a warning on platforms that support thread usage tracking
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if is_thread_resource_usage_supported:
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logger.warning(
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"Called stop on logcontext %s without calling start", self
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)
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return
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utime_delta, stime_delta = self._get_cputime()
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self._resource_usage.ru_utime += utime_delta
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self._resource_usage.ru_stime += stime_delta
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self.usage_start = None
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# if we have a parent, pass our CPU usage stats on
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if self.parent_context is not None and hasattr(
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self.parent_context, "_resource_usage"
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):
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self.parent_context._resource_usage += self._resource_usage
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# reset them in case we get entered again
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self._resource_usage.reset()
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def get_resource_usage(self) -> ContextResourceUsage:
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"""Get resources used by this logcontext so far.
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Returns:
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ContextResourceUsage: a *copy* of the object tracking resource
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usage so far
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"""
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# we always return a copy, for consistency
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res = self._resource_usage.copy()
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# If we are on the correct thread and we're currently running then we
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# can include resource usage so far.
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is_main_thread = get_thread_id() == self.main_thread
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if self.usage_start and is_main_thread:
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utime_delta, stime_delta = self._get_cputime()
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res.ru_utime += utime_delta
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res.ru_stime += stime_delta
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return res
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def _get_cputime(self) -> Tuple[float, float]:
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"""Get the cpu usage time so far
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Returns: Tuple[float, float]: seconds in user mode, seconds in system mode
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"""
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assert self.usage_start is not None
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current = get_thread_resource_usage()
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# Indicate to mypy that we know that self.usage_start is None.
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assert self.usage_start is not None
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utime_delta = current.ru_utime - self.usage_start.ru_utime
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stime_delta = current.ru_stime - self.usage_start.ru_stime
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# sanity check
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if utime_delta < 0:
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logger.error(
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"utime went backwards! %f < %f",
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current.ru_utime,
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self.usage_start.ru_utime,
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)
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utime_delta = 0
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if stime_delta < 0:
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logger.error(
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"stime went backwards! %f < %f",
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current.ru_stime,
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self.usage_start.ru_stime,
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)
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stime_delta = 0
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return utime_delta, stime_delta
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def add_database_transaction(self, duration_sec: float) -> None:
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if duration_sec < 0:
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raise ValueError("DB txn time can only be non-negative")
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self._resource_usage.db_txn_count += 1
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self._resource_usage.db_txn_duration_sec += duration_sec
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def add_database_scheduled(self, sched_sec: float) -> None:
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"""Record a use of the database pool
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Args:
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sched_sec (float): number of seconds it took us to get a
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connection
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"""
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if sched_sec < 0:
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raise ValueError("DB scheduling time can only be non-negative")
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self._resource_usage.db_sched_duration_sec += sched_sec
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def record_event_fetch(self, event_count: int) -> None:
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"""Record a number of events being fetched from the db
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Args:
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event_count (int): number of events being fetched
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"""
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self._resource_usage.evt_db_fetch_count += event_count
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class LoggingContextFilter(logging.Filter):
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"""Logging filter that adds values from the current logging context to each
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record.
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Args:
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**defaults: Default values to avoid formatters complaining about
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missing fields
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"""
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def __init__(self, **defaults) -> None:
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self.defaults = defaults
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def filter(self, record) -> Literal[True]:
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"""Add each fields from the logging contexts to the record.
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Returns:
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True to include the record in the log output.
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"""
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context = current_context()
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for key, value in self.defaults.items():
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setattr(record, key, value)
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# context should never be None, but if it somehow ends up being, then
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# we end up in a death spiral of infinite loops, so let's check, for
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# robustness' sake.
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if context is not None:
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context.copy_to(record)
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return True
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class PreserveLoggingContext(object):
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"""Captures the current logging context and restores it when the scope is
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exited. Used to restore the context after a function using
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@defer.inlineCallbacks is resumed by a callback from the reactor."""
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__slots__ = ["current_context", "new_context", "has_parent"]
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def __init__(
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self, new_context: LoggingContextOrSentinel = SENTINEL_CONTEXT
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) -> None:
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self.new_context = new_context
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def __enter__(self) -> None:
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"""Captures the current logging context"""
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self.current_context = set_current_context(self.new_context)
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if self.current_context:
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self.has_parent = self.current_context.previous_context is not None
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def __exit__(self, type, value, traceback) -> None:
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"""Restores the current logging context"""
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context = set_current_context(self.current_context)
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if context != self.new_context:
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if not context:
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logger.warning("Expected logging context %s was lost", self.new_context)
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else:
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logger.warning(
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"Expected logging context %s but found %s",
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self.new_context,
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context,
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)
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_thread_local = threading.local()
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_thread_local.current_context = SENTINEL_CONTEXT
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def current_context() -> LoggingContextOrSentinel:
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"""Get the current logging context from thread local storage"""
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return getattr(_thread_local, "current_context", SENTINEL_CONTEXT)
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def set_current_context(context: LoggingContextOrSentinel) -> LoggingContextOrSentinel:
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"""Set the current logging context in thread local storage
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Args:
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context(LoggingContext): The context to activate.
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Returns:
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The context that was previously active
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"""
|
|
# everything blows up if we allow current_context to be set to None, so sanity-check
|
|
# that now.
|
|
if context is None:
|
|
raise TypeError("'context' argument may not be None")
|
|
|
|
current = current_context()
|
|
|
|
if current is not context:
|
|
current.stop()
|
|
_thread_local.current_context = context
|
|
context.start()
|
|
return current
|
|
|
|
|
|
def nested_logging_context(
|
|
suffix: str, parent_context: Optional[LoggingContext] = None
|
|
) -> LoggingContext:
|
|
"""Creates a new logging context as a child of another.
|
|
|
|
The nested logging context will have a 'request' made up of the parent context's
|
|
request, plus the given suffix.
|
|
|
|
CPU/db usage stats will be added to the parent context's on exit.
|
|
|
|
Normal usage looks like:
|
|
|
|
with nested_logging_context(suffix):
|
|
# ... do stuff
|
|
|
|
Args:
|
|
suffix (str): suffix to add to the parent context's 'request'.
|
|
parent_context (LoggingContext|None): parent context. Will use the current context
|
|
if None.
|
|
|
|
Returns:
|
|
LoggingContext: new logging context.
|
|
"""
|
|
if parent_context is not None:
|
|
context = parent_context # type: LoggingContextOrSentinel
|
|
else:
|
|
context = current_context()
|
|
return LoggingContext(
|
|
parent_context=context, request=str(context.request) + "-" + suffix
|
|
)
|
|
|
|
|
|
def preserve_fn(f):
|
|
"""Function decorator which wraps the function with run_in_background"""
|
|
|
|
def g(*args, **kwargs):
|
|
return run_in_background(f, *args, **kwargs)
|
|
|
|
return g
|
|
|
|
|
|
def run_in_background(f, *args, **kwargs):
|
|
"""Calls a function, ensuring that the current context is restored after
|
|
return from the function, and that the sentinel context is set once the
|
|
deferred returned by the function completes.
|
|
|
|
Useful for wrapping functions that return a deferred or coroutine, which you don't
|
|
yield or await on (for instance because you want to pass it to
|
|
deferred.gatherResults()).
|
|
|
|
If f returns a Coroutine object, it will be wrapped into a Deferred (which will have
|
|
the side effect of executing the coroutine).
|
|
|
|
Note that if you completely discard the result, you should make sure that
|
|
`f` doesn't raise any deferred exceptions, otherwise a scary-looking
|
|
CRITICAL error about an unhandled error will be logged without much
|
|
indication about where it came from.
|
|
"""
|
|
current = current_context()
|
|
try:
|
|
res = f(*args, **kwargs)
|
|
except: # noqa: E722
|
|
# the assumption here is that the caller doesn't want to be disturbed
|
|
# by synchronous exceptions, so let's turn them into Failures.
|
|
return defer.fail()
|
|
|
|
if isinstance(res, types.CoroutineType):
|
|
res = defer.ensureDeferred(res)
|
|
|
|
if not isinstance(res, defer.Deferred):
|
|
return res
|
|
|
|
if res.called and not res.paused:
|
|
# The function should have maintained the logcontext, so we can
|
|
# optimise out the messing about
|
|
return res
|
|
|
|
# The function may have reset the context before returning, so
|
|
# we need to restore it now.
|
|
ctx = set_current_context(current)
|
|
|
|
# The original context will be restored when the deferred
|
|
# completes, but there is nothing waiting for it, so it will
|
|
# get leaked into the reactor or some other function which
|
|
# wasn't expecting it. We therefore need to reset the context
|
|
# here.
|
|
#
|
|
# (If this feels asymmetric, consider it this way: we are
|
|
# effectively forking a new thread of execution. We are
|
|
# probably currently within a ``with LoggingContext()`` block,
|
|
# which is supposed to have a single entry and exit point. But
|
|
# by spawning off another deferred, we are effectively
|
|
# adding a new exit point.)
|
|
res.addBoth(_set_context_cb, ctx)
|
|
return res
|
|
|
|
|
|
def make_deferred_yieldable(deferred):
|
|
"""Given a deferred (or coroutine), make it follow the Synapse logcontext
|
|
rules:
|
|
|
|
If the deferred has completed (or is not actually a Deferred), essentially
|
|
does nothing (just returns another completed deferred with the
|
|
result/failure).
|
|
|
|
If the deferred has not yet completed, resets the logcontext before
|
|
returning a deferred. Then, when the deferred completes, restores the
|
|
current logcontext before running callbacks/errbacks.
|
|
|
|
(This is more-or-less the opposite operation to run_in_background.)
|
|
"""
|
|
if inspect.isawaitable(deferred):
|
|
# If we're given a coroutine we convert it to a deferred so that we
|
|
# run it and find out if it immediately finishes, it it does then we
|
|
# don't need to fiddle with log contexts at all and can return
|
|
# immediately.
|
|
deferred = defer.ensureDeferred(deferred)
|
|
|
|
if not isinstance(deferred, defer.Deferred):
|
|
return deferred
|
|
|
|
if deferred.called and not deferred.paused:
|
|
# it looks like this deferred is ready to run any callbacks we give it
|
|
# immediately. We may as well optimise out the logcontext faffery.
|
|
return deferred
|
|
|
|
# ok, we can't be sure that a yield won't block, so let's reset the
|
|
# logcontext, and add a callback to the deferred to restore it.
|
|
prev_context = set_current_context(SENTINEL_CONTEXT)
|
|
deferred.addBoth(_set_context_cb, prev_context)
|
|
return deferred
|
|
|
|
|
|
ResultT = TypeVar("ResultT")
|
|
|
|
|
|
def _set_context_cb(result: ResultT, context: LoggingContext) -> ResultT:
|
|
"""A callback function which just sets the logging context"""
|
|
set_current_context(context)
|
|
return result
|
|
|
|
|
|
def defer_to_thread(reactor, f, *args, **kwargs):
|
|
"""
|
|
Calls the function `f` using a thread from the reactor's default threadpool and
|
|
returns the result as a Deferred.
|
|
|
|
Creates a new logcontext for `f`, which is created as a child of the current
|
|
logcontext (so its CPU usage metrics will get attributed to the current
|
|
logcontext). `f` should preserve the logcontext it is given.
|
|
|
|
The result deferred follows the Synapse logcontext rules: you should `yield`
|
|
on it.
|
|
|
|
Args:
|
|
reactor (twisted.internet.base.ReactorBase): The reactor in whose main thread
|
|
the Deferred will be invoked, and whose threadpool we should use for the
|
|
function.
|
|
|
|
Normally this will be hs.get_reactor().
|
|
|
|
f (callable): The function to call.
|
|
|
|
args: positional arguments to pass to f.
|
|
|
|
kwargs: keyword arguments to pass to f.
|
|
|
|
Returns:
|
|
Deferred: A Deferred which fires a callback with the result of `f`, or an
|
|
errback if `f` throws an exception.
|
|
"""
|
|
return defer_to_threadpool(reactor, reactor.getThreadPool(), f, *args, **kwargs)
|
|
|
|
|
|
def defer_to_threadpool(reactor, threadpool, f, *args, **kwargs):
|
|
"""
|
|
A wrapper for twisted.internet.threads.deferToThreadpool, which handles
|
|
logcontexts correctly.
|
|
|
|
Calls the function `f` using a thread from the given threadpool and returns
|
|
the result as a Deferred.
|
|
|
|
Creates a new logcontext for `f`, which is created as a child of the current
|
|
logcontext (so its CPU usage metrics will get attributed to the current
|
|
logcontext). `f` should preserve the logcontext it is given.
|
|
|
|
The result deferred follows the Synapse logcontext rules: you should `yield`
|
|
on it.
|
|
|
|
Args:
|
|
reactor (twisted.internet.base.ReactorBase): The reactor in whose main thread
|
|
the Deferred will be invoked. Normally this will be hs.get_reactor().
|
|
|
|
threadpool (twisted.python.threadpool.ThreadPool): The threadpool to use for
|
|
running `f`. Normally this will be hs.get_reactor().getThreadPool().
|
|
|
|
f (callable): The function to call.
|
|
|
|
args: positional arguments to pass to f.
|
|
|
|
kwargs: keyword arguments to pass to f.
|
|
|
|
Returns:
|
|
Deferred: A Deferred which fires a callback with the result of `f`, or an
|
|
errback if `f` throws an exception.
|
|
"""
|
|
logcontext = current_context()
|
|
|
|
def g():
|
|
with LoggingContext(parent_context=logcontext):
|
|
return f(*args, **kwargs)
|
|
|
|
return make_deferred_yieldable(threads.deferToThreadPool(reactor, threadpool, g))
|