122 lines
3.9 KiB
Python
122 lines
3.9 KiB
Python
import sys
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from functools import wraps
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from threading import Thread, current_thread
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import sentry_sdk
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from sentry_sdk.integrations import Integration
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from sentry_sdk.scope import use_isolation_scope, use_scope
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from sentry_sdk.utils import (
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event_from_exception,
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capture_internal_exceptions,
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logger,
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reraise,
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)
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from typing import TYPE_CHECKING
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if TYPE_CHECKING:
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from typing import Any
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from typing import TypeVar
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from typing import Callable
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from typing import Optional
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from sentry_sdk._types import ExcInfo
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F = TypeVar("F", bound=Callable[..., Any])
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class ThreadingIntegration(Integration):
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identifier = "threading"
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def __init__(self, propagate_hub=None, propagate_scope=True):
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# type: (Optional[bool], bool) -> None
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if propagate_hub is not None:
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logger.warning(
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"Deprecated: propagate_hub is deprecated. This will be removed in the future."
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)
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# Note: propagate_hub did not have any effect on propagation of scope data
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# scope data was always propagated no matter what the value of propagate_hub was
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# This is why the default for propagate_scope is True
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self.propagate_scope = propagate_scope
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if propagate_hub is not None:
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self.propagate_scope = propagate_hub
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@staticmethod
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def setup_once():
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# type: () -> None
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old_start = Thread.start
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@wraps(old_start)
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def sentry_start(self, *a, **kw):
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# type: (Thread, *Any, **Any) -> Any
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integration = sentry_sdk.get_client().get_integration(ThreadingIntegration)
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if integration is None:
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return old_start(self, *a, **kw)
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if integration.propagate_scope:
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isolation_scope = sentry_sdk.get_isolation_scope()
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current_scope = sentry_sdk.get_current_scope()
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else:
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isolation_scope = None
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current_scope = None
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# Patching instance methods in `start()` creates a reference cycle if
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# done in a naive way. See
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# https://github.com/getsentry/sentry-python/pull/434
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#
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# In threading module, using current_thread API will access current thread instance
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# without holding it to avoid a reference cycle in an easier way.
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with capture_internal_exceptions():
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new_run = _wrap_run(
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isolation_scope,
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current_scope,
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getattr(self.run, "__func__", self.run),
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)
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self.run = new_run # type: ignore
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return old_start(self, *a, **kw)
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Thread.start = sentry_start # type: ignore
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def _wrap_run(isolation_scope_to_use, current_scope_to_use, old_run_func):
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# type: (Optional[sentry_sdk.Scope], Optional[sentry_sdk.Scope], F) -> F
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@wraps(old_run_func)
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def run(*a, **kw):
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# type: (*Any, **Any) -> Any
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def _run_old_run_func():
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# type: () -> Any
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try:
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self = current_thread()
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return old_run_func(self, *a, **kw)
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except Exception:
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reraise(*_capture_exception())
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if isolation_scope_to_use is not None and current_scope_to_use is not None:
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with use_isolation_scope(isolation_scope_to_use):
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with use_scope(current_scope_to_use):
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return _run_old_run_func()
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else:
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return _run_old_run_func()
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return run # type: ignore
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def _capture_exception():
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# type: () -> ExcInfo
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exc_info = sys.exc_info()
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client = sentry_sdk.get_client()
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if client.get_integration(ThreadingIntegration) is not None:
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event, hint = event_from_exception(
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exc_info,
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client_options=client.options,
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mechanism={"type": "threading", "handled": False},
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)
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sentry_sdk.capture_event(event, hint=hint)
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return exc_info
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