Erster Stand der Hintergrundprozesse, die auf der Synology unter /volume1/homes/wagner/SolarManager laufen: der Manager selbst, die Sammler je Geraet, die MQTT-Bruecke, der Wecker und - neu hinzugezogen - der AutoAction-Runner, der als Hintergrundprozess hierher gehoert und nicht ins Web-Verzeichnis. Zugangsdaten stehen nicht mehr im Quelltext, sondern in config.ini, die nicht mit eingecheckt wird. Vorlage ist config.ini.example, gelesen wird sie von konfig.py. Betroffen waren solarManager.py (Datenbank und Wattpilot), zeit.py, gatherWaterData.py, wecker.py und skoda_testdaten.py, das sich das Passwort bisher aus dem Quelltext eines anderen Moduls herausgesucht hat. Die Kia-Anbindung ist mit dem Fahrzeug entfallen: kiaTest.py, gatherCarData.py und hyundai_kia_connect_api sind nicht mehr dabei, ebenso gatherInverterData.py, auf das nur noch eine auskommentierte Zeile zeigte. Die mitgelieferten Bibliotheken bleiben im Repository - die NAS hat kein pip, sie muessen neben den Skripten liegen. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
379 lines
14 KiB
Python
379 lines
14 KiB
Python
# Copyright The OpenTelemetry Authors
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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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"""
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This package implements `OpenTelemetry Resources
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<https://github.com/open-telemetry/opentelemetry-specification/blob/main/specification/resource/sdk.md#resource-sdk>`_:
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*A Resource is an immutable representation of the entity producing
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telemetry. For example, a process producing telemetry that is running in
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a container on Kubernetes has a Pod name, it is in a namespace and
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possibly is part of a Deployment which also has a name. All three of
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these attributes can be included in the Resource.*
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Resource objects are created with `Resource.create`, which accepts attributes
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(key-values). Resources should NOT be created via constructor, and working with
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`Resource` objects should only be done via the Resource API methods. Resource
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attributes can also be passed at process invocation in the
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:envvar:`OTEL_RESOURCE_ATTRIBUTES` environment variable. You should register
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your resource with the `mysql.opentelemetry.sdk.trace.TracerProvider` by passing
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them into their constructors. The `Resource` passed to a provider is available
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to the exporter, which can send on this information as it sees fit.
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.. code-block:: python
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trace.set_tracer_provider(
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TracerProvider(
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resource=Resource.create({
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"service.name": "shoppingcart",
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"service.instance.id": "instance-12",
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}),
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),
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)
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print(trace.get_tracer_provider().resource.attributes)
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{'telemetry.sdk.language': 'python',
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'telemetry.sdk.name': 'opentelemetry',
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'telemetry.sdk.version': '0.13.dev0',
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'service.name': 'shoppingcart',
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'service.instance.id': 'instance-12'}
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Note that the OpenTelemetry project documents certain `"standard attributes"
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<https://github.com/open-telemetry/opentelemetry-specification/blob/main/specification/resource/semantic_conventions/README.md>`_
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that have prescribed semantic meanings, for example ``service.name`` in the
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above example.
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"""
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import abc
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import concurrent.futures
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import logging
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import sys
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import typing
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from json import dumps
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from os import environ
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from urllib import parse
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from mysql.opentelemetry.attributes import BoundedAttributes
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from mysql.opentelemetry.sdk.environment_variables import (
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OTEL_EXPERIMENTAL_RESOURCE_DETECTORS,
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OTEL_RESOURCE_ATTRIBUTES,
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OTEL_SERVICE_NAME,
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)
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from mysql.opentelemetry.semconv.resource import ResourceAttributes
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from mysql.opentelemetry.util._importlib_metadata import entry_points, version
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from mysql.opentelemetry.util.types import AttributeValue
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LabelValue = AttributeValue
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Attributes = typing.Dict[str, LabelValue]
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logger = logging.getLogger(__name__)
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CLOUD_PROVIDER = ResourceAttributes.CLOUD_PROVIDER
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CLOUD_ACCOUNT_ID = ResourceAttributes.CLOUD_ACCOUNT_ID
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CLOUD_REGION = ResourceAttributes.CLOUD_REGION
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CLOUD_AVAILABILITY_ZONE = ResourceAttributes.CLOUD_AVAILABILITY_ZONE
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CONTAINER_NAME = ResourceAttributes.CONTAINER_NAME
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CONTAINER_ID = ResourceAttributes.CONTAINER_ID
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CONTAINER_IMAGE_NAME = ResourceAttributes.CONTAINER_IMAGE_NAME
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CONTAINER_IMAGE_TAG = ResourceAttributes.CONTAINER_IMAGE_TAG
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DEPLOYMENT_ENVIRONMENT = ResourceAttributes.DEPLOYMENT_ENVIRONMENT
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FAAS_NAME = ResourceAttributes.FAAS_NAME
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FAAS_ID = ResourceAttributes.FAAS_ID
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FAAS_VERSION = ResourceAttributes.FAAS_VERSION
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FAAS_INSTANCE = ResourceAttributes.FAAS_INSTANCE
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HOST_NAME = ResourceAttributes.HOST_NAME
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HOST_TYPE = ResourceAttributes.HOST_TYPE
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HOST_IMAGE_NAME = ResourceAttributes.HOST_IMAGE_NAME
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HOST_IMAGE_ID = ResourceAttributes.HOST_IMAGE_ID
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HOST_IMAGE_VERSION = ResourceAttributes.HOST_IMAGE_VERSION
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KUBERNETES_CLUSTER_NAME = ResourceAttributes.K8S_CLUSTER_NAME
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KUBERNETES_NAMESPACE_NAME = ResourceAttributes.K8S_NAMESPACE_NAME
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KUBERNETES_POD_UID = ResourceAttributes.K8S_POD_UID
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KUBERNETES_POD_NAME = ResourceAttributes.K8S_POD_NAME
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KUBERNETES_CONTAINER_NAME = ResourceAttributes.K8S_CONTAINER_NAME
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KUBERNETES_REPLICA_SET_UID = ResourceAttributes.K8S_REPLICASET_UID
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KUBERNETES_REPLICA_SET_NAME = ResourceAttributes.K8S_REPLICASET_NAME
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KUBERNETES_DEPLOYMENT_UID = ResourceAttributes.K8S_DEPLOYMENT_UID
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KUBERNETES_DEPLOYMENT_NAME = ResourceAttributes.K8S_DEPLOYMENT_NAME
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KUBERNETES_STATEFUL_SET_UID = ResourceAttributes.K8S_STATEFULSET_UID
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KUBERNETES_STATEFUL_SET_NAME = ResourceAttributes.K8S_STATEFULSET_NAME
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KUBERNETES_DAEMON_SET_UID = ResourceAttributes.K8S_DAEMONSET_UID
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KUBERNETES_DAEMON_SET_NAME = ResourceAttributes.K8S_DAEMONSET_NAME
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KUBERNETES_JOB_UID = ResourceAttributes.K8S_JOB_UID
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KUBERNETES_JOB_NAME = ResourceAttributes.K8S_JOB_NAME
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KUBERNETES_CRON_JOB_UID = ResourceAttributes.K8S_CRONJOB_UID
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KUBERNETES_CRON_JOB_NAME = ResourceAttributes.K8S_CRONJOB_NAME
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OS_TYPE = ResourceAttributes.OS_TYPE
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OS_DESCRIPTION = ResourceAttributes.OS_DESCRIPTION
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PROCESS_PID = ResourceAttributes.PROCESS_PID
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PROCESS_EXECUTABLE_NAME = ResourceAttributes.PROCESS_EXECUTABLE_NAME
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PROCESS_EXECUTABLE_PATH = ResourceAttributes.PROCESS_EXECUTABLE_PATH
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PROCESS_COMMAND = ResourceAttributes.PROCESS_COMMAND
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PROCESS_COMMAND_LINE = ResourceAttributes.PROCESS_COMMAND_LINE
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PROCESS_COMMAND_ARGS = ResourceAttributes.PROCESS_COMMAND_ARGS
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PROCESS_OWNER = ResourceAttributes.PROCESS_OWNER
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PROCESS_RUNTIME_NAME = ResourceAttributes.PROCESS_RUNTIME_NAME
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PROCESS_RUNTIME_VERSION = ResourceAttributes.PROCESS_RUNTIME_VERSION
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PROCESS_RUNTIME_DESCRIPTION = ResourceAttributes.PROCESS_RUNTIME_DESCRIPTION
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SERVICE_NAME = ResourceAttributes.SERVICE_NAME
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SERVICE_NAMESPACE = ResourceAttributes.SERVICE_NAMESPACE
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SERVICE_INSTANCE_ID = ResourceAttributes.SERVICE_INSTANCE_ID
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SERVICE_VERSION = ResourceAttributes.SERVICE_VERSION
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TELEMETRY_SDK_NAME = ResourceAttributes.TELEMETRY_SDK_NAME
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TELEMETRY_SDK_VERSION = ResourceAttributes.TELEMETRY_SDK_VERSION
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TELEMETRY_AUTO_VERSION = ResourceAttributes.TELEMETRY_AUTO_VERSION
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TELEMETRY_SDK_LANGUAGE = ResourceAttributes.TELEMETRY_SDK_LANGUAGE
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_OPENTELEMETRY_SDK_VERSION = version("opentelemetry-sdk")
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class Resource:
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"""A Resource is an immutable representation of the entity producing telemetry as Attributes."""
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def __init__(self, attributes: Attributes, schema_url: typing.Optional[str] = None):
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self._attributes = BoundedAttributes(attributes=attributes)
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if schema_url is None:
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schema_url = ""
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self._schema_url = schema_url
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@staticmethod
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def create(
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attributes: typing.Optional[Attributes] = None,
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schema_url: typing.Optional[str] = None,
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) -> "Resource":
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"""Creates a new `Resource` from attributes.
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Args:
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attributes: Optional zero or more key-value pairs.
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schema_url: Optional URL pointing to the schema
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Returns:
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The newly-created Resource.
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"""
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if not attributes:
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attributes = {}
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resource_detectors = []
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resource = _DEFAULT_RESOURCE
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otel_experimental_resource_detectors = environ.get(
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OTEL_EXPERIMENTAL_RESOURCE_DETECTORS, "otel"
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).split(",")
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if "otel" not in otel_experimental_resource_detectors:
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otel_experimental_resource_detectors.append("otel")
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for resource_detector in otel_experimental_resource_detectors:
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resource_detectors.append(
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next(
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iter(
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entry_points(
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group="opentelemetry_resource_detector",
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name=resource_detector.strip(),
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)
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)
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).load()()
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)
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resource = get_aggregated_resources(
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resource_detectors, _DEFAULT_RESOURCE
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).merge(Resource(attributes, schema_url))
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if not resource.attributes.get(SERVICE_NAME, None):
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default_service_name = "unknown_service"
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process_executable_name = resource.attributes.get(
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PROCESS_EXECUTABLE_NAME, None
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)
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if process_executable_name:
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default_service_name += ":" + process_executable_name
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resource = resource.merge(
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Resource({SERVICE_NAME: default_service_name}, schema_url)
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)
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return resource
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@staticmethod
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def get_empty() -> "Resource":
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return _EMPTY_RESOURCE
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@property
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def attributes(self) -> Attributes:
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return self._attributes
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@property
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def schema_url(self) -> str:
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return self._schema_url
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def merge(self, other: "Resource") -> "Resource":
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"""Merges this resource and an updating resource into a new `Resource`.
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If a key exists on both the old and updating resource, the value of the
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updating resource will override the old resource value.
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The updating resource's `schema_url` will be used only if the old
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`schema_url` is empty. Attempting to merge two resources with
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different, non-empty values for `schema_url` will result in an error
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and return the old resource.
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Args:
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other: The other resource to be merged.
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Returns:
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The newly-created Resource.
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"""
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merged_attributes = self.attributes.copy()
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merged_attributes.update(other.attributes)
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if self.schema_url == "":
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schema_url = other.schema_url
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elif other.schema_url == "":
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schema_url = self.schema_url
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elif self.schema_url == other.schema_url:
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schema_url = other.schema_url
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else:
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logger.error(
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"Failed to merge resources: The two schemas %s and %s are incompatible",
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self.schema_url,
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other.schema_url,
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)
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return self
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return Resource(merged_attributes, schema_url)
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def __eq__(self, other: object) -> bool:
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if not isinstance(other, Resource):
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return False
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return (
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self._attributes == other._attributes
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and self._schema_url == other._schema_url
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)
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def __hash__(self):
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return hash(
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f"{dumps(self._attributes.copy(), sort_keys=True)}|{self._schema_url}"
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)
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def to_json(self, indent=4) -> str:
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return dumps(
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{
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"attributes": dict(self._attributes),
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"schema_url": self._schema_url,
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},
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indent=indent,
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)
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_EMPTY_RESOURCE = Resource({})
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_DEFAULT_RESOURCE = Resource(
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{
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TELEMETRY_SDK_LANGUAGE: "python",
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TELEMETRY_SDK_NAME: "opentelemetry",
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TELEMETRY_SDK_VERSION: _OPENTELEMETRY_SDK_VERSION,
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}
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)
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class ResourceDetector(abc.ABC):
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def __init__(self, raise_on_error=False):
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self.raise_on_error = raise_on_error
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@abc.abstractmethod
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def detect(self) -> "Resource":
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raise NotImplementedError()
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class OTELResourceDetector(ResourceDetector):
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# pylint: disable=no-self-use
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def detect(self) -> "Resource":
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env_resources_items = environ.get(OTEL_RESOURCE_ATTRIBUTES)
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env_resource_map = {}
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if env_resources_items:
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for item in env_resources_items.split(","):
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try:
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key, value = item.split("=", maxsplit=1)
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except ValueError as exc:
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logger.warning(
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"Invalid key value resource attribute pair %s: %s",
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item,
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exc,
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)
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continue
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value_url_decoded = parse.unquote(value.strip())
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env_resource_map[key.strip()] = value_url_decoded
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service_name = environ.get(OTEL_SERVICE_NAME)
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if service_name:
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env_resource_map[SERVICE_NAME] = service_name
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return Resource(env_resource_map)
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class ProcessResourceDetector(ResourceDetector):
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# pylint: disable=no-self-use
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def detect(self) -> "Resource":
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_runtime_version = ".".join(
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map(
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str,
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sys.version_info[:3]
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if sys.version_info.releaselevel == "final"
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and not sys.version_info.serial
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else sys.version_info,
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)
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)
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return Resource(
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{
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PROCESS_RUNTIME_DESCRIPTION: sys.version,
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PROCESS_RUNTIME_NAME: sys.implementation.name,
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PROCESS_RUNTIME_VERSION: _runtime_version,
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}
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)
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def get_aggregated_resources(
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detectors: typing.List["ResourceDetector"],
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initial_resource: typing.Optional[Resource] = None,
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timeout=5,
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) -> "Resource":
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"""Retrieves resources from detectors in the order that they were passed
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:param detectors: List of resources in order of priority
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:param initial_resource: Static resource. This has highest priority
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:param timeout: Number of seconds to wait for each detector to return
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:return:
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"""
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detectors_merged_resource = initial_resource or Resource.create()
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with concurrent.futures.ThreadPoolExecutor(max_workers=4) as executor:
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futures = [executor.submit(detector.detect) for detector in detectors]
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for detector_ind, future in enumerate(futures):
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detector = detectors[detector_ind]
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try:
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detected_resource = future.result(timeout=timeout)
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# pylint: disable=broad-except
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except Exception as ex:
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detected_resource = _EMPTY_RESOURCE
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if detector.raise_on_error:
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raise ex
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logger.warning("Exception %s in detector %s, ignoring", ex, detector)
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finally:
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detectors_merged_resource = detectors_merged_resource.merge(
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detected_resource
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)
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return detectors_merged_resource
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