New class: kafka.consumer.fetcher.Fetcher
- manages fetch requests via async client and subscription_state - based on upstream java client
This commit is contained in:
523
kafka/consumer/fetcher.py
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523
kafka/consumer/fetcher.py
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@@ -0,0 +1,523 @@
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from __future__ import absolute_import
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import collections
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import logging
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import six
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import kafka.common as Errors
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from kafka.common import TopicPartition
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from kafka.future import Future
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from kafka.protocol.fetch import FetchRequest
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from kafka.protocol.message import PartialMessage
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from kafka.protocol.offset import OffsetRequest, OffsetResetStrategy
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log = logging.getLogger(__name__)
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ConsumerRecord = collections.namedtuple("ConsumerRecord",
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["topic", "partition", "offset", "key", "value"])
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class NoOffsetForPartitionError(Errors.KafkaError):
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pass
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class RecordTooLargeError(Errors.KafkaError):
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pass
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class Fetcher(object):
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_key_deserializer = None
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_value_deserializer = None
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_fetch_min_bytes = 1024
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_fetch_max_wait_ms = 500
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_max_partition_fetch_bytes = 1048576
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_check_crcs = True
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_retry_backoff_ms = 100
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def __init__(self, client, subscriptions, **kwargs):
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#metrics=None,
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#metric_group_prefix='consumer',
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self._client = client
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self._subscriptions = subscriptions
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for config in ('key_deserializer', 'value_deserializer',
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'fetch_min_bytes', 'fetch_max_wait_ms',
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'max_partition_fetch_bytes', 'check_crcs',
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'retry_backoff_ms'):
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if config in kwargs:
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setattr(self, '_' + config, kwargs.pop(config))
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self._records = collections.deque() # (offset, topic_partition, messages)
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self._unauthorized_topics = set()
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self._offset_out_of_range_partitions = dict() # {topic_partition: offset}
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self._record_too_large_partitions = dict() # {topic_partition: offset}
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#self.sensors = FetchManagerMetrics(metrics, metric_group_prefix)
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def init_fetches(self):
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"""Send FetchRequests asynchronously for all assigned partitions"""
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futures = []
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for node_id, request in six.iteritems(self._create_fetch_requests()):
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if self._client.ready(node_id):
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log.debug("Sending FetchRequest to node %s", node_id)
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future = self._client.send(node_id, request)
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future.add_callback(self._handle_fetch_response, request)
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future.add_errback(log.error, 'Fetch to node %s failed: %s', node_id)
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futures.append(future)
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return futures
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def update_fetch_positions(self, partitions):
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"""Update the fetch positions for the provided partitions.
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@param partitions: iterable of TopicPartitions
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@raises NoOffsetForPartitionError If no offset is stored for a given
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partition and no reset policy is available
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"""
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# reset the fetch position to the committed position
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for tp in partitions:
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if not self._subscriptions.is_assigned(tp):
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log.warning("partition %s is not assigned - skipping offset"
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" update", tp)
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continue
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elif self._subscriptions.is_fetchable(tp):
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log.warning("partition %s is still fetchable -- skipping offset"
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" update", tp)
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continue
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# TODO: If there are several offsets to reset,
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# we could submit offset requests in parallel
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# for now, each call to _reset_offset will block
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if self._subscriptions.is_offset_reset_needed(tp):
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self._reset_offset(tp)
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elif self._subscriptions.assignment[tp].committed is None:
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# there's no committed position, so we need to reset with the
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# default strategy
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self._subscriptions.need_offset_reset(tp)
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self._reset_offset(tp)
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else:
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committed = self._subscriptions.assignment[tp].committed
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log.debug("Resetting offset for partition %s to the committed"
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" offset %s", tp, committed)
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self._subscriptions.seek(tp, committed)
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def _reset_offset(self, partition):
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"""Reset offsets for the given partition using the offset reset strategy.
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@param partition The given partition that needs reset offset
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@raises NoOffsetForPartitionError If no offset reset strategy is defined
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"""
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timestamp = self._subscriptions.assignment[partition].reset_strategy
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if timestamp is OffsetResetStrategy.EARLIEST:
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strategy = 'earliest'
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elif timestamp is OffsetResetStrategy.LATEST:
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strategy = 'latest'
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else:
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raise NoOffsetForPartitionError(partition)
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log.debug("Resetting offset for partition %s to %s offset.",
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partition, strategy)
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offset = self._offset(partition, timestamp)
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# we might lose the assignment while fetching the offset,
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# so check it is still active
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if self._subscriptions.is_assigned(partition):
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self._subscriptions.seek(partition, offset)
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def _offset(self, partition, timestamp):
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"""Fetch a single offset before the given timestamp for the partition.
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Blocks until offset is obtained, or a non-retriable exception is raised
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@param partition The partition that needs fetching offset.
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@param timestamp The timestamp for fetching offset.
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@raises exceptions
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@return The offset of the message that is published before the given
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timestamp
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"""
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while True:
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future = self._send_offset_request(partition, timestamp)
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self._client.poll(future=future)
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if future.succeeded():
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return future.value
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if not future.retriable():
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raise future.exception # pylint: disable-msg=raising-bad-type
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if future.exception.invalid_metadata:
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refresh_future = self._client.cluster.request_update()
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self._client.poll(future=refresh_future)
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def _raise_if_offset_out_of_range(self):
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"""
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If any partition from previous FetchResponse contains
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OffsetOutOfRangeError and the default_reset_policy is None,
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raise OffsetOutOfRangeError
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"""
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current_out_of_range_partitions = {}
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# filter only the fetchable partitions
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for partition, offset in self._offset_out_of_range_partitions:
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if not self._subscriptions.is_fetchable(partition):
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log.debug("Ignoring fetched records for %s since it is no"
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" longer fetchable", partition)
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continue
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consumed = self._subscriptions.assignment[partition].consumed
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# ignore partition if its consumed offset != offset in FetchResponse
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# e.g. after seek()
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if consumed is not None and offset == consumed:
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current_out_of_range_partitions[partition] = offset
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self._offset_out_of_range_partitions.clear()
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if current_out_of_range_partitions:
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raise Errors.OffsetOutOfRangeError(current_out_of_range_partitions)
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def _raise_if_unauthorized_topics(self):
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"""
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If any topic from previous FetchResponse contains an Authorization
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error, raise an exception
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@raise TopicAuthorizationFailedError
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"""
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if self._unauthorized_topics:
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topics = set(self._unauthorized_topics)
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self._unauthorized_topics.clear()
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raise Errors.TopicAuthorizationFailedError(topics)
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def _raise_if_record_too_large(self):
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"""
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If any partition from previous FetchResponse gets a RecordTooLarge
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error, raise RecordTooLargeError
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@raise RecordTooLargeError If there is a message larger than fetch size
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and hence cannot be ever returned
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"""
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copied_record_too_large_partitions = dict(self._record_too_large_partitions)
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self._record_too_large_partitions.clear()
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if copied_record_too_large_partitions:
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raise RecordTooLargeError(
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"There are some messages at [Partition=Offset]: %s "
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" whose size is larger than the fetch size %s"
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" and hence cannot be ever returned."
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" Increase the fetch size, or decrease the maximum message"
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" size the broker will allow.",
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copied_record_too_large_partitions, self._max_partition_fetch_bytes)
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def fetched_records(self):
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"""Returns previously fetched records and updates consumed offsets
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NOTE: returning empty records guarantees the consumed position are NOT updated.
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@return {TopicPartition: deque([messages])}
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@raises OffsetOutOfRangeError if no subscription offset_reset_strategy
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"""
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if self._subscriptions.needs_partition_assignment:
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return {}
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drained = collections.defaultdict(collections.deque)
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self._raise_if_offset_out_of_range()
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self._raise_if_unauthorized_topics()
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self._raise_if_record_too_large()
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# Loop over the records deque
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while self._records:
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(fetch_offset, tp, messages) = self._records.popleft()
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if not self._subscriptions.is_assigned(tp):
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# this can happen when a rebalance happened before
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# fetched records are returned to the consumer's poll call
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log.debug("Not returning fetched records for partition %s"
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" since it is no longer assigned", tp)
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continue
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# note that the consumed position should always be available
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# as long as the partition is still assigned
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consumed = self._subscriptions.assignment[tp].consumed
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if not self._subscriptions.is_fetchable(tp):
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# this can happen when a partition consumption paused before
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# fetched records are returned to the consumer's poll call
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log.debug("Not returning fetched records for assigned partition"
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" %s since it is no longer fetchable", tp)
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# we also need to reset the fetch positions to pretend we did
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# not fetch this partition in the previous request at all
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self._subscriptions.assignment[tp].fetched = consumed
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elif fetch_offset == consumed:
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next_offset = messages[-1][0] + 1
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log.debug("Returning fetched records for assigned partition %s"
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" and update consumed position to %s", tp, next_offset)
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self._subscriptions.assignment[tp].consumed = next_offset
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# TODO: handle compressed messages
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for offset, size, msg in messages:
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if msg.attributes:
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raise Errors.KafkaError('Compressed messages not supported yet')
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elif self._check_crcs and not msg.validate_crc():
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raise Errors.InvalidMessageError(msg)
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key, value = self._deserialize(msg)
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record = ConsumerRecord(tp.topic, tp.partition, offset, key, value)
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drained[tp].append(record)
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else:
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# these records aren't next in line based on the last consumed
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# position, ignore them they must be from an obsolete request
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log.debug("Ignoring fetched records for %s at offset %s",
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tp, fetch_offset)
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return dict(drained)
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def _deserialize(self, msg):
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if self._key_deserializer:
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key = self._key_deserializer(msg.key) # pylint: disable-msg=not-callable
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else:
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key = msg.key
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if self._value_deserializer:
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value = self._value_deserializer(msg.value) # pylint: disable-msg=not-callable
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else:
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value = msg.value
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return key, value
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def _send_offset_request(self, partition, timestamp):
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"""
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Fetch a single offset before the given timestamp for the partition.
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@param partition The TopicPartition that needs fetching offset.
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@param timestamp The timestamp for fetching offset.
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@return A future which can be polled to obtain the corresponding offset.
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"""
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node_id = self._client.cluster.leader_for_partition(partition)
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if node_id is None:
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log.debug("Partition %s is unknown for fetching offset,"
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" wait for metadata refresh", partition)
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return Future().failure(Errors.StaleMetadata(partition))
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elif node_id == -1:
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log.debug("Leader for partition %s unavailable for fetching offset,"
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" wait for metadata refresh", partition)
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return Future().failure(Errors.LeaderNotAvailableError(partition))
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request = OffsetRequest(
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-1, [(partition.topic, [(partition.partition, timestamp, 1)])]
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)
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# Client returns a future that only fails on network issues
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# so create a separate future and attach a callback to update it
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# based on response error codes
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future = Future()
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if not self._client.ready(node_id):
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return future.failure(Errors.NodeNotReadyError(node_id))
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_f = self._client.send(node_id, request)
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_f.add_callback(self._handle_offset_response, partition, future)
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_f.add_errback(lambda e: future.failure(e))
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return future
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def _handle_offset_response(self, partition, future, response):
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"""Callback for the response of the list offset call above.
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@param partition The partition that was fetched
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@param future the future to update based on response
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@param response The OffsetResponse from the server
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@raises IllegalStateError if response does not match partition
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"""
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topic, partition_info = response.topics[0]
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if len(response.topics) != 1 or len(partition_info) != 1:
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raise Errors.IllegalStateError("OffsetResponse should only be for"
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" a single topic-partition")
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part, error_code, offsets = partition_info[0]
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if topic != partition.topic or part != partition.partition:
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raise Errors.IllegalStateError("OffsetResponse partition does not"
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" match OffsetRequest partition")
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error_type = Errors.for_code(error_code)
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if error_type is Errors.NoError:
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if len(offsets) != 1:
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raise Errors.IllegalStateError("OffsetResponse should only"
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" return a single offset")
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offset = offsets[0]
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log.debug("Fetched offset %d for partition %s", offset, partition)
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future.success(offset)
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elif error_type in (Errors.NotLeaderForPartitionError,
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Errors.UnknownTopicOrPartitionError):
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log.warning("Attempt to fetch offsets for partition %s failed due"
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" to obsolete leadership information, retrying.",
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partition)
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future.failure(error_type(partition))
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else:
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log.error("Attempt to fetch offsets for partition %s failed due to:"
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" %s", partition, error_type)
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future.failure(error_type(partition))
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def _create_fetch_requests(self):
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"""
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Create fetch requests for all assigned partitions, grouped by node
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Except where no leader, node has requests in flight, or we have
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not returned all previously fetched records to consumer
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"""
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# create the fetch info as a dict of lists of partition info tuples
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# which can be passed to FetchRequest() via .items()
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fetchable = collections.defaultdict(lambda: collections.defaultdict(list))
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for partition in self._subscriptions.fetchable_partitions():
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node_id = self._client.cluster.leader_for_partition(partition)
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if node_id is None or node_id == -1:
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log.debug("No leader found for partition %s."
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" Requesting metadata update", partition)
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self._client.cluster.request_update()
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elif self._client.in_flight_request_count(node_id) == 0:
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# if there is a leader and no in-flight requests,
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# issue a new fetch but only fetch data for partitions whose
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# previously fetched data has been consumed
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fetched = self._subscriptions.assignment[partition].fetched
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consumed = self._subscriptions.assignment[partition].consumed
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if consumed == fetched:
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partition_info = (
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partition.partition,
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fetched,
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self._max_partition_fetch_bytes
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)
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fetchable[node_id][partition.topic].append(partition_info)
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else:
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log.debug("Skipping FetchRequest to %s because previously"
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" fetched offsets (%s) have not been fully"
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" consumed yet (%s)", node_id, fetched, consumed)
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requests = {}
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for node_id, partition_data in six.iteritems(fetchable):
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requests[node_id] = FetchRequest(
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-1, # replica_id
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self._fetch_max_wait_ms,
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self._fetch_min_bytes,
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partition_data.items())
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return requests
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def _handle_fetch_response(self, request, response):
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"""The callback for fetch completion"""
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#total_bytes = 0
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#total_count = 0
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fetch_offsets = {}
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for topic, partitions in request.topics:
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for partition, offset, _ in partitions:
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fetch_offsets[TopicPartition(topic, partition)] = offset
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for topic, partitions in response.topics:
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for partition, error_code, highwater, messages in partitions:
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tp = TopicPartition(topic, partition)
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error_type = Errors.for_code(error_code)
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if not self._subscriptions.is_fetchable(tp):
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# this can happen when a rebalance happened or a partition
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# consumption paused while fetch is still in-flight
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log.debug("Ignoring fetched records for partition %s"
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" since it is no longer fetchable", tp)
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elif error_type is Errors.NoError:
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fetch_offset = fetch_offsets[tp]
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# we are interested in this fetch only if the beginning
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# offset matches the current consumed position
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consumed = self._subscriptions.assignment[tp].consumed
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if consumed is None:
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continue
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elif consumed != fetch_offset:
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# the fetched position has gotten out of sync with the
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# consumed position (which might happen when a
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# rebalance occurs with a fetch in-flight), so we need
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# to reset the fetch position so the next fetch is right
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self._subscriptions.assignment[tp].fetched = consumed
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continue
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partial = None
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if messages and isinstance(messages[-1][-1], PartialMessage):
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partial = messages.pop()
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if messages:
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last_offset, _, _ = messages[-1]
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self._subscriptions.assignment[tp].fetched = last_offset + 1
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self._records.append((fetch_offset, tp, messages))
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#self.sensors.records_fetch_lag.record(highwater - last_offset)
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elif partial:
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# we did not read a single message from a non-empty
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# buffer because that message's size is larger than
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# fetch size, in this case record this exception
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self._record_too_large_partitions[tp] = fetch_offset
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# TODO: bytes metrics
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#self.sensors.record_topic_fetch_metrics(tp.topic, num_bytes, parsed.size());
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#totalBytes += num_bytes;
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#totalCount += parsed.size();
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elif error_type in (Errors.NotLeaderForPartitionError,
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Errors.UnknownTopicOrPartitionError):
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self._client.cluster.request_update()
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elif error_type is Errors.OffsetOutOfRangeError:
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fetch_offset = fetch_offsets[tp]
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if self._subscriptions.has_default_offset_reset_policy():
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self._subscriptions.need_offset_reset(tp)
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else:
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self._offset_out_of_range_partitions[tp] = fetch_offset
|
||||
log.info("Fetch offset %s is out of range, resetting offset",
|
||||
self._subscriptions.assignment[tp].fetched)
|
||||
elif error_type is Errors.TopicAuthorizationFailedError:
|
||||
log.warn("Not authorized to read from topic %s.", tp.topic)
|
||||
self._unauthorized_topics.add(tp.topic)
|
||||
elif error_type is Errors.UnknownError:
|
||||
log.warn("Unknown error fetching data for topic-partition %s", tp)
|
||||
else:
|
||||
raise Errors.IllegalStateError("Unexpected error code %s"
|
||||
" while fetching data"
|
||||
% error_code)
|
||||
|
||||
"""TOOD - metrics
|
||||
self.sensors.bytesFetched.record(totalBytes)
|
||||
self.sensors.recordsFetched.record(totalCount)
|
||||
self.sensors.fetchThrottleTimeSensor.record(response.getThrottleTime())
|
||||
self.sensors.fetchLatency.record(resp.requestLatencyMs())
|
||||
|
||||
|
||||
class FetchManagerMetrics(object):
|
||||
def __init__(self, metrics, prefix):
|
||||
self.metrics = metrics
|
||||
self.group_name = prefix + "-fetch-manager-metrics"
|
||||
|
||||
self.bytes_fetched = metrics.sensor("bytes-fetched")
|
||||
self.bytes_fetched.add(metrics.metricName("fetch-size-avg", self.group_name,
|
||||
"The average number of bytes fetched per request"), metrics.Avg())
|
||||
self.bytes_fetched.add(metrics.metricName("fetch-size-max", self.group_name,
|
||||
"The maximum number of bytes fetched per request"), metrics.Max())
|
||||
self.bytes_fetched.add(metrics.metricName("bytes-consumed-rate", self.group_name,
|
||||
"The average number of bytes consumed per second"), metrics.Rate())
|
||||
|
||||
self.records_fetched = self.metrics.sensor("records-fetched")
|
||||
self.records_fetched.add(metrics.metricName("records-per-request-avg", self.group_name,
|
||||
"The average number of records in each request"), metrics.Avg())
|
||||
self.records_fetched.add(metrics.metricName("records-consumed-rate", self.group_name,
|
||||
"The average number of records consumed per second"), metrics.Rate())
|
||||
|
||||
self.fetch_latency = metrics.sensor("fetch-latency")
|
||||
self.fetch_latency.add(metrics.metricName("fetch-latency-avg", self.group_name,
|
||||
"The average time taken for a fetch request."), metrics.Avg())
|
||||
self.fetch_latency.add(metrics.metricName("fetch-latency-max", self.group_name,
|
||||
"The max time taken for any fetch request."), metrics.Max())
|
||||
self.fetch_latency.add(metrics.metricName("fetch-rate", self.group_name,
|
||||
"The number of fetch requests per second."), metrics.Rate(metrics.Count()))
|
||||
|
||||
self.records_fetch_lag = metrics.sensor("records-lag")
|
||||
self.records_fetch_lag.add(metrics.metricName("records-lag-max", self.group_name,
|
||||
"The maximum lag in terms of number of records for any partition in self window"), metrics.Max())
|
||||
|
||||
self.fetch_throttle_time_sensor = metrics.sensor("fetch-throttle-time")
|
||||
self.fetch_throttle_time_sensor.add(metrics.metricName("fetch-throttle-time-avg", self.group_name,
|
||||
"The average throttle time in ms"), metrics.Avg())
|
||||
self.fetch_throttle_time_sensor.add(metrics.metricName("fetch-throttle-time-max", self.group_name,
|
||||
"The maximum throttle time in ms"), metrics.Max())
|
||||
|
||||
def record_topic_fetch_metrics(topic, num_bytes, num_records):
|
||||
# record bytes fetched
|
||||
name = '.'.join(["topic", topic, "bytes-fetched"])
|
||||
self.metrics[name].record(num_bytes);
|
||||
|
||||
# record records fetched
|
||||
name = '.'.join(["topic", topic, "records-fetched"])
|
||||
self.metrics[name].record(num_records)
|
||||
"""
|
Reference in New Issue
Block a user