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The Apache Cassandra Project develops a highly scalable second-generation distributed database, bringing together Dynamo's fully distributed design and Bigtable's ColumnFamily-based data model.
/*
* Licensed to the Apache Software Foundation (ASF) under one
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* distributed with this work for additional information
* regarding copyright ownership. The ASF licenses this file
* to you under the Apache License, Version 2.0 (the
* "License"); you may not use this file except in compliance
* with the License. You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
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*/
package org.apache.cassandra.service.reads;
import java.net.InetAddress;
import org.apache.cassandra.db.ReadCommand;
import org.apache.cassandra.db.filter.DataLimits;
import org.apache.cassandra.db.partitions.UnfilteredPartitionIterator;
import org.apache.cassandra.db.transform.MorePartitions;
import org.apache.cassandra.db.transform.Transformation;
import org.apache.cassandra.locator.InetAddressAndPort;
import org.apache.cassandra.locator.Replica;
/**
* We have a potential short read if the result from a given node contains the requested number of rows
* (i.e. it has stopped returning results due to the limit), but some of them haven't
* made it into the final post-reconciliation result due to other nodes' row, range, and/or partition tombstones.
*
* If that is the case, then that node may have more rows that we should fetch, as otherwise we could
* ultimately return fewer rows than required. Also, those additional rows may contain tombstones which
* which we also need to fetch as they may shadow rows or partitions from other replicas' results, which we would
* otherwise return incorrectly.
*/
public class ShortReadProtection
{
@SuppressWarnings("resource")
public static UnfilteredPartitionIterator extend(Replica source,
Runnable preFetchCallback,
UnfilteredPartitionIterator partitions,
ReadCommand command,
DataLimits.Counter mergedResultCounter,
long queryStartNanoTime,
boolean enforceStrictLiveness)
{
DataLimits.Counter singleResultCounter = command.limits().newCounter(command.nowInSec(),
false,
command.selectsFullPartition(),
enforceStrictLiveness).onlyCount();
ShortReadPartitionsProtection protection = new ShortReadPartitionsProtection(command,
source,
preFetchCallback,
singleResultCounter,
mergedResultCounter,
queryStartNanoTime);
/*
* The order of extention and transformations is important here. Extending with more partitions has to happen
* first due to the way BaseIterator.hasMoreContents() works: only transformations applied after extension will
* be called on the first partition of the extended iterator.
*
* Additionally, we want singleResultCounter to be applied after SRPP, so that its applyToPartition() method will
* be called last, after the extension done by SRRP.applyToPartition() call. That way we preserve the same order
* when it comes to calling SRRP.moreContents() and applyToRow() callbacks.
*
* See ShortReadPartitionsProtection.applyToPartition() for more details.
*/
// extend with moreContents() only if it's a range read command with no partition key specified
if (!command.isLimitedToOnePartition())
partitions = MorePartitions.extend(partitions, protection); // register SRPP.moreContents()
partitions = Transformation.apply(partitions, protection); // register SRPP.applyToPartition()
partitions = Transformation.apply(partitions, singleResultCounter); // register the per-source counter
return partitions;
}
}
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