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package org.apache.cassandra.index.internal.composites;

import java.nio.ByteBuffer;

import org.apache.cassandra.db.*;
import org.apache.cassandra.db.marshal.CompositeType;
import org.apache.cassandra.db.rows.CellPath;
import org.apache.cassandra.db.rows.Row;
import org.apache.cassandra.index.internal.CassandraIndex;
import org.apache.cassandra.index.internal.IndexEntry;
import org.apache.cassandra.schema.IndexMetadata;

Index on a PARTITION_KEY column definition. This suppose a composite row key: rk = rk_0 ... rk_n The corresponding index entry will be: - index row key will be rk_i (where i == columnDef.componentIndex) - cell name will be: rk ck where rk is the fully partition key and ck the clustering keys of the original cell names (thus excluding the last column name as we want to refer to the whole CQL3 row, not just the cell itself) Note that contrarily to other type of index, we repeat the indexed value in the index cell name (we use the whole partition key). The reason is that we want to order the index cell name by partitioner first, and skipping a part of the row key would change the order.
/** * Index on a PARTITION_KEY column definition. * * This suppose a composite row key: * rk = rk_0 ... rk_n * * The corresponding index entry will be: * - index row key will be rk_i (where i == columnDef.componentIndex) * - cell name will be: rk ck * where rk is the fully partition key and ck the clustering keys of the * original cell names (thus excluding the last column name as we want to refer to * the whole CQL3 row, not just the cell itself) * * Note that contrarily to other type of index, we repeat the indexed value in * the index cell name (we use the whole partition key). The reason is that we * want to order the index cell name by partitioner first, and skipping a part * of the row key would change the order. */
public class PartitionKeyIndex extends CassandraIndex { private final boolean enforceStrictLiveness; public PartitionKeyIndex(ColumnFamilyStore baseCfs, IndexMetadata indexDef) { super(baseCfs, indexDef); this.enforceStrictLiveness = baseCfs.metadata.enforceStrictLiveness(); } public ByteBuffer getIndexedValue(ByteBuffer partitionKey, Clustering clustering, CellPath path, ByteBuffer cellValue) { CompositeType keyComparator = (CompositeType)baseCfs.metadata.getKeyValidator(); ByteBuffer[] components = keyComparator.split(partitionKey); return components[indexedColumn.position()]; } public CBuilder buildIndexClusteringPrefix(ByteBuffer partitionKey, ClusteringPrefix prefix, CellPath path) { CBuilder builder = CBuilder.create(getIndexComparator()); builder.add(partitionKey); for (int i = 0; i < prefix.size(); i++) builder.add(prefix.get(i)); return builder; } public IndexEntry decodeEntry(DecoratedKey indexedValue, Row indexEntry) { int ckCount = baseCfs.metadata.clusteringColumns().size(); Clustering clustering = indexEntry.clustering(); CBuilder builder = CBuilder.create(baseCfs.getComparator()); for (int i = 0; i < ckCount; i++) builder.add(clustering.get(i + 1)); return new IndexEntry(indexedValue, clustering, indexEntry.primaryKeyLivenessInfo().timestamp(), clustering.get(0), builder.build()); } public boolean isStale(Row data, ByteBuffer indexValue, int nowInSec) { return !data.hasLiveData(nowInSec, enforceStrictLiveness); } }