HADOOP-16947. Stale record should be remove when MutableRollingAverages generating aggregate data. Contributed by Haibin Huang.
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@ -163,6 +163,7 @@ public class MutableRatesWithAggregation extends MutableMetric {
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MutableRate metric = globalMetrics.get(name);
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if (metric == null) {
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metric = new MutableRate(name + typePrefix, name + typePrefix, false);
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metric.setUpdateTimeStamp(true);
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globalMetrics.put(name, metric);
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}
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return metric;
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@ -41,6 +41,7 @@ import org.apache.hadoop.metrics2.impl.MetricsCollectorImpl;
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import org.apache.hadoop.thirdparty.com.google.common.base.Preconditions;
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import org.apache.hadoop.thirdparty.com.google.common.util.concurrent.ThreadFactoryBuilder;
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import org.apache.hadoop.util.Time;
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import javax.annotation.Nullable;
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@ -77,13 +78,26 @@ public class MutableRollingAverages extends MutableMetric implements Closeable {
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private final String avgInfoDescTemplate;
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private int numWindows;
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/**
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* This class maintains sub-sum and sub-total of SampleStat.
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*/
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private static class SumAndCount {
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private final double sum;
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private final long count;
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private final long snapshotTimeStamp;
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SumAndCount(final double sum, final long count) {
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/**
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* Constructor for {@link SumAndCount}.
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*
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* @param sum sub-sum in sliding windows
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* @param count sub-total in sliding windows
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* @param snapshotTimeStamp when is a new SampleStat snapshot.
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*/
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SumAndCount(final double sum, final long count,
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final long snapshotTimeStamp) {
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this.sum = sum;
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this.count = count;
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this.snapshotTimeStamp = snapshotTimeStamp;
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}
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public double getSum() {
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@ -93,6 +107,10 @@ public class MutableRollingAverages extends MutableMetric implements Closeable {
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public long getCount() {
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return count;
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}
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public long getSnapshotTimeStamp() {
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return snapshotTimeStamp;
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}
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}
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/**
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@ -110,6 +128,16 @@ public class MutableRollingAverages extends MutableMetric implements Closeable {
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private static final long WINDOW_SIZE_MS_DEFAULT = 300_000;
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private static final int NUM_WINDOWS_DEFAULT = 36;
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/**
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* Time duration after which a record is considered stale.
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* {@link MutableRollingAverages} should be time-sensitive, and it should use
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* the time window length(i.e. NUM_WINDOWS_DEFAULT * WINDOW_SIZE_MS_DEFAULT)
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* as the valid time to make sure some too old record won't be use to compute
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* average.
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*/
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private long recordValidityMs =
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NUM_WINDOWS_DEFAULT * WINDOW_SIZE_MS_DEFAULT;
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/**
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* Constructor for {@link MutableRollingAverages}.
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* @param metricValueName
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@ -231,7 +259,8 @@ public class MutableRollingAverages extends MutableMetric implements Closeable {
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});
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final SumAndCount sumAndCount = new SumAndCount(
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rate.lastStat().total(),
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rate.lastStat().numSamples());
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rate.lastStat().numSamples(),
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rate.getSnapshotTimeStamp());
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/* put newest sum and count to the end */
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if (!deque.offerLast(sumAndCount)) {
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deque.pollFirst();
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@ -267,8 +296,11 @@ public class MutableRollingAverages extends MutableMetric implements Closeable {
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long totalCount = 0;
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for (final SumAndCount sumAndCount : entry.getValue()) {
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totalCount += sumAndCount.getCount();
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totalSum += sumAndCount.getSum();
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if (Time.monotonicNow() - sumAndCount.getSnapshotTimeStamp()
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< recordValidityMs) {
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totalCount += sumAndCount.getCount();
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totalSum += sumAndCount.getSum();
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}
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}
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if (totalCount > minSamples) {
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@ -277,4 +309,12 @@ public class MutableRollingAverages extends MutableMetric implements Closeable {
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}
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return stats;
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}
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/**
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* Use for test only.
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*/
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@VisibleForTesting
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public synchronized void setRecordValidityMs(long value) {
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this.recordValidityMs = value;
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}
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}
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@ -24,6 +24,8 @@ import org.apache.hadoop.classification.InterfaceStability;
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import org.apache.hadoop.metrics2.MetricsInfo;
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import org.apache.hadoop.metrics2.MetricsRecordBuilder;
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import org.apache.hadoop.metrics2.util.SampleStat;
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import org.apache.hadoop.util.Time;
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import static org.apache.hadoop.metrics2.lib.Interns.*;
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/**
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@ -47,7 +49,9 @@ public class MutableStat extends MutableMetric {
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private final SampleStat prevStat = new SampleStat();
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private final SampleStat.MinMax minMax = new SampleStat.MinMax();
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private long numSamples = 0;
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private long snapshotTimeStamp = 0;
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private boolean extended = false;
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private boolean updateTimeStamp = false;
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/**
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* Construct a sample statistics metric
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@ -100,6 +104,13 @@ public class MutableStat extends MutableMetric {
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this.extended = extended;
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}
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/**
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* Set whether to update the snapshot time or not.
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* @param updateTimeStamp enable update stats snapshot timestamp
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*/
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public synchronized void setUpdateTimeStamp(boolean updateTimeStamp) {
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this.updateTimeStamp = updateTimeStamp;
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}
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/**
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* Add a number of samples and their sum to the running stat
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*
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@ -115,7 +126,7 @@ public class MutableStat extends MutableMetric {
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}
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/**
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* Add a snapshot to the metric
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* Add a snapshot to the metric.
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* @param value of the metric
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*/
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public synchronized void add(long value) {
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@ -142,6 +153,9 @@ public class MutableStat extends MutableMetric {
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if (numSamples > 0) {
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intervalStat.copyTo(prevStat);
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intervalStat.reset();
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if (updateTimeStamp) {
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snapshotTimeStamp = Time.monotonicNow();
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}
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}
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clearChanged();
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}
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@ -164,6 +178,12 @@ public class MutableStat extends MutableMetric {
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minMax.reset();
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}
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/**
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* Return the SampleStat snapshot timestamp
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*/
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public long getSnapshotTimeStamp() {
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return snapshotTimeStamp;
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}
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@Override
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public String toString() {
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return lastStat().toString();
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@ -17,17 +17,24 @@
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*/
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package org.apache.hadoop.hdfs.server.datanode;
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import java.util.ArrayList;
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import java.util.List;
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import java.util.concurrent.ThreadLocalRandom;
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import java.util.concurrent.TimeUnit;
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import org.apache.hadoop.hdfs.DFSConfigKeys;
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import org.apache.hadoop.hdfs.HdfsConfiguration;
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import org.apache.hadoop.hdfs.server.datanode.metrics.DataNodePeerMetrics;
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import org.apache.hadoop.metrics2.lib.MetricsTestHelper;
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import org.apache.hadoop.metrics2.lib.MutableRollingAverages;
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import org.apache.hadoop.test.GenericTestUtils;
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import org.apache.hadoop.util.Time;
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import org.apache.hadoop.conf.Configuration;
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import org.junit.Test;
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import static org.apache.hadoop.hdfs.DFSConfigKeys.DFS_DATANODE_PEER_METRICS_MIN_OUTLIER_DETECTION_SAMPLES_KEY;
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import static org.apache.hadoop.hdfs.DFSConfigKeys.DFS_DATANODE_PEER_STATS_ENABLED_KEY;
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import static org.hamcrest.CoreMatchers.containsString;
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import static org.junit.Assert.assertEquals;
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import static org.junit.Assert.assertThat;
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/**
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@ -43,7 +50,7 @@ public class TestDataNodePeerMetrics {
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final int numOpsPerIteration = 1000;
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final Configuration conf = new HdfsConfiguration();
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conf.setBoolean(DFSConfigKeys.DFS_DATANODE_PEER_STATS_ENABLED_KEY, true);
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conf.setBoolean(DFS_DATANODE_PEER_STATS_ENABLED_KEY, true);
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final DataNodePeerMetrics peerMetrics = DataNodePeerMetrics.create(
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"Sample-DataNode", conf);
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@ -80,6 +87,59 @@ public class TestDataNodePeerMetrics {
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}
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}
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@Test(timeout = 30000)
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public void testRemoveStaleRecord() throws Exception {
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final int numWindows = 5;
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final long scheduleInterval = 1000;
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final int iterations = 3;
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final int numSamples = 100;
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final Configuration conf = new HdfsConfiguration();
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conf.setLong(DFS_DATANODE_PEER_METRICS_MIN_OUTLIER_DETECTION_SAMPLES_KEY,
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numSamples);
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conf.setBoolean(DFS_DATANODE_PEER_STATS_ENABLED_KEY, true);
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final DataNodePeerMetrics peerMetrics =
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DataNodePeerMetrics.create("Sample-DataNode", conf);
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MutableRollingAverages rollingAverages =
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peerMetrics.getSendPacketDownstreamRollingAverages();
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rollingAverages.setRecordValidityMs(numWindows * scheduleInterval);
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MetricsTestHelper.replaceRollingAveragesScheduler(rollingAverages,
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numWindows, scheduleInterval, TimeUnit.MILLISECONDS);
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List<String> peerAddrList = new ArrayList<>();
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for (int i = 1; i <= iterations; i++) {
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peerAddrList.add(genPeerAddress());
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}
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for (String peerAddr : peerAddrList) {
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for (int j = 1; j <= numSamples; j++) {
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/* simulate to get latency of 1 to 1000 ms */
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final long latency = ThreadLocalRandom.current().nextLong(1, 1000);
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peerMetrics.addSendPacketDownstream(peerAddr, latency);
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}
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}
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GenericTestUtils.waitFor(
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() -> rollingAverages.getStats(numSamples).size() > 0, 500, 5000);
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assertEquals(3, rollingAverages.getStats(numSamples).size());
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/* wait for stale report to be removed */
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GenericTestUtils.waitFor(
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() -> rollingAverages.getStats(numSamples).isEmpty(), 500, 10000);
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assertEquals(0, rollingAverages.getStats(numSamples).size());
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/* dn can report peer metrics normally when it added back to cluster */
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for (String peerAddr : peerAddrList) {
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for (int j = 1; j <= numSamples; j++) {
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/* simulate to get latency of 1 to 1000 ms */
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final long latency = ThreadLocalRandom.current().nextLong(1, 1000);
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peerMetrics.addSendPacketDownstream(peerAddr, latency);
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}
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}
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GenericTestUtils.waitFor(
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() -> rollingAverages.getStats(numSamples).size() > 0, 500, 10000);
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assertEquals(3, rollingAverages.getStats(numSamples).size());
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}
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/**
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* Simulates to generate different peer addresses, e.g. [84.125.113.65:9801].
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*/
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