org.xbib.metrics.common.ExpWeightedMovingAverage Maven / Gradle / Ivy
package org.xbib.metrics.common;
import java.util.concurrent.TimeUnit;
import java.util.concurrent.atomic.LongAdder;
/**
* An exponentially-weighted moving average.
*
* @see UNIX Load Average Part 1: How It Works
* @see UNIX Load Average Part 2: Not Your Average
* Average
*/
public class ExpWeightedMovingAverage {
private static final double M1_ALPHA = 1 - Math.exp(-5 / 60.0);
private static final double M5_ALPHA = 1 - Math.exp(-5 / 60.0 / 5);
private static final double M15_ALPHA = 1 - Math.exp(-5 / 60.0 / 15);
private final LongAdder uncounted = new LongAdder();
private final double alpha;
private final double interval;
private volatile boolean initialized = false;
private double rate = 0.0;
/**
* Create a new EWMA with a specific smoothing constant.
*
* @param alpha the smoothing constant
* @param interval the expected tick interval
* @param intervalUnit the time unit of the tick interval
*/
public ExpWeightedMovingAverage(double alpha, long interval, TimeUnit intervalUnit) {
this.interval = intervalUnit.toNanos(interval);
this.alpha = alpha;
}
/**
* Creates a new EWMA which is equivalent to the UNIX one minute load average and which expects to be ticked every
* 5 seconds.
*
* @return a one-minute EWMA
*/
public static ExpWeightedMovingAverage oneMinuteEWMA() {
return new ExpWeightedMovingAverage(M1_ALPHA, 5, TimeUnit.SECONDS);
}
/**
* Creates a new EWMA which is equivalent to the UNIX five minute load average and which expects to be ticked every
* 5 seconds.
*
* @return a five-minute EWMA
*/
public static ExpWeightedMovingAverage fiveMinuteEWMA() {
return new ExpWeightedMovingAverage(M5_ALPHA, 5, TimeUnit.SECONDS);
}
/**
* Creates a new EWMA which is equivalent to the UNIX fifteen minute load average and which expects to be ticked
* every 5 seconds.
*
* @return a fifteen-minute EWMA
*/
public static ExpWeightedMovingAverage fifteenMinuteEWMA() {
return new ExpWeightedMovingAverage(M15_ALPHA, 5, TimeUnit.SECONDS);
}
/**
* Update the moving average with a new value.
*
* @param n the new value
*/
public void update(long n) {
uncounted.add(n);
}
/**
* Mark the passage of time and decay the current rate accordingly.
*/
public void tick() {
final long count = uncounted.sumThenReset();
double instantRate = count / interval;
if (initialized) {
rate += (alpha * (instantRate - rate));
} else {
rate = instantRate;
initialized = true;
}
}
/**
* Returns the rate in the given units of time.
*
* @param rateUnit the unit of time
* @return the rate
*/
public double getRate(TimeUnit rateUnit) {
return rate * (double) rateUnit.toNanos(1);
}
}
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