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This artifact provides a single jar that contains all classes required to use remote EJB and JMS, including all dependencies. It is intended for use by those not using maven, maven users should just import the EJB and JMS BOM's instead (shaded JAR's cause lots of problems with maven, as it is very easy to inadvertently end up with different versions on classes on the class path).

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package org.jgroups.protocols;

import org.jgroups.Address;
import org.jgroups.annotations.ManagedAttribute;
import org.jgroups.annotations.ManagedOperation;
import org.jgroups.util.Util;

import java.util.Iterator;
import java.util.Map;
import java.util.Map.Entry;
import java.util.concurrent.atomic.AtomicIntegerArray;

/**
 * Failure detection based on simple heartbeat protocol. Every member periodically (interval ms) multicasts a heartbeat.
 * Every member maintains a table of all members (minus itself) and a bitmap with timeout/interval bits, initially
 * all set to 1. On each interval, the TimeoutChecker task advances the index and sets the bit at the index to 0.
* When all bits are 0, a member will be suspected.
* On reception of a message or heartbeat from P, P's bitmap at index is set to 1.
* JIRA: https://issues.redhat.com/browse/JGRP-2451 * * @author Dan Berindei * @author Bela Ban * @version 5.0.0 */ public class FD_ALL3 extends FailureDetection { // Map of addresses and timestamps of last updates protected final Map timestamps=Util.createConcurrentMap(); @ManagedAttribute(description="The number of bits for each member (timeout / interval)") protected int num_bits; protected Map getTimestamps() {return timestamps;} protected long getTimeoutCheckInterval() {return interval;} @ManagedOperation(description="Prints timestamps") public String printTimestamps() { return _printTimestamps(); } public void init() throws Exception { super.init(); if(interval >= timeout) throw new IllegalStateException("interval needs to be smaller than timeout"); num_bits=computeBits(); } @Override public void start() throws Exception { super.start(); if(interval >= timeout) throw new IllegalStateException("interval needs to be smaller than timeout"); } @Override public FD_ALL3 setTimeout(long t) { super.setTimeout(t); num_bits=computeBits(); return this; } @Override public FD_ALL3 setInterval(long i) { super.setInterval(i); num_bits=computeBits(); return this; } @Override protected void update(Address sender, boolean log_msg, boolean skip_if_exists) { if(sender != null && !sender.equals(local_addr)) { Bitmap bm=timestamps.get(sender); if(bm != null) { if(!skip_if_exists) bm.set(); } else timestamps.putIfAbsent(sender, new Bitmap(num_bits)); } if(log_msg && log.isTraceEnabled()) log.trace("%s: received heartbeat from %s", local_addr, sender); } protected int computeBits() { return timeout % interval == 0? (int)(timeout / interval) : (int)((timeout / interval)+1); } protected boolean needsToBeSuspected(Address mbr, T value) { Bitmap bm=(Bitmap)value; boolean suspect=bm.needsToSuspect(); bm.advance(); if(suspect) { log.debug("%s: haven't received a heartbeat from %s in timeout period (%d ms), adding it to suspect list", local_addr, mbr, timeout); return true; } return false; } protected String getTimeoutCheckerInfo() { return FD_ALL3.class.getSimpleName() + ": " + getClass().getSimpleName() + " (timeout=" + timeout + " ms)"; } protected String _printTimestamps() { StringBuilder sb=new StringBuilder(); for(Iterator> it=timestamps.entrySet().iterator(); it.hasNext();) { Entry entry=it.next(); sb.append(entry.getKey()).append(": bitmap=").append(entry.getValue()).append("\n"); } return sb.toString(); } public static class Bitmap { protected volatile int index; protected final AtomicIntegerArray bits; public Bitmap(int size) { bits=new AtomicIntegerArray(size); for(int i=0; i < size; i++) bits.set(i, 1); } public int getIndex() {return index;} /** Returns true if all bits are 0, false otherwise */ public boolean needsToSuspect() { for(int i=0; i < bits.length(); i++) { if(bits.get(i) == 1) return false; } return true; } /** Advances the index (mod length) and sets the bits[index] to 0 */ public Bitmap advance() { int new_index=(index +1) % bits.length(); bits.set(new_index, 0); index=new_index; // make the change visible to readers return this; } public Bitmap set() { bits.set(index, 1); return this; } public String toString() { if(bits.length() < Util.MAX_LIST_PRINT_SIZE) return toStringDetailed(); int set=0; for(int i=0; i < bits.length(); i++) { if(bits.get(i) == 1) set++; } return String.format("[%d set %d not-set] (index: %d)", set, bits.length() - set, index); } public String toStringDetailed() { return String.format("%s (index=%d)", bits, index); } } }




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