blob: 4f4616bdc0a6d7c051799975e832944885e07e31 [file] [log] [blame]
package org.apache.gossip.manager;
import java.util.Map.Entry;
import java.util.concurrent.ConcurrentHashMap;
import java.util.concurrent.Executors;
import java.util.concurrent.ScheduledExecutorService;
import java.util.concurrent.TimeUnit;
import org.apache.gossip.model.GossipDataMessage;
import org.apache.gossip.model.SharedGossipDataMessage;
/**
* We wish to periodically sweep user data and remove entries past their timestamp. This
* implementation periodically sweeps through the data and removes old entries. While it might make
* sense to use a more specific high performance data-structure to handle eviction, keep in mind
* that we are not looking to store a large quantity of data as we currently have to transmit this
* data cluster wide.
*/
public class DataReaper {
private final GossipCore gossipCore;
private final ScheduledExecutorService scheduledExecutor = Executors.newScheduledThreadPool(1);
private final Clock clock;
public DataReaper(GossipCore gossipCore, Clock clock){
this.gossipCore = gossipCore;
this.clock = clock;
}
public void init(){
Runnable reapPerNodeData = () -> {
runPerNodeOnce();
runSharedOnce();
};
scheduledExecutor.scheduleAtFixedRate(reapPerNodeData, 0, 5, TimeUnit.SECONDS);
}
void runSharedOnce(){
for (Entry<String, SharedGossipDataMessage> entry : gossipCore.getSharedData().entrySet()){
if (entry.getValue().getExpireAt() < clock.currentTimeMillis()){
gossipCore.getSharedData().remove(entry.getKey(), entry.getValue());
}
}
}
void runPerNodeOnce(){
for (Entry<String, ConcurrentHashMap<String, GossipDataMessage>> node : gossipCore.getPerNodeData().entrySet()){
reapData(node.getValue());
}
}
void reapData(ConcurrentHashMap<String, GossipDataMessage> concurrentHashMap){
for (Entry<String, GossipDataMessage> entry : concurrentHashMap.entrySet()){
if (entry.getValue().getExpireAt() < clock.currentTimeMillis()){
concurrentHashMap.remove(entry.getKey(), entry.getValue());
}
}
}
public void close(){
scheduledExecutor.shutdown();
try {
scheduledExecutor.awaitTermination(5, TimeUnit.SECONDS);
} catch (InterruptedException e) {
}
}
}