package org.opendaylight.controller.cluster.datastore;
-import akka.actor.ActorPath;
import akka.actor.ActorSelection;
+import akka.dispatch.Futures;
+import akka.dispatch.OnComplete;
+import com.google.common.annotations.VisibleForTesting;
+import com.google.common.collect.Lists;
import com.google.common.util.concurrent.ListenableFuture;
-import com.google.common.util.concurrent.ListenableFutureTask;
-import org.opendaylight.controller.cluster.datastore.exceptions.TimeoutException;
+import com.google.common.util.concurrent.SettableFuture;
import org.opendaylight.controller.cluster.datastore.messages.AbortTransaction;
import org.opendaylight.controller.cluster.datastore.messages.AbortTransactionReply;
import org.opendaylight.controller.cluster.datastore.messages.CanCommitTransaction;
import org.opendaylight.controller.cluster.datastore.messages.CanCommitTransactionReply;
import org.opendaylight.controller.cluster.datastore.messages.CommitTransaction;
import org.opendaylight.controller.cluster.datastore.messages.CommitTransactionReply;
-import org.opendaylight.controller.cluster.datastore.messages.PreCommitTransaction;
-import org.opendaylight.controller.cluster.datastore.messages.PreCommitTransactionReply;
import org.opendaylight.controller.cluster.datastore.utils.ActorContext;
import org.opendaylight.controller.sal.core.spi.data.DOMStoreThreePhaseCommitCohort;
import org.slf4j.Logger;
import org.slf4j.LoggerFactory;
-
+import scala.concurrent.Future;
+import scala.runtime.AbstractFunction1;
import java.util.Collections;
import java.util.List;
-import java.util.concurrent.Callable;
-import java.util.concurrent.ExecutorService;
/**
* ThreePhaseCommitCohortProxy represents a set of remote cohort proxies
*/
-public class ThreePhaseCommitCohortProxy implements
- DOMStoreThreePhaseCommitCohort{
+public class ThreePhaseCommitCohortProxy implements DOMStoreThreePhaseCommitCohort{
+
+ private static final Logger LOG = LoggerFactory.getLogger(ThreePhaseCommitCohortProxy.class);
- private static final Logger
- LOG = LoggerFactory.getLogger(DistributedDataStore.class);
+ private static final ListenableFuture<Void> IMMEDIATE_SUCCESS =
+ com.google.common.util.concurrent.Futures.immediateFuture(null);
private final ActorContext actorContext;
- private final List<ActorPath> cohortPaths;
- private final ExecutorService executor;
+ private final List<Future<ActorSelection>> cohortFutures;
+ private volatile List<ActorSelection> cohorts;
private final String transactionId;
-
public ThreePhaseCommitCohortProxy(ActorContext actorContext,
- List<ActorPath> cohortPaths,
- String transactionId,
- ExecutorService executor) {
-
+ List<Future<ActorSelection>> cohortFutures, String transactionId) {
this.actorContext = actorContext;
- this.cohortPaths = cohortPaths;
+ this.cohortFutures = cohortFutures;
this.transactionId = transactionId;
- this.executor = executor;
}
- @Override public ListenableFuture<Boolean> canCommit() {
- Callable<Boolean> call = new Callable() {
+ private Future<Void> buildCohortList() {
+
+ Future<Iterable<ActorSelection>> combinedFutures = Futures.sequence(cohortFutures,
+ actorContext.getActorSystem().dispatcher());
+
+ return combinedFutures.transform(new AbstractFunction1<Iterable<ActorSelection>, Void>() {
+ @Override
+ public Void apply(Iterable<ActorSelection> actorSelections) {
+ cohorts = Lists.newArrayList(actorSelections);
+ if(LOG.isDebugEnabled()) {
+ LOG.debug("Tx {} successfully built cohort path list: {}",
+ transactionId, cohorts);
+ }
+ return null;
+ }
+ }, TransactionProxy.SAME_FAILURE_TRANSFORMER, actorContext.getActorSystem().dispatcher());
+ }
- @Override public Boolean call() throws Exception {
- for(ActorPath actorPath : cohortPaths){
- ActorSelection cohort = actorContext.actorSelection(actorPath);
+ @Override
+ public ListenableFuture<Boolean> canCommit() {
+ if(LOG.isDebugEnabled()) {
+ LOG.debug("Tx {} canCommit", transactionId);
+ }
+ final SettableFuture<Boolean> returnFuture = SettableFuture.create();
- try {
- Object response =
- actorContext.executeRemoteOperation(cohort,
- new CanCommitTransaction().toSerializable(),
- ActorContext.ASK_DURATION);
+ // The first phase of canCommit is to gather the list of cohort actor paths that will
+ // participate in the commit. buildCohortPathsList combines the cohort path Futures into
+ // one Future which we wait on asynchronously here. The cohort actor paths are
+ // extracted from ReadyTransactionReply messages by the Futures that were obtained earlier
+ // and passed to us from upstream processing. If any one fails then we'll fail canCommit.
+ buildCohortList().onComplete(new OnComplete<Void>() {
+ @Override
+ public void onComplete(Throwable failure, Void notUsed) throws Throwable {
+ if(failure != null) {
+ if(LOG.isDebugEnabled()) {
+ LOG.debug("Tx {}: a cohort Future failed: {}", transactionId, failure);
+ }
+ returnFuture.setException(failure);
+ } else {
+ finishCanCommit(returnFuture);
+ }
+ }
+ }, actorContext.getActorSystem().dispatcher());
+
+ return returnFuture;
+ }
+
+ private void finishCanCommit(final SettableFuture<Boolean> returnFuture) {
+ if(LOG.isDebugEnabled()) {
+ LOG.debug("Tx {} finishCanCommit", transactionId);
+ }
+ // The last phase of canCommit is to invoke all the cohort actors asynchronously to perform
+ // their canCommit processing. If any one fails then we'll fail canCommit.
+
+ Future<Iterable<Object>> combinedFuture =
+ invokeCohorts(new CanCommitTransaction(transactionId).toSerializable());
+
+ combinedFuture.onComplete(new OnComplete<Iterable<Object>>() {
+ @Override
+ public void onComplete(Throwable failure, Iterable<Object> responses) throws Throwable {
+ if(failure != null) {
+ if(LOG.isDebugEnabled()) {
+ LOG.debug("Tx {}: a canCommit cohort Future failed: {}", transactionId, failure);
+ }
+ returnFuture.setException(failure);
+ return;
+ }
+
+ boolean result = true;
+ for(Object response: responses) {
if (response.getClass().equals(CanCommitTransactionReply.SERIALIZABLE_CLASS)) {
CanCommitTransactionReply reply =
- CanCommitTransactionReply.fromSerializable(response);
+ CanCommitTransactionReply.fromSerializable(response);
if (!reply.getCanCommit()) {
- return false;
+ result = false;
+ break;
}
+ } else {
+ LOG.error("Unexpected response type {}", response.getClass());
+ returnFuture.setException(new IllegalArgumentException(
+ String.format("Unexpected response type {}", response.getClass())));
+ return;
}
- } catch(RuntimeException e){
- LOG.error("Unexpected Exception", e);
- return false;
}
-
-
- }
- return true;
+ if(LOG.isDebugEnabled()) {
+ LOG.debug("Tx {}: canCommit returning result: {}", transactionId, result);
+ }
+ returnFuture.set(Boolean.valueOf(result));
}
- };
+ }, actorContext.getActorSystem().dispatcher());
+ }
- ListenableFutureTask<Boolean>
- future = ListenableFutureTask.create(call);
+ private Future<Iterable<Object>> invokeCohorts(Object message) {
+ List<Future<Object>> futureList = Lists.newArrayListWithCapacity(cohorts.size());
+ for(ActorSelection cohort : cohorts) {
+ if(LOG.isDebugEnabled()) {
+ LOG.debug("Tx {}: Sending {} to cohort {}", transactionId, message, cohort);
+ }
- executor.submit(future);
+ futureList.add(actorContext.executeOperationAsync(cohort, message));
+ }
- return future;
+ return Futures.sequence(futureList, actorContext.getActorSystem().dispatcher());
}
- @Override public ListenableFuture<Void> preCommit() {
- return voidOperation(new PreCommitTransaction().toSerializable(), PreCommitTransactionReply.SERIALIZABLE_CLASS);
+ @Override
+ public ListenableFuture<Void> preCommit() {
+ // We don't need to do anything here - preCommit is done atomically with the commit phase
+ // by the shard.
+ return IMMEDIATE_SUCCESS;
}
- @Override public ListenableFuture<Void> abort() {
- return voidOperation(new AbortTransaction().toSerializable(), AbortTransactionReply.SERIALIZABLE_CLASS);
+ @Override
+ public ListenableFuture<Void> abort() {
+ // Note - we pass false for propagateException. In the front-end data broker, this method
+ // is called when one of the 3 phases fails with an exception. We'd rather have that
+ // original exception propagated to the client. If our abort fails and we propagate the
+ // exception then that exception will supersede and suppress the original exception. But
+ // it's the original exception that is the root cause and of more interest to the client.
+
+ return voidOperation("abort", new AbortTransaction(transactionId).toSerializable(),
+ AbortTransactionReply.SERIALIZABLE_CLASS, false);
}
- @Override public ListenableFuture<Void> commit() {
- return voidOperation(new CommitTransaction().toSerializable(), CommitTransactionReply.SERIALIZABLE_CLASS);
+ @Override
+ public ListenableFuture<Void> commit() {
+ return voidOperation("commit", new CommitTransaction(transactionId).toSerializable(),
+ CommitTransactionReply.SERIALIZABLE_CLASS, true);
}
- private ListenableFuture<Void> voidOperation(final Object message, final Class expectedResponseClass){
- Callable<Void> call = new Callable<Void>() {
-
- @Override public Void call() throws Exception {
- for(ActorPath actorPath : cohortPaths){
- ActorSelection cohort = actorContext.actorSelection(actorPath);
-
- try {
- Object response =
- actorContext.executeRemoteOperation(cohort,
- message,
- ActorContext.ASK_DURATION);
-
- if (response != null && !response.getClass()
- .equals(expectedResponseClass)) {
- throw new RuntimeException(
- String.format(
- "did not get the expected response \n\t\t expected : %s \n\t\t actual : %s",
- expectedResponseClass.toString(),
- response.getClass().toString())
- );
+ private ListenableFuture<Void> voidOperation(final String operationName, final Object message,
+ final Class<?> expectedResponseClass, final boolean propagateException) {
+
+ if(LOG.isDebugEnabled()) {
+ LOG.debug("Tx {} {}", transactionId, operationName);
+ }
+ final SettableFuture<Void> returnFuture = SettableFuture.create();
+
+ // The cohort actor list should already be built at this point by the canCommit phase but,
+ // if not for some reason, we'll try to build it here.
+
+ if(cohorts != null) {
+ finishVoidOperation(operationName, message, expectedResponseClass, propagateException,
+ returnFuture);
+ } else {
+ buildCohortList().onComplete(new OnComplete<Void>() {
+ @Override
+ public void onComplete(Throwable failure, Void notUsed) throws Throwable {
+ if(failure != null) {
+ if(LOG.isDebugEnabled()) {
+ LOG.debug("Tx {}: a {} cohort path Future failed: {}", transactionId,
+ operationName, failure);
+ }
+ if(propagateException) {
+ returnFuture.setException(failure);
+ } else {
+ returnFuture.set(null);
}
- } catch(TimeoutException e){
- LOG.error(String.format("A timeout occurred when processing operation : %s", message));
+ } else {
+ finishVoidOperation(operationName, message, expectedResponseClass,
+ propagateException, returnFuture);
}
}
- return null;
- }
- };
+ }, actorContext.getActorSystem().dispatcher());
+ }
- ListenableFutureTask<Void>
- future = ListenableFutureTask.create(call);
+ return returnFuture;
+ }
+
+ private void finishVoidOperation(final String operationName, final Object message,
+ final Class<?> expectedResponseClass, final boolean propagateException,
+ final SettableFuture<Void> returnFuture) {
+ if(LOG.isDebugEnabled()) {
+ LOG.debug("Tx {} finish {}", transactionId, operationName);
+ }
+ Future<Iterable<Object>> combinedFuture = invokeCohorts(message);
- executor.submit(future);
+ combinedFuture.onComplete(new OnComplete<Iterable<Object>>() {
+ @Override
+ public void onComplete(Throwable failure, Iterable<Object> responses) throws Throwable {
- return future;
+ Throwable exceptionToPropagate = failure;
+ if(exceptionToPropagate == null) {
+ for(Object response: responses) {
+ if(!response.getClass().equals(expectedResponseClass)) {
+ exceptionToPropagate = new IllegalArgumentException(
+ String.format("Unexpected response type {}",
+ response.getClass()));
+ break;
+ }
+ }
+ }
+ if(exceptionToPropagate != null) {
+ if(LOG.isDebugEnabled()) {
+ LOG.debug("Tx {}: a {} cohort Future failed: {}", transactionId,
+ operationName, exceptionToPropagate);
+ }
+ if(propagateException) {
+ // We don't log the exception here to avoid redundant logging since we're
+ // propagating to the caller in MD-SAL core who will log it.
+ returnFuture.setException(exceptionToPropagate);
+ } else {
+ // Since the caller doesn't want us to propagate the exception we'll also
+ // not log it normally. But it's usually not good to totally silence
+ // exceptions so we'll log it to debug level.
+ if(LOG.isDebugEnabled()) {
+ LOG.debug(String.format("%s failed", message.getClass().getSimpleName()),
+ exceptionToPropagate);
+ }
+ returnFuture.set(null);
+ }
+ } else {
+ if(LOG.isDebugEnabled()) {
+ LOG.debug("Tx {}: {} succeeded", transactionId, operationName);
+ }
+ returnFuture.set(null);
+ }
+ }
+ }, actorContext.getActorSystem().dispatcher());
}
- public List<ActorPath> getCohortPaths() {
- return Collections.unmodifiableList(this.cohortPaths);
+ @VisibleForTesting
+ List<Future<ActorSelection>> getCohortFutures() {
+ return Collections.unmodifiableList(cohortFutures);
}
}