+ transactionProxy.delete(TestModel.TEST_PATH);
+
+ verify(mockActorContext).executeOperationAsync(
+ eq(actorSelection(actorRef)), eqSerializedDeleteData());
+
+ verifyRecordingOperationFutures(transactionProxy.getRecordedOperationFutures(),
+ DeleteDataReply.class);
+ }
+
+ private void verifyCohortFutures(ThreePhaseCommitCohortProxy proxy,
+ Object... expReplies) throws Exception {
+ assertEquals("getReadyOperationFutures size", expReplies.length,
+ proxy.getCohortFutures().size());
+
+ int i = 0;
+ for( Future<ActorSelection> future: proxy.getCohortFutures()) {
+ assertNotNull("Ready operation Future is null", future);
+
+ Object expReply = expReplies[i++];
+ if(expReply instanceof ActorSelection) {
+ ActorSelection actual = Await.result(future, Duration.create(5, TimeUnit.SECONDS));
+ assertEquals("Cohort actor path", expReply, actual);
+ } else {
+ // Expecting exception.
+ try {
+ Await.result(future, Duration.create(5, TimeUnit.SECONDS));
+ fail("Expected exception from ready operation Future");
+ } catch(Exception e) {
+ // Expected
+ }
+ }
+ }
+ }
+
+ @Test
+ public void testReady() throws Exception {
+ ActorRef actorRef = setupActorContextWithInitialCreateTransaction(getSystem(), READ_WRITE);
+
+ NormalizedNode<?, ?> nodeToWrite = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+
+ doReturn(readSerializedDataReply(null)).when(mockActorContext).executeOperationAsync(
+ eq(actorSelection(actorRef)), eqSerializedReadData());
+
+ doReturn(writeSerializedDataReply()).when(mockActorContext).executeOperationAsync(
+ eq(actorSelection(actorRef)), eqSerializedWriteData(nodeToWrite));
+
+ doReturn(readySerializedTxReply(actorRef.path().toString())).when(mockActorContext).executeOperationAsync(
+ eq(actorSelection(actorRef)), isA(ReadyTransaction.SERIALIZABLE_CLASS));
+
+ TransactionProxy transactionProxy = new TransactionProxy(mockActorContext,
+ READ_WRITE);
+
+ transactionProxy.read(TestModel.TEST_PATH);
+
+ transactionProxy.write(TestModel.TEST_PATH, nodeToWrite);
+
+ DOMStoreThreePhaseCommitCohort ready = transactionProxy.ready();
+
+ assertTrue(ready instanceof ThreePhaseCommitCohortProxy);
+
+ ThreePhaseCommitCohortProxy proxy = (ThreePhaseCommitCohortProxy) ready;
+
+ verifyRecordingOperationFutures(transactionProxy.getRecordedOperationFutures(),
+ WriteDataReply.class);
+
+ verifyCohortFutures(proxy, getSystem().actorSelection(actorRef.path()));
+ }
+
+ private ActorRef testCompatibilityWithHeliumVersion(short version) throws Exception {
+ ActorRef actorRef = setupActorContextWithInitialCreateTransaction(getSystem(),
+ READ_WRITE, version);
+
+ NormalizedNode<?, ?> testNode = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+
+ doReturn(readSerializedDataReply(testNode, version)).when(mockActorContext).executeOperationAsync(
+ eq(actorSelection(actorRef)), eqSerializedReadData());
+
+ doReturn(writeSerializedDataReply(version)).when(mockActorContext).executeOperationAsync(
+ eq(actorSelection(actorRef)), eqSerializedWriteData(testNode, version));
+
+ doReturn(mergeSerializedDataReply(version)).when(mockActorContext).executeOperationAsync(
+ eq(actorSelection(actorRef)), eqSerializedMergeData(testNode, version));
+
+ doReturn(readySerializedTxReply(actorRef.path().toString())).when(mockActorContext).executeOperationAsync(
+ eq(actorSelection(actorRef)), isA(ReadyTransaction.SERIALIZABLE_CLASS));
+
+ doReturn(actorRef.path().toString()).when(mockActorContext).resolvePath(eq(actorRef.path().toString()),
+ eq(actorRef.path().toString()));
+
+ TransactionProxy transactionProxy = new TransactionProxy(mockActorContext, READ_WRITE);
+
+ Optional<NormalizedNode<?, ?>> readOptional = transactionProxy.read(TestModel.TEST_PATH).
+ get(5, TimeUnit.SECONDS);
+
+ assertEquals("NormalizedNode isPresent", true, readOptional.isPresent());
+ assertEquals("Response NormalizedNode", testNode, readOptional.get());
+
+ transactionProxy.write(TestModel.TEST_PATH, testNode);
+
+ transactionProxy.merge(TestModel.TEST_PATH, testNode);
+
+ DOMStoreThreePhaseCommitCohort ready = transactionProxy.ready();
+
+ assertTrue(ready instanceof ThreePhaseCommitCohortProxy);
+
+ ThreePhaseCommitCohortProxy proxy = (ThreePhaseCommitCohortProxy) ready;
+
+ verifyRecordingOperationFutures(transactionProxy.getRecordedOperationFutures(),
+ ShardTransactionMessages.WriteDataReply.class, ShardTransactionMessages.MergeDataReply.class);
+
+ verifyCohortFutures(proxy, getSystem().actorSelection(actorRef.path()));
+
+ return actorRef;
+ }
+
+ @Test
+ public void testCompatibilityWithBaseHeliumVersion() throws Exception {
+ ActorRef actorRef = testCompatibilityWithHeliumVersion(DataStoreVersions.BASE_HELIUM_VERSION);
+
+ verify(mockActorContext).resolvePath(eq(actorRef.path().toString()),
+ eq(actorRef.path().toString()));
+ }
+
+ @Test
+ public void testCompatibilityWithHeliumR1Version() throws Exception {
+ ActorRef actorRef = testCompatibilityWithHeliumVersion(DataStoreVersions.HELIUM_1_VERSION);
+
+ verify(mockActorContext, Mockito.never()).resolvePath(eq(actorRef.path().toString()),
+ eq(actorRef.path().toString()));
+ }
+
+ @Test
+ public void testReadyWithRecordingOperationFailure() throws Exception {
+ ActorRef actorRef = setupActorContextWithInitialCreateTransaction(getSystem(), WRITE_ONLY);
+
+ NormalizedNode<?, ?> nodeToWrite = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+
+ doReturn(mergeSerializedDataReply()).when(mockActorContext).executeOperationAsync(
+ eq(actorSelection(actorRef)), eqSerializedMergeData(nodeToWrite));
+
+ doReturn(Futures.failed(new TestException())).when(mockActorContext).
+ executeOperationAsync(eq(actorSelection(actorRef)), eqSerializedWriteData(nodeToWrite));
+
+ doReturn(readySerializedTxReply(actorRef.path().toString())).when(mockActorContext).executeOperationAsync(
+ eq(actorSelection(actorRef)), isA(ReadyTransaction.SERIALIZABLE_CLASS));
+
+ doReturn(false).when(mockActorContext).isPathLocal(actorRef.path().toString());
+
+ TransactionProxy transactionProxy = new TransactionProxy(mockActorContext,
+ WRITE_ONLY);
+
+ transactionProxy.merge(TestModel.TEST_PATH, nodeToWrite);
+
+ transactionProxy.write(TestModel.TEST_PATH, nodeToWrite);
+
+ DOMStoreThreePhaseCommitCohort ready = transactionProxy.ready();
+
+ assertTrue(ready instanceof ThreePhaseCommitCohortProxy);
+
+ ThreePhaseCommitCohortProxy proxy = (ThreePhaseCommitCohortProxy) ready;
+
+ verifyCohortFutures(proxy, TestException.class);
+
+ verifyRecordingOperationFutures(transactionProxy.getRecordedOperationFutures(),
+ MergeDataReply.class, TestException.class);
+ }
+
+ @Test
+ public void testReadyWithReplyFailure() throws Exception {
+ ActorRef actorRef = setupActorContextWithInitialCreateTransaction(getSystem(), WRITE_ONLY);
+
+ NormalizedNode<?, ?> nodeToWrite = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+
+ doReturn(mergeSerializedDataReply()).when(mockActorContext).executeOperationAsync(
+ eq(actorSelection(actorRef)), eqSerializedMergeData(nodeToWrite));
+
+ doReturn(Futures.failed(new TestException())).when(mockActorContext).
+ executeOperationAsync(eq(actorSelection(actorRef)),
+ isA(ReadyTransaction.SERIALIZABLE_CLASS));
+
+ TransactionProxy transactionProxy = new TransactionProxy(mockActorContext,
+ WRITE_ONLY);
+
+ transactionProxy.merge(TestModel.TEST_PATH, nodeToWrite);
+
+ DOMStoreThreePhaseCommitCohort ready = transactionProxy.ready();
+
+ assertTrue(ready instanceof ThreePhaseCommitCohortProxy);
+
+ ThreePhaseCommitCohortProxy proxy = (ThreePhaseCommitCohortProxy) ready;
+
+ verifyRecordingOperationFutures(transactionProxy.getRecordedOperationFutures(),
+ MergeDataReply.class);
+
+ verifyCohortFutures(proxy, TestException.class);
+ }
+
+ @Test
+ public void testReadyWithInitialCreateTransactionFailure() throws Exception {
+
+ doReturn(Futures.failed(new PrimaryNotFoundException("mock"))).when(
+ mockActorContext).findPrimaryShardAsync(anyString());
+
+ TransactionProxy transactionProxy = new TransactionProxy(mockActorContext,
+ WRITE_ONLY);
+
+ NormalizedNode<?, ?> nodeToWrite = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+
+ transactionProxy.merge(TestModel.TEST_PATH, nodeToWrite);
+
+ transactionProxy.write(TestModel.TEST_PATH, nodeToWrite);
+
+ transactionProxy.delete(TestModel.TEST_PATH);
+
+ DOMStoreThreePhaseCommitCohort ready = transactionProxy.ready();
+
+ assertTrue(ready instanceof ThreePhaseCommitCohortProxy);
+
+ ThreePhaseCommitCohortProxy proxy = (ThreePhaseCommitCohortProxy) ready;
+
+ verifyCohortFutures(proxy, PrimaryNotFoundException.class);
+ }
+
+ @Test
+ public void testReadyWithInvalidReplyMessageType() throws Exception {
+ ActorRef actorRef = setupActorContextWithInitialCreateTransaction(getSystem(), WRITE_ONLY);
+
+ NormalizedNode<?, ?> nodeToWrite = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+
+ doReturn(writeSerializedDataReply()).when(mockActorContext).executeOperationAsync(
+ eq(actorSelection(actorRef)), eqSerializedWriteData(nodeToWrite));
+
+ doReturn(Futures.successful(new Object())).when(mockActorContext).
+ executeOperationAsync(eq(actorSelection(actorRef)),
+ isA(ReadyTransaction.SERIALIZABLE_CLASS));
+
+ TransactionProxy transactionProxy = new TransactionProxy(mockActorContext,
+ WRITE_ONLY);
+
+ transactionProxy.write(TestModel.TEST_PATH, nodeToWrite);
+
+ DOMStoreThreePhaseCommitCohort ready = transactionProxy.ready();
+
+ assertTrue(ready instanceof ThreePhaseCommitCohortProxy);
+
+ ThreePhaseCommitCohortProxy proxy = (ThreePhaseCommitCohortProxy) ready;
+
+ verifyCohortFutures(proxy, IllegalArgumentException.class);
+ }
+
+ @Test
+ public void testGetIdentifier() {
+ setupActorContextWithInitialCreateTransaction(getSystem(), READ_ONLY);
+ TransactionProxy transactionProxy = new TransactionProxy(mockActorContext,
+ TransactionProxy.TransactionType.READ_ONLY);
+
+ Object id = transactionProxy.getIdentifier();
+ assertNotNull("getIdentifier returned null", id);
+ assertTrue("Invalid identifier: " + id, id.toString().startsWith(memberName));
+ }
+
+ @Test
+ public void testClose() throws Exception{
+ ActorRef actorRef = setupActorContextWithInitialCreateTransaction(getSystem(), READ_WRITE);
+
+ doReturn(readSerializedDataReply(null)).when(mockActorContext).executeOperationAsync(
+ eq(actorSelection(actorRef)), eqSerializedReadData());
+
+ TransactionProxy transactionProxy = new TransactionProxy(mockActorContext,
+ READ_WRITE);
+
+ transactionProxy.read(TestModel.TEST_PATH);
+
+ transactionProxy.close();
+
+ verify(mockActorContext).sendOperationAsync(
+ eq(actorSelection(actorRef)), isA(CloseTransaction.SERIALIZABLE_CLASS));
+ }
+
+
+ /**
+ * Method to test a local Tx actor. The Tx paths are matched to decide if the
+ * Tx actor is local or not. This is done by mocking the Tx actor path
+ * and the caller paths and ensuring that the paths have the remote-address format
+ *
+ * Note: Since the default akka provider for test is not a RemoteActorRefProvider,
+ * the paths returned for the actors for all the tests are not qualified remote paths.
+ * Hence are treated as non-local/remote actors. In short, all tests except
+ * few below run for remote actors
+ *
+ * @throws Exception
+ */
+ @Test
+ public void testLocalTxActorRead() throws Exception {
+ ActorSystem actorSystem = getSystem();
+ ActorRef shardActorRef = actorSystem.actorOf(Props.create(DoNothingActor.class));
+
+ doReturn(actorSystem.actorSelection(shardActorRef.path())).
+ when(mockActorContext).actorSelection(shardActorRef.path().toString());
+
+ doReturn(Futures.successful(actorSystem.actorSelection(shardActorRef.path()))).
+ when(mockActorContext).findPrimaryShardAsync(eq(DefaultShardStrategy.DEFAULT_SHARD));
+
+ String actorPath = "akka.tcp://system@127.0.0.1:2550/user/tx-actor";
+ CreateTransactionReply createTransactionReply = CreateTransactionReply.newBuilder()
+ .setTransactionId("txn-1")
+ .setTransactionActorPath(actorPath)
+ .build();
+
+ doReturn(Futures.successful(createTransactionReply)).when(mockActorContext).
+ executeOperationAsync(eq(actorSystem.actorSelection(shardActorRef.path())),
+ eqCreateTransaction(memberName, READ_ONLY));
+
+ doReturn(true).when(mockActorContext).isPathLocal(actorPath);
+
+ TransactionProxy transactionProxy = new TransactionProxy(mockActorContext,READ_ONLY);
+
+ // negative test case with null as the reply
+ doReturn(readDataReply(null)).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqReadData());
+
+ Optional<NormalizedNode<?, ?>> readOptional = transactionProxy.read(
+ TestModel.TEST_PATH).get(5, TimeUnit.SECONDS);
+
+ assertEquals("NormalizedNode isPresent", false, readOptional.isPresent());
+
+ // test case with node as read data reply
+ NormalizedNode<?, ?> expectedNode = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+
+ doReturn(readDataReply(expectedNode)).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqReadData());
+
+ readOptional = transactionProxy.read(TestModel.TEST_PATH).get(5, TimeUnit.SECONDS);
+
+ assertEquals("NormalizedNode isPresent", true, readOptional.isPresent());
+
+ assertEquals("Response NormalizedNode", expectedNode, readOptional.get());
+
+ // test for local data exists
+ doReturn(dataExistsReply(true)).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqDataExists());
+
+ boolean exists = transactionProxy.exists(TestModel.TEST_PATH).checkedGet();
+
+ assertEquals("Exists response", true, exists);
+ }
+
+ @Test
+ public void testLocalTxActorWrite() throws Exception {
+ ActorSystem actorSystem = getSystem();
+ ActorRef shardActorRef = actorSystem.actorOf(Props.create(DoNothingActor.class));
+
+ doReturn(actorSystem.actorSelection(shardActorRef.path())).
+ when(mockActorContext).actorSelection(shardActorRef.path().toString());
+
+ doReturn(Futures.successful(actorSystem.actorSelection(shardActorRef.path()))).
+ when(mockActorContext).findPrimaryShardAsync(eq(DefaultShardStrategy.DEFAULT_SHARD));
+
+ String actorPath = "akka.tcp://system@127.0.0.1:2550/user/tx-actor";
+ CreateTransactionReply createTransactionReply = CreateTransactionReply.newBuilder()
+ .setTransactionId("txn-1")
+ .setTransactionActorPath(actorPath)
+ .build();
+
+ doReturn(Futures.successful(createTransactionReply)).when(mockActorContext).
+ executeOperationAsync(eq(actorSystem.actorSelection(shardActorRef.path())),
+ eqCreateTransaction(memberName, WRITE_ONLY));
+
+ doReturn(true).when(mockActorContext).isPathLocal(actorPath);
+
+ NormalizedNode<?, ?> nodeToWrite = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+
+ doReturn(writeDataReply()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqWriteData(nodeToWrite));
+
+ TransactionProxy transactionProxy = new TransactionProxy(mockActorContext, WRITE_ONLY);
+ transactionProxy.write(TestModel.TEST_PATH, nodeToWrite);
+
+ verify(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqWriteData(nodeToWrite));
+
+ //testing local merge
+ doReturn(mergeDataReply()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqMergeData(nodeToWrite));
+
+ transactionProxy.merge(TestModel.TEST_PATH, nodeToWrite);
+
+ verify(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqMergeData(nodeToWrite));
+
+
+ //testing local delete
+ doReturn(deleteDataReply()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqDeleteData());
+
+ transactionProxy.delete(TestModel.TEST_PATH);
+
+ verify(mockActorContext).executeOperationAsync(any(ActorSelection.class), eqDeleteData());
+
+ verifyRecordingOperationFutures(transactionProxy.getRecordedOperationFutures(),
+ WriteDataReply.class, MergeDataReply.class, DeleteDataReply.class);
+
+ // testing ready
+ doReturn(readyTxReply(shardActorRef.path().toString())).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), isA(ReadyTransaction.class));
+
+ DOMStoreThreePhaseCommitCohort ready = transactionProxy.ready();
+
+ assertTrue(ready instanceof ThreePhaseCommitCohortProxy);
+
+ ThreePhaseCommitCohortProxy proxy = (ThreePhaseCommitCohortProxy) ready;
+
+ verifyCohortFutures(proxy, getSystem().actorSelection(shardActorRef.path()));
+ }
+
+ private static interface TransactionProxyOperation {
+ void run(TransactionProxy transactionProxy);
+ }
+
+ private void throttleOperation(TransactionProxyOperation operation) {
+ throttleOperation(operation, 1, true);
+ }
+
+ private void throttleOperation(TransactionProxyOperation operation, int outstandingOpsLimit, boolean shardFound){
+ ActorSystem actorSystem = getSystem();
+ ActorRef shardActorRef = actorSystem.actorOf(Props.create(DoNothingActor.class));
+
+ doReturn(outstandingOpsLimit).when(mockActorContext).getTransactionOutstandingOperationLimit();
+
+ doReturn(actorSystem.actorSelection(shardActorRef.path())).
+ when(mockActorContext).actorSelection(shardActorRef.path().toString());
+
+ if(shardFound) {
+ doReturn(Futures.successful(actorSystem.actorSelection(shardActorRef.path()))).
+ when(mockActorContext).findPrimaryShardAsync(eq(DefaultShardStrategy.DEFAULT_SHARD));
+ } else {
+ doReturn(Futures.failed(new Exception("not found")))
+ .when(mockActorContext).findPrimaryShardAsync(eq(DefaultShardStrategy.DEFAULT_SHARD));
+ }
+
+ String actorPath = "akka.tcp://system@127.0.0.1:2550/user/tx-actor";
+ CreateTransactionReply createTransactionReply = CreateTransactionReply.newBuilder()
+ .setTransactionId("txn-1")
+ .setTransactionActorPath(actorPath)
+ .build();
+
+ doReturn(Futures.successful(createTransactionReply)).when(mockActorContext).
+ executeOperationAsync(eq(actorSystem.actorSelection(shardActorRef.path())),
+ eqCreateTransaction(memberName, READ_WRITE));
+
+ doReturn(true).when(mockActorContext).isPathLocal(actorPath);
+
+ TransactionProxy transactionProxy = new TransactionProxy(mockActorContext, READ_WRITE);
+
+ long start = System.currentTimeMillis();
+
+ operation.run(transactionProxy);
+
+ long end = System.currentTimeMillis();
+
+ Assert.assertTrue(String.format("took less time than expected %s was %s",
+ mockActorContext.getDatastoreContext().getOperationTimeoutInSeconds()*1000,
+ (end-start)), (end - start) > mockActorContext.getDatastoreContext().getOperationTimeoutInSeconds()*1000);
+
+ }
+
+ private void completeOperation(TransactionProxyOperation operation){
+ completeOperation(operation, true);
+ }
+
+ private void completeOperation(TransactionProxyOperation operation, boolean shardFound){
+ ActorSystem actorSystem = getSystem();
+ ActorRef shardActorRef = actorSystem.actorOf(Props.create(DoNothingActor.class));
+
+ doReturn(1).when(mockActorContext).getTransactionOutstandingOperationLimit();
+
+ doReturn(actorSystem.actorSelection(shardActorRef.path())).
+ when(mockActorContext).actorSelection(shardActorRef.path().toString());
+
+ if(shardFound) {
+ doReturn(Futures.successful(actorSystem.actorSelection(shardActorRef.path()))).
+ when(mockActorContext).findPrimaryShardAsync(eq(DefaultShardStrategy.DEFAULT_SHARD));
+ } else {
+ doReturn(Futures.failed(new Exception("not found")))
+ .when(mockActorContext).findPrimaryShardAsync(eq(DefaultShardStrategy.DEFAULT_SHARD));
+ }
+
+ String actorPath = "akka.tcp://system@127.0.0.1:2550/user/tx-actor";
+ CreateTransactionReply createTransactionReply = CreateTransactionReply.newBuilder()
+ .setTransactionId("txn-1")
+ .setTransactionActorPath(actorPath)
+ .build();
+
+ doReturn(Futures.successful(createTransactionReply)).when(mockActorContext).
+ executeOperationAsync(eq(actorSystem.actorSelection(shardActorRef.path())),
+ eqCreateTransaction(memberName, READ_WRITE));
+
+ doReturn(true).when(mockActorContext).isPathLocal(actorPath);
+
+ TransactionProxy transactionProxy = new TransactionProxy(mockActorContext, READ_WRITE);
+
+ long start = System.currentTimeMillis();
+
+ operation.run(transactionProxy);
+
+ long end = System.currentTimeMillis();
+
+ Assert.assertTrue(String.format("took more time than expected %s was %s",
+ mockActorContext.getDatastoreContext().getOperationTimeoutInSeconds()*1000,
+ (end-start)), (end - start) <= mockActorContext.getDatastoreContext().getOperationTimeoutInSeconds()*1000);
+ }
+
+ public void testWriteThrottling(boolean shardFound){
+
+ throttleOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ NormalizedNode<?, ?> nodeToWrite = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+
+ doReturn(incompleteFuture()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqWriteData(nodeToWrite));
+
+ transactionProxy.write(TestModel.TEST_PATH, nodeToWrite);
+
+ transactionProxy.write(TestModel.TEST_PATH, nodeToWrite);
+ }
+ }, 1, shardFound);
+ }
+
+ @Test
+ public void testWriteThrottlingWhenShardFound(){
+ throttleOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ NormalizedNode<?, ?> nodeToWrite = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+
+ doReturn(incompleteFuture()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqWriteData(nodeToWrite));
+
+ transactionProxy.write(TestModel.TEST_PATH, nodeToWrite);
+
+ transactionProxy.write(TestModel.TEST_PATH, nodeToWrite);
+ }
+ });
+
+ }
+
+ @Test
+ public void testWriteThrottlingWhenShardNotFound(){
+ // Confirm that there is no throttling when the Shard is not found
+ completeOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ NormalizedNode<?, ?> nodeToWrite = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+
+ doReturn(incompleteFuture()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqWriteData(nodeToWrite));
+
+ transactionProxy.write(TestModel.TEST_PATH, nodeToWrite);
+
+ transactionProxy.write(TestModel.TEST_PATH, nodeToWrite);
+ }
+ }, false);
+
+ }
+
+
+ @Test
+ public void testWriteCompletion(){
+ completeOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ NormalizedNode<?, ?> nodeToWrite = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+
+ doReturn(writeSerializedDataReply()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqSerializedWriteData(nodeToWrite));
+
+ transactionProxy.write(TestModel.TEST_PATH, nodeToWrite);
+
+ transactionProxy.write(TestModel.TEST_PATH, nodeToWrite);
+ }
+ });
+
+ }
+
+ @Test
+ public void testMergeThrottlingWhenShardFound(){
+
+ throttleOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ NormalizedNode<?, ?> nodeToMerge = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+
+ doReturn(incompleteFuture()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqMergeData(nodeToMerge));
+
+ transactionProxy.merge(TestModel.TEST_PATH, nodeToMerge);
+
+ transactionProxy.merge(TestModel.TEST_PATH, nodeToMerge);
+ }
+ });
+ }
+
+ @Test
+ public void testMergeThrottlingWhenShardNotFound(){
+
+ completeOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ NormalizedNode<?, ?> nodeToMerge = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+
+ doReturn(incompleteFuture()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqMergeData(nodeToMerge));
+
+ transactionProxy.merge(TestModel.TEST_PATH, nodeToMerge);
+
+ transactionProxy.merge(TestModel.TEST_PATH, nodeToMerge);
+ }
+ }, false);
+ }
+
+ @Test
+ public void testMergeCompletion(){
+ completeOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ NormalizedNode<?, ?> nodeToMerge = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+
+ doReturn(mergeDataReply()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqMergeData(nodeToMerge));
+
+ transactionProxy.merge(TestModel.TEST_PATH, nodeToMerge);
+
+ transactionProxy.merge(TestModel.TEST_PATH, nodeToMerge);
+ }
+ });
+
+ }
+
+ @Test
+ public void testDeleteThrottlingWhenShardFound(){
+
+ throttleOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ doReturn(incompleteFuture()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqDeleteData());
+
+ transactionProxy.delete(TestModel.TEST_PATH);
+
+ transactionProxy.delete(TestModel.TEST_PATH);
+ }
+ });
+ }
+
+
+ @Test
+ public void testDeleteThrottlingWhenShardNotFound(){
+
+ completeOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ doReturn(incompleteFuture()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqDeleteData());
+
+ transactionProxy.delete(TestModel.TEST_PATH);
+
+ transactionProxy.delete(TestModel.TEST_PATH);
+ }
+ }, false);
+ }
+
+ @Test
+ public void testDeleteCompletion(){
+ completeOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ doReturn(deleteDataReply()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqDeleteData());
+
+ transactionProxy.delete(TestModel.TEST_PATH);
+
+ transactionProxy.delete(TestModel.TEST_PATH);
+ }
+ });
+
+ }
+
+ @Test
+ public void testReadThrottlingWhenShardFound(){
+
+ throttleOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ doReturn(incompleteFuture()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqReadData());
+
+ transactionProxy.read(TestModel.TEST_PATH);
+
+ transactionProxy.read(TestModel.TEST_PATH);
+ }
+ });
+ }
+
+ @Test
+ public void testReadThrottlingWhenShardNotFound(){
+
+ completeOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ doReturn(incompleteFuture()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqReadData());
+
+ transactionProxy.read(TestModel.TEST_PATH);
+
+ transactionProxy.read(TestModel.TEST_PATH);
+ }
+ }, false);
+ }
+
+
+ @Test
+ public void testReadCompletion(){
+ completeOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ NormalizedNode<?, ?> nodeToRead = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+
+ doReturn(readDataReply(nodeToRead)).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqReadData());
+
+ transactionProxy.read(TestModel.TEST_PATH);
+
+ transactionProxy.read(TestModel.TEST_PATH);
+ }
+ });
+
+ }
+
+ @Test
+ public void testExistsThrottlingWhenShardFound(){
+
+ throttleOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ doReturn(incompleteFuture()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqDataExists());
+
+ transactionProxy.exists(TestModel.TEST_PATH);
+
+ transactionProxy.exists(TestModel.TEST_PATH);
+ }
+ });
+ }
+
+ @Test
+ public void testExistsThrottlingWhenShardNotFound(){
+
+ completeOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ doReturn(incompleteFuture()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqDataExists());
+
+ transactionProxy.exists(TestModel.TEST_PATH);
+
+ transactionProxy.exists(TestModel.TEST_PATH);
+ }
+ }, false);
+ }
+
+
+ @Test
+ public void testExistsCompletion(){
+ completeOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ doReturn(dataExistsReply(true)).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqDataExists());
+
+ transactionProxy.exists(TestModel.TEST_PATH);
+
+ transactionProxy.exists(TestModel.TEST_PATH);
+ }
+ });
+
+ }
+
+ @Test
+ public void testReadyThrottling(){
+
+ throttleOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ NormalizedNode<?, ?> nodeToWrite = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+
+ doReturn(incompleteFuture()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), eqWriteData(nodeToWrite));
+
+ doReturn(incompleteFuture()).when(mockActorContext).executeOperationAsync(
+ any(ActorSelection.class), any(ReadyTransaction.class));
+
+ transactionProxy.write(TestModel.TEST_PATH, nodeToWrite);
+
+ transactionProxy.ready();
+ }
+ });
+ }
+
+ @Test
+ public void testReadyThrottlingWithTwoTransactionContexts(){
+
+ throttleOperation(new TransactionProxyOperation() {
+ @Override
+ public void run(TransactionProxy transactionProxy) {
+ NormalizedNode<?, ?> nodeToWrite = ImmutableNodes.containerNode(TestModel.TEST_QNAME);
+ NormalizedNode<?, ?> carsNode = ImmutableNodes.containerNode(CarsModel.BASE_QNAME);