HDFS-14272. [SBN read] Make ObserverReadProxyProvider initialize its state ID against the active NN on startup. Contributed by Erik Krogen.
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@ -87,6 +87,15 @@ public class ObserverReadProxyProvider<T extends ClientProtocol>
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*/
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*/
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private boolean observerReadEnabled;
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private boolean observerReadEnabled;
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/**
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* A client using an ObserverReadProxyProvider should first sync with the
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* active NameNode on startup. This ensures that the client reads data which
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* is consistent with the state of the world as of the time of its
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* instantiation. This variable will be true after this initial sync has
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* been performed.
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*/
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private volatile boolean msynced = false;
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/**
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/**
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* The index into the nameNodeProxies list currently being used. Should only
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* The index into the nameNodeProxies list currently being used. Should only
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* be accessed in synchronized methods.
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* be accessed in synchronized methods.
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@ -224,6 +233,22 @@ public class ObserverReadProxyProvider<T extends ClientProtocol>
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return currentProxy;
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return currentProxy;
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}
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}
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/**
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* This will call {@link ClientProtocol#msync()} on the active NameNode
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* (via the {@link #failoverProxy}) to initialize the state of this client.
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* Calling it multiple times is a no-op; only the first will perform an
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* msync.
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*
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* @see #msynced
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*/
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private synchronized void initializeMsync() throws IOException {
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if (msynced) {
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return; // No need for an msync
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}
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failoverProxy.getProxy().proxy.msync();
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msynced = true;
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}
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/**
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/**
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* An InvocationHandler to handle incoming requests. This class's invoke
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* An InvocationHandler to handle incoming requests. This class's invoke
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* method contains the primary logic for redirecting to observers.
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* method contains the primary logic for redirecting to observers.
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@ -244,6 +269,12 @@ public class ObserverReadProxyProvider<T extends ClientProtocol>
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Object retVal;
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Object retVal;
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if (observerReadEnabled && isRead(method)) {
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if (observerReadEnabled && isRead(method)) {
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if (!msynced) {
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// An msync() must first be performed to ensure that this client is
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// up-to-date with the active's state. This will only be done once.
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initializeMsync();
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}
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int failedObserverCount = 0;
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int failedObserverCount = 0;
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int activeCount = 0;
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int activeCount = 0;
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int standbyCount = 0;
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int standbyCount = 0;
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@ -315,6 +346,9 @@ public class ObserverReadProxyProvider<T extends ClientProtocol>
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// This exception will be handled by higher layers
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// This exception will be handled by higher layers
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throw e.getCause();
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throw e.getCause();
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}
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}
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// If this was reached, the request reached the active, so the
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// state is up-to-date with active and no further msync is needed.
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msynced = true;
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lastProxy = activeProxy;
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lastProxy = activeProxy;
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return retVal;
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return retVal;
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}
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}
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@ -1409,7 +1409,8 @@ public class NameNodeRpcServer implements NamenodeProtocols {
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@Override // ClientProtocol
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@Override // ClientProtocol
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public void msync() throws IOException {
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public void msync() throws IOException {
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// TODO : need to be filled up if needed. May be a no-op here.
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// Check for write access to ensure that msync only happens on active
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namesystem.checkOperation(OperationCategory.WRITE);
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}
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}
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@Override // ClientProtocol
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@Override // ClientProtocol
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@ -178,8 +178,12 @@ public class TestConsistentReadsObserver {
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// Therefore, the subsequent getFileStatus call should succeed.
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// Therefore, the subsequent getFileStatus call should succeed.
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dfs2.getClient().msync();
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dfs2.getClient().msync();
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dfs2.getFileStatus(testPath);
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dfs2.getFileStatus(testPath);
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if (HATestUtil.isSentToAnyOfNameNodes(dfs2, dfsCluster, 2)) {
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readStatus.set(1);
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readStatus.set(1);
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} catch (IOException e) {
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} else {
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readStatus.set(-1);
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}
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} catch (Exception e) {
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e.printStackTrace();
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e.printStackTrace();
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readStatus.set(-1);
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readStatus.set(-1);
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}
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}
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@ -196,6 +200,71 @@ public class TestConsistentReadsObserver {
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assertEquals(1, readStatus.get());
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assertEquals(1, readStatus.get());
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}
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}
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// A new client should first contact the active, before using an observer,
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// to ensure that it is up-to-date with the current state
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@Test
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public void testCallFromNewClient() throws Exception {
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// Set the order of nodes: Observer, Standby, Active
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// This is to ensure that test doesn't pass trivially because the active is
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// the first node contacted
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dfsCluster.transitionToStandby(0);
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dfsCluster.transitionToObserver(0);
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dfsCluster.transitionToStandby(2);
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dfsCluster.transitionToActive(2);
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try {
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// 0 == not completed, 1 == succeeded, -1 == failed
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AtomicInteger readStatus = new AtomicInteger(0);
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// Initialize the proxies for Observer Node.
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dfs.getClient().getHAServiceState();
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// Advance Observer's state ID so it is ahead of client's.
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dfs.mkdir(new Path("/test"), FsPermission.getDefault());
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dfsCluster.getNameNode(2).getRpcServer().rollEditLog();
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dfsCluster.getNameNode(0)
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.getNamesystem().getEditLogTailer().doTailEdits();
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dfs.mkdir(testPath, FsPermission.getDefault());
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assertSentTo(2);
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Configuration conf2 = new Configuration(conf);
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// Disable FS cache so two different DFS clients will be used.
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conf2.setBoolean("fs.hdfs.impl.disable.cache", true);
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DistributedFileSystem dfs2 =
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(DistributedFileSystem) FileSystem.get(conf2);
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dfs2.getClient().getHAServiceState();
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Thread reader = new Thread(() -> {
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try {
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dfs2.getFileStatus(testPath);
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readStatus.set(1);
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} catch (Exception e) {
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e.printStackTrace();
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readStatus.set(-1);
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}
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});
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reader.start();
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Thread.sleep(100);
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assertEquals(0, readStatus.get());
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dfsCluster.getNameNode(2).getRpcServer().rollEditLog();
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dfsCluster.getNameNode(0)
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.getNamesystem().getEditLogTailer().doTailEdits();
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GenericTestUtils.waitFor(() -> readStatus.get() != 0, 100, 10000);
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assertEquals(1, readStatus.get());
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} finally {
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// Put the cluster back the way it was when the test started
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dfsCluster.transitionToStandby(2);
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dfsCluster.transitionToObserver(2);
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dfsCluster.transitionToStandby(0);
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dfsCluster.transitionToActive(0);
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}
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}
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@Test
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@Test
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public void testUncoordinatedCall() throws Exception {
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public void testUncoordinatedCall() throws Exception {
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// make a write call so that client will be ahead of
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// make a write call so that client will be ahead of
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