Example usage for org.apache.hadoop.yarn.api ApplicationConstants LOG_DIR_EXPANSION_VAR

List of usage examples for org.apache.hadoop.yarn.api ApplicationConstants LOG_DIR_EXPANSION_VAR

Introduction

In this page you can find the example usage for org.apache.hadoop.yarn.api ApplicationConstants LOG_DIR_EXPANSION_VAR.

Prototype

String LOG_DIR_EXPANSION_VAR

To view the source code for org.apache.hadoop.yarn.api ApplicationConstants LOG_DIR_EXPANSION_VAR.

Click Source Link

Document

The temporary environmental variable for container log directory.

Usage

From source file:alluxio.yarn.YarnUtils.java

License:Apache License

/**
 * Creates a command string for running the Alluxio yarn setup script for the given type of yarn
 * container./* w  w w.j  av a 2s . c o m*/
 *
 * @param containerType the type of container to build the command for
 * @param args arguments to pass to to the setup script
 * @return the built command string
 */
public static String buildCommand(YarnContainerType containerType, Map<String, String> args) {
    CommandBuilder commandBuilder = new CommandBuilder("./" + ALLUXIO_SETUP_SCRIPT)
            .addArg(containerType.getName());
    for (Entry<String, String> argsEntry : args.entrySet()) {
        commandBuilder.addArg(argsEntry.getKey(), argsEntry.getValue());
    }
    // Redirect stdout and stderr to yarn log files
    commandBuilder.addArg("1>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/stdout");
    commandBuilder.addArg("2>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/stderr");
    return commandBuilder.toString();
}

From source file:cn.edu.buaa.act.petuumOnYarn.Client.java

License:Apache License

/**
 * Main run function for the client//w w w . ja  va  2 s . com
 * 
 * @return true if application completed successfully
 * @throws IOException
 * @throws YarnException
 */
public boolean run() throws IOException, YarnException {

    LOG.info("Running Client");
    yarnClient.start();
    String[] s;
    s = conf.getStrings(YarnConfiguration.RM_ADDRESS);
    for (String ss : s)
        LOG.info("RM address: " + ss);
    YarnClusterMetrics clusterMetrics = yarnClient.getYarnClusterMetrics();
    LOG.info("Got Cluster metric info from ASM" + ", numNodeManagers=" + clusterMetrics.getNumNodeManagers());

    List<NodeReport> clusterNodeReports = yarnClient.getNodeReports(NodeState.RUNNING);
    LOG.info("Got Cluster node info from ASM");
    for (NodeReport node : clusterNodeReports) {
        LOG.info("Got node report from ASM for" + ", nodeId=" + node.getNodeId() + ", nodeAddress"
                + node.getHttpAddress() + ", nodeRackName" + node.getRackName() + ", nodeNumContainers"
                + node.getNumContainers() + ", nodeIdHost" + node.getNodeId().getHost());
    }

    QueueInfo queueInfo = yarnClient.getQueueInfo(this.amQueue);
    LOG.info("Queue info" + ", queueName=" + queueInfo.getQueueName() + ", queueCurrentCapacity="
            + queueInfo.getCurrentCapacity() + ", queueMaxCapacity=" + queueInfo.getMaximumCapacity()
            + ", queueApplicationCount=" + queueInfo.getApplications().size() + ", queueChildQueueCount="
            + queueInfo.getChildQueues().size());

    List<QueueUserACLInfo> listAclInfo = yarnClient.getQueueAclsInfo();
    for (QueueUserACLInfo aclInfo : listAclInfo) {
        for (QueueACL userAcl : aclInfo.getUserAcls()) {
            LOG.info("User ACL Info for Queue" + ", queueName=" + aclInfo.getQueueName() + ", userAcl="
                    + userAcl.name());
        }
    }

    // Get a new application id
    YarnClientApplication app = yarnClient.createApplication();
    GetNewApplicationResponse appResponse = app.getNewApplicationResponse();
    int maxMem = appResponse.getMaximumResourceCapability().getMemory();
    LOG.info("Max mem capabililty of resources in this cluster " + maxMem);

    // A resource ask cannot exceed the max.
    if (amMemory > maxMem) {
        LOG.info("AM memory specified above max threshold of cluster. Using max value." + ", specified="
                + amMemory + ", max=" + maxMem);
        amMemory = maxMem;
    }

    int maxVCores = appResponse.getMaximumResourceCapability().getVirtualCores();
    LOG.info("Max virtual cores capabililty of resources in this cluster " + maxVCores);

    if (amVCores > maxVCores) {
        LOG.info("AM virtual cores specified above max threshold of cluster. " + "Using max value."
                + ", specified=" + amVCores + ", max=" + maxVCores);
        amVCores = maxVCores;
    }

    // set the application name
    ApplicationSubmissionContext appContext = app.getApplicationSubmissionContext();
    ApplicationId appId = appContext.getApplicationId();

    appContext.setKeepContainersAcrossApplicationAttempts(keepContainers);
    appContext.setApplicationName(appName);

    // set local resources for the application master
    // local files or archives as needed
    // In this scenario, the jar file for the application master is part of
    // the local resources
    Map<String, LocalResource> localResources = new HashMap<String, LocalResource>();

    LOG.info("Copy App Master jar from local filesystem and add to local environment");
    // Copy the application master jar to the filesystem
    // Create a local resource to point to the destination jar path
    FileSystem fs = FileSystem.get(conf);
    YarnUtil.copyAndAddToLocalResources(fs, appMasterJar, petuumHDFSPathPrefix, appMasterJarPath,
            localResources, null);
    scriptHDFSPath = YarnUtil.copyToHDFS(fs, scriptPath, petuumHDFSPathPrefix, launchPath, null);
    // Set the log4j properties if needed
    if (!log4jPropFile.isEmpty()) {
        YarnUtil.copyAndAddToLocalResources(fs, log4jPropFile, petuumHDFSPathPrefix, log4jPath, localResources,
                null);
    }

    // Set the env variables to be setup in the env where the application
    // master will be run
    LOG.info("Set the environment for the application master");
    Map<String, String> env = new HashMap<String, String>();

    // Add AppMaster.jar location to classpath
    // At some point we should not be required to add
    // the hadoop specific classpaths to the env.
    // It should be provided out of the box.
    // For now setting all required classpaths including
    // the classpath to "." for the application jar
    StringBuilder classPathEnv = new StringBuilder(Environment.CLASSPATH.$$())
            .append(ApplicationConstants.CLASS_PATH_SEPARATOR).append("./*");
    for (String c : conf.getStrings(YarnConfiguration.YARN_APPLICATION_CLASSPATH,
            YarnConfiguration.DEFAULT_YARN_CROSS_PLATFORM_APPLICATION_CLASSPATH)) {
        classPathEnv.append(ApplicationConstants.CLASS_PATH_SEPARATOR);
        classPathEnv.append(c.trim());
    }
    classPathEnv.append(ApplicationConstants.CLASS_PATH_SEPARATOR).append("./log4j.properties");

    // add the runtime classpath needed for tests to work
    if (conf.getBoolean(YarnConfiguration.IS_MINI_YARN_CLUSTER, false)) {
        classPathEnv.append(':');
        classPathEnv.append(System.getProperty("java.class.path"));
    }

    env.put("CLASSPATH", classPathEnv.toString());

    // Set the necessary command to execute the application master
    Vector<CharSequence> vargs = new Vector<CharSequence>(30);

    // Set java executable command
    LOG.info("Setting up app master command");
    vargs.add(Environment.JAVA_HOME.$$() + "/bin/java");
    // Set Xmx based on am memory size
    vargs.add("-Xmx" + amMemory + "m");
    // Set class name
    vargs.add(appMasterMainClass);
    // Set params for Application Master
    vargs.add("--container_memory " + String.valueOf(containerMemory));
    vargs.add("--container_vcores " + String.valueOf(containerVirtualCores));
    vargs.add("--num_nodes " + String.valueOf(numNodes));
    vargs.add("--start_port " + String.valueOf(startPort));
    vargs.add("--priority " + String.valueOf(workerPriority));
    vargs.add("--script_hdfs_path " + scriptHDFSPath);

    for (Map.Entry<String, String> entry : shellEnv.entrySet()) {
        vargs.add("--shell_env " + entry.getKey() + "=" + entry.getValue());
    }
    if (debugFlag) {
        vargs.add("--debug");
    }

    vargs.add("1>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/AppMaster.stdout");
    vargs.add("2>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/AppMaster.stderr");

    // Get final commmand
    StringBuilder command = new StringBuilder();
    for (CharSequence str : vargs) {
        command.append(str).append(" ");
    }

    LOG.info("Completed setting up app master command " + command.toString());
    List<String> commands = new ArrayList<String>();
    commands.add(command.toString());

    // Set up the container launch context for the application master
    ContainerLaunchContext amContainer = ContainerLaunchContext.newInstance(localResources, env, commands, null,
            null, null);

    // Set up resource type requirements
    // For now, both memory and vcores are supported, so we set memory and
    // vcores requirements
    Resource capability = Resource.newInstance(amMemory, amVCores);
    appContext.setResource(capability);

    // Service data is a binary blob that can be passed to the application
    // Not needed in this scenario
    // amContainer.setServiceData(serviceData);

    // Setup security tokens
    if (UserGroupInformation.isSecurityEnabled()) {
        // Note: Credentials class is marked as LimitedPrivate for HDFS and
        // MapReduce
        Credentials credentials = new Credentials();
        String tokenRenewer = conf.get(YarnConfiguration.RM_PRINCIPAL);
        if (tokenRenewer == null || tokenRenewer.length() == 0) {
            throw new IOException("Can't get Master Kerberos principal for the RM to use as renewer");
        }

        // For now, only getting tokens for the default file-system.
        final Token<?> tokens[] = fs.addDelegationTokens(tokenRenewer, credentials);
        if (tokens != null) {
            for (Token<?> token : tokens) {
                LOG.info("Got dt for " + fs.getUri() + "; " + token);
            }
        }
        DataOutputBuffer dob = new DataOutputBuffer();
        credentials.writeTokenStorageToStream(dob);
        ByteBuffer fsTokens = ByteBuffer.wrap(dob.getData(), 0, dob.getLength());
        amContainer.setTokens(fsTokens);
    }

    appContext.setAMContainerSpec(amContainer);

    // Set the priority for the application master
    Priority pri = Priority.newInstance(amPriority);
    appContext.setPriority(pri);

    // Set the queue to which this application is to be submitted in the RM
    appContext.setQueue(amQueue);

    // Submit the application to the applications manager
    // SubmitApplicationResponse submitResp =
    // applicationsManager.submitApplication(appRequest);
    // Ignore the response as either a valid response object is returned on
    // success
    // or an exception thrown to denote some form of a failure
    LOG.info("Submitting application to ASM");

    yarnClient.submitApplication(appContext);

    // Monitor the application
    currentTime = System.currentTimeMillis();
    LOG.info("submit AM in " + (currentTime - startTime) + "ms");
    return monitorApplication(appId);
}

From source file:com.bigjob.Client.java

License:Apache License

/**
 * Main run function for the client/*from w  w  w. j  av  a 2  s. com*/
 * @return true if application completed successfully
 * @throws IOException
 * @throws YarnException
 */
public boolean run() throws IOException, YarnException {

    LOG.info("Running Client");
    yarnClient.start();

    YarnClusterMetrics clusterMetrics = yarnClient.getYarnClusterMetrics();
    LOG.info("Got Cluster metric info from ASM (RM)" + ", numNodeManagers="
            + clusterMetrics.getNumNodeManagers());

    List<NodeReport> clusterNodeReports = yarnClient.getNodeReports(NodeState.RUNNING);
    LOG.info("Got Cluster node info from ASM");
    for (NodeReport node : clusterNodeReports) {
        LOG.info("Got node report from ASM for" + ", nodeId=" + node.getNodeId() + ", nodeAddress"
                + node.getHttpAddress() + ", nodeRackName" + node.getRackName() + ", nodeNumContainers"
                + node.getNumContainers());
    }

    QueueInfo queueInfo = yarnClient.getQueueInfo(this.amQueue);
    LOG.info("Queue info" + ", queueName=" + queueInfo.getQueueName() + ", queueCurrentCapacity="
            + queueInfo.getCurrentCapacity() + ", queueMaxCapacity=" + queueInfo.getMaximumCapacity()
            + ", queueApplicationCount=" + queueInfo.getApplications().size() + ", queueChildQueueCount="
            + queueInfo.getChildQueues().size());

    List<QueueUserACLInfo> listAclInfo = yarnClient.getQueueAclsInfo();
    for (QueueUserACLInfo aclInfo : listAclInfo) {
        for (QueueACL userAcl : aclInfo.getUserAcls()) {
            LOG.info("User ACL Info for Queue" + ", queueName=" + aclInfo.getQueueName() + ", userAcl="
                    + userAcl.name());
        }
    }

    // Get a new application id
    YarnClientApplication app = yarnClient.createApplication();
    GetNewApplicationResponse appResponse = app.getNewApplicationResponse();
    // TODO get min/max resource capabilities from RM and change memory ask if needed
    // If we do not have min/max, we may not be able to correctly request 
    // the required resources from the RM for the app master
    // Memory ask has to be a multiple of min and less than max. 
    // Dump out information about cluster capability as seen by the resource manager
    int maxMem = appResponse.getMaximumResourceCapability().getMemory();
    LOG.info("Max mem capabililty of resources in this cluster " + maxMem);

    // A resource ask cannot exceed the max. 
    if (amMemory > maxMem) {
        LOG.info("AM memory specified above max threshold of cluster. Using max value." + ", specified="
                + amMemory + ", max=" + maxMem);
        amMemory = maxMem;
    }

    int maxVCores = appResponse.getMaximumResourceCapability().getVirtualCores();
    LOG.info("Max virtual cores capabililty of resources in this cluster " + maxVCores);

    if (amVCores > maxVCores) {
        LOG.info("AM virtual cores specified above max threshold of cluster. " + "Using max value."
                + ", specified=" + amVCores + ", max=" + maxVCores);
        amVCores = maxVCores;
    }

    // set the application name
    ApplicationSubmissionContext appContext = app.getApplicationSubmissionContext();
    ApplicationId appId = appContext.getApplicationId();
    appContext.setApplicationName(appName);

    // Set up the container launch context for the application master
    ContainerLaunchContext amContainer = Records.newRecord(ContainerLaunchContext.class);

    // set local resources for the application master
    // local files or archives as needed
    // In this scenario, the jar file for the application master is part of the local resources         
    Map<String, LocalResource> localResources = new HashMap<String, LocalResource>();

    LOG.info("Copy App Master jar from local filesystem and add to local environment");
    // Copy the application master jar to the filesystem 
    // Create a local resource to point to the destination jar path 
    //    if (dfsUrl!=null && dfsUrl.equals("")==false){
    //       conf.set("fs.defaultFS", dfsUrl);
    //    }
    FileSystem fs = FileSystem.get(conf);
    addToLocalResources(fs, appMasterJar, appMasterJarPath, appId.getId(), localResources, null);

    // Set the log4j properties if needed 
    if (!log4jPropFile.isEmpty()) {
        addToLocalResources(fs, log4jPropFile, log4jPath, appId.getId(), localResources, null);
    }

    // The shell script has to be made available on the final container(s)
    // where it will be executed. 
    // To do this, we need to first copy into the filesystem that is visible 
    // to the yarn framework. 
    // We do not need to set this as a local resource for the application 
    // master as the application master does not need it.       
    String hdfsShellScriptLocation = "";
    long hdfsShellScriptLen = 0;
    long hdfsShellScriptTimestamp = 0;
    if (!shellScriptPath.isEmpty()) {
        Path shellSrc = new Path(shellScriptPath);
        String shellPathSuffix = appName + "/" + appId.getId() + "/"
                + (Shell.WINDOWS ? windowBatPath : linuxShellPath);
        Path shellDst = new Path(fs.getHomeDirectory(), shellPathSuffix);
        fs.copyFromLocalFile(false, true, shellSrc, shellDst);
        hdfsShellScriptLocation = shellDst.toUri().toString();
        FileStatus shellFileStatus = fs.getFileStatus(shellDst);
        hdfsShellScriptLen = shellFileStatus.getLen();
        hdfsShellScriptTimestamp = shellFileStatus.getModificationTime();
    }

    if (!shellCommand.isEmpty()) {
        addToLocalResources(fs, null, shellCommandPath, appId.getId(), localResources, shellCommand);
    }

    if (shellArgs.length > 0) {
        addToLocalResources(fs, null, shellArgsPath, appId.getId(), localResources,
                StringUtils.join(shellArgs, " "));
    }
    // Set local resource info into app master container launch context
    amContainer.setLocalResources(localResources);

    // Set the necessary security tokens as needed
    //amContainer.setContainerTokens(containerToken);

    // Set the env variables to be setup in the env where the application master will be run
    LOG.info("Set the environment for the application master");
    Map<String, String> env = new HashMap<String, String>();

    // put location of shell script into env
    // using the env info, the application master will create the correct local resource for the 
    // eventual containers that will be launched to execute the shell scripts
    env.put(DSConstants.DISTRIBUTEDSHELLSCRIPTLOCATION, hdfsShellScriptLocation);
    env.put(DSConstants.DISTRIBUTEDSHELLSCRIPTTIMESTAMP, Long.toString(hdfsShellScriptTimestamp));
    env.put(DSConstants.DISTRIBUTEDSHELLSCRIPTLEN, Long.toString(hdfsShellScriptLen));

    // Add AppMaster.jar location to classpath       
    // At some point we should not be required to add 
    // the hadoop specific classpaths to the env. 
    // It should be provided out of the box. 
    // For now setting all required classpaths including
    // the classpath to "." for the application jar
    StringBuilder classPathEnv = new StringBuilder(Environment.CLASSPATH.$()).append(File.pathSeparatorChar)
            .append("./*");
    for (String c : conf.getStrings(YarnConfiguration.YARN_APPLICATION_CLASSPATH,
            YarnConfiguration.DEFAULT_YARN_APPLICATION_CLASSPATH)) {
        classPathEnv.append(File.pathSeparatorChar);
        classPathEnv.append(c.trim());
    }
    classPathEnv.append(File.pathSeparatorChar).append("./log4j.properties");

    // add the runtime classpath needed for tests to work
    if (conf.getBoolean(YarnConfiguration.IS_MINI_YARN_CLUSTER, false)) {
        classPathEnv.append(':');
        classPathEnv.append(System.getProperty("java.class.path"));
    }

    env.put("CLASSPATH", classPathEnv.toString());

    amContainer.setEnvironment(env);

    // Set the necessary command to execute the application master 
    Vector<CharSequence> vargs = new Vector<CharSequence>(30);

    // Set java executable command 
    LOG.info("Setting up app master command");
    vargs.add(Environment.JAVA_HOME.$() + "/bin/java");
    // Set Xmx based on am memory size
    vargs.add("-Xmx" + amMemory + "m");
    // Set class name 
    vargs.add(appMasterMainClass);
    // Set params for Application Master
    vargs.add("--container_memory " + String.valueOf(containerMemory));
    vargs.add("--container_vcores " + String.valueOf(containerVirtualCores));
    vargs.add("--num_containers " + String.valueOf(numContainers));
    vargs.add("--priority " + String.valueOf(shellCmdPriority));

    for (Map.Entry<String, String> entry : shellEnv.entrySet()) {
        vargs.add("--shell_env " + entry.getKey() + "=" + entry.getValue());
    }
    if (debugFlag) {
        vargs.add("--debug");
    }

    vargs.add("1>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/AppMaster.stdout");
    vargs.add("2>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/AppMaster.stderr");

    // Get final commmand
    StringBuilder command = new StringBuilder();
    for (CharSequence str : vargs) {
        command.append(str).append(" ");
    }

    LOG.info("Completed setting up app master command " + command.toString());
    List<String> commands = new ArrayList<String>();
    commands.add(command.toString());
    amContainer.setCommands(commands);

    // Set up resource type requirements
    // For now, both memory and vcores are supported, so we set memory and 
    // vcores requirements
    Resource capability = Records.newRecord(Resource.class);
    capability.setMemory(amMemory);
    capability.setVirtualCores(amVCores);
    appContext.setResource(capability);

    // Service data is a binary blob that can be passed to the application
    // Not needed in this scenario
    // amContainer.setServiceData(serviceData);

    // Setup security tokens
    if (UserGroupInformation.isSecurityEnabled()) {
        Credentials credentials = new Credentials();
        String tokenRenewer = conf.get(YarnConfiguration.RM_PRINCIPAL);
        if (tokenRenewer == null || tokenRenewer.length() == 0) {
            throw new IOException("Can't get Master Kerberos principal for the RM to use as renewer");
        }

        // For now, only getting tokens for the default file-system.
        final Token<?> tokens[] = fs.addDelegationTokens(tokenRenewer, credentials);
        if (tokens != null) {
            for (Token<?> token : tokens) {
                LOG.info("Got dt for " + fs.getUri() + "; " + token);
            }
        }
        DataOutputBuffer dob = new DataOutputBuffer();
        credentials.writeTokenStorageToStream(dob);
        ByteBuffer fsTokens = ByteBuffer.wrap(dob.getData(), 0, dob.getLength());
        amContainer.setTokens(fsTokens);
    }

    appContext.setAMContainerSpec(amContainer);

    // Set the priority for the application master
    Priority pri = Records.newRecord(Priority.class);
    // TODO - what is the range for priority? how to decide? 
    pri.setPriority(amPriority);
    appContext.setPriority(pri);

    // Set the queue to which this application is to be submitted in the RM
    appContext.setQueue(amQueue);

    // Submit the application to the applications manager
    // SubmitApplicationResponse submitResp = applicationsManager.submitApplication(appRequest);
    // Ignore the response as either a valid response object is returned on success 
    // or an exception thrown to denote some form of a failure
    LOG.info("Submitting application to ASM");

    yarnClient.submitApplication(appContext);

    // TODO
    // Try submitting the same request again
    // app submission failure?

    // Monitor the application
    //return monitorApplication(appId);
    System.out.println("ApplicationId:" + appId);
    return true;
}

From source file:com.continuuity.weave.internal.appmaster.ApplicationMasterService.java

License:Open Source License

/**
 * Launches runnables in the provisioned containers.
 *///from   w w w.  j  a v  a2 s. c  o  m
private void launchRunnable(List<Container> containers, Queue<ProvisionRequest> provisioning) {
    for (Container container : containers) {
        ProvisionRequest provisionRequest = provisioning.peek();
        if (provisionRequest == null) {
            LOG.info("Nothing to run in container, releasing it: " + container);
            amrmClient.releaseAssignedContainer(container.getId());
            continue;
        }

        String runnableName = provisionRequest.getRuntimeSpec().getName();
        int containerCount = instanceCounts.get(provisionRequest.getRuntimeSpec().getName());
        int instanceId = runningContainers.count(runnableName);

        RunId containerRunId = RunIds.fromString(provisionRequest.getBaseRunId().getId() + "-" + instanceId);
        ProcessLauncher processLauncher = new DefaultProcessLauncher(container, yarnRPC, yarnConf,
                getLocalFiles(),
                ImmutableMap.<String, String>builder().put(EnvKeys.WEAVE_APP_RUN_ID, runId.getId())
                        .put(EnvKeys.WEAVE_ZK_CONNECT, zkClient.getConnectString())
                        .put(EnvKeys.WEAVE_LOG_KAFKA_ZK, getKafkaZKConnect()).build());

        LOG.info("Starting runnable " + runnableName + " in container " + container);

        WeaveContainerLauncher launcher = new WeaveContainerLauncher(weaveSpec.getRunnables().get(runnableName),
                containerRunId, processLauncher, ZKClients.namespace(zkClient, getZKNamespace(runnableName)),
                runnableArgs.get(runnableName), instanceId, instanceCounts.get(runnableName));
        runningContainers.add(runnableName, container.getId(),
                launcher.start(ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/stdout",
                        ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/stderr"));

        // Seems like a bug in amrm causing manual removal is needed.
        amrmClient.removeContainerRequest(provisionRequest.getRequest());

        if (runningContainers.count(runnableName) == containerCount) {
            LOG.info("Runnable " + runnableName + " fully provisioned with " + containerCount + " instances.");
            provisioning.poll();
        }
    }
}

From source file:com.continuuity.weave.yarn.ApplicationMasterService.java

License:Open Source License

/**
 * Launches runnables in the provisioned containers.
 * @param containers/* w w  w.j  av a 2  s .  c  o  m*/
 * @param provisioning
 */
private void launchRunnable(List<Container> containers, Queue<ProvisionRequest> provisioning) {
    for (Container container : containers) {
        ProvisionRequest provisionRequest = provisioning.peek();
        if (provisionRequest == null) {
            LOG.info("Nothing to run in container, releasing it: " + container);
            amrmClient.releaseAssignedContainer(container.getId());
            continue;
        }

        String runnableName = provisionRequest.getRuntimeSpec().getName();
        int containerCount = provisionRequest.getRuntimeSpec().getResourceSpecification().getInstances();
        int instanceId = runningContainers.count(runnableName);

        RunId containerRunId = RunIds.fromString(provisionRequest.getBaseRunId().getId() + "-" + instanceId);
        ProcessLauncher processLauncher = new DefaultProcessLauncher(container, yarnRPC, yarnConf,
                getKafkaZKConnect(), getLocalFiles(),
                ImmutableMap.<String, String>builder().put(EnvKeys.WEAVE_APP_RUN_ID, runId.getId())
                        .put(EnvKeys.WEAVE_ZK_CONNECT, zkConnectStr)
                        .put(EnvKeys.WEAVE_APPLICATION_ARGS, System.getenv(EnvKeys.WEAVE_APPLICATION_ARGS))
                        .build());

        LOG.info("Starting runnable " + runnableName + " in container " + container);

        WeaveContainerLauncher launcher = new WeaveContainerLauncher(weaveSpec.getRunnables().get(runnableName),
                containerRunId, processLauncher,
                ZKClients.namespace(zkClientService, getZKNamespace(runnableName)),
                runnableArgs.get(runnableName), instanceId);
        runningContainers.add(runnableName, container,
                launcher.start(ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/stdout",
                        ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/stderr"));

        if (runningContainers.count(runnableName) == containerCount) {
            LOG.info("Runnable " + runnableName + " fully provisioned with " + containerCount + " instances.");
            provisioning.poll();
        }
    }
}

From source file:com.continuuity.weave.yarn.YarnWeavePreparer.java

License:Open Source License

@Override
public WeaveController start() {
    // TODO: Unify this with {@link ProcessLauncher}
    try {//from   w ww  .j a  va 2  s  .c o m
        GetNewApplicationResponse response = yarnClient.getNewApplication();
        ApplicationId applicationId = response.getApplicationId();

        ApplicationSubmissionContext appSubmissionContext = Records
                .newRecord(ApplicationSubmissionContext.class);
        appSubmissionContext.setApplicationId(applicationId);
        appSubmissionContext.setApplicationName(weaveSpec.getName());

        Map<String, LocalResource> localResources = Maps.newHashMap();

        Multimap<String, LocalFile> transformedLocalFiles = HashMultimap.create();

        createAppMasterJar(createBundler(), localResources);
        createContainerJar(createBundler(), localResources);
        populateRunnableResources(weaveSpec, transformedLocalFiles);
        saveWeaveSpec(weaveSpec, transformedLocalFiles, localResources);
        saveLogback(localResources);
        saveLauncher(localResources);
        saveKafka(localResources);
        saveArguments(arguments, runnableArgs, localResources);
        saveLocalFiles(localResources, ImmutableSet.of("weaveSpec.json", "logback-template.xml",
                "container.jar", "launcher.jar", "arguments.json"));

        ContainerLaunchContext containerLaunchContext = Records.newRecord(ContainerLaunchContext.class);
        containerLaunchContext.setLocalResources(localResources);

        // java -cp launcher.jar:$HADOOP_CONF_DIR -XmxMemory
        //     com.continuuity.weave.internal.WeaveLauncher
        //     appMaster.jar
        //     com.continuuity.weave.internal.appmaster.ApplicationMasterMain
        //     false
        containerLaunchContext.setCommands(ImmutableList.of("java", "-cp", "launcher.jar:$HADOOP_CONF_DIR",
                "-Xmx" + APP_MASTER_MEMORY_MB + "m", WeaveLauncher.class.getName(), "appMaster.jar",
                ApplicationMasterMain.class.getName(), Boolean.FALSE.toString(),
                " 1>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/stdout",
                " 2>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/stderr"));

        containerLaunchContext.setEnvironment(ImmutableMap.<String, String>builder()
                .put(EnvKeys.WEAVE_APP_ID, Integer.toString(applicationId.getId()))
                .put(EnvKeys.WEAVE_APP_ID_CLUSTER_TIME, Long.toString(applicationId.getClusterTimestamp()))
                .put(EnvKeys.WEAVE_APP_DIR, getAppLocation().toURI().toASCIIString())
                .put(EnvKeys.WEAVE_ZK_CONNECT, zkClient.getConnectString())
                .put(EnvKeys.WEAVE_RUN_ID, runId.getId()).build());
        Resource capability = Records.newRecord(Resource.class);
        capability.setMemory(APP_MASTER_MEMORY_MB);
        containerLaunchContext.setResource(capability);

        appSubmissionContext.setAMContainerSpec(containerLaunchContext);

        yarnClient.submitApplication(appSubmissionContext);

        return createController(applicationId, runId, logHandlers);
    } catch (Exception e) {
        throw Throwables.propagate(e);
    }
}

From source file:com.datatorrent.stram.LaunchContainerRunnable.java

License:Apache License

/**
 * Build the command to launch the child VM in the container
 *
 * @param jvmID//  w w  w  . jav  a 2 s  . c o m
 * @return
 */
public List<CharSequence> getChildVMCommand(String jvmID) {

    List<CharSequence> vargs = new ArrayList<CharSequence>(8);

    if (!StringUtils.isBlank(System.getenv(Environment.JAVA_HOME.key()))) {
        // node manager provides JAVA_HOME
        vargs.add(Environment.JAVA_HOME.$() + "/bin/java");
    } else {
        vargs.add("java");
    }

    String jvmOpts = dag.getAttributes().get(LogicalPlan.CONTAINER_JVM_OPTIONS);
    if (jvmOpts == null) {
        if (dag.isDebug()) {
            vargs.add(JAVA_REMOTE_DEBUG_OPTS);
        }
    } else {
        Map<String, String> params = new HashMap<String, String>();
        params.put("applicationId",
                Integer.toString(container.getId().getApplicationAttemptId().getApplicationId().getId()));
        params.put("containerId", Integer.toString(container.getId().getId()));
        StrSubstitutor sub = new StrSubstitutor(params, "%(", ")");
        vargs.add(sub.replace(jvmOpts));
        if (dag.isDebug() && !jvmOpts.contains("-agentlib:jdwp=")) {
            vargs.add(JAVA_REMOTE_DEBUG_OPTS);
        }
    }

    List<DAG.OperatorMeta> operatorMetaList = Lists.newArrayList();
    int bufferServerMemory = 0;
    for (PTOperator operator : sca.getContainer().getOperators()) {
        bufferServerMemory += operator.getBufferServerMemory();
        operatorMetaList.add(operator.getOperatorMeta());
    }
    Context.ContainerOptConfigurator containerOptConfigurator = dag.getAttributes()
            .get(LogicalPlan.CONTAINER_OPTS_CONFIGURATOR);
    jvmOpts = containerOptConfigurator.getJVMOptions(operatorMetaList);
    jvmOpts = parseJvmOpts(jvmOpts, ((long) bufferServerMemory) * MB_TO_B);
    LOG.info("Jvm opts {} for container {}", jvmOpts, container.getId());
    vargs.add(jvmOpts);

    Path childTmpDir = new Path(Environment.PWD.$(), YarnConfiguration.DEFAULT_CONTAINER_TEMP_DIR);
    vargs.add(String.format("-D%s=%s", StreamingContainer.PROP_APP_PATH, dag.assertAppPath()));
    vargs.add("-Djava.io.tmpdir=" + childTmpDir);
    vargs.add(String.format("-D%scid=%s", StreamingApplication.DT_PREFIX, jvmID));
    vargs.add("-Dhadoop.root.logger=" + (dag.isDebug() ? "DEBUG" : "INFO") + ",RFA");
    vargs.add("-Dhadoop.log.dir=" + ApplicationConstants.LOG_DIR_EXPANSION_VAR);

    String loggersLevel = System.getProperty(DTLoggerFactory.DT_LOGGERS_LEVEL);
    if (loggersLevel != null) {
        vargs.add(String.format("-D%s=%s", DTLoggerFactory.DT_LOGGERS_LEVEL, loggersLevel));
    }
    // Add main class and its arguments
    vargs.add(StreamingContainer.class.getName()); // main of Child

    vargs.add("1>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/stdout");
    vargs.add("2>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/stderr");

    // Final commmand
    StringBuilder mergedCommand = new StringBuilder(256);
    for (CharSequence str : vargs) {
        mergedCommand.append(str).append(" ");
    }
    List<CharSequence> vargsFinal = new ArrayList<CharSequence>(1);
    vargsFinal.add(mergedCommand.toString());
    return vargsFinal;

}

From source file:com.datatorrent.stram.StramClient.java

License:Apache License

/**
 * Launch application for the dag represented by this client.
 *
 * @throws YarnException//from   ww w. j  a  v a  2 s .c  o m
 * @throws IOException
 */
public void startApplication() throws YarnException, IOException {
    Class<?>[] defaultClasses;

    if (applicationType.equals(YARN_APPLICATION_TYPE)) {
        //TODO restrict the security check to only check if security is enabled for webservices.
        if (UserGroupInformation.isSecurityEnabled()) {
            defaultClasses = DATATORRENT_SECURITY_CLASSES;
        } else {
            defaultClasses = DATATORRENT_CLASSES;
        }
    } else {
        throw new IllegalStateException(applicationType + " is not a valid application type.");
    }

    LinkedHashSet<String> localJarFiles = findJars(dag, defaultClasses);

    if (resources != null) {
        localJarFiles.addAll(resources);
    }

    YarnClusterMetrics clusterMetrics = yarnClient.getYarnClusterMetrics();
    LOG.info("Got Cluster metric info from ASM" + ", numNodeManagers=" + clusterMetrics.getNumNodeManagers());

    //GetClusterNodesRequest clusterNodesReq = Records.newRecord(GetClusterNodesRequest.class);
    //GetClusterNodesResponse clusterNodesResp = rmClient.clientRM.getClusterNodes(clusterNodesReq);
    //LOG.info("Got Cluster node info from ASM");
    //for (NodeReport node : clusterNodesResp.getNodeReports()) {
    //  LOG.info("Got node report from ASM for"
    //           + ", nodeId=" + node.getNodeId()
    //           + ", nodeAddress" + node.getHttpAddress()
    //           + ", nodeRackName" + node.getRackName()
    //           + ", nodeNumContainers" + node.getNumContainers()
    //           + ", nodeHealthStatus" + node.getHealthReport());
    //}
    List<QueueUserACLInfo> listAclInfo = yarnClient.getQueueAclsInfo();
    for (QueueUserACLInfo aclInfo : listAclInfo) {
        for (QueueACL userAcl : aclInfo.getUserAcls()) {
            LOG.info("User ACL Info for Queue" + ", queueName=" + aclInfo.getQueueName() + ", userAcl="
                    + userAcl.name());
        }
    }

    // Get a new application id
    YarnClientApplication newApp = yarnClient.createApplication();
    appId = newApp.getNewApplicationResponse().getApplicationId();

    // Dump out information about cluster capability as seen by the resource manager
    int maxMem = newApp.getNewApplicationResponse().getMaximumResourceCapability().getMemory();
    LOG.info("Max mem capabililty of resources in this cluster " + maxMem);
    int amMemory = dag.getMasterMemoryMB();
    if (amMemory > maxMem) {
        LOG.info("AM memory specified above max threshold of cluster. Using max value." + ", specified="
                + amMemory + ", max=" + maxMem);
        amMemory = maxMem;
    }

    if (dag.getAttributes().get(LogicalPlan.APPLICATION_ID) == null) {
        dag.setAttribute(LogicalPlan.APPLICATION_ID, appId.toString());
    }

    // Create launch context for app master
    LOG.info("Setting up application submission context for ASM");
    ApplicationSubmissionContext appContext = Records.newRecord(ApplicationSubmissionContext.class);

    // set the application id
    appContext.setApplicationId(appId);
    // set the application name
    appContext.setApplicationName(dag.getValue(LogicalPlan.APPLICATION_NAME));
    appContext.setApplicationType(this.applicationType);
    if (YARN_APPLICATION_TYPE.equals(this.applicationType)) {
        //appContext.setMaxAppAttempts(1); // no retries until Stram is HA
    }

    // Set up the container launch context for the application master
    ContainerLaunchContext amContainer = Records.newRecord(ContainerLaunchContext.class);

    // Setup security tokens
    // If security is enabled get ResourceManager and NameNode delegation tokens.
    // Set these tokens on the container so that they are sent as part of application submission.
    // This also sets them up for renewal by ResourceManager. The NameNode delegation rmToken
    // is also used by ResourceManager to fetch the jars from HDFS and set them up for the
    // application master launch.
    if (UserGroupInformation.isSecurityEnabled()) {
        Credentials credentials = new Credentials();
        String tokenRenewer = conf.get(YarnConfiguration.RM_PRINCIPAL);
        if (tokenRenewer == null || tokenRenewer.length() == 0) {
            throw new IOException("Can't get Master Kerberos principal for the RM to use as renewer");
        }

        // For now, only getting tokens for the default file-system.
        FileSystem fs = StramClientUtils.newFileSystemInstance(conf);
        try {
            final Token<?> tokens[] = fs.addDelegationTokens(tokenRenewer, credentials);
            if (tokens != null) {
                for (Token<?> token : tokens) {
                    LOG.info("Got dt for " + fs.getUri() + "; " + token);
                }
            }
        } finally {
            fs.close();
        }

        addRMDelegationToken(tokenRenewer, credentials);

        DataOutputBuffer dob = new DataOutputBuffer();
        credentials.writeTokenStorageToStream(dob);
        ByteBuffer fsTokens = ByteBuffer.wrap(dob.getData(), 0, dob.getLength());
        amContainer.setTokens(fsTokens);
    }

    // set local resources for the application master
    // local files or archives as needed
    // In this scenario, the jar file for the application master is part of the local resources
    Map<String, LocalResource> localResources = new HashMap<String, LocalResource>();

    // copy required jar files to dfs, to be localized for containers
    FileSystem fs = StramClientUtils.newFileSystemInstance(conf);
    try {
        Path appsBasePath = new Path(StramClientUtils.getDTDFSRootDir(fs, conf), StramClientUtils.SUBDIR_APPS);
        Path appPath = new Path(appsBasePath, appId.toString());

        String libJarsCsv = copyFromLocal(fs, appPath, localJarFiles.toArray(new String[] {}));

        LOG.info("libjars: {}", libJarsCsv);
        dag.getAttributes().put(LogicalPlan.LIBRARY_JARS, libJarsCsv);
        LaunchContainerRunnable.addFilesToLocalResources(LocalResourceType.FILE, libJarsCsv, localResources,
                fs);

        if (archives != null) {
            String[] localFiles = archives.split(",");
            String archivesCsv = copyFromLocal(fs, appPath, localFiles);
            LOG.info("archives: {}", archivesCsv);
            dag.getAttributes().put(LogicalPlan.ARCHIVES, archivesCsv);
            LaunchContainerRunnable.addFilesToLocalResources(LocalResourceType.ARCHIVE, archivesCsv,
                    localResources, fs);
        }

        if (files != null) {
            String[] localFiles = files.split(",");
            String filesCsv = copyFromLocal(fs, appPath, localFiles);
            LOG.info("files: {}", filesCsv);
            dag.getAttributes().put(LogicalPlan.FILES, filesCsv);
            LaunchContainerRunnable.addFilesToLocalResources(LocalResourceType.FILE, filesCsv, localResources,
                    fs);
        }

        dag.getAttributes().put(LogicalPlan.APPLICATION_PATH, appPath.toString());
        if (dag.getAttributes()
                .get(OperatorContext.STORAGE_AGENT) == null) { /* which would be the most likely case */
            Path checkpointPath = new Path(appPath, LogicalPlan.SUBDIR_CHECKPOINTS);
            // use conf client side to pickup any proxy settings from dt-site.xml
            dag.setAttribute(OperatorContext.STORAGE_AGENT,
                    new FSStorageAgent(checkpointPath.toString(), conf));
        }
        if (dag.getAttributes().get(LogicalPlan.CONTAINER_OPTS_CONFIGURATOR) == null) {
            dag.setAttribute(LogicalPlan.CONTAINER_OPTS_CONFIGURATOR, new BasicContainerOptConfigurator());
        }

        // Set the log4j properties if needed
        if (!log4jPropFile.isEmpty()) {
            Path log4jSrc = new Path(log4jPropFile);
            Path log4jDst = new Path(appPath, "log4j.props");
            fs.copyFromLocalFile(false, true, log4jSrc, log4jDst);
            FileStatus log4jFileStatus = fs.getFileStatus(log4jDst);
            LocalResource log4jRsrc = Records.newRecord(LocalResource.class);
            log4jRsrc.setType(LocalResourceType.FILE);
            log4jRsrc.setVisibility(LocalResourceVisibility.APPLICATION);
            log4jRsrc.setResource(ConverterUtils.getYarnUrlFromURI(log4jDst.toUri()));
            log4jRsrc.setTimestamp(log4jFileStatus.getModificationTime());
            log4jRsrc.setSize(log4jFileStatus.getLen());
            localResources.put("log4j.properties", log4jRsrc);
        }

        if (originalAppId != null) {
            Path origAppPath = new Path(appsBasePath, this.originalAppId);
            LOG.info("Restart from {}", origAppPath);
            copyInitialState(origAppPath);
        }

        // push logical plan to DFS location
        Path cfgDst = new Path(appPath, LogicalPlan.SER_FILE_NAME);
        FSDataOutputStream outStream = fs.create(cfgDst, true);
        LogicalPlan.write(this.dag, outStream);
        outStream.close();

        Path launchConfigDst = new Path(appPath, LogicalPlan.LAUNCH_CONFIG_FILE_NAME);
        outStream = fs.create(launchConfigDst, true);
        conf.writeXml(outStream);
        outStream.close();

        FileStatus topologyFileStatus = fs.getFileStatus(cfgDst);
        LocalResource topologyRsrc = Records.newRecord(LocalResource.class);
        topologyRsrc.setType(LocalResourceType.FILE);
        topologyRsrc.setVisibility(LocalResourceVisibility.APPLICATION);
        topologyRsrc.setResource(ConverterUtils.getYarnUrlFromURI(cfgDst.toUri()));
        topologyRsrc.setTimestamp(topologyFileStatus.getModificationTime());
        topologyRsrc.setSize(topologyFileStatus.getLen());
        localResources.put(LogicalPlan.SER_FILE_NAME, topologyRsrc);

        // Set local resource info into app master container launch context
        amContainer.setLocalResources(localResources);

        // Set the necessary security tokens as needed
        //amContainer.setContainerTokens(containerToken);
        // Set the env variables to be setup in the env where the application master will be run
        LOG.info("Set the environment for the application master");
        Map<String, String> env = new HashMap<String, String>();

        // Add application jar(s) location to classpath
        // At some point we should not be required to add
        // the hadoop specific classpaths to the env.
        // It should be provided out of the box.
        // For now setting all required classpaths including
        // the classpath to "." for the application jar(s)
        // including ${CLASSPATH} will duplicate the class path in app master, removing it for now
        //StringBuilder classPathEnv = new StringBuilder("${CLASSPATH}:./*");
        StringBuilder classPathEnv = new StringBuilder("./*");
        String classpath = conf.get(YarnConfiguration.YARN_APPLICATION_CLASSPATH);
        for (String c : StringUtils.isBlank(classpath) ? YarnConfiguration.DEFAULT_YARN_APPLICATION_CLASSPATH
                : classpath.split(",")) {
            if (c.equals("$HADOOP_CLIENT_CONF_DIR")) {
                // SPOI-2501
                continue;
            }
            classPathEnv.append(':');
            classPathEnv.append(c.trim());
        }
        env.put("CLASSPATH", classPathEnv.toString());
        // propagate to replace node managers user name (effective in non-secure mode)
        env.put("HADOOP_USER_NAME", UserGroupInformation.getLoginUser().getUserName());

        amContainer.setEnvironment(env);

        // Set the necessary command to execute the application master
        ArrayList<CharSequence> vargs = new ArrayList<CharSequence>(30);

        // Set java executable command
        LOG.info("Setting up app master command");
        vargs.add(javaCmd);
        if (dag.isDebug()) {
            vargs.add("-agentlib:jdwp=transport=dt_socket,server=y,suspend=n");
        }
        // Set Xmx based on am memory size
        // default heap size 75% of total memory
        if (dag.getMasterJVMOptions() != null) {
            vargs.add(dag.getMasterJVMOptions());
        }
        vargs.add("-Xmx" + (amMemory * 3 / 4) + "m");
        vargs.add("-XX:+HeapDumpOnOutOfMemoryError");
        vargs.add("-XX:HeapDumpPath=/tmp/dt-heap-" + appId.getId() + ".bin");
        vargs.add("-Dhadoop.root.logger=" + (dag.isDebug() ? "DEBUG" : "INFO") + ",RFA");
        vargs.add("-Dhadoop.log.dir=" + ApplicationConstants.LOG_DIR_EXPANSION_VAR);
        vargs.add(String.format("-D%s=%s", StreamingContainer.PROP_APP_PATH, dag.assertAppPath()));
        if (dag.isDebug()) {
            vargs.add("-Dlog4j.debug=true");
        }

        String loggersLevel = conf.get(DTLoggerFactory.DT_LOGGERS_LEVEL);
        if (loggersLevel != null) {
            vargs.add(String.format("-D%s=%s", DTLoggerFactory.DT_LOGGERS_LEVEL, loggersLevel));
        }
        vargs.add(StreamingAppMaster.class.getName());
        vargs.add("1>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/AppMaster.stdout");
        vargs.add("2>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/AppMaster.stderr");

        // Get final command
        StringBuilder command = new StringBuilder(9 * vargs.size());
        for (CharSequence str : vargs) {
            command.append(str).append(" ");
        }

        LOG.info("Completed setting up app master command " + command.toString());
        List<String> commands = new ArrayList<String>();
        commands.add(command.toString());
        amContainer.setCommands(commands);

        // Set up resource type requirements
        // For now, only memory is supported so we set memory requirements
        Resource capability = Records.newRecord(Resource.class);
        capability.setMemory(amMemory);
        appContext.setResource(capability);

        // Service data is a binary blob that can be passed to the application
        // Not needed in this scenario
        // amContainer.setServiceData(serviceData);
        appContext.setAMContainerSpec(amContainer);

        // Set the priority for the application master
        Priority pri = Records.newRecord(Priority.class);
        pri.setPriority(amPriority);
        appContext.setPriority(pri);
        // Set the queue to which this application is to be submitted in the RM
        appContext.setQueue(queueName);

        // Submit the application to the applications manager
        // SubmitApplicationResponse submitResp = rmClient.submitApplication(appRequest);
        // Ignore the response as either a valid response object is returned on success
        // or an exception thrown to denote some form of a failure
        String specStr = Objects.toStringHelper("Submitting application: ")
                .add("name", appContext.getApplicationName()).add("queue", appContext.getQueue())
                .add("user", UserGroupInformation.getLoginUser()).add("resource", appContext.getResource())
                .toString();
        LOG.info(specStr);
        if (dag.isDebug()) {
            //LOG.info("Full submission context: " + appContext);
        }
        yarnClient.submitApplication(appContext);
    } finally {
        fs.close();
    }
}

From source file:com.epam.hadoop.nv.yarn.Client.java

License:Apache License

/**
 * Main run function for the client//  ww w. j a  v a2  s.  com
 * 
 * @return true if application completed successfully
 * @throws IOException
 * @throws YarnException
 */
public boolean run() throws IOException, YarnException {

    LOG.info("Running Client");
    yarnClient.start();

    YarnClusterMetrics clusterMetrics = yarnClient.getYarnClusterMetrics();
    LOG.info("Got Cluster metric info from ASM" + ", numNodeManagers=" + clusterMetrics.getNumNodeManagers());

    List<NodeReport> clusterNodeReports = yarnClient.getNodeReports(NodeState.RUNNING);
    LOG.info("Got Cluster node info from ASM");
    for (NodeReport node : clusterNodeReports) {
        LOG.info("Got node report from ASM for" + ", nodeId=" + node.getNodeId() + ", nodeAddress"
                + node.getHttpAddress() + ", nodeRackName" + node.getRackName() + ", nodeNumContainers"
                + node.getNumContainers());
    }

    QueueInfo queueInfo = yarnClient.getQueueInfo(this.amQueue);
    LOG.info("Queue info" + ", queueName=" + queueInfo.getQueueName() + ", queueCurrentCapacity="
            + queueInfo.getCurrentCapacity() + ", queueMaxCapacity=" + queueInfo.getMaximumCapacity()
            + ", queueApplicationCount=" + queueInfo.getApplications().size() + ", queueChildQueueCount="
            + queueInfo.getChildQueues().size());

    List<QueueUserACLInfo> listAclInfo = yarnClient.getQueueAclsInfo();
    for (QueueUserACLInfo aclInfo : listAclInfo) {
        for (QueueACL userAcl : aclInfo.getUserAcls()) {
            LOG.info("User ACL Info for Queue" + ", queueName=" + aclInfo.getQueueName() + ", userAcl="
                    + userAcl.name());
        }
    }

    // Get a new application id
    YarnClientApplication app = yarnClient.createApplication();
    GetNewApplicationResponse appResponse = app.getNewApplicationResponse();
    // TODO get min/max resource capabilities from RM and change memory ask
    // if needed
    // If we do not have min/max, we may not be able to correctly request
    // the required resources from the RM for the app master
    // Memory ask has to be a multiple of min and less than max.
    // Dump out information about cluster capability as seen by the resource
    // manager
    int maxMem = appResponse.getMaximumResourceCapability().getMemory();
    LOG.info("Max mem capabililty of resources in this cluster " + maxMem);

    // A resource ask cannot exceed the max.
    if (amMemory > maxMem) {
        LOG.info("AM memory specified above max threshold of cluster. Using max value." + ", specified="
                + amMemory + ", max=" + maxMem);
        amMemory = maxMem;
    }

    int maxVCores = appResponse.getMaximumResourceCapability().getVirtualCores();
    LOG.info("Max virtual cores capabililty of resources in this cluster " + maxVCores);

    if (amVCores > maxVCores) {
        LOG.info("AM virtual cores specified above max threshold of cluster. " + "Using max value."
                + ", specified=" + amVCores + ", max=" + maxVCores);
        amVCores = maxVCores;
    }

    // set the application name
    ApplicationSubmissionContext appContext = app.getApplicationSubmissionContext();
    ApplicationId appId = appContext.getApplicationId();

    appContext.setKeepContainersAcrossApplicationAttempts(keepContainers);
    appContext.setApplicationName(appName);

    // set local resources for the application master
    // local files or archives as needed
    // In this scenario, the jar file for the application master is part of
    // the local resources
    Map<String, LocalResource> localResources = new HashMap<String, LocalResource>();

    LOG.info("Copy App Master jar from local filesystem and add to local environment");
    // Copy the application master jar to the filesystem
    // Create a local resource to point to the destination jar path
    FileSystem fs = FileSystem.get(conf);
    addToLocalResources(fs, appMasterJar, appMasterJarPath, appId.toString(), localResources, null);

    // Set the log4j properties if needed
    if (!log4jPropFile.isEmpty()) {
        addToLocalResources(fs, log4jPropFile, log4jPath, appId.toString(), localResources, null);
    }

    // The shell script has to be made available on the final container(s)
    // where it will be executed.
    // To do this, we need to first copy into the filesystem that is visible
    // to the yarn framework.
    // We do not need to set this as a local resource for the application
    // master as the application master does not need it.
    String hdfsShellScriptLocation = "";
    long hdfsShellScriptLen = 0;
    long hdfsShellScriptTimestamp = 0;
    if (!shellScriptPath.isEmpty()) {
        Path shellSrc = new Path(shellScriptPath);
        String shellPathSuffix = appName + "/" + appId.toString() + "/" + SCRIPT_PATH;
        Path shellDst = new Path(fs.getHomeDirectory(), shellPathSuffix);
        fs.copyFromLocalFile(false, true, shellSrc, shellDst);
        hdfsShellScriptLocation = shellDst.toUri().toString();
        FileStatus shellFileStatus = fs.getFileStatus(shellDst);
        hdfsShellScriptLen = shellFileStatus.getLen();
        hdfsShellScriptTimestamp = shellFileStatus.getModificationTime();
    }

    if (!shellCommand.isEmpty()) {
        addToLocalResources(fs, null, shellCommandPath, appId.toString(), localResources, shellCommand);
    }

    if (shellArgs.length > 0) {
        addToLocalResources(fs, null, shellArgsPath, appId.toString(), localResources,
                StringUtils.join(shellArgs, " "));
    }

    // Set the necessary security tokens as needed
    // amContainer.setContainerTokens(containerToken);

    // Set the env variables to be setup in the env where the application
    // master will be run
    LOG.info("Set the environment for the application master");
    Map<String, String> env = new HashMap<String, String>();

    // put location of shell script into env
    // using the env info, the application master will create the correct
    // local resource for the
    // eventual containers that will be launched to execute the shell
    // scripts
    env.put(DSConstants.DISTRIBUTEDSHELLSCRIPTLOCATION, hdfsShellScriptLocation);
    env.put(DSConstants.DISTRIBUTEDSHELLSCRIPTTIMESTAMP, Long.toString(hdfsShellScriptTimestamp));
    env.put(DSConstants.DISTRIBUTEDSHELLSCRIPTLEN, Long.toString(hdfsShellScriptLen));

    // Add AppMaster.jar location to classpath
    // At some point we should not be required to add
    // the hadoop specific classpaths to the env.
    // It should be provided out of the box.
    // For now setting all required classpaths including
    // the classpath to "." for the application jar
    StringBuilder classPathEnv = new StringBuilder(Environment.CLASSPATH.$$())
            .append(ApplicationConstants.CLASS_PATH_SEPARATOR).append("./*");
    for (String c : conf.getStrings(YarnConfiguration.YARN_APPLICATION_CLASSPATH,
            YarnConfiguration.DEFAULT_YARN_CROSS_PLATFORM_APPLICATION_CLASSPATH)) {
        classPathEnv.append(ApplicationConstants.CLASS_PATH_SEPARATOR);
        classPathEnv.append(c.trim());
    }
    classPathEnv.append(ApplicationConstants.CLASS_PATH_SEPARATOR).append("./log4j.properties");

    // add the runtime classpath needed for tests to work
    if (conf.getBoolean(YarnConfiguration.IS_MINI_YARN_CLUSTER, false)) {
        classPathEnv.append(':');
        classPathEnv.append(System.getProperty("java.class.path"));
    }

    env.put("CLASSPATH", classPathEnv.toString());

    // Set the necessary command to execute the application master
    Vector<CharSequence> vargs = new Vector<CharSequence>(30);

    // Set java executable command
    LOG.info("Setting up app master command");
    vargs.add(Environment.JAVA_HOME.$$() + "/bin/java");
    // Set Xmx based on am memory size
    vargs.add("-Xmx" + amMemory + "m");
    // Set class name
    vargs.add(appMasterMainClass);
    // Set params for Application Master
    vargs.add("--container_memory " + String.valueOf(containerMemory));
    vargs.add("--container_vcores " + String.valueOf(containerVirtualCores));
    vargs.add("--num_containers " + String.valueOf(numContainers));
    vargs.add("--priority " + String.valueOf(shellCmdPriority));

    for (Map.Entry<String, String> entry : shellEnv.entrySet()) {
        vargs.add("--shell_env " + entry.getKey() + "=" + entry.getValue());
    }
    if (debugFlag) {
        vargs.add("--debug");
    }

    vargs.add("1>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/AppMaster.stdout");
    vargs.add("2>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/AppMaster.stderr");

    // Get final commmand
    StringBuilder command = new StringBuilder();
    for (CharSequence str : vargs) {
        command.append(str).append(" ");
    }

    LOG.info("Completed setting up app master command " + command.toString());
    List<String> commands = new ArrayList<String>();
    commands.add(command.toString());

    // Set up the container launch context for the application master
    ContainerLaunchContext amContainer = ContainerLaunchContext.newInstance(localResources, env, commands, null,
            null, null);

    // Set up resource type requirements
    // For now, both memory and vcores are supported, so we set memory and
    // vcores requirements
    Resource capability = Resource.newInstance(amMemory, amVCores);
    appContext.setResource(capability);

    // Service data is a binary blob that can be passed to the application
    // Not needed in this scenario
    // amContainer.setServiceData(serviceData);

    // Setup security tokens
    if (UserGroupInformation.isSecurityEnabled()) {
        // Note: Credentials class is marked as LimitedPrivate for HDFS and
        // MapReduce
        Credentials credentials = new Credentials();
        String tokenRenewer = conf.get(YarnConfiguration.RM_PRINCIPAL);
        if (tokenRenewer == null || tokenRenewer.length() == 0) {
            throw new IOException("Can't get Master Kerberos principal for the RM to use as renewer");
        }

        // For now, only getting tokens for the default file-system.
        final Token<?> tokens[] = fs.addDelegationTokens(tokenRenewer, credentials);
        if (tokens != null) {
            for (Token<?> token : tokens) {
                LOG.info("Got dt for " + fs.getUri() + "; " + token);
            }
        }
        DataOutputBuffer dob = new DataOutputBuffer();
        credentials.writeTokenStorageToStream(dob);
        ByteBuffer fsTokens = ByteBuffer.wrap(dob.getData(), 0, dob.getLength());
        amContainer.setTokens(fsTokens);
    }

    appContext.setAMContainerSpec(amContainer);

    // Set the priority for the application master
    // TODO - what is the range for priority? how to decide?
    Priority pri = Priority.newInstance(amPriority);
    appContext.setPriority(pri);

    // Set the queue to which this application is to be submitted in the RM
    appContext.setQueue(amQueue);

    // Submit the application to the applications manager
    // SubmitApplicationResponse submitResp =
    // applicationsManager.submitApplication(appRequest);
    // Ignore the response as either a valid response object is returned on
    // success
    // or an exception thrown to denote some form of a failure
    LOG.info("Submitting application to ASM");

    yarnClient.submitApplication(appContext);

    // TODO
    // Try submitting the same request again
    // app submission failure?

    // Monitor the application
    return monitorApplication(appId);

}

From source file:com.flyhz.avengers.framework.AvengersAppMaster.java

License:Apache License

private void initJar() {
    LOG.info("initJar");
    initCommon();//  ww  w . j  a  v a 2 s  .c  o  m
    this.currentProcess = "initJar";
    YarnClient yarnClient = YarnClient.createYarnClient();
    yarnClient.init(conf);
    yarnClient.start();
    List<NodeReport> clusterNodeReports;
    try {
        clusterNodeReports = yarnClient.getNodeReports(NodeState.RUNNING);
        LOG.info("Got all node!");
        for (NodeReport node : clusterNodeReports) {
            LOG.info("Got node report from ASM for" + ", nodeId=" + node.getNodeId() + ", nodeAddress"
                    + node.getHttpAddress() + ", nodeRackName" + node.getRackName() + ", nodeNumContainers"
                    + node.getNumContainers());
            nodeSet.add(node.getNodeId().getHost());
        }
        Vector<CharSequence> vargs = new Vector<CharSequence>(30);
        String appTempDir = conf.get("hadoop.tmp.dir");
        FileSystem fs = DistributedFileSystem.get(conf);
        String hdfsJar = fs.getHomeDirectory() + "/avengers/" + this.appAttemptID.getApplicationId().getId()
                + "/AvengersAppMaster.jar";
        vargs.add("if [ ! -e " + appTempDir + "/" + this.appAttemptID.getApplicationId().getId()
                + "/AvengersAppMaster.jar" + " ];");
        vargs.add("then");
        vargs.add("/bin/mkdir -p");
        vargs.add(appTempDir + "/" + this.appAttemptID.getApplicationId().getId() + ";");
        vargs.add(Environment.HADOOP_YARN_HOME.$() + "/bin/hadoop");
        vargs.add("fs");
        vargs.add("-copyToLocal");
        vargs.add(hdfsJar);
        vargs.add(appTempDir + "/" + this.appAttemptID.getApplicationId().getId() + ";");
        vargs.add("fi");
        // Add log redirect params
        vargs.add("1>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/Avengers.stdout");
        vargs.add("2>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/Avengers.stderr");

        // Get final commmand
        StringBuilder command = new StringBuilder();
        for (CharSequence str : vargs) {
            command.append(str).append(" ");
        }

        initJarCmd = command.toString();
        LOG.info("initJar Completed setting up app master command {}", initJarCmd);
        numTotalContainers = nodeSet.size();
        for (int i = 0; i < numTotalContainers; i++) {
            ContainerRequest containerAsk = setupContainerAskForRM();
            amRMClient.addContainerRequest(containerAsk);
        }

        numRequestedContainers.set(numTotalContainers);

        while (!done && (numCompletedContainers.get() != numTotalContainers)) {
            try {
                Thread.sleep(200);
            } catch (InterruptedException ex) {
            }
        }
    } catch (YarnException e) {
        LOG.error("initJarAndClasspath", e);
    } catch (IOException e) {
        LOG.error("initJarAndClasspath", e);
    } finally {
        try {
            yarnClient.close();
        } catch (IOException e) {
        }
    }
}