Example usage for org.apache.hadoop.yarn.api.records ContainerLaunchContext setTokens

List of usage examples for org.apache.hadoop.yarn.api.records ContainerLaunchContext setTokens

Introduction

In this page you can find the example usage for org.apache.hadoop.yarn.api.records ContainerLaunchContext setTokens.

Prototype

@Public
@Stable
public abstract void setTokens(ByteBuffer tokens);

Source Link

Document

Set security tokens needed by this container.

Usage

From source file:com.inforefiner.hdata.SubmitClient.java

License:Apache License

/**
 * Main run function for the client// w  ww  .  j  ava2  s.  c o  m
 *
 * @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());
        }
    }

    if (domainId != null && domainId.length() > 0 && toCreateDomain) {
        prepareTimelineDomain();
    }

    // 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);

    if (attemptFailuresValidityInterval >= 0) {
        appContext.setAttemptFailuresValidityInterval(attemptFailuresValidityInterval);
    }

    // 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));
    if (domainId != null && domainId.length() > 0) {
        env.put(DSConstants.DISTRIBUTEDSHELLTIMELINEDOMAIN, domainId);
    }

    // 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));
    if (null != nodeLabelExpression) {
        appContext.setNodeLabelExpression(nodeLabelExpression);
    }
    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?
    Thread t = new Thread(new LogReceiver());
    t.start();
    // Monitor the application
    return monitorApplication(appId);
}

From source file:com.scistor.dshell.ScistorClient.java

License:Apache License

/**
 * Main run function for the client//w ww  . ja  v a 2  s .  co m
 * 
 * @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 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
    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 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(ScistorDSConstants.DISTRIBUTEDSHELLSCRIPTLOCATION, hdfsShellScriptLocation);
    env.put(ScistorDSConstants.DISTRIBUTEDSHELLSCRIPTTIMESTAMP, Long.toString(hdfsShellScriptTimestamp));
    env.put(ScistorDSConstants.DISTRIBUTEDSHELLSCRIPTLEN, Long.toString(hdfsShellScriptLen));

    // ========================================jar?
    if (containerJarPaths.length != 0) {
        for (int i = 0; i < containerJarPaths.length; i++) {
            String hdfsJarLocation = "";
            String[] jarNameSplit = containerJarPaths[i].split("/");
            String jarName = jarNameSplit[jarNameSplit.length - 1];

            long hdfsJarLen = 0;
            long hdfsJarTimestamp = 0;
            if (!containerJarPaths[i].isEmpty()) {
                Path jarSrc = new Path(containerJarPaths[i]);
                String jarPathSuffix = appName + "/" + appId.toString() + "/" + jarName;
                Path jarDst = new Path(fs.getHomeDirectory(), jarPathSuffix);
                fs.copyFromLocalFile(false, true, jarSrc, jarDst);
                hdfsJarLocation = jarDst.toUri().toString();
                FileStatus jarFileStatus = fs.getFileStatus(jarDst);
                hdfsJarLen = jarFileStatus.getLen();
                hdfsJarTimestamp = jarFileStatus.getModificationTime();
                env.put(ScistorDSConstants.DISTRIBUTEDJARLOCATION + i, hdfsJarLocation);
                env.put(ScistorDSConstants.DISTRIBUTEDJARTIMESTAMP + i, Long.toString(hdfsJarTimestamp));
                env.put(ScistorDSConstants.DISTRIBUTEDJARLEN + i, Long.toString(hdfsJarLen));
            }
        }
    }
    // ========================================jar?

    // 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());

    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);

}

From source file:com.sogou.dockeronyarn.client.DockerClient.java

License:Apache License

/**
 * Main run function for the client/*from   w w  w.  ja va 2 s  .  c  o  m*/
 * @return true if application completed successfully
 * @throws IOException
 * @throws YarnException
 */
public ApplicationId 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(fs.getHomeDirectory(), SCRIPT_PATH);
    String shellPathSuffix = 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 (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(File.pathSeparatorChar)
            .append("./*");

    //    StringBuilder classPathEnv = new StringBuilder(Environment.CLASSPATH.$$())
    //      .append(ApplicationConstants.CLASS_PATH_SEPARATOR).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");

    //    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");
    //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));
    vargs.add("--container_retry " + String.valueOf(this.container_retry));

    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 appId;

}

From source file:com.srini.hadoopYarn.Client.java

License:Apache License

/**
 * Main run function for the client/*from  ww w. j a  va  2s  . c o m*/
 * @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;
    }

    // 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 
    FileSystem fs = FileSystem.get(conf);
    Path src = new Path(appMasterJar);
    String pathSuffix = appName + "/" + appId.getId() + "/AppMaster.jar";
    Path dst = new Path(fs.getHomeDirectory(), pathSuffix);
    fs.copyFromLocalFile(false, true, src, dst);
    FileStatus destStatus = fs.getFileStatus(dst);
    LocalResource amJarRsrc = Records.newRecord(LocalResource.class);

    // Set the type of resource - file or archive
    // archives are untarred at destination
    // we don't need the jar file to be untarred for now
    amJarRsrc.setType(LocalResourceType.FILE);
    // Set visibility of the resource 
    // Setting to most private option
    amJarRsrc.setVisibility(LocalResourceVisibility.APPLICATION);
    // Set the resource to be copied over
    amJarRsrc.setResource(ConverterUtils.getYarnUrlFromPath(dst));
    // Set timestamp and length of file so that the framework 
    // can do basic sanity checks for the local resource 
    // after it has been copied over to ensure it is the same 
    // resource the client intended to use with the application
    amJarRsrc.setTimestamp(destStatus.getModificationTime());
    amJarRsrc.setSize(destStatus.getLen());
    localResources.put("AppMaster.jar", amJarRsrc);

    // Set the log4j properties if needed 
    if (!log4jPropFile.isEmpty()) {
        Path log4jSrc = new Path(log4jPropFile);
        Path log4jDst = new Path(fs.getHomeDirectory(), "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);
    }

    // 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() + "/ExecShellScript.sh";
        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();
    }

    // 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("--num_containers " + String.valueOf(numContainers));
    vargs.add("--priority " + String.valueOf(shellCmdPriority));
    if (!shellCommand.isEmpty()) {
        vargs.add("--shell_command " + shellCommand + "");
    }
    if (!shellArgs.isEmpty()) {
        vargs.add("--shell_args " + shellArgs + "");
    }
    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, 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);

    // 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);

}

From source file:com.toy.Client.java

License:Apache License

/**
 * Start a new Application Master and deploy the web application on 2 Tomcat containers
 *
 * @throws Exception/* ww w .j a va  2 s.  c o  m*/
 */
void start() throws Exception {

    //Check tomcat dir
    final File tomcatHomeDir = new File(toyConfig.tomcat);
    final File tomcatLibraries = new File(tomcatHomeDir, "lib");
    final File tomcatBinaries = new File(tomcatHomeDir, "bin");
    Preconditions.checkState(tomcatLibraries.isDirectory(),
            tomcatLibraries.getAbsolutePath() + " does not exist");

    //Check war file
    final File warFile = new File(toyConfig.war);
    Preconditions.checkState(warFile.isFile(), warFile.getAbsolutePath() + " does not exist");

    yarn = YarnClient.createYarnClient();
    yarn.init(configuration);
    yarn.start();

    YarnClientApplication yarnApplication = yarn.createApplication();
    GetNewApplicationResponse newApplication = yarnApplication.getNewApplicationResponse();
    appId = newApplication.getApplicationId();
    ApplicationSubmissionContext appContext = yarnApplication.getApplicationSubmissionContext();
    appContext.setApplicationName("Tomcat : " + tomcatHomeDir.getName() + "\n War : " + warFile.getName());
    // Set up the container launch context for the application master
    ContainerLaunchContext amContainer = Records.newRecord(ContainerLaunchContext.class);

    // Register required libraries
    Map<String, LocalResource> localResources = new HashMap<>();
    FileSystem fs = FileSystem.get(configuration);
    uploadDepAndRegister(localResources, appId, fs, "lib-ext/curator-client-2.3.0.jar");
    uploadDepAndRegister(localResources, appId, fs, "lib-ext/curator-framework-2.3.0.jar");
    uploadDepAndRegister(localResources, appId, fs, "lib-ext/curator-recipes-2.3.0.jar");

    // Register application master jar
    registerLocalResource(localResources, appId, fs, new Path(appMasterJar));

    // Register the WAR that will be deployed on Tomcat
    registerLocalResource(localResources, appId, fs, new Path(warFile.getAbsolutePath()));

    // Register Tomcat libraries
    for (File lib : tomcatLibraries.listFiles()) {
        registerLocalResource(localResources, appId, fs, new Path(lib.getAbsolutePath()));
    }

    File juli = new File(tomcatBinaries, "tomcat-juli.jar");
    if (juli.exists()) {
        registerLocalResource(localResources, appId, fs, new Path(juli.getAbsolutePath()));
    }

    amContainer.setLocalResources(localResources);

    // Setup master environment
    Map<String, String> env = new HashMap<>();
    final String TOMCAT_LIBS = fs.getHomeDirectory() + "/" + Constants.TOY_PREFIX + appId.toString();
    env.put(Constants.TOMCAT_LIBS, TOMCAT_LIBS);

    if (toyConfig.zookeeper != null) {
        env.put(Constants.ZOOKEEPER_QUORUM, toyConfig.zookeeper);
    } else {
        env.put(Constants.ZOOKEEPER_QUORUM, NetUtils.getHostname());
    }

    // 1. Compute classpath
    StringBuilder classPathEnv = new StringBuilder(ApplicationConstants.Environment.CLASSPATH.$())
            .append(File.pathSeparatorChar).append("./*");
    for (String c : configuration.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 (configuration.getBoolean(YarnConfiguration.IS_MINI_YARN_CLUSTER, false)) {
        classPathEnv.append(':');
        classPathEnv.append(System.getProperty("java.class.path"));
    }
    env.put("CLASSPATH", classPathEnv.toString());
    env.put(Constants.WAR, warFile.getName());
    // For unit test with YarnMiniCluster
    env.put(YarnConfiguration.RM_SCHEDULER_ADDRESS, configuration.get(YarnConfiguration.RM_SCHEDULER_ADDRESS));
    amContainer.setEnvironment(env);

    // 1.2 Set constraint for the app master
    Resource capability = Records.newRecord(Resource.class);
    capability.setMemory(32);
    appContext.setResource(capability);

    // 2. Compute app master cmd line
    Vector<CharSequence> vargs = new Vector<>(10);
    // Set java executable command
    vargs.add(ApplicationConstants.Environment.JAVA_HOME.$() + "/bin/java");
    // Set Xmx based on am memory size
    vargs.add("-Xmx32m");
    // Set class name
    vargs.add(TOYMaster.class.getCanonicalName());
    vargs.add("1>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/AppMaster.stdout");
    vargs.add("2>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/AppMaster.stderr");

    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<>();
    commands.add(command.toString());
    amContainer.setCommands(commands);
    appContext.setAMContainerSpec(amContainer);

    // 3. Setup security tokens
    if (UserGroupInformation.isSecurityEnabled()) {
        Credentials credentials = new Credentials();
        String tokenRenewer = configuration.get(YarnConfiguration.RM_PRINCIPAL);
        if (tokenRenewer == null || tokenRenewer.length() == 0) {
            throw new Exception("Can't get Master Kerberos principal for the RM to use as renewer");
        }

        // For now, only getting tokens for the default file-system.
        final org.apache.hadoop.security.token.Token<?> tokens[] = fs.addDelegationTokens(tokenRenewer,
                credentials);
        if (tokens != null) {
            for (org.apache.hadoop.security.token.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.setQueue("default");
    LOG.info("Submitting TOY application {} to ASM", appId.toString());
    yarn.submitApplication(appContext);

    // Monitor the application and exit if it is RUNNING
    monitorApplication(appId);
}

From source file:com.yahoo.storm.yarn.StormAMRMClient.java

License:Open Source License

public void launchSupervisorOnContainer(Container container) throws IOException {
    // create a container launch context
    ContainerLaunchContext launchContext = Records.newRecord(ContainerLaunchContext.class);
    UserGroupInformation user = UserGroupInformation.getCurrentUser();
    try {//from w w  w .  j a va  2s .c  o  m
        Credentials credentials = user.getCredentials();
        DataOutputBuffer dob = new DataOutputBuffer();
        credentials.writeTokenStorageToStream(dob);
        ByteBuffer securityTokens = ByteBuffer.wrap(dob.getData(), 0, dob.getLength());
        launchContext.setTokens(securityTokens);
    } catch (IOException e) {
        LOG.warn("Getting current user info failed when trying to launch the container" + e.getMessage());
    }

    // CLC: env
    Map<String, String> env = new HashMap<String, String>();
    env.put("STORM_LOG_DIR", ApplicationConstants.LOG_DIR_EXPANSION_VAR);
    launchContext.setEnvironment(env);

    // CLC: local resources includes storm, conf
    Map<String, LocalResource> localResources = new HashMap<String, LocalResource>();
    String storm_zip_path = (String) storm_conf.get("storm.zip.path");
    Path zip = new Path(storm_zip_path);
    FileSystem fs = FileSystem.get(hadoopConf);
    String vis = (String) storm_conf.get("storm.zip.visibility");
    if (vis.equals("PUBLIC"))
        localResources.put("storm",
                Util.newYarnAppResource(fs, zip, LocalResourceType.ARCHIVE, LocalResourceVisibility.PUBLIC));
    else if (vis.equals("PRIVATE"))
        localResources.put("storm",
                Util.newYarnAppResource(fs, zip, LocalResourceType.ARCHIVE, LocalResourceVisibility.PRIVATE));
    else if (vis.equals("APPLICATION"))
        localResources.put("storm", Util.newYarnAppResource(fs, zip, LocalResourceType.ARCHIVE,
                LocalResourceVisibility.APPLICATION));

    String appHome = Util.getApplicationHomeForId(appAttemptId.toString());
    Path confDst = Util.createConfigurationFileInFs(fs, appHome, this.storm_conf, this.hadoopConf);
    localResources.put("conf", Util.newYarnAppResource(fs, confDst));

    launchContext.setLocalResources(localResources);

    // CLC: command
    List<String> supervisorArgs = Util.buildSupervisorCommands(this.storm_conf);
    launchContext.setCommands(supervisorArgs);

    try {
        LOG.info("Use NMClient to launch supervisors in container. ");
        nmClient.startContainer(container, launchContext);

        String userShortName = user.getShortUserName();
        if (userShortName != null)
            LOG.info("Supervisor log: http://" + container.getNodeHttpAddress() + "/node/containerlogs/"
                    + container.getId().toString() + "/" + userShortName + "/supervisor.log");
    } catch (Exception e) {
        LOG.error("Caught an exception while trying to start a container", e);
        System.exit(-1);
    }
}

From source file:com.yahoo.storm.yarn.StormOnYarn.java

License:Open Source License

private void launchApp(String appName, String queue, int amMB, String storm_zip_location) throws Exception {
    LOG.debug("StormOnYarn:launchApp() ...");
    YarnClientApplication client_app = _yarn.createApplication();
    GetNewApplicationResponse app = client_app.getNewApplicationResponse();
    _appId = app.getApplicationId();//w w  w . ja v  a  2  s  .co m
    LOG.debug("_appId:" + _appId);

    if (amMB > app.getMaximumResourceCapability().getMemory()) {
        //TODO need some sanity checks
        amMB = app.getMaximumResourceCapability().getMemory();
    }
    ApplicationSubmissionContext appContext = Records.newRecord(ApplicationSubmissionContext.class);
    appContext.setApplicationId(app.getApplicationId());
    appContext.setApplicationName(appName);
    appContext.setQueue(queue);

    // Set up the container launch context for the application master
    ContainerLaunchContext amContainer = Records.newRecord(ContainerLaunchContext.class);
    Map<String, LocalResource> localResources = new HashMap<String, LocalResource>();

    // 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
    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
    String appMasterJar = findContainingJar(MasterServer.class);
    FileSystem fs = FileSystem.get(_hadoopConf);
    Path src = new Path(appMasterJar);
    String appHome = Util.getApplicationHomeForId(_appId.toString());
    Path dst = new Path(fs.getHomeDirectory(), appHome + Path.SEPARATOR + "AppMaster.jar");
    fs.copyFromLocalFile(false, true, src, dst);
    localResources.put("AppMaster.jar", Util.newYarnAppResource(fs, dst));

    String stormVersion = Util.getStormVersion();
    Path zip;
    if (storm_zip_location != null) {
        zip = new Path(storm_zip_location);
    } else {
        zip = new Path("/lib/storm/" + stormVersion + "/storm.zip");
    }
    _stormConf.put("storm.zip.path", zip.makeQualified(fs).toUri().getPath());
    LocalResourceVisibility visibility = LocalResourceVisibility.PUBLIC;
    _stormConf.put("storm.zip.visibility", "PUBLIC");
    if (!Util.isPublic(fs, zip)) {
        visibility = LocalResourceVisibility.APPLICATION;
        _stormConf.put("storm.zip.visibility", "APPLICATION");
    }
    localResources.put("storm", Util.newYarnAppResource(fs, zip, LocalResourceType.ARCHIVE, visibility));

    Path confDst = Util.createConfigurationFileInFs(fs, appHome, _stormConf, _hadoopConf);
    // establish a symbolic link to conf directory
    localResources.put("conf", Util.newYarnAppResource(fs, confDst));

    // Setup security tokens
    Path[] paths = new Path[3];
    paths[0] = dst;
    paths[1] = zip;
    paths[2] = confDst;
    Credentials credentials = new Credentials();
    TokenCache.obtainTokensForNamenodes(credentials, paths, _hadoopConf);
    DataOutputBuffer dob = new DataOutputBuffer();
    credentials.writeTokenStorageToStream(dob);
    ByteBuffer securityTokens = ByteBuffer.wrap(dob.getData(), 0, dob.getLength());

    //security tokens for HDFS distributed cache
    amContainer.setTokens(securityTokens);

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

    // 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 the runtime classpath needed for tests to work
    Apps.addToEnvironment(env, Environment.CLASSPATH.name(), "./conf");
    Apps.addToEnvironment(env, Environment.CLASSPATH.name(), "./AppMaster.jar");

    //Make sure that AppMaster has access to all YARN JARs
    List<String> yarn_classpath_cmd = java.util.Arrays.asList("yarn", "classpath");
    ProcessBuilder pb = new ProcessBuilder(yarn_classpath_cmd).redirectError(Redirect.INHERIT);
    LOG.info("YARN CLASSPATH COMMAND = [" + yarn_classpath_cmd + "]");
    pb.environment().putAll(System.getenv());
    Process proc = pb.start();
    BufferedReader reader = new BufferedReader(new InputStreamReader(proc.getInputStream(), "UTF-8"));
    String line = "";
    String yarn_class_path = (String) _stormConf.get("storm.yarn.yarn_classpath");
    if (yarn_class_path == null) {
        StringBuilder yarn_class_path_builder = new StringBuilder();
        while ((line = reader.readLine()) != null) {
            yarn_class_path_builder.append(line);
        }
        yarn_class_path = yarn_class_path_builder.toString();
    }
    LOG.info("YARN CLASSPATH = [" + yarn_class_path + "]");
    proc.waitFor();
    reader.close();
    Apps.addToEnvironment(env, Environment.CLASSPATH.name(), yarn_class_path);

    String stormHomeInZip = Util.getStormHomeInZip(fs, zip, stormVersion);
    Apps.addToEnvironment(env, Environment.CLASSPATH.name(), "./storm/" + stormHomeInZip + "/*");
    Apps.addToEnvironment(env, Environment.CLASSPATH.name(), "./storm/" + stormHomeInZip + "/lib/*");

    String java_home = (String) _stormConf.get("storm.yarn.java_home");
    if (java_home == null)
        java_home = System.getenv("JAVA_HOME");

    if (java_home != null && !java_home.isEmpty())
        env.put("JAVA_HOME", java_home);
    LOG.info("Using JAVA_HOME = [" + env.get("JAVA_HOME") + "]");

    env.put("appJar", appMasterJar);
    env.put("appName", appName);
    env.put("appId", new Integer(_appId.getId()).toString());
    env.put("STORM_LOG_DIR", ApplicationConstants.LOG_DIR_EXPANSION_VAR);
    amContainer.setEnvironment(env);

    // Set the necessary command to execute the application master
    Vector<String> vargs = new Vector<String>();
    if (java_home != null && !java_home.isEmpty())
        vargs.add(env.get("JAVA_HOME") + "/bin/java");
    else
        vargs.add("java");
    vargs.add("-Dstorm.home=./storm/" + stormHomeInZip + "/");
    vargs.add("-Dlogfile.name=" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/master.log");
    //vargs.add("-verbose:class");
    vargs.add("com.yahoo.storm.yarn.MasterServer");
    vargs.add("1>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/stderr");
    vargs.add("2>" + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/stdout");
    // Set java executable command
    LOG.info("Setting up app master command:" + vargs);

    amContainer.setCommands(vargs);

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

    _yarn.submitApplication(appContext);
}

From source file:de.huberlin.wbi.hiway.common.Client.java

License:Apache License

/**
 * Main run function for the client.//from  w w  w  .jav  a2  s. c o  m
 * 
 * @return true if application completed successfully.
 */
private boolean run() throws IOException, YarnException {

    /* log */ System.out.println("Running Client");

    yarnClient.start();
    YarnClusterMetrics clusterMetrics = yarnClient.getYarnClusterMetrics();

    /* log */ System.out.println(
            "Got Cluster metric info from ASM" + ", numNodeManagers=" + clusterMetrics.getNumNodeManagers());

    List<NodeReport> clusterNodeReports = yarnClient.getNodeReports(NodeState.RUNNING);
    /* log */ System.out.println("Got Cluster node info from ASM");
    /* log */ for (NodeReport node : clusterNodeReports)
        System.out.println("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 */ System.out.println("Queue info" + ", queueName=" + queueInfo.getQueueName()
            + ", queueCurrentCapacity=" + queueInfo.getCurrentCapacity() + ", queueMaxCapacity="
            + queueInfo.getMaximumCapacity() + ", queueApplicationCount=" + queueInfo.getApplications().size()
            + ", queueChildQueueCount=" + queueInfo.getChildQueues().size());

    List<QueueUserACLInfo> listAclInfo = yarnClient.getQueueAclsInfo();
    /* log */ for (QueueUserACLInfo aclInfo : listAclInfo)
        for (QueueACL userAcl : aclInfo.getUserAcls())
            System.out.println("User ACL Info for Queue" + ", queueName=" + aclInfo.getQueueName()
                    + ", userAcl=" + userAcl.name());

    // Get a new application id
    YarnClientApplication app = yarnClient.createApplication();
    GetNewApplicationResponse appResponse = app.getNewApplicationResponse();

    // Get min/max resource capabilities from RM and change memory ask if needed
    int maxVC = appResponse.getMaximumResourceCapability().getVirtualCores();
    /* log */ System.out.println("Max vCores capabililty of resources in this cluster " + maxVC);
    int maxMem = appResponse.getMaximumResourceCapability().getMemory();
    /* log */ System.out.println("Max mem capabililty of resources in this cluster " + maxMem);
    // A resource ask cannot exceed the max.
    if (amVCores > maxVC) {
        /* log */ System.out.println("AM vCores specified above max threshold of cluster. Using max value."
                + ", specified=" + amVCores + ", max=" + maxVC);
        amVCores = maxVC;
    }
    if (amMemory > maxMem) {
        /* log */ System.out.println("AM memory specified above max threshold of cluster. Using max value."
                + ", specified=" + amMemory + ", max=" + maxMem);
        amMemory = maxMem;
    }

    // set the application name
    ApplicationSubmissionContext appContext = app.getApplicationSubmissionContext();
    appContext.setApplicationType(conf.get(HiWayConfiguration.HIWAY_AM_APPLICATION_TYPE,
            HiWayConfiguration.HIWAY_AM_APPLICATION_TYPE_DEFAULT));
    appContext.setApplicationName("run " + workflowParam + " (type: " + workflowType.toString() + ")");
    ApplicationId appId = appContext.getApplicationId();
    String hdfsBaseDirectoryName = conf.get(HiWayConfiguration.HIWAY_AM_DIRECTORY_BASE,
            HiWayConfiguration.HIWAY_AM_DIRECTORY_BASE_DEFAULT);
    String hdfsSandboxDirectoryName = conf.get(HiWayConfiguration.HIWAY_AM_DIRECTORY_CACHE,
            HiWayConfiguration.HIWAY_AM_DIRECTORY_CACHE_DEFAULT);
    Path hdfsBaseDirectory = new Path(new Path(hdfs.getUri()), hdfsBaseDirectoryName);
    Data.setHdfsBaseDirectory(hdfsBaseDirectory);
    Path hdfsSandboxDirectory = new Path(hdfsBaseDirectory, hdfsSandboxDirectoryName);
    Path hdfsApplicationDirectory = new Path(hdfsSandboxDirectory, appId.toString());
    Data.setHdfsApplicationDirectory(hdfsApplicationDirectory);
    Data.setHdfs(hdfs);

    Path wfSource, wfDest, wfTemp = null;
    try {
        wfSource = new Path(new URI(workflowParam).getPath());
    } catch (URISyntaxException e) {
        wfSource = new Path(workflowParam);
    }
    wfDest = new Path(hdfsApplicationDirectory + "/" + wfSource.getName());

    // (1) if workflow file in hdfs, then transfer to temp file in local fs
    if (hdfs.exists(wfSource)) {
        wfTemp = new Path("./." + wfSource.getName());
        System.out.println("Workflow found in HDFS at location " + wfSource);
        hdfs.copyToLocalFile(false, wfSource, wfTemp);
    }

    // (2) if galaxy workflow, then copy and replace input ports
    if (workflowType.equals(HiWayConfiguration.HIWAY_WORKFLOW_LANGUAGE_OPTS.galaxy)) {
        wfTemp = preProcessGalaxyWorkflow(wfSource, wfTemp);
    }

    if (wfTemp != null) {
        hdfs.copyFromLocalFile(wfTemp, wfDest);
        new File(wfTemp.toString()).delete();
    } else {
        hdfs.copyFromLocalFile(wfSource, wfDest);
    }

    if (summaryPath != null)
        summary = new Data(summaryPath);
    if (customMemPath != null)
        (new Data(customMemPath)).stageOut();

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

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

    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(':');
        classPathEnv.append(File.pathSeparatorChar);
        classPathEnv.append(c.trim());
    }

    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<>(30);

    // Set java executable command
    System.out.println("Setting up app master command");
    vargs.add(Environment.JAVA_HOME.$() + "/bin/java");
    if (HiWayConfiguration.debug)
        vargs.add(
                "-Dcom.sun.management.jmxremote -Dcom.sun.management.jmxremote.port=9010 -Dcom.sun.management.jmxremote.authenticate=false -Dcom.sun.management.jmxremote.ssl=false");
    // Set Xmx based on am memory size
    vargs.add("-Xmx" + amMemory + "m");
    vargs.add("-Xss" + "16m");
    // Set class name

    switch (workflowType) {
    case dax:
        vargs.add(HiWayConfiguration.HIWAY_WORKFLOW_LANGUAGE_DAX_AM_CLASS);
        break;
    case log:
        vargs.add(HiWayConfiguration.HIWAY_WORKFLOW_LANGUAGE_LOG_AM_CLASS);
        break;
    case galaxy:
        vargs.add(HiWayConfiguration.HIWAY_WORKFLOW_LANGUAGE_GALAXY_AM_CLASS);
        break;
    case cuneiformE:
        vargs.add(HiWayConfiguration.HIWAY_WORKFLOW_LANGUAGE_CUNEIFORME_AM_CLASS);
        break;
    default:
        vargs.add(HiWayConfiguration.HIWAY_WORKFLOW_LANGUAGE_CUNEIFORMJ_AM_CLASS);
    }

    vargs.add("--scheduler " + schedulerName.toString());
    if (memory != null)
        vargs.add("--memory " + memory);
    if (summary != null)
        vargs.add("--summary " + summary.getName());
    if (customMemPath != null)
        vargs.add("--custom " + customMemPath);
    vargs.add("--appid " + appId.toString());
    if (HiWayConfiguration.debug)
        vargs.add("--debug");
    if (HiWayConfiguration.verbose)
        vargs.add("--verbose");
    vargs.add(workflowParam);
    vargs.add("> >(tee AppMaster.stdout " + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/AppMaster.stdout)");
    vargs.add("2> >(tee AppMaster.stderr " + ApplicationConstants.LOG_DIR_EXPANSION_VAR
            + "/AppMaster.stderr >&2)");

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

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

    // Set up resource type requirements
    Resource capability = Records.newRecord(Resource.class);
    capability.setVirtualCores(amVCores);
    capability.setMemory(amMemory);
    appContext.setResource(capability);

    // 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[] = hdfs.addDelegationTokens(tokenRenewer, credentials);
        if (tokens != null) {
            for (Token<?> token : tokens) {
                System.out.println("Got dt for " + hdfs.getUri() + "; " + token);
            }
        }
        try (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);
    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
    /* log */ System.out.println("Submitting application to ASM");
    yarnClient.submitApplication(appContext);

    // Monitor the application
    boolean success = monitorApplication(appId);

    if (success && summary != null) {
        summary.stageIn();
    }

    return success;

}

From source file:eu.stratosphere.yarn.ApplicationMaster.java

License:Apache License

private void run() throws Exception {
    //Utils.logFilesInCurrentDirectory(LOG);
    // Initialize clients to ResourceManager and NodeManagers
    Configuration conf = Utils.initializeYarnConfiguration();
    FileSystem fs = FileSystem.get(conf);
    Map<String, String> envs = System.getenv();
    final String currDir = envs.get(Environment.PWD.key());
    final String logDirs = envs.get(Environment.LOG_DIRS.key());
    final String ownHostname = envs.get(Environment.NM_HOST.key());
    final String appId = envs.get(Client.ENV_APP_ID);
    final String clientHomeDir = envs.get(Client.ENV_CLIENT_HOME_DIR);
    final String applicationMasterHost = envs.get(Environment.NM_HOST.key());
    final String remoteStratosphereJarPath = envs.get(Client.STRATOSPHERE_JAR_PATH);
    final String shipListString = envs.get(Client.ENV_CLIENT_SHIP_FILES);
    final String yarnClientUsername = envs.get(Client.ENV_CLIENT_USERNAME);
    final int taskManagerCount = Integer.valueOf(envs.get(Client.ENV_TM_COUNT));
    final int memoryPerTaskManager = Integer.valueOf(envs.get(Client.ENV_TM_MEMORY));
    final int coresPerTaskManager = Integer.valueOf(envs.get(Client.ENV_TM_CORES));

    int heapLimit = Utils.calculateHeapSize(memoryPerTaskManager);

    if (currDir == null) {
        throw new RuntimeException("Current directory unknown");
    }// w w  w.  jav  a2s  .  c o m
    if (ownHostname == null) {
        throw new RuntimeException("Own hostname (" + Environment.NM_HOST + ") not set.");
    }
    LOG.info("Working directory " + currDir);

    // load Stratosphere configuration.
    Utils.getStratosphereConfiguration(currDir);

    final String localWebInterfaceDir = currDir + "/resources/"
            + ConfigConstants.DEFAULT_JOB_MANAGER_WEB_PATH_NAME;

    // Update yaml conf -> set jobManager address to this machine's address.
    FileInputStream fis = new FileInputStream(currDir + "/stratosphere-conf.yaml");
    BufferedReader br = new BufferedReader(new InputStreamReader(fis));
    Writer output = new BufferedWriter(new FileWriter(currDir + "/stratosphere-conf-modified.yaml"));
    String line;
    while ((line = br.readLine()) != null) {
        if (line.contains(ConfigConstants.JOB_MANAGER_IPC_ADDRESS_KEY)) {
            output.append(ConfigConstants.JOB_MANAGER_IPC_ADDRESS_KEY + ": " + ownHostname + "\n");
        } else if (line.contains(ConfigConstants.JOB_MANAGER_WEB_ROOT_PATH_KEY)) {
            output.append(ConfigConstants.JOB_MANAGER_WEB_ROOT_PATH_KEY + ": " + "\n");
        } else {
            output.append(line + "\n");
        }
    }
    // just to make sure.
    output.append(ConfigConstants.JOB_MANAGER_IPC_ADDRESS_KEY + ": " + ownHostname + "\n");
    output.append(ConfigConstants.JOB_MANAGER_WEB_ROOT_PATH_KEY + ": " + localWebInterfaceDir + "\n");
    output.append(ConfigConstants.JOB_MANAGER_WEB_LOG_PATH_KEY + ": " + logDirs + "\n");
    output.close();
    br.close();
    File newConf = new File(currDir + "/stratosphere-conf-modified.yaml");
    if (!newConf.exists()) {
        LOG.warn("modified yaml does not exist!");
    }

    Utils.copyJarContents("resources/" + ConfigConstants.DEFAULT_JOB_MANAGER_WEB_PATH_NAME,
            ApplicationMaster.class.getProtectionDomain().getCodeSource().getLocation().getPath());

    JobManager jm;
    {
        String pathToNepheleConfig = currDir + "/stratosphere-conf-modified.yaml";
        String[] args = { "-executionMode", "cluster", "-configDir", pathToNepheleConfig };

        // start the job manager
        jm = JobManager.initialize(args);

        // Start info server for jobmanager
        jm.startInfoServer();
    }

    AMRMClient<ContainerRequest> rmClient = AMRMClient.createAMRMClient();
    rmClient.init(conf);
    rmClient.start();

    NMClient nmClient = NMClient.createNMClient();
    nmClient.init(conf);
    nmClient.start();

    // Register with ResourceManager
    LOG.info("registering ApplicationMaster");
    rmClient.registerApplicationMaster(applicationMasterHost, 0, "http://" + applicationMasterHost + ":"
            + GlobalConfiguration.getString(ConfigConstants.JOB_MANAGER_WEB_PORT_KEY, "undefined"));

    // Priority for worker containers - priorities are intra-application
    Priority priority = Records.newRecord(Priority.class);
    priority.setPriority(0);

    // Resource requirements for worker containers
    Resource capability = Records.newRecord(Resource.class);
    capability.setMemory(memoryPerTaskManager);
    capability.setVirtualCores(coresPerTaskManager);

    // Make container requests to ResourceManager
    for (int i = 0; i < taskManagerCount; ++i) {
        ContainerRequest containerAsk = new ContainerRequest(capability, null, null, priority);
        LOG.info("Requesting TaskManager container " + i);
        rmClient.addContainerRequest(containerAsk);
    }

    LocalResource stratosphereJar = Records.newRecord(LocalResource.class);
    LocalResource stratosphereConf = Records.newRecord(LocalResource.class);

    // register Stratosphere Jar with remote HDFS
    final Path remoteJarPath = new Path(remoteStratosphereJarPath);
    Utils.registerLocalResource(fs, remoteJarPath, stratosphereJar);

    // register conf with local fs.
    Path remoteConfPath = Utils.setupLocalResource(conf, fs, appId,
            new Path("file://" + currDir + "/stratosphere-conf-modified.yaml"), stratosphereConf,
            new Path(clientHomeDir));
    LOG.info("Prepared localresource for modified yaml: " + stratosphereConf);

    boolean hasLog4j = new File(currDir + "/log4j.properties").exists();
    // prepare the files to ship
    LocalResource[] remoteShipRsc = null;
    String[] remoteShipPaths = shipListString.split(",");
    if (!shipListString.isEmpty()) {
        remoteShipRsc = new LocalResource[remoteShipPaths.length];
        { // scope for i
            int i = 0;
            for (String remoteShipPathStr : remoteShipPaths) {
                if (remoteShipPathStr == null || remoteShipPathStr.isEmpty()) {
                    continue;
                }
                remoteShipRsc[i] = Records.newRecord(LocalResource.class);
                Path remoteShipPath = new Path(remoteShipPathStr);
                Utils.registerLocalResource(fs, remoteShipPath, remoteShipRsc[i]);
                i++;
            }
        }
    }

    // respect custom JVM options in the YAML file
    final String javaOpts = GlobalConfiguration.getString(ConfigConstants.STRATOSPHERE_JVM_OPTIONS, "");

    // Obtain allocated containers and launch
    int allocatedContainers = 0;
    int completedContainers = 0;
    while (allocatedContainers < taskManagerCount) {
        AllocateResponse response = rmClient.allocate(0);
        for (Container container : response.getAllocatedContainers()) {
            LOG.info("Got new Container for TM " + container.getId() + " on host "
                    + container.getNodeId().getHost());
            ++allocatedContainers;

            // Launch container by create ContainerLaunchContext
            ContainerLaunchContext ctx = Records.newRecord(ContainerLaunchContext.class);

            String tmCommand = "$JAVA_HOME/bin/java -Xmx" + heapLimit + "m " + javaOpts;
            if (hasLog4j) {
                tmCommand += " -Dlog.file=\"" + ApplicationConstants.LOG_DIR_EXPANSION_VAR
                        + "/taskmanager-log4j.log\" -Dlog4j.configuration=file:log4j.properties";
            }
            tmCommand += " eu.stratosphere.yarn.YarnTaskManagerRunner -configDir . " + " 1>"
                    + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/taskmanager-stdout.log" + " 2>"
                    + ApplicationConstants.LOG_DIR_EXPANSION_VAR + "/taskmanager-stderr.log";
            ctx.setCommands(Collections.singletonList(tmCommand));

            LOG.info("Starting TM with command=" + tmCommand);

            // copy resources to the TaskManagers.
            Map<String, LocalResource> localResources = new HashMap<String, LocalResource>(2);
            localResources.put("stratosphere.jar", stratosphereJar);
            localResources.put("stratosphere-conf.yaml", stratosphereConf);

            // add ship resources
            if (!shipListString.isEmpty()) {
                Preconditions.checkNotNull(remoteShipRsc);
                for (int i = 0; i < remoteShipPaths.length; i++) {
                    localResources.put(new Path(remoteShipPaths[i]).getName(), remoteShipRsc[i]);
                }
            }

            ctx.setLocalResources(localResources);

            // Setup CLASSPATH for Container (=TaskTracker)
            Map<String, String> containerEnv = new HashMap<String, String>();
            Utils.setupEnv(conf, containerEnv); //add stratosphere.jar to class path.
            containerEnv.put(Client.ENV_CLIENT_USERNAME, yarnClientUsername);

            ctx.setEnvironment(containerEnv);

            UserGroupInformation user = UserGroupInformation.getCurrentUser();
            try {
                Credentials credentials = user.getCredentials();
                DataOutputBuffer dob = new DataOutputBuffer();
                credentials.writeTokenStorageToStream(dob);
                ByteBuffer securityTokens = ByteBuffer.wrap(dob.getData(), 0, dob.getLength());
                ctx.setTokens(securityTokens);
            } catch (IOException e) {
                LOG.warn("Getting current user info failed when trying to launch the container"
                        + e.getMessage());
            }

            LOG.info("Launching container " + allocatedContainers);
            nmClient.startContainer(container, ctx);
        }
        for (ContainerStatus status : response.getCompletedContainersStatuses()) {
            ++completedContainers;
            LOG.info("Completed container (while allocating) " + status.getContainerId() + ". Total Completed:"
                    + completedContainers);
            LOG.info("Diagnostics " + status.getDiagnostics());
        }
        Thread.sleep(100);
    }

    // Now wait for containers to complete

    while (completedContainers < taskManagerCount) {
        AllocateResponse response = rmClient.allocate(completedContainers / taskManagerCount);
        for (ContainerStatus status : response.getCompletedContainersStatuses()) {
            ++completedContainers;
            LOG.info("Completed container " + status.getContainerId() + ". Total Completed:"
                    + completedContainers);
            LOG.info("Diagnostics " + status.getDiagnostics());
        }
        Thread.sleep(5000);
    }
    LOG.info("Shutting down JobManager");
    jm.shutdown();

    // Un-register with ResourceManager
    rmClient.unregisterApplicationMaster(FinalApplicationStatus.SUCCEEDED, "", "");

}

From source file:eu.stratosphere.yarn.Utils.java

License:Apache License

public static void setTokensFor(ContainerLaunchContext amContainer, Path[] paths, Configuration conf)
        throws IOException {
    Credentials credentials = new Credentials();
    // for HDFS//from   w w  w .j  av a 2  s  . co  m
    TokenCache.obtainTokensForNamenodes(credentials, paths, conf);
    // for user
    UserGroupInformation currUsr = UserGroupInformation.getCurrentUser();

    Collection<Token<? extends TokenIdentifier>> usrTok = currUsr.getTokens();
    for (Token<? extends TokenIdentifier> token : usrTok) {
        final Text id = new Text(token.getIdentifier());
        LOG.info("Adding user token " + id + " with " + token);
        credentials.addToken(id, token);
    }
    DataOutputBuffer dob = new DataOutputBuffer();
    credentials.writeTokenStorageToStream(dob);
    LOG.debug("Wrote tokens. Credentials buffer length: " + dob.getLength());

    ByteBuffer securityTokens = ByteBuffer.wrap(dob.getData(), 0, dob.getLength());
    amContainer.setTokens(securityTokens);
}