use of org.apache.hadoop.yarn.server.resourcemanager.rmapp.attempt.RMAppAttemptState in project hadoop by apache.
the class TestRMApplicationHistoryWriter method testRMWritingMassiveHistory.
private void testRMWritingMassiveHistory(boolean isFS) throws Exception {
// 1. Show RM can run with writing history data
// 2. Test additional workload of processing history events
YarnConfiguration conf = new YarnConfiguration();
if (isFS) {
conf.setBoolean(FairSchedulerConfiguration.ASSIGN_MULTIPLE, true);
conf.set(YarnConfiguration.RM_SCHEDULER, FairScheduler.class.getName());
} else {
conf.set(YarnConfiguration.RM_SCHEDULER, CapacityScheduler.class.getName());
}
// don't process history events
MockRM rm = new MockRM(conf) {
@Override
protected RMApplicationHistoryWriter createRMApplicationHistoryWriter() {
return new RMApplicationHistoryWriter() {
@Override
public void applicationStarted(RMApp app) {
}
@Override
public void applicationFinished(RMApp app, RMAppState finalState) {
}
@Override
public void applicationAttemptStarted(RMAppAttempt appAttempt) {
}
@Override
public void applicationAttemptFinished(RMAppAttempt appAttempt, RMAppAttemptState finalState) {
}
@Override
public void containerStarted(RMContainer container) {
}
@Override
public void containerFinished(RMContainer container) {
}
};
}
};
long startTime1 = System.currentTimeMillis();
testRMWritingMassiveHistory(rm);
long finishTime1 = System.currentTimeMillis();
long elapsedTime1 = finishTime1 - startTime1;
rm = new MockRM(conf);
long startTime2 = System.currentTimeMillis();
testRMWritingMassiveHistory(rm);
long finishTime2 = System.currentTimeMillis();
long elapsedTime2 = finishTime2 - startTime2;
// No more than 10% additional workload
// Should be much less, but computation time is fluctuated
Assert.assertTrue(elapsedTime2 - elapsedTime1 < elapsedTime1 / 10);
}
use of org.apache.hadoop.yarn.server.resourcemanager.rmapp.attempt.RMAppAttemptState in project hadoop by apache.
the class ApplicationMasterService method allocateInternal.
protected void allocateInternal(ApplicationAttemptId appAttemptId, AllocateRequest request, AllocateResponse allocateResponse) throws YarnException {
//filter illegal progress values
float filteredProgress = request.getProgress();
if (Float.isNaN(filteredProgress) || filteredProgress == Float.NEGATIVE_INFINITY || filteredProgress < 0) {
request.setProgress(0);
} else if (filteredProgress > 1 || filteredProgress == Float.POSITIVE_INFINITY) {
request.setProgress(1);
}
// Send the status update to the appAttempt.
this.rmContext.getDispatcher().getEventHandler().handle(new RMAppAttemptStatusupdateEvent(appAttemptId, request.getProgress()));
List<ResourceRequest> ask = request.getAskList();
List<ContainerId> release = request.getReleaseList();
ResourceBlacklistRequest blacklistRequest = request.getResourceBlacklistRequest();
List<String> blacklistAdditions = (blacklistRequest != null) ? blacklistRequest.getBlacklistAdditions() : Collections.EMPTY_LIST;
List<String> blacklistRemovals = (blacklistRequest != null) ? blacklistRequest.getBlacklistRemovals() : Collections.EMPTY_LIST;
RMApp app = this.rmContext.getRMApps().get(appAttemptId.getApplicationId());
// set label expression for Resource Requests if resourceName=ANY
ApplicationSubmissionContext asc = app.getApplicationSubmissionContext();
for (ResourceRequest req : ask) {
if (null == req.getNodeLabelExpression() && ResourceRequest.ANY.equals(req.getResourceName())) {
req.setNodeLabelExpression(asc.getNodeLabelExpression());
}
}
Resource maximumCapacity = rScheduler.getMaximumResourceCapability();
// sanity check
try {
RMServerUtils.normalizeAndValidateRequests(ask, maximumCapacity, app.getQueue(), rScheduler, rmContext);
} catch (InvalidResourceRequestException e) {
LOG.warn("Invalid resource ask by application " + appAttemptId, e);
throw e;
}
try {
RMServerUtils.validateBlacklistRequest(blacklistRequest);
} catch (InvalidResourceBlacklistRequestException e) {
LOG.warn("Invalid blacklist request by application " + appAttemptId, e);
throw e;
}
// AM to release containers from the earlier attempt.
if (!app.getApplicationSubmissionContext().getKeepContainersAcrossApplicationAttempts()) {
try {
RMServerUtils.validateContainerReleaseRequest(release, appAttemptId);
} catch (InvalidContainerReleaseException e) {
LOG.warn("Invalid container release by application " + appAttemptId, e);
throw e;
}
}
// Split Update Resource Requests into increase and decrease.
// No Exceptions are thrown here. All update errors are aggregated
// and returned to the AM.
List<UpdateContainerError> updateErrors = new ArrayList<>();
ContainerUpdates containerUpdateRequests = RMServerUtils.validateAndSplitUpdateResourceRequests(rmContext, request, maximumCapacity, updateErrors);
// Send new requests to appAttempt.
Allocation allocation;
RMAppAttemptState state = app.getRMAppAttempt(appAttemptId).getAppAttemptState();
if (state.equals(RMAppAttemptState.FINAL_SAVING) || state.equals(RMAppAttemptState.FINISHING) || app.isAppFinalStateStored()) {
LOG.warn(appAttemptId + " is in " + state + " state, ignore container allocate request.");
allocation = EMPTY_ALLOCATION;
} else {
allocation = this.rScheduler.allocate(appAttemptId, ask, release, blacklistAdditions, blacklistRemovals, containerUpdateRequests);
}
if (!blacklistAdditions.isEmpty() || !blacklistRemovals.isEmpty()) {
LOG.info("blacklist are updated in Scheduler." + "blacklistAdditions: " + blacklistAdditions + ", " + "blacklistRemovals: " + blacklistRemovals);
}
RMAppAttempt appAttempt = app.getRMAppAttempt(appAttemptId);
if (allocation.getNMTokens() != null && !allocation.getNMTokens().isEmpty()) {
allocateResponse.setNMTokens(allocation.getNMTokens());
}
// Notify the AM of container update errors
addToUpdateContainerErrors(allocateResponse, updateErrors);
// update the response with the deltas of node status changes
List<RMNode> updatedNodes = new ArrayList<RMNode>();
if (app.pullRMNodeUpdates(updatedNodes) > 0) {
List<NodeReport> updatedNodeReports = new ArrayList<NodeReport>();
for (RMNode rmNode : updatedNodes) {
SchedulerNodeReport schedulerNodeReport = rScheduler.getNodeReport(rmNode.getNodeID());
Resource used = BuilderUtils.newResource(0, 0);
int numContainers = 0;
if (schedulerNodeReport != null) {
used = schedulerNodeReport.getUsedResource();
numContainers = schedulerNodeReport.getNumContainers();
}
NodeId nodeId = rmNode.getNodeID();
NodeReport report = BuilderUtils.newNodeReport(nodeId, rmNode.getState(), rmNode.getHttpAddress(), rmNode.getRackName(), used, rmNode.getTotalCapability(), numContainers, rmNode.getHealthReport(), rmNode.getLastHealthReportTime(), rmNode.getNodeLabels());
updatedNodeReports.add(report);
}
allocateResponse.setUpdatedNodes(updatedNodeReports);
}
addToAllocatedContainers(allocateResponse, allocation.getContainers());
allocateResponse.setCompletedContainersStatuses(appAttempt.pullJustFinishedContainers());
allocateResponse.setAvailableResources(allocation.getResourceLimit());
addToContainerUpdates(appAttemptId, allocateResponse, allocation);
allocateResponse.setNumClusterNodes(this.rScheduler.getNumClusterNodes());
// add collector address for this application
if (YarnConfiguration.timelineServiceV2Enabled(getConfig())) {
allocateResponse.setCollectorAddr(this.rmContext.getRMApps().get(appAttemptId.getApplicationId()).getCollectorAddr());
}
// add preemption to the allocateResponse message (if any)
allocateResponse.setPreemptionMessage(generatePreemptionMessage(allocation));
// Set application priority
allocateResponse.setApplicationPriority(app.getApplicationPriority());
}
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