1 package at.ac.tuwien.lsdc.sched;
4 import java.io.IOException;
5 import java.util.Collections;
6 import java.util.LinkedList;
9 import org.slf4j.Logger;
10 import org.slf4j.LoggerFactory;
12 import at.ac.tuwien.lsdc.exception.ActiveApplicationsException;
13 import at.ac.tuwien.lsdc.exception.VMsRunningException;
14 import at.ac.tuwien.lsdc.types.Application;
15 import at.ac.tuwien.lsdc.types.ApplicationResourceComparator;
16 import at.ac.tuwien.lsdc.types.PhysicalMachine;
17 import at.ac.tuwien.lsdc.types.ScenarioType;
18 import at.ac.tuwien.lsdc.types.SchedulerEvent;
19 import at.ac.tuwien.lsdc.types.SchedulerType;
20 import at.ac.tuwien.lsdc.types.VirtualMachine;
21 import at.ac.tuwien.lsdc.types.VirtualMachine.VMType;
23 public class SchedulerA extends AbstractScheduler {
25 private static final Logger log = LoggerFactory.getLogger(SchedulerA.class);
27 public SchedulerA(int numPMs, int numCloudPartners, File schedulerLog, ScenarioType scenario)
29 super(numPMs, numCloudPartners, schedulerLog, scenario);
31 this.vmType = VMType.NonResizable;
35 protected void handleEndEvents(LinkedList<SchedulerEvent> events) {
36 for (SchedulerEvent evt : events) {
37 VirtualMachine vm = evt.getApp().getRunningOn();
38 vm.stopApplication(evt.getApp());
39 PhysicalMachine pm = vm.getRunningOn();
41 pm.stopVirtualMachine(vm);
42 if (pm.countCurrentlyRunningVMs() == 0) {
44 manager.stopPhysicalMachine(pm.getId());
45 } catch (VMsRunningException e) {
46 log.warn("PM " + pm.getId() + " could not be stopped, " + e.getMessage());
50 // log.info("application stopped at timestamp " + currTime + ", " + "vm "
51 // + vm.getPositionOnPM() + ", pm " + pm.getId());
52 } catch (ActiveApplicationsException e) {
53 log.warn("VM " + vm.getId() + "could not be stopped, " + e.getMessage());
59 protected void handleStartEvents(LinkedList<SchedulerEvent> events) {
60 // sorting applications by amount of resources (descending)
61 // List<Application> sortedApps = sortApps(events);
62 List<Application> apps = getApplications(events);
64 for (Application app : apps) {
65 boolean appDeployed = false;
67 if (manager.getPMs().size() == 0) {
68 PhysicalMachine pm = manager.startPhysicalMachine();
70 if (pm.checkVM(app.getSize(), app.getRam(), app.getCpu()))
71 appDeployed = startApp(pm, app);
74 // sorting physical machines by resource utilization (descending)
75 List<PhysicalMachine> revSortedPMs = manager.getRevSortedPMs();
77 for (PhysicalMachine pm : revSortedPMs) {
78 if (pm.checkVM(app.getSize(), app.getRam(), app.getCpu())) {
79 appDeployed = startApp(pm, app);
83 if (!appDeployed && (manager.getPMs().size() < manager.getMaxPMs())) {
84 PhysicalMachine pm = manager.startPhysicalMachine();
85 if (pm.checkVM(app.getSize(), app.getRam(), app.getCpu()))
86 appDeployed = startApp(pm, app);
90 if (federation.askToOutsource(app)) {
91 log.debug("OUTSOURCE !!!!!!!!!!!");
92 insertOutsourcedStartEvent(currTime + 1, app);
99 if(manager.countCurrentlyRunningPMs() < manager.getMaxPMs()) {
100 Application application = federation.askToInsource();
101 if(application != null) {
102 insertInsourcedStartEvent(currTime + 1, application);
109 private boolean startApp(PhysicalMachine pm, Application app) {
110 VirtualMachine vm = pm.startVirtualMachine(app.getSize(), app.getRam(),
111 app.getCpu(), vmType);
112 vm.startApplication(app);
113 insertStopEvent(currTime + app.getDuration(), app);
117 // sorting applications by amount of resources (descending)
118 private List<Application> sortApps(LinkedList<SchedulerEvent> events) {
119 List<Application> sortedApps = new LinkedList<Application>();
120 for (SchedulerEvent evt : events) {
121 sortedApps.add(evt.getApp());
123 Collections.sort(sortedApps, new ApplicationResourceComparator());
124 Collections.reverse(sortedApps);
128 public List<Application> getApplications(LinkedList<SchedulerEvent> events) {
129 List<Application> apps = new LinkedList<Application>();
130 for(SchedulerEvent evt: events) {
131 apps.add(evt.getApp());
137 protected String getSchedulerType() {
138 return SchedulerType.A.toString();