362 lines
9.4 KiB
Go
362 lines
9.4 KiB
Go
package main
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import (
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"flag"
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"fmt"
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"github.com/golang/protobuf/proto"
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mesos "github.com/mesos/mesos-go/mesosproto"
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"github.com/mesos/mesos-go/mesosutil"
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sched "github.com/mesos/mesos-go/scheduler"
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"log"
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"os"
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"time"
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"bitbucket.org/bingcloud/electron/pcp"
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"strings"
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)
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const (
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shutdownTimeout = time.Duration(30) * time.Second
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)
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var (
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defaultFilter = &mesos.Filters{RefuseSeconds: proto.Float64(1)}
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longFilter = &mesos.Filters{RefuseSeconds: proto.Float64(1000)}
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IGNORE_WATTS = false
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)
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func CoLocated(tasks map[string]bool) {
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for task := range tasks {
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log.Println(task)
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}
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fmt.Println("---------------------")
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}
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func OfferAgg(offer *mesos.Offer) (float64, float64, float64) {
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var cpus, mem, watts float64
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for _, resource := range offer.Resources {
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switch resource.GetName() {
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case "cpus":
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cpus += *resource.GetScalar().Value
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case "mem":
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mem += *resource.GetScalar().Value
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case "watts":
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watts += *resource.GetScalar().Value
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}
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}
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return cpus, mem, watts
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}
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// Decides if to take an offer or not
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func TakeOffer(offer *mesos.Offer, task Task) bool {
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cpus, mem, watts := OfferAgg(offer)
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//TODO: Insert watts calculation here instead of taking them as a parameter
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if cpus >= task.CPU && mem >= task.RAM && watts >= task.Watts {
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return true
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}
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return false
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}
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// electronScheduler implements the Scheduler interface
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type electronScheduler struct {
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tasksCreated int
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tasksRunning int
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tasks []Task
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metrics map[string]Metric
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running map[string]map[string]bool
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// First set of PCP values are garbage values, signal to logger to start recording when we're
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// about to schedule a new task
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recordPCP bool
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// This channel is closed when the program receives an interrupt,
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// signalling that the program should shut down.
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shutdown chan struct{}
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// This channel is closed after shutdown is closed, and only when all
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// outstanding tasks have been cleaned up
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done chan struct{}
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// Controls when to shutdown pcp logging
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pcpLog chan struct{}
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}
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// New electron scheduler
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func newElectronScheduler(tasks []Task) *electronScheduler {
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s := &electronScheduler{
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tasks: tasks,
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shutdown: make(chan struct{}),
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done: make(chan struct{}),
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pcpLog: make(chan struct{}),
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running: make(map[string]map[string]bool),
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recordPCP: false,
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}
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return s
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}
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func (s *electronScheduler) newTask(offer *mesos.Offer, task Task) *mesos.TaskInfo {
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taskName := fmt.Sprintf("%s-%d", task.Name, *task.Instances)
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s.tasksCreated++
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if !s.recordPCP {
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// Turn on logging
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s.recordPCP = true
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time.Sleep(1 * time.Second) // Make sure we're recording by the time the first task starts
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}
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// If this is our first time running into this Agent
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if _, ok := s.running[offer.GetSlaveId().GoString()]; !ok {
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s.running[offer.GetSlaveId().GoString()] = make(map[string]bool)
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}
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// Add task to list of tasks running on node
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s.running[offer.GetSlaveId().GoString()][taskName] = true
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resources := []*mesos.Resource{
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mesosutil.NewScalarResource("cpus", task.CPU),
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mesosutil.NewScalarResource("mem", task.RAM),
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}
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if(!IGNORE_WATTS) {
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resources = append(resources, mesosutil.NewScalarResource("watts", task.Watts))
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}
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return &mesos.TaskInfo{
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Name: proto.String(taskName),
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TaskId: &mesos.TaskID{
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Value: proto.String("electron-" + taskName),
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},
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SlaveId: offer.SlaveId,
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Resources: resources,
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Command: &mesos.CommandInfo{
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Value: proto.String(task.CMD),
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},
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Container: &mesos.ContainerInfo{
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Type: mesos.ContainerInfo_DOCKER.Enum(),
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Docker: &mesos.ContainerInfo_DockerInfo{
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Image: proto.String(task.Image),
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},
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},
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}
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}
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func (s *electronScheduler) Registered(
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_ sched.SchedulerDriver,
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frameworkID *mesos.FrameworkID,
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masterInfo *mesos.MasterInfo) {
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log.Printf("Framework %s registered with master %s", frameworkID, masterInfo)
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}
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func (s *electronScheduler) Reregistered(_ sched.SchedulerDriver, masterInfo *mesos.MasterInfo) {
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log.Printf("Framework re-registered with master %s", masterInfo)
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}
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func (s *electronScheduler) Disconnected(sched.SchedulerDriver) {
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log.Println("Framework disconnected with master")
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}
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func (s *electronScheduler) ResourceOffers(driver sched.SchedulerDriver, offers []*mesos.Offer) {
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log.Printf("Received %d resource offers", len(offers))
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for _, offer := range offers {
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select {
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case <-s.shutdown:
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log.Println("Shutting down: declining offer on [", offer.GetHostname(), "]")
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driver.DeclineOffer(offer.Id, longFilter)
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log.Println("Number of tasks still running: ", s.tasksRunning)
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continue
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default:
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}
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tasks := []*mesos.TaskInfo{}
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// First fit strategy
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taken := false
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for i, task := range s.tasks {
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// Check host if it exists
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if task.Host != "" {
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// Don't take offer if it doesn't match our task's host requirement
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if !strings.HasPrefix(*offer.Hostname, task.Host) {
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continue
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}
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}
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// Decision to take the offer or not
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if TakeOffer(offer, task) {
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log.Println("Co-Located with: ")
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CoLocated(s.running[offer.GetSlaveId().GoString()])
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tasks = append(tasks, s.newTask(offer, task))
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log.Printf("Starting %s on [%s]\n", task.Name, offer.GetHostname())
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driver.LaunchTasks([]*mesos.OfferID{offer.Id}, tasks, defaultFilter)
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taken = true
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fmt.Println("Inst: ", *task.Instances)
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*task.Instances--
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if *task.Instances <= 0 {
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// All instances of task have been scheduled, remove it
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s.tasks[i] = s.tasks[len(s.tasks)-1]
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s.tasks = s.tasks[:len(s.tasks)-1]
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if(len(s.tasks) <= 0) {
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log.Println("Done scheduling all tasks")
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close(s.shutdown)
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}
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}
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break // Offer taken, move on
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}
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}
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// If there was no match for the task
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if !taken {
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fmt.Println("There is not enough resources to launch a task:")
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cpus, mem, watts := OfferAgg(offer)
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log.Printf("<CPU: %f, RAM: %f, Watts: %f>\n", cpus, mem, watts)
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driver.DeclineOffer(offer.Id, defaultFilter)
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}
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}
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}
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func (s *electronScheduler) StatusUpdate(driver sched.SchedulerDriver, status *mesos.TaskStatus) {
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log.Printf("Received task status [%s] for task [%s]", NameFor(status.State), *status.TaskId.Value)
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if *status.State == mesos.TaskState_TASK_RUNNING {
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s.tasksRunning++
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} else if IsTerminal(status.State) {
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delete(s.running[status.GetSlaveId().GoString()],*status.TaskId.Value)
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s.tasksRunning--
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if s.tasksRunning == 0 {
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select {
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case <-s.shutdown:
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close(s.done)
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default:
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}
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}
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}
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log.Printf("DONE: Task status [%s] for task [%s]", NameFor(status.State), *status.TaskId.Value)
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}
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func (s *electronScheduler) FrameworkMessage(
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driver sched.SchedulerDriver,
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executorID *mesos.ExecutorID,
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slaveID *mesos.SlaveID,
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message string) {
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log.Println("Getting a framework message: ", message)
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log.Printf("Received a framework message from some unknown source: %s", *executorID.Value)
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}
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func (s *electronScheduler) OfferRescinded(_ sched.SchedulerDriver, offerID *mesos.OfferID) {
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log.Printf("Offer %s rescinded", offerID)
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}
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func (s *electronScheduler) SlaveLost(_ sched.SchedulerDriver, slaveID *mesos.SlaveID) {
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log.Printf("Slave %s lost", slaveID)
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}
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func (s *electronScheduler) ExecutorLost(_ sched.SchedulerDriver, executorID *mesos.ExecutorID, slaveID *mesos.SlaveID, status int) {
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log.Printf("Executor %s on slave %s was lost", executorID, slaveID)
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}
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func (s *electronScheduler) Error(_ sched.SchedulerDriver, err string) {
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log.Printf("Receiving an error: %s", err)
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}
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var master = flag.String("master", "xavier:5050", "Location of leading Mesos master")
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var tasksFile = flag.String("workload", "", "JSON file containing task definitions")
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var ignoreWatts = flag.Bool("ignoreWatts", false, "Ignore watts in offers")
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var pcplogPrefix = flag.String("logPrefix", "", "Prefix for pcplog")
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// Short hand args
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func init(){
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flag.StringVar(master, "m", "xavier:5050", "Location of leading Mesos master (shorthand)")
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flag.StringVar(tasksFile, "w", "", "JSON file containing task definitions (shorthand)")
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flag.BoolVar(ignoreWatts, "i", false, "Ignore watts in offers (shorthand)")
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flag.StringVar(pcplogPrefix, "p", "", "Prefix for pcplog")
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}
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func main() {
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flag.Parse()
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IGNORE_WATTS = *ignoreWatts
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if *tasksFile == "" {
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fmt.Println("No file containing tasks specifiction provided.")
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os.Exit(1)
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}
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tasks, err := TasksFromJSON(*tasksFile)
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if(err != nil || len(tasks) == 0) {
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fmt.Println("Invalid tasks specification file provided")
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os.Exit(1)
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}
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log.Println("Scheduling the following tasks:")
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for _, task := range tasks {
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fmt.Println(task)
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}
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scheduler := newElectronScheduler(tasks)
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driver, err := sched.NewMesosSchedulerDriver(sched.DriverConfig{
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Master: *master,
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Framework: &mesos.FrameworkInfo{
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Name: proto.String("Electron"),
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User: proto.String(""),
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},
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Scheduler: scheduler,
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})
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if err != nil {
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log.Printf("Unable to create scheduler driver: %s", err)
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return
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}
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go pcp.Start(scheduler.pcpLog, &scheduler.recordPCP, *pcplogPrefix)
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time.Sleep(1 * time.Second)
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// Catch interrupt
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go func() {
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// Signals we have scheduled every task we have
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select {
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case <-scheduler.shutdown:
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// case <-time.After(shutdownTimeout):
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}
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// Signals all tasks have finished
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select {
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case <-scheduler.done:
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close(scheduler.pcpLog)
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time.Sleep(5 * time.Second) //Wait for PCP to log a few more seconds
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// case <-time.After(shutdownTimeout):
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}
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// Done shutting down
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driver.Stop(false)
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}()
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log.Printf("Starting...")
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if status, err := driver.Run(); err != nil {
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log.Printf("Framework stopped with status %s and error: %s\n", status.String(), err.Error())
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}
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log.Println("Exiting...")
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}
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