mirror of https://github.com/k3s-io/k3s
295 lines
11 KiB
Go
295 lines
11 KiB
Go
/*
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Copyright 2014 The Kubernetes Authors.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package scheduler
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import (
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"time"
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"k8s.io/api/core/v1"
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metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
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"k8s.io/apimachinery/pkg/util/runtime"
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"k8s.io/apimachinery/pkg/util/sets"
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"k8s.io/apimachinery/pkg/util/wait"
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clientset "k8s.io/client-go/kubernetes"
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corelisters "k8s.io/client-go/listers/core/v1"
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"k8s.io/client-go/tools/cache"
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"k8s.io/client-go/tools/record"
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"k8s.io/kubernetes/pkg/api"
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"k8s.io/kubernetes/plugin/pkg/scheduler/algorithm"
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schedulerapi "k8s.io/kubernetes/plugin/pkg/scheduler/api"
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"k8s.io/kubernetes/plugin/pkg/scheduler/core"
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"k8s.io/kubernetes/plugin/pkg/scheduler/metrics"
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"k8s.io/kubernetes/plugin/pkg/scheduler/schedulercache"
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"k8s.io/kubernetes/plugin/pkg/scheduler/util"
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"github.com/golang/glog"
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)
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// Binder knows how to write a binding.
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type Binder interface {
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Bind(binding *v1.Binding) error
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}
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// PodConditionUpdater updates the condition of a pod based on the passed
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// PodCondition
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type PodConditionUpdater interface {
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Update(pod *v1.Pod, podCondition *v1.PodCondition) error
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}
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// Scheduler watches for new unscheduled pods. It attempts to find
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// nodes that they fit on and writes bindings back to the api server.
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type Scheduler struct {
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config *Config
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}
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// StopEverything closes the scheduler config's StopEverything channel, to shut
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// down the Scheduler.
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func (sched *Scheduler) StopEverything() {
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close(sched.config.StopEverything)
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}
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// Configurator defines I/O, caching, and other functionality needed to
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// construct a new scheduler. An implementation of this can be seen in
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// factory.go.
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type Configurator interface {
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GetPriorityFunctionConfigs(priorityKeys sets.String) ([]algorithm.PriorityConfig, error)
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GetPriorityMetadataProducer() (algorithm.MetadataProducer, error)
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GetPredicateMetadataProducer() (algorithm.MetadataProducer, error)
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GetPredicates(predicateKeys sets.String) (map[string]algorithm.FitPredicate, error)
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GetHardPodAffinitySymmetricWeight() int
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GetSchedulerName() string
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MakeDefaultErrorFunc(backoff *util.PodBackoff, podQueue *cache.FIFO) func(pod *v1.Pod, err error)
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// Probably doesn't need to be public. But exposed for now in case.
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ResponsibleForPod(pod *v1.Pod) bool
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// Needs to be exposed for things like integration tests where we want to make fake nodes.
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GetNodeLister() corelisters.NodeLister
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GetClient() clientset.Interface
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GetScheduledPodLister() corelisters.PodLister
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Create() (*Config, error)
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CreateFromProvider(providerName string) (*Config, error)
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CreateFromConfig(policy schedulerapi.Policy) (*Config, error)
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CreateFromKeys(predicateKeys, priorityKeys sets.String, extenders []algorithm.SchedulerExtender) (*Config, error)
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}
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// Config is an implementation of the Scheduler's configured input data.
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// TODO over time we should make this struct a hidden implementation detail of the scheduler.
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type Config struct {
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// It is expected that changes made via SchedulerCache will be observed
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// by NodeLister and Algorithm.
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SchedulerCache schedulercache.Cache
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// Ecache is used for optimistically invalid affected cache items after
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// successfully binding a pod
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Ecache *core.EquivalenceCache
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NodeLister algorithm.NodeLister
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Algorithm algorithm.ScheduleAlgorithm
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Binder Binder
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// PodConditionUpdater is used only in case of scheduling errors. If we succeed
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// with scheduling, PodScheduled condition will be updated in apiserver in /bind
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// handler so that binding and setting PodCondition it is atomic.
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PodConditionUpdater PodConditionUpdater
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// NextPod should be a function that blocks until the next pod
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// is available. We don't use a channel for this, because scheduling
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// a pod may take some amount of time and we don't want pods to get
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// stale while they sit in a channel.
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NextPod func() *v1.Pod
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// WaitForCacheSync waits for scheduler cache to populate.
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// It returns true if it was successful, false if the controller should shutdown.
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WaitForCacheSync func() bool
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// Error is called if there is an error. It is passed the pod in
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// question, and the error
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Error func(*v1.Pod, error)
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// Recorder is the EventRecorder to use
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Recorder record.EventRecorder
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// Close this to shut down the scheduler.
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StopEverything chan struct{}
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}
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// NewFromConfigurator returns a new scheduler that is created entirely by the Configurator. Assumes Create() is implemented.
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// Supports intermediate Config mutation for now if you provide modifier functions which will run after Config is created.
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func NewFromConfigurator(c Configurator, modifiers ...func(c *Config)) (*Scheduler, error) {
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cfg, err := c.Create()
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if err != nil {
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return nil, err
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}
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// Mutate it if any functions were provided, changes might be required for certain types of tests (i.e. change the recorder).
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for _, modifier := range modifiers {
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modifier(cfg)
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}
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// From this point on the config is immutable to the outside.
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s := &Scheduler{
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config: cfg,
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}
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metrics.Register()
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return s, nil
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}
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// Run begins watching and scheduling. It waits for cache to be synced, then starts a goroutine and returns immediately.
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func (sched *Scheduler) Run() {
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if !sched.config.WaitForCacheSync() {
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return
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}
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go wait.Until(sched.scheduleOne, 0, sched.config.StopEverything)
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}
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// Config return scheduler's config pointer. It is exposed for testing purposes.
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func (sched *Scheduler) Config() *Config {
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return sched.config
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}
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// schedule implements the scheduling algorithm and returns the suggested host.
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func (sched *Scheduler) schedule(pod *v1.Pod) (string, error) {
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host, err := sched.config.Algorithm.Schedule(pod, sched.config.NodeLister)
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if err != nil {
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glog.V(1).Infof("Failed to schedule pod: %v/%v", pod.Namespace, pod.Name)
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copied, cerr := api.Scheme.Copy(pod)
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if cerr != nil {
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runtime.HandleError(err)
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return "", err
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}
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pod = copied.(*v1.Pod)
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sched.config.Error(pod, err)
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sched.config.Recorder.Eventf(pod, v1.EventTypeWarning, "FailedScheduling", "%v", err)
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sched.config.PodConditionUpdater.Update(pod, &v1.PodCondition{
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Type: v1.PodScheduled,
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Status: v1.ConditionFalse,
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Reason: v1.PodReasonUnschedulable,
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Message: err.Error(),
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})
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return "", err
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}
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return host, err
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}
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// assume signals to the cache that a pod is already in the cache, so that binding can be asnychronous.
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// assume modifies `assumed`.
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func (sched *Scheduler) assume(assumed *v1.Pod, host string) error {
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// Optimistically assume that the binding will succeed and send it to apiserver
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// in the background.
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// If the binding fails, scheduler will release resources allocated to assumed pod
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// immediately.
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assumed.Spec.NodeName = host
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if err := sched.config.SchedulerCache.AssumePod(assumed); err != nil {
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glog.Errorf("scheduler cache AssumePod failed: %v", err)
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// This is most probably result of a BUG in retrying logic.
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// We report an error here so that pod scheduling can be retried.
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// This relies on the fact that Error will check if the pod has been bound
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// to a node and if so will not add it back to the unscheduled pods queue
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// (otherwise this would cause an infinite loop).
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sched.config.Error(assumed, err)
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sched.config.Recorder.Eventf(assumed, v1.EventTypeWarning, "FailedScheduling", "AssumePod failed: %v", err)
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sched.config.PodConditionUpdater.Update(assumed, &v1.PodCondition{
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Type: v1.PodScheduled,
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Status: v1.ConditionFalse,
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Reason: "SchedulerError",
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Message: err.Error(),
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})
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return err
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}
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// Optimistically assume that the binding will succeed, so we need to invalidate affected
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// predicates in equivalence cache.
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// If the binding fails, these invalidated item will not break anything.
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if sched.config.Ecache != nil {
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sched.config.Ecache.InvalidateCachedPredicateItemForPodAdd(assumed, host)
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}
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return nil
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}
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// bind binds a pod to a given node defined in a binding object. We expect this to run asynchronously, so we
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// handle binding metrics internally.
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func (sched *Scheduler) bind(assumed *v1.Pod, b *v1.Binding) error {
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bindingStart := time.Now()
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// If binding succeeded then PodScheduled condition will be updated in apiserver so that
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// it's atomic with setting host.
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err := sched.config.Binder.Bind(b)
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if err := sched.config.SchedulerCache.FinishBinding(assumed); err != nil {
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glog.Errorf("scheduler cache FinishBinding failed: %v", err)
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}
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if err != nil {
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glog.V(1).Infof("Failed to bind pod: %v/%v", assumed.Namespace, assumed.Name)
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if err := sched.config.SchedulerCache.ForgetPod(assumed); err != nil {
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glog.Errorf("scheduler cache ForgetPod failed: %v", err)
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}
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sched.config.Error(assumed, err)
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sched.config.Recorder.Eventf(assumed, v1.EventTypeWarning, "FailedScheduling", "Binding rejected: %v", err)
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sched.config.PodConditionUpdater.Update(assumed, &v1.PodCondition{
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Type: v1.PodScheduled,
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Status: v1.ConditionFalse,
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Reason: "BindingRejected",
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})
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return err
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}
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metrics.BindingLatency.Observe(metrics.SinceInMicroseconds(bindingStart))
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sched.config.Recorder.Eventf(assumed, v1.EventTypeNormal, "Scheduled", "Successfully assigned %v to %v", assumed.Name, b.Target.Name)
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return nil
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}
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// scheduleOne does the entire scheduling workflow for a single pod. It is serialized on the scheduling algorithm's host fitting.
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func (sched *Scheduler) scheduleOne() {
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pod := sched.config.NextPod()
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if pod.DeletionTimestamp != nil {
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sched.config.Recorder.Eventf(pod, v1.EventTypeWarning, "FailedScheduling", "skip schedule deleting pod: %v/%v", pod.Namespace, pod.Name)
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glog.V(3).Infof("Skip schedule deleting pod: %v/%v", pod.Namespace, pod.Name)
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return
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}
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glog.V(3).Infof("Attempting to schedule pod: %v/%v", pod.Namespace, pod.Name)
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// Synchronously attempt to find a fit for the pod.
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start := time.Now()
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suggestedHost, err := sched.schedule(pod)
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metrics.SchedulingAlgorithmLatency.Observe(metrics.SinceInMicroseconds(start))
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if err != nil {
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return
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}
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// Tell the cache to assume that a pod now is running on a given node, even though it hasn't been bound yet.
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// This allows us to keep scheduling without waiting on binding to occur.
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assumedPod := *pod
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// assume modifies `assumedPod` by setting NodeName=suggestedHost
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err = sched.assume(&assumedPod, suggestedHost)
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if err != nil {
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return
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}
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// bind the pod to its host asynchronously (we can do this b/c of the assumption step above).
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go func() {
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err := sched.bind(&assumedPod, &v1.Binding{
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ObjectMeta: metav1.ObjectMeta{Namespace: assumedPod.Namespace, Name: assumedPod.Name, UID: assumedPod.UID},
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Target: v1.ObjectReference{
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Kind: "Node",
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Name: suggestedHost,
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},
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})
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metrics.E2eSchedulingLatency.Observe(metrics.SinceInMicroseconds(start))
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if err != nil {
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glog.Errorf("Internal error binding pod: (%v)", err)
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}
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}()
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}
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