mirror of
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509 lines
17 KiB
Go
509 lines
17 KiB
Go
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/*
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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 config
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import (
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"fmt"
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"reflect"
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"sync"
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"github.com/golang/glog"
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"k8s.io/api/core/v1"
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"k8s.io/apimachinery/pkg/types"
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"k8s.io/apimachinery/pkg/util/sets"
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"k8s.io/client-go/tools/record"
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"k8s.io/kubernetes/pkg/kubelet/checkpoint"
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kubecontainer "k8s.io/kubernetes/pkg/kubelet/container"
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"k8s.io/kubernetes/pkg/kubelet/events"
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kubetypes "k8s.io/kubernetes/pkg/kubelet/types"
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"k8s.io/kubernetes/pkg/kubelet/util/format"
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"k8s.io/kubernetes/pkg/util/config"
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)
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// PodConfigNotificationMode describes how changes are sent to the update channel.
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type PodConfigNotificationMode int
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const (
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// PodConfigNotificationUnknown is the default value for
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// PodConfigNotificationMode when uninitialized.
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PodConfigNotificationUnknown = iota
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// PodConfigNotificationSnapshot delivers the full configuration as a SET whenever
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// any change occurs.
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PodConfigNotificationSnapshot
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// PodConfigNotificationSnapshotAndUpdates delivers an UPDATE and DELETE message whenever pods are
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// changed, and a SET message if there are any additions or removals.
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PodConfigNotificationSnapshotAndUpdates
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// PodConfigNotificationIncremental delivers ADD, UPDATE, DELETE, REMOVE, RECONCILE to the update channel.
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PodConfigNotificationIncremental
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)
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// PodConfig is a configuration mux that merges many sources of pod configuration into a single
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// consistent structure, and then delivers incremental change notifications to listeners
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// in order.
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type PodConfig struct {
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pods *podStorage
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mux *config.Mux
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// the channel of denormalized changes passed to listeners
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updates chan kubetypes.PodUpdate
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// contains the list of all configured sources
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sourcesLock sync.Mutex
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sources sets.String
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checkpointManager checkpoint.Manager
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}
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// NewPodConfig creates an object that can merge many configuration sources into a stream
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// of normalized updates to a pod configuration.
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func NewPodConfig(mode PodConfigNotificationMode, recorder record.EventRecorder) *PodConfig {
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updates := make(chan kubetypes.PodUpdate, 50)
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storage := newPodStorage(updates, mode, recorder)
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podConfig := &PodConfig{
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pods: storage,
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mux: config.NewMux(storage),
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updates: updates,
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sources: sets.String{},
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}
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return podConfig
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}
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// Channel creates or returns a config source channel. The channel
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// only accepts PodUpdates
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func (c *PodConfig) Channel(source string) chan<- interface{} {
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c.sourcesLock.Lock()
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defer c.sourcesLock.Unlock()
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c.sources.Insert(source)
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return c.mux.Channel(source)
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}
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// SeenAllSources returns true if seenSources contains all sources in the
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// config, and also this config has received a SET message from each source.
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func (c *PodConfig) SeenAllSources(seenSources sets.String) bool {
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if c.pods == nil {
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return false
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}
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glog.V(6).Infof("Looking for %v, have seen %v", c.sources.List(), seenSources)
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return seenSources.HasAll(c.sources.List()...) && c.pods.seenSources(c.sources.List()...)
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}
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// Updates returns a channel of updates to the configuration, properly denormalized.
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func (c *PodConfig) Updates() <-chan kubetypes.PodUpdate {
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return c.updates
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}
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// Sync requests the full configuration be delivered to the update channel.
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func (c *PodConfig) Sync() {
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c.pods.Sync()
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}
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// Restore restores pods from the checkpoint path, *once*
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func (c *PodConfig) Restore(path string, updates chan<- interface{}) error {
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var err error
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if c.checkpointManager == nil {
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c.checkpointManager = checkpoint.NewCheckpointManager(path)
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pods, err := c.checkpointManager.LoadPods()
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if err == nil {
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updates <- kubetypes.PodUpdate{Pods: pods, Op: kubetypes.RESTORE, Source: kubetypes.ApiserverSource}
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}
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}
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return err
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}
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// podStorage manages the current pod state at any point in time and ensures updates
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// to the channel are delivered in order. Note that this object is an in-memory source of
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// "truth" and on creation contains zero entries. Once all previously read sources are
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// available, then this object should be considered authoritative.
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type podStorage struct {
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podLock sync.RWMutex
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// map of source name to pod uid to pod reference
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pods map[string]map[types.UID]*v1.Pod
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mode PodConfigNotificationMode
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// ensures that updates are delivered in strict order
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// on the updates channel
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updateLock sync.Mutex
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updates chan<- kubetypes.PodUpdate
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// contains the set of all sources that have sent at least one SET
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sourcesSeenLock sync.RWMutex
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sourcesSeen sets.String
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// the EventRecorder to use
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recorder record.EventRecorder
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}
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// TODO: PodConfigNotificationMode could be handled by a listener to the updates channel
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// in the future, especially with multiple listeners.
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// TODO: allow initialization of the current state of the store with snapshotted version.
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func newPodStorage(updates chan<- kubetypes.PodUpdate, mode PodConfigNotificationMode, recorder record.EventRecorder) *podStorage {
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return &podStorage{
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pods: make(map[string]map[types.UID]*v1.Pod),
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mode: mode,
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updates: updates,
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sourcesSeen: sets.String{},
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recorder: recorder,
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}
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}
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// Merge normalizes a set of incoming changes from different sources into a map of all Pods
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// and ensures that redundant changes are filtered out, and then pushes zero or more minimal
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// updates onto the update channel. Ensures that updates are delivered in order.
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func (s *podStorage) Merge(source string, change interface{}) error {
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s.updateLock.Lock()
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defer s.updateLock.Unlock()
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seenBefore := s.sourcesSeen.Has(source)
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adds, updates, deletes, removes, reconciles, restores := s.merge(source, change)
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firstSet := !seenBefore && s.sourcesSeen.Has(source)
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// deliver update notifications
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switch s.mode {
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case PodConfigNotificationIncremental:
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if len(removes.Pods) > 0 {
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s.updates <- *removes
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}
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if len(adds.Pods) > 0 {
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s.updates <- *adds
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}
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if len(updates.Pods) > 0 {
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s.updates <- *updates
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}
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if len(deletes.Pods) > 0 {
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s.updates <- *deletes
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}
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if len(restores.Pods) > 0 {
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s.updates <- *restores
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}
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if firstSet && len(adds.Pods) == 0 && len(updates.Pods) == 0 && len(deletes.Pods) == 0 {
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// Send an empty update when first seeing the source and there are
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// no ADD or UPDATE or DELETE pods from the source. This signals kubelet that
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// the source is ready.
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s.updates <- *adds
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}
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// Only add reconcile support here, because kubelet doesn't support Snapshot update now.
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if len(reconciles.Pods) > 0 {
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s.updates <- *reconciles
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}
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case PodConfigNotificationSnapshotAndUpdates:
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if len(removes.Pods) > 0 || len(adds.Pods) > 0 || firstSet {
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s.updates <- kubetypes.PodUpdate{Pods: s.MergedState().([]*v1.Pod), Op: kubetypes.SET, Source: source}
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}
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if len(updates.Pods) > 0 {
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s.updates <- *updates
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}
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if len(deletes.Pods) > 0 {
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s.updates <- *deletes
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}
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case PodConfigNotificationSnapshot:
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if len(updates.Pods) > 0 || len(deletes.Pods) > 0 || len(adds.Pods) > 0 || len(removes.Pods) > 0 || firstSet {
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s.updates <- kubetypes.PodUpdate{Pods: s.MergedState().([]*v1.Pod), Op: kubetypes.SET, Source: source}
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}
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case PodConfigNotificationUnknown:
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fallthrough
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default:
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panic(fmt.Sprintf("unsupported PodConfigNotificationMode: %#v", s.mode))
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}
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return nil
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}
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func (s *podStorage) merge(source string, change interface{}) (adds, updates, deletes, removes, reconciles, restores *kubetypes.PodUpdate) {
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s.podLock.Lock()
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defer s.podLock.Unlock()
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addPods := []*v1.Pod{}
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updatePods := []*v1.Pod{}
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deletePods := []*v1.Pod{}
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removePods := []*v1.Pod{}
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reconcilePods := []*v1.Pod{}
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restorePods := []*v1.Pod{}
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pods := s.pods[source]
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if pods == nil {
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pods = make(map[types.UID]*v1.Pod)
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}
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// updatePodFunc is the local function which updates the pod cache *oldPods* with new pods *newPods*.
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// After updated, new pod will be stored in the pod cache *pods*.
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// Notice that *pods* and *oldPods* could be the same cache.
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updatePodsFunc := func(newPods []*v1.Pod, oldPods, pods map[types.UID]*v1.Pod) {
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filtered := filterInvalidPods(newPods, source, s.recorder)
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for _, ref := range filtered {
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// Annotate the pod with the source before any comparison.
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if ref.Annotations == nil {
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ref.Annotations = make(map[string]string)
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}
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ref.Annotations[kubetypes.ConfigSourceAnnotationKey] = source
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if existing, found := oldPods[ref.UID]; found {
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pods[ref.UID] = existing
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needUpdate, needReconcile, needGracefulDelete := checkAndUpdatePod(existing, ref)
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if needUpdate {
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updatePods = append(updatePods, existing)
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} else if needReconcile {
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reconcilePods = append(reconcilePods, existing)
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} else if needGracefulDelete {
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deletePods = append(deletePods, existing)
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}
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continue
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}
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recordFirstSeenTime(ref)
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pods[ref.UID] = ref
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addPods = append(addPods, ref)
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}
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}
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update := change.(kubetypes.PodUpdate)
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switch update.Op {
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case kubetypes.ADD, kubetypes.UPDATE, kubetypes.DELETE:
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if update.Op == kubetypes.ADD {
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glog.V(4).Infof("Adding new pods from source %s : %v", source, update.Pods)
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} else if update.Op == kubetypes.DELETE {
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glog.V(4).Infof("Graceful deleting pods from source %s : %v", source, update.Pods)
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} else {
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glog.V(4).Infof("Updating pods from source %s : %v", source, update.Pods)
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}
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updatePodsFunc(update.Pods, pods, pods)
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case kubetypes.REMOVE:
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glog.V(4).Infof("Removing pods from source %s : %v", source, update.Pods)
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for _, value := range update.Pods {
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if existing, found := pods[value.UID]; found {
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// this is a delete
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delete(pods, value.UID)
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removePods = append(removePods, existing)
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continue
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}
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// this is a no-op
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}
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case kubetypes.SET:
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glog.V(4).Infof("Setting pods for source %s", source)
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s.markSourceSet(source)
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// Clear the old map entries by just creating a new map
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oldPods := pods
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pods = make(map[types.UID]*v1.Pod)
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updatePodsFunc(update.Pods, oldPods, pods)
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for uid, existing := range oldPods {
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if _, found := pods[uid]; !found {
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// this is a delete
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removePods = append(removePods, existing)
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}
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}
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case kubetypes.RESTORE:
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glog.V(4).Infof("Restoring pods for source %s", source)
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default:
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glog.Warningf("Received invalid update type: %v", update)
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}
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s.pods[source] = pods
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adds = &kubetypes.PodUpdate{Op: kubetypes.ADD, Pods: copyPods(addPods), Source: source}
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updates = &kubetypes.PodUpdate{Op: kubetypes.UPDATE, Pods: copyPods(updatePods), Source: source}
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deletes = &kubetypes.PodUpdate{Op: kubetypes.DELETE, Pods: copyPods(deletePods), Source: source}
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removes = &kubetypes.PodUpdate{Op: kubetypes.REMOVE, Pods: copyPods(removePods), Source: source}
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reconciles = &kubetypes.PodUpdate{Op: kubetypes.RECONCILE, Pods: copyPods(reconcilePods), Source: source}
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restores = &kubetypes.PodUpdate{Op: kubetypes.RESTORE, Pods: copyPods(restorePods), Source: source}
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return adds, updates, deletes, removes, reconciles, restores
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}
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func (s *podStorage) markSourceSet(source string) {
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s.sourcesSeenLock.Lock()
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defer s.sourcesSeenLock.Unlock()
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s.sourcesSeen.Insert(source)
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}
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func (s *podStorage) seenSources(sources ...string) bool {
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s.sourcesSeenLock.RLock()
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defer s.sourcesSeenLock.RUnlock()
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return s.sourcesSeen.HasAll(sources...)
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}
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func filterInvalidPods(pods []*v1.Pod, source string, recorder record.EventRecorder) (filtered []*v1.Pod) {
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names := sets.String{}
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for i, pod := range pods {
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// Pods from each source are assumed to have passed validation individually.
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// This function only checks if there is any naming conflict.
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name := kubecontainer.GetPodFullName(pod)
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if names.Has(name) {
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glog.Warningf("Pod[%d] (%s) from %s failed validation due to duplicate pod name %q, ignoring", i+1, format.Pod(pod), source, pod.Name)
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recorder.Eventf(pod, v1.EventTypeWarning, events.FailedValidation, "Error validating pod %s from %s due to duplicate pod name %q, ignoring", format.Pod(pod), source, pod.Name)
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continue
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} else {
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names.Insert(name)
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}
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filtered = append(filtered, pod)
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}
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return
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}
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// Annotations that the kubelet adds to the pod.
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var localAnnotations = []string{
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kubetypes.ConfigSourceAnnotationKey,
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kubetypes.ConfigMirrorAnnotationKey,
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kubetypes.ConfigFirstSeenAnnotationKey,
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}
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func isLocalAnnotationKey(key string) bool {
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for _, localKey := range localAnnotations {
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if key == localKey {
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return true
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}
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}
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return false
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}
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// isAnnotationMapEqual returns true if the existing annotation Map is equal to candidate except
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// for local annotations.
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func isAnnotationMapEqual(existingMap, candidateMap map[string]string) bool {
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if candidateMap == nil {
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candidateMap = make(map[string]string)
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}
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for k, v := range candidateMap {
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if isLocalAnnotationKey(k) {
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continue
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}
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if existingValue, ok := existingMap[k]; ok && existingValue == v {
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continue
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}
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return false
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}
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for k := range existingMap {
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if isLocalAnnotationKey(k) {
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continue
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}
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// stale entry in existing map.
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if _, exists := candidateMap[k]; !exists {
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return false
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}
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}
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return true
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}
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// recordFirstSeenTime records the first seen time of this pod.
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func recordFirstSeenTime(pod *v1.Pod) {
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|
glog.V(4).Infof("Receiving a new pod %q", format.Pod(pod))
|
||
|
pod.Annotations[kubetypes.ConfigFirstSeenAnnotationKey] = kubetypes.NewTimestamp().GetString()
|
||
|
}
|
||
|
|
||
|
// updateAnnotations returns an Annotation map containing the api annotation map plus
|
||
|
// locally managed annotations
|
||
|
func updateAnnotations(existing, ref *v1.Pod) {
|
||
|
annotations := make(map[string]string, len(ref.Annotations)+len(localAnnotations))
|
||
|
for k, v := range ref.Annotations {
|
||
|
annotations[k] = v
|
||
|
}
|
||
|
for _, k := range localAnnotations {
|
||
|
if v, ok := existing.Annotations[k]; ok {
|
||
|
annotations[k] = v
|
||
|
}
|
||
|
}
|
||
|
existing.Annotations = annotations
|
||
|
}
|
||
|
|
||
|
func podsDifferSemantically(existing, ref *v1.Pod) bool {
|
||
|
if reflect.DeepEqual(existing.Spec, ref.Spec) &&
|
||
|
reflect.DeepEqual(existing.Labels, ref.Labels) &&
|
||
|
reflect.DeepEqual(existing.DeletionTimestamp, ref.DeletionTimestamp) &&
|
||
|
reflect.DeepEqual(existing.DeletionGracePeriodSeconds, ref.DeletionGracePeriodSeconds) &&
|
||
|
isAnnotationMapEqual(existing.Annotations, ref.Annotations) {
|
||
|
return false
|
||
|
}
|
||
|
return true
|
||
|
}
|
||
|
|
||
|
// checkAndUpdatePod updates existing, and:
|
||
|
// * if ref makes a meaningful change, returns needUpdate=true
|
||
|
// * if ref makes a meaningful change, and this change is graceful deletion, returns needGracefulDelete=true
|
||
|
// * if ref makes no meaningful change, but changes the pod status, returns needReconcile=true
|
||
|
// * else return all false
|
||
|
// Now, needUpdate, needGracefulDelete and needReconcile should never be both true
|
||
|
func checkAndUpdatePod(existing, ref *v1.Pod) (needUpdate, needReconcile, needGracefulDelete bool) {
|
||
|
|
||
|
// 1. this is a reconcile
|
||
|
// TODO: it would be better to update the whole object and only preserve certain things
|
||
|
// like the source annotation or the UID (to ensure safety)
|
||
|
if !podsDifferSemantically(existing, ref) {
|
||
|
// this is not an update
|
||
|
// Only check reconcile when it is not an update, because if the pod is going to
|
||
|
// be updated, an extra reconcile is unnecessary
|
||
|
if !reflect.DeepEqual(existing.Status, ref.Status) {
|
||
|
// Pod with changed pod status needs reconcile, because kubelet should
|
||
|
// be the source of truth of pod status.
|
||
|
existing.Status = ref.Status
|
||
|
needReconcile = true
|
||
|
}
|
||
|
return
|
||
|
}
|
||
|
|
||
|
// Overwrite the first-seen time with the existing one. This is our own
|
||
|
// internal annotation, there is no need to update.
|
||
|
ref.Annotations[kubetypes.ConfigFirstSeenAnnotationKey] = existing.Annotations[kubetypes.ConfigFirstSeenAnnotationKey]
|
||
|
|
||
|
existing.Spec = ref.Spec
|
||
|
existing.Labels = ref.Labels
|
||
|
existing.DeletionTimestamp = ref.DeletionTimestamp
|
||
|
existing.DeletionGracePeriodSeconds = ref.DeletionGracePeriodSeconds
|
||
|
existing.Status = ref.Status
|
||
|
updateAnnotations(existing, ref)
|
||
|
|
||
|
// 2. this is an graceful delete
|
||
|
if ref.DeletionTimestamp != nil {
|
||
|
needGracefulDelete = true
|
||
|
} else {
|
||
|
// 3. this is an update
|
||
|
needUpdate = true
|
||
|
}
|
||
|
|
||
|
return
|
||
|
}
|
||
|
|
||
|
// Sync sends a copy of the current state through the update channel.
|
||
|
func (s *podStorage) Sync() {
|
||
|
s.updateLock.Lock()
|
||
|
defer s.updateLock.Unlock()
|
||
|
s.updates <- kubetypes.PodUpdate{Pods: s.MergedState().([]*v1.Pod), Op: kubetypes.SET, Source: kubetypes.AllSource}
|
||
|
}
|
||
|
|
||
|
// Object implements config.Accessor
|
||
|
func (s *podStorage) MergedState() interface{} {
|
||
|
s.podLock.RLock()
|
||
|
defer s.podLock.RUnlock()
|
||
|
pods := make([]*v1.Pod, 0)
|
||
|
for _, sourcePods := range s.pods {
|
||
|
for _, podRef := range sourcePods {
|
||
|
pods = append(pods, podRef.DeepCopy())
|
||
|
}
|
||
|
}
|
||
|
return pods
|
||
|
}
|
||
|
|
||
|
func copyPods(sourcePods []*v1.Pod) []*v1.Pod {
|
||
|
pods := []*v1.Pod{}
|
||
|
for _, source := range sourcePods {
|
||
|
// Use a deep copy here just in case
|
||
|
pods = append(pods, source.DeepCopy())
|
||
|
}
|
||
|
return pods
|
||
|
}
|