2019-12-27 23:08:46 +03:00
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package kubernetes
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import (
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"encoding/json"
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"errors"
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"strings"
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"sync"
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2020-02-23 16:45:20 +03:00
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log "github.com/micro/go-micro/v2/logger"
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2020-01-30 14:39:00 +03:00
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"github.com/micro/go-micro/v2/registry"
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"github.com/micro/go-micro/v2/util/kubernetes/client"
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2019-12-27 23:08:46 +03:00
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)
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type k8sWatcher struct {
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registry *kregistry
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watcher client.Watcher
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next chan *registry.Result
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stop chan bool
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sync.RWMutex
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pods map[string]*client.Pod
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}
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// build a cache of pods when the watcher starts.
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func (k *k8sWatcher) updateCache() ([]*registry.Result, error) {
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var pods client.PodList
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if err := k.registry.client.Get(&client.Resource{
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Kind: "pod",
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Value: &pods,
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}, podSelector); err != nil {
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return nil, err
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}
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var results []*registry.Result
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for _, pod := range pods.Items {
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rslts := k.buildPodResults(&pod, nil)
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for _, r := range rslts {
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results = append(results, r)
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}
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k.Lock()
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k.pods[pod.Metadata.Name] = &pod
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k.Unlock()
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}
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return results, nil
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}
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// look through pod annotations, compare against cache if present
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// and return a list of results to send down the wire.
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func (k *k8sWatcher) buildPodResults(pod *client.Pod, cache *client.Pod) []*registry.Result {
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var results []*registry.Result
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ignore := make(map[string]bool)
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if pod.Metadata != nil {
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for ak, av := range pod.Metadata.Annotations {
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// check this annotation kv is a service notation
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if !strings.HasPrefix(ak, annotationPrefix) {
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continue
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}
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if len(av) == 0 {
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continue
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}
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// ignore when we check the cached annotations
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// as we take care of it here
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ignore[ak] = true
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// compare aginst cache.
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var cacheExists bool
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var cav string
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if cache != nil && cache.Metadata != nil {
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cav, cacheExists = cache.Metadata.Annotations[ak]
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if cacheExists && len(cav) > 0 && cav == av {
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// service notation exists and is identical -
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// no change result required.
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continue
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}
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}
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rslt := ®istry.Result{}
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if cacheExists {
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rslt.Action = "update"
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} else {
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rslt.Action = "create"
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}
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// unmarshal service notation from annotation value
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err := json.Unmarshal([]byte(av), &rslt.Service)
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if err != nil {
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continue
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}
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results = append(results, rslt)
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}
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}
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// loop through cache annotations to find services
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// not accounted for above, and "delete" them.
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if cache != nil && cache.Metadata != nil {
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for ak, av := range cache.Metadata.Annotations {
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if ignore[ak] {
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continue
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}
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// check this annotation kv is a service notation
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if !strings.HasPrefix(ak, annotationPrefix) {
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continue
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}
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rslt := ®istry.Result{Action: "delete"}
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// unmarshal service notation from annotation value
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err := json.Unmarshal([]byte(av), &rslt.Service)
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if err != nil {
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continue
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}
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results = append(results, rslt)
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}
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}
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return results
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}
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// handleEvent will taken an event from the k8s pods API and do the correct
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// things with the result, based on the local cache.
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func (k *k8sWatcher) handleEvent(event client.Event) {
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var pod client.Pod
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if err := json.Unmarshal([]byte(event.Object), &pod); err != nil {
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2020-02-23 16:45:20 +03:00
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log.Info("K8s Watcher: Couldnt unmarshal event object from pod")
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2019-12-27 23:08:46 +03:00
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return
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}
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switch event.Type {
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case client.Modified:
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// Pod was modified
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k.RLock()
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cache := k.pods[pod.Metadata.Name]
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k.RUnlock()
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// service could have been added, edited or removed.
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var results []*registry.Result
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if pod.Status.Phase == podRunning {
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results = k.buildPodResults(&pod, cache)
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} else {
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// passing in cache might not return all results
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results = k.buildPodResults(&pod, nil)
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}
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for _, result := range results {
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// pod isnt running
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if pod.Status.Phase != podRunning {
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result.Action = "delete"
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}
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select {
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case k.next <- result:
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case <-k.stop:
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return
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}
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}
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k.Lock()
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k.pods[pod.Metadata.Name] = &pod
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k.Unlock()
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return
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case client.Deleted:
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// Pod was deleted
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// passing in cache might not return all results
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results := k.buildPodResults(&pod, nil)
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for _, result := range results {
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result.Action = "delete"
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select {
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case k.next <- result:
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case <-k.stop:
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return
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}
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}
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k.Lock()
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delete(k.pods, pod.Metadata.Name)
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k.Unlock()
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return
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}
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}
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// Next will block until a new result comes in
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func (k *k8sWatcher) Next() (*registry.Result, error) {
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select {
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case r := <-k.next:
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return r, nil
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case <-k.stop:
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return nil, errors.New("watcher stopped")
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}
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}
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// Stop will cancel any requests, and close channels
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func (k *k8sWatcher) Stop() {
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select {
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case <-k.stop:
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return
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default:
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k.watcher.Stop()
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close(k.stop)
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}
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}
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func newWatcher(kr *kregistry, opts ...registry.WatchOption) (registry.Watcher, error) {
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var wo registry.WatchOptions
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for _, o := range opts {
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o(&wo)
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}
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selector := podSelector
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if len(wo.Service) > 0 {
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selector = map[string]string{
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servicePrefix + serviceName(wo.Service): serviceValue,
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}
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}
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// Create watch request
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watcher, err := kr.client.Watch(&client.Resource{
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Kind: "pod",
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}, client.WatchParams(selector))
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if err != nil {
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return nil, err
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}
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k := &k8sWatcher{
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registry: kr,
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watcher: watcher,
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next: make(chan *registry.Result),
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stop: make(chan bool),
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pods: make(map[string]*client.Pod),
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}
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// update cache, but dont emit changes
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if _, err := k.updateCache(); err != nil {
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return nil, err
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}
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// range over watch request changes, and invoke
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// the update event
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go func() {
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for event := range watcher.Chan() {
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k.handleEvent(event)
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}
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}()
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return k, nil
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}
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