2019-12-27 23:08:46 +03:00
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// Package kubernetes provides a kubernetes registry
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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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"fmt"
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"os"
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"regexp"
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"strings"
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"time"
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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 kregistry struct {
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client client.Client
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timeout time.Duration
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options registry.Options
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}
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var (
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// used on pods as labels & services to select
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// eg: svcSelectorPrefix+"svc.name"
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2020-01-12 17:37:12 +03:00
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servicePrefix = "go.micro/"
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2019-12-27 23:08:46 +03:00
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serviceValue = "service"
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labelTypeKey = "micro"
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labelTypeValue = "service"
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// used on k8s services to scope a serialised
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// micro service by pod name
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2020-01-12 17:37:12 +03:00
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annotationPrefix = "go.micro/"
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2019-12-27 23:08:46 +03:00
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// Pod status
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podRunning = "Running"
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// label name regex
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labelRe = regexp.MustCompilePOSIX("[-A-Za-z0-9_.]")
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)
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// podSelector
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var podSelector = map[string]string{
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labelTypeKey: labelTypeValue,
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}
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func configure(k *kregistry, opts ...registry.Option) error {
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for _, o := range opts {
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o(&k.options)
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}
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// get first host
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var host string
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if len(k.options.Addrs) > 0 && len(k.options.Addrs[0]) > 0 {
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host = k.options.Addrs[0]
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}
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if k.options.Timeout == 0 {
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k.options.Timeout = time.Second * 1
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}
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// if no hosts setup, assume InCluster
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var c client.Client
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if len(host) > 0 {
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c = client.NewLocalClient(host)
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} else {
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c = client.NewClusterClient()
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}
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k.client = c
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k.timeout = k.options.Timeout
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return nil
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}
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// serviceName generates a valid service name for k8s labels
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func serviceName(name string) string {
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aname := make([]byte, len(name))
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for i, r := range []byte(name) {
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if !labelRe.Match([]byte{r}) {
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aname[i] = '_'
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continue
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}
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aname[i] = r
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}
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return string(aname)
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}
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// Init allows reconfig of options
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func (c *kregistry) Init(opts ...registry.Option) error {
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return configure(c, opts...)
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}
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// Options returns the registry Options
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func (c *kregistry) Options() registry.Options {
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return c.options
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}
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// Register sets a service selector label and an annotation with a
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// serialised version of the service passed in.
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func (c *kregistry) Register(s *registry.Service, opts ...registry.RegisterOption) error {
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if len(s.Nodes) == 0 {
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return errors.New("no nodes")
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}
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// TODO: grab podname from somewhere better than this.
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podName := os.Getenv("HOSTNAME")
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svcName := s.Name
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// encode micro service
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b, err := json.Marshal(s)
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if err != nil {
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return err
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}
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/// marshalled service
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svc := string(b)
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pod := &client.Pod{
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Metadata: &client.Metadata{
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Labels: map[string]string{
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// micro: service
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labelTypeKey: labelTypeValue,
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// micro/service/name: service
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servicePrefix + serviceName(svcName): serviceValue,
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},
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Annotations: map[string]string{
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// micro/service/name: definition
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annotationPrefix + serviceName(svcName): svc,
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},
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},
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}
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return c.client.Update(&client.Resource{
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Name: podName,
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Kind: "pod",
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Value: pod,
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})
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}
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// Deregister nils out any things set in Register
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func (c *kregistry) Deregister(s *registry.Service) error {
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if len(s.Nodes) == 0 {
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return errors.New("you must deregister at least one node")
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}
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// TODO: grab podname from somewhere better than this.
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podName := os.Getenv("HOSTNAME")
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svcName := s.Name
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pod := &client.Pod{
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Metadata: &client.Metadata{
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Labels: map[string]string{
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servicePrefix + serviceName(svcName): "",
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},
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Annotations: map[string]string{
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annotationPrefix + serviceName(svcName): "",
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},
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},
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}
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return c.client.Update(&client.Resource{
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Name: podName,
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Kind: "pod",
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Value: pod,
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})
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}
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// GetService will get all the pods with the given service selector,
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// and build services from the annotations.
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func (c *kregistry) GetService(name string) ([]*registry.Service, error) {
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var pods client.PodList
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if err := c.client.Get(&client.Resource{
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Kind: "pod",
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Value: &pods,
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}, map[string]string{
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servicePrefix + serviceName(name): serviceValue,
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}); err != nil {
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return nil, err
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}
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if len(pods.Items) == 0 {
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return nil, registry.ErrNotFound
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}
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// svcs mapped by version
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svcs := make(map[string]*registry.Service)
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// loop through items
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for _, pod := range pods.Items {
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if pod.Status.Phase != podRunning {
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continue
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}
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// get serialised service from annotation
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svcStr, ok := pod.Metadata.Annotations[annotationPrefix+serviceName(name)]
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if !ok {
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continue
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}
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// unmarshal service string
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var svc registry.Service
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if err := json.Unmarshal([]byte(svcStr), &svc); err != nil {
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return nil, fmt.Errorf("could not unmarshal service '%s' from pod annotation", name)
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}
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// merge up pod service & ip with versioned service.
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vs, ok := svcs[svc.Version]
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if !ok {
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svcs[svc.Version] = &svc
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continue
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}
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vs.Nodes = append(vs.Nodes, svc.Nodes...)
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}
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list := make([]*registry.Service, 0, len(svcs))
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for _, val := range svcs {
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list = append(list, val)
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}
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return list, nil
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}
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// ListServices will list all the service names
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func (c *kregistry) ListServices() ([]*registry.Service, error) {
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var pods client.PodList
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if err := c.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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// svcs mapped by name
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svcs := make(map[string]bool)
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for _, pod := range pods.Items {
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if pod.Status.Phase != podRunning {
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continue
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}
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for k, v := range pod.Metadata.Annotations {
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if !strings.HasPrefix(k, annotationPrefix) {
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continue
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}
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// we have to unmarshal the annotation itself since the
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// key is encoded to match the regex restriction.
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var svc registry.Service
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if err := json.Unmarshal([]byte(v), &svc); err != nil {
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continue
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}
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svcs[svc.Name] = true
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}
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}
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var list []*registry.Service
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for val := range svcs {
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list = append(list, ®istry.Service{Name: val})
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}
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return list, nil
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}
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// Watch returns a kubernetes watcher
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func (c *kregistry) Watch(opts ...registry.WatchOption) (registry.Watcher, error) {
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return newWatcher(c, opts...)
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}
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func (c *kregistry) String() string {
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return "kubernetes"
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}
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// NewRegistry creates a kubernetes registry
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func NewRegistry(opts ...registry.Option) registry.Registry {
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k := &kregistry{
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options: registry.Options{},
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}
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configure(k, opts...)
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return k
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}
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