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476 lines
14 KiB
476 lines
14 KiB
// Copyright 2016 The Prometheus 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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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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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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// nolint:revive // Many legitimately empty blocks in this file.
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package kubernetes
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import (
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"context"
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"errors"
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"fmt"
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"net"
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"strconv"
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"github.com/go-kit/log"
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"github.com/go-kit/log/level"
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"github.com/prometheus/common/model"
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apiv1 "k8s.io/api/core/v1"
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"k8s.io/client-go/tools/cache"
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"k8s.io/client-go/util/workqueue"
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"github.com/prometheus/prometheus/discovery/targetgroup"
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"github.com/prometheus/prometheus/util/strutil"
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)
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var (
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epAddCount = eventCount.WithLabelValues("endpoints", "add")
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epUpdateCount = eventCount.WithLabelValues("endpoints", "update")
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epDeleteCount = eventCount.WithLabelValues("endpoints", "delete")
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)
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// Endpoints discovers new endpoint targets.
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type Endpoints struct {
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logger log.Logger
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endpointsInf cache.SharedIndexInformer
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serviceInf cache.SharedInformer
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podInf cache.SharedInformer
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nodeInf cache.SharedInformer
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withNodeMetadata bool
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podStore cache.Store
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endpointsStore cache.Store
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serviceStore cache.Store
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queue *workqueue.Type
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}
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// NewEndpoints returns a new endpoints discovery.
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func NewEndpoints(l log.Logger, eps cache.SharedIndexInformer, svc, pod, node cache.SharedInformer) *Endpoints {
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if l == nil {
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l = log.NewNopLogger()
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}
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e := &Endpoints{
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logger: l,
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endpointsInf: eps,
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endpointsStore: eps.GetStore(),
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serviceInf: svc,
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serviceStore: svc.GetStore(),
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podInf: pod,
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podStore: pod.GetStore(),
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nodeInf: node,
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withNodeMetadata: node != nil,
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queue: workqueue.NewNamed("endpoints"),
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}
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_, err := e.endpointsInf.AddEventHandler(cache.ResourceEventHandlerFuncs{
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AddFunc: func(o interface{}) {
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epAddCount.Inc()
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e.enqueue(o)
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},
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UpdateFunc: func(_, o interface{}) {
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epUpdateCount.Inc()
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e.enqueue(o)
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},
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DeleteFunc: func(o interface{}) {
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epDeleteCount.Inc()
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e.enqueue(o)
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},
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})
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if err != nil {
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level.Error(l).Log("msg", "Error adding endpoints event handler.", "err", err)
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}
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serviceUpdate := func(o interface{}) {
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svc, err := convertToService(o)
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if err != nil {
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level.Error(e.logger).Log("msg", "converting to Service object failed", "err", err)
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return
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}
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ep := &apiv1.Endpoints{}
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ep.Namespace = svc.Namespace
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ep.Name = svc.Name
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obj, exists, err := e.endpointsStore.Get(ep)
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if exists && err == nil {
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e.enqueue(obj.(*apiv1.Endpoints))
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}
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if err != nil {
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level.Error(e.logger).Log("msg", "retrieving endpoints failed", "err", err)
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}
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}
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_, err = e.serviceInf.AddEventHandler(cache.ResourceEventHandlerFuncs{
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// TODO(fabxc): potentially remove add and delete event handlers. Those should
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// be triggered via the endpoint handlers already.
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AddFunc: func(o interface{}) {
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svcAddCount.Inc()
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serviceUpdate(o)
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},
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UpdateFunc: func(_, o interface{}) {
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svcUpdateCount.Inc()
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serviceUpdate(o)
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},
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DeleteFunc: func(o interface{}) {
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svcDeleteCount.Inc()
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serviceUpdate(o)
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},
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})
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if err != nil {
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level.Error(l).Log("msg", "Error adding services event handler.", "err", err)
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}
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if e.withNodeMetadata {
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_, err = e.nodeInf.AddEventHandler(cache.ResourceEventHandlerFuncs{
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AddFunc: func(o interface{}) {
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node := o.(*apiv1.Node)
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e.enqueueNode(node.Name)
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},
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UpdateFunc: func(_, o interface{}) {
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node := o.(*apiv1.Node)
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e.enqueueNode(node.Name)
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},
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DeleteFunc: func(o interface{}) {
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node := o.(*apiv1.Node)
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e.enqueueNode(node.Name)
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},
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})
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if err != nil {
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level.Error(l).Log("msg", "Error adding nodes event handler.", "err", err)
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}
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}
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return e
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}
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func (e *Endpoints) enqueueNode(nodeName string) {
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endpoints, err := e.endpointsInf.GetIndexer().ByIndex(nodeIndex, nodeName)
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if err != nil {
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level.Error(e.logger).Log("msg", "Error getting endpoints for node", "node", nodeName, "err", err)
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return
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}
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for _, endpoint := range endpoints {
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e.enqueue(endpoint)
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}
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}
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func (e *Endpoints) enqueue(obj interface{}) {
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key, err := cache.DeletionHandlingMetaNamespaceKeyFunc(obj)
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if err != nil {
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return
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}
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e.queue.Add(key)
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}
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// Run implements the Discoverer interface.
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func (e *Endpoints) Run(ctx context.Context, ch chan<- []*targetgroup.Group) {
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defer e.queue.ShutDown()
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cacheSyncs := []cache.InformerSynced{e.endpointsInf.HasSynced, e.serviceInf.HasSynced, e.podInf.HasSynced}
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if e.withNodeMetadata {
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cacheSyncs = append(cacheSyncs, e.nodeInf.HasSynced)
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}
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if !cache.WaitForCacheSync(ctx.Done(), cacheSyncs...) {
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if !errors.Is(ctx.Err(), context.Canceled) {
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level.Error(e.logger).Log("msg", "endpoints informer unable to sync cache")
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}
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return
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}
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go func() {
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for e.process(ctx, ch) {
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}
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}()
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// Block until the target provider is explicitly canceled.
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<-ctx.Done()
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}
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func (e *Endpoints) process(ctx context.Context, ch chan<- []*targetgroup.Group) bool {
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keyObj, quit := e.queue.Get()
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if quit {
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return false
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}
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defer e.queue.Done(keyObj)
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key := keyObj.(string)
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namespace, name, err := cache.SplitMetaNamespaceKey(key)
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if err != nil {
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level.Error(e.logger).Log("msg", "splitting key failed", "key", key)
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return true
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}
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o, exists, err := e.endpointsStore.GetByKey(key)
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if err != nil {
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level.Error(e.logger).Log("msg", "getting object from store failed", "key", key)
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return true
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}
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if !exists {
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send(ctx, ch, &targetgroup.Group{Source: endpointsSourceFromNamespaceAndName(namespace, name)})
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return true
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}
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eps, err := convertToEndpoints(o)
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if err != nil {
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level.Error(e.logger).Log("msg", "converting to Endpoints object failed", "err", err)
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return true
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}
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send(ctx, ch, e.buildEndpoints(eps))
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return true
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}
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func convertToEndpoints(o interface{}) (*apiv1.Endpoints, error) {
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endpoints, ok := o.(*apiv1.Endpoints)
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if ok {
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return endpoints, nil
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}
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return nil, fmt.Errorf("received unexpected object: %v", o)
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}
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func endpointsSource(ep *apiv1.Endpoints) string {
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return endpointsSourceFromNamespaceAndName(ep.Namespace, ep.Name)
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}
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func endpointsSourceFromNamespaceAndName(namespace, name string) string {
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return "endpoints/" + namespace + "/" + name
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}
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const (
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endpointsLabelPrefix = metaLabelPrefix + "endpoints_label_"
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endpointsLabelPresentPrefix = metaLabelPrefix + "endpoints_labelpresent_"
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endpointsNameLabel = metaLabelPrefix + "endpoints_name"
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endpointNodeName = metaLabelPrefix + "endpoint_node_name"
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endpointHostname = metaLabelPrefix + "endpoint_hostname"
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endpointReadyLabel = metaLabelPrefix + "endpoint_ready"
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endpointPortNameLabel = metaLabelPrefix + "endpoint_port_name"
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endpointPortProtocolLabel = metaLabelPrefix + "endpoint_port_protocol"
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endpointAddressTargetKindLabel = metaLabelPrefix + "endpoint_address_target_kind"
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endpointAddressTargetNameLabel = metaLabelPrefix + "endpoint_address_target_name"
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)
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func (e *Endpoints) buildEndpoints(eps *apiv1.Endpoints) *targetgroup.Group {
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tg := &targetgroup.Group{
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Source: endpointsSource(eps),
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}
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tg.Labels = model.LabelSet{
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namespaceLabel: lv(eps.Namespace),
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endpointsNameLabel: lv(eps.Name),
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}
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e.addServiceLabels(eps.Namespace, eps.Name, tg)
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// Add endpoints labels metadata.
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for k, v := range eps.Labels {
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ln := strutil.SanitizeLabelName(k)
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tg.Labels[model.LabelName(endpointsLabelPrefix+ln)] = lv(v)
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tg.Labels[model.LabelName(endpointsLabelPresentPrefix+ln)] = presentValue
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}
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type podEntry struct {
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pod *apiv1.Pod
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servicePorts []apiv1.EndpointPort
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}
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seenPods := map[string]*podEntry{}
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add := func(addr apiv1.EndpointAddress, port apiv1.EndpointPort, ready string) {
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a := net.JoinHostPort(addr.IP, strconv.FormatUint(uint64(port.Port), 10))
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target := model.LabelSet{
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model.AddressLabel: lv(a),
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endpointPortNameLabel: lv(port.Name),
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endpointPortProtocolLabel: lv(string(port.Protocol)),
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endpointReadyLabel: lv(ready),
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}
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if addr.TargetRef != nil {
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target[model.LabelName(endpointAddressTargetKindLabel)] = lv(addr.TargetRef.Kind)
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target[model.LabelName(endpointAddressTargetNameLabel)] = lv(addr.TargetRef.Name)
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}
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if addr.NodeName != nil {
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target[model.LabelName(endpointNodeName)] = lv(*addr.NodeName)
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}
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if addr.Hostname != "" {
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target[model.LabelName(endpointHostname)] = lv(addr.Hostname)
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}
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if e.withNodeMetadata {
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if addr.NodeName != nil {
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target = addNodeLabels(target, e.nodeInf, e.logger, addr.NodeName)
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} else if addr.TargetRef != nil && addr.TargetRef.Kind == "Node" {
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target = addNodeLabels(target, e.nodeInf, e.logger, &addr.TargetRef.Name)
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}
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}
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pod := e.resolvePodRef(addr.TargetRef)
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if pod == nil {
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// This target is not a Pod, so don't continue with Pod specific logic.
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tg.Targets = append(tg.Targets, target)
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return
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}
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s := pod.Namespace + "/" + pod.Name
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sp, ok := seenPods[s]
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if !ok {
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sp = &podEntry{pod: pod}
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seenPods[s] = sp
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}
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// Attach standard pod labels.
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target = target.Merge(podLabels(pod))
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// Attach potential container port labels matching the endpoint port.
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for _, c := range pod.Spec.Containers {
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for _, cport := range c.Ports {
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if port.Port == cport.ContainerPort {
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ports := strconv.FormatUint(uint64(port.Port), 10)
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target[podContainerNameLabel] = lv(c.Name)
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target[podContainerImageLabel] = lv(c.Image)
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target[podContainerPortNameLabel] = lv(cport.Name)
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target[podContainerPortNumberLabel] = lv(ports)
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target[podContainerPortProtocolLabel] = lv(string(port.Protocol))
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break
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}
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}
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}
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// Add service port so we know that we have already generated a target
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// for it.
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sp.servicePorts = append(sp.servicePorts, port)
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tg.Targets = append(tg.Targets, target)
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}
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for _, ss := range eps.Subsets {
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for _, port := range ss.Ports {
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for _, addr := range ss.Addresses {
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add(addr, port, "true")
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}
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// Although this generates the same target again, as it was generated in
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// the loop above, it causes the ready meta label to be overridden.
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for _, addr := range ss.NotReadyAddresses {
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add(addr, port, "false")
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}
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}
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}
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v := eps.Labels[apiv1.EndpointsOverCapacity]
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if v == "truncated" {
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level.Warn(e.logger).Log("msg", "Number of endpoints in one Endpoints object exceeds 1000 and has been truncated, please use \"role: endpointslice\" instead", "endpoint", eps.Name)
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}
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if v == "warning" {
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level.Warn(e.logger).Log("msg", "Number of endpoints in one Endpoints object exceeds 1000, please use \"role: endpointslice\" instead", "endpoint", eps.Name)
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}
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// For all seen pods, check all container ports. If they were not covered
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// by one of the service endpoints, generate targets for them.
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for _, pe := range seenPods {
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for _, c := range pe.pod.Spec.Containers {
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for _, cport := range c.Ports {
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hasSeenPort := func() bool {
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for _, eport := range pe.servicePorts {
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if cport.ContainerPort == eport.Port {
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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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if hasSeenPort() {
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continue
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}
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a := net.JoinHostPort(pe.pod.Status.PodIP, strconv.FormatUint(uint64(cport.ContainerPort), 10))
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ports := strconv.FormatUint(uint64(cport.ContainerPort), 10)
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target := model.LabelSet{
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model.AddressLabel: lv(a),
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podContainerNameLabel: lv(c.Name),
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podContainerImageLabel: lv(c.Image),
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podContainerPortNameLabel: lv(cport.Name),
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podContainerPortNumberLabel: lv(ports),
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podContainerPortProtocolLabel: lv(string(cport.Protocol)),
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}
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tg.Targets = append(tg.Targets, target.Merge(podLabels(pe.pod)))
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}
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}
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}
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return tg
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}
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func (e *Endpoints) resolvePodRef(ref *apiv1.ObjectReference) *apiv1.Pod {
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if ref == nil || ref.Kind != "Pod" {
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return nil
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}
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p := &apiv1.Pod{}
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p.Namespace = ref.Namespace
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p.Name = ref.Name
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obj, exists, err := e.podStore.Get(p)
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if err != nil {
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level.Error(e.logger).Log("msg", "resolving pod ref failed", "err", err)
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return nil
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}
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if !exists {
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return nil
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}
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return obj.(*apiv1.Pod)
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}
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func (e *Endpoints) addServiceLabels(ns, name string, tg *targetgroup.Group) {
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svc := &apiv1.Service{}
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svc.Namespace = ns
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svc.Name = name
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obj, exists, err := e.serviceStore.Get(svc)
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if err != nil {
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level.Error(e.logger).Log("msg", "retrieving service failed", "err", err)
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return
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}
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if !exists {
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return
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}
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svc = obj.(*apiv1.Service)
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tg.Labels = tg.Labels.Merge(serviceLabels(svc))
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}
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func addNodeLabels(tg model.LabelSet, nodeInf cache.SharedInformer, logger log.Logger, nodeName *string) model.LabelSet {
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if nodeName == nil {
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return tg
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}
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obj, exists, err := nodeInf.GetStore().GetByKey(*nodeName)
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if err != nil {
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level.Error(logger).Log("msg", "Error getting node", "node", *nodeName, "err", err)
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return tg
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}
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if !exists {
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return tg
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}
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node := obj.(*apiv1.Node)
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// Allocate one target label for the node name,
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// and two target labels for each node label.
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nodeLabelset := make(model.LabelSet, 1+2*len(node.GetLabels()))
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nodeLabelset[nodeNameLabel] = lv(*nodeName)
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for k, v := range node.GetLabels() {
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ln := strutil.SanitizeLabelName(k)
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nodeLabelset[model.LabelName(nodeLabelPrefix+ln)] = lv(v)
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nodeLabelset[model.LabelName(nodeLabelPresentPrefix+ln)] = presentValue
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}
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return tg.Merge(nodeLabelset)
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}
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