
This adds a new Label to EndpointSlices that will ensure that multiple controllers or entities can manage subsets of EndpointSlices. This label provides a way to indicate the controller or entity responsible for managing an EndpointSlice. To provide a seamless upgrade from the alpha release of EndpointSlices that did not support this label, a temporary annotation has been added on Services to indicate that this label has been initially set on EndpointSlices. That annotation will be set automatically by the EndpointSlice controller with this commit once appropriate Labels have been added on the corresponding EndpointSlices.
410 lines
12 KiB
Go
410 lines
12 KiB
Go
/*
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Copyright 2019 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 endpointslice
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import (
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"fmt"
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"reflect"
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"testing"
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"time"
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"github.com/stretchr/testify/assert"
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v1 "k8s.io/api/core/v1"
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discovery "k8s.io/api/discovery/v1alpha1"
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metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
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"k8s.io/apimachinery/pkg/runtime"
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"k8s.io/apimachinery/pkg/runtime/schema"
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"k8s.io/apimachinery/pkg/util/intstr"
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"k8s.io/apimachinery/pkg/util/rand"
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"k8s.io/client-go/kubernetes/fake"
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k8stesting "k8s.io/client-go/testing"
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"k8s.io/client-go/tools/cache"
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endpointutil "k8s.io/kubernetes/pkg/controller/util/endpoint"
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utilpointer "k8s.io/utils/pointer"
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)
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func TestNewEndpointSlice(t *testing.T) {
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ipAddressType := discovery.AddressTypeIP
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portName := "foo"
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protocol := v1.ProtocolTCP
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endpointMeta := endpointMeta{
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Ports: []discovery.EndpointPort{{Name: &portName, Protocol: &protocol}},
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AddressType: &ipAddressType,
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}
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service := v1.Service{
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ObjectMeta: metav1.ObjectMeta{Name: "foo", Namespace: "test"},
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Spec: v1.ServiceSpec{
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Ports: []v1.ServicePort{{Port: 80}},
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Selector: map[string]string{"foo": "bar"},
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},
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}
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gvk := schema.GroupVersionKind{Version: "v1", Kind: "Service"}
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ownerRef := metav1.NewControllerRef(&service, gvk)
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expectedSlice := discovery.EndpointSlice{
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ObjectMeta: metav1.ObjectMeta{
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Labels: map[string]string{
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discovery.LabelServiceName: service.Name,
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discovery.LabelManagedBy: controllerName,
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},
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GenerateName: fmt.Sprintf("%s-", service.Name),
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OwnerReferences: []metav1.OwnerReference{*ownerRef},
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Namespace: service.Namespace,
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},
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Ports: endpointMeta.Ports,
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AddressType: endpointMeta.AddressType,
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Endpoints: []discovery.Endpoint{},
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}
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generatedSlice := newEndpointSlice(&service, &endpointMeta)
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assert.EqualValues(t, expectedSlice, *generatedSlice)
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}
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func TestPodToEndpoint(t *testing.T) {
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ns := "test"
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svc, _ := newServiceAndEndpointMeta("foo", ns)
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svcPublishNotReady, _ := newServiceAndEndpointMeta("publishnotready", ns)
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svcPublishNotReady.Spec.PublishNotReadyAddresses = true
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readyPod := newPod(1, ns, true, 1)
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readyPodHostname := newPod(1, ns, true, 1)
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readyPodHostname.Spec.Subdomain = svc.Name
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readyPodHostname.Spec.Hostname = "example-hostname"
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unreadyPod := newPod(1, ns, false, 1)
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multiIPPod := newPod(1, ns, true, 1)
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multiIPPod.Status.PodIPs = []v1.PodIP{{IP: "1.2.3.4"}, {IP: "1234::5678:0000:0000:9abc:def0"}}
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node1 := &v1.Node{
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ObjectMeta: metav1.ObjectMeta{
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Name: readyPod.Spec.NodeName,
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Labels: map[string]string{
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"topology.kubernetes.io/zone": "us-central1-a",
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"topology.kubernetes.io/region": "us-central1",
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},
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},
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}
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testCases := []struct {
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name string
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pod *v1.Pod
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node *v1.Node
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svc *v1.Service
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expectedEndpoint discovery.Endpoint
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publishNotReadyAddresses bool
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}{
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{
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name: "Ready pod",
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pod: readyPod,
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svc: &svc,
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expectedEndpoint: discovery.Endpoint{
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Addresses: []string{"1.2.3.5"},
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Conditions: discovery.EndpointConditions{Ready: utilpointer.BoolPtr(true)},
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Topology: map[string]string{"kubernetes.io/hostname": "node-1"},
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TargetRef: &v1.ObjectReference{
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Kind: "Pod",
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Namespace: ns,
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Name: readyPod.Name,
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UID: readyPod.UID,
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ResourceVersion: readyPod.ResourceVersion,
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},
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},
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},
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{
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name: "Ready pod + publishNotReadyAddresses",
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pod: readyPod,
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svc: &svcPublishNotReady,
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expectedEndpoint: discovery.Endpoint{
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Addresses: []string{"1.2.3.5"},
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Conditions: discovery.EndpointConditions{Ready: utilpointer.BoolPtr(true)},
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Topology: map[string]string{"kubernetes.io/hostname": "node-1"},
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TargetRef: &v1.ObjectReference{
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Kind: "Pod",
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Namespace: ns,
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Name: readyPod.Name,
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UID: readyPod.UID,
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ResourceVersion: readyPod.ResourceVersion,
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},
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},
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},
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{
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name: "Unready pod",
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pod: unreadyPod,
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svc: &svc,
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expectedEndpoint: discovery.Endpoint{
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Addresses: []string{"1.2.3.5"},
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Conditions: discovery.EndpointConditions{Ready: utilpointer.BoolPtr(false)},
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Topology: map[string]string{"kubernetes.io/hostname": "node-1"},
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TargetRef: &v1.ObjectReference{
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Kind: "Pod",
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Namespace: ns,
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Name: readyPod.Name,
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UID: readyPod.UID,
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ResourceVersion: readyPod.ResourceVersion,
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},
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},
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},
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{
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name: "Unready pod + publishNotReadyAddresses",
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pod: unreadyPod,
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svc: &svcPublishNotReady,
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expectedEndpoint: discovery.Endpoint{
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Addresses: []string{"1.2.3.5"},
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Conditions: discovery.EndpointConditions{Ready: utilpointer.BoolPtr(true)},
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Topology: map[string]string{"kubernetes.io/hostname": "node-1"},
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TargetRef: &v1.ObjectReference{
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Kind: "Pod",
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Namespace: ns,
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Name: readyPod.Name,
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UID: readyPod.UID,
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ResourceVersion: readyPod.ResourceVersion,
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},
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},
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},
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{
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name: "Ready pod + node labels",
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pod: readyPod,
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node: node1,
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svc: &svc,
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expectedEndpoint: discovery.Endpoint{
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Addresses: []string{"1.2.3.5"},
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Conditions: discovery.EndpointConditions{Ready: utilpointer.BoolPtr(true)},
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Topology: map[string]string{
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"kubernetes.io/hostname": "node-1",
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"topology.kubernetes.io/zone": "us-central1-a",
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"topology.kubernetes.io/region": "us-central1",
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},
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TargetRef: &v1.ObjectReference{
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Kind: "Pod",
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Namespace: ns,
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Name: readyPod.Name,
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UID: readyPod.UID,
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ResourceVersion: readyPod.ResourceVersion,
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},
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},
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},
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{
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name: "Multi IP Ready pod + node labels",
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pod: multiIPPod,
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node: node1,
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svc: &svc,
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expectedEndpoint: discovery.Endpoint{
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Addresses: []string{"1.2.3.4", "1234::5678:0000:0000:9abc:def0"},
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Conditions: discovery.EndpointConditions{Ready: utilpointer.BoolPtr(true)},
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Topology: map[string]string{
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"kubernetes.io/hostname": "node-1",
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"topology.kubernetes.io/zone": "us-central1-a",
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"topology.kubernetes.io/region": "us-central1",
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},
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TargetRef: &v1.ObjectReference{
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Kind: "Pod",
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Namespace: ns,
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Name: readyPod.Name,
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UID: readyPod.UID,
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ResourceVersion: readyPod.ResourceVersion,
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},
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},
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},
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{
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name: "Ready pod + hostname",
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pod: readyPodHostname,
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node: node1,
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svc: &svc,
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expectedEndpoint: discovery.Endpoint{
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Addresses: []string{"1.2.3.5"},
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Conditions: discovery.EndpointConditions{Ready: utilpointer.BoolPtr(true)},
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Hostname: &readyPodHostname.Spec.Hostname,
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Topology: map[string]string{
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"kubernetes.io/hostname": "node-1",
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"topology.kubernetes.io/zone": "us-central1-a",
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"topology.kubernetes.io/region": "us-central1",
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},
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TargetRef: &v1.ObjectReference{
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Kind: "Pod",
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Namespace: ns,
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Name: readyPodHostname.Name,
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UID: readyPodHostname.UID,
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ResourceVersion: readyPodHostname.ResourceVersion,
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},
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},
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},
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}
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for _, testCase := range testCases {
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t.Run(testCase.name, func(t *testing.T) {
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endpoint := podToEndpoint(testCase.pod, testCase.node, testCase.svc)
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if !reflect.DeepEqual(testCase.expectedEndpoint, endpoint) {
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t.Errorf("Expected endpoint: %v, got: %v", testCase.expectedEndpoint, endpoint)
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}
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})
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}
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}
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func TestPodChangedWithPodEndpointChanged(t *testing.T) {
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podStore := cache.NewStore(cache.DeletionHandlingMetaNamespaceKeyFunc)
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ns := "test"
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podStore.Add(newPod(1, ns, true, 1))
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pods := podStore.List()
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if len(pods) != 1 {
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t.Errorf("podStore size: expected: %d, got: %d", 1, len(pods))
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return
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}
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oldPod := pods[0].(*v1.Pod)
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newPod := oldPod.DeepCopy()
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if podChangedHelper(oldPod, newPod, podEndpointChanged) {
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t.Errorf("Expected pod to be unchanged for copied pod")
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}
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newPod.Spec.NodeName = "changed"
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if !podChangedHelper(oldPod, newPod, podEndpointChanged) {
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t.Errorf("Expected pod to be changed for pod with NodeName changed")
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}
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newPod.Spec.NodeName = oldPod.Spec.NodeName
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newPod.ObjectMeta.ResourceVersion = "changed"
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if podChangedHelper(oldPod, newPod, podEndpointChanged) {
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t.Errorf("Expected pod to be unchanged for pod with only ResourceVersion changed")
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}
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newPod.ObjectMeta.ResourceVersion = oldPod.ObjectMeta.ResourceVersion
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newPod.Status.PodIP = "1.2.3.1"
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if !podChangedHelper(oldPod, newPod, podEndpointChanged) {
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t.Errorf("Expected pod to be changed with pod IP address change")
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}
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newPod.Status.PodIP = oldPod.Status.PodIP
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newPod.ObjectMeta.Name = "wrong-name"
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if !podChangedHelper(oldPod, newPod, podEndpointChanged) {
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t.Errorf("Expected pod to be changed with pod name change")
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}
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newPod.ObjectMeta.Name = oldPod.ObjectMeta.Name
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saveConditions := oldPod.Status.Conditions
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oldPod.Status.Conditions = nil
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if !podChangedHelper(oldPod, newPod, podEndpointChanged) {
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t.Errorf("Expected pod to be changed with pod readiness change")
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}
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oldPod.Status.Conditions = saveConditions
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now := metav1.NewTime(time.Now().UTC())
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newPod.ObjectMeta.DeletionTimestamp = &now
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if !podChangedHelper(oldPod, newPod, podEndpointChanged) {
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t.Errorf("Expected pod to be changed with DeletionTimestamp change")
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}
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newPod.ObjectMeta.DeletionTimestamp = oldPod.ObjectMeta.DeletionTimestamp.DeepCopy()
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}
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// Test helpers
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func newPod(n int, namespace string, ready bool, nPorts int) *v1.Pod {
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status := v1.ConditionTrue
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if !ready {
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status = v1.ConditionFalse
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}
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p := &v1.Pod{
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TypeMeta: metav1.TypeMeta{APIVersion: "v1"},
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ObjectMeta: metav1.ObjectMeta{
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Namespace: namespace,
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Name: fmt.Sprintf("pod%d", n),
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Labels: map[string]string{"foo": "bar"},
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},
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Spec: v1.PodSpec{
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Containers: []v1.Container{{
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Name: "container-1",
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}},
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NodeName: "node-1",
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},
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Status: v1.PodStatus{
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PodIP: fmt.Sprintf("1.2.3.%d", 4+n),
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Conditions: []v1.PodCondition{
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{
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Type: v1.PodReady,
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Status: status,
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},
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},
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},
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}
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return p
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}
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func newClientset() *fake.Clientset {
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client := fake.NewSimpleClientset()
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client.PrependReactor("create", "endpointslices", k8stesting.ReactionFunc(func(action k8stesting.Action) (bool, runtime.Object, error) {
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endpointSlice := action.(k8stesting.CreateAction).GetObject().(*discovery.EndpointSlice)
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if endpointSlice.ObjectMeta.GenerateName != "" {
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endpointSlice.ObjectMeta.Name = fmt.Sprintf("%s-%s", endpointSlice.ObjectMeta.GenerateName, rand.String(8))
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endpointSlice.ObjectMeta.GenerateName = ""
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}
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return false, endpointSlice, nil
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}))
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return client
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}
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func newServiceAndEndpointMeta(name, namespace string) (v1.Service, endpointMeta) {
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portNum := int32(80)
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portNameIntStr := intstr.IntOrString{
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Type: intstr.Int,
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IntVal: portNum,
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}
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svc := v1.Service{
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ObjectMeta: metav1.ObjectMeta{Name: name, Namespace: namespace},
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Spec: v1.ServiceSpec{
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Ports: []v1.ServicePort{{
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TargetPort: portNameIntStr,
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Protocol: v1.ProtocolTCP,
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Name: name,
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}},
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Selector: map[string]string{"foo": "bar"},
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},
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}
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ipAddressType := discovery.AddressTypeIP
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protocol := v1.ProtocolTCP
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endpointMeta := endpointMeta{
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AddressType: &ipAddressType,
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Ports: []discovery.EndpointPort{{Name: &name, Port: &portNum, Protocol: &protocol}},
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}
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return svc, endpointMeta
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}
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func newEmptyEndpointSlice(n int, namespace string, endpointMeta endpointMeta, svc v1.Service) *discovery.EndpointSlice {
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return &discovery.EndpointSlice{
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ObjectMeta: metav1.ObjectMeta{
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Name: fmt.Sprintf("%s.%d", svc.Name, n),
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Namespace: namespace,
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},
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Ports: endpointMeta.Ports,
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AddressType: endpointMeta.AddressType,
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Endpoints: []discovery.Endpoint{},
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}
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}
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func podChangedHelper(oldPod, newPod *v1.Pod, endpointChanged endpointutil.EndpointsMatch) bool {
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podChanged, _ := endpointutil.PodChanged(oldPod, newPod, podEndpointChanged)
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return podChanged
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}
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