mirror of https://github.com/k3s-io/k3s
462 lines
18 KiB
Go
462 lines
18 KiB
Go
/*
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Copyright 2016 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 e2e_federation
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import (
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"encoding/json"
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"fmt"
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"reflect"
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"time"
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"k8s.io/api/core/v1"
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"k8s.io/api/extensions/v1beta1"
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metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
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"k8s.io/apimachinery/pkg/util/wait"
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fedclientset "k8s.io/kubernetes/federation/client/clientset_generated/federation_clientset"
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fedutil "k8s.io/kubernetes/federation/pkg/federation-controller/util"
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"k8s.io/kubernetes/test/e2e/framework"
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fedframework "k8s.io/kubernetes/test/e2e_federation/framework"
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. "github.com/onsi/ginkgo"
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. "github.com/onsi/gomega"
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"k8s.io/apimachinery/pkg/api/errors"
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"k8s.io/apimachinery/pkg/util/uuid"
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"k8s.io/kubernetes/federation/apis/federation"
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federatedtypes "k8s.io/kubernetes/federation/pkg/federatedtypes"
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)
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const (
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FederationReplicaSetPrefix = "federation-replicaset-"
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)
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// Create/delete replicaset api objects
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var _ = framework.KubeDescribe("Federated ReplicaSet [Feature:Federation]", func() {
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f := fedframework.NewDefaultFederatedFramework("federation-replicaset")
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Describe("ReplicaSet objects [NoCluster]", func() {
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AfterEach(func() {
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fedframework.SkipUnlessFederated(f.ClientSet)
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// Delete all replicasets.
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nsName := f.FederationNamespace.Name
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deleteAllReplicaSetsOrFail(f.FederationClientset, nsName)
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})
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It("should be created and deleted successfully", func() {
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fedframework.SkipUnlessFederated(f.ClientSet)
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nsName := f.FederationNamespace.Name
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rs := createReplicaSetOrFail(f.FederationClientset, newReplicaSet(nsName, FederationReplicaSetPrefix, 5, nil))
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By(fmt.Sprintf("Creation of replicaset %q in namespace %q succeeded. Deleting replicaset.", rs.Name, nsName))
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// Cleanup
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err := f.FederationClientset.Extensions().ReplicaSets(nsName).Delete(rs.Name, &metav1.DeleteOptions{})
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framework.ExpectNoError(err, "Error deleting replicaset %q in namespace %q", rs.Name, rs.Namespace)
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By(fmt.Sprintf("Deletion of replicaset %q in namespace %q succeeded.", rs.Name, nsName))
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})
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})
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// e2e cases for federated replicaset controller
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Describe("Features", func() {
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var (
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clusters fedframework.ClusterSlice
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)
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BeforeEach(func() {
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fedframework.SkipUnlessFederated(f.ClientSet)
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clusters = f.GetRegisteredClusters()
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})
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// e2e cases for federated replicaset controller
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Describe("Preferences", func() {
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var (
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rs *v1beta1.ReplicaSet
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)
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AfterEach(func() {
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// Delete all replicasets.
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nsName := f.FederationNamespace.Name
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if rs != nil {
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orphanDependents := false
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By(fmt.Sprintf("Deleting replicaset \"%s/%s\"", nsName, rs.Name))
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deleteReplicaSetOrFail(f.FederationClientset, nsName, rs.Name, &orphanDependents)
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rs = nil
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}
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})
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It("should create replicasets with weight preference", func() {
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pref, replicas, expect := generateFedRSPrefsWithWeight(clusters)
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rs = createAndUpdateFedRSWithPref(f.FederationClientset, f.FederationNamespace.Name, clusters, pref, replicas, expect)
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})
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It("should create replicasets with min replicas preference", func() {
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pref, replicas, expect := generateFedRSPrefsWithMin(clusters)
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rs = createAndUpdateFedRSWithPref(f.FederationClientset, f.FederationNamespace.Name, clusters, pref, replicas, expect)
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})
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It("should create replicasets with max replicas preference", func() {
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pref, replicas, expect := generateFedRSPrefsWithMax(clusters)
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rs = createAndUpdateFedRSWithPref(f.FederationClientset, f.FederationNamespace.Name, clusters, pref, replicas, expect)
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})
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// test for rebalancing
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PIt("should create replicasets and rebalance them", func() {
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nsName := f.FederationNamespace.Name
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pref1, pref2, replicas, expect1, expect2 := generateFedRSPrefsForRebalancing(clusters)
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By("Testing replicaset rebalancing")
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framework.Logf("Replicas: %d", replicas)
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framework.Logf("Preference 1: %#v", pref1)
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framework.Logf("Preference 2: %#v", pref2)
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rs = newReplicaSet(nsName, FederationReplicaSetPrefix, replicas, pref1)
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rs = createReplicaSetOrFail(f.FederationClientset, rs)
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waitForReplicaSetOrFail(f.FederationClientset, nsName, rs.Name, clusters, expect1)
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By(fmt.Sprintf("Successfully created and synced replicaset \"%s/%s\" (%v/%v) to clusters", nsName, rs.Name, rs.Status.Replicas, *rs.Spec.Replicas))
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rs = newReplicaSetWithName(nsName, rs.Name, replicas, pref2)
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updateReplicaSetOrFail(f.FederationClientset, rs)
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waitForReplicaSetOrFail(f.FederationClientset, nsName, rs.Name, clusters, expect1)
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By(fmt.Sprintf("Successfully updated and synced replicaset \"%s/%s\" (%v/%v) to clusters", nsName, rs.Name, rs.Status.Replicas, *rs.Spec.Replicas))
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pref2 = updateFedRSPrefsRebalance(pref2, true)
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rs = newReplicaSetWithName(nsName, rs.Name, replicas, pref2)
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updateReplicaSetOrFail(f.FederationClientset, rs)
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waitForReplicaSetOrFail(f.FederationClientset, nsName, rs.Name, clusters, expect2)
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By(fmt.Sprintf("Successfully updated and synced replicaset \"%s/%s\" (%v/%v) to clusters", nsName, rs.Name, rs.Status.Replicas, *rs.Spec.Replicas))
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})
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})
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})
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})
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func createAndWaitForReplicasetOrFail(clientset *fedclientset.Clientset, nsName string, clusters fedframework.ClusterSlice) *v1beta1.ReplicaSet {
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rs := createReplicaSetOrFail(clientset, newReplicaSet(nsName, FederationReplicaSetPrefix, 5, nil))
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// Check subclusters if the replicaSet was created there.
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By(fmt.Sprintf("Waiting for replica sets %s to be created in all underlying clusters", rs.Name))
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err := wait.Poll(5*time.Second, 2*time.Minute, func() (bool, error) {
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for _, cluster := range clusters {
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_, err := cluster.Extensions().ReplicaSets(nsName).Get(rs.Name, metav1.GetOptions{})
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if err != nil && errors.IsNotFound(err) {
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return false, nil
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}
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if err != nil {
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return false, err
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}
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}
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return true, nil
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})
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framework.ExpectNoError(err, "Not all replica sets created")
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return rs
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}
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func createAndUpdateFedRSWithPref(clientset *fedclientset.Clientset, nsName string, clusters fedframework.ClusterSlice, pref *federation.ReplicaAllocationPreferences, replicas int32, expect map[string]int32) *v1beta1.ReplicaSet {
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framework.Logf("Replicas: %d, Preference: %#v", replicas, pref)
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rs := newReplicaSet(nsName, FederationReplicaSetPrefix, replicas, pref)
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rs = createReplicaSetOrFail(clientset, rs)
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waitForReplicaSetOrFail(clientset, nsName, rs.Name, clusters, expect)
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By(fmt.Sprintf("Successfully created and synced replicaset \"%s/%s\" (%v/%v) to clusters", nsName, rs.Name, rs.Status.Replicas, *rs.Spec.Replicas))
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rs = newReplicaSetWithName(nsName, rs.Name, 0, pref)
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updateReplicaSetOrFail(clientset, rs)
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waitForReplicaSetOrFail(clientset, nsName, rs.Name, clusters, nil)
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By(fmt.Sprintf("Successfully updated and synced replicaset \"%s/%s\" (%v/%v) to clusters", nsName, rs.Name, rs.Status.Replicas, *rs.Spec.Replicas))
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rs = newReplicaSetWithName(nsName, rs.Name, replicas, pref)
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updateReplicaSetOrFail(clientset, rs)
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waitForReplicaSetOrFail(clientset, nsName, rs.Name, clusters, expect)
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By(fmt.Sprintf("Successfully updated and synced replicaset \"%s/%s\" (%v/%v) to clusters", nsName, rs.Name, rs.Status.Replicas, *rs.Spec.Replicas))
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return rs
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}
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// deleteAllReplicaSetsOrFail deletes all replicasets in the given namespace name.
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func deleteAllReplicaSetsOrFail(clientset *fedclientset.Clientset, nsName string) {
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replicasetList, err := clientset.Extensions().ReplicaSets(nsName).List(metav1.ListOptions{})
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Expect(err).NotTo(HaveOccurred())
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orphanDependents := false
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for _, replicaset := range replicasetList.Items {
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deleteReplicaSetOrFail(clientset, nsName, replicaset.Name, &orphanDependents)
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}
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}
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func generateFedRSPrefsWithWeight(clusters fedframework.ClusterSlice) (pref *federation.ReplicaAllocationPreferences, replicas int32, expect map[string]int32) {
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By("Generating replicaset preferences with weights")
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clusterNames := extractClusterNames(clusters)
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pref = &federation.ReplicaAllocationPreferences{
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Clusters: map[string]federation.ClusterPreferences{},
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}
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replicas = 0
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expect = map[string]int32{}
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for i, clusterName := range clusterNames {
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if i != 0 { // do not set weight for cluster[0] thus it should have no replicas scheduled
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pref.Clusters[clusterName] = federation.ClusterPreferences{
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Weight: int64(i),
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}
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replicas += int32(i)
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expect[clusterName] = int32(i)
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}
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}
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return
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}
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func generateFedRSPrefsWithMin(clusters fedframework.ClusterSlice) (pref *federation.ReplicaAllocationPreferences, replicas int32, expect map[string]int32) {
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By("Generating replicaset preferences with min replicas")
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clusterNames := extractClusterNames(clusters)
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pref = &federation.ReplicaAllocationPreferences{
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Clusters: map[string]federation.ClusterPreferences{
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clusterNames[0]: {Weight: 100},
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},
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}
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replicas = 0
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expect = map[string]int32{}
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for i, clusterName := range clusterNames {
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if i != 0 { // do not set weight and minReplicas for cluster[0] thus it should have no replicas scheduled
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pref.Clusters[clusterName] = federation.ClusterPreferences{
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Weight: int64(1),
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MinReplicas: int64(i + 2),
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}
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replicas += int32(i + 2)
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expect[clusterName] = int32(i + 2)
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}
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}
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// the extra replica goes to cluster[0] which has the highest weight
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replicas += 1
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expect[clusterNames[0]] = 1
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return
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}
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func generateFedRSPrefsWithMax(clusters fedframework.ClusterSlice) (pref *federation.ReplicaAllocationPreferences, replicas int32, expect map[string]int32) {
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By("Generating replicaset preferences with max replicas")
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clusterNames := extractClusterNames(clusters)
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pref = &federation.ReplicaAllocationPreferences{
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Clusters: map[string]federation.ClusterPreferences{
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clusterNames[0]: {Weight: 1},
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},
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}
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replicas = 0
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expect = map[string]int32{}
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for i, clusterName := range clusterNames {
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if i != 0 { // do not set maxReplicas for cluster[0] thus replicas exceeds the total maxReplicas turned to cluster[0]
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maxReplicas := int64(i)
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pref.Clusters[clusterName] = federation.ClusterPreferences{
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Weight: int64(100),
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MaxReplicas: &maxReplicas,
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}
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replicas += int32(i)
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expect[clusterName] = int32(i)
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}
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}
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// extra replicas go to cluster[0] although it has the lowest weight as others hit the MaxReplicas
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replicas += 5
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expect[clusterNames[0]] = 5
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return
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}
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func updateFedRSPrefsRebalance(pref *federation.ReplicaAllocationPreferences, rebalance bool) *federation.ReplicaAllocationPreferences {
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pref.Rebalance = rebalance
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return pref
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}
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func generateFedRSPrefsForRebalancing(clusters fedframework.ClusterSlice) (pref1, pref2 *federation.ReplicaAllocationPreferences, replicas int32, expect1, expect2 map[string]int32) {
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By("Generating replicaset for rebalancing")
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clusterNames := extractClusterNames(clusters)
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replicas = 3
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pref1 = &federation.ReplicaAllocationPreferences{
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Clusters: map[string]federation.ClusterPreferences{
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clusterNames[0]: {Weight: 1},
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clusterNames[1]: {Weight: 2},
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},
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}
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expect1 = map[string]int32{
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clusterNames[0]: 1,
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clusterNames[1]: 2,
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}
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pref2 = &federation.ReplicaAllocationPreferences{
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Clusters: map[string]federation.ClusterPreferences{
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clusterNames[0]: {Weight: 2},
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clusterNames[1]: {Weight: 1},
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},
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}
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expect2 = map[string]int32{
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clusterNames[0]: 2,
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clusterNames[1]: 1,
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}
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return
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}
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func waitForReplicaSetOrFail(c *fedclientset.Clientset, namespace string, replicaSetName string, clusters fedframework.ClusterSlice, expect map[string]int32) {
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err := waitForReplicaSet(c, namespace, replicaSetName, clusters, expect)
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framework.ExpectNoError(err, "Failed to verify replica set \"%s/%s\", err: %v", namespace, replicaSetName, err)
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}
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func waitForReplicaSet(c *fedclientset.Clientset, namespace string, replicaSetName string, clusters fedframework.ClusterSlice, expect map[string]int32) error {
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framework.Logf("waitForReplicaSet: %s/%s; clusters: %v; expect: %v", namespace, replicaSetName, clusters, expect)
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err := wait.Poll(10*time.Second, fedframework.FederatedDefaultTestTimeout, func() (bool, error) {
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frs, err := c.ExtensionsV1beta1().ReplicaSets(namespace).Get(replicaSetName, metav1.GetOptions{})
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if err != nil {
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return false, err
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}
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specReplicas, statusReplicas := int32(0), int32(0)
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for _, cluster := range clusters {
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// TODO: switch to use AppsV1beta2 ReplicaSet when apps/v1beta2 is enabled by default
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rs, err := cluster.ExtensionsV1beta1().ReplicaSets(namespace).Get(replicaSetName, metav1.GetOptions{})
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if err != nil && !errors.IsNotFound(err) {
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framework.Logf("Failed getting replicaset: \"%s/%s/%s\", err: %v", cluster.Name, namespace, replicaSetName, err)
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return false, err
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}
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if errors.IsNotFound(err) {
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if expect != nil && expect[cluster.Name] > 0 {
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framework.Logf("Replicaset \"%s/%s/%s\" with replica count %d does not exist", cluster.Name, namespace, replicaSetName, expect[cluster.Name])
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return false, nil
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}
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} else {
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if !equivalentReplicaSet(frs, rs) {
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framework.Logf("Replicaset meta or spec does not match for cluster %q:\n federation: %v\n cluster: %v", cluster.Name, frs, rs)
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return false, nil
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}
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if expect != nil && *rs.Spec.Replicas < expect[cluster.Name] {
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framework.Logf("Replicas do not match for \"%s/%s/%s\": expected: >= %v, actual: %v", cluster.Name, namespace, replicaSetName, expect[cluster.Name], *rs.Spec.Replicas)
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return false, nil
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}
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specReplicas += *rs.Spec.Replicas
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statusReplicas += rs.Status.Replicas
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}
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}
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if *frs.Spec.Replicas == 0 && frs.Status.Replicas != 0 {
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framework.Logf("ReplicaSet \"%s/%s\" with zero replicas should match the status as no overflow happens: expected: 0, actual: %v", namespace, replicaSetName, frs.Status.Replicas)
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return false, nil
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}
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if statusReplicas == frs.Status.Replicas && specReplicas >= *frs.Spec.Replicas {
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return true, nil
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}
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framework.Logf("Replicas do not match, federation replicas: %v/%v, cluster replicas: %v/%v", frs.Status.Replicas, *frs.Spec.Replicas, statusReplicas, specReplicas)
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return false, nil
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})
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return err
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}
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func equivalentReplicaSet(fedReplicaSet, localReplicaSet *v1beta1.ReplicaSet) bool {
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localReplicaSetSpec := localReplicaSet.Spec
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localReplicaSetSpec.Replicas = fedReplicaSet.Spec.Replicas
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return fedutil.ObjectMetaEquivalent(fedReplicaSet.ObjectMeta, localReplicaSet.ObjectMeta) &&
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reflect.DeepEqual(fedReplicaSet.Spec, localReplicaSetSpec)
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}
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func createReplicaSetOrFail(clientset *fedclientset.Clientset, replicaset *v1beta1.ReplicaSet) *v1beta1.ReplicaSet {
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namespace := replicaset.Namespace
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if clientset == nil || len(namespace) == 0 {
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Fail(fmt.Sprintf("Internal error: invalid parameters passed to createReplicaSetOrFail: clientset: %v, namespace: %v", clientset, namespace))
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}
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By(fmt.Sprintf("Creating federation replicaset %q in namespace %q", replicaset.Name, namespace))
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newRS, err := clientset.Extensions().ReplicaSets(namespace).Create(replicaset)
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framework.ExpectNoError(err, "Creating replicaset %q in namespace %q", replicaset.Name, namespace)
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By(fmt.Sprintf("Successfully created federation replicaset %q in namespace %q", newRS.Name, namespace))
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return newRS
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}
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func deleteReplicaSetOrFail(clientset *fedclientset.Clientset, nsName string, replicaSetName string, orphanDependents *bool) {
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By(fmt.Sprintf("Deleting replica set %q in namespace %q", replicaSetName, nsName))
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err := clientset.Extensions().ReplicaSets(nsName).Delete(replicaSetName, &metav1.DeleteOptions{OrphanDependents: orphanDependents})
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if err != nil && !errors.IsNotFound(err) {
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framework.ExpectNoError(err, "Error deleting replica set %q in namespace %q", replicaSetName, nsName)
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}
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waitForReplicaSetToBeDeletedOrFail(clientset, nsName, replicaSetName)
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}
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func updateReplicaSetOrFail(clientset *fedclientset.Clientset, replicaset *v1beta1.ReplicaSet) *v1beta1.ReplicaSet {
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namespace := replicaset.Namespace
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if clientset == nil || len(namespace) == 0 {
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Fail(fmt.Sprintf("Internal error: invalid parameters passed to updateReplicaSetOrFail: clientset: %v, namespace: %v", clientset, namespace))
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}
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By(fmt.Sprintf("Updating federation replicaset %q in namespace %q", replicaset.Name, namespace))
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newRS, err := clientset.ExtensionsV1beta1().ReplicaSets(namespace).Update(replicaset)
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framework.ExpectNoError(err, "Updating replicaset %q in namespace %q", replicaset.Name, namespace)
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By(fmt.Sprintf("Successfully updated federation replicaset %q in namespace %q", replicaset.Name, namespace))
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return newRS
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}
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func newReplicaSetObj(namespace string, replicas int32, pref *federation.ReplicaAllocationPreferences) *v1beta1.ReplicaSet {
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// When the tests are run in parallel, replicasets from different tests can
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// collide with each other. Prevent that by creating a unique label and
|
|
// label selector for each created replica set.
|
|
uuidString := string(uuid.NewUUID())
|
|
rsLabel := fmt.Sprintf("myrs-%s", uuidString)
|
|
|
|
rs := &v1beta1.ReplicaSet{
|
|
ObjectMeta: metav1.ObjectMeta{
|
|
Namespace: namespace,
|
|
Annotations: map[string]string{},
|
|
},
|
|
Spec: v1beta1.ReplicaSetSpec{
|
|
Replicas: &replicas,
|
|
Selector: &metav1.LabelSelector{
|
|
MatchLabels: map[string]string{"name": rsLabel},
|
|
},
|
|
Template: v1.PodTemplateSpec{
|
|
ObjectMeta: metav1.ObjectMeta{
|
|
Labels: map[string]string{"name": rsLabel},
|
|
},
|
|
Spec: v1.PodSpec{
|
|
Containers: []v1.Container{
|
|
{
|
|
Name: "nginx",
|
|
Image: "nginx",
|
|
},
|
|
},
|
|
},
|
|
},
|
|
},
|
|
}
|
|
if pref != nil {
|
|
prefBytes, _ := json.Marshal(pref)
|
|
prefString := string(prefBytes)
|
|
rs.Annotations[federatedtypes.FedReplicaSetPreferencesAnnotation] = prefString
|
|
}
|
|
return rs
|
|
|
|
}
|
|
|
|
func newReplicaSet(namespace string, prefix string, replicas int32, pref *federation.ReplicaAllocationPreferences) *v1beta1.ReplicaSet {
|
|
rs := newReplicaSetObj(namespace, replicas, pref)
|
|
rs.GenerateName = prefix
|
|
return rs
|
|
}
|
|
|
|
func newReplicaSetWithName(namespace string, name string, replicas int32, pref *federation.ReplicaAllocationPreferences) *v1beta1.ReplicaSet {
|
|
rs := newReplicaSetObj(namespace, replicas, pref)
|
|
rs.Name = name
|
|
return rs
|
|
}
|
|
|
|
func extractClusterNames(clusters fedframework.ClusterSlice) []string {
|
|
clusterNames := make([]string, 0, len(clusters))
|
|
for _, cluster := range clusters {
|
|
clusterNames = append(clusterNames, cluster.Name)
|
|
}
|
|
return clusterNames
|
|
}
|