Merge pull request #48621 from marun/fed-remove-replicaset-unittest

Automatic merge from submit-queue

[Federation] Remove flakey and redundant replicaset unit test

The coverage provided by this test duplicates coverage provided in e2e.  As well, the test is 'unit' in name only, as evidenced by the dependency on sleep statements to try to coordinate timing between the test and the controller.  If low-level coverage of replicaset scheduling is desired, it can be implemented in a more targeted fashion that is not prone to race conditions.

Fixes #48368

cc: @kubernetes/sig-federation-pr-reviews
pull/6/head
Kubernetes Submit Queue 2017-07-08 07:58:19 -07:00 committed by GitHub
commit c2ddbd21c4
2 changed files with 0 additions and 165 deletions

View File

@ -45,7 +45,6 @@ go_test(
srcs = [
"controller_test.go",
"deploymentcontroller_test.go",
"replicasetcontroller_test.go",
],
library = ":go_default_library",
tags = ["automanaged"],
@ -65,8 +64,6 @@ go_test(
"//vendor/k8s.io/apimachinery/pkg/runtime:go_default_library",
"//vendor/k8s.io/apimachinery/pkg/types:go_default_library",
"//vendor/k8s.io/apimachinery/pkg/util/wait:go_default_library",
"//vendor/k8s.io/apimachinery/pkg/watch:go_default_library",
"//vendor/k8s.io/client-go/testing:go_default_library",
],
)

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@ -1,162 +0,0 @@
/*
Copyright 2016 The Kubernetes Authors.
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
package sync
import (
"flag"
"fmt"
"testing"
"time"
apiv1 "k8s.io/api/core/v1"
extensionsv1 "k8s.io/api/extensions/v1beta1"
metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
"k8s.io/apimachinery/pkg/watch"
core "k8s.io/client-go/testing"
fedv1 "k8s.io/kubernetes/federation/apis/federation/v1beta1"
fedclientfake "k8s.io/kubernetes/federation/client/clientset_generated/federation_clientset/fake"
"k8s.io/kubernetes/federation/pkg/federatedtypes"
testutil "k8s.io/kubernetes/federation/pkg/federation-controller/util/test"
kubeclientset "k8s.io/kubernetes/pkg/client/clientset_generated/clientset"
kubeclientfake "k8s.io/kubernetes/pkg/client/clientset_generated/clientset/fake"
"github.com/stretchr/testify/assert"
)
const (
pods = "pods"
replicasets = "replicasets"
k8s1 = "k8s-1"
k8s2 = "k8s-2"
)
func TestReplicaSetController(t *testing.T) {
flag.Set("logtostderr", "true")
flag.Set("v", "5")
flag.Parse()
fedclientset := fedclientfake.NewSimpleClientset()
fedrswatch := watch.NewFake()
fedclientset.PrependWatchReactor(replicasets, core.DefaultWatchReactor(fedrswatch, nil))
fedclientset.Federation().Clusters().Create(testutil.NewCluster(k8s1, apiv1.ConditionTrue))
fedclientset.Federation().Clusters().Create(testutil.NewCluster(k8s2, apiv1.ConditionTrue))
kube1clientset := kubeclientfake.NewSimpleClientset()
kube1rswatch := watch.NewFake()
kube1clientset.PrependWatchReactor(replicasets, core.DefaultWatchReactor(kube1rswatch, nil))
kube1Podwatch := watch.NewFake()
kube1clientset.PrependWatchReactor(pods, core.DefaultWatchReactor(kube1Podwatch, nil))
kube2clientset := kubeclientfake.NewSimpleClientset()
kube2rswatch := watch.NewFake()
kube2clientset.PrependWatchReactor(replicasets, core.DefaultWatchReactor(kube2rswatch, nil))
kube2Podwatch := watch.NewFake()
kube2clientset.PrependWatchReactor(pods, core.DefaultWatchReactor(kube2Podwatch, nil))
fedInformerClientFactory := func(cluster *fedv1.Cluster) (kubeclientset.Interface, error) {
switch cluster.Name {
case k8s1:
return kube1clientset, nil
case k8s2:
return kube2clientset, nil
default:
return nil, fmt.Errorf("Unknown cluster: %v", cluster.Name)
}
}
replicaSetController := newFederationSyncController(fedclientset, federatedtypes.NewReplicaSetAdapter(fedclientset))
replicaSetController.minimizeLatency()
rsFedinformer := testutil.ToFederatedInformerForTestOnly(replicaSetController.informer)
rsFedinformer.SetClientFactory(fedInformerClientFactory)
stopChan := make(chan struct{})
defer close(stopChan)
go replicaSetController.Run(stopChan)
rs := newReplicaSetWithReplicas("rs", 9)
rs, _ = fedclientset.Extensions().ReplicaSets(metav1.NamespaceDefault).Create(rs)
fedrswatch.Add(rs)
time.Sleep(2 * time.Second)
rs1, _ := kube1clientset.Extensions().ReplicaSets(metav1.NamespaceDefault).Get(rs.Name, metav1.GetOptions{})
kube1rswatch.Add(rs1)
rs1.Status.Replicas = *rs1.Spec.Replicas
rs1.Status.FullyLabeledReplicas = *rs1.Spec.Replicas
rs1.Status.ReadyReplicas = *rs1.Spec.Replicas
rs1.Status.AvailableReplicas = *rs1.Spec.Replicas
rs1, _ = kube1clientset.Extensions().ReplicaSets(metav1.NamespaceDefault).UpdateStatus(rs1)
kube1rswatch.Modify(rs1)
rs2, _ := kube2clientset.Extensions().ReplicaSets(metav1.NamespaceDefault).Get(rs.Name, metav1.GetOptions{})
kube2rswatch.Add(rs2)
rs2.Status.Replicas = *rs2.Spec.Replicas
rs2.Status.FullyLabeledReplicas = *rs2.Spec.Replicas
rs2.Status.ReadyReplicas = *rs2.Spec.Replicas
rs2.Status.AvailableReplicas = *rs2.Spec.Replicas
rs2, _ = kube2clientset.Extensions().ReplicaSets(metav1.NamespaceDefault).UpdateStatus(rs2)
kube2rswatch.Modify(rs2)
time.Sleep(2 * time.Second)
rs, _ = fedclientset.Extensions().ReplicaSets(metav1.NamespaceDefault).Get(rs.Name, metav1.GetOptions{})
assert.Equal(t, *rs.Spec.Replicas, *rs1.Spec.Replicas+*rs2.Spec.Replicas)
assert.Equal(t, rs.Status.Replicas, rs1.Status.Replicas+rs2.Status.Replicas)
assert.Equal(t, rs.Status.FullyLabeledReplicas, rs1.Status.FullyLabeledReplicas+rs2.Status.FullyLabeledReplicas)
assert.Equal(t, rs.Status.ReadyReplicas, rs1.Status.ReadyReplicas+rs2.Status.ReadyReplicas)
assert.Equal(t, rs.Status.AvailableReplicas, rs1.Status.AvailableReplicas+rs2.Status.AvailableReplicas)
var replicas int32 = 20
rs.Spec.Replicas = &replicas
rs, _ = fedclientset.Extensions().ReplicaSets(metav1.NamespaceDefault).Update(rs)
fedrswatch.Modify(rs)
time.Sleep(2 * time.Second)
rs1, _ = kube1clientset.Extensions().ReplicaSets(metav1.NamespaceDefault).Get(rs.Name, metav1.GetOptions{})
rs1.Status.Replicas = *rs1.Spec.Replicas
rs1.Status.FullyLabeledReplicas = *rs1.Spec.Replicas
rs1.Status.ReadyReplicas = *rs1.Spec.Replicas
rs1.Status.AvailableReplicas = *rs1.Spec.Replicas
rs1, _ = kube1clientset.Extensions().ReplicaSets(metav1.NamespaceDefault).UpdateStatus(rs1)
kube1rswatch.Modify(rs1)
rs2, _ = kube2clientset.Extensions().ReplicaSets(metav1.NamespaceDefault).Get(rs.Name, metav1.GetOptions{})
rs2.Status.Replicas = *rs2.Spec.Replicas
rs2.Status.FullyLabeledReplicas = *rs2.Spec.Replicas
rs2.Status.ReadyReplicas = *rs2.Spec.Replicas
rs2.Status.AvailableReplicas = *rs2.Spec.Replicas
rs2, _ = kube2clientset.Extensions().ReplicaSets(metav1.NamespaceDefault).UpdateStatus(rs2)
kube2rswatch.Modify(rs2)
time.Sleep(1 * time.Second)
rs, _ = fedclientset.Extensions().ReplicaSets(metav1.NamespaceDefault).Get(rs.Name, metav1.GetOptions{})
assert.Equal(t, *rs.Spec.Replicas, *rs1.Spec.Replicas+*rs2.Spec.Replicas)
assert.Equal(t, rs.Status.Replicas, rs1.Status.Replicas+rs2.Status.Replicas)
assert.Equal(t, rs.Status.FullyLabeledReplicas, rs1.Status.FullyLabeledReplicas+rs2.Status.FullyLabeledReplicas)
assert.Equal(t, rs.Status.ReadyReplicas, rs1.Status.ReadyReplicas+rs2.Status.ReadyReplicas)
assert.Equal(t, rs.Status.AvailableReplicas, rs1.Status.AvailableReplicas+rs2.Status.AvailableReplicas)
}
func newReplicaSetWithReplicas(name string, replicas int32) *extensionsv1.ReplicaSet {
return &extensionsv1.ReplicaSet{
ObjectMeta: metav1.ObjectMeta{
Name: name,
Namespace: metav1.NamespaceDefault,
SelfLink: "/api/v1/namespaces/default/replicasets/name",
},
Spec: extensionsv1.ReplicaSetSpec{
Replicas: &replicas,
},
}
}