Files
my-rook-config/pkg/operator/ceph/controller/predicate_test.go
T
Sébastien Han 9b9f45b792 ceph: export isDoNotReconcile function
Since the predicate for the CephCluster object will soon move into its
own predidacte we need to export isDoNotReconcile so that it can be
consummed by the "cluster" package.

Signed-off-by: Sébastien Han <seb@redhat.com>
2020-11-24 18:21:02 +01:00

237 lines
5.0 KiB
Go

/*
Copyright 2020 The Rook Authors. All rights reserved.
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 controller
import (
"fmt"
"testing"
cephv1 "github.com/rook/rook/pkg/apis/ceph.rook.io/v1"
"github.com/rook/rook/pkg/operator/ceph/config"
"github.com/stretchr/testify/assert"
appsv1 "k8s.io/api/apps/v1"
corev1 "k8s.io/api/core/v1"
metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
)
var (
name = "my-pool"
namespace = "rook-ceph"
oldReplicas uint = 3
newReplicas uint = 2
)
func TestObjectChanged(t *testing.T) {
oldObject := &cephv1.CephBlockPool{
ObjectMeta: metav1.ObjectMeta{
Name: name,
Namespace: namespace,
},
Spec: cephv1.PoolSpec{
Replicated: cephv1.ReplicatedSpec{
Size: oldReplicas,
},
},
Status: &cephv1.CephBlockPoolStatus{
Phase: "",
},
}
newObject := &cephv1.CephBlockPool{
ObjectMeta: metav1.ObjectMeta{
Name: name,
Namespace: namespace,
},
Spec: cephv1.PoolSpec{
Replicated: cephv1.ReplicatedSpec{
Size: oldReplicas,
},
},
Status: &cephv1.CephBlockPoolStatus{
Phase: "",
},
}
// Identical
changed, err := objectChanged(oldObject, newObject, "foo")
assert.NoError(t, err)
assert.False(t, changed)
// Replica size changed
oldObject.Spec.Replicated.Size = newReplicas
changed, err = objectChanged(oldObject, newObject, "foo")
assert.NoError(t, err)
assert.True(t, changed)
}
func TestIsUpgrade(t *testing.T) {
oldLabel := make(map[string]string)
newLabel := map[string]string{
"foo": "bar",
}
// no value do nothing
b := isUpgrade(oldLabel, newLabel)
assert.False(t, b)
// different value do something
newLabel["ceph_version"] = "15.2.0-octopus"
b = isUpgrade(oldLabel, newLabel)
assert.True(t, b, fmt.Sprintf("%v,%v", oldLabel, newLabel))
// same value do nothing
oldLabel["ceph_version"] = "15.2.0-octopus"
newLabel["ceph_version"] = "15.2.0-octopus"
b = isUpgrade(oldLabel, newLabel)
assert.False(t, b, fmt.Sprintf("%v,%v", oldLabel, newLabel))
// different value do something
newLabel["ceph_version"] = "15.2.1-octopus"
b = isUpgrade(oldLabel, newLabel)
assert.True(t, b, fmt.Sprintf("%v,%v", oldLabel, newLabel))
}
func TestIsValidEvent(t *testing.T) {
obj := "rook-ceph-mon-a"
valid := []byte(`{
"metadata": {},
"spec": {},
"status": {
"conditions": [
{
"message": "ReplicaSet \"rook-ceph-mon-b-784fc58bf8\" is progressing.",
"reason": "ReplicaSetUpdated",
"type": "Progressing"
}
]
}
}`)
b := isValidEvent(valid, obj)
assert.True(t, b)
valid = []byte(`{"foo": "bar"}`)
b = isValidEvent(valid, obj)
assert.True(t, b)
invalid := []byte(`{
"metadata": {},
"status": {},
}`)
b = isValidEvent(invalid, obj)
assert.False(t, b)
}
func TestIsCanary(t *testing.T) {
dum := &cephv1.CephBlockPool{}
b := isCanary(dum)
assert.False(t, b)
d := &appsv1.Deployment{}
b = isCanary(d)
assert.False(t, b)
d.Labels = map[string]string{
"foo": "bar",
}
b = isCanary(d)
assert.False(t, b)
d.Labels["mon_canary"] = "true"
b = isCanary(d)
assert.True(t, b)
}
func TestIsCMToIgnoreOnUpdate(t *testing.T) {
dum := &cephv1.CephBlockPool{}
b := isCMTConfigOverride(dum)
assert.False(t, b)
cm := &corev1.ConfigMap{}
b = isCMTConfigOverride(cm)
assert.False(t, b)
cm.Name = "rook-ceph-mon-endpoints"
b = isCMTConfigOverride(cm)
assert.False(t, b)
cm.Name = "rook-config-override"
b = isCMTConfigOverride(cm)
assert.True(t, b)
}
func TestIsCMToIgnoreOnDelete(t *testing.T) {
dum := &cephv1.CephBlockPool{}
b := isCMToIgnoreOnDelete(dum)
assert.False(t, b)
cm := &corev1.ConfigMap{}
b = isCMToIgnoreOnDelete(cm)
assert.False(t, b)
cm.Name = "rook-ceph-mon-endpoints"
b = isCMToIgnoreOnDelete(cm)
assert.False(t, b)
cm.Name = "rook-ceph-osd-minikube-status"
b = isCMToIgnoreOnDelete(cm)
assert.True(t, b)
}
func TestIsSecretToIgnoreOnUpdate(t *testing.T) {
dum := &cephv1.CephBlockPool{}
b := isSecretToIgnoreOnUpdate(dum)
assert.False(t, b)
s := &corev1.Secret{}
b = isSecretToIgnoreOnUpdate(s)
assert.False(t, b)
s.Name = "foo"
b = isSecretToIgnoreOnUpdate(s)
assert.False(t, b)
s.Name = config.StoreName
b = isSecretToIgnoreOnUpdate(s)
assert.True(t, b)
}
func TestIsDoNotReconcile(t *testing.T) {
l := map[string]string{
"foo": "bar",
}
// value not present
b := IsDoNotReconcile(l)
assert.False(t, b)
// good value wrong content
l["do_not_reconcile"] = "false"
b = IsDoNotReconcile(l)
assert.False(t, b)
// good value and good content
l["do_not_reconcile"] = "true"
b = IsDoNotReconcile(l)
assert.True(t, b)
}