Files
my-rook-config/pkg/operator/k8sutil/node_test.go
T
Travis Nielsen b0a63711f5 build: refactor to consolidate the rook.io/v1 package
The rook.io/v1 package was only an internal implementation detail and
does not have any CRDs that rely on it. The CRD deserialization should
handle the change in internal types without any issue. This separation
gives more flexibility for the storage providers to implement exactly
what is needed for their storage provider instead of forcing to use the
same types and risk affecting another storage provider.

Signed-off-by: Travis Nielsen <tnielsen@redhat.com>
2021-05-18 19:55:37 -06:00

424 lines
12 KiB
Go

/*
Copyright 2018 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 k8sutil for Kubernetes helpers.
package k8sutil
import (
"context"
"reflect"
"testing"
cephv1 "github.com/rook/rook/pkg/apis/ceph.rook.io/v1"
optest "github.com/rook/rook/pkg/operator/test"
"github.com/stretchr/testify/assert"
v1 "k8s.io/api/core/v1"
metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
"k8s.io/client-go/kubernetes/fake"
)
func createNode(nodeName string, condition v1.NodeConditionType, clientset *fake.Clientset) error {
ctx := context.TODO()
node := &v1.Node{
ObjectMeta: metav1.ObjectMeta{
Name: nodeName,
},
Status: v1.NodeStatus{
Conditions: []v1.NodeCondition{
{
Type: condition, Status: v1.ConditionTrue,
},
},
},
}
_, err := clientset.CoreV1().Nodes().Create(ctx, node, metav1.CreateOptions{})
return err
}
func TestValidNode(t *testing.T) {
nodeA := "nodeA"
nodeB := "nodeB"
storage := cephv1.StorageScopeSpec{
Nodes: []cephv1.Node{
{
Name: nodeA,
},
{
Name: nodeB,
},
},
}
var placement cephv1.Placement
// set up a fake k8s client set and watcher to generate events that the operator will listen to
clientset := fake.NewSimpleClientset()
nodeErr := createNode(nodeA, v1.NodeReady, clientset)
assert.Nil(t, nodeErr)
nodeErr = createNode(nodeB, v1.NodeNetworkUnavailable, clientset)
assert.Nil(t, nodeErr)
validNodes := GetValidNodes(storage, clientset, placement)
assert.Equal(t, len(validNodes), 1)
}
func testNode(taints []v1.Taint) v1.Node {
n := v1.Node{}
n.Spec.Taints = append(n.Spec.Taints, taints...)
return n
}
func taintReservedForRook() v1.Taint {
return v1.Taint{Key: "reservedForRook", Effect: v1.TaintEffectNoSchedule}
}
func taintReservedForOther() v1.Taint {
return v1.Taint{Key: "reservedForNOTRook", Effect: v1.TaintEffectNoSchedule}
}
func taintAllWellKnown() []v1.Taint {
taints := []v1.Taint{}
for _, t := range WellKnownTaints {
taints = append(taints, v1.Taint{
// assume the "worst" with NoExecute
Key: t, Effect: v1.TaintEffectNoExecute,
})
}
return taints
}
func taints(taints ...v1.Taint) []v1.Taint {
list := []v1.Taint{}
for _, t := range taints {
list = append(taints, t)
}
return list
}
func tolerateRook() []v1.Toleration {
return []v1.Toleration{{Key: "reservedForRook"}}
}
func TestNodeIsTolerable(t *testing.T) {
type args struct {
node v1.Node
tolerations []v1.Toleration
ignoreWellKnownTaints bool
}
tests := []struct {
name string
args args
want bool
}{
{name: "tolerate node w/o taints", args: args{
node: v1.Node{},
tolerations: tolerateRook(),
ignoreWellKnownTaints: false,
}, want: true},
{name: "tolerate node w/ rook taint", args: args{
node: testNode(taints(taintReservedForRook())),
tolerations: tolerateRook(),
ignoreWellKnownTaints: false,
}, want: true},
{name: "do not tolerate rook taint", args: args{
node: testNode(taints(taintReservedForRook())),
tolerations: nil,
ignoreWellKnownTaints: false,
}, want: false},
{name: "do not tolerate other taint", args: args{
node: testNode(taints(taintReservedForRook(), taintReservedForOther())),
tolerations: tolerateRook(),
ignoreWellKnownTaints: false,
}, want: false},
{name: "do not tolerate node w/ known taints", args: args{
node: testNode(taintAllWellKnown()),
tolerations: nil,
ignoreWellKnownTaints: false,
}, want: false},
{name: "do not tolerate node w/ known taints 2", args: args{
node: testNode(taintAllWellKnown()),
tolerations: tolerateRook(),
ignoreWellKnownTaints: false,
}, want: false},
{name: "tolerate node w/ known taints and rook taint", args: args{
node: testNode(taintAllWellKnown()),
tolerations: tolerateRook(),
ignoreWellKnownTaints: true,
}, want: true},
{name: "do not tolerate node w/ known taints and rook taint", args: args{
node: testNode(append(taintAllWellKnown(), taintReservedForRook())),
tolerations: nil,
ignoreWellKnownTaints: true,
}, want: false},
{name: "tolerate node w/ known taints and rook taint", args: args{
node: testNode(append(taintAllWellKnown(), taintReservedForRook())),
tolerations: tolerateRook(),
ignoreWellKnownTaints: true,
}, want: true},
{name: "do not tolerate node w/ known and other taints", args: args{
node: testNode(append(taintAllWellKnown(), taintReservedForRook(), taintReservedForOther())),
tolerations: tolerateRook(),
ignoreWellKnownTaints: true,
}, want: false},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
if got := NodeIsTolerable(tt.args.node, tt.args.tolerations, tt.args.ignoreWellKnownTaints); got != tt.want {
t.Errorf("NodeIsTolerable() = %v, want %v", got, tt.want)
}
})
}
}
func TestNodeIsReady(t *testing.T) {
assert.True(t, NodeIsReady(v1.Node{Status: v1.NodeStatus{Conditions: []v1.NodeCondition{
{Type: v1.NodeReady, Status: v1.ConditionTrue},
}}}))
assert.False(t, NodeIsReady(v1.Node{Status: v1.NodeStatus{Conditions: []v1.NodeCondition{
{Type: v1.NodeReady, Status: v1.ConditionFalse},
}}}))
assert.False(t, NodeIsReady(v1.Node{Status: v1.NodeStatus{Conditions: []v1.NodeCondition{
{Type: v1.NodeReady, Status: v1.ConditionUnknown},
}}}))
// if `Ready` condition does not exist, must assume that node is not ready
assert.False(t, NodeIsReady(v1.Node{Status: v1.NodeStatus{Conditions: []v1.NodeCondition{
{Type: v1.NodeDiskPressure, Status: v1.ConditionTrue},
}}}))
// if `Ready` condition is not accompanied by a status, must assume that node is not ready
assert.False(t, NodeIsReady(v1.Node{Status: v1.NodeStatus{Conditions: []v1.NodeCondition{
{Type: v1.NodeDiskPressure},
}}}))
}
func TestGetRookNodesMatchingKubernetesNodes(t *testing.T) {
ctx := context.TODO()
clientset := optest.New(t, 3) // create nodes 0, 1, and 2
rookNodes := []cephv1.Node{}
getNode := func(name string) v1.Node {
n, err := clientset.CoreV1().Nodes().Get(ctx, name, metav1.GetOptions{})
assert.NoError(t, err)
return *n
}
// no rook nodes specified
nodes, err := GetKubernetesNodesMatchingRookNodes(rookNodes, clientset)
assert.NoError(t, err)
assert.Empty(t, nodes)
// more rook nodes specified than nodes exist
rookNodes = []cephv1.Node{
{Name: "node0"},
{Name: "node2"},
{Name: "node5"}}
nodes, err = GetKubernetesNodesMatchingRookNodes(rookNodes, clientset)
assert.NoError(t, err)
assert.Len(t, nodes, 2)
assert.Contains(t, nodes, getNode("node0"))
assert.Contains(t, nodes, getNode("node2"))
// rook nodes match k8s nodes
rookNodes = []cephv1.Node{
{Name: "node0"},
{Name: "node1"},
{Name: "node2"}}
nodes, err = GetKubernetesNodesMatchingRookNodes(rookNodes, clientset)
assert.NoError(t, err)
assert.Len(t, nodes, 3)
assert.Contains(t, nodes, getNode("node0"))
assert.Contains(t, nodes, getNode("node1"))
assert.Contains(t, nodes, getNode("node2"))
// no k8s nodes exist
clientset = optest.New(t, 0)
nodes, err = GetKubernetesNodesMatchingRookNodes(rookNodes, clientset)
assert.NoError(t, err)
assert.Len(t, nodes, 0)
}
func TestRookNodesMatchingKubernetesNodes(t *testing.T) {
ctx := context.TODO()
clientset := optest.New(t, 3) // create nodes 0, 1, and 2
getNode := func(name string) v1.Node {
n, err := clientset.CoreV1().Nodes().Get(ctx, name, metav1.GetOptions{})
assert.NoError(t, err)
return *n
}
n0 := getNode("node0")
n0.Labels = map[string]string{v1.LabelHostname: "node0-hostname"}
n1 := getNode("node1")
n2 := getNode("node2")
n2.Labels = map[string]string{v1.LabelHostname: "node2"}
k8sNodes := []v1.Node{n0, n1, n2}
// no rook nodes specified for input
rookStorage := cephv1.StorageScopeSpec{
Nodes: []cephv1.Node{},
}
retNodes := RookNodesMatchingKubernetesNodes(rookStorage, k8sNodes)
assert.Len(t, retNodes, 0)
// all rook nodes specified
rookStorage.Nodes = []cephv1.Node{
{Name: "node0"},
{Name: "node1"},
{Name: "node2"}}
retNodes = RookNodesMatchingKubernetesNodes(rookStorage, k8sNodes)
assert.Len(t, retNodes, 3)
// this should return nodes named by hostname if that is available
assert.Contains(t, retNodes, cephv1.Node{Name: "node0-hostname"})
assert.Contains(t, retNodes, cephv1.Node{Name: "node1"})
assert.Contains(t, retNodes, cephv1.Node{Name: "node2"})
// more rook nodes specified than exist
rookStorage.Nodes = []cephv1.Node{
{Name: "node0-hostname"},
{Name: "node2"},
{Name: "node5"}}
retNodes = RookNodesMatchingKubernetesNodes(rookStorage, k8sNodes)
assert.Len(t, retNodes, 2)
assert.Contains(t, retNodes, cephv1.Node{Name: "node0-hostname"})
assert.Contains(t, retNodes, cephv1.Node{Name: "node2"})
// no k8s nodes specified
retNodes = RookNodesMatchingKubernetesNodes(rookStorage, []v1.Node{})
assert.Len(t, retNodes, 0)
}
func TestGenerateNodeAffinity(t *testing.T) {
type args struct {
nodeAffinity string
}
tests := []struct {
name string
args args
want *v1.NodeAffinity
wantErr bool
}{
{
name: "GenerateNodeAffinity",
args: args{
nodeAffinity: "rook.io/ceph=true",
},
want: &v1.NodeAffinity{
RequiredDuringSchedulingIgnoredDuringExecution: &v1.NodeSelector{
NodeSelectorTerms: []v1.NodeSelectorTerm{
{
MatchExpressions: []v1.NodeSelectorRequirement{
{
Key: "rook.io/ceph",
Operator: v1.NodeSelectorOpIn,
Values: []string{"true"},
},
},
},
},
},
},
wantErr: false,
},
{
name: "FailGenerateNodeAffinity",
args: args{
nodeAffinity: "rook.io/ceph,cassandra=true",
},
want: nil,
wantErr: true,
},
{
name: "GenerateNodeAffinityWithKeyOnly",
args: args{
nodeAffinity: "rook.io/ceph",
},
want: &v1.NodeAffinity{
RequiredDuringSchedulingIgnoredDuringExecution: &v1.NodeSelector{
NodeSelectorTerms: []v1.NodeSelectorTerm{
{
MatchExpressions: []v1.NodeSelectorRequirement{
{
Key: "rook.io/ceph",
Operator: v1.NodeSelectorOpExists,
},
},
},
},
},
},
wantErr: false,
},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
got, err := GenerateNodeAffinity(tt.args.nodeAffinity)
if (err != nil) != tt.wantErr {
t.Errorf("GenerateNodeAffinity() error = %v, wantErr %v", err, tt.wantErr)
return
}
if !reflect.DeepEqual(got, tt.want) {
t.Errorf("GenerateNodeAffinity() = %v, want %v", got, tt.want)
}
})
}
}
func TestGetNotReadyKubernetesNodes(t *testing.T) {
ctx := context.TODO()
clientset := optest.New(t, 0)
//when there is no node
nodes, err := GetNotReadyKubernetesNodes(clientset)
assert.NoError(t, err)
assert.Equal(t, 0, len(nodes))
//when all the nodes are in ready state
clientset = optest.New(t, 2)
nodes, err = GetNotReadyKubernetesNodes(clientset)
assert.NoError(t, err)
assert.Equal(t, 0, len(nodes))
//when there is a not ready node
node := &v1.Node{
ObjectMeta: metav1.ObjectMeta{
Name: "failed",
},
Status: v1.NodeStatus{
Conditions: []v1.NodeCondition{
{
Type: v1.NodeReady, Status: v1.ConditionFalse,
},
},
},
}
_, err = clientset.CoreV1().Nodes().Create(ctx, node, metav1.CreateOptions{})
assert.NoError(t, err)
nodes, err = GetNotReadyKubernetesNodes(clientset)
assert.NoError(t, err)
assert.Equal(t, 1, len(nodes))
// when all the nodes are not ready
allNodes, err := clientset.CoreV1().Nodes().List(ctx, metav1.ListOptions{})
assert.NoError(t, err)
for _, n := range allNodes.Items {
n.Status.Conditions[0].Status = v1.ConditionFalse
updateNode := n
_, err := clientset.CoreV1().Nodes().Update(ctx, &updateNode, metav1.UpdateOptions{})
assert.NoError(t, err)
}
nodes, err = GetNotReadyKubernetesNodes(clientset)
assert.NoError(t, err)
assert.Equal(t, 3, len(nodes))
}