Files
my-rook-config/pkg/operator/ceph/controller/spec_test.go
T
Travis Nielsen ce92249725 ceph: continue with memory limits below min settings
The operator will now allow the resource limits to be applied below the
recommended minimums. In small clusters, even the recommended minimums
may not be necessary. A warning is still printed to the operator log,
but we allow the configuration to continue.

Signed-off-by: Travis Nielsen <tnielsen@redhat.com>
2020-08-19 11:07:16 -06:00

157 lines
5.0 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 controller
import (
"math"
"testing"
"github.com/rook/rook/pkg/operator/ceph/config"
opconfig "github.com/rook/rook/pkg/operator/ceph/config"
"github.com/rook/rook/pkg/operator/k8sutil"
"github.com/rook/rook/pkg/operator/test"
"github.com/stretchr/testify/assert"
v1 "k8s.io/api/core/v1"
"k8s.io/apimachinery/pkg/api/resource"
)
func TestPodVolumes(t *testing.T) {
dataPathMap := opconfig.NewDatalessDaemonDataPathMap("rook-ceph", "/var/lib/rook")
if err := test.VolumeIsEmptyDir(k8sutil.DataDirVolume, PodVolumes(dataPathMap, "", false)); err != nil {
t.Errorf("PodVolumes(\"\") - data dir source is not EmptyDir: %s", err.Error())
}
if err := test.VolumeIsHostPath(k8sutil.DataDirVolume, "/dev/sdb", PodVolumes(dataPathMap, "/dev/sdb", false)); err != nil {
t.Errorf("PodVolumes(\"/dev/sdb\") - data dir source is not HostPath: %s", err.Error())
}
}
func TestMountsMatchVolumes(t *testing.T) {
dataPathMap := opconfig.NewDatalessDaemonDataPathMap("rook-ceph", "/var/lib/rook")
volsMountsTestDef := test.VolumesAndMountsTestDefinition{
VolumesSpec: &test.VolumesSpec{
Moniker: "PodVolumes(\"/dev/sdc\")", Volumes: PodVolumes(dataPathMap, "/dev/sdc", false)},
MountsSpecItems: []*test.MountsSpec{
{Moniker: "CephVolumeMounts(true)", Mounts: CephVolumeMounts(dataPathMap, false)},
{Moniker: "RookVolumeMounts(true)", Mounts: RookVolumeMounts(dataPathMap, false)}},
}
volsMountsTestDef.TestMountsMatchVolumes(t)
volsMountsTestDef = test.VolumesAndMountsTestDefinition{
VolumesSpec: &test.VolumesSpec{
Moniker: "PodVolumes(\"/dev/sdc\")", Volumes: PodVolumes(dataPathMap, "/dev/sdc", true)},
MountsSpecItems: []*test.MountsSpec{
{Moniker: "CephVolumeMounts(false)", Mounts: CephVolumeMounts(dataPathMap, true)},
{Moniker: "RookVolumeMounts(false)", Mounts: RookVolumeMounts(dataPathMap, true)}},
}
volsMountsTestDef.TestMountsMatchVolumes(t)
}
func TestCheckPodMemory(t *testing.T) {
// This value is in MB
const PodMinimumMemory uint64 = 1024
name := "test"
// A value for the memory used in the tests
var memory_value = int64(PodMinimumMemory * 8 * uint64(math.Pow10(6)))
// Case 1: No memory limits, no memory requested
test_resource := v1.ResourceRequirements{}
if err := CheckPodMemory(name, test_resource, PodMinimumMemory); err != nil {
t.Errorf("Error case 1: %s", err.Error())
}
// Case 2: memory limit and memory requested
test_resource = v1.ResourceRequirements{
Limits: v1.ResourceList{
v1.ResourceMemory: *resource.NewQuantity(memory_value, resource.BinarySI),
},
Requests: v1.ResourceList{
v1.ResourceMemory: *resource.NewQuantity(memory_value, resource.BinarySI),
},
}
if err := CheckPodMemory(name, test_resource, PodMinimumMemory); err != nil {
t.Errorf("Error case 2: %s", err.Error())
}
// Only memory requested
test_resource = v1.ResourceRequirements{
Requests: v1.ResourceList{
v1.ResourceMemory: *resource.NewQuantity(memory_value, resource.BinarySI),
},
}
if err := CheckPodMemory(name, test_resource, PodMinimumMemory); err != nil {
t.Errorf("Error case 3: %s", err.Error())
}
}
func TestBuildAdminSocketCommand(t *testing.T) {
c := getDaemonConfig(config.OsdType, "")
command := c.buildAdminSocketCommand()
assert.Equal(t, "status", command)
c.daemonType = config.MonType
command = c.buildAdminSocketCommand()
assert.Equal(t, "mon_status", command)
}
func TestBuildSocketName(t *testing.T) {
daemonID := "0"
c := getDaemonConfig(config.OsdType, daemonID)
socketName := c.buildSocketName()
assert.Equal(t, "ceph-osd.0.asok", socketName)
c.daemonType = config.MonType
c.daemonID = "a"
socketName = c.buildSocketName()
assert.Equal(t, "ceph-mon.a.asok", socketName)
}
func TestBuildSocketPath(t *testing.T) {
daemonID := "0"
c := getDaemonConfig(config.OsdType, daemonID)
socketPath := c.buildSocketPath()
assert.Equal(t, "/run/ceph/ceph-osd.0.asok", socketPath)
}
func TestGenerateLivenessProbeExecDaemon(t *testing.T) {
daemonID := "0"
probe := GenerateLivenessProbeExecDaemon(config.OsdType, daemonID)
expectedCommand := []string{"env",
"-i",
"sh",
"-c",
"ceph --admin-daemon /run/ceph/ceph-osd.0.asok status",
}
assert.Equal(t, expectedCommand, probe.Handler.Exec.Command)
// it's an OSD the delay must be 45
assert.Equal(t, initialDelaySecondsOSDDaemon, probe.InitialDelaySeconds)
// test with a mon so the delay should be 10
probe = GenerateLivenessProbeExecDaemon(config.MonType, "a")
assert.Equal(t, initialDelaySecondsNonOSDDaemon, probe.InitialDelaySeconds)
}