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				https://github.com/coredns/coredns.git
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	Use modern Go constructs through the modernize analyzer from the golang.org/x/tools package. Signed-off-by: Ville Vesilehto <ville@vesilehto.fi>
		
			
				
	
	
		
			358 lines
		
	
	
		
			9.3 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
			
		
		
	
	
			358 lines
		
	
	
		
			9.3 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
package kubernetes
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import (
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	"context"
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	"net"
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	"strconv"
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	"strings"
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	"testing"
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	"time"
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	"github.com/coredns/coredns/plugin/kubernetes/object"
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	"github.com/coredns/coredns/plugin/pkg/dnstest"
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	"github.com/coredns/coredns/plugin/test"
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	"github.com/miekg/dns"
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	api "k8s.io/api/core/v1"
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	discovery "k8s.io/api/discovery/v1"
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	meta "k8s.io/apimachinery/pkg/apis/meta/v1"
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	"k8s.io/client-go/kubernetes"
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	"k8s.io/client-go/kubernetes/fake"
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	mcs "sigs.k8s.io/mcs-api/pkg/apis/v1alpha1"
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	mcsClientsetFake "sigs.k8s.io/mcs-api/pkg/client/clientset/versioned/fake"
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	mcsClientset "sigs.k8s.io/mcs-api/pkg/client/clientset/versioned/typed/apis/v1alpha1"
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)
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func inc(ip net.IP) {
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	for j := len(ip) - 1; j >= 0; j-- {
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		ip[j]++
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		if ip[j] > 0 {
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			break
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		}
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	}
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}
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func kubernetesWithFakeClient(ctx context.Context, cidr string, initEndpointsCache bool, svcType string) *Kubernetes {
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	client := fake.NewSimpleClientset()
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	mcsClient := mcsClientsetFake.NewSimpleClientset()
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	dco := dnsControlOpts{
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		zones:              []string{"cluster.local.", "clusterset.local."},
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		multiclusterZones:  []string{"clusterset.local."},
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		initEndpointsCache: initEndpointsCache,
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	}
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	controller := newdnsController(ctx, client, mcsClient.MulticlusterV1alpha1(), dco)
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	// Add resources
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	_, err := client.CoreV1().Namespaces().Create(ctx, &api.Namespace{ObjectMeta: meta.ObjectMeta{Name: "testns"}}, meta.CreateOptions{})
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	if err != nil {
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		log.Fatal(err)
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	}
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	generateSvcs(cidr, svcType, client, mcsClient.MulticlusterV1alpha1())
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	generateEndpointSlices(cidr, svcType, client)
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	k := New([]string{"cluster.local.", "clusterset.local."})
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	k.APIConn = controller
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	k.opts.multiclusterZones = []string{"clusterset.local."}
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	return k
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}
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func BenchmarkController(b *testing.B) {
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	ctx := context.Background()
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	k := kubernetesWithFakeClient(ctx, "10.0.0.0/24", true, "all")
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	go k.APIConn.Run()
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	defer k.APIConn.Stop()
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	for !k.APIConn.HasSynced() {
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		time.Sleep(time.Millisecond)
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	}
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	rw := &test.ResponseWriter{}
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	m := new(dns.Msg)
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	m.SetQuestion("svc1.testns.svc.cluster.local.", dns.TypeA)
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	for b.Loop() {
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		k.ServeDNS(ctx, rw, m)
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	}
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}
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func TestEndpointsDisabled(t *testing.T) {
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	ctx := context.Background()
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	k := kubernetesWithFakeClient(ctx, "10.0.0.0/30", false, "headless")
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	k.opts.initEndpointsCache = false
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	go k.APIConn.Run()
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	defer k.APIConn.Stop()
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	for !k.APIConn.HasSynced() {
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		time.Sleep(time.Millisecond)
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	}
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	rw := &dnstest.Recorder{ResponseWriter: &test.ResponseWriter{}}
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	m := new(dns.Msg)
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	m.SetQuestion("svc2.testns.svc.cluster.local.", dns.TypeA)
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	k.ServeDNS(ctx, rw, m)
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	if rw.Msg.Rcode != dns.RcodeNameError {
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		t.Errorf("Expected NXDOMAIN, got %v", dns.RcodeToString[rw.Msg.Rcode])
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	}
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}
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func TestEndpointsEnabled(t *testing.T) {
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	ctx := context.Background()
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	k := kubernetesWithFakeClient(ctx, "10.0.0.0/30", true, "headless")
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	k.opts.initEndpointsCache = true
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	go k.APIConn.Run()
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	defer k.APIConn.Stop()
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	for !k.APIConn.HasSynced() {
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		time.Sleep(time.Millisecond)
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	}
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	rw := &dnstest.Recorder{ResponseWriter: &test.ResponseWriter{}}
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	m := new(dns.Msg)
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	m.SetQuestion("svc2.testns.svc.cluster.local.", dns.TypeA)
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	k.ServeDNS(ctx, rw, m)
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	if rw.Msg.Rcode != dns.RcodeSuccess {
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		t.Errorf("Expected SUCCESS, got %v", dns.RcodeToString[rw.Msg.Rcode])
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	}
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}
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func TestMultiClusterHeadless(t *testing.T) {
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	ctx := context.Background()
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	k := kubernetesWithFakeClient(ctx, "10.0.0.0/30", true, "mcs-headless")
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	k.opts.initEndpointsCache = true
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	go k.APIConn.Run()
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	defer k.APIConn.Stop()
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	for !k.APIConn.HasSynced() {
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		time.Sleep(time.Millisecond)
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	}
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	rw := &dnstest.Recorder{ResponseWriter: &test.ResponseWriter{}}
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	m := new(dns.Msg)
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	m.SetQuestion("svc2.testns.svc.clusterset.local.", dns.TypeA)
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	k.ServeDNS(ctx, rw, m)
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	if rw.Msg.Rcode != dns.RcodeSuccess {
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		t.Errorf("Expected SUCCESS, got %v", dns.RcodeToString[rw.Msg.Rcode])
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	}
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}
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func generateEndpointSlices(cidr string, svcType string, client kubernetes.Interface) {
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	// https://groups.google.com/d/msg/golang-nuts/zlcYA4qk-94/TWRFHeXJCcYJ
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	ip, ipnet, err := net.ParseCIDR(cidr)
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	if err != nil {
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		log.Fatal(err)
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	}
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	count := 1
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	port := int32(80)
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	protocol := api.Protocol("tcp")
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	name := "http"
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	eps := &discovery.EndpointSlice{
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		Ports: []discovery.EndpointPort{
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			{
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				Port:     &port,
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				Protocol: &protocol,
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				Name:     &name,
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			},
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		},
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		ObjectMeta: meta.ObjectMeta{
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			Namespace: "testns",
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		},
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	}
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	ctx := context.TODO()
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	for ip := ip.Mask(ipnet.Mask); ipnet.Contains(ip); inc(ip) {
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		hostname := "foo" + strconv.Itoa(count)
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		eps.Endpoints = []discovery.Endpoint{
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			{
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				Addresses: []string{ip.String()},
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				Hostname:  &hostname,
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			},
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		}
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		eps.Name = "svc" + strconv.Itoa(count)
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		if !strings.Contains(svcType, "mcs") {
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			eps.Labels = map[string]string{discovery.LabelServiceName: eps.Name}
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		} else {
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			eps.Labels = map[string]string{mcs.LabelServiceName: eps.Name}
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		}
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		_, err := client.DiscoveryV1().EndpointSlices("testns").Create(ctx, eps, meta.CreateOptions{})
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		if err != nil {
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			log.Fatal(err)
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		}
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		count++
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	}
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}
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func generateSvcs(cidr string, svcType string, client kubernetes.Interface, mcsClient mcsClientset.MulticlusterV1alpha1Interface) {
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	ip, ipnet, err := net.ParseCIDR(cidr)
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	if err != nil {
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		log.Fatal(err)
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	}
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	count := 1
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	switch svcType {
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	case "clusterip":
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		for ip := ip.Mask(ipnet.Mask); ipnet.Contains(ip); inc(ip) {
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			createClusterIPSvc(count, client, ip)
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			count++
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		}
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	case "headless":
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		for ip := ip.Mask(ipnet.Mask); ipnet.Contains(ip); inc(ip) {
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			createHeadlessSvc(count, client, ip)
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			count++
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		}
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	case "external":
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		for ip := ip.Mask(ipnet.Mask); ipnet.Contains(ip); inc(ip) {
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			createExternalSvc(count, client, ip)
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			count++
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		}
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	case "mcs-headless":
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		for ip := ip.Mask(ipnet.Mask); ipnet.Contains(ip); inc(ip) {
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			createMultiClusterHeadlessSvc(count, mcsClient, ip)
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			count++
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		}
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	default:
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		for ip := ip.Mask(ipnet.Mask); ipnet.Contains(ip); inc(ip) {
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			switch count % 3 {
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			case 0:
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				createClusterIPSvc(count, client, ip)
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			case 1:
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				createHeadlessSvc(count, client, ip)
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			case 2:
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				createExternalSvc(count, client, ip)
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			}
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			count++
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		}
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	}
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}
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func createClusterIPSvc(suffix int, client kubernetes.Interface, ip net.IP) {
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	ctx := context.TODO()
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	client.CoreV1().Services("testns").Create(ctx, &api.Service{
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		ObjectMeta: meta.ObjectMeta{
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			Name:      "svc" + strconv.Itoa(suffix),
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			Namespace: "testns",
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		},
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		Spec: api.ServiceSpec{
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			ClusterIP: ip.String(),
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			Ports: []api.ServicePort{{
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				Name:     "http",
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				Protocol: "tcp",
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				Port:     80,
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			}},
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		},
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	}, meta.CreateOptions{})
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}
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func createHeadlessSvc(suffix int, client kubernetes.Interface, ip net.IP) {
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	ctx := context.TODO()
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	client.CoreV1().Services("testns").Create(ctx, &api.Service{
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		ObjectMeta: meta.ObjectMeta{
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			Name:      "svc" + strconv.Itoa(suffix),
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			Namespace: "testns",
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		},
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		Spec: api.ServiceSpec{
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			ClusterIP: api.ClusterIPNone,
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		},
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	}, meta.CreateOptions{})
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}
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func createExternalSvc(suffix int, client kubernetes.Interface, ip net.IP) {
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	ctx := context.TODO()
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	client.CoreV1().Services("testns").Create(ctx, &api.Service{
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		ObjectMeta: meta.ObjectMeta{
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			Name:      "svc" + strconv.Itoa(suffix),
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			Namespace: "testns",
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		},
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		Spec: api.ServiceSpec{
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			ExternalName: "coredns" + strconv.Itoa(suffix) + ".io",
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			Ports: []api.ServicePort{{
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				Name:     "http",
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				Protocol: "tcp",
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				Port:     80,
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			}},
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			Type: api.ServiceTypeExternalName,
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		},
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	}, meta.CreateOptions{})
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}
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func createMultiClusterHeadlessSvc(suffix int, mcsClient mcsClientset.MulticlusterV1alpha1Interface, ip net.IP) {
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	ctx := context.TODO()
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	mcsClient.ServiceImports("testns").Create(ctx, &mcs.ServiceImport{
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		ObjectMeta: meta.ObjectMeta{
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			Name:      "svc" + strconv.Itoa(suffix),
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			Namespace: "testns",
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		},
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		Spec: mcs.ServiceImportSpec{
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			Ports: []mcs.ServicePort{{
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				Name:     "http",
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				Protocol: "tcp",
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				Port:     80,
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			}},
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			Type: mcs.Headless,
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		},
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	}, meta.CreateOptions{})
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}
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func TestServiceModified(t *testing.T) {
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	tests := []struct {
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		oldSvc   any
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		newSvc   any
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		ichanged bool
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		echanged bool
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	}{
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		{
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			oldSvc:   nil,
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			newSvc:   &object.Service{},
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			ichanged: true,
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			echanged: false,
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		},
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		{
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			oldSvc:   &object.Service{},
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			newSvc:   nil,
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			ichanged: true,
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			echanged: false,
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		},
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		{
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			oldSvc:   nil,
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			newSvc:   &object.Service{ExternalIPs: []string{"10.0.0.1"}},
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			ichanged: true,
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			echanged: true,
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		},
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		{
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			oldSvc:   &object.Service{ExternalIPs: []string{"10.0.0.1"}},
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			newSvc:   nil,
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			ichanged: true,
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			echanged: true,
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		},
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		{
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			oldSvc:   &object.Service{ExternalIPs: []string{"10.0.0.1"}},
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			newSvc:   &object.Service{ExternalIPs: []string{"10.0.0.2"}},
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			ichanged: false,
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			echanged: true,
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		},
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		{
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			oldSvc:   &object.Service{ExternalName: "10.0.0.1"},
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			newSvc:   &object.Service{ExternalName: "10.0.0.2"},
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			ichanged: true,
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			echanged: false,
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		},
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		{
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			oldSvc:   &object.Service{Ports: []api.ServicePort{{Name: "test1"}}},
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			newSvc:   &object.Service{Ports: []api.ServicePort{{Name: "test2"}}},
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			ichanged: true,
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			echanged: true,
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		},
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		{
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			oldSvc:   &object.Service{Ports: []api.ServicePort{{Name: "test1"}}},
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			newSvc:   &object.Service{Ports: []api.ServicePort{{Name: "test2"}, {Name: "test3"}}},
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			ichanged: true,
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			echanged: true,
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		},
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	}
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	for i, test := range tests {
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		ichanged, echanged := serviceModified(test.oldSvc, test.newSvc)
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		if test.ichanged != ichanged || test.echanged != echanged {
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			t.Errorf("Expected %v, %v for test %v. Got %v, %v", test.ichanged, test.echanged, i, ichanged, echanged)
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		}
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	}
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}
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