mirror of
https://github.com/ceph/ceph-csi.git
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483 lines
15 KiB
Go
483 lines
15 KiB
Go
/*
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Copyright 2016 The Kubernetes Authors.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package winuserspace
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import (
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"fmt"
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"net"
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"strconv"
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"strings"
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"sync"
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"sync/atomic"
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"time"
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"k8s.io/klog"
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"k8s.io/api/core/v1"
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"k8s.io/apimachinery/pkg/types"
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utilnet "k8s.io/apimachinery/pkg/util/net"
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"k8s.io/apimachinery/pkg/util/runtime"
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"k8s.io/kubernetes/pkg/apis/core/v1/helper"
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"k8s.io/kubernetes/pkg/proxy"
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"k8s.io/kubernetes/pkg/util/netsh"
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)
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const allAvailableInterfaces string = ""
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type portal struct {
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ip string
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port int
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isExternal bool
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}
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type serviceInfo struct {
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isAliveAtomic int32 // Only access this with atomic ops
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portal portal
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protocol v1.Protocol
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socket proxySocket
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timeout time.Duration
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activeClients *clientCache
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dnsClients *dnsClientCache
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sessionAffinityType v1.ServiceAffinity
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}
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func (info *serviceInfo) setAlive(b bool) {
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var i int32
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if b {
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i = 1
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}
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atomic.StoreInt32(&info.isAliveAtomic, i)
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}
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func (info *serviceInfo) isAlive() bool {
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return atomic.LoadInt32(&info.isAliveAtomic) != 0
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}
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func logTimeout(err error) bool {
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if e, ok := err.(net.Error); ok {
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if e.Timeout() {
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klog.V(3).Infof("connection to endpoint closed due to inactivity")
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return true
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}
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}
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return false
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}
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// Proxier is a simple proxy for TCP connections between a localhost:lport
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// and services that provide the actual implementations.
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type Proxier struct {
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loadBalancer LoadBalancer
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mu sync.Mutex // protects serviceMap
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serviceMap map[ServicePortPortalName]*serviceInfo
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syncPeriod time.Duration
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udpIdleTimeout time.Duration
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portMapMutex sync.Mutex
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portMap map[portMapKey]*portMapValue
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numProxyLoops int32 // use atomic ops to access this; mostly for testing
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netsh netsh.Interface
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hostIP net.IP
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}
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// assert Proxier is a ProxyProvider
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var _ proxy.ProxyProvider = &Proxier{}
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// A key for the portMap. The ip has to be a string because slices can't be map
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// keys.
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type portMapKey struct {
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ip string
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port int
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protocol v1.Protocol
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}
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func (k *portMapKey) String() string {
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return fmt.Sprintf("%s/%s", net.JoinHostPort(k.ip, strconv.Itoa(k.port)), k.protocol)
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}
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// A value for the portMap
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type portMapValue struct {
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owner ServicePortPortalName
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socket interface {
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Close() error
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}
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}
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var (
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// ErrProxyOnLocalhost is returned by NewProxier if the user requests a proxier on
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// the loopback address. May be checked for by callers of NewProxier to know whether
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// the caller provided invalid input.
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ErrProxyOnLocalhost = fmt.Errorf("cannot proxy on localhost")
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)
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// Used below.
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var localhostIPv4 = net.ParseIP("127.0.0.1")
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var localhostIPv6 = net.ParseIP("::1")
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// NewProxier returns a new Proxier given a LoadBalancer and an address on
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// which to listen. It is assumed that there is only a single Proxier active
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// on a machine. An error will be returned if the proxier cannot be started
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// due to an invalid ListenIP (loopback)
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func NewProxier(loadBalancer LoadBalancer, listenIP net.IP, netsh netsh.Interface, pr utilnet.PortRange, syncPeriod, udpIdleTimeout time.Duration) (*Proxier, error) {
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if listenIP.Equal(localhostIPv4) || listenIP.Equal(localhostIPv6) {
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return nil, ErrProxyOnLocalhost
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}
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hostIP, err := utilnet.ChooseHostInterface()
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if err != nil {
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return nil, fmt.Errorf("failed to select a host interface: %v", err)
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}
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klog.V(2).Infof("Setting proxy IP to %v", hostIP)
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return createProxier(loadBalancer, listenIP, netsh, hostIP, syncPeriod, udpIdleTimeout)
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}
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func createProxier(loadBalancer LoadBalancer, listenIP net.IP, netsh netsh.Interface, hostIP net.IP, syncPeriod, udpIdleTimeout time.Duration) (*Proxier, error) {
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return &Proxier{
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loadBalancer: loadBalancer,
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serviceMap: make(map[ServicePortPortalName]*serviceInfo),
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portMap: make(map[portMapKey]*portMapValue),
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syncPeriod: syncPeriod,
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udpIdleTimeout: udpIdleTimeout,
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netsh: netsh,
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hostIP: hostIP,
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}, nil
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}
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// Sync is called to immediately synchronize the proxier state
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func (proxier *Proxier) Sync() {
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proxier.cleanupStaleStickySessions()
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}
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// SyncLoop runs periodic work. This is expected to run as a goroutine or as the main loop of the app. It does not return.
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func (proxier *Proxier) SyncLoop() {
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t := time.NewTicker(proxier.syncPeriod)
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defer t.Stop()
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for {
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<-t.C
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klog.V(6).Infof("Periodic sync")
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proxier.Sync()
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}
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}
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// cleanupStaleStickySessions cleans up any stale sticky session records in the hash map.
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func (proxier *Proxier) cleanupStaleStickySessions() {
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proxier.mu.Lock()
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defer proxier.mu.Unlock()
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servicePortNameMap := make(map[proxy.ServicePortName]bool)
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for name := range proxier.serviceMap {
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servicePortName := proxy.ServicePortName{
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NamespacedName: types.NamespacedName{
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Namespace: name.Namespace,
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Name: name.Name,
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},
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Port: name.Port,
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}
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if servicePortNameMap[servicePortName] == false {
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// ensure cleanup sticky sessions only gets called once per serviceportname
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servicePortNameMap[servicePortName] = true
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proxier.loadBalancer.CleanupStaleStickySessions(servicePortName)
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}
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}
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}
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// This assumes proxier.mu is not locked.
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func (proxier *Proxier) stopProxy(service ServicePortPortalName, info *serviceInfo) error {
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proxier.mu.Lock()
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defer proxier.mu.Unlock()
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return proxier.stopProxyInternal(service, info)
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}
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// This assumes proxier.mu is locked.
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func (proxier *Proxier) stopProxyInternal(service ServicePortPortalName, info *serviceInfo) error {
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delete(proxier.serviceMap, service)
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info.setAlive(false)
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err := info.socket.Close()
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return err
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}
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func (proxier *Proxier) getServiceInfo(service ServicePortPortalName) (*serviceInfo, bool) {
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proxier.mu.Lock()
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defer proxier.mu.Unlock()
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info, ok := proxier.serviceMap[service]
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return info, ok
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}
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func (proxier *Proxier) setServiceInfo(service ServicePortPortalName, info *serviceInfo) {
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proxier.mu.Lock()
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defer proxier.mu.Unlock()
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proxier.serviceMap[service] = info
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}
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// addServicePortPortal starts listening for a new service, returning the serviceInfo.
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// The timeout only applies to UDP connections, for now.
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func (proxier *Proxier) addServicePortPortal(servicePortPortalName ServicePortPortalName, protocol v1.Protocol, listenIP string, port int, timeout time.Duration) (*serviceInfo, error) {
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var serviceIP net.IP
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if listenIP != allAvailableInterfaces {
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if serviceIP = net.ParseIP(listenIP); serviceIP == nil {
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return nil, fmt.Errorf("could not parse ip '%q'", listenIP)
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}
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// add the IP address. Node port binds to all interfaces.
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args := proxier.netshIpv4AddressAddArgs(serviceIP)
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if existed, err := proxier.netsh.EnsureIPAddress(args, serviceIP); err != nil {
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return nil, err
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} else if !existed {
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klog.V(3).Infof("Added ip address to fowarder interface for service %q at %s/%s", servicePortPortalName, net.JoinHostPort(listenIP, strconv.Itoa(port)), protocol)
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}
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}
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// add the listener, proxy
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sock, err := newProxySocket(protocol, serviceIP, port)
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if err != nil {
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return nil, err
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}
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si := &serviceInfo{
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isAliveAtomic: 1,
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portal: portal{
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ip: listenIP,
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port: port,
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isExternal: false,
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},
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protocol: protocol,
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socket: sock,
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timeout: timeout,
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activeClients: newClientCache(),
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dnsClients: newDNSClientCache(),
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sessionAffinityType: v1.ServiceAffinityNone, // default
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}
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proxier.setServiceInfo(servicePortPortalName, si)
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klog.V(2).Infof("Proxying for service %q at %s/%s", servicePortPortalName, net.JoinHostPort(listenIP, strconv.Itoa(port)), protocol)
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go func(service ServicePortPortalName, proxier *Proxier) {
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defer runtime.HandleCrash()
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atomic.AddInt32(&proxier.numProxyLoops, 1)
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sock.ProxyLoop(service, si, proxier)
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atomic.AddInt32(&proxier.numProxyLoops, -1)
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}(servicePortPortalName, proxier)
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return si, nil
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}
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func (proxier *Proxier) closeServicePortPortal(servicePortPortalName ServicePortPortalName, info *serviceInfo) error {
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// turn off the proxy
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if err := proxier.stopProxy(servicePortPortalName, info); err != nil {
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return err
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}
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// close the PortalProxy by deleting the service IP address
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if info.portal.ip != allAvailableInterfaces {
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serviceIP := net.ParseIP(info.portal.ip)
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args := proxier.netshIpv4AddressDeleteArgs(serviceIP)
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if err := proxier.netsh.DeleteIPAddress(args); err != nil {
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return err
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}
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}
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return nil
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}
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// getListenIPPortMap returns a slice of all listen IPs for a service.
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func getListenIPPortMap(service *v1.Service, listenPort int, nodePort int) map[string]int {
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listenIPPortMap := make(map[string]int)
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listenIPPortMap[service.Spec.ClusterIP] = listenPort
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for _, ip := range service.Spec.ExternalIPs {
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listenIPPortMap[ip] = listenPort
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}
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for _, ingress := range service.Status.LoadBalancer.Ingress {
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listenIPPortMap[ingress.IP] = listenPort
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}
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if nodePort != 0 {
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listenIPPortMap[allAvailableInterfaces] = nodePort
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}
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return listenIPPortMap
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}
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func (proxier *Proxier) mergeService(service *v1.Service) map[ServicePortPortalName]bool {
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if service == nil {
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return nil
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}
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svcName := types.NamespacedName{Namespace: service.Namespace, Name: service.Name}
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if !helper.IsServiceIPSet(service) {
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klog.V(3).Infof("Skipping service %s due to clusterIP = %q", svcName, service.Spec.ClusterIP)
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return nil
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}
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existingPortPortals := make(map[ServicePortPortalName]bool)
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for i := range service.Spec.Ports {
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servicePort := &service.Spec.Ports[i]
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// create a slice of all the source IPs to use for service port portals
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listenIPPortMap := getListenIPPortMap(service, int(servicePort.Port), int(servicePort.NodePort))
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protocol := servicePort.Protocol
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for listenIP, listenPort := range listenIPPortMap {
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servicePortPortalName := ServicePortPortalName{
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NamespacedName: svcName,
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Port: servicePort.Name,
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PortalIPName: listenIP,
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}
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existingPortPortals[servicePortPortalName] = true
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info, exists := proxier.getServiceInfo(servicePortPortalName)
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if exists && sameConfig(info, service, protocol, listenPort) {
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// Nothing changed.
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continue
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}
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if exists {
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klog.V(4).Infof("Something changed for service %q: stopping it", servicePortPortalName)
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if err := proxier.closeServicePortPortal(servicePortPortalName, info); err != nil {
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klog.Errorf("Failed to close service port portal %q: %v", servicePortPortalName, err)
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}
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}
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klog.V(1).Infof("Adding new service %q at %s/%s", servicePortPortalName, net.JoinHostPort(listenIP, strconv.Itoa(listenPort)), protocol)
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info, err := proxier.addServicePortPortal(servicePortPortalName, protocol, listenIP, listenPort, proxier.udpIdleTimeout)
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if err != nil {
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klog.Errorf("Failed to start proxy for %q: %v", servicePortPortalName, err)
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continue
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}
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info.sessionAffinityType = service.Spec.SessionAffinity
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klog.V(10).Infof("info: %#v", info)
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}
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if len(listenIPPortMap) > 0 {
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// only one loadbalancer per service port portal
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servicePortName := proxy.ServicePortName{
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NamespacedName: types.NamespacedName{
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Namespace: service.Namespace,
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Name: service.Name,
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},
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Port: servicePort.Name,
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}
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timeoutSeconds := 0
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if service.Spec.SessionAffinity == v1.ServiceAffinityClientIP {
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timeoutSeconds = int(*service.Spec.SessionAffinityConfig.ClientIP.TimeoutSeconds)
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}
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proxier.loadBalancer.NewService(servicePortName, service.Spec.SessionAffinity, timeoutSeconds)
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}
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}
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return existingPortPortals
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}
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func (proxier *Proxier) unmergeService(service *v1.Service, existingPortPortals map[ServicePortPortalName]bool) {
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if service == nil {
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return
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}
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svcName := types.NamespacedName{Namespace: service.Namespace, Name: service.Name}
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if !helper.IsServiceIPSet(service) {
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klog.V(3).Infof("Skipping service %s due to clusterIP = %q", svcName, service.Spec.ClusterIP)
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return
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}
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servicePortNameMap := make(map[proxy.ServicePortName]bool)
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for name := range existingPortPortals {
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servicePortName := proxy.ServicePortName{
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NamespacedName: types.NamespacedName{
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Namespace: name.Namespace,
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Name: name.Name,
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},
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Port: name.Port,
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}
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servicePortNameMap[servicePortName] = true
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}
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for i := range service.Spec.Ports {
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servicePort := &service.Spec.Ports[i]
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serviceName := proxy.ServicePortName{NamespacedName: svcName, Port: servicePort.Name}
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// create a slice of all the source IPs to use for service port portals
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listenIPPortMap := getListenIPPortMap(service, int(servicePort.Port), int(servicePort.NodePort))
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for listenIP := range listenIPPortMap {
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servicePortPortalName := ServicePortPortalName{
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NamespacedName: svcName,
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Port: servicePort.Name,
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PortalIPName: listenIP,
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}
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if existingPortPortals[servicePortPortalName] {
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continue
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}
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klog.V(1).Infof("Stopping service %q", servicePortPortalName)
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info, exists := proxier.getServiceInfo(servicePortPortalName)
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if !exists {
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klog.Errorf("Service %q is being removed but doesn't exist", servicePortPortalName)
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continue
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}
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if err := proxier.closeServicePortPortal(servicePortPortalName, info); err != nil {
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klog.Errorf("Failed to close service port portal %q: %v", servicePortPortalName, err)
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}
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}
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// Only delete load balancer if all listen ips per name/port show inactive.
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if !servicePortNameMap[serviceName] {
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proxier.loadBalancer.DeleteService(serviceName)
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}
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}
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}
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func (proxier *Proxier) OnServiceAdd(service *v1.Service) {
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_ = proxier.mergeService(service)
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}
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func (proxier *Proxier) OnServiceUpdate(oldService, service *v1.Service) {
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existingPortPortals := proxier.mergeService(service)
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proxier.unmergeService(oldService, existingPortPortals)
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}
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func (proxier *Proxier) OnServiceDelete(service *v1.Service) {
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proxier.unmergeService(service, map[ServicePortPortalName]bool{})
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}
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func (proxier *Proxier) OnServiceSynced() {
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}
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func sameConfig(info *serviceInfo, service *v1.Service, protocol v1.Protocol, listenPort int) bool {
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return info.protocol == protocol && info.portal.port == listenPort && info.sessionAffinityType == service.Spec.SessionAffinity
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}
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func isTooManyFDsError(err error) bool {
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return strings.Contains(err.Error(), "too many open files")
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}
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func isClosedError(err error) bool {
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// A brief discussion about handling closed error here:
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// https://code.google.com/p/go/issues/detail?id=4373#c14
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// TODO: maybe create a stoppable TCP listener that returns a StoppedError
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return strings.HasSuffix(err.Error(), "use of closed network connection")
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}
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func (proxier *Proxier) netshIpv4AddressAddArgs(destIP net.IP) []string {
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intName := proxier.netsh.GetInterfaceToAddIP()
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args := []string{
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"interface", "ipv4", "add", "address",
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"name=" + intName,
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"address=" + destIP.String(),
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}
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return args
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}
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func (proxier *Proxier) netshIpv4AddressDeleteArgs(destIP net.IP) []string {
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intName := proxier.netsh.GetInterfaceToAddIP()
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args := []string{
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"interface", "ipv4", "delete", "address",
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"name=" + intName,
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"address=" + destIP.String(),
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}
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return args
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}
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