2018-03-06 22:33:18 +00:00
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/*
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Copyright 2017 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 proxy
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import (
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"fmt"
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"net"
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"reflect"
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"strings"
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"sync"
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2018-11-26 18:23:56 +00:00
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"k8s.io/klog"
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2018-03-06 22:33:18 +00:00
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2018-11-26 18:23:56 +00:00
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"k8s.io/api/core/v1"
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2018-03-06 22:33:18 +00:00
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"k8s.io/apimachinery/pkg/types"
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"k8s.io/apimachinery/pkg/util/sets"
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"k8s.io/client-go/tools/record"
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2018-11-26 18:23:56 +00:00
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apiservice "k8s.io/kubernetes/pkg/api/v1/service"
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2018-03-06 22:33:18 +00:00
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utilproxy "k8s.io/kubernetes/pkg/proxy/util"
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utilnet "k8s.io/kubernetes/pkg/util/net"
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)
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// BaseServiceInfo contains base information that defines a service.
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// This could be used directly by proxier while processing services,
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// or can be used for constructing a more specific ServiceInfo struct
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// defined by the proxier if needed.
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type BaseServiceInfo struct {
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ClusterIP net.IP
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Port int
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Protocol v1.Protocol
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NodePort int
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LoadBalancerStatus v1.LoadBalancerStatus
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SessionAffinityType v1.ServiceAffinity
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StickyMaxAgeSeconds int
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ExternalIPs []string
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LoadBalancerSourceRanges []string
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HealthCheckNodePort int
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OnlyNodeLocalEndpoints bool
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}
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var _ ServicePort = &BaseServiceInfo{}
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// String is part of ServicePort interface.
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func (info *BaseServiceInfo) String() string {
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return fmt.Sprintf("%s:%d/%s", info.ClusterIP, info.Port, info.Protocol)
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}
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// ClusterIPString is part of ServicePort interface.
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func (info *BaseServiceInfo) ClusterIPString() string {
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return info.ClusterIP.String()
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}
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// GetProtocol is part of ServicePort interface.
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func (info *BaseServiceInfo) GetProtocol() v1.Protocol {
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return info.Protocol
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}
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// GetHealthCheckNodePort is part of ServicePort interface.
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func (info *BaseServiceInfo) GetHealthCheckNodePort() int {
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return info.HealthCheckNodePort
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}
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func (sct *ServiceChangeTracker) newBaseServiceInfo(port *v1.ServicePort, service *v1.Service) *BaseServiceInfo {
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onlyNodeLocalEndpoints := false
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if apiservice.RequestsOnlyLocalTraffic(service) {
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onlyNodeLocalEndpoints = true
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}
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var stickyMaxAgeSeconds int
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if service.Spec.SessionAffinity == v1.ServiceAffinityClientIP {
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// Kube-apiserver side guarantees SessionAffinityConfig won't be nil when session affinity type is ClientIP
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stickyMaxAgeSeconds = int(*service.Spec.SessionAffinityConfig.ClientIP.TimeoutSeconds)
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}
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info := &BaseServiceInfo{
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ClusterIP: net.ParseIP(service.Spec.ClusterIP),
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Port: int(port.Port),
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Protocol: port.Protocol,
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NodePort: int(port.NodePort),
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// Deep-copy in case the service instance changes
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LoadBalancerStatus: *service.Status.LoadBalancer.DeepCopy(),
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SessionAffinityType: service.Spec.SessionAffinity,
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StickyMaxAgeSeconds: stickyMaxAgeSeconds,
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OnlyNodeLocalEndpoints: onlyNodeLocalEndpoints,
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}
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if sct.isIPv6Mode == nil {
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info.ExternalIPs = make([]string, len(service.Spec.ExternalIPs))
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info.LoadBalancerSourceRanges = make([]string, len(service.Spec.LoadBalancerSourceRanges))
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copy(info.LoadBalancerSourceRanges, service.Spec.LoadBalancerSourceRanges)
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copy(info.ExternalIPs, service.Spec.ExternalIPs)
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} else {
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// Filter out the incorrect IP version case.
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// If ExternalIPs and LoadBalancerSourceRanges on service contains incorrect IP versions,
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// only filter out the incorrect ones.
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var incorrectIPs []string
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info.ExternalIPs, incorrectIPs = utilnet.FilterIncorrectIPVersion(service.Spec.ExternalIPs, *sct.isIPv6Mode)
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if len(incorrectIPs) > 0 {
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utilproxy.LogAndEmitIncorrectIPVersionEvent(sct.recorder, "externalIPs", strings.Join(incorrectIPs, ","), service.Namespace, service.Name, service.UID)
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}
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info.LoadBalancerSourceRanges, incorrectIPs = utilnet.FilterIncorrectCIDRVersion(service.Spec.LoadBalancerSourceRanges, *sct.isIPv6Mode)
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if len(incorrectIPs) > 0 {
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utilproxy.LogAndEmitIncorrectIPVersionEvent(sct.recorder, "loadBalancerSourceRanges", strings.Join(incorrectIPs, ","), service.Namespace, service.Name, service.UID)
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}
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}
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if apiservice.NeedsHealthCheck(service) {
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p := service.Spec.HealthCheckNodePort
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if p == 0 {
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klog.Errorf("Service %s/%s has no healthcheck nodeport", service.Namespace, service.Name)
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} else {
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info.HealthCheckNodePort = int(p)
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}
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}
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return info
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}
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2018-11-26 18:23:56 +00:00
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type makeServicePortFunc func(*v1.ServicePort, *v1.Service, *BaseServiceInfo) ServicePort
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// serviceChange contains all changes to services that happened since proxy rules were synced. For a single object,
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// changes are accumulated, i.e. previous is state from before applying the changes,
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// current is state after applying all of the changes.
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type serviceChange struct {
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previous ServiceMap
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current ServiceMap
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}
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// ServiceChangeTracker carries state about uncommitted changes to an arbitrary number of
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// Services, keyed by their namespace and name.
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type ServiceChangeTracker struct {
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// lock protects items.
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lock sync.Mutex
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// items maps a service to its serviceChange.
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items map[types.NamespacedName]*serviceChange
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// makeServiceInfo allows proxier to inject customized information when processing service.
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makeServiceInfo makeServicePortFunc
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// isIPv6Mode indicates if change tracker is under IPv6/IPv4 mode. Nil means not applicable.
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isIPv6Mode *bool
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recorder record.EventRecorder
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}
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// NewServiceChangeTracker initializes a ServiceChangeTracker
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func NewServiceChangeTracker(makeServiceInfo makeServicePortFunc, isIPv6Mode *bool, recorder record.EventRecorder) *ServiceChangeTracker {
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return &ServiceChangeTracker{
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items: make(map[types.NamespacedName]*serviceChange),
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makeServiceInfo: makeServiceInfo,
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isIPv6Mode: isIPv6Mode,
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recorder: recorder,
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}
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}
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// Update updates given service's change map based on the <previous, current> service pair. It returns true if items changed,
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// otherwise return false. Update can be used to add/update/delete items of ServiceChangeMap. For example,
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// Add item
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// - pass <nil, service> as the <previous, current> pair.
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// Update item
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// - pass <oldService, service> as the <previous, current> pair.
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// Delete item
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// - pass <service, nil> as the <previous, current> pair.
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func (sct *ServiceChangeTracker) Update(previous, current *v1.Service) bool {
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svc := current
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if svc == nil {
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svc = previous
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}
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// previous == nil && current == nil is unexpected, we should return false directly.
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if svc == nil {
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return false
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}
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namespacedName := types.NamespacedName{Namespace: svc.Namespace, Name: svc.Name}
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sct.lock.Lock()
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defer sct.lock.Unlock()
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change, exists := sct.items[namespacedName]
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if !exists {
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change = &serviceChange{}
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change.previous = sct.serviceToServiceMap(previous)
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sct.items[namespacedName] = change
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}
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change.current = sct.serviceToServiceMap(current)
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// if change.previous equal to change.current, it means no change
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if reflect.DeepEqual(change.previous, change.current) {
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delete(sct.items, namespacedName)
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}
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return len(sct.items) > 0
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}
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// UpdateServiceMapResult is the updated results after applying service changes.
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type UpdateServiceMapResult struct {
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// HCServiceNodePorts is a map of Service names to node port numbers which indicate the health of that Service on this Node.
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// The value(uint16) of HCServices map is the service health check node port.
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HCServiceNodePorts map[types.NamespacedName]uint16
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// UDPStaleClusterIP holds stale (no longer assigned to a Service) Service IPs that had UDP ports.
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// Callers can use this to abort timeout-waits or clear connection-tracking information.
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UDPStaleClusterIP sets.String
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}
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// UpdateServiceMap updates ServiceMap based on the given changes.
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func UpdateServiceMap(serviceMap ServiceMap, changes *ServiceChangeTracker) (result UpdateServiceMapResult) {
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result.UDPStaleClusterIP = sets.NewString()
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serviceMap.apply(changes, result.UDPStaleClusterIP)
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// TODO: If this will appear to be computationally expensive, consider
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// computing this incrementally similarly to serviceMap.
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result.HCServiceNodePorts = make(map[types.NamespacedName]uint16)
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for svcPortName, info := range serviceMap {
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if info.GetHealthCheckNodePort() != 0 {
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result.HCServiceNodePorts[svcPortName.NamespacedName] = uint16(info.GetHealthCheckNodePort())
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}
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}
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return result
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}
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// ServiceMap maps a service to its ServicePort.
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type ServiceMap map[ServicePortName]ServicePort
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// serviceToServiceMap translates a single Service object to a ServiceMap.
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//
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// NOTE: service object should NOT be modified.
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func (sct *ServiceChangeTracker) serviceToServiceMap(service *v1.Service) ServiceMap {
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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 utilproxy.ShouldSkipService(svcName, service) {
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return nil
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}
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if len(service.Spec.ClusterIP) != 0 {
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// Filter out the incorrect IP version case.
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// If ClusterIP on service has incorrect IP version, service itself will be ignored.
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if sct.isIPv6Mode != nil && utilnet.IsIPv6String(service.Spec.ClusterIP) != *sct.isIPv6Mode {
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utilproxy.LogAndEmitIncorrectIPVersionEvent(sct.recorder, "clusterIP", service.Spec.ClusterIP, service.Namespace, service.Name, service.UID)
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return nil
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}
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}
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serviceMap := make(ServiceMap)
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for i := range service.Spec.Ports {
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servicePort := &service.Spec.Ports[i]
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svcPortName := ServicePortName{NamespacedName: svcName, Port: servicePort.Name}
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baseSvcInfo := sct.newBaseServiceInfo(servicePort, service)
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if sct.makeServiceInfo != nil {
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serviceMap[svcPortName] = sct.makeServiceInfo(servicePort, service, baseSvcInfo)
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} else {
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serviceMap[svcPortName] = baseSvcInfo
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}
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}
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return serviceMap
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}
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// apply the changes to ServiceMap and update the stale udp cluster IP set. The UDPStaleClusterIP argument is passed in to store the
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// udp protocol service cluster ip when service is deleted from the ServiceMap.
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func (serviceMap *ServiceMap) apply(changes *ServiceChangeTracker, UDPStaleClusterIP sets.String) {
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changes.lock.Lock()
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defer changes.lock.Unlock()
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for _, change := range changes.items {
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serviceMap.merge(change.current)
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// filter out the Update event of current changes from previous changes before calling unmerge() so that can
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// skip deleting the Update events.
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change.previous.filter(change.current)
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serviceMap.unmerge(change.previous, UDPStaleClusterIP)
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}
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// clear changes after applying them to ServiceMap.
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changes.items = make(map[types.NamespacedName]*serviceChange)
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return
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}
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// merge adds other ServiceMap's elements to current ServiceMap.
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// If collision, other ALWAYS win. Otherwise add the other to current.
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// In other words, if some elements in current collisions with other, update the current by other.
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// It returns a string type set which stores all the newly merged services' identifier, ServicePortName.String(), to help users
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// tell if a service is deleted or updated.
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// The returned value is one of the arguments of ServiceMap.unmerge().
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// ServiceMap A Merge ServiceMap B will do following 2 things:
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// * update ServiceMap A.
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// * produce a string set which stores all other ServiceMap's ServicePortName.String().
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// For example,
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// - A{}
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// - B{{"ns", "cluster-ip", "http"}: {"172.16.55.10", 1234, "TCP"}}
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// - A updated to be {{"ns", "cluster-ip", "http"}: {"172.16.55.10", 1234, "TCP"}}
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// - produce string set {"ns/cluster-ip:http"}
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// - A{{"ns", "cluster-ip", "http"}: {"172.16.55.10", 345, "UDP"}}
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// - B{{"ns", "cluster-ip", "http"}: {"172.16.55.10", 1234, "TCP"}}
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// - A updated to be {{"ns", "cluster-ip", "http"}: {"172.16.55.10", 1234, "TCP"}}
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// - produce string set {"ns/cluster-ip:http"}
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func (sm *ServiceMap) merge(other ServiceMap) sets.String {
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// existingPorts is going to store all identifiers of all services in `other` ServiceMap.
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existingPorts := sets.NewString()
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for svcPortName, info := range other {
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// Take ServicePortName.String() as the newly merged service's identifier and put it into existingPorts.
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existingPorts.Insert(svcPortName.String())
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_, exists := (*sm)[svcPortName]
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if !exists {
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klog.V(1).Infof("Adding new service port %q at %s", svcPortName, info.String())
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} else {
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klog.V(1).Infof("Updating existing service port %q at %s", svcPortName, info.String())
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}
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(*sm)[svcPortName] = info
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}
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return existingPorts
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}
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// filter filters out elements from ServiceMap base on given ports string sets.
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func (sm *ServiceMap) filter(other ServiceMap) {
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for svcPortName := range *sm {
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|
|
|
// skip the delete for Update event.
|
|
|
|
if _, ok := other[svcPortName]; ok {
|
|
|
|
delete(*sm, svcPortName)
|
|
|
|
}
|
|
|
|
}
|
|
|
|
}
|
|
|
|
|
|
|
|
// unmerge deletes all other ServiceMap's elements from current ServiceMap. We pass in the UDPStaleClusterIP strings sets
|
|
|
|
// for storing the stale udp service cluster IPs. We will clear stale udp connection base on UDPStaleClusterIP later
|
|
|
|
func (sm *ServiceMap) unmerge(other ServiceMap, UDPStaleClusterIP sets.String) {
|
|
|
|
for svcPortName := range other {
|
|
|
|
info, exists := (*sm)[svcPortName]
|
|
|
|
if exists {
|
2018-11-26 18:23:56 +00:00
|
|
|
klog.V(1).Infof("Removing service port %q", svcPortName)
|
|
|
|
if info.GetProtocol() == v1.ProtocolUDP {
|
2018-03-06 22:33:18 +00:00
|
|
|
UDPStaleClusterIP.Insert(info.ClusterIPString())
|
|
|
|
}
|
|
|
|
delete(*sm, svcPortName)
|
|
|
|
} else {
|
2018-11-26 18:23:56 +00:00
|
|
|
klog.Errorf("Service port %q doesn't exists", svcPortName)
|
2018-03-06 22:33:18 +00:00
|
|
|
}
|
|
|
|
}
|
|
|
|
}
|