mirror of
https://github.com/tailscale/tailscale.git
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3af0f526b8
* cmd/containerboot,util/linuxfw: support proxy backends specified by DNS name Adds support for optionally configuring containerboot to proxy traffic to backends configured by passing TS_EXPERIMENTAL_DEST_DNS_NAME env var to containerboot. Containerboot will periodically (every 10 minutes) attempt to resolve the DNS name and ensure that all traffic sent to the node's tailnet IP gets forwarded to the resolved backend IP addresses. Currently: - if the firewall mode is iptables, traffic will be load balanced accross the backend IP addresses using round robin. There are no health checks for whether the IPs are reachable. - if the firewall mode is nftables traffic will only be forwarded to the first IP address in the list. This is to be improved. * cmd/k8s-operator: support ExternalName Services Adds support for exposing endpoints, accessible from within a cluster to the tailnet via DNS names using ExternalName Services. This can be done by annotating the ExternalName Service with tailscale.com/expose: "true" annotation. The operator will deploy a proxy configured to route tailnet traffic to the backend IPs that service.spec.externalName resolves to. The backend IPs must be reachable from the operator's namespace. Updates tailscale/tailscale#10606 Signed-off-by: Irbe Krumina <irbe@tailscale.com>
412 lines
16 KiB
Go
412 lines
16 KiB
Go
// Copyright (c) Tailscale Inc & AUTHORS
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// SPDX-License-Identifier: BSD-3-Clause
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//go:build !plan9
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package main
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import (
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"context"
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"fmt"
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"net/netip"
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"slices"
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"strings"
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"sync"
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"go.uber.org/zap"
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corev1 "k8s.io/api/core/v1"
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apierrors "k8s.io/apimachinery/pkg/api/errors"
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"k8s.io/apimachinery/pkg/types"
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"k8s.io/client-go/tools/record"
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"sigs.k8s.io/controller-runtime/pkg/client"
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"sigs.k8s.io/controller-runtime/pkg/reconcile"
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tsoperator "tailscale.com/k8s-operator"
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tsapi "tailscale.com/k8s-operator/apis/v1alpha1"
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"tailscale.com/net/dns/resolvconffile"
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"tailscale.com/util/clientmetric"
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"tailscale.com/util/set"
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)
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const (
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resolvConfPath = "/etc/resolv.conf"
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defaultClusterDomain = "cluster.local"
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)
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type ServiceReconciler struct {
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client.Client
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ssr *tailscaleSTSReconciler
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logger *zap.SugaredLogger
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isDefaultLoadBalancer bool
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mu sync.Mutex // protects following
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// managedIngressProxies is a set of all ingress proxies that we're
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// currently managing. This is only used for metrics.
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managedIngressProxies set.Slice[types.UID]
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// managedEgressProxies is a set of all egress proxies that we're currently
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// managing. This is only used for metrics.
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managedEgressProxies set.Slice[types.UID]
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recorder record.EventRecorder
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tsNamespace string
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}
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var (
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// gaugeEgressProxies tracks the number of egress proxies that we're
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// currently managing.
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gaugeEgressProxies = clientmetric.NewGauge("k8s_egress_proxies")
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// gaugeIngressProxies tracks the number of ingress proxies that we're
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// currently managing.
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gaugeIngressProxies = clientmetric.NewGauge("k8s_ingress_proxies")
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)
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func childResourceLabels(name, ns, typ string) map[string]string {
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// You might wonder why we're using owner references, since they seem to be
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// built for exactly this. Unfortunately, Kubernetes does not support
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// cross-namespace ownership, by design. This means we cannot make the
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// service being exposed the owner of the implementation details of the
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// proxying. Instead, we have to do our own filtering and tracking with
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// labels.
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return map[string]string{
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LabelManaged: "true",
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LabelParentName: name,
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LabelParentNamespace: ns,
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LabelParentType: typ,
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}
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}
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func (a *ServiceReconciler) Reconcile(ctx context.Context, req reconcile.Request) (_ reconcile.Result, err error) {
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logger := a.logger.With("service-ns", req.Namespace, "service-name", req.Name)
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logger.Debugf("starting reconcile")
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defer logger.Debugf("reconcile finished")
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svc := new(corev1.Service)
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err = a.Get(ctx, req.NamespacedName, svc)
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if apierrors.IsNotFound(err) {
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// Request object not found, could have been deleted after reconcile request.
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logger.Debugf("service not found, assuming it was deleted")
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return reconcile.Result{}, nil
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} else if err != nil {
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return reconcile.Result{}, fmt.Errorf("failed to get svc: %w", err)
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}
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targetIP := a.tailnetTargetAnnotation(svc)
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targetFQDN := svc.Annotations[AnnotationTailnetTargetFQDN]
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if !svc.DeletionTimestamp.IsZero() || !a.shouldExpose(svc) && targetIP == "" && targetFQDN == "" {
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logger.Debugf("service is being deleted or is (no longer) referring to Tailscale ingress/egress, ensuring any created resources are cleaned up")
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return reconcile.Result{}, a.maybeCleanup(ctx, logger, svc)
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}
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return reconcile.Result{}, a.maybeProvision(ctx, logger, svc)
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}
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// maybeCleanup removes any existing resources related to serving svc over tailscale.
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//
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// This function is responsible for removing the finalizer from the service,
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// once all associated resources are gone.
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func (a *ServiceReconciler) maybeCleanup(ctx context.Context, logger *zap.SugaredLogger, svc *corev1.Service) error {
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ix := slices.Index(svc.Finalizers, FinalizerName)
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if ix < 0 {
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logger.Debugf("no finalizer, nothing to do")
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a.mu.Lock()
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defer a.mu.Unlock()
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a.managedIngressProxies.Remove(svc.UID)
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a.managedEgressProxies.Remove(svc.UID)
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gaugeIngressProxies.Set(int64(a.managedIngressProxies.Len()))
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gaugeEgressProxies.Set(int64(a.managedEgressProxies.Len()))
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return nil
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}
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if done, err := a.ssr.Cleanup(ctx, logger, childResourceLabels(svc.Name, svc.Namespace, "svc")); err != nil {
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return fmt.Errorf("failed to cleanup: %w", err)
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} else if !done {
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logger.Debugf("cleanup not done yet, waiting for next reconcile")
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return nil
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}
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svc.Finalizers = append(svc.Finalizers[:ix], svc.Finalizers[ix+1:]...)
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if err := a.Update(ctx, svc); err != nil {
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return fmt.Errorf("failed to remove finalizer: %w", err)
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}
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// Unlike most log entries in the reconcile loop, this will get printed
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// exactly once at the very end of cleanup, because the final step of
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// cleanup removes the tailscale finalizer, which will make all future
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// reconciles exit early.
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logger.Infof("unexposed service from tailnet")
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a.mu.Lock()
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defer a.mu.Unlock()
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a.managedIngressProxies.Remove(svc.UID)
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a.managedEgressProxies.Remove(svc.UID)
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gaugeIngressProxies.Set(int64(a.managedIngressProxies.Len()))
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gaugeEgressProxies.Set(int64(a.managedEgressProxies.Len()))
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return nil
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}
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// maybeProvision ensures that svc is exposed over tailscale, taking any actions
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// necessary to reach that state.
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//
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// This function adds a finalizer to svc, ensuring that we can handle orderly
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// deprovisioning later.
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func (a *ServiceReconciler) maybeProvision(ctx context.Context, logger *zap.SugaredLogger, svc *corev1.Service) error {
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// Run for proxy config related validations here as opposed to running
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// them earlier. This is to prevent cleanup being blocked on a
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// misconfigured proxy param.
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if err := a.ssr.validate(); err != nil {
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msg := fmt.Sprintf("unable to provision proxy resources: invalid config: %v", err)
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a.recorder.Event(svc, corev1.EventTypeWarning, "INVALIDCONFIG", msg)
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a.logger.Error(msg)
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return nil
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}
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if violations := validateService(svc); len(violations) > 0 {
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msg := fmt.Sprintf("unable to provision proxy resources: invalid Service: %s", strings.Join(violations, ", "))
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a.recorder.Event(svc, corev1.EventTypeWarning, "INVALIDSERVCICE", msg)
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a.logger.Error(msg)
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return nil
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}
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proxyClass := proxyClassForObject(svc)
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if proxyClass != "" {
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if ready, err := proxyClassIsReady(ctx, proxyClass, a.Client); err != nil {
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return fmt.Errorf("error verifying ProxyClass for Service: %w", err)
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} else if !ready {
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logger.Infof("ProxyClass %s specified for the Service, but is not (yet) Ready, waiting..", proxyClass)
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return nil
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}
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}
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hostname, err := nameForService(svc)
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if err != nil {
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return err
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}
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if !slices.Contains(svc.Finalizers, FinalizerName) {
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// This log line is printed exactly once during initial provisioning,
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// because once the finalizer is in place this block gets skipped. So,
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// this is a nice place to tell the operator that the high level,
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// multi-reconcile operation is underway.
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logger.Infof("exposing service over tailscale")
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svc.Finalizers = append(svc.Finalizers, FinalizerName)
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if err := a.Update(ctx, svc); err != nil {
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return fmt.Errorf("failed to add finalizer: %w", err)
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}
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}
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crl := childResourceLabels(svc.Name, svc.Namespace, "svc")
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var tags []string
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if tstr, ok := svc.Annotations[AnnotationTags]; ok {
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tags = strings.Split(tstr, ",")
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}
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sts := &tailscaleSTSConfig{
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ParentResourceName: svc.Name,
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ParentResourceUID: string(svc.UID),
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Hostname: hostname,
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Tags: tags,
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ChildResourceLabels: crl,
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ProxyClass: proxyClass,
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}
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a.mu.Lock()
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if a.shouldExposeClusterIP(svc) {
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sts.ClusterTargetIP = svc.Spec.ClusterIP
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a.managedIngressProxies.Add(svc.UID)
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gaugeIngressProxies.Set(int64(a.managedIngressProxies.Len()))
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} else if a.shouldExposeDNSName(svc) {
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sts.ClusterTargetDNSName = svc.Spec.ExternalName
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a.managedIngressProxies.Add(svc.UID)
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gaugeIngressProxies.Set(int64(a.managedIngressProxies.Len()))
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} else if ip := a.tailnetTargetAnnotation(svc); ip != "" {
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sts.TailnetTargetIP = ip
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a.managedEgressProxies.Add(svc.UID)
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gaugeEgressProxies.Set(int64(a.managedEgressProxies.Len()))
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} else if fqdn := svc.Annotations[AnnotationTailnetTargetFQDN]; fqdn != "" {
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fqdn := svc.Annotations[AnnotationTailnetTargetFQDN]
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if !strings.HasSuffix(fqdn, ".") {
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fqdn = fqdn + "."
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}
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sts.TailnetTargetFQDN = fqdn
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a.managedEgressProxies.Add(svc.UID)
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gaugeEgressProxies.Set(int64(a.managedEgressProxies.Len()))
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}
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a.mu.Unlock()
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var hsvc *corev1.Service
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if hsvc, err = a.ssr.Provision(ctx, logger, sts); err != nil {
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return fmt.Errorf("failed to provision: %w", err)
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}
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if sts.TailnetTargetIP != "" || sts.TailnetTargetFQDN != "" {
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clusterDomain := retrieveClusterDomain(a.tsNamespace, logger)
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headlessSvcName := hsvc.Name + "." + hsvc.Namespace + ".svc." + clusterDomain
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if svc.Spec.ExternalName != headlessSvcName || svc.Spec.Type != corev1.ServiceTypeExternalName {
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svc.Spec.ExternalName = headlessSvcName
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svc.Spec.Selector = nil
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svc.Spec.Type = corev1.ServiceTypeExternalName
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if err := a.Update(ctx, svc); err != nil {
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return fmt.Errorf("failed to update service: %w", err)
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}
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}
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return nil
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}
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if !a.hasLoadBalancerClass(svc) {
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logger.Debugf("service is not a LoadBalancer, so not updating ingress")
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return nil
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}
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_, tsHost, tsIPs, err := a.ssr.DeviceInfo(ctx, crl)
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if err != nil {
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return fmt.Errorf("failed to get device ID: %w", err)
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}
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if tsHost == "" {
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logger.Debugf("no Tailscale hostname known yet, waiting for proxy pod to finish auth")
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// No hostname yet. Wait for the proxy pod to auth.
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svc.Status.LoadBalancer.Ingress = nil
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if err := a.Status().Update(ctx, svc); err != nil {
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return fmt.Errorf("failed to update service status: %w", err)
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}
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return nil
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}
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logger.Debugf("setting ingress to %q, %s", tsHost, strings.Join(tsIPs, ", "))
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ingress := []corev1.LoadBalancerIngress{
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{Hostname: tsHost},
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}
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clusterIPAddr, err := netip.ParseAddr(svc.Spec.ClusterIP)
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if err != nil {
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return fmt.Errorf("failed to parse cluster IP: %w", err)
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}
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for _, ip := range tsIPs {
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addr, err := netip.ParseAddr(ip)
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if err != nil {
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continue
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}
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if addr.Is4() == clusterIPAddr.Is4() { // only add addresses of the same family
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ingress = append(ingress, corev1.LoadBalancerIngress{IP: ip})
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}
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}
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svc.Status.LoadBalancer.Ingress = ingress
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if err := a.Status().Update(ctx, svc); err != nil {
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return fmt.Errorf("failed to update service status: %w", err)
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}
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return nil
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}
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func validateService(svc *corev1.Service) []string {
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violations := make([]string, 0)
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if svc.Annotations[AnnotationTailnetTargetFQDN] != "" && svc.Annotations[AnnotationTailnetTargetIP] != "" {
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violations = append(violations, "only one of annotations %s and %s can be set", AnnotationTailnetTargetIP, AnnotationTailnetTargetFQDN)
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}
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if fqdn := svc.Annotations[AnnotationTailnetTargetFQDN]; fqdn != "" {
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if !isMagicDNSName(fqdn) {
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violations = append(violations, fmt.Sprintf("invalid value of annotation %s: %q does not appear to be a valid MagicDNS name", AnnotationTailnetTargetFQDN, fqdn))
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}
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}
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return violations
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}
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func (a *ServiceReconciler) shouldExpose(svc *corev1.Service) bool {
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return a.shouldExposeClusterIP(svc) || a.shouldExposeDNSName(svc)
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}
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func (a *ServiceReconciler) shouldExposeClusterIP(svc *corev1.Service) bool {
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// Headless services can't be exposed, since there is no ClusterIP to
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// forward to.
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if svc.Spec.ClusterIP == "" || svc.Spec.ClusterIP == "None" {
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return false
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}
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return a.hasLoadBalancerClass(svc) || a.hasExposeAnnotation(svc)
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}
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func (a *ServiceReconciler) shouldExposeDNSName(svc *corev1.Service) bool {
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return a.hasExposeAnnotation(svc) && svc.Spec.Type == corev1.ServiceTypeExternalName && svc.Spec.ExternalName != ""
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}
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func (a *ServiceReconciler) hasLoadBalancerClass(svc *corev1.Service) bool {
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return svc != nil &&
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svc.Spec.Type == corev1.ServiceTypeLoadBalancer &&
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(svc.Spec.LoadBalancerClass != nil && *svc.Spec.LoadBalancerClass == "tailscale" ||
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svc.Spec.LoadBalancerClass == nil && a.isDefaultLoadBalancer)
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}
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// hasExposeAnnotation reports whether Service has the tailscale.com/expose
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// annotation set
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func (a *ServiceReconciler) hasExposeAnnotation(svc *corev1.Service) bool {
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return svc != nil && svc.Annotations[AnnotationExpose] == "true"
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}
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// hasTailnetTargetAnnotation returns the value of tailscale.com/tailnet-ip
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// annotation or of the deprecated tailscale.com/ts-tailnet-target-ip
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// annotation. If neither is set, it returns an empty string. If both are set,
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// it returns the value of the new annotation.
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func (a *ServiceReconciler) tailnetTargetAnnotation(svc *corev1.Service) string {
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if svc == nil {
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return ""
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}
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if ip := svc.Annotations[AnnotationTailnetTargetIP]; ip != "" {
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return ip
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}
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return svc.Annotations[annotationTailnetTargetIPOld]
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}
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func proxyClassForObject(o client.Object) string {
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return o.GetLabels()[LabelProxyClass]
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}
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func proxyClassIsReady(ctx context.Context, name string, cl client.Client) (bool, error) {
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proxyClass := new(tsapi.ProxyClass)
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if err := cl.Get(ctx, types.NamespacedName{Name: name}, proxyClass); err != nil {
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return false, fmt.Errorf("error getting ProxyClass %s: %w", name, err)
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}
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return tsoperator.ProxyClassIsReady(proxyClass), nil
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}
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// retrieveClusterDomain determines and retrieves cluster domain i.e
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// (cluster.local) in which this Pod is running by parsing search domains in
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// /etc/resolv.conf. If an error is encountered at any point during the process,
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// defaults cluster domain to 'cluster.local'.
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func retrieveClusterDomain(namespace string, logger *zap.SugaredLogger) string {
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logger.Infof("attempting to retrieve cluster domain..")
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conf, err := resolvconffile.ParseFile(resolvConfPath)
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if err != nil {
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// Vast majority of clusters use the cluster.local domain, so it
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// is probably better to fall back to that than error out.
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logger.Infof("[unexpected] error parsing /etc/resolv.conf to determine cluster domain, defaulting to 'cluster.local'.")
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return defaultClusterDomain
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}
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return clusterDomainFromResolverConf(conf, namespace, logger)
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}
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// clusterDomainFromResolverConf attempts to retrieve cluster domain from the provided resolver config.
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// It expects the first three search domains in the resolver config to be be ['<namespace>.svc.<cluster-domain>, svc.<cluster-domain>, <cluster-domain>, ...]
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// If the first three domains match the expected structure, it returns the third.
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// If the domains don't match the expected structure or an error is encountered, it defaults to 'cluster.local' domain.
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func clusterDomainFromResolverConf(conf *resolvconffile.Config, namespace string, logger *zap.SugaredLogger) string {
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if len(conf.SearchDomains) < 3 {
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logger.Infof("[unexpected] resolver config contains only %d search domains, at least three expected.\nDefaulting cluster domain to 'cluster.local'.")
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return defaultClusterDomain
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}
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first := conf.SearchDomains[0]
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if !strings.HasPrefix(string(first), namespace+".svc") {
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logger.Infof("[unexpected] first search domain in resolver config is %s; expected %s.\nDefaulting cluster domain to 'cluster.local'.", first, namespace+".svc.<cluster-domain>")
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return defaultClusterDomain
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}
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second := conf.SearchDomains[1]
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if !strings.HasPrefix(string(second), "svc") {
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logger.Infof("[unexpected] second search domain in resolver config is %s; expected 'svc.<cluster-domain>'.\nDefaulting cluster domain to 'cluster.local'.", second)
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return defaultClusterDomain
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}
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// Trim the trailing dot for backwards compatibility purposes as the
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// cluster domain was previously hardcoded to 'cluster.local' without a
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// trailing dot.
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probablyClusterDomain := strings.TrimPrefix(second.WithoutTrailingDot(), "svc.")
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third := conf.SearchDomains[2]
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if !strings.EqualFold(third.WithoutTrailingDot(), probablyClusterDomain) {
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logger.Infof("[unexpected] expected resolver config to contain serch domains <namespace>.svc.<cluster-domain>, svc.<cluster-domain>, <cluster-domain>; got %s %s %s\n. Defaulting cluster domain to 'cluster.local'.", first, second, third)
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return defaultClusterDomain
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}
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logger.Infof("Cluster domain %q extracted from resolver config", probablyClusterDomain)
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return probablyClusterDomain
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}
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