mirror of
https://github.com/netbirdio/netbird.git
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e2f27502e4
Support search domain on Android - pass list of search domains to Android SDK - throw notification in case of search domain changes
497 lines
14 KiB
Go
497 lines
14 KiB
Go
package dns
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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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"sync"
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"github.com/miekg/dns"
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"github.com/mitchellh/hashstructure/v2"
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log "github.com/sirupsen/logrus"
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"github.com/netbirdio/netbird/client/internal/listener"
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nbdns "github.com/netbirdio/netbird/dns"
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)
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// ReadyListener is a notification mechanism what indicate the server is ready to handle host dns address changes
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type ReadyListener interface {
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OnReady()
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}
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// Server is a dns server interface
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type Server interface {
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Initialize() error
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Stop()
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DnsIP() string
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UpdateDNSServer(serial uint64, update nbdns.Config) error
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OnUpdatedHostDNSServer(strings []string)
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SearchDomains() []string
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}
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type registeredHandlerMap map[string]handlerWithStop
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// DefaultServer dns server object
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type DefaultServer struct {
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ctx context.Context
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ctxCancel context.CancelFunc
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mux sync.Mutex
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service service
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dnsMuxMap registeredHandlerMap
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localResolver *localResolver
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wgInterface WGIface
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hostManager hostManager
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updateSerial uint64
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previousConfigHash uint64
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currentConfig hostDNSConfig
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// permanent related properties
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permanent bool
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hostsDnsList []string
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hostsDnsListLock sync.Mutex
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// make sense on mobile only
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searchDomainNotifier *notifier
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}
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type handlerWithStop interface {
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dns.Handler
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stop()
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}
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type muxUpdate struct {
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domain string
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handler handlerWithStop
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}
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// NewDefaultServer returns a new dns server
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func NewDefaultServer(ctx context.Context, wgInterface WGIface, customAddress string) (*DefaultServer, error) {
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var addrPort *netip.AddrPort
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if customAddress != "" {
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parsedAddrPort, err := netip.ParseAddrPort(customAddress)
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if err != nil {
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return nil, fmt.Errorf("unable to parse the custom dns address, got error: %s", err)
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}
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addrPort = &parsedAddrPort
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}
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var dnsService service
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if wgInterface.IsUserspaceBind() {
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dnsService = newServiceViaMemory(wgInterface)
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} else {
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dnsService = newServiceViaListener(wgInterface, addrPort)
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}
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return newDefaultServer(ctx, wgInterface, dnsService), nil
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}
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// NewDefaultServerPermanentUpstream returns a new dns server. It optimized for mobile systems
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func NewDefaultServerPermanentUpstream(ctx context.Context, wgInterface WGIface, hostsDnsList []string, config nbdns.Config, listener listener.NetworkChangeListener) *DefaultServer {
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log.Debugf("host dns address list is: %v", hostsDnsList)
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ds := newDefaultServer(ctx, wgInterface, newServiceViaMemory(wgInterface))
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ds.permanent = true
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ds.hostsDnsList = hostsDnsList
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ds.addHostRootZone()
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ds.currentConfig = dnsConfigToHostDNSConfig(config, ds.service.RuntimeIP(), ds.service.RuntimePort())
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ds.searchDomainNotifier = newNotifier(ds.SearchDomains())
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ds.searchDomainNotifier.setListener(listener)
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setServerDns(ds)
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return ds
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}
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func newDefaultServer(ctx context.Context, wgInterface WGIface, dnsService service) *DefaultServer {
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ctx, stop := context.WithCancel(ctx)
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defaultServer := &DefaultServer{
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ctx: ctx,
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ctxCancel: stop,
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service: dnsService,
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dnsMuxMap: make(registeredHandlerMap),
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localResolver: &localResolver{
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registeredMap: make(registrationMap),
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},
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wgInterface: wgInterface,
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}
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return defaultServer
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}
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// Initialize instantiate host manager and the dns service
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func (s *DefaultServer) Initialize() (err error) {
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s.mux.Lock()
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defer s.mux.Unlock()
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if s.hostManager != nil {
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return nil
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}
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if s.permanent {
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err = s.service.Listen()
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if err != nil {
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return err
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}
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}
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s.hostManager, err = newHostManager(s.wgInterface)
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return
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}
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// DnsIP returns the DNS resolver server IP address
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//
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// When kernel space interface used it return real DNS server listener IP address
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// For bind interface, fake DNS resolver address returned (second last IP address from Nebird network)
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func (s *DefaultServer) DnsIP() string {
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return s.service.RuntimeIP()
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}
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// Stop stops the server
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func (s *DefaultServer) Stop() {
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s.mux.Lock()
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defer s.mux.Unlock()
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s.ctxCancel()
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if s.hostManager != nil {
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err := s.hostManager.restoreHostDNS()
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if err != nil {
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log.Error(err)
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}
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}
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s.service.Stop()
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}
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// OnUpdatedHostDNSServer update the DNS servers addresses for root zones
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// It will be applied if the mgm server do not enforce DNS settings for root zone
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func (s *DefaultServer) OnUpdatedHostDNSServer(hostsDnsList []string) {
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s.hostsDnsListLock.Lock()
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defer s.hostsDnsListLock.Unlock()
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s.hostsDnsList = hostsDnsList
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_, ok := s.dnsMuxMap[nbdns.RootZone]
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if ok {
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log.Debugf("on new host DNS config but skip to apply it")
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return
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}
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log.Debugf("update host DNS settings: %+v", hostsDnsList)
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s.addHostRootZone()
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}
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// UpdateDNSServer processes an update received from the management service
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func (s *DefaultServer) UpdateDNSServer(serial uint64, update nbdns.Config) error {
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select {
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case <-s.ctx.Done():
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log.Infof("not updating DNS server as context is closed")
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return s.ctx.Err()
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default:
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if serial < s.updateSerial {
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return fmt.Errorf("not applying dns update, error: "+
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"network update is %d behind the last applied update", s.updateSerial-serial)
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}
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s.mux.Lock()
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defer s.mux.Unlock()
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if s.hostManager == nil {
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return fmt.Errorf("dns service is not initialized yet")
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}
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hash, err := hashstructure.Hash(update, hashstructure.FormatV2, &hashstructure.HashOptions{
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ZeroNil: true,
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IgnoreZeroValue: true,
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SlicesAsSets: true,
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UseStringer: true,
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})
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if err != nil {
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log.Errorf("unable to hash the dns configuration update, got error: %s", err)
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}
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if s.previousConfigHash == hash {
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log.Debugf("not applying the dns configuration update as there is nothing new")
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s.updateSerial = serial
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return nil
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}
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if err := s.applyConfiguration(update); err != nil {
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return err
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}
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s.updateSerial = serial
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s.previousConfigHash = hash
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return nil
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}
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}
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func (s *DefaultServer) SearchDomains() []string {
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var searchDomains []string
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for _, dConf := range s.currentConfig.domains {
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if dConf.disabled {
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continue
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}
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if dConf.matchOnly {
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continue
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}
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searchDomains = append(searchDomains, dConf.domain)
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}
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return searchDomains
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}
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func (s *DefaultServer) applyConfiguration(update nbdns.Config) error {
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// is the service should be disabled, we stop the listener or fake resolver
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// and proceed with a regular update to clean up the handlers and records
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if update.ServiceEnable {
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_ = s.service.Listen()
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} else if !s.permanent {
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s.service.Stop()
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}
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localMuxUpdates, localRecords, err := s.buildLocalHandlerUpdate(update.CustomZones)
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if err != nil {
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return fmt.Errorf("not applying dns update, error: %v", err)
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}
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upstreamMuxUpdates, err := s.buildUpstreamHandlerUpdate(update.NameServerGroups)
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if err != nil {
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return fmt.Errorf("not applying dns update, error: %v", err)
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}
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muxUpdates := append(localMuxUpdates, upstreamMuxUpdates...)
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s.updateMux(muxUpdates)
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s.updateLocalResolver(localRecords)
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s.currentConfig = dnsConfigToHostDNSConfig(update, s.service.RuntimeIP(), s.service.RuntimePort())
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hostUpdate := s.currentConfig
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if s.service.RuntimePort() != defaultPort && !s.hostManager.supportCustomPort() {
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log.Warnf("the DNS manager of this peer doesn't support custom port. Disabling primary DNS setup. " +
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"Learn more at: https://docs.netbird.io/how-to/manage-dns-in-your-network#local-resolver")
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hostUpdate.routeAll = false
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}
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if err = s.hostManager.applyDNSConfig(hostUpdate); err != nil {
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log.Error(err)
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}
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if s.searchDomainNotifier != nil {
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s.searchDomainNotifier.onNewSearchDomains(s.SearchDomains())
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}
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return nil
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}
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func (s *DefaultServer) buildLocalHandlerUpdate(customZones []nbdns.CustomZone) ([]muxUpdate, map[string]nbdns.SimpleRecord, error) {
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var muxUpdates []muxUpdate
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localRecords := make(map[string]nbdns.SimpleRecord, 0)
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for _, customZone := range customZones {
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if len(customZone.Records) == 0 {
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return nil, nil, fmt.Errorf("received an empty list of records")
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}
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muxUpdates = append(muxUpdates, muxUpdate{
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domain: customZone.Domain,
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handler: s.localResolver,
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})
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for _, record := range customZone.Records {
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var class uint16 = dns.ClassINET
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if record.Class != nbdns.DefaultClass {
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return nil, nil, fmt.Errorf("received an invalid class type: %s", record.Class)
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}
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key := buildRecordKey(record.Name, class, uint16(record.Type))
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localRecords[key] = record
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}
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}
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return muxUpdates, localRecords, nil
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}
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func (s *DefaultServer) buildUpstreamHandlerUpdate(nameServerGroups []*nbdns.NameServerGroup) ([]muxUpdate, error) {
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var muxUpdates []muxUpdate
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for _, nsGroup := range nameServerGroups {
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if len(nsGroup.NameServers) == 0 {
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log.Warn("received a nameserver group with empty nameserver list")
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continue
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}
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handler := newUpstreamResolver(s.ctx)
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for _, ns := range nsGroup.NameServers {
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if ns.NSType != nbdns.UDPNameServerType {
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log.Warnf("skipping nameserver %s with type %s, this peer supports only %s",
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ns.IP.String(), ns.NSType.String(), nbdns.UDPNameServerType.String())
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continue
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}
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handler.upstreamServers = append(handler.upstreamServers, getNSHostPort(ns))
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}
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if len(handler.upstreamServers) == 0 {
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handler.stop()
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log.Errorf("received a nameserver group with an invalid nameserver list")
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continue
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}
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// when upstream fails to resolve domain several times over all it servers
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// it will calls this hook to exclude self from the configuration and
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// reapply DNS settings, but it not touch the original configuration and serial number
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// because it is temporal deactivation until next try
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//
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// after some period defined by upstream it tries to reactivate self by calling this hook
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// everything we need here is just to re-apply current configuration because it already
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// contains this upstream settings (temporal deactivation not removed it)
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handler.deactivate, handler.reactivate = s.upstreamCallbacks(nsGroup, handler)
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if nsGroup.Primary {
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muxUpdates = append(muxUpdates, muxUpdate{
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domain: nbdns.RootZone,
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handler: handler,
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})
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continue
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}
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if len(nsGroup.Domains) == 0 {
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handler.stop()
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return nil, fmt.Errorf("received a non primary nameserver group with an empty domain list")
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}
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for _, domain := range nsGroup.Domains {
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if domain == "" {
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handler.stop()
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return nil, fmt.Errorf("received a nameserver group with an empty domain element")
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}
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muxUpdates = append(muxUpdates, muxUpdate{
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domain: domain,
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handler: handler,
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})
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}
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}
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return muxUpdates, nil
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}
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func (s *DefaultServer) updateMux(muxUpdates []muxUpdate) {
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muxUpdateMap := make(registeredHandlerMap)
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var isContainRootUpdate bool
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for _, update := range muxUpdates {
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s.service.RegisterMux(update.domain, update.handler)
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muxUpdateMap[update.domain] = update.handler
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if existingHandler, ok := s.dnsMuxMap[update.domain]; ok {
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existingHandler.stop()
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}
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if update.domain == nbdns.RootZone {
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isContainRootUpdate = true
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}
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}
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for key, existingHandler := range s.dnsMuxMap {
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_, found := muxUpdateMap[key]
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if !found {
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if !isContainRootUpdate && key == nbdns.RootZone {
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s.hostsDnsListLock.Lock()
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s.addHostRootZone()
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s.hostsDnsListLock.Unlock()
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existingHandler.stop()
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} else {
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existingHandler.stop()
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s.service.DeregisterMux(key)
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}
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}
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}
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s.dnsMuxMap = muxUpdateMap
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}
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func (s *DefaultServer) updateLocalResolver(update map[string]nbdns.SimpleRecord) {
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for key := range s.localResolver.registeredMap {
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_, found := update[key]
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if !found {
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s.localResolver.deleteRecord(key)
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}
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}
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updatedMap := make(registrationMap)
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for key, record := range update {
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err := s.localResolver.registerRecord(record)
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if err != nil {
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log.Warnf("got an error while registering the record (%s), error: %v", record.String(), err)
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}
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updatedMap[key] = struct{}{}
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}
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s.localResolver.registeredMap = updatedMap
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}
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func getNSHostPort(ns nbdns.NameServer) string {
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return fmt.Sprintf("%s:%d", ns.IP.String(), ns.Port)
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}
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// upstreamCallbacks returns two functions, the first one is used to deactivate
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// the upstream resolver from the configuration, the second one is used to
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// reactivate it. Not allowed to call reactivate before deactivate.
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func (s *DefaultServer) upstreamCallbacks(
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nsGroup *nbdns.NameServerGroup,
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handler dns.Handler,
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) (deactivate func(), reactivate func()) {
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var removeIndex map[string]int
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deactivate = func() {
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s.mux.Lock()
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defer s.mux.Unlock()
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l := log.WithField("nameservers", nsGroup.NameServers)
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l.Info("temporary deactivate nameservers group due timeout")
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removeIndex = make(map[string]int)
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for _, domain := range nsGroup.Domains {
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removeIndex[domain] = -1
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}
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if nsGroup.Primary {
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removeIndex[nbdns.RootZone] = -1
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s.currentConfig.routeAll = false
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}
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for i, item := range s.currentConfig.domains {
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if _, found := removeIndex[item.domain]; found {
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s.currentConfig.domains[i].disabled = true
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s.service.DeregisterMux(item.domain)
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removeIndex[item.domain] = i
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}
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}
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if err := s.hostManager.applyDNSConfig(s.currentConfig); err != nil {
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l.WithError(err).Error("fail to apply nameserver deactivation on the host")
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}
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}
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reactivate = func() {
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s.mux.Lock()
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defer s.mux.Unlock()
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for domain, i := range removeIndex {
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if i == -1 || i >= len(s.currentConfig.domains) || s.currentConfig.domains[i].domain != domain {
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continue
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}
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s.currentConfig.domains[i].disabled = false
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s.service.RegisterMux(domain, handler)
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}
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l := log.WithField("nameservers", nsGroup.NameServers)
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l.Debug("reactivate temporary disabled nameserver group")
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if nsGroup.Primary {
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s.currentConfig.routeAll = true
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}
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if err := s.hostManager.applyDNSConfig(s.currentConfig); err != nil {
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l.WithError(err).Error("reactivate temporary disabled nameserver group, DNS update apply")
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}
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}
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return
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}
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func (s *DefaultServer) addHostRootZone() {
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handler := newUpstreamResolver(s.ctx)
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handler.upstreamServers = make([]string, len(s.hostsDnsList))
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for n, ua := range s.hostsDnsList {
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handler.upstreamServers[n] = fmt.Sprintf("%s:53", ua)
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}
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handler.deactivate = func() {}
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handler.reactivate = func() {}
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s.service.RegisterMux(nbdns.RootZone, handler)
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}
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