| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758759760761762763764765766767768769770771772773774775776777778779780781782783784785786787788789790791792793794795796797798799800801802803804805806807808809810811812813814815816 | package nebulaimport (	"errors"	"net"	"net/netip"	"slices"	"sync"	"sync/atomic"	"time"	"github.com/gaissmai/bart"	"github.com/rcrowley/go-metrics"	"github.com/sirupsen/logrus"	"github.com/slackhq/nebula/cert"	"github.com/slackhq/nebula/config"	"github.com/slackhq/nebula/header")const defaultPromoteEvery = 1000       // Count of packets sent before we try moving a tunnel to a preferred underlay ip addressconst defaultReQueryEvery = 5000       // Count of packets sent before re-querying a hostinfo to the lighthouseconst defaultReQueryWait = time.Minute // Minimum amount of seconds to wait before re-querying a hostinfo the lighthouse. Evaluated every ReQueryEveryconst MaxRemotes = 10// MaxHostInfosPerVpnIp is the max number of hostinfos we will track for a given vpn ip// 5 allows for an initial handshake and each host pair re-handshaking twiceconst MaxHostInfosPerVpnIp = 5// How long we should prevent roaming back to the previous IP.// This helps prevent flapping due to packets already in flightconst RoamingSuppressSeconds = 2const (	Requested = iota	PeerRequested	Established	Disestablished)const (	Unknowntype = iota	ForwardingType	TerminalType)type Relay struct {	Type        int	State       int	LocalIndex  uint32	RemoteIndex uint32	PeerAddr    netip.Addr}type HostMap struct {	sync.RWMutex    //Because we concurrently read and write to our maps	Indexes         map[uint32]*HostInfo	Relays          map[uint32]*HostInfo // Maps a Relay IDX to a Relay HostInfo object	RemoteIndexes   map[uint32]*HostInfo	Hosts           map[netip.Addr]*HostInfo	preferredRanges atomic.Pointer[[]netip.Prefix]	l               *logrus.Logger}// For synchronization, treat the pointed-to Relay struct as immutable. To edit the Relay// struct, make a copy of an existing value, edit the fileds in the copy, and// then store a pointer to the new copy in both realyForBy* maps.type RelayState struct {	sync.RWMutex	relays []netip.Addr // Ordered set of VpnAddrs of Hosts to use as relays to access this peer	// For data race avoidance, the contents of a *Relay are treated immutably. To update a *Relay, copy the existing data,	// modify what needs to be updated, and store the new modified copy in the relayForByIp and relayForByIdx maps (with	// the RelayState Lock held)	relayForByAddr map[netip.Addr]*Relay // Maps vpnAddr of peers for which this HostInfo is a relay to some Relay info	relayForByIdx  map[uint32]*Relay     // Maps a local index to some Relay info}func (rs *RelayState) DeleteRelay(ip netip.Addr) {	rs.Lock()	defer rs.Unlock()	for idx, val := range rs.relays {		if val == ip {			rs.relays = append(rs.relays[:idx], rs.relays[idx+1:]...)			return		}	}}func (rs *RelayState) UpdateRelayForByIpState(vpnIp netip.Addr, state int) {	rs.Lock()	defer rs.Unlock()	if r, ok := rs.relayForByAddr[vpnIp]; ok {		newRelay := *r		newRelay.State = state		rs.relayForByAddr[newRelay.PeerAddr] = &newRelay		rs.relayForByIdx[newRelay.LocalIndex] = &newRelay	}}func (rs *RelayState) UpdateRelayForByIdxState(idx uint32, state int) {	rs.Lock()	defer rs.Unlock()	if r, ok := rs.relayForByIdx[idx]; ok {		newRelay := *r		newRelay.State = state		rs.relayForByAddr[newRelay.PeerAddr] = &newRelay		rs.relayForByIdx[newRelay.LocalIndex] = &newRelay	}}func (rs *RelayState) CopyAllRelayFor() []*Relay {	rs.RLock()	defer rs.RUnlock()	ret := make([]*Relay, 0, len(rs.relayForByIdx))	for _, r := range rs.relayForByIdx {		ret = append(ret, r)	}	return ret}func (rs *RelayState) GetRelayForByAddr(addr netip.Addr) (*Relay, bool) {	rs.RLock()	defer rs.RUnlock()	r, ok := rs.relayForByAddr[addr]	return r, ok}func (rs *RelayState) InsertRelayTo(ip netip.Addr) {	rs.Lock()	defer rs.Unlock()	if !slices.Contains(rs.relays, ip) {		rs.relays = append(rs.relays, ip)	}}func (rs *RelayState) CopyRelayIps() []netip.Addr {	ret := make([]netip.Addr, len(rs.relays))	rs.RLock()	defer rs.RUnlock()	copy(ret, rs.relays)	return ret}func (rs *RelayState) CopyRelayForIps() []netip.Addr {	rs.RLock()	defer rs.RUnlock()	currentRelays := make([]netip.Addr, 0, len(rs.relayForByAddr))	for relayIp := range rs.relayForByAddr {		currentRelays = append(currentRelays, relayIp)	}	return currentRelays}func (rs *RelayState) CopyRelayForIdxs() []uint32 {	rs.RLock()	defer rs.RUnlock()	ret := make([]uint32, 0, len(rs.relayForByIdx))	for i := range rs.relayForByIdx {		ret = append(ret, i)	}	return ret}func (rs *RelayState) CompleteRelayByIP(vpnIp netip.Addr, remoteIdx uint32) bool {	rs.Lock()	defer rs.Unlock()	r, ok := rs.relayForByAddr[vpnIp]	if !ok {		return false	}	newRelay := *r	newRelay.State = Established	newRelay.RemoteIndex = remoteIdx	rs.relayForByIdx[r.LocalIndex] = &newRelay	rs.relayForByAddr[r.PeerAddr] = &newRelay	return true}func (rs *RelayState) CompleteRelayByIdx(localIdx uint32, remoteIdx uint32) (*Relay, bool) {	rs.Lock()	defer rs.Unlock()	r, ok := rs.relayForByIdx[localIdx]	if !ok {		return nil, false	}	newRelay := *r	newRelay.State = Established	newRelay.RemoteIndex = remoteIdx	rs.relayForByIdx[r.LocalIndex] = &newRelay	rs.relayForByAddr[r.PeerAddr] = &newRelay	return &newRelay, true}func (rs *RelayState) QueryRelayForByIp(vpnIp netip.Addr) (*Relay, bool) {	rs.RLock()	defer rs.RUnlock()	r, ok := rs.relayForByAddr[vpnIp]	return r, ok}func (rs *RelayState) QueryRelayForByIdx(idx uint32) (*Relay, bool) {	rs.RLock()	defer rs.RUnlock()	r, ok := rs.relayForByIdx[idx]	return r, ok}func (rs *RelayState) InsertRelay(ip netip.Addr, idx uint32, r *Relay) {	rs.Lock()	defer rs.Unlock()	rs.relayForByAddr[ip] = r	rs.relayForByIdx[idx] = r}type HostInfo struct {	remote          netip.AddrPort	remotes         *RemoteList	promoteCounter  atomic.Uint32	ConnectionState *ConnectionState	remoteIndexId   uint32	localIndexId    uint32	// vpnAddrs is a list of vpn addresses assigned to this host that are within our own vpn networks	// The host may have other vpn addresses that are outside our	// vpn networks but were removed because they are not usable	vpnAddrs []netip.Addr	// networks are both all vpn and unsafe networks assigned to this host	networks   *bart.Lite	relayState RelayState	// HandshakePacket records the packets used to create this hostinfo	// We need these to avoid replayed handshake packets creating new hostinfos which causes churn	HandshakePacket map[uint8][]byte	// nextLHQuery is the earliest we can ask the lighthouse for new information.	// This is used to limit lighthouse re-queries in chatty clients	nextLHQuery atomic.Int64	// lastRebindCount is the other side of Interface.rebindCount, if these values don't match then we need to ask LH	// for a punch from the remote end of this tunnel. The goal being to prime their conntrack for our traffic just like	// with a handshake	lastRebindCount int8	// lastHandshakeTime records the time the remote side told us about at the stage when the handshake was completed locally	// Stage 1 packet will contain it if I am a responder, stage 2 packet if I am an initiator	// This is used to avoid an attack where a handshake packet is replayed after some time	lastHandshakeTime uint64	lastRoam       time.Time	lastRoamRemote netip.AddrPort	// Used to track other hostinfos for this vpn ip since only 1 can be primary	// Synchronised via hostmap lock and not the hostinfo lock.	next, prev *HostInfo	//TODO: in, out, and others might benefit from being an atomic.Int32. We could collapse connectionManager pendingDeletion, relayUsed, and in/out into this 1 thing	in, out, pendingDeletion atomic.Bool	// lastUsed tracks the last time ConnectionManager checked the tunnel and it was in use.	// This value will be behind against actual tunnel utilization in the hot path.	// This should only be used by the ConnectionManagers ticker routine.	lastUsed time.Time}type ViaSender struct {	relayHI   *HostInfo // relayHI is the host info object of the relay	remoteIdx uint32    // remoteIdx is the index included in the header of the received packet	relay     *Relay    // relay contains the rest of the relay information, including the PeerIP of the host trying to communicate with us.}type cachedPacket struct {	messageType    header.MessageType	messageSubType header.MessageSubType	callback       packetCallback	packet         []byte}type packetCallback func(t header.MessageType, st header.MessageSubType, h *HostInfo, p, nb, out []byte)type cachedPacketMetrics struct {	sent    metrics.Counter	dropped metrics.Counter}func NewHostMapFromConfig(l *logrus.Logger, c *config.C) *HostMap {	hm := newHostMap(l)	hm.reload(c, true)	c.RegisterReloadCallback(func(c *config.C) {		hm.reload(c, false)	})	l.WithField("preferredRanges", hm.GetPreferredRanges()).		Info("Main HostMap created")	return hm}func newHostMap(l *logrus.Logger) *HostMap {	return &HostMap{		Indexes:       map[uint32]*HostInfo{},		Relays:        map[uint32]*HostInfo{},		RemoteIndexes: map[uint32]*HostInfo{},		Hosts:         map[netip.Addr]*HostInfo{},		l:             l,	}}func (hm *HostMap) reload(c *config.C, initial bool) {	if initial || c.HasChanged("preferred_ranges") {		var preferredRanges []netip.Prefix		rawPreferredRanges := c.GetStringSlice("preferred_ranges", []string{})		for _, rawPreferredRange := range rawPreferredRanges {			preferredRange, err := netip.ParsePrefix(rawPreferredRange)			if err != nil {				hm.l.WithError(err).WithField("range", rawPreferredRanges).Warn("Failed to parse preferred ranges, ignoring")				continue			}			preferredRanges = append(preferredRanges, preferredRange)		}		oldRanges := hm.preferredRanges.Swap(&preferredRanges)		if !initial {			hm.l.WithField("oldPreferredRanges", *oldRanges).WithField("newPreferredRanges", preferredRanges).Info("preferred_ranges changed")		}	}}// EmitStats reports host, index, and relay counts to the stats collection systemfunc (hm *HostMap) EmitStats() {	hm.RLock()	hostLen := len(hm.Hosts)	indexLen := len(hm.Indexes)	remoteIndexLen := len(hm.RemoteIndexes)	relaysLen := len(hm.Relays)	hm.RUnlock()	metrics.GetOrRegisterGauge("hostmap.main.hosts", nil).Update(int64(hostLen))	metrics.GetOrRegisterGauge("hostmap.main.indexes", nil).Update(int64(indexLen))	metrics.GetOrRegisterGauge("hostmap.main.remoteIndexes", nil).Update(int64(remoteIndexLen))	metrics.GetOrRegisterGauge("hostmap.main.relayIndexes", nil).Update(int64(relaysLen))}// DeleteHostInfo will fully unlink the hostinfo and return true if it was the final hostinfo for this vpn ipfunc (hm *HostMap) DeleteHostInfo(hostinfo *HostInfo) bool {	// Delete the host itself, ensuring it's not modified anymore	hm.Lock()	// If we have a previous or next hostinfo then we are not the last one for this vpn ip	final := (hostinfo.next == nil && hostinfo.prev == nil)	hm.unlockedDeleteHostInfo(hostinfo)	hm.Unlock()	return final}func (hm *HostMap) MakePrimary(hostinfo *HostInfo) {	hm.Lock()	defer hm.Unlock()	hm.unlockedMakePrimary(hostinfo)}func (hm *HostMap) unlockedMakePrimary(hostinfo *HostInfo) {	// Get the current primary, if it exists	oldHostinfo := hm.Hosts[hostinfo.vpnAddrs[0]]	// Every address in the hostinfo gets elevated to primary	for _, vpnAddr := range hostinfo.vpnAddrs {		//NOTE: It is possible that we leave a dangling hostinfo here but connection manager works on		// indexes so it should be fine.		hm.Hosts[vpnAddr] = hostinfo	}	// If we are already primary then we won't bother re-linking	if oldHostinfo == hostinfo {		return	}	// Unlink this hostinfo	if hostinfo.prev != nil {		hostinfo.prev.next = hostinfo.next	}	if hostinfo.next != nil {		hostinfo.next.prev = hostinfo.prev	}	// If there wasn't a previous primary then clear out any links	if oldHostinfo == nil {		hostinfo.next = nil		hostinfo.prev = nil		return	}	// Relink the hostinfo as primary	hostinfo.next = oldHostinfo	oldHostinfo.prev = hostinfo	hostinfo.prev = nil}func (hm *HostMap) unlockedDeleteHostInfo(hostinfo *HostInfo) {	for _, addr := range hostinfo.vpnAddrs {		h := hm.Hosts[addr]		for h != nil {			if h == hostinfo {				hm.unlockedInnerDeleteHostInfo(h, addr)			}			h = h.next		}	}}func (hm *HostMap) unlockedInnerDeleteHostInfo(hostinfo *HostInfo, addr netip.Addr) {	primary, ok := hm.Hosts[addr]	isLastHostinfo := hostinfo.next == nil && hostinfo.prev == nil	if ok && primary == hostinfo {		// The vpn addr pointer points to the same hostinfo as the local index id, we can remove it		delete(hm.Hosts, addr)		if len(hm.Hosts) == 0 {			hm.Hosts = map[netip.Addr]*HostInfo{}		}		if hostinfo.next != nil {			// We had more than 1 hostinfo at this vpn addr, promote the next in the list to primary			hm.Hosts[addr] = hostinfo.next			// It is primary, there is no previous hostinfo now			hostinfo.next.prev = nil		}	} else {		// Relink if we were in the middle of multiple hostinfos for this vpn addr		if hostinfo.prev != nil {			hostinfo.prev.next = hostinfo.next		}		if hostinfo.next != nil {			hostinfo.next.prev = hostinfo.prev		}	}	hostinfo.next = nil	hostinfo.prev = nil	// The remote index uses index ids outside our control so lets make sure we are only removing	// the remote index pointer here if it points to the hostinfo we are deleting	hostinfo2, ok := hm.RemoteIndexes[hostinfo.remoteIndexId]	if ok && hostinfo2 == hostinfo {		delete(hm.RemoteIndexes, hostinfo.remoteIndexId)		if len(hm.RemoteIndexes) == 0 {			hm.RemoteIndexes = map[uint32]*HostInfo{}		}	}	delete(hm.Indexes, hostinfo.localIndexId)	if len(hm.Indexes) == 0 {		hm.Indexes = map[uint32]*HostInfo{}	}	if hm.l.Level >= logrus.DebugLevel {		hm.l.WithField("hostMap", m{"mapTotalSize": len(hm.Hosts),			"vpnAddrs": hostinfo.vpnAddrs, "indexNumber": hostinfo.localIndexId, "remoteIndexNumber": hostinfo.remoteIndexId}).			Debug("Hostmap hostInfo deleted")	}	if isLastHostinfo {		// I have lost connectivity to my peers. My relay tunnel is likely broken. Mark the next		// hops as 'Requested' so that new relay tunnels are created in the future.		hm.unlockedDisestablishVpnAddrRelayFor(hostinfo)	}	// Clean up any local relay indexes for which I am acting as a relay hop	for _, localRelayIdx := range hostinfo.relayState.CopyRelayForIdxs() {		delete(hm.Relays, localRelayIdx)	}}func (hm *HostMap) QueryIndex(index uint32) *HostInfo {	hm.RLock()	if h, ok := hm.Indexes[index]; ok {		hm.RUnlock()		return h	} else {		hm.RUnlock()		return nil	}}func (hm *HostMap) QueryRelayIndex(index uint32) *HostInfo {	hm.RLock()	if h, ok := hm.Relays[index]; ok {		hm.RUnlock()		return h	} else {		hm.RUnlock()		return nil	}}func (hm *HostMap) QueryReverseIndex(index uint32) *HostInfo {	hm.RLock()	if h, ok := hm.RemoteIndexes[index]; ok {		hm.RUnlock()		return h	} else {		hm.RUnlock()		return nil	}}func (hm *HostMap) QueryVpnAddr(vpnIp netip.Addr) *HostInfo {	return hm.queryVpnAddr(vpnIp, nil)}func (hm *HostMap) QueryVpnAddrsRelayFor(targetIps []netip.Addr, relayHostIp netip.Addr) (*HostInfo, *Relay, error) {	hm.RLock()	defer hm.RUnlock()	h, ok := hm.Hosts[relayHostIp]	if !ok {		return nil, nil, errors.New("unable to find host")	}	for h != nil {		for _, targetIp := range targetIps {			r, ok := h.relayState.QueryRelayForByIp(targetIp)			if ok && r.State == Established {				return h, r, nil			}		}		h = h.next	}	return nil, nil, errors.New("unable to find host with relay")}func (hm *HostMap) unlockedDisestablishVpnAddrRelayFor(hi *HostInfo) {	for _, relayHostIp := range hi.relayState.CopyRelayIps() {		if h, ok := hm.Hosts[relayHostIp]; ok {			for h != nil {				h.relayState.UpdateRelayForByIpState(hi.vpnAddrs[0], Disestablished)				h = h.next			}		}	}	for _, rs := range hi.relayState.CopyAllRelayFor() {		if rs.Type == ForwardingType {			if h, ok := hm.Hosts[rs.PeerAddr]; ok {				for h != nil {					h.relayState.UpdateRelayForByIpState(hi.vpnAddrs[0], Disestablished)					h = h.next				}			}		}	}}func (hm *HostMap) queryVpnAddr(vpnIp netip.Addr, promoteIfce *Interface) *HostInfo {	hm.RLock()	if h, ok := hm.Hosts[vpnIp]; ok {		hm.RUnlock()		// Do not attempt promotion if you are a lighthouse		if promoteIfce != nil && !promoteIfce.lightHouse.amLighthouse {			h.TryPromoteBest(hm.GetPreferredRanges(), promoteIfce)		}		return h	}	hm.RUnlock()	return nil}// unlockedAddHostInfo assumes you have a write-lock and will add a hostinfo object to the hostmap Indexes and RemoteIndexes maps.// If an entry exists for the Hosts table (vpnIp -> hostinfo) then the provided hostinfo will be made primaryfunc (hm *HostMap) unlockedAddHostInfo(hostinfo *HostInfo, f *Interface) {	if f.serveDns {		remoteCert := hostinfo.ConnectionState.peerCert		dnsR.Add(remoteCert.Certificate.Name()+".", hostinfo.vpnAddrs)	}	for _, addr := range hostinfo.vpnAddrs {		hm.unlockedInnerAddHostInfo(addr, hostinfo, f)	}	hm.Indexes[hostinfo.localIndexId] = hostinfo	hm.RemoteIndexes[hostinfo.remoteIndexId] = hostinfo	if hm.l.Level >= logrus.DebugLevel {		hm.l.WithField("hostMap", m{"vpnAddrs": hostinfo.vpnAddrs, "mapTotalSize": len(hm.Hosts),			"hostinfo": m{"existing": true, "localIndexId": hostinfo.localIndexId, "vpnAddrs": hostinfo.vpnAddrs}}).			Debug("Hostmap vpnIp added")	}}func (hm *HostMap) unlockedInnerAddHostInfo(vpnAddr netip.Addr, hostinfo *HostInfo, f *Interface) {	existing := hm.Hosts[vpnAddr]	hm.Hosts[vpnAddr] = hostinfo	if existing != nil && existing != hostinfo {		hostinfo.next = existing		existing.prev = hostinfo	}	i := 1	check := hostinfo	for check != nil {		if i > MaxHostInfosPerVpnIp {			hm.unlockedDeleteHostInfo(check)		}		check = check.next		i++	}}func (hm *HostMap) GetPreferredRanges() []netip.Prefix {	//NOTE: if preferredRanges is ever not stored before a load this will fail to dereference a nil pointer	return *hm.preferredRanges.Load()}func (hm *HostMap) ForEachVpnAddr(f controlEach) {	hm.RLock()	defer hm.RUnlock()	for _, v := range hm.Hosts {		f(v)	}}func (hm *HostMap) ForEachIndex(f controlEach) {	hm.RLock()	defer hm.RUnlock()	for _, v := range hm.Indexes {		f(v)	}}// TryPromoteBest handles re-querying lighthouses and probing for better paths// NOTE: It is an error to call this if you are a lighthouse since they should not roam clients!func (i *HostInfo) TryPromoteBest(preferredRanges []netip.Prefix, ifce *Interface) {	c := i.promoteCounter.Add(1)	if c%ifce.tryPromoteEvery.Load() == 0 {		remote := i.remote		// return early if we are already on a preferred remote		if remote.IsValid() {			rIP := remote.Addr()			for _, l := range preferredRanges {				if l.Contains(rIP) {					return				}			}		}		i.remotes.ForEach(preferredRanges, func(addr netip.AddrPort, preferred bool) {			if remote.IsValid() && (!addr.IsValid() || !preferred) {				return			}			// Try to send a test packet to that host, this should			// cause it to detect a roaming event and switch remotes			ifce.sendTo(header.Test, header.TestRequest, i.ConnectionState, i, addr, []byte(""), make([]byte, 12, 12), make([]byte, mtu))		})	}	// Re query our lighthouses for new remotes occasionally	if c%ifce.reQueryEvery.Load() == 0 && ifce.lightHouse != nil {		now := time.Now().UnixNano()		if now < i.nextLHQuery.Load() {			return		}		i.nextLHQuery.Store(now + ifce.reQueryWait.Load())		ifce.lightHouse.QueryServer(i.vpnAddrs[0])	}}func (i *HostInfo) GetCert() *cert.CachedCertificate {	if i.ConnectionState != nil {		return i.ConnectionState.peerCert	}	return nil}func (i *HostInfo) SetRemote(remote netip.AddrPort) {	// We copy here because we likely got this remote from a source that reuses the object	if i.remote != remote {		i.remote = remote		i.remotes.LearnRemote(i.vpnAddrs[0], remote)	}}// SetRemoteIfPreferred returns true if the remote was changed. The lastRoam// time on the HostInfo will also be updated.func (i *HostInfo) SetRemoteIfPreferred(hm *HostMap, newRemote netip.AddrPort) bool {	if !newRemote.IsValid() {		// relays have nil udp Addrs		return false	}	currentRemote := i.remote	if !currentRemote.IsValid() {		i.SetRemote(newRemote)		return true	}	// NOTE: We do this loop here instead of calling `isPreferred` in	// remote_list.go so that we only have to loop over preferredRanges once.	newIsPreferred := false	for _, l := range hm.GetPreferredRanges() {		// return early if we are already on a preferred remote		if l.Contains(currentRemote.Addr()) {			return false		}		if l.Contains(newRemote.Addr()) {			newIsPreferred = true		}	}	if newIsPreferred {		// Consider this a roaming event		i.lastRoam = time.Now()		i.lastRoamRemote = currentRemote		i.SetRemote(newRemote)		return true	}	return false}func (i *HostInfo) buildNetworks(networks, unsafeNetworks []netip.Prefix) {	if len(networks) == 1 && len(unsafeNetworks) == 0 {		// Simple case, no CIDRTree needed		return	}	i.networks = new(bart.Lite)	for _, network := range networks {		nprefix := netip.PrefixFrom(network.Addr(), network.Addr().BitLen())		i.networks.Insert(nprefix)	}	for _, network := range unsafeNetworks {		i.networks.Insert(network)	}}func (i *HostInfo) logger(l *logrus.Logger) *logrus.Entry {	if i == nil {		return logrus.NewEntry(l)	}	li := l.WithField("vpnAddrs", i.vpnAddrs).		WithField("localIndex", i.localIndexId).		WithField("remoteIndex", i.remoteIndexId)	if connState := i.ConnectionState; connState != nil {		if peerCert := connState.peerCert; peerCert != nil {			li = li.WithField("certName", peerCert.Certificate.Name())		}	}	return li}// Utility functionsfunc localAddrs(l *logrus.Logger, allowList *LocalAllowList) []netip.Addr {	//FIXME: This function is pretty garbage	var finalAddrs []netip.Addr	ifaces, _ := net.Interfaces()	for _, i := range ifaces {		allow := allowList.AllowName(i.Name)		if l.Level >= logrus.TraceLevel {			l.WithField("interfaceName", i.Name).WithField("allow", allow).Trace("localAllowList.AllowName")		}		if !allow {			continue		}		addrs, _ := i.Addrs()		for _, rawAddr := range addrs {			var addr netip.Addr			switch v := rawAddr.(type) {			case *net.IPNet:				//continue				addr, _ = netip.AddrFromSlice(v.IP)			case *net.IPAddr:				addr, _ = netip.AddrFromSlice(v.IP)			}			if !addr.IsValid() {				if l.Level >= logrus.DebugLevel {					l.WithField("localAddr", rawAddr).Debug("addr was invalid")				}				continue			}			addr = addr.Unmap()			if addr.IsLoopback() == false && addr.IsLinkLocalUnicast() == false {				isAllowed := allowList.Allow(addr)				if l.Level >= logrus.TraceLevel {					l.WithField("localAddr", addr).WithField("allowed", isAllowed).Trace("localAllowList.Allow")				}				if !isAllowed {					continue				}				finalAddrs = append(finalAddrs, addr)			}		}	}	return finalAddrs}
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