mirror of
https://github.com/slackhq/nebula.git
synced 2026-08-15 03:07:01 +02:00
hostmap: replace the shared next/prev hostinfo chain with independent per-address lists so divergent or overlapping vpnAddr sets cannot corrupt the map (#1790)
This commit is contained in:
@@ -430,14 +430,11 @@ func (hm *HandshakeManager) CheckAndComplete(hostinfo *HostInfo, handshakePacket
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// Check if we already have a tunnel with this vpn ip
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// Check if we already have a tunnel with this vpn ip
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existingHostInfo, found := hm.mainHostMap.Hosts[hostinfo.vpnAddrs[0]]
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existingHostInfo, found := hm.mainHostMap.Hosts[hostinfo.vpnAddrs[0]]
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if found && existingHostInfo != nil {
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if found && existingHostInfo != nil {
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testHostInfo := existingHostInfo
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// Is it just a delayed handshake packet? Check every hostinfo we hold for this address.
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for testHostInfo != nil {
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for _, testHostInfo := range hm.mainHostMap.unlockedGetHostList(hostinfo.vpnAddrs[0]) {
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// Is it just a delayed handshake packet?
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if bytes.Equal(hostinfo.HandshakePacket[handshakePacket], testHostInfo.HandshakePacket[handshakePacket]) {
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if bytes.Equal(hostinfo.HandshakePacket[handshakePacket], testHostInfo.HandshakePacket[handshakePacket]) {
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return testHostInfo, ErrAlreadySeen
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return testHostInfo, ErrAlreadySeen
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}
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}
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testHostInfo = testHostInfo.next
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}
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}
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// Is this a newer handshake?
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// Is this a newer handshake?
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+147
-95
@@ -56,11 +56,20 @@ type Relay struct {
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}
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}
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type HostMap struct {
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type HostMap struct {
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sync.RWMutex //Because we concurrently read and write to our maps
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sync.RWMutex //Because we concurrently read and write to our maps
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Indexes map[uint32]*HostInfo
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Indexes map[uint32]*HostInfo
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Relays map[uint32]*HostInfo // Maps a Relay IDX to a Relay HostInfo object
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Relays map[uint32]*HostInfo // Maps a Relay IDX to a Relay HostInfo object
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RemoteIndexes map[uint32]*HostInfo
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RemoteIndexes map[uint32]*HostInfo
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// Hosts maps a vpn address to its primary hostinfo, one entry per address we hold a tunnel
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// for. moreHosts only has an entry while an address is held by 2 or more hostinfos and stores
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// the full most-recent-first list; moreHosts[a][0] is always the same hostinfo as Hosts[a].
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// Each address gets its own independent list, so a hostinfo owning multiple addresses can
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// never corrupt another address's ordering the way the old shared next/prev chain could.
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// Entries in moreHosts are only ever written by unlockedSetHostsForAddr; Hosts is written
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// directly only in the single-hostinfo fast paths where moreHosts is known to have no entry,
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// and unlockedDeleteHostInfo swaps either map for a fresh one when it fully drains.
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Hosts map[netip.Addr]*HostInfo
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Hosts map[netip.Addr]*HostInfo
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moreHosts map[netip.Addr][]*HostInfo
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preferredRanges atomic.Pointer[[]netip.Prefix]
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preferredRanges atomic.Pointer[[]netip.Prefix]
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l *slog.Logger
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l *slog.Logger
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}
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}
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@@ -266,10 +275,6 @@ type HostInfo struct {
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lastRoam time.Time
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lastRoam time.Time
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lastRoamRemote netip.AddrPort
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lastRoamRemote netip.AddrPort
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// Used to track other hostinfos for this vpn ip since only 1 can be primary
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// Synchronised via hostmap lock and not the hostinfo lock.
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next, prev *HostInfo
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//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
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//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
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in, out, pendingDeletion atomic.Bool
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in, out, pendingDeletion atomic.Bool
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@@ -334,6 +339,7 @@ func newHostMap(l *slog.Logger) *HostMap {
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Relays: map[uint32]*HostInfo{},
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Relays: map[uint32]*HostInfo{},
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RemoteIndexes: map[uint32]*HostInfo{},
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RemoteIndexes: map[uint32]*HostInfo{},
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Hosts: map[netip.Addr]*HostInfo{},
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Hosts: map[netip.Addr]*HostInfo{},
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moreHosts: map[netip.Addr][]*HostInfo{},
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l: l,
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l: l,
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}
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}
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}
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}
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@@ -382,13 +388,55 @@ func (hm *HostMap) EmitStats() {
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metrics.GetOrRegisterGauge("hostmap.main.relayIndexes", nil).Update(int64(relaysLen))
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metrics.GetOrRegisterGauge("hostmap.main.relayIndexes", nil).Update(int64(relaysLen))
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}
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}
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// DeleteHostInfo will fully unlink the hostinfo and return true if it was the final hostinfo for this vpn ip
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// unlockedSetHostsForAddr stores the per-address hostinfo list (list[0] is the primary). An empty
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// list removes the address. This is the one place Hosts and moreHosts are written together, keep
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// it that way. Callers must hold the write lock.
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func (hm *HostMap) unlockedSetHostsForAddr(addr netip.Addr, list []*HostInfo) {
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if len(list) == 0 {
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delete(hm.Hosts, addr)
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delete(hm.moreHosts, addr)
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return
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}
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hm.Hosts[addr] = list[0]
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if len(list) > 1 {
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hm.moreHosts[addr] = list
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} else {
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delete(hm.moreHosts, addr)
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}
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}
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// unlockedGetHostList returns every hostinfo holding addr, primary first, or nil if we have no
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// tunnel for addr. The common single-hostinfo case builds a fresh one element list, so keep this
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// off the packet hot path; the primary is a direct Hosts read. Callers must hold the lock (read
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// or write).
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func (hm *HostMap) unlockedGetHostList(addr netip.Addr) []*HostInfo {
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if list, ok := hm.moreHosts[addr]; ok {
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return list
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}
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if h, ok := hm.Hosts[addr]; ok {
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return []*HostInfo{h}
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}
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return nil
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}
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// removeHostInfo returns list with hi removed (order preserved), or list unchanged if hi is
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// absent. It deletes in place: every mutator holds the hostmap write lock and no reader ever
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// retains a slice across a mutation (readers iterate under RLock), so there is no snapshot to
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// invalidate.
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func removeHostInfo(list []*HostInfo, hi *HostInfo) []*HostInfo {
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idx := slices.Index(list, hi)
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if idx < 0 {
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return list
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}
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return slices.Delete(list, idx, idx+1)
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}
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// DeleteHostInfo will fully unlink the hostinfo and return true if no other hostinfo still holds
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// any of its vpn addrs, meaning we no longer have a tunnel to the peer
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func (hm *HostMap) DeleteHostInfo(hostinfo *HostInfo) bool {
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func (hm *HostMap) DeleteHostInfo(hostinfo *HostInfo) bool {
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// Delete the host itself, ensuring it's not modified anymore
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// Delete the host itself, ensuring it's not modified anymore
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hm.Lock()
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hm.Lock()
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// If we have a previous or next hostinfo then we are not the last one for this vpn ip
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final := hm.unlockedDeleteHostInfo(hostinfo)
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final := (hostinfo.next == nil && hostinfo.prev == nil)
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hm.unlockedDeleteHostInfo(hostinfo)
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hm.Unlock()
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hm.Unlock()
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return final
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return final
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@@ -401,70 +449,62 @@ func (hm *HostMap) MakePrimary(hostinfo *HostInfo) {
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}
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}
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func (hm *HostMap) unlockedMakePrimary(hostinfo *HostInfo) {
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func (hm *HostMap) unlockedMakePrimary(hostinfo *HostInfo) {
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// Get the current primary, if it exists
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// A hostinfo that is no longer in the hostmap must not be re-inserted here. Callers can race
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oldHostinfo := hm.Hosts[hostinfo.vpnAddrs[0]]
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// tunnel teardown, deciding to promote under the read lock and only taking the write lock
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// after a delete fully unlinked the hostinfo (connection manager swapPrimary, AddRelay). Every
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// Every address in the hostinfo gets elevated to primary
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// live hostinfo is registered in Indexes by unlockedAddHostInfo, so this is a membership test.
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for _, vpnAddr := range hostinfo.vpnAddrs {
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if hm.Indexes[hostinfo.localIndexId] != hostinfo {
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//NOTE: It is possible that we leave a dangling hostinfo here but connection manager works on
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// indexes so it should be fine.
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hm.Hosts[vpnAddr] = hostinfo
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}
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// If we are already primary then we won't bother re-linking
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if oldHostinfo == hostinfo {
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return
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return
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}
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}
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// Unlink this hostinfo
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// Move hostinfo to the front (primary) of each of its address lists. The lists are
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if hostinfo.prev != nil {
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// independent per address, so this can never leave a dangling entry the way promoting
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hostinfo.prev.next = hostinfo.next
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// against a single shared chain could.
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}
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if hostinfo.next != nil {
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hostinfo.next.prev = hostinfo.prev
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}
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// If there wasn't a previous primary then clear out any links
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if oldHostinfo == nil {
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hostinfo.next = nil
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hostinfo.prev = nil
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return
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}
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// Relink the hostinfo as primary
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hostinfo.next = oldHostinfo
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oldHostinfo.prev = hostinfo
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hostinfo.prev = nil
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}
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func (hm *HostMap) unlockedDeleteHostInfo(hostinfo *HostInfo) {
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isLastHostinfo := hostinfo.next == nil && hostinfo.prev == nil
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for _, addr := range hostinfo.vpnAddrs {
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for _, addr := range hostinfo.vpnAddrs {
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if hm.Hosts[addr] != hostinfo {
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if hm.Hosts[addr] == hostinfo {
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// Already primary for this address, the list is already in the right order
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continue
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continue
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}
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}
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if hostinfo.next != nil {
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list := removeHostInfo(hm.unlockedGetHostList(addr), hostinfo)
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// Promote the next hostinfo in the shared chain to primary for this address
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list = append([]*HostInfo{hostinfo}, list...)
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hm.Hosts[addr] = hostinfo.next
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hm.unlockedSetHostsForAddr(addr, list)
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} else {
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}
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delete(hm.Hosts, addr)
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}
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// unlockedDeleteHostInfo removes hostinfo from every one of its address lists and from the index
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// maps. It returns true if this was the last hostinfo for all of its addresses (we no longer have
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// any tunnel to the peer), which the caller uses to decide whether to clear learned lighthouse
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// state and disestablish relays.
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func (hm *HostMap) unlockedDeleteHostInfo(hostinfo *HostInfo) bool {
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// Remove this hostinfo from each of its address lists. The lists are independent, so a
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// sibling is never promoted to an address it does not own and no other list is touched.
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final := true
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for _, addr := range hostinfo.vpnAddrs {
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if list, ok := hm.moreHosts[addr]; ok {
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list = removeHostInfo(list, hostinfo)
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hm.unlockedSetHostsForAddr(addr, list)
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if len(list) > 0 {
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final = false
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}
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} else if existing, ok := hm.Hosts[addr]; ok {
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if existing == hostinfo {
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// Common case, the only hostinfo for this address. moreHosts has no entry to clean up.
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delete(hm.Hosts, addr)
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} else {
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// We don't hold this address but another hostinfo does, we still have a tunnel to the peer
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final = false
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}
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}
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}
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}
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}
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// Go maps never shrink their buckets, replace fully drained maps so a node that churned
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// through a large peer count gives the memory back. Same idiom as the index maps below.
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if len(hm.Hosts) == 0 {
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if len(hm.Hosts) == 0 {
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hm.Hosts = map[netip.Addr]*HostInfo{}
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hm.Hosts = map[netip.Addr]*HostInfo{}
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}
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}
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if len(hm.moreHosts) == 0 {
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// Splice this hostinfo out of the shared chain exactly once
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hm.moreHosts = map[netip.Addr][]*HostInfo{}
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if hostinfo.prev != nil {
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hostinfo.prev.next = hostinfo.next
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}
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}
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if hostinfo.next != nil {
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hostinfo.next.prev = hostinfo.prev
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}
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hostinfo.next = nil
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hostinfo.prev = nil
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// The remote index uses index ids outside our control so lets make sure we are only removing
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// The remote index uses index ids outside our control so lets make sure we are only removing
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// the remote index pointer here if it points to the hostinfo we are deleting
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// the remote index pointer here if it points to the hostinfo we are deleting
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@@ -488,7 +528,7 @@ func (hm *HostMap) unlockedDeleteHostInfo(hostinfo *HostInfo) {
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)
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)
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}
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}
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if isLastHostinfo {
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if final {
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// I have lost connectivity to my peers. My relay tunnel is likely broken. Mark the next
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// I have lost connectivity to my peers. My relay tunnel is likely broken. Mark the next
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// hops as 'Requested' so that new relay tunnels are created in the future.
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// hops as 'Requested' so that new relay tunnels are created in the future.
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hm.unlockedDisestablishVpnAddrRelayFor(hostinfo)
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hm.unlockedDisestablishVpnAddrRelayFor(hostinfo)
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@@ -497,6 +537,8 @@ func (hm *HostMap) unlockedDeleteHostInfo(hostinfo *HostInfo) {
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for _, localRelayIdx := range hostinfo.relayState.CopyRelayForIdxs() {
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for _, localRelayIdx := range hostinfo.relayState.CopyRelayForIdxs() {
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delete(hm.Relays, localRelayIdx)
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delete(hm.Relays, localRelayIdx)
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}
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}
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return final
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}
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}
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func (hm *HostMap) QueryIndex(index uint32) *HostInfo {
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func (hm *HostMap) QueryIndex(index uint32) *HostInfo {
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@@ -540,19 +582,30 @@ func (hm *HostMap) QueryVpnAddrsRelayFor(targetIps []netip.Addr, relayHostIp net
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hm.RLock()
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hm.RLock()
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defer hm.RUnlock()
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defer hm.RUnlock()
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// This runs per relayed packet, so check the primary with a single map probe and only consult
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// moreHosts when the primary can't relay for us.
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h, ok := hm.Hosts[relayHostIp]
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h, ok := hm.Hosts[relayHostIp]
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if !ok {
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if !ok {
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return nil, nil, errors.New("unable to find host")
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return nil, nil, errors.New("unable to find host")
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}
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}
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for h != nil {
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for _, targetIp := range targetIps {
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for _, targetIp := range targetIps {
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r, ok := h.relayState.QueryRelayForByIp(targetIp)
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r, ok := h.relayState.QueryRelayForByIp(targetIp)
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if ok && r.State == Established {
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if ok && r.State == Established {
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return h, r, nil
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return h, r, nil
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}
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}
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if list, ok := hm.moreHosts[relayHostIp]; ok {
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// list[0] is the primary we already checked
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for _, h := range list[1:] {
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for _, targetIp := range targetIps {
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r, ok := h.relayState.QueryRelayForByIp(targetIp)
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if ok && r.State == Established {
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return h, r, nil
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}
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}
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}
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}
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}
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h = h.next
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}
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}
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return nil, nil, errors.New("unable to find host with relay")
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return nil, nil, errors.New("unable to find host with relay")
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@@ -560,20 +613,14 @@ func (hm *HostMap) QueryVpnAddrsRelayFor(targetIps []netip.Addr, relayHostIp net
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func (hm *HostMap) unlockedDisestablishVpnAddrRelayFor(hi *HostInfo) {
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func (hm *HostMap) unlockedDisestablishVpnAddrRelayFor(hi *HostInfo) {
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for _, relayHostIp := range hi.relayState.CopyRelayIps() {
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for _, relayHostIp := range hi.relayState.CopyRelayIps() {
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if h, ok := hm.Hosts[relayHostIp]; ok {
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for _, h := range hm.unlockedGetHostList(relayHostIp) {
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for h != nil {
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h.relayState.UpdateRelayForByIpState(hi.vpnAddrs[0], Disestablished)
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h.relayState.UpdateRelayForByIpState(hi.vpnAddrs[0], Disestablished)
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h = h.next
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}
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}
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}
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}
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}
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for _, rs := range hi.relayState.CopyAllRelayFor() {
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for _, rs := range hi.relayState.CopyAllRelayFor() {
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if rs.Type == ForwardingType {
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if rs.Type == ForwardingType {
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if h, ok := hm.Hosts[rs.PeerAddr]; ok {
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for _, h := range hm.unlockedGetHostList(rs.PeerAddr) {
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for h != nil {
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h.relayState.UpdateRelayForByIpState(hi.vpnAddrs[0], Disestablished)
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h.relayState.UpdateRelayForByIpState(hi.vpnAddrs[0], Disestablished)
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h = h.next
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}
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}
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}
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}
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}
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}
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}
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@@ -623,22 +670,27 @@ func (hm *HostMap) unlockedAddHostInfo(hostinfo *HostInfo, f *Interface) {
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}
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}
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func (hm *HostMap) unlockedInnerAddHostInfo(vpnAddr netip.Addr, hostinfo *HostInfo, f *Interface) {
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func (hm *HostMap) unlockedInnerAddHostInfo(vpnAddr netip.Addr, hostinfo *HostInfo, f *Interface) {
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existing := hm.Hosts[vpnAddr]
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existing, ok := hm.Hosts[vpnAddr]
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hm.Hosts[vpnAddr] = hostinfo
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if !ok {
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// Common case, the first hostinfo for this address. moreHosts stays empty.
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if existing != nil && existing != hostinfo {
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hm.Hosts[vpnAddr] = hostinfo
|
||||||
hostinfo.next = existing
|
return
|
||||||
existing.prev = hostinfo
|
|
||||||
}
|
}
|
||||||
|
|
||||||
i := 1
|
// The new hostinfo becomes the primary for this address. Remove any stale copy of it first so
|
||||||
check := hostinfo
|
// we never hold a duplicate, then prepend.
|
||||||
for check != nil {
|
list, ok := hm.moreHosts[vpnAddr]
|
||||||
if i > MaxHostInfosPerVpnIp {
|
if !ok {
|
||||||
hm.unlockedDeleteHostInfo(check)
|
list = []*HostInfo{existing}
|
||||||
}
|
}
|
||||||
check = check.next
|
list = removeHostInfo(list, hostinfo)
|
||||||
i++
|
list = append([]*HostInfo{hostinfo}, list...)
|
||||||
|
hm.unlockedSetHostsForAddr(vpnAddr, list)
|
||||||
|
|
||||||
|
// Enforce the per-address cap by fully retiring the oldest hostinfo once we exceed it.
|
||||||
|
// Deleting it removes it from all of its addresses and the index maps, matching prior behavior.
|
||||||
|
if len(list) > MaxHostInfosPerVpnIp {
|
||||||
|
hm.unlockedDeleteHostInfo(list[len(list)-1])
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|||||||
+237
-181
@@ -2,6 +2,7 @@ package nebula
|
|||||||
|
|
||||||
import (
|
import (
|
||||||
"net/netip"
|
"net/netip"
|
||||||
|
"slices"
|
||||||
"testing"
|
"testing"
|
||||||
|
|
||||||
"github.com/slackhq/nebula/config"
|
"github.com/slackhq/nebula/config"
|
||||||
@@ -10,78 +11,84 @@ import (
|
|||||||
"github.com/stretchr/testify/require"
|
"github.com/stretchr/testify/require"
|
||||||
)
|
)
|
||||||
|
|
||||||
|
// chainIds returns the localIndexIds of the hostinfos holding addr, primary (index 0) first. It
|
||||||
|
// also validates the Hosts/moreHosts sync contract on every call so a mutation that broke it
|
||||||
|
// fails fast.
|
||||||
|
func chainIds(t *testing.T, hm *HostMap, addr netip.Addr) []uint32 {
|
||||||
|
t.Helper()
|
||||||
|
assertHostMapInvariants(t, hm)
|
||||||
|
list := hm.unlockedGetHostList(addr)
|
||||||
|
ids := make([]uint32, len(list))
|
||||||
|
for i, h := range list {
|
||||||
|
ids[i] = h.localIndexId
|
||||||
|
}
|
||||||
|
return ids
|
||||||
|
}
|
||||||
|
|
||||||
|
// assertHostMapInvariants checks the Hosts/moreHosts contract: moreHosts only holds addresses
|
||||||
|
// with 2 or more hostinfos, its first entry is always the primary in Hosts, lists never hold
|
||||||
|
// duplicates, every hostinfo in a list owns the address and is registered in Indexes, and every
|
||||||
|
// indexed hostinfo is reachable through each of its addresses.
|
||||||
|
func assertHostMapInvariants(t *testing.T, hm *HostMap) {
|
||||||
|
t.Helper()
|
||||||
|
for addr, list := range hm.moreHosts {
|
||||||
|
require.GreaterOrEqualf(t, len(list), 2, "moreHosts[%s] must hold at least 2 hostinfos", addr)
|
||||||
|
require.Samef(t, hm.Hosts[addr], list[0], "moreHosts[%s][0] must match the primary in Hosts", addr)
|
||||||
|
seen := map[*HostInfo]bool{}
|
||||||
|
for _, h := range list {
|
||||||
|
require.NotNilf(t, h, "moreHosts[%s] must never hold a nil hostinfo", addr)
|
||||||
|
require.Falsef(t, seen[h], "moreHosts[%s] holds hostinfo %d twice", addr, h.localIndexId)
|
||||||
|
seen[h] = true
|
||||||
|
require.Samef(t, hm.Indexes[h.localIndexId], h, "moreHosts[%s] member %d is not registered in Indexes", addr, h.localIndexId)
|
||||||
|
require.Truef(t, slices.Contains(h.vpnAddrs, addr), "moreHosts[%s] member %d does not own the address", addr, h.localIndexId)
|
||||||
|
}
|
||||||
|
}
|
||||||
|
for addr, h := range hm.Hosts {
|
||||||
|
require.NotNilf(t, h, "Hosts[%s] must never be nil", addr)
|
||||||
|
require.Samef(t, hm.Indexes[h.localIndexId], h, "Hosts[%s] primary %d is not registered in Indexes", addr, h.localIndexId)
|
||||||
|
require.Truef(t, slices.Contains(h.vpnAddrs, addr), "Hosts[%s] primary (index %d) does not own the address", addr, h.localIndexId)
|
||||||
|
}
|
||||||
|
for idx, h := range hm.Indexes {
|
||||||
|
require.Equalf(t, idx, h.localIndexId, "Indexes[%d] holds hostinfo with localIndexId %d", idx, h.localIndexId)
|
||||||
|
for _, va := range h.vpnAddrs {
|
||||||
|
require.Truef(t, slices.Contains(hm.unlockedGetHostList(va), h), "indexed hostinfo %d is missing from the list for %s", idx, va)
|
||||||
|
}
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
func TestHostMap_MakePrimary(t *testing.T) {
|
func TestHostMap_MakePrimary(t *testing.T) {
|
||||||
l := test.NewLogger()
|
l := test.NewLogger()
|
||||||
hm := newHostMap(l)
|
hm := newHostMap(l)
|
||||||
|
|
||||||
f := &Interface{}
|
f := &Interface{}
|
||||||
|
a := netip.MustParseAddr("0.0.0.1")
|
||||||
|
|
||||||
h1 := &HostInfo{vpnAddrs: []netip.Addr{netip.MustParseAddr("0.0.0.1")}, localIndexId: 1}
|
h1 := &HostInfo{vpnAddrs: []netip.Addr{a}, localIndexId: 1}
|
||||||
h2 := &HostInfo{vpnAddrs: []netip.Addr{netip.MustParseAddr("0.0.0.1")}, localIndexId: 2}
|
h2 := &HostInfo{vpnAddrs: []netip.Addr{a}, localIndexId: 2}
|
||||||
h3 := &HostInfo{vpnAddrs: []netip.Addr{netip.MustParseAddr("0.0.0.1")}, localIndexId: 3}
|
h3 := &HostInfo{vpnAddrs: []netip.Addr{a}, localIndexId: 3}
|
||||||
h4 := &HostInfo{vpnAddrs: []netip.Addr{netip.MustParseAddr("0.0.0.1")}, localIndexId: 4}
|
h4 := &HostInfo{vpnAddrs: []netip.Addr{a}, localIndexId: 4}
|
||||||
|
|
||||||
hm.unlockedAddHostInfo(h4, f)
|
hm.unlockedAddHostInfo(h4, f)
|
||||||
hm.unlockedAddHostInfo(h3, f)
|
hm.unlockedAddHostInfo(h3, f)
|
||||||
hm.unlockedAddHostInfo(h2, f)
|
hm.unlockedAddHostInfo(h2, f)
|
||||||
hm.unlockedAddHostInfo(h1, f)
|
hm.unlockedAddHostInfo(h1, f)
|
||||||
|
|
||||||
// Make sure we go h1 -> h2 -> h3 -> h4
|
// Most-recently-added is primary: h1, h2, h3, h4
|
||||||
prim := hm.QueryVpnAddr(netip.MustParseAddr("0.0.0.1"))
|
assert.Equal(t, []uint32{1, 2, 3, 4}, chainIds(t, hm, a))
|
||||||
assert.Equal(t, h1.localIndexId, prim.localIndexId)
|
assert.Equal(t, h1, hm.QueryVpnAddr(a))
|
||||||
assert.Equal(t, h2.localIndexId, prim.next.localIndexId)
|
|
||||||
assert.Nil(t, prim.prev)
|
|
||||||
assert.Equal(t, h1.localIndexId, h2.prev.localIndexId)
|
|
||||||
assert.Equal(t, h3.localIndexId, h2.next.localIndexId)
|
|
||||||
assert.Equal(t, h2.localIndexId, h3.prev.localIndexId)
|
|
||||||
assert.Equal(t, h4.localIndexId, h3.next.localIndexId)
|
|
||||||
assert.Equal(t, h3.localIndexId, h4.prev.localIndexId)
|
|
||||||
assert.Nil(t, h4.next)
|
|
||||||
|
|
||||||
// Swap h3/middle to primary
|
// Swap the middle to primary: h3, h1, h2, h4
|
||||||
hm.MakePrimary(h3)
|
hm.MakePrimary(h3)
|
||||||
|
assert.Equal(t, []uint32{3, 1, 2, 4}, chainIds(t, hm, a))
|
||||||
|
assert.Equal(t, h3, hm.QueryVpnAddr(a))
|
||||||
|
|
||||||
// Make sure we go h3 -> h1 -> h2 -> h4
|
// Swap the tail to primary: h4, h3, h1, h2
|
||||||
prim = hm.QueryVpnAddr(netip.MustParseAddr("0.0.0.1"))
|
|
||||||
assert.Equal(t, h3.localIndexId, prim.localIndexId)
|
|
||||||
assert.Equal(t, h1.localIndexId, prim.next.localIndexId)
|
|
||||||
assert.Nil(t, prim.prev)
|
|
||||||
assert.Equal(t, h2.localIndexId, h1.next.localIndexId)
|
|
||||||
assert.Equal(t, h3.localIndexId, h1.prev.localIndexId)
|
|
||||||
assert.Equal(t, h4.localIndexId, h2.next.localIndexId)
|
|
||||||
assert.Equal(t, h1.localIndexId, h2.prev.localIndexId)
|
|
||||||
assert.Equal(t, h2.localIndexId, h4.prev.localIndexId)
|
|
||||||
assert.Nil(t, h4.next)
|
|
||||||
|
|
||||||
// Swap h4/tail to primary
|
|
||||||
hm.MakePrimary(h4)
|
hm.MakePrimary(h4)
|
||||||
|
assert.Equal(t, []uint32{4, 3, 1, 2}, chainIds(t, hm, a))
|
||||||
|
|
||||||
// Make sure we go h4 -> h3 -> h1 -> h2
|
// Swapping the current primary again is a no-op
|
||||||
prim = hm.QueryVpnAddr(netip.MustParseAddr("0.0.0.1"))
|
|
||||||
assert.Equal(t, h4.localIndexId, prim.localIndexId)
|
|
||||||
assert.Equal(t, h3.localIndexId, prim.next.localIndexId)
|
|
||||||
assert.Nil(t, prim.prev)
|
|
||||||
assert.Equal(t, h1.localIndexId, h3.next.localIndexId)
|
|
||||||
assert.Equal(t, h4.localIndexId, h3.prev.localIndexId)
|
|
||||||
assert.Equal(t, h2.localIndexId, h1.next.localIndexId)
|
|
||||||
assert.Equal(t, h3.localIndexId, h1.prev.localIndexId)
|
|
||||||
assert.Equal(t, h1.localIndexId, h2.prev.localIndexId)
|
|
||||||
assert.Nil(t, h2.next)
|
|
||||||
|
|
||||||
// Swap h4 again should be no-op
|
|
||||||
hm.MakePrimary(h4)
|
hm.MakePrimary(h4)
|
||||||
|
assert.Equal(t, []uint32{4, 3, 1, 2}, chainIds(t, hm, a))
|
||||||
// Make sure we go h4 -> h3 -> h1 -> h2
|
|
||||||
prim = hm.QueryVpnAddr(netip.MustParseAddr("0.0.0.1"))
|
|
||||||
assert.Equal(t, h4.localIndexId, prim.localIndexId)
|
|
||||||
assert.Equal(t, h3.localIndexId, prim.next.localIndexId)
|
|
||||||
assert.Nil(t, prim.prev)
|
|
||||||
assert.Equal(t, h1.localIndexId, h3.next.localIndexId)
|
|
||||||
assert.Equal(t, h4.localIndexId, h3.prev.localIndexId)
|
|
||||||
assert.Equal(t, h2.localIndexId, h1.next.localIndexId)
|
|
||||||
assert.Equal(t, h3.localIndexId, h1.prev.localIndexId)
|
|
||||||
assert.Equal(t, h1.localIndexId, h2.prev.localIndexId)
|
|
||||||
assert.Nil(t, h2.next)
|
|
||||||
}
|
}
|
||||||
|
|
||||||
func TestHostMap_DeleteHostInfo(t *testing.T) {
|
func TestHostMap_DeleteHostInfo(t *testing.T) {
|
||||||
@@ -89,13 +96,14 @@ func TestHostMap_DeleteHostInfo(t *testing.T) {
|
|||||||
hm := newHostMap(l)
|
hm := newHostMap(l)
|
||||||
|
|
||||||
f := &Interface{}
|
f := &Interface{}
|
||||||
|
a := netip.MustParseAddr("0.0.0.1")
|
||||||
|
|
||||||
h1 := &HostInfo{vpnAddrs: []netip.Addr{netip.MustParseAddr("0.0.0.1")}, localIndexId: 1}
|
h1 := &HostInfo{vpnAddrs: []netip.Addr{a}, localIndexId: 1}
|
||||||
h2 := &HostInfo{vpnAddrs: []netip.Addr{netip.MustParseAddr("0.0.0.1")}, localIndexId: 2}
|
h2 := &HostInfo{vpnAddrs: []netip.Addr{a}, localIndexId: 2}
|
||||||
h3 := &HostInfo{vpnAddrs: []netip.Addr{netip.MustParseAddr("0.0.0.1")}, localIndexId: 3}
|
h3 := &HostInfo{vpnAddrs: []netip.Addr{a}, localIndexId: 3}
|
||||||
h4 := &HostInfo{vpnAddrs: []netip.Addr{netip.MustParseAddr("0.0.0.1")}, localIndexId: 4}
|
h4 := &HostInfo{vpnAddrs: []netip.Addr{a}, localIndexId: 4}
|
||||||
h5 := &HostInfo{vpnAddrs: []netip.Addr{netip.MustParseAddr("0.0.0.1")}, localIndexId: 5}
|
h5 := &HostInfo{vpnAddrs: []netip.Addr{a}, localIndexId: 5}
|
||||||
h6 := &HostInfo{vpnAddrs: []netip.Addr{netip.MustParseAddr("0.0.0.1")}, localIndexId: 6}
|
h6 := &HostInfo{vpnAddrs: []netip.Addr{a}, localIndexId: 6}
|
||||||
|
|
||||||
hm.unlockedAddHostInfo(h6, f)
|
hm.unlockedAddHostInfo(h6, f)
|
||||||
hm.unlockedAddHostInfo(h5, f)
|
hm.unlockedAddHostInfo(h5, f)
|
||||||
@@ -104,94 +112,110 @@ func TestHostMap_DeleteHostInfo(t *testing.T) {
|
|||||||
hm.unlockedAddHostInfo(h2, f)
|
hm.unlockedAddHostInfo(h2, f)
|
||||||
hm.unlockedAddHostInfo(h1, f)
|
hm.unlockedAddHostInfo(h1, f)
|
||||||
|
|
||||||
// h6 should be deleted
|
// h6 is evicted by the MaxHostInfosPerVpnIp cap; the rest are newest-first.
|
||||||
assert.Nil(t, h6.next)
|
assert.Nil(t, hm.QueryIndex(h6.localIndexId))
|
||||||
assert.Nil(t, h6.prev)
|
assert.Equal(t, []uint32{1, 2, 3, 4, 5}, chainIds(t, hm, a))
|
||||||
h := hm.QueryIndex(h6.localIndexId)
|
|
||||||
assert.Nil(t, h)
|
|
||||||
|
|
||||||
// Make sure we go h1 -> h2 -> h3 -> h4 -> h5
|
// Delete primary; not final since siblings remain.
|
||||||
prim := hm.QueryVpnAddr(netip.MustParseAddr("0.0.0.1"))
|
assert.False(t, hm.DeleteHostInfo(h1))
|
||||||
assert.Equal(t, h1.localIndexId, prim.localIndexId)
|
assert.Equal(t, []uint32{2, 3, 4, 5}, chainIds(t, hm, a))
|
||||||
assert.Equal(t, h2.localIndexId, prim.next.localIndexId)
|
|
||||||
assert.Nil(t, prim.prev)
|
|
||||||
assert.Equal(t, h1.localIndexId, h2.prev.localIndexId)
|
|
||||||
assert.Equal(t, h3.localIndexId, h2.next.localIndexId)
|
|
||||||
assert.Equal(t, h2.localIndexId, h3.prev.localIndexId)
|
|
||||||
assert.Equal(t, h4.localIndexId, h3.next.localIndexId)
|
|
||||||
assert.Equal(t, h3.localIndexId, h4.prev.localIndexId)
|
|
||||||
assert.Equal(t, h5.localIndexId, h4.next.localIndexId)
|
|
||||||
assert.Equal(t, h4.localIndexId, h5.prev.localIndexId)
|
|
||||||
assert.Nil(t, h5.next)
|
|
||||||
|
|
||||||
// Delete primary
|
// Deleting the same hostinfo again must not report final while siblings remain and must not
|
||||||
hm.DeleteHostInfo(h1)
|
// disturb the list. The old chain code got this wrong: the first delete nil'd next/prev, so a
|
||||||
assert.Nil(t, h1.prev)
|
// second delete looked final and wiped lighthouse state out from under the live sibling.
|
||||||
assert.Nil(t, h1.next)
|
assert.False(t, hm.DeleteHostInfo(h1))
|
||||||
|
assert.Equal(t, []uint32{2, 3, 4, 5}, chainIds(t, hm, a))
|
||||||
|
|
||||||
// Make sure we go h2 -> h3 -> h4 -> h5
|
// Delete a middle node.
|
||||||
prim = hm.QueryVpnAddr(netip.MustParseAddr("0.0.0.1"))
|
assert.False(t, hm.DeleteHostInfo(h3))
|
||||||
assert.Equal(t, h2.localIndexId, prim.localIndexId)
|
assert.Equal(t, []uint32{2, 4, 5}, chainIds(t, hm, a))
|
||||||
assert.Equal(t, h3.localIndexId, prim.next.localIndexId)
|
|
||||||
assert.Nil(t, prim.prev)
|
|
||||||
assert.Equal(t, h3.localIndexId, h2.next.localIndexId)
|
|
||||||
assert.Equal(t, h2.localIndexId, h3.prev.localIndexId)
|
|
||||||
assert.Equal(t, h4.localIndexId, h3.next.localIndexId)
|
|
||||||
assert.Equal(t, h3.localIndexId, h4.prev.localIndexId)
|
|
||||||
assert.Equal(t, h5.localIndexId, h4.next.localIndexId)
|
|
||||||
assert.Equal(t, h4.localIndexId, h5.prev.localIndexId)
|
|
||||||
assert.Nil(t, h5.next)
|
|
||||||
|
|
||||||
// Delete in the middle
|
// Delete the tail.
|
||||||
hm.DeleteHostInfo(h3)
|
assert.False(t, hm.DeleteHostInfo(h5))
|
||||||
assert.Nil(t, h3.prev)
|
assert.Equal(t, []uint32{2, 4}, chainIds(t, hm, a))
|
||||||
assert.Nil(t, h3.next)
|
|
||||||
|
|
||||||
// Make sure we go h2 -> h4 -> h5
|
// Delete the head; h4 remains and becomes primary.
|
||||||
prim = hm.QueryVpnAddr(netip.MustParseAddr("0.0.0.1"))
|
assert.False(t, hm.DeleteHostInfo(h2))
|
||||||
assert.Equal(t, h2.localIndexId, prim.localIndexId)
|
assert.Equal(t, []uint32{4}, chainIds(t, hm, a))
|
||||||
assert.Equal(t, h4.localIndexId, prim.next.localIndexId)
|
assert.Equal(t, h4, hm.QueryVpnAddr(a))
|
||||||
assert.Nil(t, prim.prev)
|
|
||||||
assert.Equal(t, h4.localIndexId, h2.next.localIndexId)
|
|
||||||
assert.Equal(t, h2.localIndexId, h4.prev.localIndexId)
|
|
||||||
assert.Equal(t, h5.localIndexId, h4.next.localIndexId)
|
|
||||||
assert.Equal(t, h4.localIndexId, h5.prev.localIndexId)
|
|
||||||
assert.Nil(t, h5.next)
|
|
||||||
|
|
||||||
// Delete the tail
|
// Delete the only remaining item; final is true and the address is gone.
|
||||||
hm.DeleteHostInfo(h5)
|
assert.True(t, hm.DeleteHostInfo(h4))
|
||||||
assert.Nil(t, h5.prev)
|
assert.Empty(t, chainIds(t, hm, a))
|
||||||
assert.Nil(t, h5.next)
|
assert.Nil(t, hm.QueryVpnAddr(a))
|
||||||
|
|
||||||
// Make sure we go h2 -> h4
|
// Deleting an already-gone hostinfo is still final; nothing holds the address anymore.
|
||||||
prim = hm.QueryVpnAddr(netip.MustParseAddr("0.0.0.1"))
|
assert.True(t, hm.DeleteHostInfo(h4))
|
||||||
assert.Equal(t, h2.localIndexId, prim.localIndexId)
|
assert.Empty(t, chainIds(t, hm, a))
|
||||||
assert.Equal(t, h4.localIndexId, prim.next.localIndexId)
|
}
|
||||||
assert.Nil(t, prim.prev)
|
|
||||||
assert.Equal(t, h4.localIndexId, h2.next.localIndexId)
|
|
||||||
assert.Equal(t, h2.localIndexId, h4.prev.localIndexId)
|
|
||||||
assert.Nil(t, h4.next)
|
|
||||||
|
|
||||||
// Delete the head
|
// TestHostMap_MakePrimary_DeletedHostInfo covers promoting a hostinfo that lost a race with
|
||||||
hm.DeleteHostInfo(h2)
|
// tunnel teardown: swapPrimary and AddRelay decide to promote while holding a stale pointer and
|
||||||
assert.Nil(t, h2.prev)
|
// only take the write lock after a delete fully unlinked the hostinfo. MakePrimary must be a
|
||||||
assert.Nil(t, h2.next)
|
// no-op, not a resurrection that installs an unmanaged primary.
|
||||||
|
func TestHostMap_MakePrimary_DeletedHostInfo(t *testing.T) {
|
||||||
|
l := test.NewLogger()
|
||||||
|
hm := newHostMap(l)
|
||||||
|
f := &Interface{}
|
||||||
|
a := netip.MustParseAddr("0.0.0.1")
|
||||||
|
|
||||||
// Make sure we only have h4
|
h1 := &HostInfo{vpnAddrs: []netip.Addr{a}, localIndexId: 1}
|
||||||
prim = hm.QueryVpnAddr(netip.MustParseAddr("0.0.0.1"))
|
h2 := &HostInfo{vpnAddrs: []netip.Addr{a}, localIndexId: 2}
|
||||||
assert.Equal(t, h4.localIndexId, prim.localIndexId)
|
hm.unlockedAddHostInfo(h1, f)
|
||||||
assert.Nil(t, prim.prev)
|
hm.unlockedAddHostInfo(h2, f)
|
||||||
assert.Nil(t, prim.next)
|
|
||||||
assert.Nil(t, h4.next)
|
|
||||||
|
|
||||||
// Delete the only item
|
// h1 is fully deleted while another goroutine still holds a pointer to it.
|
||||||
hm.DeleteHostInfo(h4)
|
assert.False(t, hm.DeleteHostInfo(h1))
|
||||||
assert.Nil(t, h4.prev)
|
assert.Equal(t, []uint32{2}, chainIds(t, hm, a))
|
||||||
assert.Nil(t, h4.next)
|
|
||||||
|
|
||||||
// Make sure we have nil
|
// The stale promote must not bring it back.
|
||||||
prim = hm.QueryVpnAddr(netip.MustParseAddr("0.0.0.1"))
|
hm.MakePrimary(h1)
|
||||||
assert.Nil(t, prim)
|
assert.Equal(t, []uint32{2}, chainIds(t, hm, a))
|
||||||
|
assert.Equal(t, h2, hm.QueryVpnAddr(a))
|
||||||
|
assert.Nil(t, hm.QueryIndex(h1.localIndexId))
|
||||||
|
}
|
||||||
|
|
||||||
|
// TestHostMap_QueryVpnAddrsRelayFor_NonPrimary makes sure a relay established on an older
|
||||||
|
// hostinfo is still found after a newer tunnel without relay state takes primary for the same
|
||||||
|
// address. The lookup checks the primary first and falls back to the rest of the list.
|
||||||
|
func TestHostMap_QueryVpnAddrsRelayFor_NonPrimary(t *testing.T) {
|
||||||
|
l := test.NewLogger()
|
||||||
|
hm := newHostMap(l)
|
||||||
|
f := &Interface{}
|
||||||
|
relayAddr := netip.MustParseAddr("0.0.0.9")
|
||||||
|
target := netip.MustParseAddr("0.0.0.1")
|
||||||
|
|
||||||
|
older := &HostInfo{
|
||||||
|
vpnAddrs: []netip.Addr{relayAddr},
|
||||||
|
localIndexId: 1,
|
||||||
|
relayState: RelayState{
|
||||||
|
relayForByAddr: map[netip.Addr]*Relay{},
|
||||||
|
relayForByIdx: map[uint32]*Relay{},
|
||||||
|
},
|
||||||
|
}
|
||||||
|
older.relayState.InsertRelay(target, 100, &Relay{Type: ForwardingType, State: Established, LocalIndex: 100, PeerAddr: target})
|
||||||
|
hm.unlockedAddHostInfo(older, f)
|
||||||
|
|
||||||
|
// The relay is found on the primary.
|
||||||
|
h, r, err := hm.QueryVpnAddrsRelayFor([]netip.Addr{target}, relayAddr)
|
||||||
|
require.NoError(t, err)
|
||||||
|
assert.Equal(t, older, h)
|
||||||
|
assert.Equal(t, uint32(100), r.LocalIndex)
|
||||||
|
|
||||||
|
// A re-handshake with no relay state takes primary; the established relay on the older
|
||||||
|
// hostinfo must still be found through the fallback.
|
||||||
|
newer := &HostInfo{vpnAddrs: []netip.Addr{relayAddr}, localIndexId: 2}
|
||||||
|
hm.unlockedAddHostInfo(newer, f)
|
||||||
|
assert.Equal(t, []uint32{2, 1}, chainIds(t, hm, relayAddr))
|
||||||
|
|
||||||
|
h, r, err = hm.QueryVpnAddrsRelayFor([]netip.Addr{target}, relayAddr)
|
||||||
|
require.NoError(t, err)
|
||||||
|
assert.Equal(t, older, h)
|
||||||
|
assert.Equal(t, uint32(100), r.LocalIndex)
|
||||||
|
|
||||||
|
// No hostinfo at all is a plain miss.
|
||||||
|
_, _, err = hm.QueryVpnAddrsRelayFor([]netip.Addr{target}, netip.MustParseAddr("0.0.0.42"))
|
||||||
|
require.Error(t, err)
|
||||||
}
|
}
|
||||||
|
|
||||||
// TestHostMap_DeleteHostInfo_MultipleVpnAddrs exercises the case where a hostinfo carries more than one
|
// TestHostMap_DeleteHostInfo_MultipleVpnAddrs exercises the case where a hostinfo carries more than one
|
||||||
@@ -216,32 +240,82 @@ func TestHostMap_DeleteHostInfo_MultipleVpnAddrs(t *testing.T) {
|
|||||||
hm.unlockedAddHostInfo(other, f)
|
hm.unlockedAddHostInfo(other, f)
|
||||||
hm.unlockedAddHostInfo(head, f)
|
hm.unlockedAddHostInfo(head, f)
|
||||||
|
|
||||||
// head is primary for both addresses, other is next in the shared chain
|
// head is primary for both addresses, other is next in each address's list.
|
||||||
assert.Equal(t, head.localIndexId, hm.QueryVpnAddr(a).localIndexId)
|
assert.Equal(t, head, hm.QueryVpnAddr(a))
|
||||||
assert.Equal(t, head.localIndexId, hm.QueryVpnAddr(b).localIndexId)
|
assert.Equal(t, head, hm.QueryVpnAddr(b))
|
||||||
assert.Equal(t, other.localIndexId, head.next.localIndexId)
|
assert.Equal(t, []uint32{2, 1}, chainIds(t, hm, a))
|
||||||
assert.Equal(t, head.localIndexId, other.prev.localIndexId)
|
assert.Equal(t, []uint32{2, 1}, chainIds(t, hm, b))
|
||||||
|
|
||||||
// Delete the head. other is still live, so it must become primary for BOTH addresses.
|
// Delete the head. other is still live, so it must become primary for BOTH addresses.
|
||||||
hm.DeleteHostInfo(head)
|
assert.False(t, hm.DeleteHostInfo(head))
|
||||||
|
assert.Equal(t, other, hm.QueryVpnAddr(a))
|
||||||
|
assert.Equal(t, other, hm.QueryVpnAddr(b))
|
||||||
|
assert.Equal(t, []uint32{1}, chainIds(t, hm, a))
|
||||||
|
assert.Equal(t, []uint32{1}, chainIds(t, hm, b))
|
||||||
|
|
||||||
// Pre-fix: QueryVpnAddr(b) came back nil here because the second address was deleted rather than
|
// head is fully removed from the index map.
|
||||||
// promoted, leaving other unreachable at b.
|
|
||||||
require.NotNil(t, hm.QueryVpnAddr(a))
|
|
||||||
require.NotNil(t, hm.QueryVpnAddr(b))
|
|
||||||
assert.Equal(t, other.localIndexId, hm.QueryVpnAddr(a).localIndexId)
|
|
||||||
assert.Equal(t, other.localIndexId, hm.QueryVpnAddr(b).localIndexId)
|
|
||||||
|
|
||||||
// other is now the only hostinfo in the chain
|
|
||||||
assert.Nil(t, other.prev)
|
|
||||||
assert.Nil(t, other.next)
|
|
||||||
|
|
||||||
// head is fully detached
|
|
||||||
assert.Nil(t, head.prev)
|
|
||||||
assert.Nil(t, head.next)
|
|
||||||
assert.Nil(t, hm.QueryIndex(head.localIndexId))
|
assert.Nil(t, hm.QueryIndex(head.localIndexId))
|
||||||
}
|
}
|
||||||
|
|
||||||
|
// TestHostMap_DeleteHostInfo_DivergentVpnAddrs covers chained hostinfos for the same peer whose
|
||||||
|
// vpnAddrs sets differ (a re-handshake cert added a second address). Deleting the superset node
|
||||||
|
// must not promote a sibling to an address it does not own.
|
||||||
|
func TestHostMap_DeleteHostInfo_DivergentVpnAddrs(t *testing.T) {
|
||||||
|
l := test.NewLogger()
|
||||||
|
hm := newHostMap(l)
|
||||||
|
f := &Interface{}
|
||||||
|
a := netip.MustParseAddr("0.0.0.1")
|
||||||
|
b := netip.MustParseAddr("0.0.0.2")
|
||||||
|
|
||||||
|
// sub owns only a; super (a newer handshake) owns a and b.
|
||||||
|
sub := &HostInfo{vpnAddrs: []netip.Addr{a}, localIndexId: 1}
|
||||||
|
super := &HostInfo{vpnAddrs: []netip.Addr{a, b}, localIndexId: 2}
|
||||||
|
hm.unlockedAddHostInfo(sub, f)
|
||||||
|
hm.unlockedAddHostInfo(super, f)
|
||||||
|
|
||||||
|
assert.Equal(t, []uint32{2, 1}, chainIds(t, hm, a))
|
||||||
|
assert.Equal(t, []uint32{2}, chainIds(t, hm, b))
|
||||||
|
|
||||||
|
// Delete super: a promotes to sub (which owns it); b has no remaining owner and must be
|
||||||
|
// removed, not dangled at sub (which does not own b).
|
||||||
|
assert.False(t, hm.DeleteHostInfo(super))
|
||||||
|
assert.Equal(t, []uint32{1}, chainIds(t, hm, a))
|
||||||
|
assert.Empty(t, chainIds(t, hm, b))
|
||||||
|
assert.Equal(t, sub, hm.QueryVpnAddr(a))
|
||||||
|
assert.Nil(t, hm.QueryVpnAddr(b))
|
||||||
|
assert.Nil(t, hm.QueryIndex(super.localIndexId))
|
||||||
|
|
||||||
|
// Deleting sub cleans up fully.
|
||||||
|
assert.True(t, hm.DeleteHostInfo(sub))
|
||||||
|
assert.Nil(t, hm.QueryVpnAddr(a))
|
||||||
|
assertHostMapInvariants(t, hm)
|
||||||
|
}
|
||||||
|
|
||||||
|
// TestHostMap_AddDivergentOverlap covers a new hostinfo claiming addresses currently owned by two
|
||||||
|
// DIFFERENT hostinfos. The old single shared next/prev chain overwrote a pointer and orphaned one
|
||||||
|
// of them (in Indexes but unreachable via its address); independent per-address lists cannot.
|
||||||
|
func TestHostMap_AddDivergentOverlap(t *testing.T) {
|
||||||
|
l := test.NewLogger()
|
||||||
|
hm := newHostMap(l)
|
||||||
|
f := &Interface{}
|
||||||
|
a := netip.MustParseAddr("0.0.0.1")
|
||||||
|
b := netip.MustParseAddr("0.0.0.2")
|
||||||
|
|
||||||
|
hiA := &HostInfo{vpnAddrs: []netip.Addr{a}, localIndexId: 1}
|
||||||
|
hiP := &HostInfo{vpnAddrs: []netip.Addr{b}, localIndexId: 2}
|
||||||
|
hm.unlockedAddHostInfo(hiA, f)
|
||||||
|
hm.unlockedAddHostInfo(hiP, f)
|
||||||
|
|
||||||
|
hiB := &HostInfo{vpnAddrs: []netip.Addr{a, b}, localIndexId: 3}
|
||||||
|
hm.unlockedAddHostInfo(hiB, f)
|
||||||
|
|
||||||
|
assert.Equal(t, []uint32{3, 1}, chainIds(t, hm, a))
|
||||||
|
assert.Equal(t, []uint32{3, 2}, chainIds(t, hm, b))
|
||||||
|
// hiA is still reachable via its address (not orphaned) and still indexed.
|
||||||
|
assert.Contains(t, chainIds(t, hm, a), hiA.localIndexId)
|
||||||
|
assert.NotNil(t, hm.QueryIndex(hiA.localIndexId))
|
||||||
|
}
|
||||||
|
|
||||||
// TestHostMap_MaxHostInfosPerVpnIp_MultipleVpnAddrs verifies the MaxHostInfosPerVpnIp overflow prune
|
// TestHostMap_MaxHostInfosPerVpnIp_MultipleVpnAddrs verifies the MaxHostInfosPerVpnIp overflow prune
|
||||||
// (unlockedInnerAddHostInfo calls unlockedDeleteHostInfo on the oldest node once the chain is too long)
|
// (unlockedInnerAddHostInfo calls unlockedDeleteHostInfo on the oldest node once the chain is too long)
|
||||||
// still behaves when hostinfos carry more than one vpnAddr. The pruned node is always the tail, so it is
|
// still behaves when hostinfos carry more than one vpnAddr. The pruned node is always the tail, so it is
|
||||||
@@ -267,32 +341,14 @@ func TestHostMap_MaxHostInfosPerVpnIp_MultipleVpnAddrs(t *testing.T) {
|
|||||||
|
|
||||||
oldest := hostinfos[len(hostinfos)-1]
|
oldest := hostinfos[len(hostinfos)-1]
|
||||||
|
|
||||||
// The oldest hostinfo should have been pruned and fully detached
|
// The oldest hostinfo was pruned from both lists and the index map.
|
||||||
assert.Nil(t, oldest.next)
|
|
||||||
assert.Nil(t, oldest.prev)
|
|
||||||
assert.Nil(t, hm.QueryIndex(oldest.localIndexId))
|
assert.Nil(t, hm.QueryIndex(oldest.localIndexId))
|
||||||
|
|
||||||
// Both addresses resolve to the same head, and that head is one of the survivors (not the pruned one)
|
// Both addresses hold exactly MaxHostInfosPerVpnIp survivors in the same order; oldest is absent.
|
||||||
primA := hm.QueryVpnAddr(a)
|
require.Len(t, chainIds(t, hm, a), MaxHostInfosPerVpnIp)
|
||||||
primB := hm.QueryVpnAddr(b)
|
assert.Equal(t, chainIds(t, hm, a), chainIds(t, hm, b), "both addresses must list the same survivors in the same order")
|
||||||
require.NotNil(t, primA)
|
assert.NotContains(t, chainIds(t, hm, a), oldest.localIndexId)
|
||||||
require.NotNil(t, primB)
|
assert.Equal(t, hm.QueryVpnAddr(a), hm.QueryVpnAddr(b))
|
||||||
assert.Equal(t, primA.localIndexId, primB.localIndexId)
|
|
||||||
assert.NotEqual(t, oldest.localIndexId, primA.localIndexId)
|
|
||||||
|
|
||||||
// Walk the shared chain: exactly MaxHostInfosPerVpnIp survivors, no cycles, oldest absent
|
|
||||||
seen := map[uint32]struct{}{}
|
|
||||||
for h := primA; h != nil; h = h.next {
|
|
||||||
_, dup := seen[h.localIndexId]
|
|
||||||
require.False(t, dup, "cycle detected in hostinfo chain")
|
|
||||||
seen[h.localIndexId] = struct{}{}
|
|
||||||
if h.next != nil {
|
|
||||||
assert.Equal(t, h.localIndexId, h.next.prev.localIndexId, "prev pointer must mirror next")
|
|
||||||
}
|
|
||||||
}
|
|
||||||
assert.Len(t, seen, MaxHostInfosPerVpnIp)
|
|
||||||
_, prunedStillPresent := seen[oldest.localIndexId]
|
|
||||||
assert.False(t, prunedStillPresent)
|
|
||||||
}
|
}
|
||||||
|
|
||||||
func TestHostMap_reload(t *testing.T) {
|
func TestHostMap_reload(t *testing.T) {
|
||||||
|
|||||||
Reference in New Issue
Block a user