422 lines
10 KiB
Go
422 lines
10 KiB
Go
// Copyright (c) 2020 Tailscale Inc & AUTHORS All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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// Package ipnstate captures the entire state of the Tailscale network.
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//
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// It's a leaf package so ipn, wgengine, and magicsock can all depend on it.
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package ipnstate
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import (
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"bytes"
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"fmt"
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"html"
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"io"
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"log"
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"sort"
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"strings"
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"sync"
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"time"
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"inet.af/netaddr"
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"tailscale.com/tailcfg"
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"tailscale.com/types/key"
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"tailscale.com/util/dnsname"
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)
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// Status represents the entire state of the IPN network.
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type Status struct {
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BackendState string
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TailscaleIPs []netaddr.IP // Tailscale IP(s) assigned to this node
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Self *PeerStatus
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// MagicDNSSuffix is the network's MagicDNS suffix for nodes
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// in the network such as "userfoo.tailscale.net".
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// There are no surrounding dots.
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// MagicDNSSuffix should be populated regardless of whether a domain
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// has MagicDNS enabled.
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MagicDNSSuffix string
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Peer map[key.Public]*PeerStatus
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User map[tailcfg.UserID]tailcfg.UserProfile
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}
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func (s *Status) Peers() []key.Public {
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kk := make([]key.Public, 0, len(s.Peer))
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for k := range s.Peer {
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kk = append(kk, k)
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}
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sort.Slice(kk, func(i, j int) bool { return bytes.Compare(kk[i][:], kk[j][:]) < 0 })
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return kk
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}
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type PeerStatusLite struct {
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TxBytes, RxBytes int64
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LastHandshake time.Time
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NodeKey tailcfg.NodeKey
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}
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type PeerStatus struct {
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PublicKey key.Public
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HostName string // HostInfo's Hostname (not a DNS name or necessarily unique)
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DNSName string
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OS string // HostInfo.OS
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UserID tailcfg.UserID
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TailAddr string // Tailscale IP
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// Endpoints:
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Addrs []string
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CurAddr string // one of Addrs, or unique if roaming
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Relay string // DERP region
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RxBytes int64
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TxBytes int64
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Created time.Time // time registered with tailcontrol
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LastWrite time.Time // time last packet sent
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LastSeen time.Time // last seen to tailcontrol
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LastHandshake time.Time // with local wireguard
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KeepAlive bool
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ExitNode bool // true if this is the currently selected exit node.
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// ShareeNode indicates this node exists in the netmap because
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// it's owned by a shared-to user and that node might connect
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// to us. These nodes should be hidden by "tailscale status"
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// etc by default.
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ShareeNode bool `json:",omitempty"`
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// InNetworkMap means that this peer was seen in our latest network map.
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// In theory, all of InNetworkMap and InMagicSock and InEngine should all be true.
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InNetworkMap bool
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// InMagicSock means that this peer is being tracked by magicsock.
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// In theory, all of InNetworkMap and InMagicSock and InEngine should all be true.
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InMagicSock bool
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// InEngine means that this peer is tracked by the wireguard engine.
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// In theory, all of InNetworkMap and InMagicSock and InEngine should all be true.
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InEngine bool
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}
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// SimpleHostName returns a potentially simplified version of ps.HostName for display purposes.
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func (ps *PeerStatus) SimpleHostName() string {
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n := ps.HostName
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n = strings.TrimSuffix(n, ".local")
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n = strings.TrimSuffix(n, ".localdomain")
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return n
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}
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type StatusBuilder struct {
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mu sync.Mutex
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locked bool
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st Status
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}
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func (sb *StatusBuilder) SetBackendState(v string) {
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sb.mu.Lock()
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defer sb.mu.Unlock()
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sb.st.BackendState = v
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}
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func (sb *StatusBuilder) SetMagicDNSSuffix(v string) {
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sb.mu.Lock()
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defer sb.mu.Unlock()
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sb.st.MagicDNSSuffix = v
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}
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func (sb *StatusBuilder) Status() *Status {
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sb.mu.Lock()
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defer sb.mu.Unlock()
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sb.locked = true
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return &sb.st
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}
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// SetSelfStatus sets the status of the local machine.
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func (sb *StatusBuilder) SetSelfStatus(ss *PeerStatus) {
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sb.mu.Lock()
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defer sb.mu.Unlock()
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sb.st.Self = ss
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}
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// AddUser adds a user profile to the status.
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func (sb *StatusBuilder) AddUser(id tailcfg.UserID, up tailcfg.UserProfile) {
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sb.mu.Lock()
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defer sb.mu.Unlock()
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if sb.locked {
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log.Printf("[unexpected] ipnstate: AddUser after Locked")
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return
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}
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if sb.st.User == nil {
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sb.st.User = make(map[tailcfg.UserID]tailcfg.UserProfile)
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}
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sb.st.User[id] = up
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}
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// AddIP adds a Tailscale IP address to the status.
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func (sb *StatusBuilder) AddTailscaleIP(ip netaddr.IP) {
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sb.mu.Lock()
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defer sb.mu.Unlock()
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if sb.locked {
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log.Printf("[unexpected] ipnstate: AddIP after Locked")
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return
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}
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sb.st.TailscaleIPs = append(sb.st.TailscaleIPs, ip)
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}
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// AddPeer adds a peer node to the status.
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//
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// Its PeerStatus is mixed with any previous status already added.
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func (sb *StatusBuilder) AddPeer(peer key.Public, st *PeerStatus) {
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if st == nil {
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panic("nil PeerStatus")
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}
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sb.mu.Lock()
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defer sb.mu.Unlock()
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if sb.locked {
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log.Printf("[unexpected] ipnstate: AddPeer after Locked")
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return
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}
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if sb.st.Peer == nil {
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sb.st.Peer = make(map[key.Public]*PeerStatus)
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}
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e, ok := sb.st.Peer[peer]
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if !ok {
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sb.st.Peer[peer] = st
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st.PublicKey = peer
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return
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}
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if v := st.HostName; v != "" {
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e.HostName = v
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}
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if v := st.DNSName; v != "" {
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e.DNSName = v
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}
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if v := st.Relay; v != "" {
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e.Relay = v
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}
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if v := st.UserID; v != 0 {
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e.UserID = v
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}
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if v := st.TailAddr; v != "" {
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e.TailAddr = v
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}
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if v := st.OS; v != "" {
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e.OS = st.OS
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}
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if v := st.Addrs; v != nil {
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e.Addrs = v
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}
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if v := st.CurAddr; v != "" {
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e.CurAddr = v
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}
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if v := st.RxBytes; v != 0 {
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e.RxBytes = v
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}
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if v := st.TxBytes; v != 0 {
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e.TxBytes = v
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}
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if v := st.LastHandshake; !v.IsZero() {
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e.LastHandshake = v
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}
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if v := st.Created; !v.IsZero() {
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e.Created = v
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}
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if v := st.LastSeen; !v.IsZero() {
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e.LastSeen = v
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}
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if v := st.LastWrite; !v.IsZero() {
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e.LastWrite = v
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}
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if st.InNetworkMap {
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e.InNetworkMap = true
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}
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if st.InMagicSock {
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e.InMagicSock = true
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}
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if st.InEngine {
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e.InEngine = true
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}
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if st.KeepAlive {
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e.KeepAlive = true
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}
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if st.ExitNode {
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e.ExitNode = true
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}
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if st.ShareeNode {
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e.ShareeNode = true
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}
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}
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type StatusUpdater interface {
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UpdateStatus(*StatusBuilder)
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}
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func (st *Status) WriteHTML(w io.Writer) {
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f := func(format string, args ...interface{}) { fmt.Fprintf(w, format, args...) }
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f(`<!DOCTYPE html>
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<html lang="en">
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<head>
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<title>Tailscale State</title>
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<style>
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body { font-family: monospace; }
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.owner { text-decoration: underline; }
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.tailaddr { font-style: italic; }
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.acenter { text-align: center; }
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.aright { text-align: right; }
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table, th, td { border: 1px solid black; border-spacing : 0; border-collapse : collapse; }
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thead { background-color: #FFA500; }
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th, td { padding: 5px; }
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td { vertical-align: top; }
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table tbody tr:nth-child(even) td { background-color: #f5f5f5; }
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</style>
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</head>
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<body>
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<h1>Tailscale State</h1>
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`)
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//f("<p><b>logid:</b> %s</p>\n", logid)
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//f("<p><b>opts:</b> <code>%s</code></p>\n", html.EscapeString(fmt.Sprintf("%+v", opts)))
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ips := make([]string, 0, len(st.TailscaleIPs))
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for _, ip := range st.TailscaleIPs {
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ips = append(ips, ip.String())
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}
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f("<p>Tailscale IP: %s", strings.Join(ips, ", "))
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f("<table>\n<thead>\n")
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f("<tr><th>Peer</th><th>OS</th><th>Node</th><th>Owner</th><th>Rx</th><th>Tx</th><th>Activity</th><th>Connection</th></tr>\n")
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f("</thead>\n<tbody>\n")
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now := time.Now()
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var peers []*PeerStatus
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for _, peer := range st.Peers() {
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ps := st.Peer[peer]
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if ps.ShareeNode {
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continue
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}
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peers = append(peers, ps)
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}
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SortPeers(peers)
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for _, ps := range peers {
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var actAgo string
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if !ps.LastWrite.IsZero() {
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ago := now.Sub(ps.LastWrite)
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actAgo = ago.Round(time.Second).String() + " ago"
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if ago < 5*time.Minute {
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actAgo = "<b>" + actAgo + "</b>"
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}
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}
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var owner string
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if up, ok := st.User[ps.UserID]; ok {
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owner = up.LoginName
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if i := strings.Index(owner, "@"); i != -1 {
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owner = owner[:i]
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}
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}
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hostName := ps.SimpleHostName()
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dnsName := strings.TrimRight(ps.DNSName, ".")
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if i := strings.Index(dnsName, "."); i != -1 && dnsname.HasSuffix(dnsName, st.MagicDNSSuffix) {
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dnsName = dnsName[:i]
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}
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if strings.EqualFold(dnsName, hostName) || ps.UserID != st.Self.UserID {
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hostName = ""
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}
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var hostNameHTML string
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if hostName != "" {
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hostNameHTML = "<br>" + html.EscapeString(hostName)
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}
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f("<tr><td>%s</td><td class=acenter>%s</td>"+
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"<td><b>%s</b>%s<div class=\"tailaddr\">%s</div></td><td class=\"acenter owner\">%s</td><td class=\"aright\">%v</td><td class=\"aright\">%v</td><td class=\"aright\">%v</td>",
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ps.PublicKey.ShortString(),
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osEmoji(ps.OS),
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html.EscapeString(dnsName),
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hostNameHTML,
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ps.TailAddr,
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html.EscapeString(owner),
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ps.RxBytes,
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ps.TxBytes,
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actAgo,
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)
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f("<td>")
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// TODO: let server report this active bool instead
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active := !ps.LastWrite.IsZero() && time.Since(ps.LastWrite) < 2*time.Minute
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if active {
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if ps.Relay != "" && ps.CurAddr == "" {
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f("relay <b>%s</b>", html.EscapeString(ps.Relay))
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} else if ps.CurAddr != "" {
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f("direct <b>%s</b>", html.EscapeString(ps.CurAddr))
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}
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}
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f("</td>") // end Addrs
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f("</tr>\n")
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}
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f("</tbody>\n</table>\n")
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f("</body>\n</html>\n")
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}
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func osEmoji(os string) string {
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switch os {
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case "linux":
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return "🐧"
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case "macOS":
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return "🍎"
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case "windows":
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return "🖥️"
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case "iOS":
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return "📱"
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case "android":
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return "🤖"
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case "freebsd":
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return "👿"
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case "openbsd":
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return "🐡"
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}
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return "👽"
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}
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// PingResult contains response information for the "tailscale ping" subcommand,
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// saying how Tailscale can reach a Tailscale IP or subnet-routed IP.
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type PingResult struct {
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IP string // ping destination
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NodeIP string // Tailscale IP of node handling IP (different for subnet routers)
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NodeName string // DNS name base or (possibly not unique) hostname
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Err string
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LatencySeconds float64
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Endpoint string // ip:port if direct UDP was used
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DERPRegionID int // non-zero if DERP was used
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DERPRegionCode string // three-letter airport/region code if DERP was used
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// TODO(bradfitz): details like whether port mapping was used on either side? (Once supported)
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}
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func SortPeers(peers []*PeerStatus) {
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sort.Slice(peers, func(i, j int) bool { return sortKey(peers[i]) < sortKey(peers[j]) })
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}
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func sortKey(ps *PeerStatus) string {
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if ps.DNSName != "" {
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return ps.DNSName
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}
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if ps.HostName != "" {
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return ps.HostName
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}
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return ps.TailAddr
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}
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