Files
crossbar/internal/identity/identity.go
T
kyle a942e336d8 Add identity: whois resolver, checker, header mode, middleware; config for wake, peers, identity
Implemented-By: OpenCode session (model recorded in docs/implementer-log.md)
2026-09-25 10:16:51 -07:00

224 lines
6.1 KiB
Go

// Package identity resolves a caller's address to a tailnet node name, and gates a
// route on the set of peers it allows. In production the resolver asks
// `tailscale whois`; in the smoke run it trusts a request header. A Checker caches
// the answer per address so a hot peer does not re-query whois on every request.
package identity
import (
"context"
"encoding/json"
"errors"
"net"
"os/exec"
"strings"
"sync"
"time"
)
var (
// ErrNotAPeer is returned by a resolver when the address is not a known
// tailnet node. The Checker turns it into a deny.
ErrNotAPeer = errors.New("identity: not a tailnet peer")
// ErrForbidden is returned by the Checker when the caller is not on the
// route's allow list.
ErrForbidden = errors.New("identity: forbidden route")
)
// ID is the tailnet identity of a caller.
type ID struct {
Node, Login string
}
// Resolver maps an IP address to the tailnet node it belongs to.
type Resolver interface {
Identity(ctx context.Context, ip string) (ID, error)
}
// cacheTTL is how long a resolved identity (or a rejection) is held per address.
const cacheTTL = 5 * time.Minute
// ParseWhois decodes `tailscale whois --json` output. Node is ComputedName, or
// Name with its trailing dot and domain stripped; Login is the profile login
// name. An empty node name is an error.
func ParseWhois(raw []byte) (ID, error) {
var whois struct {
Node struct {
Name string `json:"Name"`
ComputedName string `json:"ComputedName"`
} `json:"Node"`
UserProfile struct {
LoginName string `json:"LoginName"`
} `json:"UserProfile"`
}
if err := json.Unmarshal(raw, &whois); err != nil {
return ID{}, err
}
node := whois.Node.ComputedName
if node == "" {
node = stripName(whois.Node.Name)
}
if node == "" {
return ID{}, errors.New("identity: whois has no node name")
}
return ID{Node: node, Login: whois.UserProfile.LoginName}, nil
}
// stripName takes a whois Name such as "titan.example.ts.net." and returns the
// first label, "titan".
func stripName(name string) string {
name = strings.TrimSuffix(name, ".")
if i := strings.IndexByte(name, '.'); i >= 0 {
name = name[:i]
}
return name
}
// TailscaleResolver runs `tailscale whois --json <ip>` and parses it. A non-zero
// exit is ErrNotAPeer; a missing binary (or other transport failure) is a real
// error the Checker treats as a deny.
type TailscaleResolver struct{ Bin string }
// Identity runs the whois lookup with a 3 s timeout.
func (t TailscaleResolver) Identity(ctx context.Context, ip string) (ID, error) {
bin := t.Bin
if bin == "" {
bin = "tailscale"
}
ctx, cancel := context.WithTimeout(ctx, 3*time.Second)
defer cancel()
out, err := exec.CommandContext(ctx, bin, "whois", "--json", ip).Output()
if err != nil {
var exitErr *exec.ExitError
if errors.As(err, &exitErr) {
return ID{}, ErrNotAPeer
}
return ID{}, err
}
return ParseWhois(out)
}
// entry is a cached result, whether a node name or a rejection.
type entry struct {
id ID
err error
at time.Time
}
// Checker resolves addresses through a Resolver, caching per address. In header
// mode it skips the cache and lets the resolver read the peer from the request.
type Checker struct {
r Resolver
header bool
mu sync.Mutex
cache map[string]entry
}
// NewChecker builds a Checker that resolves through r.
func NewChecker(r Resolver) *Checker {
return &Checker{r: r, cache: make(map[string]entry)}
}
// NewHeaderChecker builds a Checker that trusts the X-Crossbar-Peer request
// header as the node name. TEST/SMOKE ONLY.
func NewHeaderChecker() *Checker {
return &Checker{r: headerResolver{}, header: true, cache: make(map[string]entry)}
}
// WithHeaderPeer returns a context carrying the peer name the header checker
// reads. Middleware sets it from the X-Crossbar-Peer request header.
func WithHeaderPeer(ctx context.Context, peer string) context.Context {
return context.WithValue(ctx, headerPeerKey{}, peer)
}
// Allow reports whether the caller at remoteAddr may use a route limited to peers.
// An empty peers list is an open route; otherwise the caller's node must be in
// peers. Any resolver error, an unparsable address, or a loopback address denies.
func (c *Checker) Allow(ctx context.Context, peers []string, remoteAddr string) error {
if len(peers) == 0 {
return nil
}
ip := ""
if !c.header {
var ok bool
ip, ok = peerIP(remoteAddr)
if !ok || net.ParseIP(ip).IsLoopback() {
return ErrForbidden
}
}
node, err := c.resolve(ctx, ip)
if err != nil {
return ErrForbidden
}
for _, p := range peers {
if p == node {
return nil
}
}
return ErrForbidden
}
// resolve returns the node for ip, using the cache unless in header mode.
func (c *Checker) resolve(ctx context.Context, ip string) (string, error) {
if c.header {
id, err := c.r.Identity(ctx, ip)
if err != nil {
return "", err
}
return id.Node, nil
}
c.mu.Lock()
e, hit := c.cache[ip]
if hit && time.Since(e.at) < cacheTTL {
c.mu.Unlock()
if e.err != nil {
return "", e.err
}
return e.id.Node, nil
}
c.mu.Unlock()
id, err := c.r.Identity(ctx, ip)
if err != nil {
c.mu.Lock()
c.cache[ip] = entry{err: err, at: time.Now()}
c.mu.Unlock()
return "", err
}
c.mu.Lock()
c.cache[ip] = entry{id: id, at: time.Now()}
c.mu.Unlock()
return id.Node, nil
}
// headerPeerKey is the context key under which Middleware stores the X-Crossbar-Peer
// value for the header checker to read.
type headerPeerKey struct{}
// headerResolver answers from the peer name Middleware placed on the context. An
// absent or empty header is a deny, so a request that forgot the header is 403.
type headerResolver struct{}
func (headerResolver) Identity(ctx context.Context, _ string) (ID, error) {
peer, ok := ctx.Value(headerPeerKey{}).(string)
if !ok || peer == "" {
return ID{}, ErrNotAPeer
}
return ID{Node: peer, Login: peer}, nil
}
// peerIP splits the host from a "host:port" address, returning the bare IP.
func peerIP(remoteAddr string) (string, bool) {
host := remoteAddr
if h, _, err := net.SplitHostPort(remoteAddr); err == nil {
host = h
}
ip := net.ParseIP(host)
if ip == nil {
return "", false
}
return ip.String(), true
}