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340 lines
11 KiB
Go
340 lines
11 KiB
Go
// Copyright (c) Tailscale Inc & AUTHORS
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// SPDX-License-Identifier: BSD-3-Clause
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package web
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import (
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"context"
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"crypto/rand"
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"encoding/base64"
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"errors"
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"fmt"
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"net/http"
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"net/url"
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"slices"
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"strings"
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"time"
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"tailscale.com/client/tailscale/apitype"
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"tailscale.com/ipn/ipnstate"
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"tailscale.com/tailcfg"
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)
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const (
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sessionCookieName = "TS-Web-Session"
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sessionCookieExpiry = time.Hour * 24 * 30 // 30 days
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)
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// browserSession holds data about a user's browser session
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// on the full management web client.
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type browserSession struct {
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// ID is the unique identifier for the session.
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// It is passed in the user's "TS-Web-Session" browser cookie.
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ID string
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SrcNode tailcfg.NodeID
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SrcUser tailcfg.UserID
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AuthID string // from tailcfg.WebClientAuthResponse
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AuthURL string // from tailcfg.WebClientAuthResponse
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Created time.Time
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Authenticated bool
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}
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// isAuthorized reports true if the given session is authorized
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// to be used by its associated user to access the full management
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// web client.
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//
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// isAuthorized is true only when s.Authenticated is true (i.e.
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// the user has authenticated the session) and the session is not
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// expired.
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// 2023-10-05: Sessions expire by default 30 days after creation.
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func (s *browserSession) isAuthorized(now time.Time) bool {
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switch {
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case s == nil:
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return false
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case !s.Authenticated:
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return false // awaiting auth
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case s.isExpired(now):
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return false // expired
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}
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return true
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}
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// isExpired reports true if s is expired.
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// 2023-10-05: Sessions expire by default 30 days after creation.
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func (s *browserSession) isExpired(now time.Time) bool {
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return !s.Created.IsZero() && now.After(s.expires())
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}
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// expires reports when the given session expires.
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func (s *browserSession) expires() time.Time {
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return s.Created.Add(sessionCookieExpiry)
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}
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var (
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errNoSession = errors.New("no-browser-session")
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errNotUsingTailscale = errors.New("not-using-tailscale")
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errTaggedRemoteSource = errors.New("tagged-remote-source")
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errTaggedLocalSource = errors.New("tagged-local-source")
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errNotOwner = errors.New("not-owner")
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)
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// getSession retrieves the browser session associated with the request,
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// if one exists.
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//
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// An error is returned in any of the following cases:
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//
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// - (errNotUsingTailscale) The request was not made over tailscale.
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//
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// - (errNoSession) The request does not have a session.
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//
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// - (errTaggedRemoteSource) The source is remote (another node) and tagged.
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// Users must use their own user-owned devices to manage other nodes'
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// web clients.
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//
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// - (errTaggedLocalSource) The source is local (the same node) and tagged.
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// Tagged nodes can only be remotely managed, allowing ACLs to dictate
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// access to web clients.
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//
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// - (errNotOwner) The source is not the owner of this client (if the
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// client is user-owned). Only the owner is allowed to manage the
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// node via the web client.
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//
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// If no error is returned, the browserSession is always non-nil.
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// getTailscaleBrowserSession does not check whether the session has been
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// authorized by the user. Callers can use browserSession.isAuthorized.
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//
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// The WhoIsResponse is always populated, with a non-nil Node and UserProfile,
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// unless getTailscaleBrowserSession reports errNotUsingTailscale.
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func (s *Server) getSession(r *http.Request) (*browserSession, *apitype.WhoIsResponse, *ipnstate.Status, error) {
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whoIs, whoIsErr := s.lc.WhoIs(r.Context(), r.RemoteAddr)
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status, statusErr := s.lc.StatusWithoutPeers(r.Context())
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switch {
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case whoIsErr != nil:
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return nil, nil, status, errNotUsingTailscale
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case statusErr != nil:
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return nil, whoIs, nil, statusErr
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case status.Self == nil:
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return nil, whoIs, status, errors.New("missing self node in tailscale status")
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case whoIs.Node.IsTagged() && whoIs.Node.StableID == status.Self.ID:
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return nil, whoIs, status, errTaggedLocalSource
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case whoIs.Node.IsTagged():
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return nil, whoIs, status, errTaggedRemoteSource
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case !status.Self.IsTagged() && status.Self.UserID != whoIs.UserProfile.ID:
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return nil, whoIs, status, errNotOwner
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}
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srcNode := whoIs.Node.ID
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srcUser := whoIs.UserProfile.ID
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cookie, err := r.Cookie(sessionCookieName)
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if errors.Is(err, http.ErrNoCookie) {
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return nil, whoIs, status, errNoSession
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} else if err != nil {
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return nil, whoIs, status, err
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}
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v, ok := s.browserSessions.Load(cookie.Value)
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if !ok {
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return nil, whoIs, status, errNoSession
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}
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session := v.(*browserSession)
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if session.SrcNode != srcNode || session.SrcUser != srcUser {
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// In this case the browser cookie is associated with another tailscale node.
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// Maybe the source browser's machine was logged out and then back in as a different node.
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// Return errNoSession because there is no session for this user.
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return nil, whoIs, status, errNoSession
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} else if session.isExpired(s.timeNow()) {
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// Session expired, remove from session map and return errNoSession.
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s.browserSessions.Delete(session.ID)
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return nil, whoIs, status, errNoSession
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}
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return session, whoIs, status, nil
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}
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// newSession creates a new session associated with the given source user/node,
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// and stores it back to the session cache. Creating of a new session includes
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// generating a new auth URL from the control server.
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func (s *Server) newSession(ctx context.Context, src *apitype.WhoIsResponse) (*browserSession, error) {
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sid, err := s.newSessionID()
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if err != nil {
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return nil, err
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}
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session := &browserSession{
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ID: sid,
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SrcNode: src.Node.ID,
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SrcUser: src.UserProfile.ID,
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Created: s.timeNow(),
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}
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if s.controlSupportsCheckMode(ctx) {
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// control supports check mode, so get a new auth URL and return.
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a, err := s.newAuthURL(ctx, src.Node.ID)
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if err != nil {
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return nil, err
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}
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session.AuthID = a.ID
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session.AuthURL = a.URL
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} else {
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// control does not support check mode, so there is no additional auth we can do.
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session.Authenticated = true
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}
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s.browserSessions.Store(sid, session)
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return session, nil
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}
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// controlSupportsCheckMode returns whether the current control server supports web client check mode, to verify a user's identity.
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// We assume that only "tailscale.com" control servers support check mode.
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// This allows the web client to be used with non-standard control servers.
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// If an error occurs getting the control URL, this method returns true to fail closed.
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//
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// TODO(juanfont/headscale#1623): adjust or remove this when headscale supports check mode.
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func (s *Server) controlSupportsCheckMode(ctx context.Context) bool {
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prefs, err := s.lc.GetPrefs(ctx)
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if err != nil {
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return true
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}
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controlURL, err := url.Parse(prefs.ControlURLOrDefault())
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if err != nil {
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return true
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}
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return strings.HasSuffix(controlURL.Host, ".tailscale.com")
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}
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// awaitUserAuth blocks until the given session auth has been completed
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// by the user on the control server, then updates the session cache upon
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// completion. An error is returned if control auth failed for any reason.
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func (s *Server) awaitUserAuth(ctx context.Context, session *browserSession) error {
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if session.isAuthorized(s.timeNow()) {
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return nil // already authorized
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}
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a, err := s.waitAuthURL(ctx, session.AuthID, session.SrcNode)
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if err != nil {
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// Clean up the session. Doing this on any error from control
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// server to avoid the user getting stuck with a bad session
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// cookie.
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s.browserSessions.Delete(session.ID)
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return err
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}
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if a.Complete {
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session.Authenticated = a.Complete
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s.browserSessions.Store(session.ID, session)
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}
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return nil
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}
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func (s *Server) newSessionID() (string, error) {
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raw := make([]byte, 16)
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for range 5 {
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if _, err := rand.Read(raw); err != nil {
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return "", err
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}
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cookie := "ts-web-" + base64.RawURLEncoding.EncodeToString(raw)
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if _, ok := s.browserSessions.Load(cookie); !ok {
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return cookie, nil
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}
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}
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return "", errors.New("too many collisions generating new session; please refresh page")
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}
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// peerCapabilities holds information about what a source
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// peer is allowed to edit via the web UI.
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//
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// map value is true if the peer can edit the given feature.
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// Only capFeatures included in validCaps will be included.
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type peerCapabilities map[capFeature]bool
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// canEdit is true if the peerCapabilities grant edit access
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// to the given feature.
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func (p peerCapabilities) canEdit(feature capFeature) bool {
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if p == nil {
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return false
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}
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if p[capFeatureAll] {
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return true
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}
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return p[feature]
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}
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// isEmpty is true if p is either nil or has no capabilities
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// with value true.
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func (p peerCapabilities) isEmpty() bool {
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if p == nil {
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return true
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}
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for _, v := range p {
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if v == true {
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return false
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}
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}
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return true
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}
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type capFeature string
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const (
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// The following values should not be edited.
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// New caps can be added, but existing ones should not be changed,
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// as these exact values are used by users in tailnet policy files.
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//
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// IMPORTANT: When adding a new cap, also update validCaps slice below.
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capFeatureAll capFeature = "*" // grants peer management of all features
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capFeatureSSH capFeature = "ssh" // grants peer SSH server management
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capFeatureSubnets capFeature = "subnets" // grants peer subnet routes management
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capFeatureExitNodes capFeature = "exitnodes" // grants peer ability to advertise-as and use exit nodes
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capFeatureAccount capFeature = "account" // grants peer ability to turn on auto updates and log out of node
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)
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// validCaps contains the list of valid capabilities used in the web client.
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// Any capabilities included in a peer's grants that do not fall into this
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// list will be ignored.
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var validCaps []capFeature = []capFeature{
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capFeatureAll,
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capFeatureSSH,
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capFeatureSubnets,
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capFeatureExitNodes,
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capFeatureAccount,
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}
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type capRule struct {
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CanEdit []string `json:"canEdit,omitempty"` // list of features peer is allowed to edit
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}
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// toPeerCapabilities parses out the web ui capabilities from the
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// given whois response.
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func toPeerCapabilities(status *ipnstate.Status, whois *apitype.WhoIsResponse) (peerCapabilities, error) {
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if whois == nil || status == nil {
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return peerCapabilities{}, nil
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}
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if whois.Node.IsTagged() {
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// We don't allow management *from* tagged nodes, so ignore caps.
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// The web client auth flow relies on having a true user identity
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// that can be verified through login.
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return peerCapabilities{}, nil
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}
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if !status.Self.IsTagged() {
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// User owned nodes are only ever manageable by the owner.
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if status.Self.UserID != whois.UserProfile.ID {
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return peerCapabilities{}, nil
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} else {
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return peerCapabilities{capFeatureAll: true}, nil // owner can edit all features
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}
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}
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// For tagged nodes, we actually look at the granted capabilities.
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caps := peerCapabilities{}
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rules, err := tailcfg.UnmarshalCapJSON[capRule](whois.CapMap, tailcfg.PeerCapabilityWebUI)
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if err != nil {
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return nil, fmt.Errorf("failed to unmarshal capability: %v", err)
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}
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for _, c := range rules {
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for _, f := range c.CanEdit {
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cap := capFeature(strings.ToLower(f))
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if slices.Contains(validCaps, cap) {
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caps[cap] = true
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}
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}
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}
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return caps, nil
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}
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