//go:build !ios package certproof import ( "context" "fmt" "os" "os/exec" "strconv" "time" log "github.com/sirupsen/logrus" "github.com/netbirdio/netbird/shared/management/certposture" "github.com/netbirdio/netbird/shared/management/proto" ) const helperTimeout = 30 * time.Second // CollectProofs answers the certificate challenges in checks from every store this Mac // can reach. The root daemon reads the System keychain itself, which is where MDM // installs device identities, and reaches the console user's login keychain only by // launching a helper into that user's session. A Mac sitting at the login window // therefore yields device proofs alone. func CollectProofs(ctx context.Context, checks []*proto.Checks, peerKey []byte, cfg Config) []certposture.Proof { challenges := certificateChallenges(checks) if len(challenges) == 0 { logNoChallenges(checks) return nil } // A helper already runs inside the user's session, so it reads its own keychain // directly and must never launch another one. if os.Geteuid() != 0 { return CollectChallenges(ctx, DefaultStore(), challenges, peerKey) } proofs := CollectChallenges(ctx, DefaultStore(), challenges, peerKey) userProofs, err := collectAsConsoleUser(ctx, cfg.ProfileOwner, challenges, peerKey) if err != nil { log.Debugf("certificate posture: console user keychain unavailable: %v", err) } return mergeProofs(proofs, userProofs) } // UserContext identifies the user whose keychain a collection would include: the console // user when it owns the active profile, or empty when no user keychain would be asked. A // change means a collection made earlier no longer reflects what this Mac can prove. func UserContext(cfg Config) string { if os.Geteuid() != 0 { return "" } user, ok := CurrentConsoleUser() if !ok || !user.isOwner(cfg.ProfileOwner) { return "" } return strconv.FormatUint(uint64(user.UID), 10) + ":" + user.Name } // collectAsConsoleUser runs the helper inside the desktop session of the logged-in // user. Dropping to their uid is not enough: keychain access is an XPC call to a // per-session securityd, so the helper has to enter their Mach bootstrap namespace, // which is what launchctl asuser does. func collectAsConsoleUser(ctx context.Context, owner string, challenges []*proto.CertificateChallenge, peerKey []byte) ([]certposture.Proof, error) { user, ok := CurrentConsoleUser() if !ok { return nil, nil } if !user.isOwner(owner) { log.Debugf("certificate posture: console user %s does not own the active profile, no user keychain is asked", user.Name) return nil, nil } binary, err := os.Executable() if err != nil { return nil, fmt.Errorf("resolve own binary: %w", err) } ctx, cancel := context.WithTimeout(ctx, helperTimeout) defer cancel() // Absolute paths, because the daemon's PATH is configurable through the service // environment, and sudo selects the user by uid so the name never has to round-trip. uid := strconv.FormatUint(uint64(user.UID), 10) cmd := exec.CommandContext(ctx, "/bin/launchctl", "asuser", uid, "/usr/bin/sudo", "-u", "#"+uid, "-H", binary, "posture", "cert-proof") log.Debugf("certificate posture: asking the desktop session of uid %s to answer %d challenges", uid, len(challenges)) proofs, err := runHelperCmd(cmd, helperRequest(challenges, peerKey)) if err != nil { return nil, fmt.Errorf("run helper as uid %s: %w", uid, err) } log.Debugf("certificate posture: desktop session of uid %s returned %d proofs", uid, len(proofs)) return proofs, nil } // helperStore is the store the helper reads. On macOS the keychain search list of the // user's own session already is that user's keychain, so the platform default is right. func helperStore() Store { return DefaultStore() }