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https://github.com/tailscale/tailscale.git
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0ed088b47b
This commit continues the work from #8303, providing a method for a tka.Authority to generate valid deeplinks for signing devices. We'll use this to provide the necessary deeplinks for users to sign from their mobile devices. Updates #8302 Signed-off-by: Ross Zurowski <ross@rosszurowski.com>
222 lines
5.6 KiB
Go
222 lines
5.6 KiB
Go
// Copyright (c) Tailscale Inc & AUTHORS
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// SPDX-License-Identifier: BSD-3-Clause
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package tka
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import (
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"crypto/hmac"
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"crypto/sha256"
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"encoding/binary"
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"encoding/hex"
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"fmt"
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"net/url"
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"strings"
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)
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const (
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DeeplinkTailscaleURLScheme = "tailscale"
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DeeplinkCommandSign = "sign-device"
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)
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// generateHMAC computes a SHA-256 HMAC for the concatenation of components,
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// using the Authority stateID as secret.
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func (a *Authority) generateHMAC(params NewDeeplinkParams) []byte {
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stateID, _ := a.StateIDs()
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key := make([]byte, 8)
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binary.LittleEndian.PutUint64(key, stateID)
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mac := hmac.New(sha256.New, key)
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mac.Write([]byte(params.NodeKey))
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mac.Write([]byte(params.TLPub))
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mac.Write([]byte(params.DeviceName))
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mac.Write([]byte(params.OSName))
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mac.Write([]byte(params.LoginName))
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return mac.Sum(nil)
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}
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type NewDeeplinkParams struct {
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NodeKey string
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TLPub string
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DeviceName string
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OSName string
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LoginName string
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}
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// NewDeeplink creates a signed deeplink using the authority's stateID as a
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// secret. This deeplink can then be validated by ValidateDeeplink.
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func (a *Authority) NewDeeplink(params NewDeeplinkParams) (string, error) {
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if params.NodeKey == "" || !strings.HasPrefix(params.NodeKey, "nodekey:") {
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return "", fmt.Errorf("invalid node key %q", params.NodeKey)
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}
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if params.TLPub == "" || !strings.HasPrefix(params.TLPub, "tlpub:") {
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return "", fmt.Errorf("invalid tlpub %q", params.TLPub)
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}
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if params.DeviceName == "" {
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return "", fmt.Errorf("invalid device name %q", params.DeviceName)
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}
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if params.OSName == "" {
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return "", fmt.Errorf("invalid os name %q", params.OSName)
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}
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if params.LoginName == "" {
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return "", fmt.Errorf("invalid login name %q", params.LoginName)
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}
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u := url.URL{
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Scheme: DeeplinkTailscaleURLScheme,
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Host: DeeplinkCommandSign,
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Path: "/v1/",
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}
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v := url.Values{}
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v.Set("nk", params.NodeKey)
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v.Set("tp", params.TLPub)
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v.Set("dn", params.DeviceName)
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v.Set("os", params.OSName)
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v.Set("em", params.LoginName)
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hmac := a.generateHMAC(params)
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v.Set("hm", hex.EncodeToString(hmac))
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u.RawQuery = v.Encode()
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return u.String(), nil
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}
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type DeeplinkValidationResult struct {
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IsValid bool
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Error string
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Version uint8
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NodeKey string
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TLPub string
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DeviceName string
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OSName string
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EmailAddress string
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}
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// ValidateDeeplink validates a device signing deeplink using the authority's stateID.
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// The input urlString follows this structure:
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//
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// tailscale://sign-device/v1/?nk=xxx&tp=xxx&dn=xxx&os=xxx&em=xxx&hm=xxx
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//
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// where:
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// - "nk" is the nodekey of the node being signed
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// - "tp" is the tailnet lock public key
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// - "dn" is the name of the node
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// - "os" is the operating system of the node
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// - "em" is the email address associated with the node
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// - "hm" is a SHA-256 HMAC computed over the concatenation of the above fields, encoded as a hex string
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func (a *Authority) ValidateDeeplink(urlString string) DeeplinkValidationResult {
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parsedUrl, err := url.Parse(urlString)
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if err != nil {
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return DeeplinkValidationResult{
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IsValid: false,
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Error: err.Error(),
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}
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}
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if parsedUrl.Scheme != DeeplinkTailscaleURLScheme {
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return DeeplinkValidationResult{
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IsValid: false,
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Error: fmt.Sprintf("unhandled scheme %s, expected %s", parsedUrl.Scheme, DeeplinkTailscaleURLScheme),
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}
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}
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if parsedUrl.Host != DeeplinkCommandSign {
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return DeeplinkValidationResult{
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IsValid: false,
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Error: fmt.Sprintf("unhandled host %s, expected %s", parsedUrl.Host, DeeplinkCommandSign),
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}
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}
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path := parsedUrl.EscapedPath()
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pathComponents := strings.Split(path, "/")
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if len(pathComponents) != 3 {
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return DeeplinkValidationResult{
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IsValid: false,
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Error: "invalid path components number found",
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}
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}
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if pathComponents[1] != "v1" {
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return DeeplinkValidationResult{
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IsValid: false,
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Error: fmt.Sprintf("expected v1 deeplink version, found something else: %s", pathComponents[1]),
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}
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}
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nodeKey := parsedUrl.Query().Get("nk")
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if len(nodeKey) == 0 {
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return DeeplinkValidationResult{
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IsValid: false,
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Error: "missing nk (NodeKey) query parameter",
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}
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}
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tlPub := parsedUrl.Query().Get("tp")
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if len(tlPub) == 0 {
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return DeeplinkValidationResult{
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IsValid: false,
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Error: "missing tp (TLPub) query parameter",
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}
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}
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deviceName := parsedUrl.Query().Get("dn")
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if len(deviceName) == 0 {
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return DeeplinkValidationResult{
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IsValid: false,
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Error: "missing dn (DeviceName) query parameter",
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}
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}
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osName := parsedUrl.Query().Get("os")
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if len(deviceName) == 0 {
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return DeeplinkValidationResult{
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IsValid: false,
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Error: "missing os (OSName) query parameter",
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}
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}
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emailAddress := parsedUrl.Query().Get("em")
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if len(emailAddress) == 0 {
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return DeeplinkValidationResult{
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IsValid: false,
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Error: "missing em (EmailAddress) query parameter",
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}
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}
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hmacString := parsedUrl.Query().Get("hm")
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if len(hmacString) == 0 {
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return DeeplinkValidationResult{
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IsValid: false,
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Error: "missing hm (HMAC) query parameter",
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}
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}
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computedHMAC := a.generateHMAC(NewDeeplinkParams{
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NodeKey: nodeKey,
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TLPub: tlPub,
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DeviceName: deviceName,
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OSName: osName,
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LoginName: emailAddress,
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})
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hmacHexBytes, err := hex.DecodeString(hmacString)
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if err != nil {
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return DeeplinkValidationResult{IsValid: false, Error: "could not hex-decode hmac"}
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}
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if !hmac.Equal(computedHMAC, hmacHexBytes) {
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return DeeplinkValidationResult{
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IsValid: false,
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Error: "hmac authentication failed",
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}
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}
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return DeeplinkValidationResult{
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IsValid: true,
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NodeKey: nodeKey,
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TLPub: tlPub,
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DeviceName: deviceName,
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OSName: osName,
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EmailAddress: emailAddress,
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}
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}
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