sign.go 12 KB

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  1. package main
  2. import (
  3. "crypto/ecdh"
  4. "crypto/rand"
  5. "errors"
  6. "flag"
  7. "fmt"
  8. "io"
  9. "net/netip"
  10. "os"
  11. "strings"
  12. "time"
  13. "github.com/skip2/go-qrcode"
  14. "github.com/slackhq/nebula/cert"
  15. "github.com/slackhq/nebula/pkclient"
  16. "golang.org/x/crypto/curve25519"
  17. )
  18. type signFlags struct {
  19. set *flag.FlagSet
  20. version *uint
  21. caKeyPath *string
  22. caCertPath *string
  23. name *string
  24. networks *string
  25. unsafeNetworks *string
  26. duration *time.Duration
  27. inPubPath *string
  28. outKeyPath *string
  29. outCertPath *string
  30. outQRPath *string
  31. groups *string
  32. p11url *string
  33. // Deprecated options
  34. ip *string
  35. subnets *string
  36. }
  37. func newSignFlags() *signFlags {
  38. sf := signFlags{set: flag.NewFlagSet("sign", flag.ContinueOnError)}
  39. sf.set.Usage = func() {}
  40. sf.version = sf.set.Uint("version", 0, "Optional: version of the certificate format to use. The default is to match the version of the signing CA")
  41. sf.caKeyPath = sf.set.String("ca-key", "ca.key", "Optional: path to the signing CA key")
  42. sf.caCertPath = sf.set.String("ca-crt", "ca.crt", "Optional: path to the signing CA cert")
  43. sf.name = sf.set.String("name", "", "Required: name of the cert, usually a hostname")
  44. sf.networks = sf.set.String("networks", "", "Required: comma separated list of ip address and network in CIDR notation to assign to this cert")
  45. sf.unsafeNetworks = sf.set.String("unsafe-networks", "", "Optional: comma separated list of ip address and network in CIDR notation. Unsafe networks this cert can route for")
  46. sf.duration = sf.set.Duration("duration", 0, "Optional: how long the cert should be valid for. The default is 1 second before the signing cert expires. Valid time units are seconds: \"s\", minutes: \"m\", hours: \"h\"")
  47. sf.inPubPath = sf.set.String("in-pub", "", "Optional (if out-key not set): path to read a previously generated public key")
  48. sf.outKeyPath = sf.set.String("out-key", "", "Optional (if in-pub not set): path to write the private key to")
  49. sf.outCertPath = sf.set.String("out-crt", "", "Optional: path to write the certificate to")
  50. sf.outQRPath = sf.set.String("out-qr", "", "Optional: output a qr code image (png) of the certificate")
  51. sf.groups = sf.set.String("groups", "", "Optional: comma separated list of groups")
  52. sf.p11url = p11Flag(sf.set)
  53. sf.ip = sf.set.String("ip", "", "Deprecated, see -networks")
  54. sf.subnets = sf.set.String("subnets", "", "Deprecated, see -unsafe-networks")
  55. return &sf
  56. }
  57. func signCert(args []string, out io.Writer, errOut io.Writer, pr PasswordReader) error {
  58. sf := newSignFlags()
  59. err := sf.set.Parse(args)
  60. if err != nil {
  61. return err
  62. }
  63. isP11 := len(*sf.p11url) > 0
  64. if !isP11 {
  65. if err := mustFlagString("ca-key", sf.caKeyPath); err != nil {
  66. return err
  67. }
  68. }
  69. if err := mustFlagString("ca-crt", sf.caCertPath); err != nil {
  70. return err
  71. }
  72. if err := mustFlagString("name", sf.name); err != nil {
  73. return err
  74. }
  75. if !isP11 && *sf.inPubPath != "" && *sf.outKeyPath != "" {
  76. return newHelpErrorf("cannot set both -in-pub and -out-key")
  77. }
  78. var v4Networks []netip.Prefix
  79. var v6Networks []netip.Prefix
  80. if *sf.networks == "" && *sf.ip != "" {
  81. // Pull up deprecated -ip flag if needed
  82. *sf.networks = *sf.ip
  83. }
  84. if len(*sf.networks) == 0 {
  85. return newHelpErrorf("-networks is required")
  86. }
  87. version := cert.Version(*sf.version)
  88. if version != 0 && version != cert.Version1 && version != cert.Version2 {
  89. return newHelpErrorf("-version must be either %v or %v", cert.Version1, cert.Version2)
  90. }
  91. var curve cert.Curve
  92. var caKey []byte
  93. if !isP11 {
  94. var rawCAKey []byte
  95. rawCAKey, err := os.ReadFile(*sf.caKeyPath)
  96. if err != nil {
  97. return fmt.Errorf("error while reading ca-key: %s", err)
  98. }
  99. // naively attempt to decode the private key as though it is not encrypted
  100. caKey, _, curve, err = cert.UnmarshalSigningPrivateKeyFromPEM(rawCAKey)
  101. if errors.Is(err, cert.ErrPrivateKeyEncrypted) {
  102. var passphrase []byte
  103. passphrase = []byte(os.Getenv("NEBULA_CA_PASSPHRASE"))
  104. if len(passphrase) == 0 {
  105. // ask for a passphrase until we get one
  106. for i := 0; i < 5; i++ {
  107. out.Write([]byte("Enter passphrase: "))
  108. passphrase, err = pr.ReadPassword()
  109. if errors.Is(err, ErrNoTerminal) {
  110. return fmt.Errorf("ca-key is encrypted and must be decrypted interactively")
  111. } else if err != nil {
  112. return fmt.Errorf("error reading password: %s", err)
  113. }
  114. if len(passphrase) > 0 {
  115. break
  116. }
  117. }
  118. if len(passphrase) == 0 {
  119. return fmt.Errorf("cannot open encrypted ca-key without passphrase")
  120. }
  121. }
  122. curve, caKey, _, err = cert.DecryptAndUnmarshalSigningPrivateKey(passphrase, rawCAKey)
  123. if err != nil {
  124. return fmt.Errorf("error while parsing encrypted ca-key: %s", err)
  125. }
  126. } else if err != nil {
  127. return fmt.Errorf("error while parsing ca-key: %s", err)
  128. }
  129. }
  130. rawCACert, err := os.ReadFile(*sf.caCertPath)
  131. if err != nil {
  132. return fmt.Errorf("error while reading ca-crt: %s", err)
  133. }
  134. caCert, _, err := cert.UnmarshalCertificateFromPEM(rawCACert)
  135. if err != nil {
  136. return fmt.Errorf("error while parsing ca-crt: %s", err)
  137. }
  138. if !isP11 {
  139. if err := caCert.VerifyPrivateKey(curve, caKey); err != nil {
  140. return fmt.Errorf("refusing to sign, root certificate does not match private key")
  141. }
  142. }
  143. if caCert.Expired(time.Now()) {
  144. return fmt.Errorf("ca certificate is expired")
  145. }
  146. if version == 0 {
  147. version = caCert.Version()
  148. }
  149. // if no duration is given, expire one second before the root expires
  150. if *sf.duration <= 0 {
  151. *sf.duration = time.Until(caCert.NotAfter()) - time.Second*1
  152. }
  153. if *sf.networks != "" {
  154. for _, rs := range strings.Split(*sf.networks, ",") {
  155. rs := strings.Trim(rs, " ")
  156. if rs != "" {
  157. n, err := netip.ParsePrefix(rs)
  158. if err != nil {
  159. return newHelpErrorf("invalid -networks definition: %s", rs)
  160. }
  161. if n.Addr().Is4() {
  162. v4Networks = append(v4Networks, n)
  163. } else {
  164. v6Networks = append(v6Networks, n)
  165. }
  166. }
  167. }
  168. }
  169. var v4UnsafeNetworks []netip.Prefix
  170. var v6UnsafeNetworks []netip.Prefix
  171. if *sf.unsafeNetworks == "" && *sf.subnets != "" {
  172. // Pull up deprecated -subnets flag if needed
  173. *sf.unsafeNetworks = *sf.subnets
  174. }
  175. if *sf.unsafeNetworks != "" {
  176. for _, rs := range strings.Split(*sf.unsafeNetworks, ",") {
  177. rs := strings.Trim(rs, " ")
  178. if rs != "" {
  179. n, err := netip.ParsePrefix(rs)
  180. if err != nil {
  181. return newHelpErrorf("invalid -unsafe-networks definition: %s", rs)
  182. }
  183. if n.Addr().Is4() {
  184. v4UnsafeNetworks = append(v4UnsafeNetworks, n)
  185. } else {
  186. v6UnsafeNetworks = append(v6UnsafeNetworks, n)
  187. }
  188. }
  189. }
  190. }
  191. var groups []string
  192. if *sf.groups != "" {
  193. for _, rg := range strings.Split(*sf.groups, ",") {
  194. g := strings.TrimSpace(rg)
  195. if g != "" {
  196. groups = append(groups, g)
  197. }
  198. }
  199. }
  200. var pub, rawPriv []byte
  201. var p11Client *pkclient.PKClient
  202. if isP11 {
  203. curve = cert.Curve_P256
  204. p11Client, err = pkclient.FromUrl(*sf.p11url)
  205. if err != nil {
  206. return fmt.Errorf("error while creating PKCS#11 client: %w", err)
  207. }
  208. defer func(client *pkclient.PKClient) {
  209. _ = client.Close()
  210. }(p11Client)
  211. }
  212. if *sf.inPubPath != "" {
  213. var pubCurve cert.Curve
  214. rawPub, err := os.ReadFile(*sf.inPubPath)
  215. if err != nil {
  216. return fmt.Errorf("error while reading in-pub: %s", err)
  217. }
  218. pub, _, pubCurve, err = cert.UnmarshalPublicKeyFromPEM(rawPub)
  219. if err != nil {
  220. return fmt.Errorf("error while parsing in-pub: %s", err)
  221. }
  222. if pubCurve != curve {
  223. return fmt.Errorf("curve of in-pub does not match ca")
  224. }
  225. } else if isP11 {
  226. pub, err = p11Client.GetPubKey()
  227. if err != nil {
  228. return fmt.Errorf("error while getting public key with PKCS#11: %w", err)
  229. }
  230. } else {
  231. pub, rawPriv = newKeypair(curve)
  232. }
  233. if *sf.outKeyPath == "" {
  234. *sf.outKeyPath = *sf.name + ".key"
  235. }
  236. if *sf.outCertPath == "" {
  237. *sf.outCertPath = *sf.name + ".crt"
  238. }
  239. if _, err := os.Stat(*sf.outCertPath); err == nil {
  240. return fmt.Errorf("refusing to overwrite existing cert: %s", *sf.outCertPath)
  241. }
  242. var crts []cert.Certificate
  243. notBefore := time.Now()
  244. notAfter := notBefore.Add(*sf.duration)
  245. switch version {
  246. case cert.Version1:
  247. // Make sure we have only one ipv4 address
  248. if len(v4Networks) != 1 {
  249. return newHelpErrorf("invalid -networks definition: v1 certificates can only have a single ipv4 address")
  250. }
  251. if len(v6Networks) > 0 {
  252. return newHelpErrorf("invalid -networks definition: v1 certificates can only contain ipv4 addresses")
  253. }
  254. if len(v6UnsafeNetworks) > 0 {
  255. return newHelpErrorf("invalid -unsafe-networks definition: v1 certificates can only contain ipv4 addresses")
  256. }
  257. t := &cert.TBSCertificate{
  258. Version: cert.Version1,
  259. Name: *sf.name,
  260. Networks: []netip.Prefix{v4Networks[0]},
  261. Groups: groups,
  262. UnsafeNetworks: v4UnsafeNetworks,
  263. NotBefore: notBefore,
  264. NotAfter: notAfter,
  265. PublicKey: pub,
  266. IsCA: false,
  267. Curve: curve,
  268. }
  269. var nc cert.Certificate
  270. if p11Client == nil {
  271. nc, err = t.Sign(caCert, curve, caKey)
  272. if err != nil {
  273. return fmt.Errorf("error while signing: %w", err)
  274. }
  275. } else {
  276. nc, err = t.SignWith(caCert, curve, p11Client.SignASN1)
  277. if err != nil {
  278. return fmt.Errorf("error while signing with PKCS#11: %w", err)
  279. }
  280. }
  281. crts = append(crts, nc)
  282. case cert.Version2:
  283. t := &cert.TBSCertificate{
  284. Version: cert.Version2,
  285. Name: *sf.name,
  286. Networks: append(v4Networks, v6Networks...),
  287. Groups: groups,
  288. UnsafeNetworks: append(v4UnsafeNetworks, v6UnsafeNetworks...),
  289. NotBefore: notBefore,
  290. NotAfter: notAfter,
  291. PublicKey: pub,
  292. IsCA: false,
  293. Curve: curve,
  294. }
  295. var nc cert.Certificate
  296. if p11Client == nil {
  297. nc, err = t.Sign(caCert, curve, caKey)
  298. if err != nil {
  299. return fmt.Errorf("error while signing: %w", err)
  300. }
  301. } else {
  302. nc, err = t.SignWith(caCert, curve, p11Client.SignASN1)
  303. if err != nil {
  304. return fmt.Errorf("error while signing with PKCS#11: %w", err)
  305. }
  306. }
  307. crts = append(crts, nc)
  308. default:
  309. // this should be unreachable
  310. return fmt.Errorf("invalid version: %d", version)
  311. }
  312. if !isP11 && *sf.inPubPath == "" {
  313. if _, err := os.Stat(*sf.outKeyPath); err == nil {
  314. return fmt.Errorf("refusing to overwrite existing key: %s", *sf.outKeyPath)
  315. }
  316. err = os.WriteFile(*sf.outKeyPath, cert.MarshalPrivateKeyToPEM(curve, rawPriv), 0600)
  317. if err != nil {
  318. return fmt.Errorf("error while writing out-key: %s", err)
  319. }
  320. }
  321. var b []byte
  322. for _, c := range crts {
  323. sb, err := c.MarshalPEM()
  324. if err != nil {
  325. return fmt.Errorf("error while marshalling certificate: %s", err)
  326. }
  327. b = append(b, sb...)
  328. }
  329. err = os.WriteFile(*sf.outCertPath, b, 0600)
  330. if err != nil {
  331. return fmt.Errorf("error while writing out-crt: %s", err)
  332. }
  333. if *sf.outQRPath != "" {
  334. b, err = qrcode.Encode(string(b), qrcode.Medium, -5)
  335. if err != nil {
  336. return fmt.Errorf("error while generating qr code: %s", err)
  337. }
  338. err = os.WriteFile(*sf.outQRPath, b, 0600)
  339. if err != nil {
  340. return fmt.Errorf("error while writing out-qr: %s", err)
  341. }
  342. }
  343. return nil
  344. }
  345. func newKeypair(curve cert.Curve) ([]byte, []byte) {
  346. switch curve {
  347. case cert.Curve_CURVE25519:
  348. return x25519Keypair()
  349. case cert.Curve_P256:
  350. return p256Keypair()
  351. default:
  352. return nil, nil
  353. }
  354. }
  355. func x25519Keypair() ([]byte, []byte) {
  356. privkey := make([]byte, 32)
  357. if _, err := io.ReadFull(rand.Reader, privkey); err != nil {
  358. panic(err)
  359. }
  360. pubkey, err := curve25519.X25519(privkey, curve25519.Basepoint)
  361. if err != nil {
  362. panic(err)
  363. }
  364. return pubkey, privkey
  365. }
  366. func p256Keypair() ([]byte, []byte) {
  367. privkey, err := ecdh.P256().GenerateKey(rand.Reader)
  368. if err != nil {
  369. panic(err)
  370. }
  371. pubkey := privkey.PublicKey()
  372. return pubkey.Bytes(), privkey.Bytes()
  373. }
  374. func signSummary() string {
  375. return "sign <flags>: create and sign a certificate"
  376. }
  377. func signHelp(out io.Writer) {
  378. sf := newSignFlags()
  379. out.Write([]byte("Usage of " + os.Args[0] + " " + signSummary() + "\n"))
  380. sf.set.SetOutput(out)
  381. sf.set.PrintDefaults()
  382. }