autocert.go 22 KB

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  1. // Copyright 2016 The Go Authors. All rights reserved.
  2. // Use of this source code is governed by a BSD-style
  3. // license that can be found in the LICENSE file.
  4. // Package autocert provides automatic access to certificates from Let's Encrypt
  5. // and any other ACME-based CA.
  6. //
  7. // This package is a work in progress and makes no API stability promises.
  8. package autocert
  9. import (
  10. "bytes"
  11. "crypto"
  12. "crypto/ecdsa"
  13. "crypto/elliptic"
  14. "crypto/rand"
  15. "crypto/rsa"
  16. "crypto/tls"
  17. "crypto/x509"
  18. "crypto/x509/pkix"
  19. "encoding/pem"
  20. "errors"
  21. "fmt"
  22. "io"
  23. mathrand "math/rand"
  24. "net/http"
  25. "strconv"
  26. "strings"
  27. "sync"
  28. "time"
  29. "golang.org/x/crypto/acme"
  30. "golang.org/x/net/context"
  31. )
  32. // pseudoRand is safe for concurrent use.
  33. var pseudoRand *lockedMathRand
  34. func init() {
  35. src := mathrand.NewSource(timeNow().UnixNano())
  36. pseudoRand = &lockedMathRand{rnd: mathrand.New(src)}
  37. }
  38. // AcceptTOS always returns true to indicate the acceptance of a CA Terms of Service
  39. // during account registration.
  40. func AcceptTOS(tosURL string) bool { return true }
  41. // HostPolicy specifies which host names the Manager is allowed to respond to.
  42. // It returns a non-nil error if the host should be rejected.
  43. // The returned error is accessible via tls.Conn.Handshake and its callers.
  44. // See Manager's HostPolicy field and GetCertificate method docs for more details.
  45. type HostPolicy func(ctx context.Context, host string) error
  46. // HostWhitelist returns a policy where only the specified host names are allowed.
  47. // Only exact matches are currently supported. Subdomains, regexp or wildcard
  48. // will not match.
  49. func HostWhitelist(hosts ...string) HostPolicy {
  50. whitelist := make(map[string]bool, len(hosts))
  51. for _, h := range hosts {
  52. whitelist[h] = true
  53. }
  54. return func(_ context.Context, host string) error {
  55. if !whitelist[host] {
  56. return errors.New("acme/autocert: host not configured")
  57. }
  58. return nil
  59. }
  60. }
  61. // defaultHostPolicy is used when Manager.HostPolicy is not set.
  62. func defaultHostPolicy(context.Context, string) error {
  63. return nil
  64. }
  65. // Manager is a stateful certificate manager built on top of acme.Client.
  66. // It obtains and refreshes certificates automatically,
  67. // as well as providing them to a TLS server via tls.Config.
  68. //
  69. // A simple usage example:
  70. //
  71. // m := autocert.Manager{
  72. // Prompt: autocert.AcceptTOS,
  73. // HostPolicy: autocert.HostWhitelist("example.org"),
  74. // }
  75. // s := &http.Server{
  76. // Addr: ":https",
  77. // TLSConfig: &tls.Config{GetCertificate: m.GetCertificate},
  78. // }
  79. // s.ListenAndServeTLS("", "")
  80. //
  81. // To preserve issued certificates and improve overall performance,
  82. // use a cache implementation of Cache. For instance, DirCache.
  83. type Manager struct {
  84. // Prompt specifies a callback function to conditionally accept a CA's Terms of Service (TOS).
  85. // The registration may require the caller to agree to the CA's TOS.
  86. // If so, Manager calls Prompt with a TOS URL provided by the CA. Prompt should report
  87. // whether the caller agrees to the terms.
  88. //
  89. // To always accept the terms, the callers can use AcceptTOS.
  90. Prompt func(tosURL string) bool
  91. // Cache optionally stores and retrieves previously-obtained certificates.
  92. // If nil, certs will only be cached for the lifetime of the Manager.
  93. //
  94. // Manager passes the Cache certificates data encoded in PEM, with private/public
  95. // parts combined in a single Cache.Put call, private key first.
  96. Cache Cache
  97. // HostPolicy controls which domains the Manager will attempt
  98. // to retrieve new certificates for. It does not affect cached certs.
  99. //
  100. // If non-nil, HostPolicy is called before requesting a new cert.
  101. // If nil, all hosts are currently allowed. This is not recommended,
  102. // as it opens a potential attack where clients connect to a server
  103. // by IP address and pretend to be asking for an incorrect host name.
  104. // Manager will attempt to obtain a certificate for that host, incorrectly,
  105. // eventually reaching the CA's rate limit for certificate requests
  106. // and making it impossible to obtain actual certificates.
  107. //
  108. // See GetCertificate for more details.
  109. HostPolicy HostPolicy
  110. // RenewBefore optionally specifies how early certificates should
  111. // be renewed before they expire.
  112. //
  113. // If zero, they're renewed 1 week before expiration.
  114. RenewBefore time.Duration
  115. // Client is used to perform low-level operations, such as account registration
  116. // and requesting new certificates.
  117. // If Client is nil, a zero-value acme.Client is used with acme.LetsEncryptURL
  118. // directory endpoint and a newly-generated ECDSA P-256 key.
  119. //
  120. // Mutating the field after the first call of GetCertificate method will have no effect.
  121. Client *acme.Client
  122. // Email optionally specifies a contact email address.
  123. // This is used by CAs, such as Let's Encrypt, to notify about problems
  124. // with issued certificates.
  125. //
  126. // If the Client's account key is already registered, Email is not used.
  127. Email string
  128. clientMu sync.Mutex
  129. client *acme.Client // initialized by acmeClient method
  130. stateMu sync.Mutex
  131. state map[string]*certState // keyed by domain name
  132. // tokenCert is keyed by token domain name, which matches server name
  133. // of ClientHello. Keys always have ".acme.invalid" suffix.
  134. tokenCertMu sync.RWMutex
  135. tokenCert map[string]*tls.Certificate
  136. // renewal tracks the set of domains currently running renewal timers.
  137. // It is keyed by domain name.
  138. renewalMu sync.Mutex
  139. renewal map[string]*domainRenewal
  140. }
  141. // GetCertificate implements the tls.Config.GetCertificate hook.
  142. // It provides a TLS certificate for hello.ServerName host, including answering
  143. // *.acme.invalid (TLS-SNI) challenges. All other fields of hello are ignored.
  144. //
  145. // If m.HostPolicy is non-nil, GetCertificate calls the policy before requesting
  146. // a new cert. A non-nil error returned from m.HostPolicy halts TLS negotiation.
  147. // The error is propagated back to the caller of GetCertificate and is user-visible.
  148. // This does not affect cached certs. See HostPolicy field description for more details.
  149. func (m *Manager) GetCertificate(hello *tls.ClientHelloInfo) (*tls.Certificate, error) {
  150. name := hello.ServerName
  151. if name == "" {
  152. return nil, errors.New("acme/autocert: missing server name")
  153. }
  154. // check whether this is a token cert requested for TLS-SNI challenge
  155. if strings.HasSuffix(name, ".acme.invalid") {
  156. m.tokenCertMu.RLock()
  157. defer m.tokenCertMu.RUnlock()
  158. if cert := m.tokenCert[name]; cert != nil {
  159. return cert, nil
  160. }
  161. if cert, err := m.cacheGet(name); err == nil {
  162. return cert, nil
  163. }
  164. // TODO: cache error results?
  165. return nil, fmt.Errorf("acme/autocert: no token cert for %q", name)
  166. }
  167. // regular domain
  168. cert, err := m.cert(name)
  169. if err == nil {
  170. return cert, nil
  171. }
  172. if err != ErrCacheMiss {
  173. return nil, err
  174. }
  175. // first-time
  176. ctx := context.Background() // TODO: use a deadline?
  177. if err := m.hostPolicy()(ctx, name); err != nil {
  178. return nil, err
  179. }
  180. cert, err = m.createCert(ctx, name)
  181. if err != nil {
  182. return nil, err
  183. }
  184. m.cachePut(name, cert)
  185. return cert, nil
  186. }
  187. // cert returns an existing certificate either from m.state or cache.
  188. // If a certificate is found in cache but not in m.state, the latter will be filled
  189. // with the cached value.
  190. func (m *Manager) cert(name string) (*tls.Certificate, error) {
  191. m.stateMu.Lock()
  192. if s, ok := m.state[name]; ok {
  193. m.stateMu.Unlock()
  194. s.RLock()
  195. defer s.RUnlock()
  196. return s.tlscert()
  197. }
  198. defer m.stateMu.Unlock()
  199. cert, err := m.cacheGet(name)
  200. if err != nil {
  201. return nil, err
  202. }
  203. signer, ok := cert.PrivateKey.(crypto.Signer)
  204. if !ok {
  205. return nil, errors.New("acme/autocert: private key cannot sign")
  206. }
  207. if m.state == nil {
  208. m.state = make(map[string]*certState)
  209. }
  210. s := &certState{
  211. key: signer,
  212. cert: cert.Certificate,
  213. leaf: cert.Leaf,
  214. }
  215. m.state[name] = s
  216. go m.renew(name, s.key, s.leaf.NotAfter)
  217. return cert, nil
  218. }
  219. // cacheGet always returns a valid certificate, or an error otherwise.
  220. func (m *Manager) cacheGet(domain string) (*tls.Certificate, error) {
  221. if m.Cache == nil {
  222. return nil, ErrCacheMiss
  223. }
  224. // TODO: might want to define a cache timeout on m
  225. ctx := context.Background()
  226. data, err := m.Cache.Get(ctx, domain)
  227. if err != nil {
  228. return nil, err
  229. }
  230. // private
  231. priv, pub := pem.Decode(data)
  232. if priv == nil || !strings.Contains(priv.Type, "PRIVATE") {
  233. return nil, errors.New("acme/autocert: no private key found in cache")
  234. }
  235. privKey, err := parsePrivateKey(priv.Bytes)
  236. if err != nil {
  237. return nil, err
  238. }
  239. // public
  240. var pubDER [][]byte
  241. for len(pub) > 0 {
  242. var b *pem.Block
  243. b, pub = pem.Decode(pub)
  244. if b == nil {
  245. break
  246. }
  247. pubDER = append(pubDER, b.Bytes)
  248. }
  249. if len(pub) > 0 {
  250. return nil, errors.New("acme/autocert: invalid public key")
  251. }
  252. // verify and create TLS cert
  253. leaf, err := validCert(domain, pubDER, privKey)
  254. if err != nil {
  255. return nil, err
  256. }
  257. tlscert := &tls.Certificate{
  258. Certificate: pubDER,
  259. PrivateKey: privKey,
  260. Leaf: leaf,
  261. }
  262. return tlscert, nil
  263. }
  264. func (m *Manager) cachePut(domain string, tlscert *tls.Certificate) error {
  265. if m.Cache == nil {
  266. return nil
  267. }
  268. // contains PEM-encoded data
  269. var buf bytes.Buffer
  270. // private
  271. switch key := tlscert.PrivateKey.(type) {
  272. case *ecdsa.PrivateKey:
  273. if err := encodeECDSAKey(&buf, key); err != nil {
  274. return err
  275. }
  276. case *rsa.PrivateKey:
  277. b := x509.MarshalPKCS1PrivateKey(key)
  278. pb := &pem.Block{Type: "RSA PRIVATE KEY", Bytes: b}
  279. if err := pem.Encode(&buf, pb); err != nil {
  280. return err
  281. }
  282. default:
  283. return errors.New("acme/autocert: unknown private key type")
  284. }
  285. // public
  286. for _, b := range tlscert.Certificate {
  287. pb := &pem.Block{Type: "CERTIFICATE", Bytes: b}
  288. if err := pem.Encode(&buf, pb); err != nil {
  289. return err
  290. }
  291. }
  292. // TODO: might want to define a cache timeout on m
  293. ctx := context.Background()
  294. return m.Cache.Put(ctx, domain, buf.Bytes())
  295. }
  296. func encodeECDSAKey(w io.Writer, key *ecdsa.PrivateKey) error {
  297. b, err := x509.MarshalECPrivateKey(key)
  298. if err != nil {
  299. return err
  300. }
  301. pb := &pem.Block{Type: "EC PRIVATE KEY", Bytes: b}
  302. return pem.Encode(w, pb)
  303. }
  304. // createCert starts the domain ownership verification and returns a certificate
  305. // for that domain upon success.
  306. //
  307. // If the domain is already being verified, it waits for the existing verification to complete.
  308. // Either way, createCert blocks for the duration of the whole process.
  309. func (m *Manager) createCert(ctx context.Context, domain string) (*tls.Certificate, error) {
  310. // TODO: maybe rewrite this whole piece using sync.Once
  311. state, err := m.certState(domain)
  312. if err != nil {
  313. return nil, err
  314. }
  315. // state may exist if another goroutine is already working on it
  316. // in which case just wait for it to finish
  317. if !state.locked {
  318. state.RLock()
  319. defer state.RUnlock()
  320. return state.tlscert()
  321. }
  322. // We are the first; state is locked.
  323. // Unblock the readers when domain ownership is verified
  324. // and the we got the cert or the process failed.
  325. defer state.Unlock()
  326. state.locked = false
  327. der, leaf, err := m.authorizedCert(ctx, state.key, domain)
  328. if err != nil {
  329. return nil, err
  330. }
  331. state.cert = der
  332. state.leaf = leaf
  333. go m.renew(domain, state.key, state.leaf.NotAfter)
  334. return state.tlscert()
  335. }
  336. // certState returns a new or existing certState.
  337. // If a new certState is returned, state.exist is false and the state is locked.
  338. // The returned error is non-nil only in the case where a new state could not be created.
  339. func (m *Manager) certState(domain string) (*certState, error) {
  340. m.stateMu.Lock()
  341. defer m.stateMu.Unlock()
  342. if m.state == nil {
  343. m.state = make(map[string]*certState)
  344. }
  345. // existing state
  346. if state, ok := m.state[domain]; ok {
  347. return state, nil
  348. }
  349. // new locked state
  350. key, err := ecdsa.GenerateKey(elliptic.P256(), rand.Reader)
  351. if err != nil {
  352. return nil, err
  353. }
  354. state := &certState{
  355. key: key,
  356. locked: true,
  357. }
  358. state.Lock() // will be unlocked by m.certState caller
  359. m.state[domain] = state
  360. return state, nil
  361. }
  362. // authorizedCert starts domain ownership verification process and requests a new cert upon success.
  363. // The key argument is the certificate private key.
  364. func (m *Manager) authorizedCert(ctx context.Context, key crypto.Signer, domain string) (der [][]byte, leaf *x509.Certificate, err error) {
  365. // TODO: make m.verify retry or retry m.verify calls here
  366. if err := m.verify(ctx, domain); err != nil {
  367. return nil, nil, err
  368. }
  369. client, err := m.acmeClient(ctx)
  370. if err != nil {
  371. return nil, nil, err
  372. }
  373. csr, err := certRequest(key, domain)
  374. if err != nil {
  375. return nil, nil, err
  376. }
  377. der, _, err = client.CreateCert(ctx, csr, 0, true)
  378. if err != nil {
  379. return nil, nil, err
  380. }
  381. leaf, err = validCert(domain, der, key)
  382. if err != nil {
  383. return nil, nil, err
  384. }
  385. return der, leaf, nil
  386. }
  387. // verify starts a new identifier (domain) authorization flow.
  388. // It prepares a challenge response and then blocks until the authorization
  389. // is marked as "completed" by the CA (either succeeded or failed).
  390. //
  391. // verify returns nil iff the verification was successful.
  392. func (m *Manager) verify(ctx context.Context, domain string) error {
  393. client, err := m.acmeClient(ctx)
  394. if err != nil {
  395. return err
  396. }
  397. // start domain authorization and get the challenge
  398. authz, err := client.Authorize(ctx, domain)
  399. if err != nil {
  400. return err
  401. }
  402. // maybe don't need to at all
  403. if authz.Status == acme.StatusValid {
  404. return nil
  405. }
  406. // pick a challenge: prefer tls-sni-02 over tls-sni-01
  407. // TODO: consider authz.Combinations
  408. var chal *acme.Challenge
  409. for _, c := range authz.Challenges {
  410. if c.Type == "tls-sni-02" {
  411. chal = c
  412. break
  413. }
  414. if c.Type == "tls-sni-01" {
  415. chal = c
  416. }
  417. }
  418. if chal == nil {
  419. return errors.New("acme/autocert: no supported challenge type found")
  420. }
  421. // create a token cert for the challenge response
  422. var (
  423. cert tls.Certificate
  424. name string
  425. )
  426. switch chal.Type {
  427. case "tls-sni-01":
  428. cert, name, err = client.TLSSNI01ChallengeCert(chal.Token)
  429. case "tls-sni-02":
  430. cert, name, err = client.TLSSNI02ChallengeCert(chal.Token)
  431. default:
  432. err = fmt.Errorf("acme/autocert: unknown challenge type %q", chal.Type)
  433. }
  434. if err != nil {
  435. return err
  436. }
  437. m.putTokenCert(name, &cert)
  438. defer func() {
  439. // verification has ended at this point
  440. // don't need token cert anymore
  441. go m.deleteTokenCert(name)
  442. }()
  443. // ready to fulfill the challenge
  444. if _, err := client.Accept(ctx, chal); err != nil {
  445. return err
  446. }
  447. // wait for the CA to validate
  448. _, err = client.WaitAuthorization(ctx, authz.URI)
  449. return err
  450. }
  451. // putTokenCert stores the cert under the named key in both m.tokenCert map
  452. // and m.Cache.
  453. func (m *Manager) putTokenCert(name string, cert *tls.Certificate) {
  454. m.tokenCertMu.Lock()
  455. defer m.tokenCertMu.Unlock()
  456. if m.tokenCert == nil {
  457. m.tokenCert = make(map[string]*tls.Certificate)
  458. }
  459. m.tokenCert[name] = cert
  460. m.cachePut(name, cert)
  461. }
  462. // deleteTokenCert removes the token certificate for the specified domain name
  463. // from both m.tokenCert map and m.Cache.
  464. func (m *Manager) deleteTokenCert(name string) {
  465. m.tokenCertMu.Lock()
  466. defer m.tokenCertMu.Unlock()
  467. delete(m.tokenCert, name)
  468. if m.Cache != nil {
  469. m.Cache.Delete(context.Background(), name)
  470. }
  471. }
  472. // renew starts a cert renewal timer loop, one per domain.
  473. //
  474. // The loop is scheduled in two cases:
  475. // - a cert was fetched from cache for the first time (wasn't in m.state)
  476. // - a new cert was created by m.createCert
  477. //
  478. // The key argument is a certificate private key.
  479. // The exp argument is the cert expiration time (NotAfter).
  480. func (m *Manager) renew(domain string, key crypto.Signer, exp time.Time) {
  481. m.renewalMu.Lock()
  482. defer m.renewalMu.Unlock()
  483. if m.renewal[domain] != nil {
  484. // another goroutine is already on it
  485. return
  486. }
  487. if m.renewal == nil {
  488. m.renewal = make(map[string]*domainRenewal)
  489. }
  490. dr := &domainRenewal{m: m, domain: domain, key: key}
  491. m.renewal[domain] = dr
  492. dr.start(exp)
  493. }
  494. // stopRenew stops all currently running cert renewal timers.
  495. // The timers are not restarted during the lifetime of the Manager.
  496. func (m *Manager) stopRenew() {
  497. m.renewalMu.Lock()
  498. defer m.renewalMu.Unlock()
  499. for name, dr := range m.renewal {
  500. delete(m.renewal, name)
  501. dr.stop()
  502. }
  503. }
  504. func (m *Manager) accountKey(ctx context.Context) (crypto.Signer, error) {
  505. const keyName = "acme_account.key"
  506. genKey := func() (*ecdsa.PrivateKey, error) {
  507. return ecdsa.GenerateKey(elliptic.P256(), rand.Reader)
  508. }
  509. if m.Cache == nil {
  510. return genKey()
  511. }
  512. data, err := m.Cache.Get(ctx, keyName)
  513. if err == ErrCacheMiss {
  514. key, err := genKey()
  515. if err != nil {
  516. return nil, err
  517. }
  518. var buf bytes.Buffer
  519. if err := encodeECDSAKey(&buf, key); err != nil {
  520. return nil, err
  521. }
  522. if err := m.Cache.Put(ctx, keyName, buf.Bytes()); err != nil {
  523. return nil, err
  524. }
  525. return key, nil
  526. }
  527. if err != nil {
  528. return nil, err
  529. }
  530. priv, _ := pem.Decode(data)
  531. if priv == nil || !strings.Contains(priv.Type, "PRIVATE") {
  532. return nil, errors.New("acme/autocert: invalid account key found in cache")
  533. }
  534. return parsePrivateKey(priv.Bytes)
  535. }
  536. func (m *Manager) acmeClient(ctx context.Context) (*acme.Client, error) {
  537. m.clientMu.Lock()
  538. defer m.clientMu.Unlock()
  539. if m.client != nil {
  540. return m.client, nil
  541. }
  542. client := m.Client
  543. if client == nil {
  544. client = &acme.Client{DirectoryURL: acme.LetsEncryptURL}
  545. }
  546. if client.Key == nil {
  547. var err error
  548. client.Key, err = m.accountKey(ctx)
  549. if err != nil {
  550. return nil, err
  551. }
  552. }
  553. var contact []string
  554. if m.Email != "" {
  555. contact = []string{"mailto:" + m.Email}
  556. }
  557. a := &acme.Account{Contact: contact}
  558. _, err := client.Register(ctx, a, m.Prompt)
  559. if ae, ok := err.(*acme.Error); err == nil || ok && ae.StatusCode == http.StatusConflict {
  560. // conflict indicates the key is already registered
  561. m.client = client
  562. err = nil
  563. }
  564. return m.client, err
  565. }
  566. func (m *Manager) hostPolicy() HostPolicy {
  567. if m.HostPolicy != nil {
  568. return m.HostPolicy
  569. }
  570. return defaultHostPolicy
  571. }
  572. func (m *Manager) renewBefore() time.Duration {
  573. if m.RenewBefore > maxRandRenew {
  574. return m.RenewBefore
  575. }
  576. return 7 * 24 * time.Hour // 1 week
  577. }
  578. // certState is ready when its mutex is unlocked for reading.
  579. type certState struct {
  580. sync.RWMutex
  581. locked bool // locked for read/write
  582. key crypto.Signer // private key for cert
  583. cert [][]byte // DER encoding
  584. leaf *x509.Certificate // parsed cert[0]; always non-nil if cert != nil
  585. }
  586. // tlscert creates a tls.Certificate from s.key and s.cert.
  587. // Callers should wrap it in s.RLock() and s.RUnlock().
  588. func (s *certState) tlscert() (*tls.Certificate, error) {
  589. if s.key == nil {
  590. return nil, errors.New("acme/autocert: missing signer")
  591. }
  592. if len(s.cert) == 0 {
  593. return nil, errors.New("acme/autocert: missing certificate")
  594. }
  595. return &tls.Certificate{
  596. PrivateKey: s.key,
  597. Certificate: s.cert,
  598. Leaf: s.leaf,
  599. }, nil
  600. }
  601. // certRequest creates a certificate request for the given common name cn
  602. // and optional SANs.
  603. func certRequest(key crypto.Signer, cn string, san ...string) ([]byte, error) {
  604. req := &x509.CertificateRequest{
  605. Subject: pkix.Name{CommonName: cn},
  606. DNSNames: san,
  607. }
  608. return x509.CreateCertificateRequest(rand.Reader, req, key)
  609. }
  610. // Attempt to parse the given private key DER block. OpenSSL 0.9.8 generates
  611. // PKCS#1 private keys by default, while OpenSSL 1.0.0 generates PKCS#8 keys.
  612. // OpenSSL ecparam generates SEC1 EC private keys for ECDSA. We try all three.
  613. //
  614. // Inspired by parsePrivateKey in crypto/tls/tls.go.
  615. func parsePrivateKey(der []byte) (crypto.Signer, error) {
  616. if key, err := x509.ParsePKCS1PrivateKey(der); err == nil {
  617. return key, nil
  618. }
  619. if key, err := x509.ParsePKCS8PrivateKey(der); err == nil {
  620. switch key := key.(type) {
  621. case *rsa.PrivateKey:
  622. return key, nil
  623. case *ecdsa.PrivateKey:
  624. return key, nil
  625. default:
  626. return nil, errors.New("acme/autocert: unknown private key type in PKCS#8 wrapping")
  627. }
  628. }
  629. if key, err := x509.ParseECPrivateKey(der); err == nil {
  630. return key, nil
  631. }
  632. return nil, errors.New("acme/autocert: failed to parse private key")
  633. }
  634. // validCert parses a cert chain provided as der argument and verifies the leaf, der[0],
  635. // corresponds to the private key, as well as the domain match and expiration dates.
  636. // It doesn't do any revocation checking.
  637. //
  638. // The returned value is the verified leaf cert.
  639. func validCert(domain string, der [][]byte, key crypto.Signer) (leaf *x509.Certificate, err error) {
  640. // parse public part(s)
  641. var n int
  642. for _, b := range der {
  643. n += len(b)
  644. }
  645. pub := make([]byte, n)
  646. n = 0
  647. for _, b := range der {
  648. n += copy(pub[n:], b)
  649. }
  650. x509Cert, err := x509.ParseCertificates(pub)
  651. if len(x509Cert) == 0 {
  652. return nil, errors.New("acme/autocert: no public key found")
  653. }
  654. // verify the leaf is not expired and matches the domain name
  655. leaf = x509Cert[0]
  656. now := timeNow()
  657. if now.Before(leaf.NotBefore) {
  658. return nil, errors.New("acme/autocert: certificate is not valid yet")
  659. }
  660. if now.After(leaf.NotAfter) {
  661. return nil, errors.New("acme/autocert: expired certificate")
  662. }
  663. if err := leaf.VerifyHostname(domain); err != nil {
  664. return nil, err
  665. }
  666. // ensure the leaf corresponds to the private key
  667. switch pub := leaf.PublicKey.(type) {
  668. case *rsa.PublicKey:
  669. prv, ok := key.(*rsa.PrivateKey)
  670. if !ok {
  671. return nil, errors.New("acme/autocert: private key type does not match public key type")
  672. }
  673. if pub.N.Cmp(prv.N) != 0 {
  674. return nil, errors.New("acme/autocert: private key does not match public key")
  675. }
  676. case *ecdsa.PublicKey:
  677. prv, ok := key.(*ecdsa.PrivateKey)
  678. if !ok {
  679. return nil, errors.New("acme/autocert: private key type does not match public key type")
  680. }
  681. if pub.X.Cmp(prv.X) != 0 || pub.Y.Cmp(prv.Y) != 0 {
  682. return nil, errors.New("acme/autocert: private key does not match public key")
  683. }
  684. default:
  685. return nil, errors.New("acme/autocert: unknown public key algorithm")
  686. }
  687. return leaf, nil
  688. }
  689. func retryAfter(v string) time.Duration {
  690. if i, err := strconv.Atoi(v); err == nil {
  691. return time.Duration(i) * time.Second
  692. }
  693. if t, err := http.ParseTime(v); err == nil {
  694. return t.Sub(timeNow())
  695. }
  696. return time.Second
  697. }
  698. type lockedMathRand struct {
  699. sync.Mutex
  700. rnd *mathrand.Rand
  701. }
  702. func (r *lockedMathRand) int63n(max int64) int64 {
  703. r.Lock()
  704. n := r.rnd.Int63n(max)
  705. r.Unlock()
  706. return n
  707. }
  708. // for easier testing
  709. var timeNow = time.Now