cert.go 4.7 KB

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  1. // Copyright 2009 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 cmd
  5. import (
  6. "crypto/ecdsa"
  7. "crypto/elliptic"
  8. "crypto/rand"
  9. "crypto/rsa"
  10. "crypto/x509"
  11. "crypto/x509/pkix"
  12. "encoding/pem"
  13. "log"
  14. "math/big"
  15. "net"
  16. "os"
  17. "strings"
  18. "time"
  19. "github.com/urfave/cli"
  20. )
  21. var Cert = cli.Command{
  22. Name: "cert",
  23. Usage: "Generate self-signed certificate",
  24. Description: `Generate a self-signed X.509 certificate for a TLS server.
  25. Outputs to 'cert.pem' and 'key.pem' and will overwrite existing files.`,
  26. Action: runCert,
  27. Flags: []cli.Flag{
  28. stringFlag("host", "", "Comma-separated hostnames and IPs to generate a certificate for"),
  29. stringFlag("ecdsa-curve", "", "ECDSA curve to use to generate a key. Valid values are P224, P256, P384, P521"),
  30. intFlag("rsa-bits", 2048, "Size of RSA key to generate. Ignored if --ecdsa-curve is set"),
  31. stringFlag("start-date", "", "Creation date formatted as Jan 1 15:04:05 2011"),
  32. durationFlag("duration", 365*24*time.Hour, "Duration that certificate is valid for"),
  33. boolFlag("ca", "whether this cert should be its own Certificate Authority"),
  34. },
  35. }
  36. func publicKey(priv any) any {
  37. switch k := priv.(type) {
  38. case *rsa.PrivateKey:
  39. return &k.PublicKey
  40. case *ecdsa.PrivateKey:
  41. return &k.PublicKey
  42. default:
  43. return nil
  44. }
  45. }
  46. func pemBlockForKey(priv any) *pem.Block {
  47. switch k := priv.(type) {
  48. case *rsa.PrivateKey:
  49. return &pem.Block{Type: "RSA PRIVATE KEY", Bytes: x509.MarshalPKCS1PrivateKey(k)}
  50. case *ecdsa.PrivateKey:
  51. b, err := x509.MarshalECPrivateKey(k)
  52. if err != nil {
  53. log.Fatalf("Unable to marshal ECDSA private key: %v\n", err)
  54. }
  55. return &pem.Block{Type: "EC PRIVATE KEY", Bytes: b}
  56. default:
  57. return nil
  58. }
  59. }
  60. func runCert(ctx *cli.Context) error {
  61. if len(ctx.String("host")) == 0 {
  62. log.Fatal("Missing required --host parameter")
  63. }
  64. var priv any
  65. var err error
  66. switch ctx.String("ecdsa-curve") {
  67. case "":
  68. priv, err = rsa.GenerateKey(rand.Reader, ctx.Int("rsa-bits"))
  69. case "P224":
  70. priv, err = ecdsa.GenerateKey(elliptic.P224(), rand.Reader)
  71. case "P256":
  72. priv, err = ecdsa.GenerateKey(elliptic.P256(), rand.Reader)
  73. case "P384":
  74. priv, err = ecdsa.GenerateKey(elliptic.P384(), rand.Reader)
  75. case "P521":
  76. priv, err = ecdsa.GenerateKey(elliptic.P521(), rand.Reader)
  77. default:
  78. log.Fatalf("Unrecognized elliptic curve: %q", ctx.String("ecdsa-curve"))
  79. }
  80. if err != nil {
  81. log.Fatalf("Failed to generate private key: %s", err)
  82. }
  83. var notBefore time.Time
  84. if len(ctx.String("start-date")) == 0 {
  85. notBefore = time.Now()
  86. } else {
  87. notBefore, err = time.Parse("Jan 2 15:04:05 2006", ctx.String("start-date"))
  88. if err != nil {
  89. log.Fatalf("Failed to parse creation date: %s", err)
  90. }
  91. }
  92. notAfter := notBefore.Add(ctx.Duration("duration"))
  93. serialNumberLimit := new(big.Int).Lsh(big.NewInt(1), 128)
  94. serialNumber, err := rand.Int(rand.Reader, serialNumberLimit)
  95. if err != nil {
  96. log.Fatalf("Failed to generate serial number: %s", err)
  97. }
  98. template := x509.Certificate{
  99. SerialNumber: serialNumber,
  100. Subject: pkix.Name{
  101. Organization: []string{"Acme Co"},
  102. CommonName: "Gogs",
  103. },
  104. NotBefore: notBefore,
  105. NotAfter: notAfter,
  106. KeyUsage: x509.KeyUsageKeyEncipherment | x509.KeyUsageDigitalSignature,
  107. ExtKeyUsage: []x509.ExtKeyUsage{x509.ExtKeyUsageServerAuth},
  108. BasicConstraintsValid: true,
  109. }
  110. hosts := strings.Split(ctx.String("host"), ",")
  111. for _, h := range hosts {
  112. if ip := net.ParseIP(h); ip != nil {
  113. template.IPAddresses = append(template.IPAddresses, ip)
  114. } else {
  115. template.DNSNames = append(template.DNSNames, h)
  116. }
  117. }
  118. if ctx.Bool("ca") {
  119. template.IsCA = true
  120. template.KeyUsage |= x509.KeyUsageCertSign
  121. }
  122. derBytes, err := x509.CreateCertificate(rand.Reader, &template, &template, publicKey(priv), priv)
  123. if err != nil {
  124. log.Fatalf("Failed to create certificate: %s", err)
  125. }
  126. certOut, err := os.Create("cert.pem")
  127. if err != nil {
  128. log.Fatalf("Failed to open cert.pem for writing: %s", err)
  129. }
  130. err = pem.Encode(certOut, &pem.Block{Type: "CERTIFICATE", Bytes: derBytes})
  131. if err != nil {
  132. log.Fatalf("Failed to encode data to cert.pem: %s", err)
  133. }
  134. err = certOut.Close()
  135. if err != nil {
  136. log.Fatalf("Failed to close writing to cert.pem: %s", err)
  137. }
  138. log.Println("Written cert.pem")
  139. keyOut, err := os.OpenFile("key.pem", os.O_WRONLY|os.O_CREATE|os.O_TRUNC, 0o600)
  140. if err != nil {
  141. log.Fatalf("Failed to open key.pem for writing: %v\n", err)
  142. }
  143. err = pem.Encode(keyOut, pemBlockForKey(priv))
  144. if err != nil {
  145. log.Fatalf("Failed to encode data to key.pem: %s", err)
  146. }
  147. err = keyOut.Close()
  148. if err != nil {
  149. log.Fatalf("Failed to close writing to key.pem: %s", err)
  150. }
  151. log.Println("Written key.pem")
  152. return nil
  153. }