Files
osmedeus/server/ssl.go
T
2023-09-07 21:21:14 +07:00

192 lines
5.4 KiB
Go

package server
// Copyright 2009 The Go Authors. All rights reserved.
// Use of this source code is governed by a BSD-style
// license that can be found in the LICENSE file.
// Generate a self-signed X.509 certificate for a TLS server. Outputs to
// 'cert.pem' and 'key.pem' and will overwrite existing files.
import (
"crypto/ecdsa"
"crypto/ed25519"
"crypto/elliptic"
"crypto/rand"
"crypto/rsa"
"crypto/x509"
"crypto/x509/pkix"
"encoding/pem"
"fmt"
"github.com/j3ssie/osmedeus/libs"
"github.com/j3ssie/osmedeus/utils"
"log"
"math/big"
"net"
"os"
"strings"
"time"
)
func publicKey(priv interface{}) interface{} {
switch k := priv.(type) {
case *rsa.PrivateKey:
return &k.PublicKey
case *ecdsa.PrivateKey:
return &k.PublicKey
case ed25519.PrivateKey:
return k.Public().(ed25519.PublicKey)
default:
return nil
}
}
// EnableSSL do some check when ssl enabled
func EnableSSL(options libs.Options) error {
if options.Server.DisableSSL {
return nil
}
if utils.FileExists(options.Server.CertFile) && utils.FileExists(options.Server.KeyFile) {
return nil
}
ok := GenerateSSL(options.Server.CertFile, options.Server.KeyFile)
if ok {
return nil
}
utils.ErrorF("error create ssl key at: %v", options.Server.CertFile)
return fmt.Errorf("error create SSL Key")
}
// GenerateSSL generate SSL key
func GenerateSSL(certFile string, keyFile string) bool {
host := "localhost" // "Comma-separated hostnames and IPs to generate a certificate for
validFrom := "" // "Creation date formatted as Jan 1 15:04:05 2011
validFor := 365 * 24 * time.Hour // "Duration that certificate is valid for
isCA := false // "whether this cert should be its own Certificate Authority
rsaBits := 4096 // "Size of RSA key to generate. Ignored if --ecdsa-curve is set
ecdsaCurve := "P256" // "ECDSA curve to use to generate a key. Valid values are P224, P256 (recommended), P384, P521
ed25519Key := false // "Generate an Ed25519 key"
var priv interface{}
var err error
switch ecdsaCurve {
case "":
if ed25519Key {
_, priv, err = ed25519.GenerateKey(rand.Reader)
} else {
priv, err = rsa.GenerateKey(rand.Reader, rsaBits)
}
case "P224":
priv, err = ecdsa.GenerateKey(elliptic.P224(), rand.Reader)
case "P256":
priv, err = ecdsa.GenerateKey(elliptic.P256(), rand.Reader)
case "P384":
priv, err = ecdsa.GenerateKey(elliptic.P384(), rand.Reader)
case "P521":
priv, err = ecdsa.GenerateKey(elliptic.P521(), rand.Reader)
default:
log.Fatalf("Unrecognized elliptic curve: %q", ecdsaCurve)
}
if err != nil {
log.Fatalf("Failed to generate private key: %v", err)
}
// ECDSA, ED25519 and RSA subject keys should have the DigitalSignature
// KeyUsage bits set in the x509.Certificate template
keyUsage := x509.KeyUsageDigitalSignature
// Only RSA subject keys should have the KeyEncipherment KeyUsage bits set. In
// the context of TLS this KeyUsage is particular to RSA key exchange and
// authentication.
if _, isRSA := priv.(*rsa.PrivateKey); isRSA {
keyUsage |= x509.KeyUsageKeyEncipherment
}
var notBefore time.Time
if len(validFrom) == 0 {
notBefore = time.Now()
} else {
notBefore, err = time.Parse("Jan 2 15:04:05 2006", validFrom)
if err != nil {
log.Fatalf("Failed to parse creation date: %v", err)
}
}
notAfter := notBefore.Add(validFor)
serialNumberLimit := new(big.Int).Lsh(big.NewInt(1), 128)
serialNumber, err := rand.Int(rand.Reader, serialNumberLimit)
if err != nil {
log.Fatalf("Failed to generate serial number: %v", err)
}
template := x509.Certificate{
SerialNumber: serialNumber,
Subject: pkix.Name{
Organization: []string{"Not Localhost"},
},
NotBefore: notBefore,
NotAfter: notAfter,
KeyUsage: keyUsage,
ExtKeyUsage: []x509.ExtKeyUsage{x509.ExtKeyUsageServerAuth},
BasicConstraintsValid: true,
}
hosts := strings.Split(host, ",")
for _, h := range hosts {
if ip := net.ParseIP(h); ip != nil {
template.IPAddresses = append(template.IPAddresses, ip)
} else {
template.DNSNames = append(template.DNSNames, h)
}
}
if isCA {
template.IsCA = true
template.KeyUsage |= x509.KeyUsageCertSign
}
derBytes, err := x509.CreateCertificate(rand.Reader, &template, &template, publicKey(priv), priv)
if err != nil {
utils.ErrorF("Failed to create certificate: %v", err)
return false
}
certOut, err := os.Create(certFile)
if err != nil {
utils.ErrorF("Failed to open %s for writing: %v", certFile, err)
return false
}
if err := pem.Encode(certOut, &pem.Block{Type: "CERTIFICATE", Bytes: derBytes}); err != nil {
utils.ErrorF("Failed to write data to cert.pem: %v", err)
return false
}
if err := certOut.Close(); err != nil {
utils.ErrorF("Error closing cert.pem: %v", err)
return false
}
//log.Print("wrote cert.pem\n")
keyOut, err := os.OpenFile(keyFile, os.O_WRONLY|os.O_CREATE|os.O_TRUNC, 0600)
if err != nil {
utils.ErrorF("Failed to open %sfor writing: %v", keyFile, err)
return false
}
privBytes, err := x509.MarshalPKCS8PrivateKey(priv)
if err != nil {
utils.ErrorF("Unable to marshal private key: %v", err)
return false
}
if err := pem.Encode(keyOut, &pem.Block{Type: "PRIVATE KEY", Bytes: privBytes}); err != nil {
utils.ErrorF("Failed to write data to key.pem: %v", err)
return false
}
if err := keyOut.Close(); err != nil {
utils.ErrorF("Error closing key.pem: %v", err)
return false
}
//log.Print("wrote key.pem\n")
return true
}