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Re-Organize the pkutil library
Kubernetes-commit: 7c37e91a6ddc8610444bb8106541a19bfb24f46a
This commit is contained in:
parent
6134db9120
commit
0c54a1af24
@ -21,16 +21,13 @@ import (
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"crypto"
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"crypto/ecdsa"
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"crypto/elliptic"
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"crypto/rand"
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cryptorand "crypto/rand"
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"crypto/rsa"
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"crypto/x509"
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"crypto/x509/pkix"
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"encoding/pem"
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"errors"
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"fmt"
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"io/ioutil"
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"math"
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"math/big"
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"net"
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"path"
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@ -39,7 +36,6 @@ import (
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)
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const (
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rsaKeySize = 2048
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duration365d = time.Hour * 24 * 365
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)
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@ -59,11 +55,6 @@ type AltNames struct {
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IPs []net.IP
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}
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// NewPrivateKey creates an RSA private key
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func NewPrivateKey() (*rsa.PrivateKey, error) {
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return rsa.GenerateKey(cryptorand.Reader, rsaKeySize)
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}
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// NewSelfSignedCACert creates a CA certificate
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func NewSelfSignedCACert(cfg Config, key crypto.Signer) (*x509.Certificate, error) {
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now := time.Now()
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@ -87,39 +78,6 @@ func NewSelfSignedCACert(cfg Config, key crypto.Signer) (*x509.Certificate, erro
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return x509.ParseCertificate(certDERBytes)
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}
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// NewSignedCert creates a signed certificate using the given CA certificate and key
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func NewSignedCert(cfg Config, key crypto.Signer, caCert *x509.Certificate, caKey crypto.Signer) (*x509.Certificate, error) {
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serial, err := rand.Int(rand.Reader, new(big.Int).SetInt64(math.MaxInt64))
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if err != nil {
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return nil, err
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}
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if len(cfg.CommonName) == 0 {
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return nil, errors.New("must specify a CommonName")
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}
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if len(cfg.Usages) == 0 {
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return nil, errors.New("must specify at least one ExtKeyUsage")
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}
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certTmpl := x509.Certificate{
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Subject: pkix.Name{
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CommonName: cfg.CommonName,
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Organization: cfg.Organization,
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},
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DNSNames: cfg.AltNames.DNSNames,
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IPAddresses: cfg.AltNames.IPs,
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SerialNumber: serial,
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NotBefore: caCert.NotBefore,
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NotAfter: time.Now().Add(duration365d).UTC(),
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KeyUsage: x509.KeyUsageKeyEncipherment | x509.KeyUsageDigitalSignature,
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ExtKeyUsage: cfg.Usages,
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}
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certDERBytes, err := x509.CreateCertificate(cryptorand.Reader, &certTmpl, caCert, key.Public(), caKey)
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if err != nil {
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return nil, err
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}
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return x509.ParseCertificate(certDERBytes)
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}
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// MakeEllipticPrivateKeyPEM creates an ECDSA private key
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func MakeEllipticPrivateKeyPEM() ([]byte, error) {
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privateKey, err := ecdsa.GenerateKey(elliptic.P256(), cryptorand.Reader)
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@ -26,51 +26,19 @@ import (
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)
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const (
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// ECPrivateKeyBlockType is a possible value for pem.Block.Type.
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ECPrivateKeyBlockType = "EC PRIVATE KEY"
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// RSAPrivateKeyBlockType is a possible value for pem.Block.Type.
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RSAPrivateKeyBlockType = "RSA PRIVATE KEY"
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// PrivateKeyBlockType is a possible value for pem.Block.Type.
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PrivateKeyBlockType = "PRIVATE KEY"
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// PublicKeyBlockType is a possible value for pem.Block.Type.
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PublicKeyBlockType = "PUBLIC KEY"
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// CertificateBlockType is a possible value for pem.Block.Type.
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CertificateBlockType = "CERTIFICATE"
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// CertificateRequestBlockType is a possible value for pem.Block.Type.
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CertificateRequestBlockType = "CERTIFICATE REQUEST"
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// CertificateBlockType is a possible value for pem.Block.Type.
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CertificateBlockType = "CERTIFICATE"
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// PrivateKeyBlockType is a possible value for pem.Block.Type.
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PrivateKeyBlockType = "PRIVATE KEY"
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)
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// EncodePublicKeyPEM returns PEM-encoded public data
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func EncodePublicKeyPEM(key *rsa.PublicKey) ([]byte, error) {
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der, err := x509.MarshalPKIXPublicKey(key)
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if err != nil {
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return []byte{}, err
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}
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block := pem.Block{
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Type: PublicKeyBlockType,
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Bytes: der,
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}
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return pem.EncodeToMemory(&block), nil
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}
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// EncodePrivateKeyPEM returns PEM-encoded private key data
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func EncodePrivateKeyPEM(key *rsa.PrivateKey) []byte {
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block := pem.Block{
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Type: RSAPrivateKeyBlockType,
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Bytes: x509.MarshalPKCS1PrivateKey(key),
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}
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return pem.EncodeToMemory(&block)
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}
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// EncodeCertPEM returns PEM-endcoded certificate data
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func EncodeCertPEM(cert *x509.Certificate) []byte {
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block := pem.Block{
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Type: CertificateBlockType,
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Bytes: cert.Raw,
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}
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return pem.EncodeToMemory(&block)
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}
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// ParsePrivateKeyPEM returns a private key parsed from a PEM block in the supplied data.
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// Recognizes PEM blocks for "EC PRIVATE KEY", "RSA PRIVATE KEY", or "PRIVATE KEY"
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func ParsePrivateKeyPEM(keyData []byte) (interface{}, error) {
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@ -147,6 +115,15 @@ func ParsePublicKeysPEM(keyData []byte) ([]interface{}, error) {
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return keys, nil
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}
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// EncodePrivateKeyPEM returns PEM-encoded private key data
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func EncodePrivateKeyPEM(key *rsa.PrivateKey) []byte {
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block := pem.Block{
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Type: RSAPrivateKeyBlockType,
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Bytes: x509.MarshalPKCS1PrivateKey(key),
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}
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return pem.EncodeToMemory(&block)
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}
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// ParseCertsPEM returns the x509.Certificates contained in the given PEM-encoded byte array
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// Returns an error if a certificate could not be parsed, or if the data does not contain any certificates
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func ParseCertsPEM(pemCerts []byte) ([]*x509.Certificate, error) {
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