forked from TrueCloudLab/certificates
134 lines
3.7 KiB
Go
134 lines
3.7 KiB
Go
package softkms
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import (
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"context"
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"crypto"
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"crypto/ecdsa"
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"crypto/ed25519"
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"crypto/rsa"
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"crypto/x509"
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"github.com/pkg/errors"
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"github.com/smallstep/certificates/kms/apiv1"
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"github.com/smallstep/cli/crypto/keys"
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"github.com/smallstep/cli/crypto/pemutil"
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)
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type algorithmAttributes struct {
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Type string
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Curve string
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}
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// DefaultRSAKeySize is the default size for RSA keys.
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const DefaultRSAKeySize = 3072
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var signatureAlgorithmMapping = map[apiv1.SignatureAlgorithm]algorithmAttributes{
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apiv1.UnspecifiedSignAlgorithm: algorithmAttributes{"EC", "P-256"},
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apiv1.SHA256WithRSA: algorithmAttributes{"RSA", ""},
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apiv1.SHA384WithRSA: algorithmAttributes{"RSA", ""},
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apiv1.SHA512WithRSA: algorithmAttributes{"RSA", ""},
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apiv1.SHA256WithRSAPSS: algorithmAttributes{"RSA", ""},
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apiv1.SHA384WithRSAPSS: algorithmAttributes{"RSA", ""},
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apiv1.SHA512WithRSAPSS: algorithmAttributes{"RSA", ""},
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apiv1.ECDSAWithSHA256: algorithmAttributes{"EC", "P-256"},
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apiv1.ECDSAWithSHA384: algorithmAttributes{"EC", "P-384"},
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apiv1.ECDSAWithSHA512: algorithmAttributes{"EC", "P-521"},
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apiv1.PureEd25519: algorithmAttributes{"OKP", "Ed25519"},
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}
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// generateKey is used for testing purposes.
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var generateKey = func(kty, crv string, size int) (interface{}, interface{}, error) {
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if kty == "RSA" && size == 0 {
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size = DefaultRSAKeySize
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}
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return keys.GenerateKeyPair(kty, crv, size)
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}
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// SoftKSM is a key manager that uses keys stored in disk.
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type SoftKMS struct{}
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// New returns a new SoftKSM.
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func New(ctx context.Context, opts apiv1.Options) (*SoftKMS, error) {
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return &SoftKMS{}, nil
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}
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// Closes is a noop that just returns nil.
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func (k *SoftKMS) Close() error {
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return nil
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}
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// CreateSigner returns a new signer configured with the given signing key.
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func (k *SoftKMS) CreateSigner(req *apiv1.CreateSignerRequest) (crypto.Signer, error) {
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var opts []pemutil.Options
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if req.Password != nil {
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opts = append(opts, pemutil.WithPassword(req.Password))
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}
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switch {
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case req.Signer != nil:
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return req.Signer, nil
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case len(req.SigningKeyPEM) != 0:
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v, err := pemutil.ParseKey(req.SigningKeyPEM, opts...)
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if err != nil {
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return nil, err
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}
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sig, ok := v.(crypto.Signer)
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if !ok {
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return nil, errors.New("signingKeyPEM is not a crypto.Signer")
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}
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return sig, nil
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case req.SigningKey != "":
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v, err := pemutil.Read(req.SigningKey, opts...)
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if err != nil {
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return nil, err
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}
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sig, ok := v.(crypto.Signer)
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if !ok {
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return nil, errors.New("signingKey is not a crypto.Signer")
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}
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return sig, nil
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default:
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return nil, errors.New("failed to load softKMS: please define signingKeyPEM or signingKey")
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}
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}
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func (k *SoftKMS) CreateKey(req *apiv1.CreateKeyRequest) (*apiv1.CreateKeyResponse, error) {
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v, ok := signatureAlgorithmMapping[req.SignatureAlgorithm]
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if !ok {
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return nil, errors.Errorf("softKMS does not support signature algorithm '%s'", req.SignatureAlgorithm)
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}
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pub, priv, err := generateKey(v.Type, v.Curve, req.Bits)
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if err != nil {
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return nil, err
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}
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signer, ok := priv.(crypto.Signer)
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if !ok {
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return nil, errors.Errorf("softKMS createKey result is not a crypto.Signer: type %T", priv)
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}
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return &apiv1.CreateKeyResponse{
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Name: req.Name,
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PublicKey: pub,
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PrivateKey: priv,
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CreateSignerRequest: apiv1.CreateSignerRequest{
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Signer: signer,
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},
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}, nil
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}
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func (k *SoftKMS) GetPublicKey(req *apiv1.GetPublicKeyRequest) (crypto.PublicKey, error) {
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v, err := pemutil.Read(req.Name)
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if err != nil {
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return nil, err
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}
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switch vv := v.(type) {
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case *x509.Certificate:
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return vv.PublicKey, nil
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case *rsa.PublicKey, *ecdsa.PublicKey, ed25519.PublicKey:
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return vv, nil
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default:
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return nil, errors.Errorf("unsupported public key type %T", v)
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}
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}
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