Files

215 lines
4.4 KiB
Go

package keymanager
import (
"crypto/sha256"
"encoding/pem"
"errors"
"fmt"
"io"
"os"
"git.tswf.io/infra/go-synapse-backupper/pkg/domain/crypto"
)
var (
// ErrPEMTypeMismatch is returned when the PEM block type does not match
// the expected type for the given schemeID.
ErrPEMTypeMismatch = errors.New("PEM type does not match scheme")
// ErrInvalidPEM is returned when the file does not contain a valid PEM block.
ErrInvalidPEM = errors.New("invalid PEM data")
)
var pubPEMTypes = map[uint16]string{
0x0006: "ML-KEM-768 PUBLIC KEY",
0x0007: "X25519 PUBLIC KEY",
}
var privPEMTypes = map[uint16]string{
0x0006: "ML-KEM-768 PRIVATE KEY",
0x0007: "X25519 PRIVATE KEY",
}
// keyManager handles PEM encoding and decoding of recipient keys.
type keyManager struct {
registry crypto.Registry
}
// NewKeyManager creates a new KeyManager backed by the provided Registry.
func NewKeyManager(
registry crypto.Registry,
) crypto.KeyManager {
return &keyManager{
registry: registry,
}
}
// Generate creates a new key pair for the given schemeID and writes them
// as PEM blocks to pubOut and privOut.
func (k *keyManager) Generate(
schemeID uint16,
pubOut io.Writer,
privOut io.Writer,
rand io.Reader,
) error {
factory, err := k.registry.Lookup(schemeID)
if err != nil {
return err
}
kem := factory()
pub, priv, err := kem.GenerateKeyPair(rand)
if err != nil {
return err
}
pubType, ok := pubPEMTypes[schemeID]
if !ok {
return fmt.Errorf(
"unsupported scheme 0x%04x for public key PEM",
schemeID,
)
}
privType, ok := privPEMTypes[schemeID]
if !ok {
return fmt.Errorf(
"unsupported scheme 0x%04x for private key PEM",
schemeID,
)
}
pubBlock := &pem.Block{
Type: pubType,
Bytes: pub.Raw(),
}
if err := pem.Encode(pubOut, pubBlock); err != nil {
return fmt.Errorf("encode public key PEM: %w", err)
}
privBlock := &pem.Block{
Type: privType,
Bytes: priv.Raw(),
}
if err := pem.Encode(privOut, privBlock); err != nil {
return fmt.Errorf("encode private key PEM: %w", err)
}
return nil
}
// LoadPub reads a PEM-encoded public key from path and validates that its
// type matches the expected type for schemeID.
func (k *keyManager) LoadPub(
path string,
schemeID uint16,
) (
crypto.RecipientPub,
error,
) {
data, err := os.ReadFile(path)
if err != nil {
return nil, fmt.Errorf("read public key file: %w", err)
}
block, _ := pem.Decode(data)
if block == nil {
return nil, fmt.Errorf("%w: no valid PEM block found", ErrInvalidPEM)
}
expectedType, ok := pubPEMTypes[schemeID]
if !ok {
return nil, fmt.Errorf(
"unsupported scheme 0x%04x for public key PEM",
schemeID,
)
}
if block.Type != expectedType {
return nil, fmt.Errorf(
"expected PEM type %q, got %q: %w",
expectedType,
block.Type,
ErrPEMTypeMismatch,
)
}
return newRecipientPub(schemeID, block.Bytes), nil
}
// LoadPriv reads a PEM-encoded private key from path and validates that its
// type matches the expected type for schemeID.
func (k *keyManager) LoadPriv(
path string,
schemeID uint16,
) (
crypto.RecipientPriv,
error,
) {
data, err := os.ReadFile(path)
if err != nil {
return nil, fmt.Errorf("read private key file: %w", err)
}
block, _ := pem.Decode(data)
if block == nil {
return nil, fmt.Errorf("%w: no valid PEM block found", ErrInvalidPEM)
}
expectedType, ok := privPEMTypes[schemeID]
if !ok {
return nil, fmt.Errorf(
"unsupported scheme 0x%04x for private key PEM",
schemeID,
)
}
if block.Type != expectedType {
return nil, fmt.Errorf(
"expected PEM type %q, got %q: %w",
expectedType,
block.Type,
ErrPEMTypeMismatch,
)
}
factory, err := k.registry.Lookup(schemeID)
if err != nil {
return nil, err
}
kem := factory()
return kem.LoadPriv(block.Bytes)
}
// recipientPub is a generic RecipientPub implementation backed by raw bytes.
type recipientPub struct {
schemeID uint16
raw []byte
keyID []byte
}
func newRecipientPub(
schemeID uint16,
raw []byte,
) crypto.RecipientPub {
var keyID []byte
switch schemeID {
case 0x0006:
h := sha256.Sum256(raw[:8])
keyID = h[:8]
case 0x0007:
h := sha256.Sum256(raw)
keyID = h[:8]
}
return &recipientPub{
schemeID: schemeID,
raw: append([]byte(nil), raw...),
keyID: keyID,
}
}
func (r *recipientPub) SchemeID() uint16 { return r.schemeID }
func (r *recipientPub) KeyID() []byte { return r.keyID }
func (r *recipientPub) Raw() []byte { return r.raw }