Files
HostKeeper/v1/pkg/crypto/crypto.go
T
swanadiva 847989df75 refactor: move V1 code into v1/ subdirectory
- git mv cmd/ internal/ pkg/ test/ go.mod go.sum Makefile build.sh docs/ v1/
- Create v1/README.md with V1 documentation
- Update root README for V1 + V2 structure
- V1 still builds (cd v1 && go build ./cmd/hostkeeper) and 105 tests pass
- Root is now clean for V2 development
2026-07-07 11:56:27 +07:00

123 lines
2.8 KiB
Go

package crypto
import (
"crypto/aes"
"crypto/cipher"
"crypto/rand"
"crypto/sha256"
"encoding/base64"
"errors"
"io"
"golang.org/x/crypto/pbkdf2"
)
const (
KeyLength = 32 // AES-256
SaltLength = 16
Iterations = 100000
)
var (
ErrInvalidPassword = errors.New("invalid password")
ErrDecryptionFailed = errors.New("decryption failed — wrong password or corrupted data")
)
// DeriveKey derives an AES-256 key from a password using PBKDF2
func DeriveKey(password string, salt []byte) []byte {
return pbkdf2.Key([]byte(password), salt, Iterations, KeyLength, sha256.New)
}
// Encrypt encrypts plaintext using AES-256-GCM with a password
func Encrypt(plaintext []byte, password string) (string, error) {
salt := make([]byte, SaltLength)
if _, err := io.ReadFull(rand.Reader, salt); err != nil {
return "", err
}
key := DeriveKey(password, salt)
block, err := aes.NewCipher(key)
if err != nil {
return "", err
}
aesGCM, err := cipher.NewGCM(block)
if err != nil {
return "", err
}
nonce := make([]byte, aesGCM.NonceSize())
if _, err := io.ReadFull(rand.Reader, nonce); err != nil {
return "", err
}
ciphertext := aesGCM.Seal(nil, nonce, plaintext, nil)
// Format: base64(salt + nonce + ciphertext)
result := make([]byte, 0, len(salt)+len(nonce)+len(ciphertext))
result = append(result, salt...)
result = append(result, nonce...)
result = append(result, ciphertext...)
return base64.StdEncoding.EncodeToString(result), nil
}
// Decrypt decrypts ciphertext using AES-256-GCM with a password
func Decrypt(encoded string, password string) ([]byte, error) {
data, err := base64.StdEncoding.DecodeString(encoded)
if err != nil {
return nil, ErrDecryptionFailed
}
if len(data) < SaltLength+12 { // 12 = minimum nonce size for GCM
return nil, ErrDecryptionFailed
}
salt := data[:SaltLength]
data = data[SaltLength:]
key := DeriveKey(password, salt)
block, err := aes.NewCipher(key)
if err != nil {
return nil, ErrDecryptionFailed
}
aesGCM, err := cipher.NewGCM(block)
if err != nil {
return nil, ErrDecryptionFailed
}
nonceSize := aesGCM.NonceSize()
if len(data) < nonceSize {
return nil, ErrDecryptionFailed
}
nonce := data[:nonceSize]
ciphertext := data[nonceSize:]
plaintext, err := aesGCM.Open(nil, nonce, ciphertext, nil)
if err != nil {
return nil, ErrInvalidPassword
}
return plaintext, nil
}
// IsEncrypted checks if a string looks like base64-encoded encrypted data
func IsEncrypted(data string) bool {
decoded, err := base64.StdEncoding.DecodeString(data)
if err != nil {
return false
}
// Minimum: 16 (salt) + 12 (nonce) + 16 (min ciphertext) = 44 bytes
return len(decoded) >= 44
}
// HashPassword creates a SHA-256 hash of a password for verification
func HashPassword(password string) string {
h := sha256.Sum256([]byte(password))
return base64.StdEncoding.EncodeToString(h[:])
}