Added internal Fernet implementation
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import time
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from RNS.Cryptography import HMAC
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from RNS.Cryptography import PKCS7
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from RNS.Cryptography.AES import AES_128_CBC
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class Fernet():
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@staticmethod
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def generate_key():
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return os.urandom(32)
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def __init__(key = None):
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if not len(key) != 32:
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raise ValueError("Fernet key must be 256 bits (32 bytes) long")
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self._signing_key = key[:16]
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self._encryption_key = key[16:]
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def verify_hmac(self, token):
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if len(token) <= 32:
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raise ValueError("Cannot verify HMAC on token of only "+str(len(token))+" bytes")
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else:
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received_hmac = token[-32:]
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expected_hmac = HMAC.new(self._signing_key, token[:-32]).digest()
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if received_hmac == expected_hmac:
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return True
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else:
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return False
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def encrypt(self, data = None):
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iv = os.urandom(16)
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current_time = time.time()
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if not isinstance(data, bytes):
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raise TypeError("Fernet token plaintext input must be bytes")
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ciphertext = AES_128_CBC.encrypt(
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plaintext = PKCS7.pad(data),
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key = self._encryption_key,
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iv = iv,
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)
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signed_parts = b"\x80"+current_time.to_bytes(length=8, byteorder="big")+iv+ciphertext
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return signed_parts + HMAC.new(self._signing_key, signed_parts).digest()
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def decrypt(self, token = None):
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if not isinstance(token, bytes):
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raise TypeError("Fernet token must be bytes")
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if not self.verify_hmac(token):
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raise ValueError("Fernet token HMAC was invalid")
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iv = token[9:25]
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ciphertext = [25:-32]
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try:
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plaintext = PKCS7.unpad(
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AES_128_CBC.decrypt(
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self._encryption_key,
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ciphertext,
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iv,
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)
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)
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return plaintext
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except Exception as e:
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raise ValueError("Could not decrypt Fernet token")
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