2019-09-10 08:04:35 +08:00
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from Crypto.Hash import SHA256
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2019-09-10 08:23:44 +08:00
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from libp2p.crypto.keys import KeyPair, KeyType, PrivateKey, PublicKey
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2019-09-10 08:18:39 +08:00
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from nacl.exceptions import BadSignatureError
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2019-09-10 08:23:44 +08:00
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from nacl.public import PrivateKey as PrivateKeyImpl
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from nacl.public import PublicKey as PublicKeyImpl
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from nacl.signing import SigningKey, VerifyKey
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import nacl.utils as utils
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2019-09-10 08:04:35 +08:00
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class Ed25519PublicKey(PublicKey):
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2019-09-10 08:23:44 +08:00
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def __init__(self, impl: PublicKeyImpl) -> None:
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2019-09-10 08:04:35 +08:00
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self.impl = impl
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def to_bytes(self) -> bytes:
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return bytes(self.impl)
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@classmethod
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def from_bytes(cls, key_bytes: bytes) -> "Ed25519PublicKey":
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2019-09-10 08:23:44 +08:00
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return cls(PublicKeyImpl(key_bytes))
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2019-09-10 08:04:35 +08:00
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def get_type(self) -> KeyType:
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return KeyType.Ed25519
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def verify(self, data: bytes, signature: bytes) -> bool:
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verify_key = VerifyKey(self.to_bytes())
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h = SHA256.new(data)
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try:
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verify_key.verify(h, signature)
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except BadSignatureError:
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return False
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return True
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2019-09-10 08:23:44 +08:00
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class Ed25519PrivateKey(PrivateKey):
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def __init__(self, impl: PrivateKeyImpl) -> None:
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self.impl = impl
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@classmethod
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def new(cls, seed: bytes = None) -> "Ed25519PrivateKey":
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if not seed:
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seed = utils.random()
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private_key_impl = PrivateKeyImpl.from_seed(seed)
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return cls(private_key_impl)
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def to_bytes(self) -> bytes:
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return bytes(self.impl)
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def get_type(self) -> KeyType:
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return KeyType.Ed25519
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def sign(self, data: bytes) -> bytes:
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h = SHA256.new(data)
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signing_key = SigningKey(self.to_bytes())
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return signing_key.sign(h)
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def get_public_key(self) -> PublicKey:
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return Ed25519PublicKey(self.impl.public_key)
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def create_new_key_pair(seed: bytes = None) -> KeyPair:
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private_key = Ed25519PrivateKey.new(seed)
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public_key = private_key.get_public_key()
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return KeyPair(private_key, public_key)
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