56 lines
1.5 KiB
Python
56 lines
1.5 KiB
Python
from Crypto.PublicKey import ECC
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from Crypto.PublicKey.ECC import EccKey
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from libp2p.crypto.keys import KeyPair, KeyType, PrivateKey, PublicKey
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class ECCPublicKey(PublicKey):
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def __init__(self, impl: EccKey) -> None:
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self.impl = impl
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def to_bytes(self) -> bytes:
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return self.impl.export_key("DER")
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@classmethod
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def from_bytes(cls, data: bytes) -> "ECCPublicKey":
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public_key_impl = ECC.import_key(data)
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return cls(public_key_impl)
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def get_type(self) -> KeyType:
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return KeyType.ECC_P256
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def verify(self, data: bytes, signature: bytes) -> bool:
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raise NotImplementedError
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class ECCPrivateKey(PrivateKey):
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def __init__(self, impl: EccKey) -> None:
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self.impl = impl
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@classmethod
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def new(cls, curve: str) -> "ECCPrivateKey":
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private_key_impl = ECC.generate(curve=curve)
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return cls(private_key_impl)
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def to_bytes(self) -> bytes:
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return self.impl.export_key("DER")
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def get_type(self) -> KeyType:
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return KeyType.ECC_P256
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def sign(self, data: bytes) -> bytes:
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raise NotImplementedError
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def get_public_key(self) -> PublicKey:
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return ECCPublicKey(self.impl.publickey())
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def create_new_key_pair(curve: str) -> KeyPair:
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"""
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Returns a new RSA keypair with the requested key size (``bits``) and the given public
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exponent ``e``. Sane defaults are provided for both values.
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"""
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private_key = ECCPrivateKey.new(curve)
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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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