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from __future__ import annotations |
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import abc |
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import typing |
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from cryptography import utils |
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from cryptography.exceptions import UnsupportedAlgorithm, _Reasons |
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from cryptography.hazmat._oid import ObjectIdentifier |
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from cryptography.hazmat.bindings._rust import openssl as rust_openssl |
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from cryptography.hazmat.primitives import _serialization, hashes |
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from cryptography.hazmat.primitives.asymmetric import utils as asym_utils |
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class EllipticCurveOID: |
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SECP192R1 = ObjectIdentifier("1.2.840.10045.3.1.1") |
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SECP224R1 = ObjectIdentifier("1.3.132.0.33") |
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SECP256K1 = ObjectIdentifier("1.3.132.0.10") |
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SECP256R1 = ObjectIdentifier("1.2.840.10045.3.1.7") |
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SECP384R1 = ObjectIdentifier("1.3.132.0.34") |
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SECP521R1 = ObjectIdentifier("1.3.132.0.35") |
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BRAINPOOLP256R1 = ObjectIdentifier("1.3.36.3.3.2.8.1.1.7") |
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BRAINPOOLP384R1 = ObjectIdentifier("1.3.36.3.3.2.8.1.1.11") |
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BRAINPOOLP512R1 = ObjectIdentifier("1.3.36.3.3.2.8.1.1.13") |
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SECT163K1 = ObjectIdentifier("1.3.132.0.1") |
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SECT163R2 = ObjectIdentifier("1.3.132.0.15") |
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SECT233K1 = ObjectIdentifier("1.3.132.0.26") |
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SECT233R1 = ObjectIdentifier("1.3.132.0.27") |
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SECT283K1 = ObjectIdentifier("1.3.132.0.16") |
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SECT283R1 = ObjectIdentifier("1.3.132.0.17") |
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SECT409K1 = ObjectIdentifier("1.3.132.0.36") |
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SECT409R1 = ObjectIdentifier("1.3.132.0.37") |
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SECT571K1 = ObjectIdentifier("1.3.132.0.38") |
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SECT571R1 = ObjectIdentifier("1.3.132.0.39") |
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class EllipticCurve(metaclass=abc.ABCMeta): |
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@property |
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@abc.abstractmethod |
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def name(self) -> str: |
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""" |
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The name of the curve. e.g. secp256r1. |
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""" |
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@property |
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@abc.abstractmethod |
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def key_size(self) -> int: |
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""" |
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Bit size of a secret scalar for the curve. |
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""" |
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class EllipticCurveSignatureAlgorithm(metaclass=abc.ABCMeta): |
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@property |
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@abc.abstractmethod |
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def algorithm( |
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self, |
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) -> asym_utils.Prehashed | hashes.HashAlgorithm: |
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""" |
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The digest algorithm used with this signature. |
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""" |
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class EllipticCurvePrivateKey(metaclass=abc.ABCMeta): |
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@abc.abstractmethod |
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def exchange( |
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self, algorithm: ECDH, peer_public_key: EllipticCurvePublicKey |
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) -> bytes: |
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""" |
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Performs a key exchange operation using the provided algorithm with the |
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provided peer's public key. |
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""" |
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@abc.abstractmethod |
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def public_key(self) -> EllipticCurvePublicKey: |
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""" |
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The EllipticCurvePublicKey for this private key. |
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""" |
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@property |
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@abc.abstractmethod |
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def curve(self) -> EllipticCurve: |
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""" |
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The EllipticCurve that this key is on. |
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""" |
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@property |
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@abc.abstractmethod |
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def key_size(self) -> int: |
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""" |
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Bit size of a secret scalar for the curve. |
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""" |
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@abc.abstractmethod |
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def sign( |
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self, |
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data: bytes, |
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signature_algorithm: EllipticCurveSignatureAlgorithm, |
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) -> bytes: |
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""" |
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Signs the data |
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""" |
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@abc.abstractmethod |
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def private_numbers(self) -> EllipticCurvePrivateNumbers: |
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""" |
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Returns an EllipticCurvePrivateNumbers. |
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""" |
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@abc.abstractmethod |
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def private_bytes( |
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self, |
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encoding: _serialization.Encoding, |
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format: _serialization.PrivateFormat, |
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encryption_algorithm: _serialization.KeySerializationEncryption, |
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) -> bytes: |
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""" |
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Returns the key serialized as bytes. |
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""" |
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EllipticCurvePrivateKeyWithSerialization = EllipticCurvePrivateKey |
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EllipticCurvePrivateKey.register(rust_openssl.ec.ECPrivateKey) |
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class EllipticCurvePublicKey(metaclass=abc.ABCMeta): |
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@property |
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@abc.abstractmethod |
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def curve(self) -> EllipticCurve: |
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""" |
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The EllipticCurve that this key is on. |
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""" |
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@property |
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@abc.abstractmethod |
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def key_size(self) -> int: |
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""" |
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Bit size of a secret scalar for the curve. |
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""" |
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@abc.abstractmethod |
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def public_numbers(self) -> EllipticCurvePublicNumbers: |
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""" |
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Returns an EllipticCurvePublicNumbers. |
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""" |
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@abc.abstractmethod |
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def public_bytes( |
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self, |
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encoding: _serialization.Encoding, |
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format: _serialization.PublicFormat, |
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) -> bytes: |
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""" |
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Returns the key serialized as bytes. |
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""" |
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@abc.abstractmethod |
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def verify( |
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self, |
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signature: bytes, |
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data: bytes, |
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signature_algorithm: EllipticCurveSignatureAlgorithm, |
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) -> None: |
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""" |
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Verifies the signature of the data. |
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""" |
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@classmethod |
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def from_encoded_point( |
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cls, curve: EllipticCurve, data: bytes |
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) -> EllipticCurvePublicKey: |
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utils._check_bytes("data", data) |
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if len(data) == 0: |
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raise ValueError("data must not be an empty byte string") |
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if data[0] not in [0x02, 0x03, 0x04]: |
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raise ValueError("Unsupported elliptic curve point type") |
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return rust_openssl.ec.from_public_bytes(curve, data) |
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@abc.abstractmethod |
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def __eq__(self, other: object) -> bool: |
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""" |
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Checks equality. |
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""" |
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EllipticCurvePublicKeyWithSerialization = EllipticCurvePublicKey |
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EllipticCurvePublicKey.register(rust_openssl.ec.ECPublicKey) |
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EllipticCurvePrivateNumbers = rust_openssl.ec.EllipticCurvePrivateNumbers |
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EllipticCurvePublicNumbers = rust_openssl.ec.EllipticCurvePublicNumbers |
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class SECT571R1(EllipticCurve): |
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name = "sect571r1" |
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key_size = 570 |
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class SECT409R1(EllipticCurve): |
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name = "sect409r1" |
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key_size = 409 |
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class SECT283R1(EllipticCurve): |
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name = "sect283r1" |
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key_size = 283 |
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class SECT233R1(EllipticCurve): |
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name = "sect233r1" |
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key_size = 233 |
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class SECT163R2(EllipticCurve): |
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name = "sect163r2" |
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key_size = 163 |
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class SECT571K1(EllipticCurve): |
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name = "sect571k1" |
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key_size = 571 |
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class SECT409K1(EllipticCurve): |
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name = "sect409k1" |
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key_size = 409 |
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class SECT283K1(EllipticCurve): |
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name = "sect283k1" |
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key_size = 283 |
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class SECT233K1(EllipticCurve): |
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name = "sect233k1" |
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key_size = 233 |
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class SECT163K1(EllipticCurve): |
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name = "sect163k1" |
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key_size = 163 |
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class SECP521R1(EllipticCurve): |
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name = "secp521r1" |
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key_size = 521 |
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class SECP384R1(EllipticCurve): |
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name = "secp384r1" |
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key_size = 384 |
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class SECP256R1(EllipticCurve): |
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name = "secp256r1" |
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key_size = 256 |
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class SECP256K1(EllipticCurve): |
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name = "secp256k1" |
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key_size = 256 |
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class SECP224R1(EllipticCurve): |
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name = "secp224r1" |
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key_size = 224 |
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class SECP192R1(EllipticCurve): |
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name = "secp192r1" |
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key_size = 192 |
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class BrainpoolP256R1(EllipticCurve): |
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name = "brainpoolP256r1" |
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key_size = 256 |
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class BrainpoolP384R1(EllipticCurve): |
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name = "brainpoolP384r1" |
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key_size = 384 |
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class BrainpoolP512R1(EllipticCurve): |
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name = "brainpoolP512r1" |
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key_size = 512 |
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_CURVE_TYPES: dict[str, EllipticCurve] = { |
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"prime192v1": SECP192R1(), |
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"prime256v1": SECP256R1(), |
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"secp192r1": SECP192R1(), |
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"secp224r1": SECP224R1(), |
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"secp256r1": SECP256R1(), |
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"secp384r1": SECP384R1(), |
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"secp521r1": SECP521R1(), |
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"secp256k1": SECP256K1(), |
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"sect163k1": SECT163K1(), |
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"sect233k1": SECT233K1(), |
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"sect283k1": SECT283K1(), |
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"sect409k1": SECT409K1(), |
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"sect571k1": SECT571K1(), |
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"sect163r2": SECT163R2(), |
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"sect233r1": SECT233R1(), |
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"sect283r1": SECT283R1(), |
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"sect409r1": SECT409R1(), |
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"sect571r1": SECT571R1(), |
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"brainpoolP256r1": BrainpoolP256R1(), |
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"brainpoolP384r1": BrainpoolP384R1(), |
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"brainpoolP512r1": BrainpoolP512R1(), |
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} |
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class ECDSA(EllipticCurveSignatureAlgorithm): |
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def __init__( |
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self, |
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algorithm: asym_utils.Prehashed | hashes.HashAlgorithm, |
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deterministic_signing: bool = False, |
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): |
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from cryptography.hazmat.backends.openssl.backend import backend |
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if ( |
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deterministic_signing |
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and not backend.ecdsa_deterministic_supported() |
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): |
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raise UnsupportedAlgorithm( |
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"ECDSA with deterministic signature (RFC 6979) is not " |
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"supported by this version of OpenSSL.", |
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_Reasons.UNSUPPORTED_PUBLIC_KEY_ALGORITHM, |
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) |
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self._algorithm = algorithm |
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self._deterministic_signing = deterministic_signing |
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@property |
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def algorithm( |
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self, |
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) -> asym_utils.Prehashed | hashes.HashAlgorithm: |
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return self._algorithm |
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@property |
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def deterministic_signing( |
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self, |
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) -> bool: |
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return self._deterministic_signing |
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generate_private_key = rust_openssl.ec.generate_private_key |
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def derive_private_key( |
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private_value: int, |
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curve: EllipticCurve, |
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backend: typing.Any = None, |
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) -> EllipticCurvePrivateKey: |
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if not isinstance(private_value, int): |
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raise TypeError("private_value must be an integer type.") |
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if private_value <= 0: |
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raise ValueError("private_value must be a positive integer.") |
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return rust_openssl.ec.derive_private_key(private_value, curve) |
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class ECDH: |
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pass |
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_OID_TO_CURVE = { |
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EllipticCurveOID.SECP192R1: SECP192R1, |
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EllipticCurveOID.SECP224R1: SECP224R1, |
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EllipticCurveOID.SECP256K1: SECP256K1, |
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EllipticCurveOID.SECP256R1: SECP256R1, |
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EllipticCurveOID.SECP384R1: SECP384R1, |
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EllipticCurveOID.SECP521R1: SECP521R1, |
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EllipticCurveOID.BRAINPOOLP256R1: BrainpoolP256R1, |
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EllipticCurveOID.BRAINPOOLP384R1: BrainpoolP384R1, |
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EllipticCurveOID.BRAINPOOLP512R1: BrainpoolP512R1, |
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EllipticCurveOID.SECT163K1: SECT163K1, |
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EllipticCurveOID.SECT163R2: SECT163R2, |
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EllipticCurveOID.SECT233K1: SECT233K1, |
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EllipticCurveOID.SECT233R1: SECT233R1, |
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EllipticCurveOID.SECT283K1: SECT283K1, |
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EllipticCurveOID.SECT283R1: SECT283R1, |
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EllipticCurveOID.SECT409K1: SECT409K1, |
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EllipticCurveOID.SECT409R1: SECT409R1, |
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EllipticCurveOID.SECT571K1: SECT571K1, |
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EllipticCurveOID.SECT571R1: SECT571R1, |
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} |
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def get_curve_for_oid(oid: ObjectIdentifier) -> type[EllipticCurve]: |
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try: |
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return _OID_TO_CURVE[oid] |
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except KeyError: |
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raise LookupError( |
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"The provided object identifier has no matching elliptic " |
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"curve class" |
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) |
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