mirror of
https://github.com/aljazceru/python-nostr.git
synced 2025-12-19 07:14:23 +01:00
refactor key.py: add PrivateKey and PublicKey classes
This commit is contained in:
121
nostr/key.py
121
nostr/key.py
@@ -1,95 +1,86 @@
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import os
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import secrets
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import base64
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import secp256k1
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from cffi import FFI
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from secp256k1 import PrivateKey, PublicKey
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from cryptography.hazmat.primitives.ciphers import Cipher, algorithms, modes
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from cryptography.hazmat.primitives import padding
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from . import bech32
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def generate_private_key() -> str:
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private_key = PrivateKey()
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public_key = private_key.pubkey.serialize().hex()
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while not public_key.startswith("02"):
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private_key = PrivateKey()
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public_key = private_key.pubkey.serialize().hex()
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return private_key.serialize()
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class PublicKey:
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def __init__(self, raw_bytes: bytes) -> None:
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self.raw_bytes= raw_bytes
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def get_public_key(secret: str) -> str:
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private_key = PrivateKey(bytes.fromhex(secret))
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public_key = private_key.pubkey.serialize().hex()
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return public_key[2:] # chop off sign byte
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def bech32(self) -> str:
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converted_bits = bech32.convertbits(self.raw_bytes, 8, 5)
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return bech32.bech32_encode("npub", converted_bits, bech32.Encoding.BECH32)
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def get_key_pair() -> tuple:
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private_key = PrivateKey()
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public_key = private_key.pubkey.serialize().hex()
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return (private_key.serialize(), public_key[2:])
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def hex(self) -> str:
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return self.raw_bytes.hex()
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def bech32_encode_private_key(private_key: str) -> str:
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converted_bits = bech32.convertbits(bytes.fromhex(private_key), 8, 5)
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return bech32.bech32_encode("nsec", converted_bits, bech32.Encoding.BECH32)
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def verify_signed_message_hash(self, hash: str, sig: str) -> bool:
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pk = secp256k1.PublicKey(self.raw_bytes, True)
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return pk.schnorr_verify(bytes.fromhex(hash), bytes.fromhex(sig), None, True)
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def bech32_decode_private_key(private_key_bech32: str) -> str:
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data = bech32.bech32_decode(private_key_bech32)[1]
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return bytes(bech32.convertbits(data, 5, 8, False)).hex()
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class PrivateKey:
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def __init__(self, raw_secret: bytes=None) -> None:
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if not raw_secret is None:
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self.raw_secret = raw_secret
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else:
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self.raw_secret = secrets.token_bytes(32)
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def bech32_encode_public_key(public_key: str) -> str:
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converted_bits = bech32.convertbits(bytes.fromhex(public_key), 8, 5)
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return bech32.bech32_encode("npub", converted_bits, bech32.Encoding.BECH32)
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sk = secp256k1.PrivateKey(self.raw_secret)
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self.public_key = PublicKey(sk.pubkey.serialize()[1:])
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def bech32_decode_public_key(public_key_bech32: str) -> str:
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data = bech32.bech32_decode(public_key_bech32)[1]
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return bytes(bech32.convertbits(data, 5, 8, False)).hex()
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def bech32(self) -> str:
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converted_bits = bech32.convertbits(self.raw_secret, 8, 5)
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return bech32.bech32_encode("nsec", converted_bits, bech32.Encoding.BECH32)
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def tweak_add_private_key(private_key: str, scalar: bytes) -> str:
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sk = PrivateKey(bytes.fromhex(private_key))
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tweaked_secret = sk.tweak_add(scalar)
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new_sk = PrivateKey(tweaked_secret)
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return new_sk.serialize()
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def hex(self) -> str:
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return self.raw_secret.hex()
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def compute_shared_secret(sender_private_key: str, receiver_public_key: str) -> str:
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public_key = PublicKey(bytes.fromhex("02" + receiver_public_key), True)
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return public_key.ecdh(bytes.fromhex(sender_private_key), hashfn=copy_x).hex()
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def tweak_add(self, scalar: bytes) -> bytes:
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sk = secp256k1.PrivateKey(self.raw_secret)
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return sk.tweak_add(scalar)
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def encrypt_message(content: str, shared_secret: str) -> str:
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iv = os.urandom(16)
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def compute_shared_secret(self, public_key_hex: str) -> bytes:
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pk = secp256k1.PublicKey(bytes.fromhex("02" + public_key_hex), True)
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return pk.ecdh(self.raw_secret, hashfn=copy_x)
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cipher = Cipher(algorithms.AES(bytes.fromhex(shared_secret)), modes.CBC(iv))
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padder = padding.PKCS7(128).padder()
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padded_data = padder.update(content.encode()) + padder.finalize()
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def encrypt_message(self, message: str, public_key_hex: str) -> str:
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padder = padding.PKCS7(128).padder()
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padded_data = padder.update(message.encode()) + padder.finalize()
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encryptor = cipher.encryptor()
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encrypted_message = encryptor.update(padded_data) + encryptor.finalize()
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iv = secrets.token_bytes(16)
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cipher = Cipher(algorithms.AES(self.compute_shared_secret(public_key_hex)), modes.CBC(iv))
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return f"{base64.b64encode(encrypted_message).decode()}?iv={base64.b64encode(iv).decode()}"
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encryptor = cipher.encryptor()
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encrypted_message = encryptor.update(padded_data) + encryptor.finalize()
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def decrypt_message(encoded_message: str, shared_secret: str) -> str:
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encoded_data = encoded_message.split('?iv=')
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encoded_content, encoded_iv = encoded_data[0], encoded_data[1]
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return f"{base64.b64encode(encrypted_message).decode()}?iv={base64.b64encode(iv).decode()}"
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encrypted_content = base64.b64decode(encoded_content)
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iv = base64.b64decode(encoded_iv)
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def decrypt_message(self, encoded_message: str, public_key_hex: str) -> str:
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encoded_data = encoded_message.split('?iv=')
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encoded_content, encoded_iv = encoded_data[0], encoded_data[1]
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cipher = Cipher(algorithms.AES(bytes.fromhex(shared_secret)), modes.CBC(iv))
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decryptor = cipher.decryptor()
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decrypted_message = decryptor.update(encrypted_content) + decryptor.finalize()
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iv = base64.b64decode(encoded_iv)
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cipher = Cipher(algorithms.AES(self.compute_shared_secret(public_key_hex)), modes.CBC(iv))
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encrypted_content = base64.b64decode(encoded_content)
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unpadder = padding.PKCS7(128).unpadder()
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unpadded_data = unpadder.update(decrypted_message) + unpadder.finalize()
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decryptor = cipher.decryptor()
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decrypted_message = decryptor.update(encrypted_content) + decryptor.finalize()
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return unpadded_data.decode()
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unpadder = padding.PKCS7(128).unpadder()
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unpadded_data = unpadder.update(decrypted_message) + unpadder.finalize()
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def sign_message(hash: str, private_key: str) -> str:
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sk = PrivateKey(bytes.fromhex(private_key))
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sig = sk.schnorr_sign(bytes.fromhex(hash), None, raw=True)
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return sig.hex()
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return unpadded_data.decode()
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def verify_message(hash: str, sig: str, public_key: str) -> bool:
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pk = PublicKey(bytes.fromhex("02" + public_key), True)
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return pk.schnorr_verify(bytes.fromhex(hash), bytes.fromhex(sig), None, True)
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def sign_message_hash(self, hash: bytes) -> str:
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sk = secp256k1.PrivateKey(self.raw_secret)
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sig = sk.schnorr_sign(hash, None, raw=True)
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return sig.hex()
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ffi = FFI()
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@ffi.callback("int (unsigned char *, const unsigned char *, const unsigned char *, void *)")
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def copy_x(output, x32, y32, data):
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ffi.memmove(output, x32, 32)
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return 1
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return 1
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