+ Tidy up code, add comments
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@ -185,6 +185,8 @@ class _BCertStructs:
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class Certificate(_BCertStructs):
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"""Represents a BCert"""
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def __init__(
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self,
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parsed_bcert: Container,
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@ -263,7 +265,7 @@ class Certificate(_BCertStructs):
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key=signing_key.public_bytes(),
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usages_count=1,
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usages=ListContainer([
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1
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1 # KEYUSAGE_SIGN
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])
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)
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cert_key_encrypt = Container(
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@ -273,7 +275,7 @@ class Certificate(_BCertStructs):
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key=encryption_key.public_bytes(),
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usages_count=1,
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usages=ListContainer([
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2
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2 # KEYUSAGE_ENCRYPT_KEY
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])
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)
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key_info = Container(
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@ -380,6 +382,8 @@ class Certificate(_BCertStructs):
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class CertificateChain(_BCertStructs):
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"""Represents a BCertChain"""
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def __init__(
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self,
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parsed_bcert_chain: Container,
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@ -40,6 +40,7 @@ class _DeviceStructs:
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class Device:
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"""Represents a PlayReady Device (.prd)"""
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CURRENT_STRUCT = _DeviceStructs.v2
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def __init__(
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@ -11,15 +11,14 @@ from ecpy.curves import Curve, Point
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class ECCKey:
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def __init__(
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self,
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key: EccKey
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):
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"""Represents a PlayReady ECC key"""
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"""Represents a PlayReady ECC key"""
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def __init__(self, key: EccKey):
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self.key = key
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@classmethod
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def generate(cls):
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"""Generate a new ECC key pair"""
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return cls(key=ECC.generate(curve='P-256'))
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@classmethod
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@ -29,6 +28,7 @@ class ECCKey:
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public_key_x: Union[bytes, int],
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public_key_y: Union[bytes, int]
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):
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"""Construct an ECC key pair from private/public bytes/ints"""
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if isinstance(private_key, bytes):
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private_key = int.from_bytes(private_key, 'big')
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if not isinstance(private_key, int):
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@ -5,7 +5,10 @@ import secrets
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class ElGamal:
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"""ElGamal ECC utility using ecpy"""
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def __init__(self, curve: Curve):
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"""Initialize the utility with a given curve type ('secp256r1' for PlayReady)"""
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self.curve = curve
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@staticmethod
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@ -15,21 +18,24 @@ class ElGamal:
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byte_len += 1
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return n.to_bytes(byte_len, 'big')
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def encrypt(
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self,
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message_point: Point,
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public_key: Point
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) -> Tuple[Point, Point]:
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def encrypt(self, message_point: Point, public_key: Point) -> Tuple[Point, Point]:
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"""
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Encrypt a single point with a given public key
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Returns an encrypted point pair
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"""
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ephemeral_key = secrets.randbelow(self.curve.order)
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point1 = ephemeral_key * self.curve.generator
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point2 = message_point + (ephemeral_key * public_key)
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return point1, point2
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@staticmethod
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def decrypt(
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encrypted: Tuple[Point, Point],
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private_key: int
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) -> Point:
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def decrypt(encrypted: Tuple[Point, Point], private_key: int) -> Point:
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"""
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Decrypt and encrypted point pair with a given private key
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Returns a single decrypted point
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"""
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point1, point2 = encrypted
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shared_secret = private_key * point1
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decrypted_message = point2 - shared_secret
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@ -11,6 +11,7 @@ class Key:
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RC4 = 0x0002
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AES128ECB = 0x0003
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Cocktail = 0x0004
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AES128CBC = 0x0005
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UNKNOWN = 0xffff
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@classmethod
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@ -23,6 +24,7 @@ class Key:
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ChainedLicense = 0x0002
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ECC256 = 0x0003
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ECCforScalableLicenses = 0x0004
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Scalable = 0x0005
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UNKNOWN = 0xffff
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@classmethod
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@ -47,7 +49,7 @@ class Key:
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def kid_to_uuid(kid: Union[str, bytes]) -> UUID:
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"""
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Convert a Key ID from a string or bytes to a UUID object.
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At first this may seem very simple but some types of Key IDs
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At first, this may seem very simple, but some types of Key IDs
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may not be 16 bytes and some may be decimal vs. hex.
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"""
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if isinstance(kid, str):
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@ -38,10 +38,13 @@ class _PlayreadyPSSHStructs:
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class PSSH(_PlayreadyPSSHStructs):
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"""Represents a PlayReady PSSH"""
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SYSTEM_ID = UUID(hex="9a04f07998404286ab92e65be0885f95")
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def __init__(self, data: Union[str, bytes]):
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"""Represents a PlayReady PSSH"""
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"""Load a PSSH Box, PlayReady Header or PlayReady Object"""
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if not data:
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raise InvalidPssh("Data must not be empty")
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@ -83,7 +86,12 @@ class PSSH(_PlayreadyPSSHStructs):
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)
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))
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def get_wrm_headers(self, downgrade_to_v4: bool = False):
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def get_wrm_headers(self, downgrade_to_v4: bool = False) -> List[str]:
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"""
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Return a list of all WRM Headers in the PSSH as plaintext strings
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downgrade_to_v4: Downgrade the WRM Header to version 4.0.0.0 to use AES-CBC instead of AES-CTR
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"""
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return list(map(
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lambda wrm_header: wrm_header.to_v4_0_0_0() if downgrade_to_v4 else wrm_header.dumps(),
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self.wrm_headers
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@ -1,4 +1,5 @@
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import base64
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import binascii
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from enum import Enum
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from typing import Optional, List, Union, Tuple
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@ -6,6 +7,8 @@ import xmltodict
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class WRMHeader:
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"""Represents a PlayReady WRM Header"""
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class SignedKeyID:
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def __init__(
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self,
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@ -33,18 +36,16 @@ class WRMHeader:
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_RETURN_STRUCTURE = Tuple[List[SignedKeyID], Union[str, None], Union[str, None], Union[str, None]]
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def __init__(
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self,
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data: Union[str, bytes]
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):
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"""Represents a PlayReady WRM Header"""
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def __init__(self, data: Union[str, bytes]):
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"""Load a WRM Header from either a string, base64 encoded data or bytes"""
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if not data:
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raise ValueError("Data must not be empty")
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if isinstance(data, str):
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try:
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data = base64.b64decode(data).decode()
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except Exception:
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except (binascii.Error, binascii.Incomplete):
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data = data.encode()
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self._raw_data: bytes = data
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@ -63,7 +64,11 @@ class WRMHeader:
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return element
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def to_v4_0_0_0(self) -> str:
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"""Will ignore any remaining Key IDs if there's more than just one"""
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"""
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Build a v4.0.0.0 WRM header from any possible WRM Header version
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Note: Will ignore any remaining Key IDs if there's more than just one
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"""
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return self._build_v4_0_0_0_wrm_header(*self.read_attributes())
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@staticmethod
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@ -146,6 +151,12 @@ class WRMHeader:
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)
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def read_attributes(self) -> _RETURN_STRUCTURE:
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"""
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Read any non-custom XML attributes
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Returns a tuple structured like this: Tuple[List[SignedKeyID], <LA_URL>, <LUI_URL>, <DS_ID>]
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"""
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data = self._header.get("DATA")
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if not data:
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raise ValueError("Not a valid PlayReady Header Record, WRMHEADER/DATA required")
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@ -5,6 +5,8 @@ from pyplayready.elgamal import ElGamal
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class XmlKey:
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"""Represents a PlayReady XMLKey"""
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def __init__(self):
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self._shared_point = ECCKey.generate()
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self.shared_key_x = self._shared_point.key.pointQ.x
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@ -200,13 +200,15 @@ class _XMRLicenseStructs:
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class XMRLicense(_XMRLicenseStructs):
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"""Represents an XMRLicense"""
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def __init__(
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self,
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parsed_license: Container,
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license_obj: _XMRLicenseStructs.XmrLicense = _XMRLicenseStructs.XmrLicense
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):
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self.parsed = parsed_license
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self._LICENSE = license_obj
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self._license_obj = license_obj
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@classmethod
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def loads(cls, data: Union[str, bytes]) -> XMRLicense:
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@ -229,10 +231,10 @@ class XMRLicense(_XMRLicenseStructs):
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return cls.loads(f.read())
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def dumps(self) -> bytes:
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return self._LICENSE.build(self.parsed)
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return self._license_obj.build(self.parsed)
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def struct(self) -> _XMRLicenseStructs.XmrLicense:
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return self._LICENSE
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return self._license_obj
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def _locate(self, container: Container):
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if container.flags == 2 or container.flags == 3:
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