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https://github.com/Leseratte10/acsm-calibre-plugin.git
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commit
92a969c123
@ -238,10 +238,14 @@ def encryptLoginCredentials(username, password, authenticationCertificate):
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# Build buffer <devkey_bytes> <len username> <username> <len password> <password>
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ar = bytearray(devkey_bytes)
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ar.extend(bytearray(struct.pack("B", len(username))))
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ar.extend(bytearray(username.encode("latin-1")))
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ar.extend(bytearray(struct.pack("B", len(password))))
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ar.extend(bytearray(password.encode("latin-1")))
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username_bytes = bytearray(username.encode("utf-8"))
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password_bytes = bytearray(password.encode("utf-8"))
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ar.extend(bytearray(struct.pack("B", len(username_bytes))))
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ar.extend(username_bytes)
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ar.extend(bytearray(struct.pack("B", len(password_bytes))))
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ar.extend(password_bytes)
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# Crypt code from https://stackoverflow.com/a/12921889/4991648
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cert = DerSequence()
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@ -367,7 +367,7 @@ class TestAdobe(unittest.TestCase):
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def test_Account_loginCredentialEncryption(self):
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'''Check if we can properly encrypt login credentials'''
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'''Check if we can properly encrypt login credentials (ASCII)'''
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# This cert is not the actual Adobe auth cert.
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# I added a fake one in here so we can also test if the encrypted data is valid
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@ -388,15 +388,36 @@ class TestAdobe(unittest.TestCase):
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cipher_engine = PKCS1_v1_5.new(pkey)
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msg = cipher_engine.decrypt(encrypted, bytes([0x00] * 16))
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import struct
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self.assertEqual(binascii.hexlify(msg), b'f87afc8c7525dc4b83ec0ce2ab4bef5108757365726e616d6512756e69742d746573742d70617373776f7264', "devkey encryption returned wrong result")
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expected_msg = bytearray(libadobe.devkey_bytes)
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expected_msg.extend(bytearray(struct.pack("B", len(user))))
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expected_msg.extend(bytearray(user.encode("latin-1")))
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expected_msg.extend(bytearray(struct.pack("B", len(passwd))))
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expected_msg.extend(bytearray(passwd.encode("latin-1")))
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def test_Account_loginCredentialEncryptionWithUTF8(self):
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'''Check if we can properly encrypt login credentials (UTF-8)'''
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# This cert is not the actual Adobe auth cert.
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# I added a fake one in here so we can also test if the encrypted data is valid
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# by just decrypting it again.
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# Also, I don't think I'd be allowed to redistribute the Adobe cert anyways.
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mock_auth_certificate = "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"
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mock_auth_cert_private_key = "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"
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user = "username"
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passwd = "unit-test-¶Āssword🜂"
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# P = ¶ = U+00B6
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# A = Ā = U+0100
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# Triangle = 🜂 = U+1F702
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libadobe.devkey_bytes = bytearray([0xf8, 0x7a, 0xfc, 0x8c, 0x75, 0x25, 0xdc, 0x4b, 0x83, 0xec, 0x0c, 0xe2, 0xab, 0x4b, 0xef, 0x51])
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encrypted = libadobeAccount.encryptLoginCredentials(user, passwd, mock_auth_certificate)
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# Okay, now try to decrypt this again:
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pkey = RSA.import_key(base64.b64decode(mock_auth_cert_private_key))
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cipher_engine = PKCS1_v1_5.new(pkey)
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msg = cipher_engine.decrypt(encrypted, bytes([0x00] * 16))
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self.assertEqual(binascii.hexlify(msg), b'f87afc8c7525dc4b83ec0ce2ab4bef5108757365726e616d6518756e69742d746573742dc2b6c4807373776f7264f09f9c82', "devkey encryption returned wrong result")
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self.assertEqual(binascii.hexlify(msg), binascii.hexlify(expected_msg), "devkey encryption returned invalid result")
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class TestPluginInterface(unittest.TestCase):
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