mirror of
https://github.com/trezor/trezor-firmware.git
synced 2024-11-30 11:28:21 +00:00
9fc5bb546b
Changes many fields to required -- as far as we were able to figure out, signing would fail if these fields aren't provided anyway, so this should not pose a compatibility problem. Co-authored-by: matejcik <ja@matejcik.cz>
116 lines
3.9 KiB
Python
116 lines
3.9 KiB
Python
from common import *
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from trezor import protobuf
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from trezor.messages import WebAuthnCredential, Failure, SignMessage, DebugLinkMemoryRead
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def load_uvarint32(data: bytes) -> int:
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# use known uint32 field in an all-optional message
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buffer = bytearray(len(data) + 1)
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buffer[1:] = data
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buffer[0] = (1 << 3) | 0 # field number 1, wire type 0
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msg = protobuf.decode(buffer, WebAuthnCredential, False)
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return msg.index
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def load_uvarint64(data: bytes) -> int:
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# use known uint64 field in an all-optional message
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buffer = bytearray(len(data) + 1)
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buffer[1:] = data
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buffer[0] = (2 << 3) | 0 # field number 1, wire type 0
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msg = protobuf.decode(buffer, DebugLinkMemoryRead, False)
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return msg.length
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def dump_uvarint32(value: int) -> bytearray:
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# use known uint32 field in an all-optional message
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msg = WebAuthnCredential(index=value)
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length = protobuf.encoded_length(msg)
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buffer = bytearray(length)
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protobuf.encode(buffer, msg)
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assert buffer[0] == (1 << 3) | 0 # field number 1, wire type 0
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return buffer[1:]
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def dump_uvarint64(value: int) -> bytearray:
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# use known uint64 field in an all-optional message
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msg = DebugLinkMemoryRead(length=value)
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length = protobuf.encoded_length(msg)
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buffer = bytearray(length)
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protobuf.encode(buffer, msg)
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assert buffer[0] == (2 << 3) | 0 # field number 2, wire type 0
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return buffer[1:]
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def dump_message(msg: protobuf.MessageType) -> bytearray:
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length = protobuf.encoded_length(msg)
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buffer = bytearray(length)
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protobuf.encode(buffer, msg)
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return buffer
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def load_message(msg_type: Type[protobuf.MessageType], buffer: bytes) -> protobuf.MessageType:
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return protobuf.decode(buffer, msg_type, False)
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class TestProtobuf(unittest.TestCase):
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def test_dump_uvarint(self):
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for dump_uvarint in (dump_uvarint32, dump_uvarint64):
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self.assertEqual(dump_uvarint(0), b"\x00")
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self.assertEqual(dump_uvarint(1), b"\x01")
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self.assertEqual(dump_uvarint(0xFF), b"\xff\x01")
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self.assertEqual(dump_uvarint(123456), b"\xc0\xc4\x07")
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with self.assertRaises(OverflowError):
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dump_uvarint(-1)
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def test_load_uvarint(self):
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for load_uvarint in (load_uvarint32, load_uvarint64):
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self.assertEqual(load_uvarint(b"\x00"), 0)
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self.assertEqual(load_uvarint(b"\x01"), 1)
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self.assertEqual(load_uvarint(b"\xff\x01"), 0xFF)
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self.assertEqual(load_uvarint(b"\xc0\xc4\x07"), 123456)
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def test_validate_enum(self):
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# ok message:
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msg = Failure(code=7)
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msg_encoded = dump_message(msg)
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nmsg = load_message(Failure, msg_encoded)
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self.assertEqual(msg.code, nmsg.code)
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# bad enum value:
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msg = Failure(code=1000)
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msg_encoded = dump_message(msg)
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with self.assertRaises(ValueError):
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load_message(Failure, msg_encoded)
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def test_required(self):
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msg = SignMessage(message=b"hello", coin_name="foo", script_type=1)
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msg_encoded = dump_message(msg)
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nmsg = load_message(SignMessage, msg_encoded)
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self.assertEqual(nmsg.message, b"hello")
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self.assertEqual(nmsg.coin_name, "foo")
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self.assertEqual(nmsg.script_type, 1)
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# try a message without the required_field
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msg = SignMessage(message=None)
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# encoding always succeeds
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msg_encoded = dump_message(msg)
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with self.assertRaises(ValueError):
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load_message(SignMessage, msg_encoded)
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# try a message without the default field
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msg = SignMessage(message=b"hello")
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msg.coin_name = None
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msg_encoded = dump_message(msg)
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nmsg = load_message(SignMessage, msg_encoded)
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self.assertEqual(nmsg.message, b"hello")
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self.assertEqual(nmsg.coin_name, "Bitcoin")
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if __name__ == "__main__":
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unittest.main()
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