mirror of
https://github.com/trezor/trezor-firmware.git
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a3d0016a2f
To avoid ambiguity between creating messages from parameters and parsing them from JSON.
160 lines
6.0 KiB
Python
160 lines
6.0 KiB
Python
# This file is part of the Trezor project.
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#
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# Copyright (C) 2012-2019 SatoshiLabs and contributors
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#
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# This library is free software: you can redistribute it and/or modify
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# it under the terms of the GNU Lesser General Public License version 3
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# as published by the Free Software Foundation.
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#
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# This library is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU Lesser General Public License for more details.
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#
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# You should have received a copy of the License along with this library.
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# If not, see <https://www.gnu.org/licenses/lgpl-3.0.html>.
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import pytest
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from trezorlib import cardano, device, messages
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from trezorlib.exceptions import TrezorFailure
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from ...common import parametrize_using_common_fixtures
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pytestmark = [
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pytest.mark.altcoin,
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pytest.mark.cardano,
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pytest.mark.skip_t1,
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]
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@parametrize_using_common_fixtures(
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"cardano/sign_tx_stake_pool_registration.json",
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"cardano/sign_tx.json",
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"cardano/sign_tx.slip39.json",
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)
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def test_cardano_sign_tx(client, parameters, result):
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inputs = [cardano.parse_input(i) for i in parameters["inputs"]]
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outputs = [cardano.parse_output(o) for o in parameters["outputs"]]
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certificates = [cardano.parse_certificate(c) for c in parameters["certificates"]]
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withdrawals = [cardano.parse_withdrawal(w) for w in parameters["withdrawals"]]
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auxiliary_data = cardano.parse_auxiliary_data(parameters["auxiliary_data"])
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input_flow = parameters.get("input_flow", ())
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if parameters.get("security_checks") == "prompt":
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device.apply_settings(
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client, safety_checks=messages.SafetyCheckLevel.PromptTemporarily
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)
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else:
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device.apply_settings(client, safety_checks=messages.SafetyCheckLevel.Strict)
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with client:
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client.set_input_flow(_to_device_actions(client, input_flow))
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response = cardano.sign_tx(
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client=client,
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inputs=inputs,
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outputs=outputs,
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fee=parameters["fee"],
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ttl=parameters.get("ttl"),
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validity_interval_start=parameters.get("validity_interval_start"),
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certificates=certificates,
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withdrawals=withdrawals,
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protocol_magic=parameters["protocol_magic"],
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network_id=parameters["network_id"],
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auxiliary_data=auxiliary_data,
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)
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assert response.tx_hash.hex() == result["tx_hash"]
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assert response.serialized_tx.hex() == result["serialized_tx"]
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@parametrize_using_common_fixtures(
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"cardano/sign_tx.failed.json", "cardano/sign_tx_stake_pool_registration.failed.json"
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)
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def test_cardano_sign_tx_failed(client, parameters, result):
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inputs = [cardano.parse_input(i) for i in parameters["inputs"]]
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outputs = [cardano.parse_output(o) for o in parameters["outputs"]]
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certificates = [cardano.parse_certificate(c) for c in parameters["certificates"]]
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withdrawals = [cardano.parse_withdrawal(w) for w in parameters["withdrawals"]]
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auxiliary_data = cardano.parse_auxiliary_data(parameters["auxiliary_data"])
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input_flow = parameters.get("input_flow", ())
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with client:
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client.set_input_flow(_to_device_actions(client, input_flow))
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with pytest.raises(TrezorFailure, match=result["error_message"]):
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cardano.sign_tx(
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client=client,
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inputs=inputs,
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outputs=outputs,
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fee=parameters["fee"],
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ttl=parameters.get("ttl"),
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validity_interval_start=parameters.get("validity_interval_start"),
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certificates=certificates,
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withdrawals=withdrawals,
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protocol_magic=parameters["protocol_magic"],
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network_id=parameters["network_id"],
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auxiliary_data=auxiliary_data,
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)
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@parametrize_using_common_fixtures("cardano/sign_tx.chunked.json")
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def test_cardano_sign_tx_with_multiple_chunks(client, parameters, result):
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inputs = [cardano.parse_input(i) for i in parameters["inputs"]]
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outputs = [cardano.parse_output(o) for o in parameters["outputs"]]
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certificates = [cardano.parse_certificate(c) for c in parameters["certificates"]]
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withdrawals = [cardano.parse_withdrawal(w) for w in parameters["withdrawals"]]
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auxiliary_data = cardano.parse_auxiliary_data(parameters["auxiliary_data"])
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input_flow = parameters.get("input_flow", ())
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expected_responses = [
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messages.PassphraseRequest(),
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messages.ButtonRequest(),
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messages.ButtonRequest(),
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]
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expected_responses += [
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messages.CardanoSignedTxChunk(signed_tx_chunk=bytes.fromhex(signed_tx_chunk))
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for signed_tx_chunk in result["signed_tx_chunks"]
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]
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expected_responses += [
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messages.CardanoSignedTx(tx_hash=bytes.fromhex(result["tx_hash"]))
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]
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with client:
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client.set_input_flow(_to_device_actions(client, input_flow))
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client.set_expected_responses(expected_responses)
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response = cardano.sign_tx(
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client=client,
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inputs=inputs,
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outputs=outputs,
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fee=parameters["fee"],
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ttl=parameters.get("ttl"),
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validity_interval_start=parameters.get("validity_interval_start"),
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certificates=certificates,
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withdrawals=withdrawals,
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protocol_magic=parameters["protocol_magic"],
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network_id=parameters["network_id"],
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auxiliary_data=auxiliary_data,
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)
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assert response.tx_hash.hex() == result["tx_hash"]
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assert response.serialized_tx.hex() == result["serialized_tx"]
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def _to_device_actions(client, input_flow):
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if not input_flow:
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yield
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for sequence in input_flow:
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yield
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for action in sequence:
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if action == "SWIPE":
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client.debug.swipe_up()
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elif action == "YES":
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client.debug.press_yes()
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else:
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raise ValueError("Invalid input action")
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