mirror of
https://github.com/trezor/trezor-firmware.git
synced 2024-12-15 19:08:07 +00:00
259 lines
9.1 KiB
Python
259 lines
9.1 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 btc, device, messages as proto, misc
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from trezorlib.exceptions import TrezorFailure
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from ..common import MNEMONIC12
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from ..tx_cache import TxCache
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from .signtx import request_finished, request_input, request_meta, request_output
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B = proto.ButtonRequestType
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TXHASH_d5f65e = bytes.fromhex(
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"d5f65ee80147b4bcc70b75e4bbf2d7382021b871bd8867ef8fa525ef50864882"
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)
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PIN4 = "1234"
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@pytest.mark.skip_t2
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class TestProtectionLevels:
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@pytest.mark.setup_client(pin=PIN4, passphrase=True)
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def test_initialize(self, client):
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with client:
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client.set_expected_responses([proto.Features()])
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client.init_device()
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@pytest.mark.setup_client(pin=PIN4, passphrase=True)
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def test_apply_settings(self, client):
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with client:
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client.use_pin_sequence([PIN4])
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client.set_expected_responses(
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[
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proto.PinMatrixRequest(),
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proto.ButtonRequest(),
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proto.Success(),
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proto.Features(),
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]
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) # TrezorClient reinitializes device
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device.apply_settings(client, label="nazdar")
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@pytest.mark.setup_client(pin=PIN4, passphrase=True)
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def test_change_pin(self, client):
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with client:
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client.use_pin_sequence([PIN4, PIN4, PIN4])
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client.set_expected_responses(
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[
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proto.ButtonRequest(),
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proto.PinMatrixRequest(),
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proto.PinMatrixRequest(),
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proto.PinMatrixRequest(),
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proto.Success(),
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proto.Features(),
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]
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)
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device.change_pin(client)
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def test_ping(self, client):
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with client:
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client.set_expected_responses([proto.ButtonRequest(), proto.Success()])
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client.ping("msg", True)
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@pytest.mark.setup_client(pin=PIN4, passphrase=True)
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def test_get_entropy(self, client):
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with client:
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client.set_expected_responses([proto.ButtonRequest(), proto.Entropy()])
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misc.get_entropy(client, 10)
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@pytest.mark.setup_client(pin=PIN4, passphrase=True)
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def test_get_public_key(self, client):
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with client:
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client.use_pin_sequence([PIN4])
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client.set_expected_responses(
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[proto.PinMatrixRequest(), proto.PassphraseRequest(), proto.PublicKey()]
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)
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btc.get_public_node(client, [])
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@pytest.mark.setup_client(pin=PIN4, passphrase=True)
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def test_get_address(self, client):
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with client:
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client.use_pin_sequence([PIN4])
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client.set_expected_responses(
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[proto.PinMatrixRequest(), proto.PassphraseRequest(), proto.Address()]
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)
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btc.get_address(client, "Bitcoin", [])
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@pytest.mark.setup_client(pin=PIN4, passphrase=True)
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def test_wipe_device(self, client):
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with client:
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client.set_expected_responses(
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[proto.ButtonRequest(), proto.Success(), proto.Features()]
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)
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device.wipe(client)
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@pytest.mark.setup_client(uninitialized=True)
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def test_reset_device(self, client):
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with client:
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client.set_expected_responses(
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[proto.ButtonRequest()]
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+ [proto.EntropyRequest()]
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+ [proto.ButtonRequest()] * 24
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+ [proto.Success(), proto.Features()]
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)
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device.reset(client, False, 128, True, False, "label", "en-US")
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with pytest.raises(TrezorFailure):
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# This must fail, because device is already initialized
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# Using direct call because `device.reset` has its own check
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client.call(
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proto.ResetDevice(
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display_random=False,
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strength=128,
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passphrase_protection=True,
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pin_protection=False,
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label="label",
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language="en-US",
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)
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)
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@pytest.mark.setup_client(uninitialized=True)
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def test_recovery_device(self, client):
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client.use_mnemonic(MNEMONIC12)
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with client:
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client.set_expected_responses(
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[proto.ButtonRequest()]
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+ [proto.WordRequest()] * 24
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+ [proto.Success(), proto.Features()]
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)
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device.recover(
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client, 12, False, False, "label", "en-US", client.mnemonic_callback
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)
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with pytest.raises(TrezorFailure):
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# This must fail, because device is already initialized
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# Using direct call because `device.reset` has its own check
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client.call(
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proto.RecoveryDevice(
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word_count=12,
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passphrase_protection=False,
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pin_protection=False,
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label="label",
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language="en-US",
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)
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)
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@pytest.mark.setup_client(pin=PIN4, passphrase=True)
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def test_sign_message(self, client):
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with client:
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client.use_pin_sequence([PIN4])
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client.set_expected_responses(
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[
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proto.ButtonRequest(),
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proto.PinMatrixRequest(),
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proto.PassphraseRequest(),
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proto.MessageSignature(),
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]
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)
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btc.sign_message(client, "Bitcoin", [], "testing message")
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@pytest.mark.setup_client(pin=PIN4, passphrase=True)
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def test_verify_message(self, client):
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with client:
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client.set_expected_responses(
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[proto.ButtonRequest(), proto.ButtonRequest(), proto.Success()]
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)
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btc.verify_message(
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client,
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"Bitcoin",
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"14LmW5k4ssUrtbAB4255zdqv3b4w1TuX9e",
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bytes.fromhex(
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"209e23edf0e4e47ff1dec27f32cd78c50e74ef018ee8a6adf35ae17c7a9b0dd96f48b493fd7dbab03efb6f439c6383c9523b3bbc5f1a7d158a6af90ab154e9be80"
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),
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"This is an example of a signed message.",
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)
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@pytest.mark.setup_client(pin=PIN4, passphrase=True)
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def test_signtx(self, client):
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inp1 = proto.TxInputType(
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address_n=[0], # 14LmW5k4ssUrtbAB4255zdqv3b4w1TuX9e
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prev_hash=TXHASH_d5f65e,
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prev_index=0,
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)
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out1 = proto.TxOutputType(
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address="1MJ2tj2ThBE62zXbBYA5ZaN3fdve5CPAz1",
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amount=390000 - 10000,
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script_type=proto.OutputScriptType.PAYTOADDRESS,
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)
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with client:
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client.use_pin_sequence([PIN4])
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client.set_expected_responses(
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[
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proto.PinMatrixRequest(),
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proto.PassphraseRequest(),
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request_input(0),
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request_meta(TXHASH_d5f65e),
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request_input(0, TXHASH_d5f65e),
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request_input(1, TXHASH_d5f65e),
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request_output(0, TXHASH_d5f65e),
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request_output(0),
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proto.ButtonRequest(code=B.ConfirmOutput),
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proto.ButtonRequest(code=B.SignTx),
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request_input(0),
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request_output(0),
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request_output(0),
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request_finished(),
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]
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)
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btc.sign_tx(client, "Bitcoin", [inp1], [out1], prev_txes=TxCache("Bitcoin"))
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# def test_firmware_erase(self):
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# pass
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# def test_firmware_upload(self):
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# pass
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@pytest.mark.setup_client(pin=PIN4)
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def test_pin_cached(self, client):
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assert client.features.pin_cached is False
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with client:
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client.use_pin_sequence([PIN4])
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client.set_expected_responses([proto.PinMatrixRequest(), proto.Address()])
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btc.get_address(client, "Testnet", [0])
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client.init_device()
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assert client.features.pin_cached is True
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with client:
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client.set_expected_responses([proto.Address()])
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btc.get_address(client, "Testnet", [0])
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@pytest.mark.setup_client(passphrase=True)
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def test_passphrase_cached(self, client):
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with client:
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client.set_expected_responses([proto.PassphraseRequest(), proto.Address()])
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btc.get_address(client, "Testnet", [0])
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with client:
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client.set_expected_responses([proto.Address()])
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btc.get_address(client, "Testnet", [0])
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