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trezor-firmware/tests/device_tests/test_msg_resetdevice_shamir.py

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from itertools import combinations
from unittest import mock
import pytest
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import shamir_mnemonic as shamir
from shamir_mnemonic import MnemonicError
from trezorlib import device, messages as proto
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from trezorlib.messages import ButtonRequestType as B, ResetDeviceBackupType
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from .common import TrezorTest, generate_entropy
EXTERNAL_ENTROPY = b"zlutoucky kun upel divoke ody" * 2
@pytest.mark.skip_t1
class TestMsgResetDeviceT2(TrezorTest):
# TODO: test with different options
@pytest.mark.setup_client(uninitialized=True)
def test_reset_device_shamir(self, client):
strength = 128
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member_threshold = 3
all_mnemonics = []
def input_flow():
# Confirm Reset
btn_code = yield
assert btn_code == B.ResetDevice
client.debug.press_yes()
# Backup your seed
btn_code = yield
assert btn_code == B.ResetDevice
client.debug.press_yes()
# Confirm warning
btn_code = yield
assert btn_code == B.ResetDevice
client.debug.press_yes()
# shares info
btn_code = yield
assert btn_code == B.ResetDevice
client.debug.press_yes()
# Set & Confirm number of shares
btn_code = yield
assert btn_code == B.ResetDevice
client.debug.press_yes()
# threshold info
btn_code = yield
assert btn_code == B.ResetDevice
client.debug.press_yes()
# Set & confirm threshold value
btn_code = yield
assert btn_code == B.ResetDevice
client.debug.press_yes()
# Confirm show seeds
btn_code = yield
assert btn_code == B.ResetDevice
client.debug.press_yes()
# show & confirm shares
for h in range(5):
words = []
btn_code = yield
assert btn_code == B.Other
# mnemonic phrases
# 20 word over 6 pages for strength 128, 33 words over 9 pages for strength 256
for i in range(6):
words.extend(client.debug.read_reset_word().split())
if i < 5:
client.debug.swipe_down()
else:
# last page is confirmation
client.debug.press_yes()
# check share
for _ in range(3):
index = client.debug.read_reset_word_pos()
client.debug.input(words[index])
all_mnemonics.extend([" ".join(words)])
# Confirm continue to next share
btn_code = yield
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assert btn_code == B.Success
client.debug.press_yes()
# safety warning
btn_code = yield
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assert btn_code == B.Success
client.debug.press_yes()
os_urandom = mock.Mock(return_value=EXTERNAL_ENTROPY)
with mock.patch("os.urandom", os_urandom), client:
client.set_expected_responses(
[
proto.ButtonRequest(code=B.ResetDevice),
proto.EntropyRequest(),
proto.ButtonRequest(code=B.ResetDevice),
proto.ButtonRequest(code=B.ResetDevice),
proto.ButtonRequest(code=B.ResetDevice),
proto.ButtonRequest(code=B.ResetDevice),
proto.ButtonRequest(code=B.ResetDevice),
proto.ButtonRequest(code=B.ResetDevice),
proto.ButtonRequest(code=B.ResetDevice),
proto.ButtonRequest(code=B.Other),
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proto.ButtonRequest(code=B.Success),
proto.ButtonRequest(code=B.Other),
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proto.ButtonRequest(code=B.Success),
proto.ButtonRequest(code=B.Other),
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proto.ButtonRequest(code=B.Success),
proto.ButtonRequest(code=B.Other),
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proto.ButtonRequest(code=B.Success),
proto.ButtonRequest(code=B.Other),
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proto.ButtonRequest(code=B.Success),
proto.ButtonRequest(code=B.Success),
proto.Success(),
proto.Features(),
]
)
client.set_input_flow(input_flow)
# No PIN, no passphrase, don't display random
device.reset(
client,
display_random=False,
strength=strength,
passphrase_protection=False,
pin_protection=False,
label="test",
language="english",
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backup_type=ResetDeviceBackupType.Slip39_Single_Group,
)
# generate secret locally
internal_entropy = client.debug.state().reset_entropy
secret = generate_entropy(strength, internal_entropy, EXTERNAL_ENTROPY)
# validate that all combinations will result in the correct master secret
validate_mnemonics(all_mnemonics, member_threshold, secret)
# Check if device is properly initialized
assert client.features.initialized is True
assert client.features.needs_backup is False
assert client.features.pin_protection is False
assert client.features.passphrase_protection is False
def validate_mnemonics(mnemonics, threshold, expected_ems):
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# We expect these combinations to recreate the secret properly
for test_group in combinations(mnemonics, threshold):
# TODO: HOTFIX, we should fix this properly by modifying and unifying the python-shamir-mnemonic API
ms = shamir.combine_mnemonics(test_group)
identifier, iteration_exponent, _, _, _ = shamir._decode_mnemonics(test_group)
ems = shamir._encrypt(ms, b"", iteration_exponent, identifier)
assert ems == expected_ems
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# We expect these combinations to raise MnemonicError
for test_group in combinations(mnemonics, threshold - 1):
with pytest.raises(
MnemonicError, match=r".*Expected {} mnemonics.*".format(threshold)
):
shamir.combine_mnemonics(test_group)