mirror of
https://github.com/trezor/trezor-firmware.git
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204 lines
6.7 KiB
Python
204 lines
6.7 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
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from trezorlib.debuglink import TrezorClientDebugLink as Client
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from trezorlib.exceptions import TrezorFailure
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from trezorlib.tools import H_, parse_path
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from .signtx import forge_prevtx, request_input
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B = messages.ButtonRequestType
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# address at seed "all all all..." path m/44h/0h/0h/0/0
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INPUT_ADDRESS = "1JAd7XCBzGudGpJQSDSfpmJhiygtLQWaGL"
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PREV_HASH, PREV_TX = forge_prevtx([(INPUT_ADDRESS, 390_000)])
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PREV_TXES = {PREV_HASH: PREV_TX}
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# Litecoin does not have strong replay protection using SIGHASH_FORKID,
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# spending from Bitcoin path should fail.
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@pytest.mark.altcoin
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def test_invalid_path_fail(client: Client):
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inp1 = messages.TxInputType(
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address_n=parse_path("m/44h/0h/0h/0/0"),
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amount=390_000,
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prev_hash=PREV_HASH,
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prev_index=0,
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)
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# address is converted from 1MJ2tj2ThBE62zXbBYA5ZaN3fdve5CPAz1 by changing the version
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out1 = messages.TxOutputType(
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address="LfWz9wLHmqU9HoDkMg9NqbRosrHvEixeVZ",
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amount=390_000 - 10_000,
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script_type=messages.OutputScriptType.PAYTOADDRESS,
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)
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with pytest.raises(TrezorFailure) as exc:
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btc.sign_tx(client, "Litecoin", [inp1], [out1], prev_txes=PREV_TXES)
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assert exc.value.code == messages.FailureType.DataError
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assert exc.value.message.endswith("Forbidden key path")
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# Litecoin does not have strong replay protection using SIGHASH_FORKID, but
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# spending from Bitcoin path should pass with safety checks set to prompt.
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@pytest.mark.altcoin
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def test_invalid_path_prompt(client: Client):
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inp1 = messages.TxInputType(
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address_n=parse_path("m/44h/0h/0h/0/0"),
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amount=390_000,
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prev_hash=PREV_HASH,
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prev_index=0,
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)
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# address is converted from 1MJ2tj2ThBE62zXbBYA5ZaN3fdve5CPAz1 by changing the version
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out1 = messages.TxOutputType(
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address="LfWz9wLHmqU9HoDkMg9NqbRosrHvEixeVZ",
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amount=390_000 - 10_000,
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script_type=messages.OutputScriptType.PAYTOADDRESS,
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)
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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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btc.sign_tx(client, "Litecoin", [inp1], [out1], prev_txes=PREV_TXES)
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# Bcash does have strong replay protection using SIGHASH_FORKID,
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# spending from Bitcoin path should work.
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@pytest.mark.altcoin
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def test_invalid_path_pass_forkid(client: Client):
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inp1 = messages.TxInputType(
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address_n=parse_path("m/44h/0h/0h/0/0"),
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amount=390_000,
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prev_hash=PREV_HASH,
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prev_index=0,
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)
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# address is converted from 1MJ2tj2ThBE62zXbBYA5ZaN3fdve5CPAz1 to cashaddr format
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out1 = messages.TxOutputType(
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address="bitcoincash:qr0fk25d5zygyn50u5w7h6jkvctas52n0qxff9ja6r",
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amount=390_000 - 10_000,
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script_type=messages.OutputScriptType.PAYTOADDRESS,
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)
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btc.sign_tx(client, "Bcash", [inp1], [out1], prev_txes=PREV_TXES)
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def test_attack_path_segwit(client: Client):
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# Scenario: The attacker falsely claims that the transaction uses Testnet paths to
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# avoid the path warning dialog, but in step6_sign_segwit_inputs() uses Bitcoin paths
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# to get a valid signature.
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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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# Generate keys
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address_a = btc.get_address(
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client,
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"Testnet",
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parse_path("m/84h/0h/0h/0/0"),
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script_type=messages.InputScriptType.SPENDWITNESS,
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)
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address_b = btc.get_address(
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client,
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"Testnet",
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parse_path("m/84h/0h/1h/0/1"),
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script_type=messages.InputScriptType.SPENDWITNESS,
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)
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prev_hash, prev_tx = forge_prevtx(
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[(address_a, 9_426), (address_b, 7_086)], network="testnet"
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)
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inp1 = messages.TxInputType(
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# The actual input that the attacker wants to get signed.
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address_n=parse_path("m/84h/0h/0h/0/0"),
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amount=9_426,
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prev_hash=prev_hash,
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prev_index=0,
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script_type=messages.InputScriptType.SPENDWITNESS,
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)
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inp2 = messages.TxInputType(
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# The actual input that the attacker wants to get signed.
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# We need this one to be from a different account, so that the match checker
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# allows the transaction to pass.
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address_n=parse_path("m/84h/0h/1h/0/1"),
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amount=7_086,
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prev_hash=prev_hash,
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prev_index=1,
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script_type=messages.InputScriptType.SPENDWITNESS,
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)
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out1 = messages.TxOutputType(
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# Attacker's Mainnet address encoded as Testnet.
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address="tb1q694ccp5qcc0udmfwgp692u2s2hjpq5h407urtu",
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script_type=messages.OutputScriptType.PAYTOADDRESS,
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amount=9_426 + 7_086 - 500,
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)
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attack_count = 6
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def attack_processor(msg):
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nonlocal attack_count
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# Make the inputs look like they are coming from Testnet paths until we reach the
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# signing phase.
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if attack_count > 0 and msg.tx.inputs and msg.tx.inputs[0] in (inp1, inp2):
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attack_count -= 1
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msg.tx.inputs[0].address_n[1] = H_(1)
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return msg
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with client:
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client.set_filter(messages.TxAck, attack_processor)
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with pytest.raises(TrezorFailure):
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btc.sign_tx(
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client, "Testnet", [inp1, inp2], [out1], prev_txes={prev_hash: prev_tx}
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)
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def test_invalid_path_fail_asap(client: Client):
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inp1 = messages.TxInputType(
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address_n=parse_path("m/0"),
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amount=1_000_000,
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prev_hash=b"\x42" * 32,
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prev_index=0,
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script_type=messages.InputScriptType.SPENDWITNESS,
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sequence=4_294_967_293,
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)
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out1 = messages.TxOutputType(
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address_n=parse_path("m/84h/0h/0h/1/0"),
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amount=1_000_000,
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script_type=messages.OutputScriptType.PAYTOWITNESS,
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)
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with client:
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client.set_expected_responses(
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[
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request_input(0),
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messages.Failure(code=messages.FailureType.DataError),
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]
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)
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try:
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btc.sign_tx(client, "Testnet", [inp1], [out1])
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except TrezorFailure:
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pass
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