mirror of
https://github.com/trezor/trezor-firmware.git
synced 2024-12-24 23:38:09 +00:00
3ab036a1d1
Add additional device tests for GRS Add P2TR GetAddress for GRS mainnet and testnet Add SignTX spending taproot UTXO (The resulting transaction from the SignTx device test was successfully mined on Testnet.)
301 lines
9.3 KiB
Python
301 lines
9.3 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.exceptions import TrezorFailure
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from trezorlib.messages import SafetyCheckLevel
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from trezorlib.tools import parse_path
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from ... import bip32
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def getmultisig(chain, nr, xpubs):
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return messages.MultisigRedeemScriptType(
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nodes=[bip32.deserialize(xpub) for xpub in xpubs],
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address_n=[chain, nr],
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signatures=[b"", b"", b""],
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m=2,
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)
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def test_btc(client):
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assert (
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btc.get_address(client, "Bitcoin", parse_path("m/44'/0'/0'/0/0"))
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== "1JAd7XCBzGudGpJQSDSfpmJhiygtLQWaGL"
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)
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assert (
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btc.get_address(client, "Bitcoin", parse_path("m/44'/0'/0'/0/1"))
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== "1GWFxtwWmNVqotUPXLcKVL2mUKpshuJYo"
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)
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assert (
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btc.get_address(client, "Bitcoin", parse_path("m/44'/0'/0'/1/0"))
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== "1DyHzbQUoQEsLxJn6M7fMD8Xdt1XvNiwNE"
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)
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@pytest.mark.altcoin
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def test_ltc(client):
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assert (
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btc.get_address(client, "Litecoin", parse_path("m/44'/2'/0'/0/0"))
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== "LcubERmHD31PWup1fbozpKuiqjHZ4anxcL"
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)
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assert (
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btc.get_address(client, "Litecoin", parse_path("m/44'/2'/0'/0/1"))
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== "LVWBmHBkCGNjSPHucvL2PmnuRAJnucmRE6"
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)
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assert (
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btc.get_address(client, "Litecoin", parse_path("m/44'/2'/0'/1/0"))
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== "LWj6ApswZxay4cJEJES2sGe7fLMLRvvv8h"
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)
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def test_tbtc(client):
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assert (
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btc.get_address(client, "Testnet", parse_path("m/44'/1'/0'/0/0"))
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== "mvbu1Gdy8SUjTenqerxUaZyYjmveZvt33q"
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)
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assert (
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btc.get_address(client, "Testnet", parse_path("m/44'/1'/0'/0/1"))
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== "mopZWqZZyQc3F2Sy33cvDtJchSAMsnLi7b"
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)
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assert (
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btc.get_address(client, "Testnet", parse_path("m/44'/1'/0'/1/0"))
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== "mm6kLYbGEL1tGe4ZA8xacfgRPdW1NLjCbZ"
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)
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@pytest.mark.altcoin
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def test_bch(client):
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assert (
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btc.get_address(client, "Bcash", parse_path("44'/145'/0'/0/0"))
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== "bitcoincash:qr08q88p9etk89wgv05nwlrkm4l0urz4cyl36hh9sv"
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)
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assert (
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btc.get_address(client, "Bcash", parse_path("44'/145'/0'/0/1"))
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== "bitcoincash:qr23ajjfd9wd73l87j642puf8cad20lfmqdgwvpat4"
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)
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assert (
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btc.get_address(client, "Bcash", parse_path("44'/145'/0'/1/0"))
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== "bitcoincash:qzc5q87w069lzg7g3gzx0c8dz83mn7l02scej5aluw"
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)
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@pytest.mark.altcoin
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def test_grs(client):
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assert (
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btc.get_address(client, "Groestlcoin", parse_path("44'/17'/0'/0/0"))
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== "Fj62rBJi8LvbmWu2jzkaUX1NFXLEqDLoZM"
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)
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assert (
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btc.get_address(client, "Groestlcoin", parse_path("44'/17'/0'/1/0"))
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== "FmRaqvVBRrAp2Umfqx9V1ectZy8gw54QDN"
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)
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assert (
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btc.get_address(client, "Groestlcoin", parse_path("44'/17'/0'/1/1"))
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== "Fmhtxeh7YdCBkyQF7AQG4QnY8y3rJg89di"
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)
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@pytest.mark.altcoin
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def test_tgrs(client):
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assert (
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btc.get_address(client, "Groestlcoin Testnet", parse_path("44'/1'/0'/0/0"))
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== "mvbu1Gdy8SUjTenqerxUaZyYjmvedc787y"
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)
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assert (
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btc.get_address(client, "Groestlcoin Testnet", parse_path("44'/1'/0'/1/0"))
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== "mm6kLYbGEL1tGe4ZA8xacfgRPdW1LMq8cN"
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)
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assert (
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btc.get_address(client, "Groestlcoin Testnet", parse_path("44'/1'/0'/1/1"))
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== "mjXZwmEi1z1MzveZrKUAo4DBgbdq6ZhGD6"
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)
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@pytest.mark.altcoin
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def test_elements(client):
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assert (
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btc.get_address(client, "Elements", parse_path("m/44'/1'/0'/0/0"))
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== "2dpWh6jbhAowNsQ5agtFzi7j6nKscj6UnEr"
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)
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@pytest.mark.multisig
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def test_multisig(client):
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xpubs = []
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for n in range(1, 4):
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node = btc.get_public_node(client, parse_path(f"44'/0'/{n}'"))
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xpubs.append(node.xpub)
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for nr in range(1, 4):
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assert (
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btc.get_address(
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client,
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"Bitcoin",
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parse_path(f"44'/0'/{nr}'/0/0"),
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show_display=(nr == 1),
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multisig=getmultisig(0, 0, xpubs=xpubs),
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)
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== "3Pdz86KtfJBuHLcSv4DysJo4aQfanTqCzG"
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)
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assert (
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btc.get_address(
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client,
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"Bitcoin",
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parse_path(f"44'/0'/{nr}'/1/0"),
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show_display=(nr == 1),
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multisig=getmultisig(1, 0, xpubs=xpubs),
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)
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== "36gP3KVx1ooStZ9quZDXbAF3GCr42b2zzd"
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)
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@pytest.mark.multisig
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@pytest.mark.parametrize("show_display", (True, False))
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def test_multisig_missing(client, show_display):
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# Multisig with global suffix specification.
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# Use account numbers 1, 2 and 3 to create a valid multisig,
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# but not containing the keys from account 0 used below.
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nodes = [
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btc.get_public_node(client, parse_path(f"44'/0'/{i}'")).node
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for i in range(1, 4)
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]
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multisig1 = messages.MultisigRedeemScriptType(
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nodes=nodes, address_n=[0, 0], signatures=[b"", b"", b""], m=2
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)
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# Multisig with per-node suffix specification.
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node = btc.get_public_node(
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client, parse_path("44h/0h/0h/0"), coin_name="Bitcoin"
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).node
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multisig2 = messages.MultisigRedeemScriptType(
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pubkeys=[
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messages.HDNodePathType(node=node, address_n=[1]),
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messages.HDNodePathType(node=node, address_n=[2]),
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messages.HDNodePathType(node=node, address_n=[3]),
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],
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signatures=[b"", b"", b""],
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m=2,
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)
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for multisig in (multisig1, multisig2):
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with pytest.raises(TrezorFailure):
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btc.get_address(
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client,
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"Bitcoin",
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parse_path("44'/0'/0'/0/0"),
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show_display=show_display,
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multisig=multisig,
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)
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@pytest.mark.altcoin
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@pytest.mark.multisig
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def test_bch_multisig(client):
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xpubs = []
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for n in range(1, 4):
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node = btc.get_public_node(
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client, parse_path(f"44'/145'/{n}'"), coin_name="Bcash"
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)
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xpubs.append(node.xpub)
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for nr in range(1, 4):
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assert (
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btc.get_address(
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client,
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"Bcash",
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parse_path(f"44'/145'/{nr}'/0/0"),
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show_display=(nr == 1),
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multisig=getmultisig(0, 0, xpubs=xpubs),
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)
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== "bitcoincash:pqguz4nqq64jhr5v3kvpq4dsjrkda75hwy86gq0qzw"
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)
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assert (
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btc.get_address(
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client,
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"Bcash",
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parse_path(f"44'/145'/{nr}'/1/0"),
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show_display=(nr == 1),
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multisig=getmultisig(1, 0, xpubs=xpubs),
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)
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== "bitcoincash:pp6kcpkhua7789g2vyj0qfkcux3yvje7euhyhltn0a"
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)
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def test_public_ckd(client):
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node = btc.get_public_node(client, parse_path("m/44'/0'/0'")).node
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node_sub1 = btc.get_public_node(client, parse_path("m/44'/0'/0'/1/0")).node
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node_sub2 = bip32.public_ckd(node, [1, 0])
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assert node_sub1.chain_code == node_sub2.chain_code
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assert node_sub1.public_key == node_sub2.public_key
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address1 = btc.get_address(client, "Bitcoin", parse_path("m/44'/0'/0'/1/0"))
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address2 = bip32.get_address(node_sub2, 0)
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assert address2 == "1DyHzbQUoQEsLxJn6M7fMD8Xdt1XvNiwNE"
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assert address1 == address2
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def test_invalid_path(client):
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with pytest.raises(TrezorFailure, match="Forbidden key path"):
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# slip44 id mismatch
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btc.get_address(
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client, "Bitcoin", parse_path("m/44'/111'/0'/0/0"), show_display=True
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)
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def test_unknown_path(client):
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UNKNOWN_PATH = parse_path("m/44'/9'/0'/0/0")
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with client:
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client.set_expected_responses([messages.Failure])
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with pytest.raises(TrezorFailure, match="Forbidden key path"):
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# account number is too high
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btc.get_address(client, "Bitcoin", UNKNOWN_PATH, show_display=True)
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# disable safety checks
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device.apply_settings(client, safety_checks=SafetyCheckLevel.PromptTemporarily)
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with client:
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client.set_expected_responses(
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[
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messages.ButtonRequest(
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code=messages.ButtonRequestType.UnknownDerivationPath
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),
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messages.ButtonRequest(code=messages.ButtonRequestType.Address),
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messages.Address,
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]
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)
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# try again with a warning
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btc.get_address(client, "Bitcoin", UNKNOWN_PATH, show_display=True)
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with client:
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# no warning is displayed when the call is silent
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client.set_expected_responses([messages.Address])
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btc.get_address(client, "Bitcoin", UNKNOWN_PATH, show_display=False)
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@pytest.mark.altcoin
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def test_crw(client):
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assert (
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btc.get_address(client, "Crown", parse_path("44'/72'/0'/0/0"))
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== "CRWYdvZM1yXMKQxeN3hRsAbwa7drfvTwys48"
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)
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