mirror of
https://github.com/trezor/trezor-firmware.git
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194 lines
6.2 KiB
Python
194 lines
6.2 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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from . import coins, messages
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from .tools import CallException, expect, normalize_nfc, session
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@expect(messages.PublicKey)
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def get_public_node(
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client,
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n,
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ecdsa_curve_name=None,
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show_display=False,
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coin_name=None,
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script_type=messages.InputScriptType.SPENDADDRESS,
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):
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return client.call(
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messages.GetPublicKey(
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address_n=n,
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ecdsa_curve_name=ecdsa_curve_name,
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show_display=show_display,
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coin_name=coin_name,
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script_type=script_type,
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)
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)
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@expect(messages.Address, field="address")
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def get_address(
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client,
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coin_name,
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n,
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show_display=False,
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multisig=None,
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script_type=messages.InputScriptType.SPENDADDRESS,
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):
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return client.call(
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messages.GetAddress(
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address_n=n,
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coin_name=coin_name,
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show_display=show_display,
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multisig=multisig,
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script_type=script_type,
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)
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)
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@expect(messages.MessageSignature)
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def sign_message(
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client, coin_name, n, message, script_type=messages.InputScriptType.SPENDADDRESS
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):
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message = normalize_nfc(message)
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return client.call(
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messages.SignMessage(
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coin_name=coin_name, address_n=n, message=message, script_type=script_type
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)
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)
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def verify_message(client, coin_name, address, signature, message):
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message = normalize_nfc(message)
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try:
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resp = client.call(
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messages.VerifyMessage(
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address=address,
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signature=signature,
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message=message,
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coin_name=coin_name,
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)
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)
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except CallException as e:
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resp = e
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return isinstance(resp, messages.Success)
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@session
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def sign_tx(client, coin_name, inputs, outputs, details=None, prev_txes=None):
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# set up a transactions dict
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txes = {None: messages.TransactionType(inputs=inputs, outputs=outputs)}
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# preload all relevant transactions ahead of time
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if coin_name in coins.by_name:
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load_prevtxes = not coins.by_name[coin_name]["force_bip143"]
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else:
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load_prevtxes = True
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if load_prevtxes:
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for inp in inputs:
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if inp.script_type not in (
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messages.InputScriptType.SPENDP2SHWITNESS,
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messages.InputScriptType.SPENDWITNESS,
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messages.InputScriptType.EXTERNAL,
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):
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try:
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prev_tx = prev_txes[inp.prev_hash]
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except Exception as e:
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raise ValueError("Could not retrieve prev_tx") from e
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if not isinstance(prev_tx, messages.TransactionType):
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raise ValueError("Invalid value for prev_tx") from None
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txes[inp.prev_hash] = prev_tx
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if details is None:
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signtx = messages.SignTx()
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else:
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signtx = details
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signtx.coin_name = coin_name
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signtx.inputs_count = len(inputs)
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signtx.outputs_count = len(outputs)
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res = client.call(signtx)
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# Prepare structure for signatures
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signatures = [None] * len(inputs)
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serialized_tx = b""
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def copy_tx_meta(tx):
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tx_copy = messages.TransactionType(**tx)
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# clear fields
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tx_copy.inputs_cnt = len(tx.inputs)
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tx_copy.inputs = []
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tx_copy.outputs_cnt = len(tx.bin_outputs or tx.outputs)
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tx_copy.outputs = []
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tx_copy.bin_outputs = []
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tx_copy.extra_data_len = len(tx.extra_data or b"")
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tx_copy.extra_data = None
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return tx_copy
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R = messages.RequestType
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while isinstance(res, messages.TxRequest):
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# If there's some part of signed transaction, let's add it
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if res.serialized:
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if res.serialized.serialized_tx:
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serialized_tx += res.serialized.serialized_tx
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if res.serialized.signature_index is not None:
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idx = res.serialized.signature_index
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sig = res.serialized.signature
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if signatures[idx] is not None:
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raise ValueError("Signature for index %d already filled" % idx)
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signatures[idx] = sig
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if res.request_type == R.TXFINISHED:
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break
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# Device asked for one more information, let's process it.
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current_tx = txes[res.details.tx_hash]
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if res.request_type == R.TXMETA:
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msg = copy_tx_meta(current_tx)
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res = client.call(messages.TxAck(tx=msg))
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elif res.request_type == R.TXINPUT:
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msg = messages.TransactionType()
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msg.inputs = [current_tx.inputs[res.details.request_index]]
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res = client.call(messages.TxAck(tx=msg))
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elif res.request_type == R.TXOUTPUT:
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msg = messages.TransactionType()
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if res.details.tx_hash:
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msg.bin_outputs = [current_tx.bin_outputs[res.details.request_index]]
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else:
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msg.outputs = [current_tx.outputs[res.details.request_index]]
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res = client.call(messages.TxAck(tx=msg))
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elif res.request_type == R.TXEXTRADATA:
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o, l = res.details.extra_data_offset, res.details.extra_data_len
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msg = messages.TransactionType()
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msg.extra_data = current_tx.extra_data[o : o + l]
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res = client.call(messages.TxAck(tx=msg))
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if isinstance(res, messages.Failure):
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raise CallException("Signing failed")
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if not isinstance(res, messages.TxRequest):
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raise CallException("Unexpected message")
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if None in signatures:
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raise RuntimeError("Some signatures are missing!")
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return signatures, serialized_tx
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