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253 lines
8.9 KiB
253 lines
8.9 KiB
from typing import TYPE_CHECKING, Collection
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import storage
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import storage.device as storage_device
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from trezor.crypto import slip39
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from trezor.enums import BackupType
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from trezor.wire import ProcessError
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from . import layout
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if __debug__:
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import storage.debug
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if TYPE_CHECKING:
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from trezor.messages import ResetDevice, Success
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BAK_T_BIP39 = BackupType.Bip39 # global_import_cache
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BAK_T_SLIP39_BASIC = BackupType.Slip39_Basic # global_import_cache
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BAK_T_SLIP39_ADVANCED = BackupType.Slip39_Advanced # global_import_cache
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_DEFAULT_BACKUP_TYPE = BAK_T_BIP39
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async def reset_device(msg: ResetDevice) -> Success:
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from trezor import TR, config
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from trezor.crypto import bip39, random
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from trezor.messages import EntropyAck, EntropyRequest, Success
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from trezor.pin import render_empty_loader
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from trezor.ui.layouts import confirm_reset_device, prompt_backup
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from trezor.wire.context import call
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from apps.common.request_pin import request_pin_confirm
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backup_type = msg.backup_type # local_cache_attribute
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# validate parameters and device state
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_validate_reset_device(msg)
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# make sure user knows they're setting up a new wallet
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if backup_type in (BAK_T_SLIP39_BASIC, BAK_T_SLIP39_ADVANCED):
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title = TR.reset__title_create_wallet_shamir
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else:
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title = TR.reset__title_create_wallet
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await confirm_reset_device(title)
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# Rendering empty loader so users do not feel a freezing screen
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render_empty_loader(config.StorageMessage.PROCESSING_MSG)
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# wipe storage to make sure the device is in a clear state
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storage.reset()
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# request and set new PIN
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if msg.pin_protection:
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newpin = await request_pin_confirm()
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if not config.change_pin("", newpin, None, None):
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raise ProcessError("Failed to set PIN")
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# generate and display internal entropy
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int_entropy = random.bytes(32, True)
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if __debug__:
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storage.debug.reset_internal_entropy = int_entropy
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if msg.display_random:
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await layout.show_internal_entropy(int_entropy)
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# request external entropy and compute the master secret
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entropy_ack = await call(EntropyRequest(), EntropyAck)
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ext_entropy = entropy_ack.entropy
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# For SLIP-39 this is the Encrypted Master Secret
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secret = _compute_secret_from_entropy(int_entropy, ext_entropy, msg.strength)
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# Check backup type, perform type-specific handling
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if backup_type == BAK_T_BIP39:
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# in BIP-39 we store mnemonic string instead of the secret
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secret = bip39.from_data(secret).encode()
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elif backup_type in (BAK_T_SLIP39_BASIC, BAK_T_SLIP39_ADVANCED):
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# generate and set SLIP39 parameters
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storage_device.set_slip39_identifier(slip39.generate_random_identifier())
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storage_device.set_slip39_iteration_exponent(slip39.DEFAULT_ITERATION_EXPONENT)
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else:
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# Unknown backup type.
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raise RuntimeError
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# If either of skip_backup or no_backup is specified, we are not doing backup now.
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# Otherwise, we try to do it.
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perform_backup = not msg.no_backup and not msg.skip_backup
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# If doing backup, ask the user to confirm.
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if perform_backup:
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perform_backup = await prompt_backup()
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# generate and display backup information for the master secret
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if perform_backup:
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await backup_seed(backup_type, secret)
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# write settings and master secret into storage
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if msg.label is not None:
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storage_device.set_label(msg.label)
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storage_device.set_passphrase_enabled(bool(msg.passphrase_protection))
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storage_device.store_mnemonic_secret(
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secret, # for SLIP-39, this is the EMS
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backup_type,
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needs_backup=not perform_backup,
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no_backup=bool(msg.no_backup),
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)
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# if we backed up the wallet, show success message
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if perform_backup:
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await layout.show_backup_success()
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return Success(message="Initialized")
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async def _backup_slip39_basic(encrypted_master_secret: bytes) -> None:
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group_threshold = 1
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# get number of shares
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await layout.slip39_show_checklist(0, BAK_T_SLIP39_BASIC)
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share_count = await layout.slip39_prompt_number_of_shares()
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# get threshold
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await layout.slip39_show_checklist(1, BAK_T_SLIP39_BASIC)
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share_threshold = await layout.slip39_prompt_threshold(share_count)
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mnemonics = await _backup_slip39(
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encrypted_master_secret, group_threshold, [(share_threshold, share_count)]
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)
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# show and confirm individual shares
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await layout.slip39_show_checklist(2, BAK_T_SLIP39_BASIC)
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await layout.slip39_basic_show_and_confirm_shares(mnemonics[0])
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async def _backup_slip39_advanced(encrypted_master_secret: bytes) -> None:
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# get number of groups
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await layout.slip39_show_checklist(0, BAK_T_SLIP39_ADVANCED)
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groups_count = await layout.slip39_advanced_prompt_number_of_groups()
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# get group threshold
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await layout.slip39_show_checklist(1, BAK_T_SLIP39_ADVANCED)
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group_threshold = await layout.slip39_advanced_prompt_group_threshold(groups_count)
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# get shares and thresholds
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await layout.slip39_show_checklist(2, BAK_T_SLIP39_ADVANCED)
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groups = []
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for i in range(groups_count):
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share_count = await layout.slip39_prompt_number_of_shares(i)
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share_threshold = await layout.slip39_prompt_threshold(share_count, i)
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groups.append((share_threshold, share_count))
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mnemonics = await _backup_slip39(encrypted_master_secret, group_threshold, groups)
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# show and confirm individual shares
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await layout.slip39_advanced_show_and_confirm_shares(mnemonics)
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async def _backup_slip39_custom(
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encrypted_master_secret: bytes,
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group_threshold: int,
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groups: Collection[tuple[int, int]],
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):
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mnemonics = await _backup_slip39(encrypted_master_secret, group_threshold, groups)
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# show and confirm individual shares
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if len(groups) == 1 and groups[0][0] == 1 and groups[0][1] == 1:
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# for a single 1-of-1 group, we use the same layouts as for BIP39
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await layout.show_and_confirm_mnemonic(mnemonics[0][0])
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else:
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# TODO: a confirmation screen will be shown: "do you want to create a -of- Shamir backup?"
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if len(groups) == 1:
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await layout.slip39_basic_show_and_confirm_shares(mnemonics[0])
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else:
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await layout.slip39_advanced_show_and_confirm_shares(mnemonics)
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async def _backup_slip39(
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encrypted_master_secret: bytes,
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group_threshold: int,
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groups: Collection[tuple[int, int]],
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):
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identifier = storage_device.get_slip39_identifier()
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iteration_exponent = storage_device.get_slip39_iteration_exponent()
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if identifier is None or iteration_exponent is None:
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raise ValueError
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# generate the mnemonics
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return slip39.split_ems(
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group_threshold,
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groups,
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identifier,
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iteration_exponent,
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encrypted_master_secret,
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)
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def _validate_reset_device(msg: ResetDevice) -> None:
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from trezor.wire import UnexpectedMessage
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from .. import backup_types
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backup_type = msg.backup_type or _DEFAULT_BACKUP_TYPE
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if backup_type not in (
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BAK_T_BIP39,
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BAK_T_SLIP39_BASIC,
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BAK_T_SLIP39_ADVANCED,
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):
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raise ProcessError("Backup type not implemented")
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if backup_types.is_slip39_backup_type(backup_type):
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if msg.strength not in (128, 256):
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raise ProcessError("Invalid strength (has to be 128 or 256 bits)")
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else: # BIP-39
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if msg.strength not in (128, 192, 256):
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raise ProcessError("Invalid strength (has to be 128, 192 or 256 bits)")
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if msg.display_random and (msg.skip_backup or msg.no_backup):
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raise ProcessError("Can't show internal entropy when backup is skipped")
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if storage_device.is_initialized():
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raise UnexpectedMessage("Already initialized")
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def _compute_secret_from_entropy(
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int_entropy: bytes, ext_entropy: bytes, strength_in_bytes: int
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) -> bytes:
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from trezor.crypto import hashlib
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# combine internal and external entropy
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ehash = hashlib.sha256()
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ehash.update(int_entropy)
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ehash.update(ext_entropy)
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entropy = ehash.digest()
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# take a required number of bytes
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strength = strength_in_bytes // 8
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secret = entropy[:strength]
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return secret
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async def backup_seed(
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backup_type: BackupType,
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mnemonic_secret: bytes,
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group_threshold: int | None = None,
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groups: Collection[tuple[int, int]] = (),
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) -> None:
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# Either both should be defined or both should be missing: group_threshold, groups
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assert (group_threshold is None) == (len(groups) == 0)
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assert backup_type != BAK_T_BIP39 or group_threshold is None
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if group_threshold is not None:
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await _backup_slip39_custom(mnemonic_secret, group_threshold, groups)
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elif backup_type == BAK_T_SLIP39_BASIC:
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await _backup_slip39_basic(mnemonic_secret)
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elif backup_type == BAK_T_SLIP39_ADVANCED:
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await _backup_slip39_advanced(mnemonic_secret)
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else:
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await layout.show_and_confirm_mnemonic(mnemonic_secret.decode())
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