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253 lines
9.0 KiB
253 lines
9.0 KiB
import storage
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import storage.device
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import storage.recovery
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import storage.recovery_shares
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from trezor import strings, utils, wire, workflow
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from trezor.crypto import slip39
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from trezor.crypto.hashlib import sha256
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from trezor.errors import MnemonicError
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from trezor.messages import BackupType
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from trezor.messages.Success import Success
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from . import recover
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from apps.common import mnemonic
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from apps.common.layout import show_success
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from apps.homescreen.homescreen import homescreen
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from apps.management import backup_types
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from apps.management.recovery_device import layout
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if False:
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from typing import Optional, Tuple
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from trezor.messages.ResetDevice import EnumTypeBackupType
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async def recovery_homescreen() -> None:
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if not storage.recovery.is_in_progress():
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workflow.replace_default(homescreen)
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return
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# recovery process does not communicate on the wire
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ctx = wire.DUMMY_CONTEXT
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await recovery_process(ctx)
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async def recovery_process(ctx: wire.GenericContext) -> Success:
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try:
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return await _continue_recovery_process(ctx)
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except recover.RecoveryAborted:
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dry_run = storage.recovery.is_dry_run()
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if dry_run:
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storage.recovery.end_progress()
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else:
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storage.wipe()
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raise wire.ActionCancelled("Cancelled")
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async def _continue_recovery_process(ctx: wire.GenericContext) -> Success:
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# gather the current recovery state from storage
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dry_run = storage.recovery.is_dry_run()
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word_count, backup_type = recover.load_slip39_state()
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# Both word_count and backup_type are derived from the same data. Both will be
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# either set or unset. We use 'backup_type is None' to detect status of both.
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# The following variable indicates that we are (re)starting the first recovery step,
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# which includes word count selection.
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is_first_step = backup_type is None
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if not is_first_step:
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assert word_count is not None
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# If we continue recovery, show starting screen with word count immediately.
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await _request_share_first_screen(ctx, word_count)
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secret = None
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while secret is None:
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if is_first_step:
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# If we are starting recovery, ask for word count first...
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word_count = await _request_word_count(ctx, dry_run)
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# ...and only then show the starting screen with word count.
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await _request_share_first_screen(ctx, word_count)
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assert word_count is not None
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# ask for mnemonic words one by one
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words = await layout.request_mnemonic(ctx, word_count, backup_type)
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# if they were invalid or some checks failed we continue and request them again
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if not words:
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continue
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try:
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secret, backup_type = await _process_words(ctx, words)
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# If _process_words succeeded, we now have both backup_type (from
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# its result) and word_count (from _request_word_count earlier), which means
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# that the first step is complete.
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is_first_step = False
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except MnemonicError:
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await layout.show_invalid_mnemonic(ctx, word_count)
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assert backup_type is not None
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if dry_run:
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result = await _finish_recovery_dry_run(ctx, secret, backup_type)
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else:
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result = await _finish_recovery(ctx, secret, backup_type)
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return result
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async def _finish_recovery_dry_run(
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ctx: wire.GenericContext, secret: bytes, backup_type: EnumTypeBackupType
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) -> Success:
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if backup_type is None:
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raise RuntimeError
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digest_input = sha256(secret).digest()
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stored = mnemonic.get_secret()
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digest_stored = sha256(stored).digest()
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result = utils.consteq(digest_stored, digest_input)
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is_slip39 = backup_types.is_slip39_backup_type(backup_type)
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# Check that the identifier and iteration exponent match as well
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if is_slip39:
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result &= (
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storage.device.get_slip39_identifier()
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== storage.recovery.get_slip39_identifier()
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)
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result &= (
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storage.device.get_slip39_iteration_exponent()
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== storage.recovery.get_slip39_iteration_exponent()
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)
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storage.recovery.end_progress()
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await layout.show_dry_run_result(ctx, result, is_slip39)
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if result:
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return Success("The seed is valid and matches the one in the device")
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else:
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raise wire.ProcessError("The seed does not match the one in the device")
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async def _finish_recovery(
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ctx: wire.GenericContext, secret: bytes, backup_type: EnumTypeBackupType
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) -> Success:
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if backup_type is None:
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raise RuntimeError
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storage.device.store_mnemonic_secret(
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secret, backup_type, needs_backup=False, no_backup=False
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)
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if backup_type in (BackupType.Slip39_Basic, BackupType.Slip39_Advanced):
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identifier = storage.recovery.get_slip39_identifier()
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exponent = storage.recovery.get_slip39_iteration_exponent()
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if identifier is None or exponent is None:
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# Identifier and exponent need to be stored in storage at this point
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raise RuntimeError
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storage.device.set_slip39_identifier(identifier)
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storage.device.set_slip39_iteration_exponent(exponent)
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storage.recovery.end_progress()
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await show_success(ctx, ("You have successfully", "recovered your wallet."))
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return Success(message="Device recovered")
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async def _request_word_count(ctx: wire.GenericContext, dry_run: bool) -> int:
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homepage = layout.RecoveryHomescreen("Select number of words")
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await layout.homescreen_dialog(ctx, homepage, "Select")
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# ask for the number of words
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return await layout.request_word_count(ctx, dry_run)
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async def _process_words(
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ctx: wire.GenericContext, words: str
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) -> Tuple[Optional[bytes], EnumTypeBackupType]:
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word_count = len(words.split(" "))
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is_slip39 = backup_types.is_slip39_word_count(word_count)
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share = None
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if not is_slip39: # BIP-39
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secret = recover.process_bip39(words) # type: Optional[bytes]
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else:
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secret, share = recover.process_slip39(words)
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backup_type = backup_types.infer_backup_type(is_slip39, share)
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if secret is None: # SLIP-39
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assert share is not None
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if share.group_count and share.group_count > 1:
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await layout.show_group_share_success(ctx, share.index, share.group_index)
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await _request_share_next_screen(ctx)
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return secret, backup_type
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async def _request_share_first_screen(
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ctx: wire.GenericContext, word_count: int
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) -> None:
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if backup_types.is_slip39_word_count(word_count):
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remaining = storage.recovery.fetch_slip39_remaining_shares()
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if remaining:
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await _request_share_next_screen(ctx)
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else:
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content = layout.RecoveryHomescreen(
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"Enter any share", "(%d words)" % word_count
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)
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await layout.homescreen_dialog(ctx, content, "Enter share")
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else: # BIP-39
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content = layout.RecoveryHomescreen(
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"Enter recovery seed", "(%d words)" % word_count
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)
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await layout.homescreen_dialog(ctx, content, "Enter seed")
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async def _request_share_next_screen(ctx: wire.GenericContext) -> None:
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remaining = storage.recovery.fetch_slip39_remaining_shares()
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group_count = storage.recovery.get_slip39_group_count()
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if not remaining:
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# 'remaining' should be stored at this point
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raise RuntimeError
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if group_count > 1:
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content = layout.RecoveryHomescreen("More shares needed")
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await layout.homescreen_dialog(
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ctx, content, "Enter", _show_remaining_groups_and_shares
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)
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else:
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text = strings.format_plural("{count} more {plural}", remaining[0], "share")
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content = layout.RecoveryHomescreen(text, "needed to enter")
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await layout.homescreen_dialog(ctx, content, "Enter share")
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async def _show_remaining_groups_and_shares(ctx: wire.GenericContext) -> None:
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"""
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Show info dialog for Slip39 Advanced - what shares are to be entered.
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"""
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shares_remaining = storage.recovery.fetch_slip39_remaining_shares()
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# should be stored at this point
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assert shares_remaining
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groups = set()
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first_entered_index = -1
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for i in range(len(shares_remaining)):
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if shares_remaining[i] < slip39.MAX_SHARE_COUNT:
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first_entered_index = i
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share = None
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for index, remaining in enumerate(shares_remaining):
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if 0 <= remaining < slip39.MAX_SHARE_COUNT:
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m = storage.recovery_shares.fetch_group(index)[0]
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if not share:
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share = slip39.decode_mnemonic(m)
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identifier = m.split(" ")[0:3]
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groups.add((remaining, tuple(identifier)))
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elif remaining == slip39.MAX_SHARE_COUNT: # no shares yet
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identifier = storage.recovery_shares.fetch_group(first_entered_index)[
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0
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].split(" ")[0:2]
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groups.add((remaining, tuple(identifier)))
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assert share # share needs to be set
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return await layout.show_remaining_shares(
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ctx, groups, shares_remaining, share.group_threshold
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)
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