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https://github.com/LBRYFoundation/LBRY-Vault.git
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I believe this now implements all the checks listed in BOLT-02 for update_add_htlc, however, the BOLT is sometimes ambiguous, and actually the checks listed there IMO are insufficient. There are still some TODOs, in part because of the above.
943 lines
40 KiB
Python
943 lines
40 KiB
Python
# Copyright (C) 2018 The Electrum developers
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# Distributed under the MIT software license, see the accompanying
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# file LICENCE or http://www.opensource.org/licenses/mit-license.php
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from enum import IntFlag, IntEnum
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import json
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from collections import namedtuple
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from typing import NamedTuple, List, Tuple, Mapping, Optional, TYPE_CHECKING, Union, Dict, Set, Sequence
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import re
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import attr
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from aiorpcx import NetAddress
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from .util import bfh, bh2u, inv_dict, UserFacingException
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from .util import list_enabled_bits
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from .crypto import sha256
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from .transaction import (Transaction, PartialTransaction, PartialTxInput, TxOutpoint,
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PartialTxOutput, opcodes, TxOutput)
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from .ecc import CURVE_ORDER, sig_string_from_der_sig, ECPubkey, string_to_number
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from . import ecc, bitcoin, crypto, transaction
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from .bitcoin import push_script, redeem_script_to_address, address_to_script
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from . import segwit_addr
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from .i18n import _
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from .lnaddr import lndecode
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from .bip32 import BIP32Node
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if TYPE_CHECKING:
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from .lnchannel import Channel
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from .lnrouter import LNPaymentRoute
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from .lnonion import OnionRoutingFailureMessage
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# defined in BOLT-03:
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HTLC_TIMEOUT_WEIGHT = 663
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HTLC_SUCCESS_WEIGHT = 703
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COMMITMENT_TX_WEIGHT = 724
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HTLC_OUTPUT_WEIGHT = 172
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LN_MAX_FUNDING_SAT = pow(2, 24) - 1
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LN_MAX_HTLC_VALUE_MSAT = pow(2, 32) - 1
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# dummy address for fee estimation of funding tx
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def ln_dummy_address():
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return redeem_script_to_address('p2wsh', '')
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from .json_db import StoredObject
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hex_to_bytes = lambda v: v if isinstance(v, bytes) else bytes.fromhex(v) if v is not None else None
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json_to_keypair = lambda v: v if isinstance(v, OnlyPubkeyKeypair) else Keypair(**v) if len(v)==2 else OnlyPubkeyKeypair(**v)
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@attr.s
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class OnlyPubkeyKeypair(StoredObject):
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pubkey = attr.ib(type=bytes, converter=hex_to_bytes)
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@attr.s
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class Keypair(OnlyPubkeyKeypair):
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privkey = attr.ib(type=bytes, converter=hex_to_bytes)
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@attr.s
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class Config(StoredObject):
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# shared channel config fields
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payment_basepoint = attr.ib(type=OnlyPubkeyKeypair, converter=json_to_keypair)
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multisig_key = attr.ib(type=OnlyPubkeyKeypair, converter=json_to_keypair)
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htlc_basepoint = attr.ib(type=OnlyPubkeyKeypair, converter=json_to_keypair)
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delayed_basepoint = attr.ib(type=OnlyPubkeyKeypair, converter=json_to_keypair)
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revocation_basepoint = attr.ib(type=OnlyPubkeyKeypair, converter=json_to_keypair)
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to_self_delay = attr.ib(type=int)
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dust_limit_sat = attr.ib(type=int)
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max_htlc_value_in_flight_msat = attr.ib(type=int)
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max_accepted_htlcs = attr.ib(type=int)
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initial_msat = attr.ib(type=int)
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reserve_sat = attr.ib(type=int)
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htlc_minimum_msat = attr.ib(type=int)
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@attr.s
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class LocalConfig(Config):
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per_commitment_secret_seed = attr.ib(type=bytes, converter=hex_to_bytes)
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funding_locked_received = attr.ib(type=bool)
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was_announced = attr.ib(type=bool)
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current_commitment_signature = attr.ib(type=bytes, converter=hex_to_bytes)
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current_htlc_signatures = attr.ib(type=bytes, converter=hex_to_bytes)
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@attr.s
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class RemoteConfig(Config):
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next_per_commitment_point = attr.ib(type=bytes, converter=hex_to_bytes)
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current_per_commitment_point = attr.ib(default=None, type=bytes, converter=hex_to_bytes)
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@attr.s
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class FeeUpdate(StoredObject):
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rate = attr.ib(type=int) # in sat/kw
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ctn_local = attr.ib(default=None, type=int)
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ctn_remote = attr.ib(default=None, type=int)
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@attr.s
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class ChannelConstraints(StoredObject):
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capacity = attr.ib(type=int)
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is_initiator = attr.ib(type=bool) # note: sometimes also called "funder"
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funding_txn_minimum_depth = attr.ib(type=int)
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class ScriptHtlc(NamedTuple):
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redeem_script: bytes
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htlc: 'UpdateAddHtlc'
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# FIXME duplicate of TxOutpoint in transaction.py??
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@attr.s
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class Outpoint(StoredObject):
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txid = attr.ib(type=str)
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output_index = attr.ib(type=int)
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def to_str(self):
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return "{}:{}".format(self.txid, self.output_index)
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class PaymentAttemptFailureDetails(NamedTuple):
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sender_idx: Optional[int]
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failure_msg: 'OnionRoutingFailureMessage'
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is_blacklisted: bool
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class PaymentAttemptLog(NamedTuple):
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success: bool
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route: Optional['LNPaymentRoute'] = None
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preimage: Optional[bytes] = None
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failure_details: Optional[PaymentAttemptFailureDetails] = None
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exception: Optional[Exception] = None
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def formatted_tuple(self):
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if not self.exception:
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route = self.route
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route_str = '%d'%len(route)
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short_channel_id = None
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if not self.success:
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sender_idx = self.failure_details.sender_idx
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failure_msg = self.failure_details.failure_msg
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if sender_idx is not None:
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short_channel_id = route[sender_idx+1].short_channel_id
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message = str(failure_msg.code.name)
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else:
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short_channel_id = route[-1].short_channel_id
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message = _('Success')
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chan_str = str(short_channel_id) if short_channel_id else _("Unknown")
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else:
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route_str = 'None'
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chan_str = 'N/A'
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message = str(self.exception)
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return route_str, chan_str, message
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class BarePaymentAttemptLog(NamedTuple):
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success: bool
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preimage: Optional[bytes]
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error_bytes: Optional[bytes]
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error_reason: Optional['OnionRoutingFailureMessage'] = None
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class LightningError(Exception): pass
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class LightningPeerConnectionClosed(LightningError): pass
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class UnableToDeriveSecret(LightningError): pass
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class HandshakeFailed(LightningError): pass
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class ConnStringFormatError(LightningError): pass
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class UnknownPaymentHash(LightningError): pass
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class RemoteMisbehaving(LightningError): pass
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class NotFoundChanAnnouncementForUpdate(Exception): pass
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class PaymentFailure(UserFacingException): pass
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# TODO make some of these values configurable?
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DEFAULT_TO_SELF_DELAY = 144
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REDEEM_AFTER_DOUBLE_SPENT_DELAY = 30
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##### CLTV-expiry-delta-related values
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# see https://github.com/lightningnetwork/lightning-rfc/blob/master/02-peer-protocol.md#cltv_expiry_delta-selection
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# the minimum cltv_expiry accepted for terminal payments
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MIN_FINAL_CLTV_EXPIRY_ACCEPTED = 144
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# set it a tiny bit higher for invoices as blocks could get mined
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# during forward path of payment
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MIN_FINAL_CLTV_EXPIRY_FOR_INVOICE = MIN_FINAL_CLTV_EXPIRY_ACCEPTED + 3
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# the deadline for offered HTLCs:
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# the deadline after which the channel has to be failed and timed out on-chain
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NBLOCK_DEADLINE_AFTER_EXPIRY_FOR_OFFERED_HTLCS = 1
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# the deadline for received HTLCs this node has fulfilled:
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# the deadline after which the channel has to be failed and the HTLC fulfilled on-chain before its cltv_expiry
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NBLOCK_DEADLINE_BEFORE_EXPIRY_FOR_RECEIVED_HTLCS = 72
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# the cltv_expiry_delta for channels when we are forwarding payments
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NBLOCK_OUR_CLTV_EXPIRY_DELTA = 144
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OUR_FEE_BASE_MSAT = 1000
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OUR_FEE_PROPORTIONAL_MILLIONTHS = 1
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NBLOCK_CLTV_EXPIRY_TOO_FAR_INTO_FUTURE = 28 * 144
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# When we open a channel, the remote peer has to support at least this
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# value of mSATs in HTLCs accumulated on the channel, or we refuse opening.
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# Number is based on observed testnet limit https://github.com/spesmilo/electrum/issues/5032
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MINIMUM_MAX_HTLC_VALUE_IN_FLIGHT_ACCEPTED = 19_800 * 1000
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MAXIMUM_HTLC_MINIMUM_MSAT_ACCEPTED = 1000
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MAXIMUM_REMOTE_TO_SELF_DELAY_ACCEPTED = 2016
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class RevocationStore:
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""" Taken from LND, see license in lnchannel.py. """
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START_INDEX = 2 ** 48 - 1
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def __init__(self, storage):
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if len(storage) == 0:
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storage['index'] = self.START_INDEX
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storage['buckets'] = {}
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self.storage = storage
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self.buckets = storage['buckets']
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def add_next_entry(self, hsh):
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index = self.storage['index']
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new_element = ShachainElement(index=index, secret=hsh)
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bucket = count_trailing_zeros(index)
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for i in range(0, bucket):
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this_bucket = self.buckets[i]
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e = shachain_derive(new_element, this_bucket.index)
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if e != this_bucket:
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raise Exception("hash is not derivable: {} {} {}".format(bh2u(e.secret), bh2u(this_bucket.secret), this_bucket.index))
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self.buckets[bucket] = new_element
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self.storage['index'] = index - 1
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def retrieve_secret(self, index: int) -> bytes:
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assert index <= self.START_INDEX, index
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for i in range(0, 49):
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bucket = self.buckets.get(i)
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if bucket is None:
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raise UnableToDeriveSecret()
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try:
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element = shachain_derive(bucket, index)
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except UnableToDeriveSecret:
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continue
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return element.secret
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raise UnableToDeriveSecret()
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def __eq__(self, o):
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return type(o) is RevocationStore and self.serialize() == o.serialize()
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def __hash__(self):
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return hash(json.dumps(self.serialize(), sort_keys=True))
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def count_trailing_zeros(index):
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""" BOLT-03 (where_to_put_secret) """
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try:
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return list(reversed(bin(index)[2:])).index("1")
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except ValueError:
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return 48
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def shachain_derive(element, to_index):
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def get_prefix(index, pos):
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mask = (1 << 64) - 1 - ((1 << pos) - 1)
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return index & mask
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from_index = element.index
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zeros = count_trailing_zeros(from_index)
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if from_index != get_prefix(to_index, zeros):
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raise UnableToDeriveSecret("prefixes are different; index not derivable")
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return ShachainElement(
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get_per_commitment_secret_from_seed(element.secret, to_index, zeros),
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to_index)
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ShachainElement = namedtuple("ShachainElement", ["secret", "index"])
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ShachainElement.__str__ = lambda self: "ShachainElement(" + bh2u(self.secret) + "," + str(self.index) + ")"
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def get_per_commitment_secret_from_seed(seed: bytes, i: int, bits: int = 48) -> bytes:
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"""Generate per commitment secret."""
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per_commitment_secret = bytearray(seed)
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for bitindex in range(bits - 1, -1, -1):
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mask = 1 << bitindex
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if i & mask:
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per_commitment_secret[bitindex // 8] ^= 1 << (bitindex % 8)
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per_commitment_secret = bytearray(sha256(per_commitment_secret))
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bajts = bytes(per_commitment_secret)
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return bajts
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def secret_to_pubkey(secret: int) -> bytes:
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assert type(secret) is int
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return ecc.ECPrivkey.from_secret_scalar(secret).get_public_key_bytes(compressed=True)
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def privkey_to_pubkey(priv: bytes) -> bytes:
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return ecc.ECPrivkey(priv[:32]).get_public_key_bytes()
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def derive_pubkey(basepoint: bytes, per_commitment_point: bytes) -> bytes:
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p = ecc.ECPubkey(basepoint) + ecc.GENERATOR * ecc.string_to_number(sha256(per_commitment_point + basepoint))
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return p.get_public_key_bytes()
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def derive_privkey(secret: int, per_commitment_point: bytes) -> int:
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assert type(secret) is int
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basepoint_bytes = secret_to_pubkey(secret)
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basepoint = secret + ecc.string_to_number(sha256(per_commitment_point + basepoint_bytes))
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basepoint %= CURVE_ORDER
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return basepoint
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def derive_blinded_pubkey(basepoint: bytes, per_commitment_point: bytes) -> bytes:
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k1 = ecc.ECPubkey(basepoint) * ecc.string_to_number(sha256(basepoint + per_commitment_point))
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k2 = ecc.ECPubkey(per_commitment_point) * ecc.string_to_number(sha256(per_commitment_point + basepoint))
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return (k1 + k2).get_public_key_bytes()
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def derive_blinded_privkey(basepoint_secret: bytes, per_commitment_secret: bytes) -> bytes:
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basepoint = ecc.ECPrivkey(basepoint_secret).get_public_key_bytes(compressed=True)
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per_commitment_point = ecc.ECPrivkey(per_commitment_secret).get_public_key_bytes(compressed=True)
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k1 = ecc.string_to_number(basepoint_secret) * ecc.string_to_number(sha256(basepoint + per_commitment_point))
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k2 = ecc.string_to_number(per_commitment_secret) * ecc.string_to_number(sha256(per_commitment_point + basepoint))
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sum = (k1 + k2) % ecc.CURVE_ORDER
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return int.to_bytes(sum, length=32, byteorder='big', signed=False)
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def make_htlc_tx_output(amount_msat, local_feerate, revocationpubkey, local_delayedpubkey, success, to_self_delay):
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assert type(amount_msat) is int
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assert type(local_feerate) is int
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assert type(revocationpubkey) is bytes
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assert type(local_delayedpubkey) is bytes
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script = bytes([opcodes.OP_IF]) \
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+ bfh(push_script(bh2u(revocationpubkey))) \
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+ bytes([opcodes.OP_ELSE]) \
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+ bitcoin.add_number_to_script(to_self_delay) \
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+ bytes([opcodes.OP_CHECKSEQUENCEVERIFY, opcodes.OP_DROP]) \
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+ bfh(push_script(bh2u(local_delayedpubkey))) \
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+ bytes([opcodes.OP_ENDIF, opcodes.OP_CHECKSIG])
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p2wsh = bitcoin.redeem_script_to_address('p2wsh', bh2u(script))
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weight = HTLC_SUCCESS_WEIGHT if success else HTLC_TIMEOUT_WEIGHT
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fee = local_feerate * weight
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fee = fee // 1000 * 1000
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final_amount_sat = (amount_msat - fee) // 1000
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assert final_amount_sat > 0, final_amount_sat
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output = PartialTxOutput.from_address_and_value(p2wsh, final_amount_sat)
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return script, output
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def make_htlc_tx_witness(remotehtlcsig: bytes, localhtlcsig: bytes,
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payment_preimage: bytes, witness_script: bytes) -> bytes:
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assert type(remotehtlcsig) is bytes
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assert type(localhtlcsig) is bytes
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assert type(payment_preimage) is bytes
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assert type(witness_script) is bytes
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return bfh(transaction.construct_witness([0, remotehtlcsig, localhtlcsig, payment_preimage, witness_script]))
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def make_htlc_tx_inputs(htlc_output_txid: str, htlc_output_index: int,
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amount_msat: int, witness_script: str) -> List[PartialTxInput]:
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assert type(htlc_output_txid) is str
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assert type(htlc_output_index) is int
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assert type(amount_msat) is int
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assert type(witness_script) is str
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txin = PartialTxInput(prevout=TxOutpoint(txid=bfh(htlc_output_txid), out_idx=htlc_output_index),
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nsequence=0)
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txin.witness_script = bfh(witness_script)
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txin.script_sig = b''
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txin._trusted_value_sats = amount_msat // 1000
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c_inputs = [txin]
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return c_inputs
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def make_htlc_tx(*, cltv_expiry: int, inputs: List[PartialTxInput], output: PartialTxOutput) -> PartialTransaction:
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assert type(cltv_expiry) is int
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c_outputs = [output]
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tx = PartialTransaction.from_io(inputs, c_outputs, locktime=cltv_expiry, version=2)
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return tx
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def make_offered_htlc(revocation_pubkey: bytes, remote_htlcpubkey: bytes,
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local_htlcpubkey: bytes, payment_hash: bytes) -> bytes:
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assert type(revocation_pubkey) is bytes
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assert type(remote_htlcpubkey) is bytes
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assert type(local_htlcpubkey) is bytes
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assert type(payment_hash) is bytes
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return bytes([opcodes.OP_DUP, opcodes.OP_HASH160]) + bfh(push_script(bh2u(bitcoin.hash_160(revocation_pubkey))))\
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+ bytes([opcodes.OP_EQUAL, opcodes.OP_IF, opcodes.OP_CHECKSIG, opcodes.OP_ELSE]) \
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+ bfh(push_script(bh2u(remote_htlcpubkey)))\
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+ bytes([opcodes.OP_SWAP, opcodes.OP_SIZE]) + bitcoin.add_number_to_script(32) + bytes([opcodes.OP_EQUAL, opcodes.OP_NOTIF, opcodes.OP_DROP])\
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+ bitcoin.add_number_to_script(2) + bytes([opcodes.OP_SWAP]) + bfh(push_script(bh2u(local_htlcpubkey))) + bitcoin.add_number_to_script(2)\
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+ bytes([opcodes.OP_CHECKMULTISIG, opcodes.OP_ELSE, opcodes.OP_HASH160])\
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+ bfh(push_script(bh2u(crypto.ripemd(payment_hash)))) + bytes([opcodes.OP_EQUALVERIFY, opcodes.OP_CHECKSIG, opcodes.OP_ENDIF, opcodes.OP_ENDIF])
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def make_received_htlc(revocation_pubkey: bytes, remote_htlcpubkey: bytes,
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local_htlcpubkey: bytes, payment_hash: bytes, cltv_expiry: int) -> bytes:
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for i in [revocation_pubkey, remote_htlcpubkey, local_htlcpubkey, payment_hash]:
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assert type(i) is bytes
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assert type(cltv_expiry) is int
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return bytes([opcodes.OP_DUP, opcodes.OP_HASH160]) \
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+ bfh(push_script(bh2u(bitcoin.hash_160(revocation_pubkey)))) \
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+ bytes([opcodes.OP_EQUAL, opcodes.OP_IF, opcodes.OP_CHECKSIG, opcodes.OP_ELSE]) \
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+ bfh(push_script(bh2u(remote_htlcpubkey))) \
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+ bytes([opcodes.OP_SWAP, opcodes.OP_SIZE]) \
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+ bitcoin.add_number_to_script(32) \
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+ bytes([opcodes.OP_EQUAL, opcodes.OP_IF, opcodes.OP_HASH160]) \
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+ bfh(push_script(bh2u(crypto.ripemd(payment_hash)))) \
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+ bytes([opcodes.OP_EQUALVERIFY]) \
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+ bitcoin.add_number_to_script(2) \
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+ bytes([opcodes.OP_SWAP]) \
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+ bfh(push_script(bh2u(local_htlcpubkey))) \
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+ bitcoin.add_number_to_script(2) \
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+ bytes([opcodes.OP_CHECKMULTISIG, opcodes.OP_ELSE, opcodes.OP_DROP]) \
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+ bitcoin.add_number_to_script(cltv_expiry) \
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+ bytes([opcodes.OP_CHECKLOCKTIMEVERIFY, opcodes.OP_DROP, opcodes.OP_CHECKSIG, opcodes.OP_ENDIF, opcodes.OP_ENDIF])
|
|
|
|
def make_htlc_output_witness_script(is_received_htlc: bool, remote_revocation_pubkey: bytes, remote_htlc_pubkey: bytes,
|
|
local_htlc_pubkey: bytes, payment_hash: bytes, cltv_expiry: Optional[int]) -> bytes:
|
|
if is_received_htlc:
|
|
return make_received_htlc(revocation_pubkey=remote_revocation_pubkey,
|
|
remote_htlcpubkey=remote_htlc_pubkey,
|
|
local_htlcpubkey=local_htlc_pubkey,
|
|
payment_hash=payment_hash,
|
|
cltv_expiry=cltv_expiry)
|
|
else:
|
|
return make_offered_htlc(revocation_pubkey=remote_revocation_pubkey,
|
|
remote_htlcpubkey=remote_htlc_pubkey,
|
|
local_htlcpubkey=local_htlc_pubkey,
|
|
payment_hash=payment_hash)
|
|
|
|
|
|
def get_ordered_channel_configs(chan: 'Channel', for_us: bool) -> Tuple[Union[LocalConfig, RemoteConfig],
|
|
Union[LocalConfig, RemoteConfig]]:
|
|
conf = chan.config[LOCAL] if for_us else chan.config[REMOTE]
|
|
other_conf = chan.config[LOCAL] if not for_us else chan.config[REMOTE]
|
|
return conf, other_conf
|
|
|
|
|
|
def possible_output_idxs_of_htlc_in_ctx(*, chan: 'Channel', pcp: bytes, subject: 'HTLCOwner',
|
|
htlc_direction: 'Direction', ctx: Transaction,
|
|
htlc: 'UpdateAddHtlc') -> Set[int]:
|
|
amount_msat, cltv_expiry, payment_hash = htlc.amount_msat, htlc.cltv_expiry, htlc.payment_hash
|
|
for_us = subject == LOCAL
|
|
conf, other_conf = get_ordered_channel_configs(chan=chan, for_us=for_us)
|
|
|
|
other_revocation_pubkey = derive_blinded_pubkey(other_conf.revocation_basepoint.pubkey, pcp)
|
|
other_htlc_pubkey = derive_pubkey(other_conf.htlc_basepoint.pubkey, pcp)
|
|
htlc_pubkey = derive_pubkey(conf.htlc_basepoint.pubkey, pcp)
|
|
preimage_script = make_htlc_output_witness_script(is_received_htlc=htlc_direction == RECEIVED,
|
|
remote_revocation_pubkey=other_revocation_pubkey,
|
|
remote_htlc_pubkey=other_htlc_pubkey,
|
|
local_htlc_pubkey=htlc_pubkey,
|
|
payment_hash=payment_hash,
|
|
cltv_expiry=cltv_expiry)
|
|
htlc_address = redeem_script_to_address('p2wsh', bh2u(preimage_script))
|
|
candidates = ctx.get_output_idxs_from_address(htlc_address)
|
|
return {output_idx for output_idx in candidates
|
|
if ctx.outputs()[output_idx].value == htlc.amount_msat // 1000}
|
|
|
|
|
|
def map_htlcs_to_ctx_output_idxs(*, chan: 'Channel', ctx: Transaction, pcp: bytes,
|
|
subject: 'HTLCOwner', ctn: int) -> Dict[Tuple['Direction', 'UpdateAddHtlc'], Tuple[int, int]]:
|
|
"""Returns a dict from (htlc_dir, htlc) to (ctx_output_idx, htlc_relative_idx)"""
|
|
htlc_to_ctx_output_idx_map = {} # type: Dict[Tuple[Direction, UpdateAddHtlc], int]
|
|
unclaimed_ctx_output_idxs = set(range(len(ctx.outputs())))
|
|
offered_htlcs = chan.included_htlcs(subject, SENT, ctn=ctn)
|
|
offered_htlcs.sort(key=lambda htlc: htlc.cltv_expiry)
|
|
received_htlcs = chan.included_htlcs(subject, RECEIVED, ctn=ctn)
|
|
received_htlcs.sort(key=lambda htlc: htlc.cltv_expiry)
|
|
for direction, htlcs in zip([SENT, RECEIVED], [offered_htlcs, received_htlcs]):
|
|
for htlc in htlcs:
|
|
cands = sorted(possible_output_idxs_of_htlc_in_ctx(chan=chan,
|
|
pcp=pcp,
|
|
subject=subject,
|
|
htlc_direction=direction,
|
|
ctx=ctx,
|
|
htlc=htlc))
|
|
for ctx_output_idx in cands:
|
|
if ctx_output_idx in unclaimed_ctx_output_idxs:
|
|
unclaimed_ctx_output_idxs.discard(ctx_output_idx)
|
|
htlc_to_ctx_output_idx_map[(direction, htlc)] = ctx_output_idx
|
|
break
|
|
# calc htlc_relative_idx
|
|
inverse_map = {ctx_output_idx: (direction, htlc)
|
|
for ((direction, htlc), ctx_output_idx) in htlc_to_ctx_output_idx_map.items()}
|
|
|
|
return {inverse_map[ctx_output_idx]: (ctx_output_idx, htlc_relative_idx)
|
|
for htlc_relative_idx, ctx_output_idx in enumerate(sorted(inverse_map))}
|
|
|
|
|
|
def make_htlc_tx_with_open_channel(*, chan: 'Channel', pcp: bytes, subject: 'HTLCOwner',
|
|
htlc_direction: 'Direction', commit: Transaction, ctx_output_idx: int,
|
|
htlc: 'UpdateAddHtlc', name: str = None) -> Tuple[bytes, PartialTransaction]:
|
|
amount_msat, cltv_expiry, payment_hash = htlc.amount_msat, htlc.cltv_expiry, htlc.payment_hash
|
|
for_us = subject == LOCAL
|
|
conf, other_conf = get_ordered_channel_configs(chan=chan, for_us=for_us)
|
|
|
|
delayedpubkey = derive_pubkey(conf.delayed_basepoint.pubkey, pcp)
|
|
other_revocation_pubkey = derive_blinded_pubkey(other_conf.revocation_basepoint.pubkey, pcp)
|
|
other_htlc_pubkey = derive_pubkey(other_conf.htlc_basepoint.pubkey, pcp)
|
|
htlc_pubkey = derive_pubkey(conf.htlc_basepoint.pubkey, pcp)
|
|
# HTLC-success for the HTLC spending from a received HTLC output
|
|
# if we do not receive, and the commitment tx is not for us, they receive, so it is also an HTLC-success
|
|
is_htlc_success = htlc_direction == RECEIVED
|
|
witness_script_of_htlc_tx_output, htlc_tx_output = make_htlc_tx_output(
|
|
amount_msat = amount_msat,
|
|
local_feerate = chan.get_next_feerate(LOCAL if for_us else REMOTE),
|
|
revocationpubkey=other_revocation_pubkey,
|
|
local_delayedpubkey=delayedpubkey,
|
|
success = is_htlc_success,
|
|
to_self_delay = other_conf.to_self_delay)
|
|
preimage_script = make_htlc_output_witness_script(is_received_htlc=is_htlc_success,
|
|
remote_revocation_pubkey=other_revocation_pubkey,
|
|
remote_htlc_pubkey=other_htlc_pubkey,
|
|
local_htlc_pubkey=htlc_pubkey,
|
|
payment_hash=payment_hash,
|
|
cltv_expiry=cltv_expiry)
|
|
htlc_tx_inputs = make_htlc_tx_inputs(
|
|
commit.txid(), ctx_output_idx,
|
|
amount_msat=amount_msat,
|
|
witness_script=bh2u(preimage_script))
|
|
if is_htlc_success:
|
|
cltv_expiry = 0
|
|
htlc_tx = make_htlc_tx(cltv_expiry=cltv_expiry, inputs=htlc_tx_inputs, output=htlc_tx_output)
|
|
return witness_script_of_htlc_tx_output, htlc_tx
|
|
|
|
def make_funding_input(local_funding_pubkey: bytes, remote_funding_pubkey: bytes,
|
|
funding_pos: int, funding_txid: str, funding_sat: int) -> PartialTxInput:
|
|
pubkeys = sorted([bh2u(local_funding_pubkey), bh2u(remote_funding_pubkey)])
|
|
# commitment tx input
|
|
prevout = TxOutpoint(txid=bfh(funding_txid), out_idx=funding_pos)
|
|
c_input = PartialTxInput(prevout=prevout)
|
|
c_input.script_type = 'p2wsh'
|
|
c_input.pubkeys = [bfh(pk) for pk in pubkeys]
|
|
c_input.num_sig = 2
|
|
c_input._trusted_value_sats = funding_sat
|
|
return c_input
|
|
|
|
class HTLCOwner(IntFlag):
|
|
LOCAL = 1
|
|
REMOTE = -LOCAL
|
|
|
|
def inverted(self):
|
|
return HTLCOwner(-self)
|
|
|
|
class Direction(IntFlag):
|
|
SENT = -1 # in the context of HTLCs: "offered" HTLCs
|
|
RECEIVED = 1 # in the context of HTLCs: "received" HTLCs
|
|
|
|
SENT = Direction.SENT
|
|
RECEIVED = Direction.RECEIVED
|
|
|
|
LOCAL = HTLCOwner.LOCAL
|
|
REMOTE = HTLCOwner.REMOTE
|
|
|
|
def make_commitment_outputs(*, fees_per_participant: Mapping[HTLCOwner, int], local_amount_msat: int, remote_amount_msat: int,
|
|
local_script: str, remote_script: str, htlcs: List[ScriptHtlc], dust_limit_sat: int) -> Tuple[List[PartialTxOutput], List[PartialTxOutput]]:
|
|
to_local_amt = local_amount_msat - fees_per_participant[LOCAL]
|
|
to_local = PartialTxOutput(scriptpubkey=bfh(local_script), value=to_local_amt // 1000)
|
|
to_remote_amt = remote_amount_msat - fees_per_participant[REMOTE]
|
|
to_remote = PartialTxOutput(scriptpubkey=bfh(remote_script), value=to_remote_amt // 1000)
|
|
non_htlc_outputs = [to_local, to_remote]
|
|
htlc_outputs = []
|
|
for script, htlc in htlcs:
|
|
addr = bitcoin.redeem_script_to_address('p2wsh', bh2u(script))
|
|
htlc_outputs.append(PartialTxOutput(scriptpubkey=bfh(address_to_script(addr)),
|
|
value=htlc.amount_msat // 1000))
|
|
|
|
# trim outputs
|
|
c_outputs_filtered = list(filter(lambda x: x.value >= dust_limit_sat, non_htlc_outputs + htlc_outputs))
|
|
return htlc_outputs, c_outputs_filtered
|
|
|
|
|
|
def offered_htlc_trim_threshold_sat(*, dust_limit_sat: int, feerate: int) -> int:
|
|
# offered htlcs strictly below this amount will be trimmed (from ctx).
|
|
# feerate is in sat/kw
|
|
# returns value in sat
|
|
weight = HTLC_TIMEOUT_WEIGHT
|
|
return dust_limit_sat + weight * feerate // 1000
|
|
|
|
|
|
def received_htlc_trim_threshold_sat(*, dust_limit_sat: int, feerate: int) -> int:
|
|
# received htlcs strictly below this amount will be trimmed (from ctx).
|
|
# feerate is in sat/kw
|
|
# returns value in sat
|
|
weight = HTLC_SUCCESS_WEIGHT
|
|
return dust_limit_sat + weight * feerate // 1000
|
|
|
|
|
|
def fee_for_htlc_output(*, feerate: int) -> int:
|
|
# feerate is in sat/kw
|
|
# returns fee in msat
|
|
return feerate * HTLC_OUTPUT_WEIGHT
|
|
|
|
|
|
def calc_fees_for_commitment_tx(*, num_htlcs: int, feerate: int,
|
|
is_local_initiator: bool, round_to_sat: bool = True) -> Dict['HTLCOwner', int]:
|
|
# feerate is in sat/kw
|
|
# returns fees in msats
|
|
# note: BOLT-02 specifies that msat fees need to be rounded down to sat.
|
|
# However, the rounding needs to happen for the total fees, so if the return value
|
|
# is to be used as part of additional fee calculation then rounding should be done after that.
|
|
overall_weight = COMMITMENT_TX_WEIGHT + num_htlcs * HTLC_OUTPUT_WEIGHT
|
|
fee = feerate * overall_weight
|
|
if round_to_sat:
|
|
fee = fee // 1000 * 1000
|
|
return {
|
|
LOCAL: fee if is_local_initiator else 0,
|
|
REMOTE: fee if not is_local_initiator else 0,
|
|
}
|
|
|
|
def make_commitment(ctn, local_funding_pubkey, remote_funding_pubkey,
|
|
remote_payment_pubkey, funder_payment_basepoint,
|
|
fundee_payment_basepoint, revocation_pubkey,
|
|
delayed_pubkey, to_self_delay, funding_txid,
|
|
funding_pos, funding_sat, local_amount, remote_amount,
|
|
dust_limit_sat, fees_per_participant,
|
|
htlcs: List[ScriptHtlc]) -> PartialTransaction:
|
|
c_input = make_funding_input(local_funding_pubkey, remote_funding_pubkey,
|
|
funding_pos, funding_txid, funding_sat)
|
|
obs = get_obscured_ctn(ctn, funder_payment_basepoint, fundee_payment_basepoint)
|
|
locktime = (0x20 << 24) + (obs & 0xffffff)
|
|
sequence = (0x80 << 24) + (obs >> 24)
|
|
c_input.nsequence = sequence
|
|
|
|
c_inputs = [c_input]
|
|
|
|
# commitment tx outputs
|
|
local_address = make_commitment_output_to_local_address(revocation_pubkey, to_self_delay, delayed_pubkey)
|
|
remote_address = make_commitment_output_to_remote_address(remote_payment_pubkey)
|
|
# TODO trim htlc outputs here while also considering 2nd stage htlc transactions
|
|
|
|
# BOLT-03: "Transaction Input and Output Ordering
|
|
# Lexicographic ordering: see BIP69. In the case of identical HTLC outputs,
|
|
# the outputs are ordered in increasing cltv_expiry order."
|
|
# so we sort by cltv_expiry now; and the later BIP69-sort is assumed to be *stable*
|
|
htlcs = list(htlcs)
|
|
htlcs.sort(key=lambda x: x.htlc.cltv_expiry)
|
|
|
|
htlc_outputs, c_outputs_filtered = make_commitment_outputs(
|
|
fees_per_participant=fees_per_participant,
|
|
local_amount_msat=local_amount,
|
|
remote_amount_msat=remote_amount,
|
|
local_script=address_to_script(local_address),
|
|
remote_script=address_to_script(remote_address),
|
|
htlcs=htlcs,
|
|
dust_limit_sat=dust_limit_sat)
|
|
|
|
assert sum(x.value for x in c_outputs_filtered) <= funding_sat, (c_outputs_filtered, funding_sat)
|
|
|
|
# create commitment tx
|
|
tx = PartialTransaction.from_io(c_inputs, c_outputs_filtered, locktime=locktime, version=2)
|
|
return tx
|
|
|
|
def make_commitment_output_to_local_witness_script(
|
|
revocation_pubkey: bytes, to_self_delay: int, delayed_pubkey: bytes) -> bytes:
|
|
local_script = bytes([opcodes.OP_IF]) + bfh(push_script(bh2u(revocation_pubkey))) + bytes([opcodes.OP_ELSE]) + bitcoin.add_number_to_script(to_self_delay) \
|
|
+ bytes([opcodes.OP_CHECKSEQUENCEVERIFY, opcodes.OP_DROP]) + bfh(push_script(bh2u(delayed_pubkey))) + bytes([opcodes.OP_ENDIF, opcodes.OP_CHECKSIG])
|
|
return local_script
|
|
|
|
def make_commitment_output_to_local_address(
|
|
revocation_pubkey: bytes, to_self_delay: int, delayed_pubkey: bytes) -> str:
|
|
local_script = make_commitment_output_to_local_witness_script(revocation_pubkey, to_self_delay, delayed_pubkey)
|
|
return bitcoin.redeem_script_to_address('p2wsh', bh2u(local_script))
|
|
|
|
def make_commitment_output_to_remote_address(remote_payment_pubkey: bytes) -> str:
|
|
return bitcoin.pubkey_to_address('p2wpkh', bh2u(remote_payment_pubkey))
|
|
|
|
def sign_and_get_sig_string(tx: PartialTransaction, local_config, remote_config):
|
|
tx.sign({bh2u(local_config.multisig_key.pubkey): (local_config.multisig_key.privkey, True)})
|
|
sig = tx.inputs()[0].part_sigs[local_config.multisig_key.pubkey]
|
|
sig_64 = sig_string_from_der_sig(sig[:-1])
|
|
return sig_64
|
|
|
|
def funding_output_script(local_config, remote_config) -> str:
|
|
return funding_output_script_from_keys(local_config.multisig_key.pubkey, remote_config.multisig_key.pubkey)
|
|
|
|
def funding_output_script_from_keys(pubkey1: bytes, pubkey2: bytes) -> str:
|
|
pubkeys = sorted([bh2u(pubkey1), bh2u(pubkey2)])
|
|
return transaction.multisig_script(pubkeys, 2)
|
|
|
|
|
|
def get_obscured_ctn(ctn: int, funder: bytes, fundee: bytes) -> int:
|
|
mask = int.from_bytes(sha256(funder + fundee)[-6:], 'big')
|
|
return ctn ^ mask
|
|
|
|
def extract_ctn_from_tx(tx: Transaction, txin_index: int, funder_payment_basepoint: bytes,
|
|
fundee_payment_basepoint: bytes) -> int:
|
|
tx.deserialize()
|
|
locktime = tx.locktime
|
|
sequence = tx.inputs()[txin_index].nsequence
|
|
obs = ((sequence & 0xffffff) << 24) + (locktime & 0xffffff)
|
|
return get_obscured_ctn(obs, funder_payment_basepoint, fundee_payment_basepoint)
|
|
|
|
def extract_ctn_from_tx_and_chan(tx: Transaction, chan: 'Channel') -> int:
|
|
funder_conf = chan.config[LOCAL] if chan.constraints.is_initiator else chan.config[REMOTE]
|
|
fundee_conf = chan.config[LOCAL] if not chan.constraints.is_initiator else chan.config[REMOTE]
|
|
return extract_ctn_from_tx(tx, txin_index=0,
|
|
funder_payment_basepoint=funder_conf.payment_basepoint.pubkey,
|
|
fundee_payment_basepoint=fundee_conf.payment_basepoint.pubkey)
|
|
|
|
def get_ecdh(priv: bytes, pub: bytes) -> bytes:
|
|
pt = ECPubkey(pub) * string_to_number(priv)
|
|
return sha256(pt.get_public_key_bytes())
|
|
|
|
|
|
class LnLocalFeatures(IntFlag):
|
|
OPTION_DATA_LOSS_PROTECT_REQ = 1 << 0
|
|
OPTION_DATA_LOSS_PROTECT_OPT = 1 << 1
|
|
INITIAL_ROUTING_SYNC = 1 << 3
|
|
OPTION_UPFRONT_SHUTDOWN_SCRIPT_REQ = 1 << 4
|
|
OPTION_UPFRONT_SHUTDOWN_SCRIPT_OPT = 1 << 5
|
|
GOSSIP_QUERIES_REQ = 1 << 6
|
|
GOSSIP_QUERIES_OPT = 1 << 7
|
|
OPTION_STATIC_REMOTEKEY_REQ = 1 << 12
|
|
OPTION_STATIC_REMOTEKEY_OPT = 1 << 13
|
|
|
|
# note that these are powers of two, not the bits themselves
|
|
LN_LOCAL_FEATURES_KNOWN_SET = set(LnLocalFeatures)
|
|
|
|
|
|
def get_ln_flag_pair_of_bit(flag_bit: int) -> int:
|
|
"""Ln Feature flags are assigned in pairs, one even, one odd. See BOLT-09.
|
|
Return the other flag from the pair.
|
|
e.g. 6 -> 7
|
|
e.g. 7 -> 6
|
|
"""
|
|
if flag_bit % 2 == 0:
|
|
return flag_bit + 1
|
|
else:
|
|
return flag_bit - 1
|
|
|
|
|
|
class LnGlobalFeatures(IntFlag):
|
|
pass
|
|
|
|
# note that these are powers of two, not the bits themselves
|
|
LN_GLOBAL_FEATURES_KNOWN_SET = set(LnGlobalFeatures)
|
|
|
|
class IncompatibleLightningFeatures(ValueError): pass
|
|
|
|
def ln_compare_features(our_features, their_features) -> int:
|
|
"""raises IncompatibleLightningFeatures if incompatible"""
|
|
our_flags = set(list_enabled_bits(our_features))
|
|
their_flags = set(list_enabled_bits(their_features))
|
|
for flag in our_flags:
|
|
if flag not in their_flags and get_ln_flag_pair_of_bit(flag) not in their_flags:
|
|
# they don't have this feature we wanted :(
|
|
if flag % 2 == 0: # even flags are compulsory
|
|
raise IncompatibleLightningFeatures(f"remote does not support {LnLocalFeatures(1 << flag)!r}")
|
|
our_features ^= 1 << flag # disable flag
|
|
else:
|
|
# They too have this flag.
|
|
# For easier feature-bit-testing, if this is an even flag, we also
|
|
# set the corresponding odd flag now.
|
|
if flag % 2 == 0 and our_features & (1 << flag):
|
|
our_features |= 1 << get_ln_flag_pair_of_bit(flag)
|
|
return our_features
|
|
|
|
|
|
class LNPeerAddr:
|
|
|
|
def __init__(self, host: str, port: int, pubkey: bytes):
|
|
assert isinstance(host, str), repr(host)
|
|
assert isinstance(port, int), repr(port)
|
|
assert isinstance(pubkey, bytes), repr(pubkey)
|
|
try:
|
|
net_addr = NetAddress(host, port) # this validates host and port
|
|
except Exception as e:
|
|
raise ValueError(f"cannot construct LNPeerAddr: invalid host or port (host={host}, port={port})") from e
|
|
# note: not validating pubkey as it would be too expensive:
|
|
# if not ECPubkey.is_pubkey_bytes(pubkey): raise ValueError()
|
|
self.host = host
|
|
self.port = port
|
|
self.pubkey = pubkey
|
|
self._net_addr_str = str(net_addr)
|
|
|
|
def __str__(self):
|
|
return '{}@{}'.format(self.pubkey.hex(), self.net_addr_str())
|
|
|
|
def __repr__(self):
|
|
return f'<LNPeerAddr host={self.host} port={self.port} pubkey={self.pubkey.hex()}>'
|
|
|
|
def net_addr_str(self) -> str:
|
|
return self._net_addr_str
|
|
|
|
def __eq__(self, other):
|
|
if not isinstance(other, LNPeerAddr):
|
|
return False
|
|
return (self.host == other.host
|
|
and self.port == other.port
|
|
and self.pubkey == other.pubkey)
|
|
|
|
def __ne__(self, other):
|
|
return not (self == other)
|
|
|
|
def __hash__(self):
|
|
return hash((self.host, self.port, self.pubkey))
|
|
|
|
|
|
def get_compressed_pubkey_from_bech32(bech32_pubkey: str) -> bytes:
|
|
hrp, data_5bits = segwit_addr.bech32_decode(bech32_pubkey)
|
|
if hrp != 'ln':
|
|
raise Exception('unexpected hrp: {}'.format(hrp))
|
|
data_8bits = segwit_addr.convertbits(data_5bits, 5, 8, False)
|
|
# pad with zeroes
|
|
COMPRESSED_PUBKEY_LENGTH = 33
|
|
data_8bits = data_8bits + ((COMPRESSED_PUBKEY_LENGTH - len(data_8bits)) * [0])
|
|
return bytes(data_8bits)
|
|
|
|
|
|
def make_closing_tx(local_funding_pubkey: bytes, remote_funding_pubkey: bytes,
|
|
funding_txid: str, funding_pos: int, funding_sat: int,
|
|
outputs: List[PartialTxOutput]) -> PartialTransaction:
|
|
c_input = make_funding_input(local_funding_pubkey, remote_funding_pubkey,
|
|
funding_pos, funding_txid, funding_sat)
|
|
c_input.nsequence = 0xFFFF_FFFF
|
|
tx = PartialTransaction.from_io([c_input], outputs, locktime=0, version=2)
|
|
return tx
|
|
|
|
|
|
def split_host_port(host_port: str) -> Tuple[str, str]: # port returned as string
|
|
ipv6 = re.compile(r'\[(?P<host>[:0-9a-f]+)\](?P<port>:\d+)?$')
|
|
other = re.compile(r'(?P<host>[^:]+)(?P<port>:\d+)?$')
|
|
m = ipv6.match(host_port)
|
|
if not m:
|
|
m = other.match(host_port)
|
|
if not m:
|
|
raise ConnStringFormatError(_('Connection strings must be in <node_pubkey>@<host>:<port> format'))
|
|
host = m.group('host')
|
|
if m.group('port'):
|
|
port = m.group('port')[1:]
|
|
else:
|
|
port = '9735'
|
|
try:
|
|
int(port)
|
|
except ValueError:
|
|
raise ConnStringFormatError(_('Port number must be decimal'))
|
|
return host, port
|
|
|
|
def extract_nodeid(connect_contents: str) -> Tuple[bytes, str]:
|
|
rest = None
|
|
try:
|
|
# connection string?
|
|
nodeid_hex, rest = connect_contents.split("@", 1)
|
|
except ValueError:
|
|
try:
|
|
# invoice?
|
|
invoice = lndecode(connect_contents)
|
|
nodeid_bytes = invoice.pubkey.serialize()
|
|
nodeid_hex = bh2u(nodeid_bytes)
|
|
except:
|
|
# node id as hex?
|
|
nodeid_hex = connect_contents
|
|
if rest == '':
|
|
raise ConnStringFormatError(_('At least a hostname must be supplied after the at symbol.'))
|
|
try:
|
|
node_id = bfh(nodeid_hex)
|
|
assert len(node_id) == 33, len(node_id)
|
|
except:
|
|
raise ConnStringFormatError(_('Invalid node ID, must be 33 bytes and hexadecimal'))
|
|
return node_id, rest
|
|
|
|
|
|
# key derivation
|
|
# see lnd/keychain/derivation.go
|
|
class LnKeyFamily(IntEnum):
|
|
MULTISIG = 0
|
|
REVOCATION_BASE = 1
|
|
HTLC_BASE = 2
|
|
PAYMENT_BASE = 3
|
|
DELAY_BASE = 4
|
|
REVOCATION_ROOT = 5
|
|
NODE_KEY = 6
|
|
|
|
|
|
def generate_keypair(node: BIP32Node, key_family: LnKeyFamily) -> Keypair:
|
|
node2 = node.subkey_at_private_derivation([key_family, 0, 0])
|
|
k = node2.eckey.get_secret_bytes()
|
|
cK = ecc.ECPrivkey(k).get_public_key_bytes()
|
|
return Keypair(cK, k)
|
|
|
|
|
|
|
|
NUM_MAX_HOPS_IN_PAYMENT_PATH = 20
|
|
NUM_MAX_EDGES_IN_PAYMENT_PATH = NUM_MAX_HOPS_IN_PAYMENT_PATH
|
|
|
|
|
|
class ShortChannelID(bytes):
|
|
|
|
def __repr__(self):
|
|
return f"<ShortChannelID: {format_short_channel_id(self)}>"
|
|
|
|
def __str__(self):
|
|
return format_short_channel_id(self)
|
|
|
|
@classmethod
|
|
def from_components(cls, block_height: int, tx_pos_in_block: int, output_index: int) -> 'ShortChannelID':
|
|
bh = block_height.to_bytes(3, byteorder='big')
|
|
tpos = tx_pos_in_block.to_bytes(3, byteorder='big')
|
|
oi = output_index.to_bytes(2, byteorder='big')
|
|
return ShortChannelID(bh + tpos + oi)
|
|
|
|
@classmethod
|
|
def normalize(cls, data: Union[None, str, bytes, 'ShortChannelID']) -> Optional['ShortChannelID']:
|
|
if isinstance(data, ShortChannelID) or data is None:
|
|
return data
|
|
if isinstance(data, str):
|
|
assert len(data) == 16
|
|
return ShortChannelID.fromhex(data)
|
|
if isinstance(data, (bytes, bytearray)):
|
|
assert len(data) == 8
|
|
return ShortChannelID(data)
|
|
|
|
@property
|
|
def block_height(self) -> int:
|
|
return int.from_bytes(self[:3], byteorder='big')
|
|
|
|
@property
|
|
def txpos(self) -> int:
|
|
return int.from_bytes(self[3:6], byteorder='big')
|
|
|
|
@property
|
|
def output_index(self) -> int:
|
|
return int.from_bytes(self[6:8], byteorder='big')
|
|
|
|
|
|
def format_short_channel_id(short_channel_id: Optional[bytes]):
|
|
if not short_channel_id:
|
|
return _('Not yet available')
|
|
return str(int.from_bytes(short_channel_id[:3], 'big')) \
|
|
+ 'x' + str(int.from_bytes(short_channel_id[3:6], 'big')) \
|
|
+ 'x' + str(int.from_bytes(short_channel_id[6:], 'big'))
|
|
|
|
|
|
@attr.s(frozen=True)
|
|
class UpdateAddHtlc:
|
|
amount_msat = attr.ib(type=int, kw_only=True)
|
|
payment_hash = attr.ib(type=bytes, kw_only=True, converter=hex_to_bytes)
|
|
cltv_expiry = attr.ib(type=int, kw_only=True)
|
|
timestamp = attr.ib(type=int, kw_only=True)
|
|
htlc_id = attr.ib(type=int, kw_only=True, default=None)
|
|
|
|
@classmethod
|
|
def from_tuple(cls, amount_msat, payment_hash, cltv_expiry, htlc_id, timestamp) -> 'UpdateAddHtlc':
|
|
return cls(amount_msat=amount_msat,
|
|
payment_hash=payment_hash,
|
|
cltv_expiry=cltv_expiry,
|
|
htlc_id=htlc_id,
|
|
timestamp=timestamp)
|
|
|
|
def to_tuple(self):
|
|
return (self.amount_msat, self.payment_hash, self.cltv_expiry, self.htlc_id, self.timestamp)
|