mirror of
https://github.com/LBRYFoundation/LBRY-Vault.git
synced 2025-08-29 16:31:29 +00:00
ln: htlc state machine (not used yet)
This commit is contained in:
parent
85e18be7d0
commit
497706afbf
3 changed files with 582 additions and 3 deletions
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@ -40,6 +40,10 @@ from .lightning_payencode.lnaddr import lndecode
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from collections import namedtuple, defaultdict
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def channel_id_from_funding_tx(funding_txid, funding_index):
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funding_txid_bytes = bytes.fromhex(funding_txid)[::-1]
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return int.from_bytes(funding_txid_bytes, 'big') ^ funding_index, funding_txid_bytes
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class LightningError(Exception):
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pass
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@ -566,7 +570,6 @@ def is_synced(network):
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synced = server_height != 0 and network.is_up_to_date() and local_height >= server_height
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return synced
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class Peer(PrintError):
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def __init__(self, host, port, pubkey, privkey, network, channel_db, path_finder, channel_state, channels, invoices, request_initial_sync=False):
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@ -878,8 +881,7 @@ class Peer(PrintError):
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funding_txid, funding_index, funding_sat,
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remote_amount, local_amount, remote_config.dust_limit_sat, local_feerate, False, htlcs=[])
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sig_64 = sign_and_get_sig_string(remote_ctx, local_config, remote_config)
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funding_txid_bytes = bytes.fromhex(funding_txid)[::-1]
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channel_id = int.from_bytes(funding_txid_bytes, 'big') ^ funding_index
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channel_id, funding_txid_bytes = channel_id_from_funding_tx(funding_txid, funding_index)
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self.send_message(gen_msg("funding_created",
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temporary_channel_id=temp_channel_id,
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funding_txid=funding_txid_bytes,
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340
lib/lnhtlc.py
Normal file
340
lib/lnhtlc.py
Normal file
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@ -0,0 +1,340 @@
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# ported from lnd 42de4400bff5105352d0552155f73589166d162b
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from .lnbase import *
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SettleHtlc = namedtuple("SettleHtlc", ["htlc_id"])
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RevokeAndAck = namedtuple("RevokeAndAck", ["height", "per_commitment_secret", "next_per_commitment_point"])
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class UpdateAddHtlc:
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def __init__(self, amount_msat, payment_hash, cltv_expiry, final_cltv_expiry_with_deltas):
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self.amount_msat = amount_msat
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self.payment_hash = payment_hash
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self.cltv_expiry = cltv_expiry
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# the height the htlc was locked in at, or None
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self.locked_in = None
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# this field is not in update_add_htlc but we need to to make the right htlcs
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self.final_cltv_expiry_with_deltas = final_cltv_expiry_with_deltas
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self.htlc_id = None
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def as_tuple(self):
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return (self.htlc_id, self.amount_msat, self.payment_hash, self.cltv_expiry, self.locked_in, self.final_cltv_expiry_with_deltas)
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def __hash__(self):
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return hash(self.as_tuple())
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def __eq__(self, o):
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return type(o) is UpdateAddHtlc and self.as_tuple() == o.as_tuple()
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def __repr__(self):
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return "UpdateAddHtlc" + str(self.as_tuple())
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class HTLCStateMachine(PrintError):
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def lookup_htlc(self, log, htlc_id):
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assert type(htlc_id) is int
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for htlc in log:
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if type(htlc) is not UpdateAddHtlc: continue
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if htlc.htlc_id == htlc_id:
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return htlc
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assert False, self.diagnostic_name() + ": htlc_id {} not found in {}".format(htlc_id, log)
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def diagnostic_name(self):
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return str(self.name)
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def __init__(self, state: OpenChannel, name = None):
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self.state = state
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self.local_update_log = []
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self.remote_update_log = []
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self.name = name
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self.current_height = 0
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self.total_msat_sent = 0
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self.total_msat_received = 0
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def add_htlc(self, htlc):
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"""
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AddHTLC adds an HTLC to the state machine's local update log. This method
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should be called when preparing to send an outgoing HTLC.
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"""
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assert type(htlc) is UpdateAddHtlc
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self.local_update_log.append(htlc)
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self.print_error("add_htlc")
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htlc_id = len(self.local_update_log)-1
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htlc.htlc_id = htlc_id
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return htlc_id
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def receive_htlc(self, htlc):
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"""
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ReceiveHTLC adds an HTLC to the state machine's remote update log. This
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method should be called in response to receiving a new HTLC from the remote
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party.
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"""
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assert type(htlc) is UpdateAddHtlc
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self.remote_update_log.append(htlc)
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self.print_error("receive_htlc")
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htlc_id = len(self.remote_update_log)-1
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htlc.htlc_id = htlc_id
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return htlc_id
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def sign_next_commitment(self):
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"""
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SignNextCommitment signs a new commitment which includes any previous
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unsettled HTLCs, any new HTLCs, and any modifications to prior HTLCs
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committed in previous commitment updates. Signing a new commitment
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decrements the available revocation window by 1. After a successful method
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call, the remote party's commitment chain is extended by a new commitment
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which includes all updates to the HTLC log prior to this method invocation.
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The first return parameter is the signature for the commitment transaction
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itself, while the second parameter is a slice of all HTLC signatures (if
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any). The HTLC signatures are sorted according to the BIP 69 order of the
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HTLC's on the commitment transaction.
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"""
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for htlc in self.remote_update_log:
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if not type(htlc) is UpdateAddHtlc: continue
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if htlc.locked_in is None: htlc.locked_in = self.current_height
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self.print_error("sign_next_commitment")
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sig_64 = sign_and_get_sig_string(self.remote_commitment, self.state.local_config, self.state.remote_config)
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their_remote_htlc_privkey_number = derive_privkey(
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int.from_bytes(self.state.local_config.htlc_basepoint.privkey, 'big'),
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self.state.remote_state.next_per_commitment_point)
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their_remote_htlc_privkey = their_remote_htlc_privkey_number.to_bytes(32, 'big')
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for_us = False
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htlcs = self.htlcs_in_remote # TODO also htlcs_in_local
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assert len(htlcs) <= 1
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htlcsigs = []
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for htlc in htlcs:
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original_htlc_output_index = 0
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we_receive = True # when we do htlcs_in_local, we need to flip this flag
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htlc_tx = make_htlc_tx_with_open_channel(self.state, self.state.remote_state.next_per_commitment_point, for_us, we_receive, htlc.amount_msat, htlc.final_cltv_expiry_with_deltas, htlc.payment_hash, self.remote_commitment, original_htlc_output_index)
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sig = bfh(htlc_tx.sign_txin(0, their_remote_htlc_privkey))
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r, s = sigdecode_der(sig[:-1], SECP256k1.generator.order())
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htlc_sig = sigencode_string_canonize(r, s, SECP256k1.generator.order())
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htlcsigs.append(htlc_sig)
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return sig_64, htlcsigs
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def receive_new_commitment(self, sig, htlc_sigs):
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"""
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ReceiveNewCommitment process a signature for a new commitment state sent by
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the remote party. This method should be called in response to the
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remote party initiating a new change, or when the remote party sends a
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signature fully accepting a new state we've initiated. If we are able to
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successfully validate the signature, then the generated commitment is added
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to our local commitment chain. Once we send a revocation for our prior
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state, then this newly added commitment becomes our current accepted channel
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state.
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"""
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self.print_error("receive_new_commitment")
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# TODO
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def revoke_current_commitment(self):
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"""
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RevokeCurrentCommitment revokes the next lowest unrevoked commitment
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transaction in the local commitment chain. As a result the edge of our
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revocation window is extended by one, and the tail of our local commitment
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chain is advanced by a single commitment. This now lowest unrevoked
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commitment becomes our currently accepted state within the channel. This
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method also returns the set of HTLC's currently active within the commitment
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transaction. This return value allows callers to act once an HTLC has been
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locked into our commitment transaction.
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"""
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self.current_height += 1
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self.print_error("revoke_current_commitment")
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chan = self.state
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last_small_num = chan.local_state.ctn
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next_small_num = last_small_num + 2
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this_small_num = last_small_num + 1
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last_secret = get_per_commitment_secret_from_seed(chan.local_state.per_commitment_secret_seed, 2**48-last_small_num-1)
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this_secret = get_per_commitment_secret_from_seed(chan.local_state.per_commitment_secret_seed, 2**48-this_small_num-1)
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this_point = secret_to_pubkey(int.from_bytes(this_secret, 'big'))
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next_secret = get_per_commitment_secret_from_seed(chan.local_state.per_commitment_secret_seed, 2**48-next_small_num-1)
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next_point = secret_to_pubkey(int.from_bytes(next_secret, 'big'))
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self.state = chan._replace(
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local_state=chan.local_state._replace(
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ctn=chan.local_state.ctn + 1
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)
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)
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return RevokeAndAck(self.current_height, last_secret, next_point), "current htlcs"
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def receive_revocation(self, revocation):
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"""
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ReceiveRevocation processes a revocation sent by the remote party for the
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lowest unrevoked commitment within their commitment chain. We receive a
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revocation either during the initial session negotiation wherein revocation
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windows are extended, or in response to a state update that we initiate. If
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successful, then the remote commitment chain is advanced by a single
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commitment, and a log compaction is attempted.
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Returns the forwarding package corresponding to the remote commitment height
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that was revoked.
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"""
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self.print_error("receive_revocation")
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settle_fails2 = []
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for x in self.remote_update_log:
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if type(x) is not SettleHtlc:
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continue
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settle_fails2.append(x)
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if revocation.height is not None:
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adds2 = list(x for x in self.htlcs_in_remote if x.locked_in == revocation.height)
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class FwdPkg:
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adds = adds2
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settle_fails = settle_fails2
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for x in settle_fails2:
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self.total_msat_sent += self.lookup_htlc(self.local_update_log, x.htlc_id).amount_msat
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# increase received_msat counter for htlc's that have been settled
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adds2 = self.gen_htlc_indices(self.remote_update_log)
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for x in adds2:
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if SettleHtlc(x) in self.local_update_log:
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self.total_msat_received += self.lookup_htlc(self.remote_update_log, x).amount_msat
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# log compaction (remove entries relating to htlc's that have been settled)
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to_remove = []
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for x in filter(lambda x: type(x) is SettleHtlc, self.remote_update_log):
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to_remove += [y for y in self.local_update_log if y.htlc_id == x.htlc_id]
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# assert that we should have compacted the log earlier
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assert len(to_remove) <= 1, to_remove
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if len(to_remove) == 1:
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self.remote_update_log = [x for x in self.remote_update_log if x.htlc_id != to_remove[0].htlc_id]
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self.local_update_log = [x for x in self.local_update_log if x.htlc_id != to_remove[0].htlc_id]
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to_remove = []
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for x in filter(lambda x: type(x) is SettleHtlc, self.local_update_log):
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to_remove += [y for y in self.remote_update_log if y.htlc_id == x.htlc_id]
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assert len(to_remove) <= 1, to_remove
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if len(to_remove) == 1:
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self.local_update_log = [x for x in self.local_update_log if x.htlc_id != to_remove[0].htlc_id]
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self.remote_update_log = [x for x in self.remote_update_log if x.htlc_id != to_remove[0].htlc_id]
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self.state.remote_state.revocation_store.add_next_entry(revocation.per_commitment_secret)
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next_point = self.state.remote_state.next_per_commitment_point
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self.state = self.state._replace(
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remote_state=self.state.remote_state._replace(
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ctn=self.state.remote_state.ctn + 1,
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last_per_commitment_point=next_point,
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next_per_commitment_point=revocation.next_per_commitment_point,
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)
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)
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if revocation.height is not None:
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return FwdPkg
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else:
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return None
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@staticmethod
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def htlcsum(htlcs):
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return sum(x.amount_msat for x in htlcs)
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@property
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def remote_commitment(self):
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local_msat = self.state.local_state.amount_msat -\
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self.htlcsum(self.htlcs_in_local)
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remote_msat = self.state.remote_state.amount_msat -\
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self.htlcsum(self.htlcs_in_remote)
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assert local_msat > 0
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assert remote_msat > 0
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this_point = self.state.remote_state.next_per_commitment_point
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remote_htlc_pubkey = derive_pubkey(self.state.remote_config.htlc_basepoint.pubkey, this_point)
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local_htlc_pubkey = derive_pubkey(self.state.local_config.htlc_basepoint.pubkey, this_point)
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local_revocation_pubkey = derive_blinded_pubkey(self.state.local_config.revocation_basepoint.pubkey, this_point)
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remote_revocation_pubkey = derive_blinded_pubkey(self.state.remote_config.revocation_basepoint.pubkey, this_point)
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htlcs_in_local = []
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for htlc in self.htlcs_in_local:
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htlcs_in_local.append(
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( make_received_htlc(local_revocation_pubkey, local_htlc_pubkey, remote_htlc_pubkey, htlc.payment_hash, htlc.cltv_expiry), htlc.amount_msat))
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htlcs_in_remote = []
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for htlc in self.htlcs_in_remote:
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htlcs_in_remote.append(
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( make_offered_htlc(remote_revocation_pubkey, remote_htlc_pubkey, local_htlc_pubkey, htlc.payment_hash), htlc.amount_msat))
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commit = make_commitment_using_open_channel(self.state, self.state.remote_state.ctn + 1,
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True, this_point,
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remote_msat, local_msat, htlcs_in_local + htlcs_in_remote)
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assert len(commit.outputs()) == 2 + len(htlcs_in_local) + len(htlcs_in_remote)
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return commit
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@property
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def local_commitment(self):
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local_msat = self.state.local_state.amount_msat -\
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self.htlcsum(self.htlcs_in_local)
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remote_msat = self.state.remote_state.amount_msat -\
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self.htlcsum(self.htlcs_in_remote)
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assert local_msat > 0
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assert remote_msat > 0
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this_small_num = self.state.local_state.ctn + 1
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this_secret = get_per_commitment_secret_from_seed(self.state.local_state.per_commitment_secret_seed, 2**48-this_small_num-1)
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this_point = secret_to_pubkey(int.from_bytes(this_secret, 'big'))
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remote_htlc_pubkey = derive_pubkey(self.state.remote_config.htlc_basepoint.pubkey, this_point)
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local_htlc_pubkey = derive_pubkey(self.state.local_config.htlc_basepoint.pubkey, this_point)
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local_revocation_pubkey = derive_blinded_pubkey(self.state.local_config.revocation_basepoint.pubkey, this_point)
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remote_revocation_pubkey = derive_blinded_pubkey(self.state.remote_config.revocation_basepoint.pubkey, this_point)
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htlcs_in_local = []
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for htlc in self.htlcs_in_local:
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htlcs_in_local.append(
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( make_offered_htlc(local_revocation_pubkey, local_htlc_pubkey, remote_htlc_pubkey, htlc.payment_hash), htlc.amount_msat))
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htlcs_in_remote = []
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for htlc in self.htlcs_in_remote:
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htlcs_in_remote.append(
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( make_received_htlc(remote_revocation_pubkey, remote_htlc_pubkey, local_htlc_pubkey, htlc.payment_hash, htlc.cltv_expiry), htlc.amount_msat))
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commit = make_commitment_using_open_channel(self.state, self.state.local_state.ctn + 1,
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True, this_point,
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local_msat, remote_msat, htlcs_in_local + htlcs_in_remote)
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assert len(commit.outputs()) == 2 + len(htlcs_in_local) + len(htlcs_in_remote)
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return commit
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def gen_htlc_indices(self, update_log):
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for num, htlc in enumerate(update_log):
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if type(htlc) is not UpdateAddHtlc:
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continue
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if htlc.locked_in is None or htlc.locked_in < self.current_height:
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continue
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yield num
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@property
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def htlcs_in_local(self):
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return [self.local_update_log[x] for x in self.gen_htlc_indices(self.local_update_log)]
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@property
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def htlcs_in_remote(self):
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return [self.remote_update_log[x] for x in self.gen_htlc_indices(self.remote_update_log)]
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def settle_htlc(self, preimage, htlc_id, source_ref, dest_ref, close_key):
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"""
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SettleHTLC attempts to settle an existing outstanding received HTLC.
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"""
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htlc = self.lookup_htlc(self.remote_update_log, htlc_id)
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assert htlc.payment_hash == sha256(preimage)
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self.local_update_log.append(SettleHtlc(htlc_id))
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def receive_htlc_settle(self, preimage, htlc_index):
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htlc = self.lookup_htlc(self.local_update_log, htlc_index)
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assert htlc.payment_hash == sha256(preimage)
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assert len([x.htlc_id == htlc_index for x in self.local_update_log]) == 1
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self.remote_update_log.append(SettleHtlc(htlc_index))
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237
lib/tests/test_lnhtlc.py
Normal file
237
lib/tests/test_lnhtlc.py
Normal file
|
@ -0,0 +1,237 @@
|
|||
# ported from lnd 42de4400bff5105352d0552155f73589166d162b
|
||||
|
||||
import unittest
|
||||
import lib.bitcoin as bitcoin
|
||||
import lib.lnbase as lnbase
|
||||
import lib.lnhtlc as lnhtlc
|
||||
import lib.util as util
|
||||
import os
|
||||
import binascii
|
||||
|
||||
def create_channel_state(funding_txid, funding_index, funding_sat, local_feerate, is_initiator, local_amount, remote_amount, privkeys, other_pubkeys, seed, cur, nex, other_node_id):
|
||||
assert local_amount > 0
|
||||
assert remote_amount > 0
|
||||
channel_id, _ = lnbase.channel_id_from_funding_tx(funding_txid, funding_index)
|
||||
their_revocation_store = lnbase.RevocationStore()
|
||||
local_config=lnbase.ChannelConfig(
|
||||
payment_basepoint=privkeys[0],
|
||||
multisig_key=privkeys[1],
|
||||
htlc_basepoint=privkeys[2],
|
||||
delayed_basepoint=privkeys[3],
|
||||
revocation_basepoint=privkeys[4],
|
||||
to_self_delay=143,
|
||||
dust_limit_sat=10,
|
||||
max_htlc_value_in_flight_msat=500000 * 1000,
|
||||
max_accepted_htlcs=5
|
||||
)
|
||||
remote_config=lnbase.ChannelConfig(
|
||||
payment_basepoint=other_pubkeys[0],
|
||||
multisig_key=other_pubkeys[1],
|
||||
htlc_basepoint=other_pubkeys[2],
|
||||
delayed_basepoint=other_pubkeys[3],
|
||||
revocation_basepoint=other_pubkeys[4],
|
||||
to_self_delay=143,
|
||||
dust_limit_sat=10,
|
||||
max_htlc_value_in_flight_msat=500000 * 1000,
|
||||
max_accepted_htlcs=5
|
||||
)
|
||||
|
||||
return lnbase.OpenChannel(
|
||||
channel_id=channel_id,
|
||||
short_channel_id=channel_id.to_bytes(32, "big")[:8],
|
||||
funding_outpoint=lnbase.Outpoint(funding_txid, funding_index),
|
||||
local_config=local_config,
|
||||
remote_config=remote_config,
|
||||
remote_state=lnbase.RemoteState(
|
||||
ctn = 0,
|
||||
next_per_commitment_point=nex,
|
||||
last_per_commitment_point=cur,
|
||||
amount_msat=remote_amount,
|
||||
revocation_store=their_revocation_store,
|
||||
next_htlc_id = 0
|
||||
),
|
||||
local_state=lnbase.LocalState(
|
||||
ctn = 0,
|
||||
per_commitment_secret_seed=seed,
|
||||
amount_msat=local_amount,
|
||||
next_htlc_id = 0,
|
||||
funding_locked_received=True
|
||||
),
|
||||
constraints=lnbase.ChannelConstraints(capacity=funding_sat, feerate=local_feerate, is_initiator=is_initiator, funding_txn_minimum_depth=3),
|
||||
node_id=other_node_id
|
||||
)
|
||||
|
||||
def bip32(sequence):
|
||||
xprv, xpub = bitcoin.bip32_root(b"9dk", 'standard')
|
||||
xprv, xpub = bitcoin.bip32_private_derivation(xprv, "m/", sequence)
|
||||
xtype, depth, fingerprint, child_number, c, k = bitcoin.deserialize_xprv(xprv)
|
||||
assert len(k) == 32
|
||||
assert type(k) is bytes
|
||||
return k
|
||||
|
||||
def create_test_channels():
|
||||
funding_txid = binascii.hexlify(os.urandom(32)).decode("ascii")
|
||||
funding_index = 0
|
||||
funding_sat = bitcoin.COIN * 5
|
||||
local_amount = (funding_sat * 1000) // 2
|
||||
remote_amount = (funding_sat * 1000) // 2
|
||||
alice_raw = [ bip32("m/" + str(i)) for i in range(5) ]
|
||||
bob_raw = [ bip32("m/" + str(i)) for i in range(5,11) ]
|
||||
alice_privkeys = [lnbase.Keypair(lnbase.privkey_to_pubkey(x), x) for x in alice_raw]
|
||||
bob_privkeys = [lnbase.Keypair(lnbase.privkey_to_pubkey(x), x) for x in bob_raw]
|
||||
alice_pubkeys = [lnbase.OnlyPubkeyKeypair(x.pubkey) for x in alice_privkeys]
|
||||
bob_pubkeys = [lnbase.OnlyPubkeyKeypair(x.pubkey) for x in bob_privkeys]
|
||||
|
||||
alice_seed = os.urandom(32)
|
||||
bob_seed = os.urandom(32)
|
||||
|
||||
alice_cur = lnbase.secret_to_pubkey(int.from_bytes(lnbase.get_per_commitment_secret_from_seed(alice_seed, 2**48 - 1), "big"))
|
||||
alice_next = lnbase.secret_to_pubkey(int.from_bytes(lnbase.get_per_commitment_secret_from_seed(alice_seed, 2**48 - 2), "big"))
|
||||
bob_cur = lnbase.secret_to_pubkey(int.from_bytes(lnbase.get_per_commitment_secret_from_seed(bob_seed, 2**48 - 1), "big"))
|
||||
bob_next = lnbase.secret_to_pubkey(int.from_bytes(lnbase.get_per_commitment_secret_from_seed(bob_seed, 2**48 - 2), "big"))
|
||||
|
||||
return lnhtlc.HTLCStateMachine(
|
||||
create_channel_state(funding_txid, funding_index, funding_sat, 20000, True, local_amount, remote_amount, alice_privkeys, bob_pubkeys, alice_seed, bob_cur, bob_next, b"\x02"*33), "alice"), lnhtlc.HTLCStateMachine(
|
||||
create_channel_state(funding_txid, funding_index, funding_sat, 20000, False, remote_amount, local_amount, bob_privkeys, alice_pubkeys, bob_seed, alice_cur, alice_next, b"\x01"*33), "bob")
|
||||
|
||||
one_bitcoin_in_msat = bitcoin.COIN * 1000
|
||||
|
||||
class TestLNBaseHTLCStateMachine(unittest.TestCase):
|
||||
def assertOutputExistsByValue(self, tx, amt_sat):
|
||||
for typ, scr, val in tx.outputs():
|
||||
if val == amt_sat:
|
||||
break
|
||||
else:
|
||||
self.assertFalse()
|
||||
|
||||
def test_SimpleAddSettleWorkflow(self):
|
||||
|
||||
# Create a test channel which will be used for the duration of this
|
||||
# unittest. The channel will be funded evenly with Alice having 5 BTC,
|
||||
# and Bob having 5 BTC.
|
||||
alice_channel, bob_channel = create_test_channels()
|
||||
|
||||
paymentPreimage = b"\x01" * 32
|
||||
paymentHash = bitcoin.sha256(paymentPreimage)
|
||||
htlcAmt = one_bitcoin_in_msat
|
||||
htlc = lnhtlc.UpdateAddHtlc(
|
||||
payment_hash = paymentHash,
|
||||
amount_msat = htlcAmt,
|
||||
cltv_expiry = 5,
|
||||
final_cltv_expiry_with_deltas = 5
|
||||
)
|
||||
|
||||
# First Alice adds the outgoing HTLC to her local channel's state
|
||||
# update log. Then Alice sends this wire message over to Bob who adds
|
||||
# this htlc to his remote state update log.
|
||||
aliceHtlcIndex = alice_channel.add_htlc(htlc)
|
||||
|
||||
bobHtlcIndex = bob_channel.receive_htlc(htlc)
|
||||
|
||||
# Next alice commits this change by sending a signature message. Since
|
||||
# we expect the messages to be ordered, Bob will receive the HTLC we
|
||||
# just sent before he receives this signature, so the signature will
|
||||
# cover the HTLC.
|
||||
aliceSig, aliceHtlcSigs = alice_channel.sign_next_commitment()
|
||||
|
||||
# Bob receives this signature message, and checks that this covers the
|
||||
# state he has in his remote log. This includes the HTLC just sent
|
||||
# from Alice.
|
||||
bob_channel.receive_new_commitment(aliceSig, aliceHtlcSigs)
|
||||
|
||||
# Bob revokes his prior commitment given to him by Alice, since he now
|
||||
# has a valid signature for a newer commitment.
|
||||
bobRevocation, _ = bob_channel.revoke_current_commitment()
|
||||
|
||||
# Bob finally send a signature for Alice's commitment transaction.
|
||||
# This signature will cover the HTLC, since Bob will first send the
|
||||
# revocation just created. The revocation also acks every received
|
||||
# HTLC up to the point where Alice sent here signature.
|
||||
bobSig, bobHtlcSigs = bob_channel.sign_next_commitment()
|
||||
|
||||
# Alice then processes this revocation, sending her own revocation for
|
||||
# her prior commitment transaction. Alice shouldn't have any HTLCs to
|
||||
# forward since she's sending an outgoing HTLC.
|
||||
fwdPkg = alice_channel.receive_revocation(bobRevocation)
|
||||
self.assertEqual(len(fwdPkg.adds), 0, "alice forwards %s add htlcs, should forward none"% len(fwdPkg.adds))
|
||||
self.assertEqual(len(fwdPkg.settle_fails), 0, "alice forwards %s settle/fail htlcs, should forward none"% len(fwdPkg.settle_fails))
|
||||
|
||||
# Alice then processes bob's signature, and since she just received
|
||||
# the revocation, she expect this signature to cover everything up to
|
||||
# the point where she sent her signature, including the HTLC.
|
||||
alice_channel.receive_new_commitment(bobSig, bobHtlcSigs)
|
||||
|
||||
# Alice then generates a revocation for bob.
|
||||
aliceRevocation, _ = alice_channel.revoke_current_commitment()
|
||||
|
||||
# Finally Bob processes Alice's revocation, at this point the new HTLC
|
||||
# is fully locked in within both commitment transactions. Bob should
|
||||
# also be able to forward an HTLC now that the HTLC has been locked
|
||||
# into both commitment transactions.
|
||||
fwdPkg = bob_channel.receive_revocation(aliceRevocation)
|
||||
self.assertEqual(len(fwdPkg.adds), 1, "bob forwards %s add htlcs, should only forward one"% len(fwdPkg.adds))
|
||||
self.assertEqual(len(fwdPkg.settle_fails), 0, "bob forwards %s settle/fail htlcs, should forward none"% len(fwdPkg.settle_fails))
|
||||
|
||||
# At this point, both sides should have the proper number of satoshis
|
||||
# sent, and commitment height updated within their local channel
|
||||
# state.
|
||||
aliceSent = 0
|
||||
bobSent = 0
|
||||
|
||||
self.assertEqual(alice_channel.total_msat_sent, aliceSent, "alice has incorrect milli-satoshis sent: %s vs %s"% (alice_channel.total_msat_sent, aliceSent))
|
||||
self.assertEqual(alice_channel.total_msat_received, bobSent, "alice has incorrect milli-satoshis received %s vs %s"% (alice_channel.total_msat_received, bobSent))
|
||||
self.assertEqual(bob_channel.total_msat_sent, bobSent, "bob has incorrect milli-satoshis sent %s vs %s"% (bob_channel.total_msat_sent, bobSent))
|
||||
self.assertEqual(bob_channel.total_msat_received, aliceSent, "bob has incorrect milli-satoshis received %s vs %s"% (bob_channel.total_msat_received, aliceSent))
|
||||
self.assertEqual(bob_channel.current_height, 1, "bob has incorrect commitment height, %s vs %s"% (bob_channel.current_height, 1))
|
||||
self.assertEqual(alice_channel.current_height, 1, "alice has incorrect commitment height, %s vs %s"% (alice_channel.current_height, 1))
|
||||
|
||||
# Both commitment transactions should have three outputs, and one of
|
||||
# them should be exactly the amount of the HTLC.
|
||||
self.assertEqual(len(alice_channel.local_commitment.outputs()), 3, "alice should have three commitment outputs, instead have %s"% len(alice_channel.local_commitment.outputs()))
|
||||
self.assertEqual(len(bob_channel.local_commitment.outputs()), 3, "bob should have three commitment outputs, instead have %s"% len(bob_channel.local_commitment.outputs()))
|
||||
self.assertOutputExistsByValue(alice_channel.local_commitment, htlcAmt // 1000)
|
||||
self.assertOutputExistsByValue(bob_channel.local_commitment, htlcAmt // 1000)
|
||||
|
||||
# Now we'll repeat a similar exchange, this time with Bob settling the
|
||||
# HTLC once he learns of the preimage.
|
||||
preimage = paymentPreimage
|
||||
bob_channel.settle_htlc(preimage, bobHtlcIndex, None, None, None)
|
||||
|
||||
alice_channel.receive_htlc_settle(preimage, aliceHtlcIndex)
|
||||
|
||||
bobSig2, bobHtlcSigs2 = bob_channel.sign_next_commitment()
|
||||
alice_channel.receive_new_commitment(bobSig2, bobHtlcSigs2)
|
||||
|
||||
aliceRevocation2, _ = alice_channel.revoke_current_commitment()
|
||||
aliceSig2, aliceHtlcSigs2 = alice_channel.sign_next_commitment()
|
||||
|
||||
fwdPkg = bob_channel.receive_revocation(aliceRevocation2)
|
||||
self.assertEqual(fwdPkg.adds, [], "bob forwards %s add htlcs, should forward none"% len(fwdPkg.adds))
|
||||
self.assertEqual(fwdPkg.settle_fails, [], "bob forwards %s settle/fail htlcs, should forward none"% len(fwdPkg.settle_fails))
|
||||
|
||||
bob_channel.receive_new_commitment(aliceSig2, aliceHtlcSigs2)
|
||||
|
||||
bobRevocation2, _ = bob_channel.revoke_current_commitment()
|
||||
fwdPkg = alice_channel.receive_revocation(bobRevocation2)
|
||||
# Alice should now be able to forward the settlement HTLC to
|
||||
# any down stream peers.
|
||||
self.assertEqual(fwdPkg.adds, [] , "alice should be forwarding an add HTLC, instead forwarding %s: %s"% (len(fwdPkg.adds), fwdPkg.adds))
|
||||
self.assertEqual(len(fwdPkg.settle_fails), 1, "alice should be forwarding one settle/fails HTLC, instead forwarding: %s"% len(fwdPkg.settle_fails))
|
||||
|
||||
# At this point, Bob should have 6 BTC settled, with Alice still having
|
||||
# 4 BTC. Alice's channel should show 1 BTC sent and Bob's channel
|
||||
# should show 1 BTC received. They should also be at commitment height
|
||||
# two, with the revocation window extended by 1 (5).
|
||||
mSatTransferred = one_bitcoin_in_msat
|
||||
self.assertEqual(alice_channel.total_msat_sent, mSatTransferred, "alice satoshis sent incorrect %s vs %s expected"% (alice_channel.total_msat_sent, mSatTransferred))
|
||||
self.assertEqual(alice_channel.total_msat_received, 0, "alice satoshis received incorrect %s vs %s expected"% (alice_channel.total_msat_received, 0))
|
||||
self.assertEqual(bob_channel.total_msat_received, mSatTransferred, "bob satoshis received incorrect %s vs %s expected"% (bob_channel.total_msat_received, mSatTransferred))
|
||||
self.assertEqual(bob_channel.total_msat_sent, 0, "bob satoshis sent incorrect %s vs %s expected"% (bob_channel.total_msat_sent, 0))
|
||||
self.assertEqual(bob_channel.current_height, 2, "bob has incorrect commitment height, %s vs %s"% (bob_channel.current_height, 2))
|
||||
self.assertEqual(alice_channel.current_height, 2, "alice has incorrect commitment height, %s vs %s"% (alice_channel.current_height, 2))
|
||||
|
||||
# The logs of both sides should now be cleared since the entry adding
|
||||
# the HTLC should have been removed once both sides receive the
|
||||
# revocation.
|
||||
self.assertEqual(alice_channel.local_update_log, [], "alice's local not updated, should be empty, has %s entries instead"% len(alice_channel.local_update_log))
|
||||
self.assertEqual(alice_channel.remote_update_log, [], "alice's remote not updated, should be empty, has %s entries instead"% len(alice_channel.remote_update_log))
|
Loading…
Add table
Reference in a new issue