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pytest: neaten test_cln_sendpay_weirdness, rename.
1. Allow 'any' as an option to zeroconf-selective.py plugin so we can use it in line_graph where we don't know ids yet. 2. Use modern helpers like line_graph and remove debugging statement. 3. Don't use listchannels(): it's true that it shows local channels as well, but that's a quirk I'd like to remove. 4. Make flake8 happy. 5. Rename to be more specific now it's a more narrow test. I manually tested that the test still failed with the fixes removed, too, so it is still the same test! Signed-off-by: Rusty Russell <rusty@rustcorp.com.au>
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2 changed files with 16 additions and 66 deletions
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@ -12,7 +12,7 @@ def on_openchannel(openchannel, plugin, **kwargs):
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plugin.log(repr(openchannel))
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mindepth = int(plugin.options['zeroconf-mindepth']['value'])
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if openchannel['id'] == plugin.options['zeroconf-allow']['value']:
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if openchannel['id'] == plugin.options['zeroconf-allow']['value'] or plugin.options['zeroconf-allow']['value'] == 'any':
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plugin.log(f"This peer is in the zeroconf allowlist, setting mindepth={mindepth}")
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return {'result': 'continue', 'mindepth': mindepth}
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else:
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@ -1,5 +1,6 @@
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from fixtures import * # noqa: F401,F403
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from fixtures import TEST_NETWORK
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from pathlib import Path
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from io import BytesIO
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from pyln.client import RpcError, Millisatoshi
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from pyln.proto.onion import TlvPayload
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@ -10,7 +11,6 @@ from utils import (
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)
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import copy
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import os
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import json
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import pytest
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import random
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import re
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@ -5305,83 +5305,33 @@ def test_payerkey(node_factory):
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assert n.rpc.decode(b12)['invreq_payer_id'] == k
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def test_cln_sendpay_weirdness(bitcoind, node_factory):
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# 0. Setup
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# 0.1 Setup the payer node
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l1 = node_factory.get_node()
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print("CARL: DONE l1 setup")
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# 0.2 Setup the receiver node
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def test_pay_multichannel_use_zeroconf(bitcoind, node_factory):
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"""Check that we use the zeroconf direct channel to pay when we need to"""
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# 0. Setup normal channel, 200k sats.
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zeroconf_plugin = Path(__file__).parent / "plugins" / "zeroconf-selective.py"
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l2 = node_factory.get_node(
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options={
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'plugin': zeroconf_plugin,
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'zeroconf-allow': l1.info['id'],
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},
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)
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print("CARL: DONE l2 setup")
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# 0.3 Connect the nodes
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l1.connect(l2)
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# 0.4 Open a normal channel l1 -> l2
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normal_sats = 200_000
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print("CARL: Opening normal channel btw l1 and l2")
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l1.fundchannel(l2, amount=normal_sats) # This will mine a block!
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print("CARL: DONE: Opening normal channel btw l1 and l2")
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# 0.5 Define a helper that syncs nodes to bitcoind and returns the blockheight
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def synced_blockheight(nodes):
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blockcount = bitcoind.rpc.getblockcount()
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print(f"CARL: bitcoind blockcount {blockcount}")
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wait_for(lambda: all([node.rpc.getinfo()['blockheight'] == blockcount for node in nodes]))
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return blockcount
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l1, l2 = node_factory.line_graph(2, wait_for_announce=False,
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fundamount=200_000,
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opts=[{},
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{'plugin': zeroconf_plugin,
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'zeroconf-allow': 'any'}])
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# 1. Open a zeoconf channel l1 -> l2
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zeroconf_sats = 1_000_000
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# 1.1 Add funds to l1's wallet for the channel open
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l1.fundwallet(zeroconf_sats * 2) # This will mine a block!
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fundchannel_blockheight = synced_blockheight([l1, l2])
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print(f"CARL: blockheight before fundchannel: {fundchannel_blockheight}")
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sync_blockheight(bitcoind, [l1, l2])
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# 1.2 Open the zeroconf channel
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print("CARL: Opening zeroconf channel btw l1 and l2")
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l1.rpc.fundchannel(l2.info['id'], zeroconf_sats, announce=False, mindepth=0)
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print("CARL: DONE Opening zeroconf channel btw l1 and l2")
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# 1.3 Wait until the channel becomes active
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print("CARL: Waiting until channel becomes active")
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num_channels = 4
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wait_for(lambda: len(l1.rpc.listchannels()['channels']) == num_channels)
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wait_for(lambda: len(l2.rpc.listchannels()['channels']) == num_channels)
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print("CARL: DONE Waiting until channel becomes active")
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# 1.4 Print out channels as seen from both nodes
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channels = l1.rpc.listchannels()
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print(f"CARL: l1's channels after zeroconf channel open:\n{json.dumps(channels, indent=4)}")
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channels = l2.rpc.listchannels()
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print(f"CARL: l2's channels after zeroconf channel open:\n{json.dumps(channels, indent=4)}")
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# 1.3 Wait until all channels active.
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wait_for(lambda: all([c['state'] == 'CHANNELD_NORMAL' for c in l1.rpc.listpeerchannels()['channels'] + l2.rpc.listpeerchannels()['channels']]))
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# 2. Have l2 generate an invoice to be paid
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invoice_sats = 500_000
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inv = l2.rpc.invoice(invoice_sats * 1_000, "test", "test")
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psecret = l1.rpc.decodepay(inv['bolt11'])['payment_secret']
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rhash = inv['payment_hash']
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invoice_sats = "500000sat"
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inv = l2.rpc.invoice(invoice_sats, "test", "test")
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# 3. Send a payment over the zeroconf channel
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riskfactor=0
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## 3.1 Sanity check that we're at the block height we expect
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payment_blockheight = synced_blockheight([l1, l2])
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print(f"CARL: blockheight before payment: {payment_blockheight}")
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assert(fundchannel_blockheight == payment_blockheight)
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## 3.2 Send the payment via PAY
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print("CARL: PAY via l1's route to l2 for invoice")
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riskfactor = 0
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l1.rpc.pay(inv['bolt11'], riskfactor=riskfactor)
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print("CARL: DONE: PAY via l1's route to l2 for invoice")
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