Files
chia-blockchain/tests/setup_nodes.py
T

420 lines
12 KiB
Python

import asyncio
import signal
from secrets import token_bytes
from typing import Dict, Tuple, List, Optional
from src.consensus.constants import ConsensusConstants
from src.full_node.full_node import FullNode
from src.server.server import ChiaServer
from src.timelord_launcher import spawn_process, kill_processes
from src.util.keychain import Keychain, bytes_to_mnemonic
from src.server.connection import PeerInfo
from src.simulator.start_simulator import service_kwargs_for_full_node_simulator
from src.server.start_farmer import service_kwargs_for_farmer
from src.server.start_full_node import service_kwargs_for_full_node
from src.server.start_harvester import service_kwargs_for_harvester
from src.server.start_introducer import service_kwargs_for_introducer
from src.server.start_timelord import service_kwargs_for_timelord
from src.server.start_wallet import service_kwargs_for_wallet
from src.server.start_service import Service
from src.util.ints import uint16, uint32
from src.util.make_test_constants import make_test_constants_with_genesis
from src.util.chech32 import encode_puzzle_hash
from tests.time_out_assert import time_out_assert
test_constants, bt = make_test_constants_with_genesis(
{
"DIFFICULTY_STARTING": 1,
"DISCRIMINANT_SIZE_BITS": 8,
"BLOCK_TIME_TARGET": 10,
"DIFFICULTY_EPOCH": 12, # The number of blocks per epoch
"DIFFICULTY_DELAY": 3, # EPOCH / WARP_FACTOR
"PROPAGATION_THRESHOLD": 10,
"PROPAGATION_DELAY_THRESHOLD": 20,
"TX_PER_SEC": 1,
"MEMPOOL_BLOCK_BUFFER": 10,
"MIN_ITERS_STARTING": 50 * 1,
"NUMBER_ZERO_BITS_CHALLENGE_SIG": 1,
"CLVM_COST_RATIO_CONSTANT": 108,
}
)
self_hostname = bt.config["self_hostname"]
def constants_for_dic(dic):
return test_constants.replace(**dic)
async def _teardown_nodes(node_aiters: List) -> None:
awaitables = [node_iter.__anext__() for node_iter in node_aiters]
for sublist_awaitable in asyncio.as_completed(awaitables):
try:
await sublist_awaitable
except StopAsyncIteration:
pass
async def setup_full_node(
consensus_constants: ConsensusConstants,
db_name,
port,
introducer_port=None,
simulator=False,
send_uncompact_interval=30,
):
db_path = bt.root_path / f"{db_name}"
if db_path.exists():
db_path.unlink()
config = bt.config["full_node"]
config["database_path"] = db_name
config["send_uncompact_interval"] = send_uncompact_interval
config["peer_connect_interval"] = 3
config["introducer_peer"]["host"] = "::1"
if introducer_port is not None:
config["introducer_peer"]["port"] = introducer_port
config["port"] = port
config["rpc_port"] = port + 1000
if simulator:
kwargs = service_kwargs_for_full_node_simulator(
bt.root_path, config, consensus_constants, bt
)
else:
kwargs = service_kwargs_for_full_node(bt.root_path, config, consensus_constants)
kwargs.update(
parse_cli_args=False,
)
service = Service(**kwargs)
await service.start()
yield service._api, service._api.server
service.stop()
await service.wait_closed()
if db_path.exists():
db_path.unlink()
async def setup_wallet_node(
port,
consensus_constants: ConsensusConstants,
full_node_port=None,
introducer_port=None,
key_seed=None,
starting_height=None,
):
config = bt.config["wallet"]
config["port"] = port
config["rpc_port"] = port + 1000
if starting_height is not None:
config["starting_height"] = starting_height
config["initial_num_public_keys"] = 5
entropy = token_bytes(32)
keychain = Keychain(entropy.hex(), True)
keychain.add_private_key(bytes_to_mnemonic(entropy), "")
first_pk = keychain.get_first_public_key()
assert first_pk is not None
db_path_key_suffix = str(first_pk.get_fingerprint())
db_name = f"test-wallet-db-{port}"
db_path = bt.root_path / f"test-wallet-db-{port}-{db_path_key_suffix}"
if db_path.exists():
db_path.unlink()
config["database_path"] = str(db_name)
config["testing"] = True
config["introducer_peer"]["host"] = "::1"
if introducer_port is not None:
config["introducer_peer"]["port"] = introducer_port
config["peer_connect_interval"] = 10
if full_node_port is not None:
config["full_node_peer"]["host"] = self_hostname
config["full_node_peer"]["port"] = full_node_port
else:
del config["full_node_peer"]
kwargs = service_kwargs_for_wallet(
bt.root_path, config, consensus_constants, keychain
)
kwargs.update(
parse_cli_args=False,
)
service = Service(**kwargs)
await service.start(new_wallet=True)
yield service._api, service._api.server
service.stop()
await service.wait_closed()
if db_path.exists():
db_path.unlink()
keychain.delete_all_keys()
async def setup_harvester(port, farmer_port, consensus_constants: ConsensusConstants):
kwargs = service_kwargs_for_harvester(
bt.root_path, bt.config["harvester"], consensus_constants
)
kwargs.update(
server_listen_ports=[port],
advertised_port=port,
connect_peers=[PeerInfo(self_hostname, farmer_port)],
parse_cli_args=False,
)
service = Service(**kwargs)
await service.start()
yield service._api, service._api.server
service.stop()
await service.wait_closed()
async def setup_farmer(
port,
consensus_constants: ConsensusConstants,
full_node_port: Optional[uint16] = None,
):
config = bt.config["farmer"]
config_pool = bt.config["pool"]
config["xch_target_address"] = encode_puzzle_hash(bt.farmer_ph)
config["pool_public_keys"] = [bytes(pk).hex() for pk in bt.pool_pubkeys]
config["port"] = port
config_pool["xch_target_address"] = encode_puzzle_hash(bt.pool_ph)
if full_node_port:
config["full_node_peer"]["host"] = self_hostname
config["full_node_peer"]["port"] = full_node_port
else:
del config["full_node_peer"]
kwargs = service_kwargs_for_farmer(
bt.root_path, config, config_pool, bt.keychain, consensus_constants
)
kwargs.update(
parse_cli_args=False,
)
service = Service(**kwargs)
await service.start()
yield service._api, service._api.server
service.stop()
await service.wait_closed()
async def setup_introducer(port):
kwargs = service_kwargs_for_introducer(
bt.root_path,
bt.config["introducer"],
)
kwargs.update(
advertised_port=port,
parse_cli_args=False,
)
service = Service(**kwargs)
await service.start()
yield service._api, service._api.server
service.stop()
await service.wait_closed()
async def setup_vdf_clients(port):
vdf_task = asyncio.create_task(spawn_process(self_hostname, port, 1))
def stop():
asyncio.create_task(kill_processes())
asyncio.get_running_loop().add_signal_handler(signal.SIGTERM, stop)
asyncio.get_running_loop().add_signal_handler(signal.SIGINT, stop)
yield vdf_task
await kill_processes()
async def setup_timelord(
port, full_node_port, sanitizer, consensus_constants: ConsensusConstants
):
config = bt.config["timelord"]
config["port"] = port
config["full_node_peer"]["port"] = full_node_port
config["sanitizer_mode"] = sanitizer
if sanitizer:
config["vdf_server"]["port"] = 7999
kwargs = service_kwargs_for_timelord(
bt.root_path, config, consensus_constants.DISCRIMINANT_SIZE_BITS
)
kwargs.update(
parse_cli_args=False,
)
service = Service(**kwargs)
await service.start()
yield service._api, service._api.server
service.stop()
await service.wait_closed()
async def setup_two_nodes(consensus_constants: ConsensusConstants):
"""
Setup and teardown of two full nodes, with blockchains and separate DBs.
"""
node_iters = [
setup_full_node(
consensus_constants, "blockchain_test.db", 21234, simulator=False
),
setup_full_node(
consensus_constants, "blockchain_test_2.db", 21235, simulator=False
),
]
fn1, s1 = await node_iters[0].__anext__()
fn2, s2 = await node_iters[1].__anext__()
yield (fn1, fn2, s1, s2)
await _teardown_nodes(node_iters)
async def setup_node_and_wallet(
consensus_constants: ConsensusConstants, starting_height=None
):
node_iters = [
setup_full_node(
consensus_constants, "blockchain_test.db", 21234, simulator=False
),
setup_wallet_node(
21235, consensus_constants, None, starting_height=starting_height
),
]
full_node, s1 = await node_iters[0].__anext__()
wallet, s2 = await node_iters[1].__anext__()
yield (full_node, wallet, s1, s2)
await _teardown_nodes(node_iters)
async def setup_simulators_and_wallets(
simulator_count: int,
wallet_count: int,
dic: Dict,
starting_height=None,
):
simulators: List[Tuple[FullNode, ChiaServer]] = []
wallets = []
node_iters = []
consensus_constants = constants_for_dic(dic)
for index in range(0, simulator_count):
port = 50000 + index
db_name = f"blockchain_test_{port}.db"
sim = setup_full_node(consensus_constants, db_name, port, simulator=True)
simulators.append(await sim.__anext__())
node_iters.append(sim)
for index in range(0, wallet_count):
seed = bytes(uint32(index))
port = 55000 + index
wlt = setup_wallet_node(
port,
consensus_constants,
None,
key_seed=seed,
starting_height=starting_height,
)
wallets.append(await wlt.__anext__())
node_iters.append(wlt)
yield (simulators, wallets)
await _teardown_nodes(node_iters)
async def setup_farmer_harvester(consensus_constants: ConsensusConstants):
node_iters = [
setup_harvester(21234, 21235, consensus_constants),
setup_farmer(21235, consensus_constants),
]
harvester, harvester_server = await node_iters[0].__anext__()
farmer, farmer_server = await node_iters[1].__anext__()
yield (harvester, farmer)
await _teardown_nodes(node_iters)
async def setup_full_system(consensus_constants: ConsensusConstants):
node_iters = [
setup_introducer(21233),
setup_harvester(21234, 21235, consensus_constants),
setup_farmer(21235, consensus_constants, uint16(21237)),
setup_vdf_clients(8000),
setup_timelord(21236, 21237, False, consensus_constants),
setup_full_node(
consensus_constants, "blockchain_test.db", 21237, 21232, False, 10
),
setup_full_node(
consensus_constants, "blockchain_test_2.db", 21238, 21232, False, 10
),
setup_vdf_clients(7999),
setup_timelord(21239, 21238, True, consensus_constants),
]
introducer, introducer_server = await node_iters[0].__anext__()
harvester, harvester_server = await node_iters[1].__anext__()
farmer, farmer_server = await node_iters[2].__anext__()
async def num_connections():
return len(harvester.global_connections.get_connections())
await time_out_assert(10, num_connections, 1)
vdf = await node_iters[3].__anext__()
timelord, timelord_server = await node_iters[4].__anext__()
node1, node1_server = await node_iters[5].__anext__()
node2, node2_server = await node_iters[6].__anext__()
vdf_sanitizer = await node_iters[7].__anext__()
sanitizer, sanitizer_server = await node_iters[8].__anext__()
yield (
node1,
node2,
harvester,
farmer,
introducer,
timelord,
vdf,
sanitizer,
vdf_sanitizer,
node1_server,
)
await _teardown_nodes(node_iters)