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full_node.py
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full_node.py
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from __future__ import annotations
import asyncio
import contextlib
import copy
import dataclasses
import logging
import multiprocessing
import random
import sqlite3
import time
import traceback
from collections.abc import AsyncIterator, Awaitable, Sequence
from multiprocessing.context import BaseContext
from pathlib import Path
from typing import TYPE_CHECKING, Any, Callable, ClassVar, Optional, TextIO, Union, cast, final
from chia_rs import (
AugSchemeMPL,
BLSCache,
get_flags_for_height_and_constants,
run_block_generator,
run_block_generator2,
)
from packaging.version import Version
from chia.consensus.block_body_validation import ForkInfo
from chia.consensus.block_creation import unfinished_block_to_full_block
from chia.consensus.block_record import BlockRecord
from chia.consensus.blockchain import AddBlockResult, Blockchain, BlockchainMutexPriority, StateChangeSummary
from chia.consensus.blockchain_interface import BlockchainInterface
from chia.consensus.constants import ConsensusConstants
from chia.consensus.cost_calculator import NPCResult
from chia.consensus.difficulty_adjustment import get_next_sub_slot_iters_and_difficulty
from chia.consensus.make_sub_epoch_summary import next_sub_epoch_summary
from chia.consensus.multiprocess_validation import PreValidationResult, pre_validate_blocks_multiprocessing
from chia.consensus.pot_iterations import calculate_sp_iters
from chia.full_node.block_store import BlockStore
from chia.full_node.coin_store import CoinStore
from chia.full_node.full_node_api import FullNodeAPI
from chia.full_node.full_node_store import FullNodeStore, FullNodeStorePeakResult, UnfinishedBlockEntry
from chia.full_node.hint_management import get_hints_and_subscription_coin_ids
from chia.full_node.hint_store import HintStore
from chia.full_node.mempool import MempoolRemoveInfo
from chia.full_node.mempool_manager import MempoolManager, NewPeakItem
from chia.full_node.signage_point import SignagePoint
from chia.full_node.subscriptions import PeerSubscriptions, peers_for_spend_bundle
from chia.full_node.sync_store import Peak, SyncStore
from chia.full_node.tx_processing_queue import TransactionQueue
from chia.full_node.weight_proof import WeightProofHandler
from chia.protocols import farmer_protocol, full_node_protocol, timelord_protocol, wallet_protocol
from chia.protocols.farmer_protocol import SignagePointSourceData, SPSubSlotSourceData, SPVDFSourceData
from chia.protocols.full_node_protocol import RequestBlocks, RespondBlock, RespondBlocks, RespondSignagePoint
from chia.protocols.protocol_message_types import ProtocolMessageTypes
from chia.protocols.shared_protocol import Capability
from chia.protocols.wallet_protocol import CoinState, CoinStateUpdate, RemovedMempoolItem
from chia.rpc.rpc_server import StateChangedProtocol
from chia.server.node_discovery import FullNodePeers
from chia.server.outbound_message import Message, NodeType, make_msg
from chia.server.server import ChiaServer
from chia.server.ws_connection import WSChiaConnection
from chia.types.blockchain_format.classgroup import ClassgroupElement
from chia.types.blockchain_format.pool_target import PoolTarget
from chia.types.blockchain_format.sized_bytes import bytes32
from chia.types.blockchain_format.sub_epoch_summary import SubEpochSummary
from chia.types.blockchain_format.vdf import CompressibleVDFField, VDFInfo, VDFProof, validate_vdf
from chia.types.coin_record import CoinRecord
from chia.types.end_of_slot_bundle import EndOfSubSlotBundle
from chia.types.full_block import FullBlock
from chia.types.header_block import HeaderBlock
from chia.types.mempool_inclusion_status import MempoolInclusionStatus
from chia.types.mempool_item import MempoolItem
from chia.types.peer_info import PeerInfo
from chia.types.spend_bundle import SpendBundle
from chia.types.transaction_queue_entry import TransactionQueueEntry
from chia.types.unfinished_block import UnfinishedBlock
from chia.types.validation_state import ValidationState
from chia.types.weight_proof import WeightProof
from chia.util.augmented_chain import AugmentedBlockchain
from chia.util.bech32m import encode_puzzle_hash
from chia.util.check_fork_next_block import check_fork_next_block
from chia.util.config import process_config_start_method
from chia.util.db_synchronous import db_synchronous_on
from chia.util.db_version import lookup_db_version, set_db_version_async
from chia.util.db_wrapper import DBWrapper2, manage_connection
from chia.util.errors import ConsensusError, Err, TimestampError, ValidationError
from chia.util.ints import uint8, uint32, uint64, uint128
from chia.util.limited_semaphore import LimitedSemaphore
from chia.util.network import is_localhost
from chia.util.path import path_from_root
from chia.util.profiler import enable_profiler, mem_profile_task, profile_task
from chia.util.safe_cancel_task import cancel_task_safe
# This is the result of calling peak_post_processing, which is then fed into peak_post_processing_2
@dataclasses.dataclass
class PeakPostProcessingResult:
mempool_peak_result: list[NewPeakItem] # The new items from calling MempoolManager.new_peak
mempool_removals: list[MempoolRemoveInfo] # The removed mempool items from calling MempoolManager.new_peak
fns_peak_result: FullNodeStorePeakResult # The result of calling FullNodeStore.new_peak
hints: list[tuple[bytes32, bytes]] # The hints added to the DB
lookup_coin_ids: list[bytes32] # The coin IDs that we need to look up to notify wallets of changes
@dataclasses.dataclass(frozen=True)
class WalletUpdate:
fork_height: uint32
peak: Peak
coin_records: list[CoinRecord]
hints: dict[bytes32, bytes32]
@final
@dataclasses.dataclass
class FullNode:
if TYPE_CHECKING:
from chia.rpc.rpc_server import RpcServiceProtocol
_protocol_check: ClassVar[RpcServiceProtocol] = cast("FullNode", None)
root_path: Path
config: dict[str, Any]
constants: ConsensusConstants
signage_point_times: list[float]
full_node_store: FullNodeStore
log: logging.Logger
db_path: Path
wallet_sync_queue: asyncio.Queue[WalletUpdate]
_segment_task: Optional[asyncio.Task[None]] = None
initialized: bool = False
_server: Optional[ChiaServer] = None
_shut_down: bool = False
pow_creation: dict[bytes32, asyncio.Event] = dataclasses.field(default_factory=dict)
state_changed_callback: Optional[StateChangedProtocol] = None
full_node_peers: Optional[FullNodePeers] = None
sync_store: SyncStore = dataclasses.field(default_factory=SyncStore)
uncompact_task: Optional[asyncio.Task[None]] = None
compact_vdf_requests: set[bytes32] = dataclasses.field(default_factory=set)
# TODO: Logging isn't setup yet so the log entries related to parsing the
# config would end up on stdout if handled here.
multiprocessing_context: Optional[BaseContext] = None
_ui_tasks: set[asyncio.Task[None]] = dataclasses.field(default_factory=set)
subscriptions: PeerSubscriptions = dataclasses.field(default_factory=PeerSubscriptions)
_transaction_queue_task: Optional[asyncio.Task[None]] = None
simulator_transaction_callback: Optional[Callable[[bytes32], Awaitable[None]]] = None
_sync_task_list: list[asyncio.Task[None]] = dataclasses.field(default_factory=list)
_transaction_queue: Optional[TransactionQueue] = None
_compact_vdf_sem: Optional[LimitedSemaphore] = None
_new_peak_sem: Optional[LimitedSemaphore] = None
_add_transaction_semaphore: Optional[asyncio.Semaphore] = None
_db_wrapper: Optional[DBWrapper2] = None
_hint_store: Optional[HintStore] = None
_block_store: Optional[BlockStore] = None
_coin_store: Optional[CoinStore] = None
_mempool_manager: Optional[MempoolManager] = None
_init_weight_proof: Optional[asyncio.Task[None]] = None
_blockchain: Optional[Blockchain] = None
_timelord_lock: Optional[asyncio.Lock] = None
weight_proof_handler: Optional[WeightProofHandler] = None
# hashes of peaks that failed long sync on chip13 Validation
bad_peak_cache: dict[bytes32, uint32] = dataclasses.field(default_factory=dict)
wallet_sync_task: Optional[asyncio.Task[None]] = None
_bls_cache: BLSCache = dataclasses.field(default_factory=lambda: BLSCache(50000))
@property
def server(self) -> ChiaServer:
# This is a stop gap until the class usage is refactored such the values of
# integral attributes are known at creation of the instance.
if self._server is None:
raise RuntimeError("server not assigned")
return self._server
@classmethod
async def create(
cls,
config: dict[str, Any],
root_path: Path,
consensus_constants: ConsensusConstants,
name: str = __name__,
) -> FullNode:
# NOTE: async to force the queue creation to occur when an event loop is available
db_path_replaced: str = config["database_path"].replace("CHALLENGE", config["selected_network"])
db_path = path_from_root(root_path, db_path_replaced)
db_path.parent.mkdir(parents=True, exist_ok=True)
return cls(
root_path=root_path,
config=config,
constants=consensus_constants,
signage_point_times=[time.time() for _ in range(consensus_constants.NUM_SPS_SUB_SLOT)],
full_node_store=FullNodeStore(consensus_constants),
log=logging.getLogger(name),
db_path=db_path,
wallet_sync_queue=asyncio.Queue(),
)
@contextlib.asynccontextmanager
async def manage(self) -> AsyncIterator[None]:
self._timelord_lock = asyncio.Lock()
self._compact_vdf_sem = LimitedSemaphore.create(active_limit=4, waiting_limit=20)
# We don't want to run too many concurrent new_peak instances, because it would fetch the same block from
# multiple peers and re-validate.
self._new_peak_sem = LimitedSemaphore.create(active_limit=2, waiting_limit=20)
# These many respond_transaction tasks can be active at any point in time
self._add_transaction_semaphore = asyncio.Semaphore(200)
sql_log_path: Optional[Path] = None
with contextlib.ExitStack() as exit_stack:
sql_log_file: Optional[TextIO] = None
if self.config.get("log_sqlite_cmds", False):
sql_log_path = path_from_root(self.root_path, "log/sql.log")
self.log.info(f"logging SQL commands to {sql_log_path}")
sql_log_file = exit_stack.enter_context(sql_log_path.open("a", encoding="utf-8"))
# create the store (db) and full node instance
# TODO: is this standardized and thus able to be handled by DBWrapper2?
async with manage_connection(self.db_path, log_file=sql_log_file, name="version_check") as db_connection:
db_version = await lookup_db_version(db_connection)
self.log.info(f"using blockchain database {self.db_path}, which is version {db_version}")
db_sync = db_synchronous_on(self.config.get("db_sync", "auto"))
self.log.info(f"opening blockchain DB: synchronous={db_sync}")
async with DBWrapper2.managed(
self.db_path,
db_version=db_version,
reader_count=self.config.get("db_readers", 4),
log_path=sql_log_path,
synchronous=db_sync,
) as self._db_wrapper:
if self.db_wrapper.db_version != 2:
async with self.db_wrapper.reader_no_transaction() as conn:
async with conn.execute(
"SELECT name FROM sqlite_master WHERE type='table' AND name='full_blocks'"
) as cur:
if len(list(await cur.fetchall())) == 0:
try:
# this is a new DB file. Make it v2
async with self.db_wrapper.writer_maybe_transaction() as w_conn:
await set_db_version_async(w_conn, 2)
self.db_wrapper.db_version = 2
self.log.info("blockchain database is empty, configuring as v2")
except sqlite3.OperationalError:
# it could be a database created with "chia init", which is
# empty except it has the database_version table
pass
self._block_store = await BlockStore.create(self.db_wrapper)
self._hint_store = await HintStore.create(self.db_wrapper)
self._coin_store = await CoinStore.create(self.db_wrapper)
self.log.info("Initializing blockchain from disk")
start_time = time.monotonic()
reserved_cores = self.config.get("reserved_cores", 0)
single_threaded = self.config.get("single_threaded", False)
multiprocessing_start_method = process_config_start_method(config=self.config, log=self.log)
self.multiprocessing_context = multiprocessing.get_context(method=multiprocessing_start_method)
self._blockchain = await Blockchain.create(
coin_store=self.coin_store,
block_store=self.block_store,
consensus_constants=self.constants,
blockchain_dir=self.db_path.parent,
reserved_cores=reserved_cores,
single_threaded=single_threaded,
)
self._mempool_manager = MempoolManager(
get_coin_records=self.coin_store.get_coin_records,
consensus_constants=self.constants,
single_threaded=single_threaded,
)
# Transactions go into this queue from the server, and get sent to respond_transaction
self._transaction_queue = TransactionQueue(1000, self.log)
self._transaction_queue_task: asyncio.Task[None] = asyncio.create_task(self._handle_transactions())
self._init_weight_proof = asyncio.create_task(self.initialize_weight_proof())
if self.config.get("enable_profiler", False):
asyncio.create_task(profile_task(self.root_path, "node", self.log))
self.profile_block_validation = self.config.get("profile_block_validation", False)
if self.profile_block_validation: # pragma: no cover
# this is not covered by any unit tests as it's essentially test code
# itself. It's exercised manually when investigating performance issues
profile_dir = path_from_root(self.root_path, "block-validation-profile")
profile_dir.mkdir(parents=True, exist_ok=True)
if self.config.get("enable_memory_profiler", False):
asyncio.create_task(mem_profile_task(self.root_path, "node", self.log))
time_taken = time.monotonic() - start_time
peak: Optional[BlockRecord] = self.blockchain.get_peak()
if peak is None:
self.log.info(f"Initialized with empty blockchain time taken: {int(time_taken)}s")
num_unspent = await self.coin_store.num_unspent()
if num_unspent > 0:
self.log.error(
f"Inconsistent blockchain DB file! Could not find peak block but found {num_unspent} coins! "
"This is a fatal error. The blockchain database may be corrupt"
)
raise RuntimeError("corrupt blockchain DB")
else:
self.log.info(
f"Blockchain initialized to peak {peak.header_hash} height"
f" {peak.height}, "
f"time taken: {int(time_taken)}s"
)
async with self.blockchain.priority_mutex.acquire(priority=BlockchainMutexPriority.high):
pending_tx = await self.mempool_manager.new_peak(self.blockchain.get_tx_peak(), None)
assert len(pending_tx.items) == 0 # no pending transactions when starting up
full_peak: Optional[FullBlock] = await self.blockchain.get_full_peak()
assert full_peak is not None
state_change_summary = StateChangeSummary(peak, uint32(max(peak.height - 1, 0)), [], [], [], [])
ppp_result: PeakPostProcessingResult = await self.peak_post_processing(
full_peak, state_change_summary, None
)
await self.peak_post_processing_2(full_peak, None, state_change_summary, ppp_result)
if self.config["send_uncompact_interval"] != 0:
sanitize_weight_proof_only = False
if "sanitize_weight_proof_only" in self.config:
sanitize_weight_proof_only = self.config["sanitize_weight_proof_only"]
assert self.config["target_uncompact_proofs"] != 0
self.uncompact_task = asyncio.create_task(
self.broadcast_uncompact_blocks(
self.config["send_uncompact_interval"],
self.config["target_uncompact_proofs"],
sanitize_weight_proof_only,
)
)
if self.wallet_sync_task is None or self.wallet_sync_task.done():
self.wallet_sync_task = asyncio.create_task(self._wallets_sync_task_handler())
self.initialized = True
if self.full_node_peers is not None:
asyncio.create_task(self.full_node_peers.start())
try:
yield
finally:
self._shut_down = True
if self._init_weight_proof is not None:
self._init_weight_proof.cancel()
# blockchain is created in _start and in certain cases it may not exist here during _close
if self._blockchain is not None:
self.blockchain.shut_down()
# same for mempool_manager
if self._mempool_manager is not None:
self.mempool_manager.shut_down()
if self.full_node_peers is not None:
asyncio.create_task(self.full_node_peers.close())
if self.uncompact_task is not None:
self.uncompact_task.cancel()
if self._transaction_queue_task is not None:
self._transaction_queue_task.cancel()
cancel_task_safe(task=self.wallet_sync_task, log=self.log)
for one_sync_task in self._sync_task_list:
if not one_sync_task.done():
cancel_task_safe(task=one_sync_task, log=self.log)
for task_id, task in list(self.full_node_store.tx_fetch_tasks.items()):
cancel_task_safe(task, self.log)
if self._init_weight_proof is not None:
await asyncio.wait([self._init_weight_proof])
for one_sync_task in self._sync_task_list:
if one_sync_task.done():
self.log.info(f"Long sync task {one_sync_task.get_name()} done")
else:
with contextlib.suppress(asyncio.CancelledError):
self.log.info(f"Awaiting long sync task {one_sync_task.get_name()}")
await one_sync_task
@property
def block_store(self) -> BlockStore:
assert self._block_store is not None
return self._block_store
@property
def timelord_lock(self) -> asyncio.Lock:
assert self._timelord_lock is not None
return self._timelord_lock
@property
def mempool_manager(self) -> MempoolManager:
assert self._mempool_manager is not None
return self._mempool_manager
@property
def blockchain(self) -> Blockchain:
assert self._blockchain is not None
return self._blockchain
@property
def coin_store(self) -> CoinStore:
assert self._coin_store is not None
return self._coin_store
@property
def add_transaction_semaphore(self) -> asyncio.Semaphore:
assert self._add_transaction_semaphore is not None
return self._add_transaction_semaphore
@property
def transaction_queue(self) -> TransactionQueue:
assert self._transaction_queue is not None
return self._transaction_queue
@property
def db_wrapper(self) -> DBWrapper2:
assert self._db_wrapper is not None
return self._db_wrapper
@property
def hint_store(self) -> HintStore:
assert self._hint_store is not None
return self._hint_store
@property
def new_peak_sem(self) -> LimitedSemaphore:
assert self._new_peak_sem is not None
return self._new_peak_sem
@property
def compact_vdf_sem(self) -> LimitedSemaphore:
assert self._compact_vdf_sem is not None
return self._compact_vdf_sem
def get_connections(self, request_node_type: Optional[NodeType]) -> list[dict[str, Any]]:
connections = self.server.get_connections(request_node_type)
con_info: list[dict[str, Any]] = []
if self.sync_store is not None:
peak_store = self.sync_store.peer_to_peak
else:
peak_store = None
for con in connections:
if peak_store is not None and con.peer_node_id in peak_store:
peak = peak_store[con.peer_node_id]
peak_height = peak.height
peak_hash = peak.header_hash
peak_weight = peak.weight
else:
peak_height = None
peak_hash = None
peak_weight = None
con_dict: dict[str, Any] = {
"type": con.connection_type,
"local_port": con.local_port,
"peer_host": con.peer_info.host,
"peer_port": con.peer_info.port,
"peer_server_port": con.peer_server_port,
"node_id": con.peer_node_id,
"creation_time": con.creation_time,
"bytes_read": con.bytes_read,
"bytes_written": con.bytes_written,
"last_message_time": con.last_message_time,
"peak_height": peak_height,
"peak_weight": peak_weight,
"peak_hash": peak_hash,
}
con_info.append(con_dict)
return con_info
def _set_state_changed_callback(self, callback: StateChangedProtocol) -> None:
self.state_changed_callback = callback
async def _handle_one_transaction(self, entry: TransactionQueueEntry) -> None:
peer = entry.peer
try:
inc_status, err = await self.add_transaction(entry.transaction, entry.spend_name, peer, entry.test)
entry.done.set((inc_status, err))
except asyncio.CancelledError:
error_stack = traceback.format_exc()
self.log.debug(f"Cancelling _handle_one_transaction, closing: {error_stack}")
except Exception:
error_stack = traceback.format_exc()
self.log.error(f"Error in _handle_one_transaction, closing: {error_stack}")
if peer is not None:
await peer.close()
finally:
self.add_transaction_semaphore.release()
async def _handle_transactions(self) -> None:
while not self._shut_down:
# We use a semaphore to make sure we don't send more than 200 concurrent calls of respond_transaction.
# However, doing them one at a time would be slow, because they get sent to other processes.
await self.add_transaction_semaphore.acquire()
item: TransactionQueueEntry = await self.transaction_queue.pop()
asyncio.create_task(self._handle_one_transaction(item))
async def initialize_weight_proof(self) -> None:
self.weight_proof_handler = WeightProofHandler(
constants=self.constants,
blockchain=self.blockchain,
multiprocessing_context=self.multiprocessing_context,
)
peak = self.blockchain.get_peak()
if peak is not None:
await self.weight_proof_handler.create_sub_epoch_segments()
def set_server(self, server: ChiaServer) -> None:
self._server = server
dns_servers: list[str] = []
network_name = self.config["selected_network"]
try:
default_port = self.config["network_overrides"]["config"][network_name]["default_full_node_port"]
except Exception:
self.log.info("Default port field not found in config.")
default_port = None
if "dns_servers" in self.config:
dns_servers = self.config["dns_servers"]
elif network_name == "mainnet":
# If `dns_servers` is missing from the `config`, hardcode it if we're running mainnet.
dns_servers.append("dns-introducer.chia.net")
try:
self.full_node_peers = FullNodePeers(
self.server,
self.config["target_outbound_peer_count"],
self.root_path / Path(self.config.get("peers_file_path", "db/peers.dat")),
self.config["introducer_peer"],
dns_servers,
self.config["peer_connect_interval"],
self.config["selected_network"],
default_port,
self.log,
)
except Exception as e:
error_stack = traceback.format_exc()
self.log.error(f"Exception: {e}")
self.log.error(f"Exception in peer discovery: {e}")
self.log.error(f"Exception Stack: {error_stack}")
def _state_changed(self, change: str, change_data: Optional[dict[str, Any]] = None) -> None:
if self.state_changed_callback is not None:
self.state_changed_callback(change, change_data)
async def short_sync_batch(self, peer: WSChiaConnection, start_height: uint32, target_height: uint32) -> bool:
"""
Tries to sync to a chain which is not too far in the future, by downloading batches of blocks. If the first
block that we download is not connected to our chain, we return False and do an expensive long sync instead.
Long sync is not preferred because it requires downloading and validating a weight proof.
Args:
peer: peer to sync from
start_height: height that we should start downloading at. (Our peak is higher)
target_height: target to sync to
Returns:
False if the fork point was not found, and we need to do a long sync. True otherwise.
"""
# Don't trigger multiple batch syncs to the same peer
if self.sync_store.is_backtrack_syncing(node_id=peer.peer_node_id):
return True # Don't batch sync, we are already in progress of a backtrack sync
if peer.peer_node_id in self.sync_store.batch_syncing:
return True # Don't trigger a long sync
self.sync_store.batch_syncing.add(peer.peer_node_id)
self.log.info(f"Starting batch short sync from {start_height} to height {target_height}")
if start_height > 0:
first = await peer.call_api(
FullNodeAPI.request_block, full_node_protocol.RequestBlock(uint32(start_height), False)
)
if first is None or not isinstance(first, full_node_protocol.RespondBlock):
self.sync_store.batch_syncing.remove(peer.peer_node_id)
self.log.error(f"Error short batch syncing, could not fetch block at height {start_height}")
return False
if not self.blockchain.contains_block(first.block.prev_header_hash):
self.log.info("Batch syncing stopped, this is a deep chain")
self.sync_store.batch_syncing.remove(peer.peer_node_id)
# First sb not connected to our blockchain, do a long sync instead
return False
batch_size = self.constants.MAX_BLOCK_COUNT_PER_REQUESTS
if self._segment_task is not None and (not self._segment_task.done()):
try:
self._segment_task.cancel()
except Exception as e:
self.log.warning(f"failed to cancel segment task {e}")
self._segment_task = None
try:
peer_info = peer.get_peer_logging()
if start_height > 0:
fork_hash = self.blockchain.height_to_hash(uint32(start_height - 1))
else:
fork_hash = self.constants.GENESIS_CHALLENGE
assert fork_hash
fork_info = ForkInfo(start_height - 1, start_height - 1, fork_hash)
for height in range(start_height, target_height, batch_size):
end_height = min(target_height, height + batch_size)
request = RequestBlocks(uint32(height), uint32(end_height), True)
response = await peer.call_api(FullNodeAPI.request_blocks, request)
if not response:
raise ValueError(f"Error short batch syncing, invalid/no response for {height}-{end_height}")
async with self.blockchain.priority_mutex.acquire(priority=BlockchainMutexPriority.high):
state_change_summary: Optional[StateChangeSummary]
prev_b = None
if response.blocks[0].height > 0:
prev_b = await self.blockchain.get_block_record_from_db(response.blocks[0].prev_header_hash)
assert prev_b is not None
new_slot = len(response.blocks[0].finished_sub_slots) > 0
ssi, diff = get_next_sub_slot_iters_and_difficulty(
self.constants, new_slot, prev_b, self.blockchain
)
vs = ValidationState(ssi, diff, None)
success, state_change_summary, _err = await self.add_block_batch(
AugmentedBlockchain(self.blockchain), response.blocks, peer_info, fork_info, vs
)
if not success:
raise ValueError(f"Error short batch syncing, failed to validate blocks {height}-{end_height}")
if state_change_summary is not None:
try:
peak_fb: Optional[FullBlock] = await self.blockchain.get_full_peak()
assert peak_fb is not None
ppp_result: PeakPostProcessingResult = await self.peak_post_processing(
peak_fb,
state_change_summary,
peer,
)
await self.peak_post_processing_2(peak_fb, peer, state_change_summary, ppp_result)
except Exception:
# Still do post processing after cancel (or exception)
peak_fb = await self.blockchain.get_full_peak()
assert peak_fb is not None
await self.peak_post_processing(peak_fb, state_change_summary, peer)
raise
finally:
self.log.info(f"Added blocks {height}-{end_height}")
except (asyncio.CancelledError, Exception):
self.sync_store.batch_syncing.remove(peer.peer_node_id)
raise
self.sync_store.batch_syncing.remove(peer.peer_node_id)
return True
async def short_sync_backtrack(
self, peer: WSChiaConnection, peak_height: uint32, target_height: uint32, target_unf_hash: bytes32
) -> bool:
"""
Performs a backtrack sync, where blocks are downloaded one at a time from newest to oldest. If we do not
find the fork point 5 deeper than our peak, we return False and do a long sync instead.
Args:
peer: peer to sync from
peak_height: height of our peak
target_height: target height
target_unf_hash: partial hash of the unfinished block of the target
Returns:
True iff we found the fork point, and we do not need to long sync.
"""
try:
self.sync_store.increment_backtrack_syncing(node_id=peer.peer_node_id)
unfinished_block: Optional[UnfinishedBlock] = self.full_node_store.get_unfinished_block(target_unf_hash)
curr_height: int = target_height
found_fork_point = False
blocks = []
while curr_height > peak_height - 5:
# If we already have the unfinished block, don't fetch the transactions. In the normal case, we will
# already have the unfinished block, from when it was broadcast, so we just need to download the header,
# but not the transactions
fetch_tx: bool = unfinished_block is None or curr_height != target_height
curr = await peer.call_api(
FullNodeAPI.request_block, full_node_protocol.RequestBlock(uint32(curr_height), fetch_tx)
)
if curr is None:
raise ValueError(f"Failed to fetch block {curr_height} from {peer.get_peer_logging()}, timed out")
if curr is None or not isinstance(curr, full_node_protocol.RespondBlock):
raise ValueError(
f"Failed to fetch block {curr_height} from {peer.get_peer_logging()}, wrong type {type(curr)}"
)
blocks.append(curr.block)
if self.blockchain.contains_block(curr.block.prev_header_hash) or curr_height == 0:
found_fork_point = True
break
curr_height -= 1
if found_fork_point:
for block in reversed(blocks):
# when syncing, we won't share any signatures with the
# mempool, so there's no need to pass in the BLS cache.
await self.add_block(block, peer)
except (asyncio.CancelledError, Exception):
self.sync_store.decrement_backtrack_syncing(node_id=peer.peer_node_id)
raise
self.sync_store.decrement_backtrack_syncing(node_id=peer.peer_node_id)
return found_fork_point
async def _refresh_ui_connections(self, sleep_before: float = 0) -> None:
if sleep_before > 0:
await asyncio.sleep(sleep_before)
self._state_changed("peer_changed_peak")
async def new_peak(self, request: full_node_protocol.NewPeak, peer: WSChiaConnection) -> None:
"""
We have received a notification of a new peak from a peer. This happens either when we have just connected,
or when the peer has updated their peak.
Args:
request: information about the new peak
peer: peer that sent the message
"""
try:
seen_header_hash = self.sync_store.seen_header_hash(request.header_hash)
# Updates heights in the UI. Sleeps 1.5s before, so other peers have time to update their peaks as well.
# Limit to 3 refreshes.
if not seen_header_hash and len(self._ui_tasks) < 3:
self._ui_tasks.add(asyncio.create_task(self._refresh_ui_connections(1.5)))
# Prune completed connect tasks
self._ui_tasks = set(filter(lambda t: not t.done(), self._ui_tasks))
except Exception as e:
self.log.warning(f"Exception UI refresh task: {e}")
# Store this peak/peer combination in case we want to sync to it, and to keep track of peers
self.sync_store.peer_has_block(request.header_hash, peer.peer_node_id, request.weight, request.height, True)
if self.blockchain.contains_block(request.header_hash):
return None
# Not interested in less heavy peaks
peak: Optional[BlockRecord] = self.blockchain.get_peak()
curr_peak_height = uint32(0) if peak is None else peak.height
if peak is not None and peak.weight > request.weight:
return None
if self.sync_store.get_sync_mode():
# If peer connects while we are syncing, check if they have the block we are syncing towards
target_peak = self.sync_store.target_peak
if target_peak is not None and request.header_hash != target_peak.header_hash:
peak_peers: set[bytes32] = self.sync_store.get_peers_that_have_peak([target_peak.header_hash])
# Don't ask if we already know this peer has the peak
if peer.peer_node_id not in peak_peers:
target_peak_response: Optional[RespondBlock] = await peer.call_api(
FullNodeAPI.request_block,
full_node_protocol.RequestBlock(target_peak.height, False),
timeout=10,
)
if target_peak_response is not None and isinstance(target_peak_response, RespondBlock):
self.sync_store.peer_has_block(
target_peak.header_hash,
peer.peer_node_id,
target_peak_response.block.weight,
target_peak.height,
False,
)
else:
if (
curr_peak_height <= request.height
and request.height <= curr_peak_height + self.config["short_sync_blocks_behind_threshold"]
):
# This is the normal case of receiving the next block
if await self.short_sync_backtrack(
peer, curr_peak_height, request.height, request.unfinished_reward_block_hash
):
return None
if request.height < self.constants.WEIGHT_PROOF_RECENT_BLOCKS:
# This is the case of syncing up more than a few blocks, at the start of the chain
self.log.debug("Doing batch sync, no backup")
await self.short_sync_batch(peer, uint32(0), request.height)
return None
if (
curr_peak_height <= request.height
and request.height < curr_peak_height + self.config["sync_blocks_behind_threshold"]
):
# This case of being behind but not by so much
if await self.short_sync_batch(peer, uint32(max(curr_peak_height - 6, 0)), request.height):
return None
# Clean up task reference list (used to prevent gc from killing running tasks)
for oldtask in self._sync_task_list[:]:
if oldtask.done():
self._sync_task_list.remove(oldtask)
# This is the either the case where we were not able to sync successfully (for example, due to the fork
# point being in the past), or we are very far behind. Performs a long sync.
# Multiple tasks may be created here. If we don't save all handles, a task could enter a sync object
# and be cleaned up by the GC, corrupting the sync object and possibly not allowing anything else in.
self._sync_task_list.append(asyncio.create_task(self._sync()))
async def send_peak_to_timelords(
self, peak_block: Optional[FullBlock] = None, peer: Optional[WSChiaConnection] = None
) -> None:
"""
Sends current peak to timelords
"""
if peak_block is None:
peak_block = await self.blockchain.get_full_peak()
if peak_block is not None:
peak = self.blockchain.block_record(peak_block.header_hash)
difficulty = self.blockchain.get_next_difficulty(peak.header_hash, False)
ses: Optional[SubEpochSummary] = next_sub_epoch_summary(
self.constants,
self.blockchain,
peak.required_iters,
peak_block,
True,
)
recent_rc = self.blockchain.get_recent_reward_challenges()
curr = peak
while not curr.is_challenge_block(self.constants) and not curr.first_in_sub_slot:
curr = self.blockchain.block_record(curr.prev_hash)
if curr.is_challenge_block(self.constants):
last_csb_or_eos = curr.total_iters
else:
last_csb_or_eos = curr.ip_sub_slot_total_iters(self.constants)
curr = peak
passed_ses_height_but_not_yet_included = True
while (curr.height % self.constants.SUB_EPOCH_BLOCKS) != 0:
if curr.sub_epoch_summary_included:
passed_ses_height_but_not_yet_included = False
curr = self.blockchain.block_record(curr.prev_hash)
if curr.sub_epoch_summary_included or curr.height == 0:
passed_ses_height_but_not_yet_included = False
timelord_new_peak: timelord_protocol.NewPeakTimelord = timelord_protocol.NewPeakTimelord(
peak_block.reward_chain_block,
difficulty,
peak.deficit,
peak.sub_slot_iters,
ses,
recent_rc,
last_csb_or_eos,
passed_ses_height_but_not_yet_included,
)
msg = make_msg(ProtocolMessageTypes.new_peak_timelord, timelord_new_peak)
if peer is None:
await self.server.send_to_all([msg], NodeType.TIMELORD)
else:
await self.server.send_to_specific([msg], peer.peer_node_id)
async def synced(self, block_is_current_at: Optional[uint64] = None) -> bool:
if block_is_current_at is None:
block_is_current_at = uint64(int(time.time() - 60 * 7))
if "simulator" in str(self.config.get("selected_network")):
return True # sim is always synced because it has no peers
curr: Optional[BlockRecord] = self.blockchain.get_peak()
if curr is None:
return False
while curr is not None and not curr.is_transaction_block:
curr = self.blockchain.try_block_record(curr.prev_hash)
if (
curr is None
or curr.timestamp is None
or curr.timestamp < block_is_current_at
or self.sync_store.get_sync_mode()
):
return False
else:
return True
async def on_connect(self, connection: WSChiaConnection) -> None:
"""
Whenever we connect to another node / wallet, send them our current heads. Also send heads to farmers
and challenges to timelords.
"""
self._state_changed("add_connection")
self._state_changed("sync_mode")
if self.full_node_peers is not None:
asyncio.create_task(self.full_node_peers.on_connect(connection))
if self.initialized is False:
return None
if connection.connection_type is NodeType.FULL_NODE:
# Send filter to node and request mempool items that are not in it (Only if we are currently synced)
synced = await self.synced()
peak_height = self.blockchain.get_peak_height()
if synced and peak_height is not None:
my_filter = self.mempool_manager.get_filter()
mempool_request = full_node_protocol.RequestMempoolTransactions(my_filter)
msg = make_msg(ProtocolMessageTypes.request_mempool_transactions, mempool_request)
await connection.send_message(msg)
peak_full: Optional[FullBlock] = await self.blockchain.get_full_peak()
if peak_full is not None:
peak: BlockRecord = self.blockchain.block_record(peak_full.header_hash)
if connection.connection_type is NodeType.FULL_NODE:
request_node = full_node_protocol.NewPeak(
peak.header_hash,
peak.height,
peak.weight,
peak.height,
peak_full.reward_chain_block.get_unfinished().get_hash(),
)
await connection.send_message(make_msg(ProtocolMessageTypes.new_peak, request_node))
elif connection.connection_type is NodeType.WALLET:
# If connected to a wallet, send the Peak
request_wallet = wallet_protocol.NewPeakWallet(
peak.header_hash,
peak.height,
peak.weight,
peak.height,
)
await connection.send_message(make_msg(ProtocolMessageTypes.new_peak_wallet, request_wallet))
elif connection.connection_type is NodeType.TIMELORD:
await self.send_peak_to_timelords()
async def on_disconnect(self, connection: WSChiaConnection) -> None:
self.log.info(f"peer disconnected {connection.get_peer_logging()}")
self._state_changed("close_connection")
self._state_changed("sync_mode")
if self.sync_store is not None:
self.sync_store.peer_disconnected(connection.peer_node_id)
# Remove all ph | coin id subscription for this peer
self.subscriptions.remove_peer(connection.peer_node_id)
async def _sync(self) -> None:
"""
Performs a full sync of the blockchain up to the peak.
- Wait a few seconds for peers to send us their peaks
- Select the heaviest peak, and request a weight proof from a peer with that peak
- Validate the weight proof, and disconnect from the peer if invalid
- Find the fork point to see where to start downloading blocks
- Download blocks in batch (and in parallel) and verify them one at a time
- Disconnect peers that provide invalid blocks or don't have the blocks
"""
# Ensure we are only syncing once and not double calling this method
if self.sync_store.get_sync_mode():
return None
if self.sync_store.get_long_sync():
self.log.debug("already in long sync")
return None
self.sync_store.set_long_sync(True)
self.log.debug("long sync started")
try:
self.log.info("Starting to perform sync.")
# Wait until we have 3 peaks or up to a max of 30 seconds
max_iterations = int(self.config.get("max_sync_wait", 30)) * 10
self.log.info(f"Waiting to receive peaks from peers. (timeout: {max_iterations / 10}s)")
peaks = []
for i in range(max_iterations):
peaks = [peak.header_hash for peak in self.sync_store.get_peak_of_each_peer().values()]
if len(self.sync_store.get_peers_that_have_peak(peaks)) < 3:
if self._shut_down:
return None
await asyncio.sleep(0.1)
continue
break
self.log.info(f"Collected a total of {len(peaks)} peaks.")
# Based on responses from peers about the current peaks, see which peak is the heaviest
# (similar to longest chain rule).
target_peak = self.sync_store.get_heaviest_peak()
if target_peak is None:
raise RuntimeError("Not performing sync, no peaks collected")
self.sync_store.target_peak = target_peak
self.log.info(f"Selected peak {target_peak}")
# Check which peers are updated to this height
peers = self.server.get_connections(NodeType.FULL_NODE)
coroutines = []
for peer in peers:
coroutines.append(
peer.call_api(
FullNodeAPI.request_block,
full_node_protocol.RequestBlock(target_peak.height, True),
timeout=10,
)
)
for i, target_peak_response in enumerate(await asyncio.gather(*coroutines)):
if target_peak_response is not None and isinstance(target_peak_response, RespondBlock):
self.sync_store.peer_has_block(
target_peak.header_hash, peers[i].peer_node_id, target_peak.weight, target_peak.height, False
)
# TODO: disconnect from peer which gave us the heaviest_peak, if nobody has the peak
fork_point, summaries = await self.request_validate_wp(
target_peak.header_hash, target_peak.height, target_peak.weight
)
# Ensures that the fork point does not change
async with self.blockchain.priority_mutex.acquire(priority=BlockchainMutexPriority.high):
await self.blockchain.warmup(fork_point)