386 lines
14 KiB
Python
386 lines
14 KiB
Python
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#!/usr/bin/env python3
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# bitcoind-monitor.py
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#
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# An exporter for Prometheus and Bitcoin Core.
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#
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# Copyright 2018 Kevin M. Gallagher
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# Copyright 2019,2020 Jeff Stein
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#
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# Published at https://github.com/jvstein/bitcoin-prometheus-exporter
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# Licensed under BSD 3-clause (see LICENSE).
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#
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# Dependency licenses (retrieved 2020-05-31):
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# prometheus_client: Apache 2.0
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# python-bitcoinlib: LGPLv3
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# riprova: MIT
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import json
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import logging
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import time
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import os
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import signal
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import sys
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import socket
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from datetime import datetime
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from functools import lru_cache
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from typing import Any
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from typing import Dict
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from typing import List
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from typing import Union
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from wsgiref.simple_server import make_server
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import riprova
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from bitcoin.rpc import JSONRPCError, InWarmupError, Proxy
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from prometheus_client import make_wsgi_app, Gauge, Counter
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logger = logging.getLogger("bitcoin-exporter")
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# Create Prometheus metrics to track bitcoind stats.
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BITCOIN_BLOCKS = Gauge("bitcoin_blocks", "Block height")
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BITCOIN_DIFFICULTY = Gauge("bitcoin_difficulty", "Difficulty")
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BITCOIN_PEERS = Gauge("bitcoin_peers", "Number of peers")
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BITCOIN_CONN_IN = Gauge("bitcoin_conn_in", "Number of connections in")
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BITCOIN_CONN_OUT = Gauge("bitcoin_conn_out", "Number of connections out")
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BITCOIN_HASHPS_NEG1 = Gauge(
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"bitcoin_hashps_neg1", "Estimated network hash rate per second since the last difficulty change"
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)
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BITCOIN_HASHPS_1 = Gauge(
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"bitcoin_hashps_1", "Estimated network hash rate per second for the last block"
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)
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BITCOIN_HASHPS = Gauge(
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"bitcoin_hashps", "Estimated network hash rate per second for the last 120 blocks"
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)
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BITCOIN_ESTIMATED_SMART_FEE_GAUGES = {} # type: Dict[int, Gauge]
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BITCOIN_WARNINGS = Counter("bitcoin_warnings", "Number of network or blockchain warnings detected")
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BITCOIN_UPTIME = Gauge("bitcoin_uptime", "Number of seconds the Bitcoin daemon has been running")
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BITCOIN_MEMINFO_USED = Gauge("bitcoin_meminfo_used", "Number of bytes used")
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BITCOIN_MEMINFO_FREE = Gauge("bitcoin_meminfo_free", "Number of bytes available")
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BITCOIN_MEMINFO_TOTAL = Gauge("bitcoin_meminfo_total", "Number of bytes managed")
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BITCOIN_MEMINFO_LOCKED = Gauge("bitcoin_meminfo_locked", "Number of bytes locked")
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BITCOIN_MEMINFO_CHUNKS_USED = Gauge("bitcoin_meminfo_chunks_used", "Number of allocated chunks")
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BITCOIN_MEMINFO_CHUNKS_FREE = Gauge("bitcoin_meminfo_chunks_free", "Number of unused chunks")
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BITCOIN_MEMPOOL_BYTES = Gauge("bitcoin_mempool_bytes", "Size of mempool in bytes")
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BITCOIN_MEMPOOL_SIZE = Gauge(
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"bitcoin_mempool_size", "Number of unconfirmed transactions in mempool"
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)
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BITCOIN_MEMPOOL_USAGE = Gauge("bitcoin_mempool_usage", "Total memory usage for the mempool")
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BITCOIN_MEMPOOL_UNBROADCAST = Gauge(
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"bitcoin_mempool_unbroadcast", "Number of transactions waiting for acknowledgment"
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)
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BITCOIN_LATEST_BLOCK_HEIGHT = Gauge(
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"bitcoin_latest_block_height", "Height or index of latest block"
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)
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BITCOIN_LATEST_BLOCK_WEIGHT = Gauge(
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"bitcoin_latest_block_weight", "Weight of latest block according to BIP 141"
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)
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BITCOIN_LATEST_BLOCK_SIZE = Gauge("bitcoin_latest_block_size", "Size of latest block in bytes")
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BITCOIN_LATEST_BLOCK_TXS = Gauge(
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"bitcoin_latest_block_txs", "Number of transactions in latest block"
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)
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BITCOIN_TXCOUNT = Gauge("bitcoin_txcount", "Number of TX since the genesis block")
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BITCOIN_NUM_CHAINTIPS = Gauge("bitcoin_num_chaintips", "Number of known blockchain branches")
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BITCOIN_TOTAL_BYTES_RECV = Gauge("bitcoin_total_bytes_recv", "Total bytes received")
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BITCOIN_TOTAL_BYTES_SENT = Gauge("bitcoin_total_bytes_sent", "Total bytes sent")
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BITCOIN_LATEST_BLOCK_INPUTS = Gauge(
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"bitcoin_latest_block_inputs", "Number of inputs in transactions of latest block"
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)
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BITCOIN_LATEST_BLOCK_OUTPUTS = Gauge(
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"bitcoin_latest_block_outputs", "Number of outputs in transactions of latest block"
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)
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BITCOIN_LATEST_BLOCK_VALUE = Gauge(
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"bitcoin_latest_block_value", "Bitcoin value of all transactions in the latest block"
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)
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BITCOIN_LATEST_BLOCK_FEE = Gauge(
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"bitcoin_latest_block_fee", "Total fee to process the latest block"
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)
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BITCOIN_BAN_CREATED = Gauge(
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"bitcoin_ban_created", "Time the ban was created", labelnames=["address", "reason"]
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)
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BITCOIN_BANNED_UNTIL = Gauge(
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"bitcoin_banned_until", "Time the ban expires", labelnames=["address", "reason"]
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)
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BITCOIN_SERVER_VERSION = Gauge("bitcoin_server_version", "The server version")
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BITCOIN_PROTOCOL_VERSION = Gauge("bitcoin_protocol_version", "The protocol version of the server")
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BITCOIN_SIZE_ON_DISK = Gauge("bitcoin_size_on_disk", "Estimated size of the block and undo files")
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BITCOIN_VERIFICATION_PROGRESS = Gauge(
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"bitcoin_verification_progress", "Estimate of verification progress [0..1]"
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)
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BITCOIN_RPC_ACTIVE = Gauge("bitcoin_rpc_active", "Number of RPC calls being processed")
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EXPORTER_ERRORS = Counter(
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"bitcoin_exporter_errors", "Number of errors encountered by the exporter", labelnames=["type"]
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)
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PROCESS_TIME = Counter(
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"bitcoin_exporter_process_time", "Time spent processing metrics from bitcoin node"
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)
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SATS_PER_COIN = 1e8
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BITCOIN_RPC_SCHEME = os.environ.get("BITCOIN_RPC_SCHEME", "http")
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BITCOIN_RPC_HOST = os.environ.get("BITCOIN_RPC_HOST", "localhost")
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BITCOIN_RPC_PORT = os.environ.get("BITCOIN_RPC_PORT", "8332")
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BITCOIN_RPC_USER = os.environ.get("BITCOIN_RPC_USER")
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BITCOIN_RPC_PASSWORD = os.environ.get("BITCOIN_RPC_PASSWORD")
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BITCOIN_CONF_PATH = os.environ.get("BITCOIN_CONF_PATH")
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SMART_FEES = [int(f) for f in os.environ.get("SMARTFEE_BLOCKS", "2,3,5,20").split(",")]
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METRICS_ADDR = os.environ.get("METRICS_ADDR", "") # empty = any address
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METRICS_PORT = int(os.environ.get("METRICS_PORT", "9332"))
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RETRIES = int(os.environ.get("RETRIES", 5))
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TIMEOUT = int(os.environ.get("TIMEOUT", 30))
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RATE_LIMIT_SECONDS = int(os.environ.get("RATE_LIMIT", 5))
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LOG_LEVEL = os.environ.get("LOG_LEVEL", "INFO")
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RETRY_EXCEPTIONS = (InWarmupError, ConnectionError, socket.timeout)
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RpcResult = Union[Dict[str, Any], List[Any], str, int, float, bool, None]
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def on_retry(err: Exception, next_try: float) -> None:
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err_type = type(err)
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exception_name = err_type.__module__ + "." + err_type.__name__
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EXPORTER_ERRORS.labels(**{"type": exception_name}).inc()
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logger.error("Retry after exception %s: %s", exception_name, err)
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def error_evaluator(e: Exception) -> bool:
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return isinstance(e, RETRY_EXCEPTIONS)
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@lru_cache(maxsize=1)
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def rpc_client_factory():
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# Configuration is done in this order of precedence:
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# - Explicit config file.
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# - BITCOIN_RPC_USER and BITCOIN_RPC_PASSWORD environment variables.
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# - Default bitcoin config file (as handled by Proxy.__init__).
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use_conf = (
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(BITCOIN_CONF_PATH is not None)
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or (BITCOIN_RPC_USER is None)
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or (BITCOIN_RPC_PASSWORD is None)
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)
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if use_conf:
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logger.info("Using config file: %s", BITCOIN_CONF_PATH or "<default>")
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return lambda: Proxy(btc_conf_file=BITCOIN_CONF_PATH, timeout=TIMEOUT)
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else:
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host = BITCOIN_RPC_HOST
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host = "{}:{}@{}".format(BITCOIN_RPC_USER, BITCOIN_RPC_PASSWORD, host)
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if BITCOIN_RPC_PORT:
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host = "{}:{}".format(host, BITCOIN_RPC_PORT)
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service_url = "{}://{}".format(BITCOIN_RPC_SCHEME, host)
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logger.info("Using environment configuration")
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return lambda: Proxy(service_url=service_url, timeout=TIMEOUT)
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def rpc_client():
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return rpc_client_factory()()
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@riprova.retry(
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timeout=TIMEOUT,
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backoff=riprova.ExponentialBackOff(),
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on_retry=on_retry,
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error_evaluator=error_evaluator,
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)
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def bitcoinrpc(*args) -> RpcResult:
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if logger.isEnabledFor(logging.DEBUG):
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logger.debug("RPC call: " + " ".join(str(a) for a in args))
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result = rpc_client().call(*args)
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logger.debug("Result: %s", result)
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return result
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@lru_cache(maxsize=1)
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def getblockstats(block_hash: str):
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try:
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block = bitcoinrpc(
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"getblockstats",
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block_hash,
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["total_size", "total_weight", "totalfee", "txs", "height", "ins", "outs", "total_out"],
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)
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except Exception:
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logger.exception("Failed to retrieve block " + block_hash + " statistics from bitcoind.")
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return None
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return block
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def smartfee_gauge(num_blocks: int) -> Gauge:
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gauge = BITCOIN_ESTIMATED_SMART_FEE_GAUGES.get(num_blocks)
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if gauge is None:
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gauge = Gauge(
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"bitcoin_est_smart_fee_%d" % num_blocks,
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"Estimated smart fee per kilobyte for confirmation in %d blocks" % num_blocks,
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)
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BITCOIN_ESTIMATED_SMART_FEE_GAUGES[num_blocks] = gauge
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return gauge
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def do_smartfee(num_blocks: int) -> None:
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smartfee = bitcoinrpc("estimatesmartfee", num_blocks).get("feerate")
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if smartfee is not None:
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gauge = smartfee_gauge(num_blocks)
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gauge.set(smartfee)
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def refresh_metrics() -> None:
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uptime = int(bitcoinrpc("uptime"))
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meminfo = bitcoinrpc("getmemoryinfo", "stats")["locked"]
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blockchaininfo = bitcoinrpc("getblockchaininfo")
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networkinfo = bitcoinrpc("getnetworkinfo")
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chaintips = len(bitcoinrpc("getchaintips"))
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mempool = bitcoinrpc("getmempoolinfo")
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nettotals = bitcoinrpc("getnettotals")
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rpcinfo = bitcoinrpc("getrpcinfo")
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txstats = bitcoinrpc("getchaintxstats")
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latest_blockstats = getblockstats(str(blockchaininfo["bestblockhash"]))
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hashps_120 = float(bitcoinrpc("getnetworkhashps", 120)) # 120 is the default
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hashps_neg1 = float(bitcoinrpc("getnetworkhashps", -1))
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hashps_1 = float(bitcoinrpc("getnetworkhashps", 1))
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banned = bitcoinrpc("listbanned")
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BITCOIN_UPTIME.set(uptime)
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BITCOIN_BLOCKS.set(blockchaininfo["blocks"])
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BITCOIN_PEERS.set(networkinfo["connections"])
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if "connections_in" in networkinfo:
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BITCOIN_CONN_IN.set(networkinfo["connections_in"])
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if "connections_out" in networkinfo:
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BITCOIN_CONN_OUT.set(networkinfo["connections_out"])
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BITCOIN_DIFFICULTY.set(blockchaininfo["difficulty"])
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BITCOIN_HASHPS.set(hashps_120)
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BITCOIN_HASHPS_NEG1.set(hashps_neg1)
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BITCOIN_HASHPS_1.set(hashps_1)
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BITCOIN_SERVER_VERSION.set(networkinfo["version"])
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BITCOIN_PROTOCOL_VERSION.set(networkinfo["protocolversion"])
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BITCOIN_SIZE_ON_DISK.set(blockchaininfo["size_on_disk"])
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BITCOIN_VERIFICATION_PROGRESS.set(blockchaininfo["verificationprogress"])
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for smartfee in SMART_FEES:
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do_smartfee(smartfee)
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for ban in banned:
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BITCOIN_BAN_CREATED.labels(
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address=ban["address"], reason=ban.get("ban_reason", "manually added")
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).set(ban["ban_created"])
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BITCOIN_BANNED_UNTIL.labels(
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address=ban["address"], reason=ban.get("ban_reason", "manually added")
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).set(ban["banned_until"])
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if networkinfo["warnings"]:
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BITCOIN_WARNINGS.inc()
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BITCOIN_TXCOUNT.set(txstats["txcount"])
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BITCOIN_NUM_CHAINTIPS.set(chaintips)
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BITCOIN_MEMINFO_USED.set(meminfo["used"])
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BITCOIN_MEMINFO_FREE.set(meminfo["free"])
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BITCOIN_MEMINFO_TOTAL.set(meminfo["total"])
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BITCOIN_MEMINFO_LOCKED.set(meminfo["locked"])
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BITCOIN_MEMINFO_CHUNKS_USED.set(meminfo["chunks_used"])
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BITCOIN_MEMINFO_CHUNKS_FREE.set(meminfo["chunks_free"])
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BITCOIN_MEMPOOL_BYTES.set(mempool["bytes"])
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BITCOIN_MEMPOOL_SIZE.set(mempool["size"])
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BITCOIN_MEMPOOL_USAGE.set(mempool["usage"])
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if "unbroadcastcount" in mempool:
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BITCOIN_MEMPOOL_UNBROADCAST.set(mempool["unbroadcastcount"])
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BITCOIN_TOTAL_BYTES_RECV.set(nettotals["totalbytesrecv"])
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BITCOIN_TOTAL_BYTES_SENT.set(nettotals["totalbytessent"])
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if latest_blockstats is not None:
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BITCOIN_LATEST_BLOCK_SIZE.set(latest_blockstats["total_size"])
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BITCOIN_LATEST_BLOCK_TXS.set(latest_blockstats["txs"])
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BITCOIN_LATEST_BLOCK_HEIGHT.set(latest_blockstats["height"])
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BITCOIN_LATEST_BLOCK_WEIGHT.set(latest_blockstats["total_weight"])
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BITCOIN_LATEST_BLOCK_INPUTS.set(latest_blockstats["ins"])
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BITCOIN_LATEST_BLOCK_OUTPUTS.set(latest_blockstats["outs"])
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BITCOIN_LATEST_BLOCK_VALUE.set(latest_blockstats["total_out"] / SATS_PER_COIN)
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BITCOIN_LATEST_BLOCK_FEE.set(latest_blockstats["totalfee"] / SATS_PER_COIN)
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# Subtract one because we don't want to count the "getrpcinfo" call itself
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BITCOIN_RPC_ACTIVE.set(len(rpcinfo["active_commands"]) - 1)
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def sigterm_handler(signal, frame) -> None:
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logger.critical("Received SIGTERM. Exiting.")
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sys.exit(0)
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def exception_count(e: Exception) -> None:
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err_type = type(e)
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exception_name = err_type.__module__ + "." + err_type.__name__
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EXPORTER_ERRORS.labels(**{"type": exception_name}).inc()
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def main():
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# Set up logging to look similar to bitcoin logs (UTC).
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logging.basicConfig(
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format="%(asctime)s %(levelname)s %(message)s", datefmt="%Y-%m-%dT%H:%M:%SZ"
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)
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logging.Formatter.converter = time.gmtime
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logger.setLevel(LOG_LEVEL)
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# Handle SIGTERM gracefully.
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signal.signal(signal.SIGTERM, sigterm_handler)
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app = make_wsgi_app()
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last_refresh = datetime.fromtimestamp(0)
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def refresh_app(*args, **kwargs):
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nonlocal last_refresh
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process_start = datetime.now()
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# Only refresh every RATE_LIMIT_SECONDS seconds.
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if (process_start - last_refresh).total_seconds() < RATE_LIMIT_SECONDS:
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return app(*args, **kwargs)
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# Allow riprova.MaxRetriesExceeded and unknown exceptions to crash the process.
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try:
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refresh_metrics()
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except riprova.exceptions.RetryError as e:
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logger.error("Refresh failed during retry. Cause: " + str(e))
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exception_count(e)
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except JSONRPCError as e:
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logger.debug("Bitcoin RPC error refresh", exc_info=True)
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exception_count(e)
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except json.decoder.JSONDecodeError as e:
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logger.error("RPC call did not return JSON. Bad credentials? " + str(e))
|
||
|
sys.exit(1)
|
||
|
|
||
|
duration = datetime.now() - process_start
|
||
|
PROCESS_TIME.inc(duration.total_seconds())
|
||
|
logger.info("Refresh took %s seconds", duration)
|
||
|
last_refresh = process_start
|
||
|
|
||
|
return app(*args, **kwargs)
|
||
|
|
||
|
httpd = make_server(METRICS_ADDR, METRICS_PORT, refresh_app)
|
||
|
httpd.serve_forever()
|
||
|
|
||
|
|
||
|
if __name__ == "__main__":
|
||
|
main()
|