stable/freqtrade/worker.py

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"""
Main Freqtrade worker class.
"""
import logging
import time
import traceback
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from os import getpid
from typing import Any, Callable, Dict, Optional
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import sdnotify
from freqtrade import __version__, constants
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from freqtrade.configuration import Configuration
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from freqtrade.enums import State
from freqtrade.exceptions import OperationalException, TemporaryError
from freqtrade.freqtradebot import FreqtradeBot
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logger = logging.getLogger(__name__)
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class Worker:
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"""
Freqtradebot worker class
"""
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def __init__(self, args: Dict[str, Any], config: Dict[str, Any] = None) -> None:
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"""
Init all variables and objects the bot needs to work
"""
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logger.info(f"Starting worker {__version__}")
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self._args = args
self._config = config
self._init(False)
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self.last_throttle_start_time: float = 0
self._heartbeat_msg: float = 0
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# Tell systemd that we completed initialization phase
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self._notify("READY=1")
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def _init(self, reconfig: bool) -> None:
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"""
Also called from the _reconfigure() method (with reconfig=True).
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"""
if reconfig or self._config is None:
# Load configuration
self._config = Configuration(self._args, None).get_config()
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# Init the instance of the bot
self.freqtrade = FreqtradeBot(self._config)
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internals_config = self._config.get('internals', {})
self._throttle_secs = internals_config.get('process_throttle_secs',
constants.PROCESS_THROTTLE_SECS)
self._heartbeat_interval = internals_config.get('heartbeat_interval', 60)
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self._sd_notify = sdnotify.SystemdNotifier() if \
self._config.get('internals', {}).get('sd_notify', False) else None
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def _notify(self, message: str) -> None:
"""
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Removes the need to verify in all occurrences if sd_notify is enabled
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:param message: Message to send to systemd if it's enabled.
"""
if self._sd_notify:
logger.debug(f"sd_notify: {message}")
self._sd_notify.notify(message)
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def run(self) -> None:
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state = None
while True:
state = self._worker(old_state=state)
if state == State.RELOAD_CONFIG:
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self._reconfigure()
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def _worker(self, old_state: Optional[State]) -> State:
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"""
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The main routine that runs each throttling iteration and handles the states.
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:param old_state: the previous service state from the previous call
:return: current service state
"""
state = self.freqtrade.state
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# Log state transition
if state != old_state:
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self.freqtrade.notify_status(f'{state.name.lower()}')
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logger.info(f"Changing state to: {state.name}")
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if state == State.RUNNING:
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self.freqtrade.startup()
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if state == State.STOPPED:
self.freqtrade.check_for_open_trades()
# Reset heartbeat timestamp to log the heartbeat message at
# first throttling iteration when the state changes
self._heartbeat_msg = 0
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if state == State.STOPPED:
# Ping systemd watchdog before sleeping in the stopped state
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self._notify("WATCHDOG=1\nSTATUS=State: STOPPED.")
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self._throttle(func=self._process_stopped, throttle_secs=self._throttle_secs)
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elif state == State.RUNNING:
# Ping systemd watchdog before throttling
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self._notify("WATCHDOG=1\nSTATUS=State: RUNNING.")
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self._throttle(func=self._process_running, throttle_secs=self._throttle_secs)
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if self._heartbeat_interval:
now = time.time()
if (now - self._heartbeat_msg) > self._heartbeat_interval:
version = __version__
strategy_version = self.freqtrade.strategy.version()
if (strategy_version != None):
version += ', strategy_version: ' + strategy_version
logger.info(f"Bot heartbeat. PID={getpid()}, "
f"version='{version}', state='{state.name}'")
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self._heartbeat_msg = now
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return state
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def _throttle(self, func: Callable[..., Any], throttle_secs: float, *args, **kwargs) -> Any:
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"""
Throttles the given callable that it
takes at least `min_secs` to finish execution.
:param func: Any callable
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:param throttle_secs: throttling interation execution time limit in seconds
:return: Any (result of execution of func)
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"""
self.last_throttle_start_time = time.time()
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logger.debug("========================================")
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result = func(*args, **kwargs)
time_passed = time.time() - self.last_throttle_start_time
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sleep_duration = max(throttle_secs - time_passed, 0.0)
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logger.debug(f"Throttling with '{func.__name__}()': sleep for {sleep_duration:.2f} s, "
f"last iteration took {time_passed:.2f} s.")
time.sleep(sleep_duration)
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return result
def _process_stopped(self) -> None:
self.freqtrade.process_stopped()
def _process_running(self) -> None:
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try:
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self.freqtrade.process()
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except TemporaryError as error:
logger.warning(f"Error: {error}, retrying in {constants.RETRY_TIMEOUT} seconds...")
time.sleep(constants.RETRY_TIMEOUT)
except OperationalException:
tb = traceback.format_exc()
hint = 'Issue `/start` if you think it is safe to restart.'
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self.freqtrade.notify_status(f'OperationalException:\n```\n{tb}```{hint}')
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logger.exception('OperationalException. Stopping trader ...')
self.freqtrade.state = State.STOPPED
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def _reconfigure(self) -> None:
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"""
Cleans up current freqtradebot instance, reloads the configuration and
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replaces it with the new instance
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"""
# Tell systemd that we initiated reconfiguration
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self._notify("RELOADING=1")
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# Clean up current freqtrade modules
self.freqtrade.cleanup()
# Load and validate config and create new instance of the bot
self._init(True)
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self.freqtrade.notify_status('config reloaded')
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# Tell systemd that we completed reconfiguration
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self._notify("READY=1")
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def exit(self) -> None:
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# Tell systemd that we are exiting now
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self._notify("STOPPING=1")
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if self.freqtrade:
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self.freqtrade.notify_status('process died')
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self.freqtrade.cleanup()