mirror of
https://github.com/LiteyukiStudio/LiteyukiBot.git
synced 2024-11-30 09:05:10 +08:00
201 lines
5.9 KiB
Python
201 lines
5.9 KiB
Python
# -*- coding: utf-8 -*-
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"""
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Copyright (C) 2020-2024 LiteyukiStudio. All Rights Reserved
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@Time : 2024/7/27 上午11:12
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@Author : snowykami
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@Email : snowykami@outlook.com
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@File : manager.py
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@Software: PyCharm
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"""
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import threading
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from multiprocessing import Process
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from typing import Any, Callable, TYPE_CHECKING, TypeAlias
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from liteyuki.comm.channel import Channel, get_channel, set_channels
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from liteyuki.comm.storage import shared_memory
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from liteyuki.log import logger
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from liteyuki.utils import IS_MAIN_PROCESS
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if TYPE_CHECKING:
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from liteyuki.bot.lifespan import Lifespan
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from liteyuki.comm.storage import KeyValueStore
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if IS_MAIN_PROCESS:
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from liteyuki.comm.channel import channel_deliver_active_channel, channel_deliver_passive_channel
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else:
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from liteyuki.comm import channel
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TARGET_FUNC: TypeAlias = Callable[..., Any]
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TIMEOUT = 10
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__all__ = [
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"ProcessManager"
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]
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class ChannelDeliver:
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def __init__(
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self,
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active: Channel[Any],
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passive: Channel[Any],
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channel_deliver_active: Channel[Channel[Any]],
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channel_deliver_passive: Channel[tuple[str, dict]]
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):
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self.active = active
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self.passive = passive
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self.channel_deliver_active = channel_deliver_active
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self.channel_deliver_passive = channel_deliver_passive
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# 函数处理一些跨进程通道的
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def _delivery_channel_wrapper(func: TARGET_FUNC, cd: ChannelDeliver, sm: "KeyValueStore", *args, **kwargs):
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"""
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子进程入口函数
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处理一些操作
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"""
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# 给子进程设置通道
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if IS_MAIN_PROCESS:
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raise RuntimeError("Function should only be called in a sub process.")
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channel.active_channel = cd.active # 子进程主动通道
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channel.passive_channel = cd.passive # 子进程被动通道
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channel.channel_deliver_active_channel = cd.channel_deliver_active # 子进程通道传递主动通道
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channel.channel_deliver_passive_channel = cd.channel_deliver_passive # 子进程通道传递被动通道
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# 给子进程创建共享内存实例
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from liteyuki.comm import storage
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storage.shared_memory = sm
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func(*args, **kwargs)
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class ProcessManager:
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"""
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进程管理器
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"""
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def __init__(self, lifespan: "Lifespan"):
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self.lifespan = lifespan
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self.targets: dict[str, tuple[Callable, tuple, dict]] = {}
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self.processes: dict[str, Process] = {}
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def start(self, name: str):
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"""
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开启后自动监控进程,并添加到进程字典中
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Args:
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name:
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Returns:
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"""
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if name not in self.targets:
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raise KeyError(f"Process {name} not found.")
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chan_active = get_channel(f"{name}-active")
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def _start_process():
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process = Process(target=self.targets[name][0], args=self.targets[name][1],
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kwargs=self.targets[name][2], daemon=True)
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self.processes[name] = process
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process.start()
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# 启动进程并监听信号
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_start_process()
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while True:
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data = chan_active.receive()
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if data == 0:
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# 停止
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logger.info(f"Stopping process {name}")
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self.lifespan.before_process_shutdown()
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self.terminate(name)
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break
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elif data == 1:
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# 重启
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logger.info(f"Restarting process {name}")
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self.lifespan.before_process_shutdown()
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self.lifespan.before_process_restart()
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self.terminate(name)
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_start_process()
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continue
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else:
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logger.warning("Unknown data received, ignored.")
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def start_all(self):
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"""
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启动所有进程
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"""
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for name in self.targets:
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threading.Thread(target=self.start, args=(name,), daemon=True).start()
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def add_target(self, name: str, target: TARGET_FUNC, args: tuple = (), kwargs=None):
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"""
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添加进程
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Args:
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name: 进程名,用于获取和唯一标识
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target: 进程函数
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args: 进程函数参数
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kwargs: 进程函数关键字参数,通常会默认传入chan_active和chan_passive
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"""
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if kwargs is None:
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kwargs = {}
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chan_active: Channel = Channel(_id=f"{name}-active")
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chan_passive: Channel = Channel(_id=f"{name}-passive")
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channel_deliver = ChannelDeliver(
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active=chan_active,
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passive=chan_passive,
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channel_deliver_active=channel_deliver_active_channel,
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channel_deliver_passive=channel_deliver_passive_channel
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)
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self.targets[name] = (_delivery_channel_wrapper, (target, channel_deliver, shared_memory, *args), kwargs)
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# 主进程通道
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set_channels(
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{
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f"{name}-active" : chan_active,
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f"{name}-passive": chan_passive
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}
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)
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def join_all(self):
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for name, process in self.targets:
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process.join()
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def terminate(self, name: str):
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"""
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终止进程并从进程字典中删除
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Args:
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name:
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Returns:
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"""
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if name not in self.processes:
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logger.warning(f"Process {name} not found.")
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return
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process = self.processes[name]
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process.terminate()
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process.join(TIMEOUT)
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if process.is_alive():
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process.kill()
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logger.success(f"Process {name} terminated.")
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def terminate_all(self):
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for name in self.targets:
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self.terminate(name)
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def is_process_alive(self, name: str) -> bool:
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"""
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检查进程是否存活
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Args:
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name:
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Returns:
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"""
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if name not in self.targets:
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logger.warning(f"Process {name} not found.")
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return self.processes[name].is_alive()
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