mirror of
https://github.com/nonebot/nonebot2.git
synced 2024-12-01 01:25:07 +08:00
523 lines
17 KiB
Python
523 lines
17 KiB
Python
"""
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事件响应器
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==========
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该模块实现事件响应器的创建与运行,并提供一些快捷方法来帮助用户更好的与机器人进行 对话 。
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"""
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import inspect
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from functools import wraps
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from datetime import datetime
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from contextvars import ContextVar
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from collections import defaultdict
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from typing import Type, List, Dict, Union, Callable, Optional, NoReturn, TYPE_CHECKING
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from nonebot.rule import Rule
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from nonebot.log import logger
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from nonebot.permission import Permission, USER
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from nonebot.typing import T_State, T_StateFactory, T_Handler, T_ArgsParser
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from nonebot.exception import PausedException, RejectedException, FinishedException, StopPropagation
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if TYPE_CHECKING:
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from nonebot.adapters import Bot, Event, Message, MessageSegment
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matchers: Dict[int, List[Type["Matcher"]]] = defaultdict(list)
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"""
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:类型: ``Dict[int, List[Type[Matcher]]]``
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:说明: 用于存储当前所有的事件响应器
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"""
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current_bot: ContextVar = ContextVar("current_bot")
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current_event: ContextVar = ContextVar("current_event")
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class MatcherMeta(type):
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def __repr__(self) -> str:
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return (f"<Matcher from {self.module or 'unknow'}, " # type: ignore
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f"type={self.type}, priority={self.priority}, " # type: ignore
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f"temp={self.temp}>") # type: ignore
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def __str__(self) -> str:
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return repr(self)
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class Matcher(metaclass=MatcherMeta):
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"""事件响应器类"""
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module: Optional[str] = None
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"""
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:类型: ``Optional[str]``
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:说明: 事件响应器所在模块名称
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"""
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type: str = ""
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"""
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:类型: ``str``
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:说明: 事件响应器类型
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"""
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rule: Rule = Rule()
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"""
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:类型: ``Rule``
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:说明: 事件响应器匹配规则
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"""
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permission: Permission = Permission()
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"""
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:类型: ``Permission``
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:说明: 事件响应器触发权限
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"""
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handlers: List[T_Handler] = []
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"""
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:类型: ``List[T_Handler]``
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:说明: 事件响应器拥有的事件处理函数列表
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"""
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priority: int = 1
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"""
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:类型: ``int``
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:说明: 事件响应器优先级
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"""
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block: bool = False
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"""
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:类型: ``bool``
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:说明: 事件响应器是否阻止事件传播
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"""
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temp: bool = False
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"""
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:类型: ``bool``
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:说明: 事件响应器是否为临时
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"""
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expire_time: Optional[datetime] = None
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"""
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:类型: ``Optional[datetime]``
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:说明: 事件响应器过期时间点
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"""
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_default_state: T_State = {}
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"""
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:类型: ``T_State``
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:说明: 事件响应器默认状态
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"""
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_default_state_factory: Optional[T_StateFactory] = None
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"""
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:类型: ``Optional[T_State]``
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:说明: 事件响应器默认工厂函数
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"""
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_default_parser: Optional[T_ArgsParser] = None
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"""
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:类型: ``Optional[T_ArgsParser]``
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:说明: 事件响应器默认参数解析函数
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"""
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def __init__(self):
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"""实例化 Matcher 以便运行"""
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self.handlers = self.handlers.copy()
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self.state = self._default_state.copy()
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def __repr__(self) -> str:
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return (f"<Matcher from {self.module or 'unknow'}, type={self.type}, "
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f"priority={self.priority}, temp={self.temp}>")
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def __str__(self) -> str:
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return self.__repr__()
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@classmethod
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def new(cls,
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type_: str = "",
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rule: Optional[Rule] = None,
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permission: Optional[Permission] = None,
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handlers: Optional[List[T_Handler]] = None,
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temp: bool = False,
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priority: int = 1,
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block: bool = False,
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*,
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module: Optional[str] = None,
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default_state: Optional[T_State] = None,
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default_state_factory: Optional[T_StateFactory] = None,
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expire_time: Optional[datetime] = None) -> Type["Matcher"]:
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"""
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:说明:
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创建一个新的事件响应器,并存储至 `matchers <#matchers>`_
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:参数:
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* ``type_: str``: 事件响应器类型,与 ``event.type`` 一致时触发,空字符串表示任意
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* ``rule: Optional[Rule]``: 匹配规则
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* ``permission: Optional[Permission]``: 权限
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* ``handlers: Optional[List[T_Handler]]``: 事件处理函数列表
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* ``temp: bool``: 是否为临时事件响应器,即触发一次后删除
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* ``priority: int``: 响应优先级
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* ``block: bool``: 是否阻止事件向更低优先级的响应器传播
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* ``module: Optional[str]``: 事件响应器所在模块名称
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* ``default_state: Optional[T_State]``: 默认状态 ``state``
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* ``default_state_factory: Optional[T_StateFactory]``: 默认状态 ``state`` 的工厂函数
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* ``expire_time: Optional[datetime]``: 事件响应器最终有效时间点,过时即被删除
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:返回:
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- ``Type[Matcher]``: 新的事件响应器类
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"""
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NewMatcher = type(
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"Matcher", (Matcher,), {
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"module":
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module,
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"type":
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type_,
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"rule":
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rule or Rule(),
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"permission":
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permission or Permission(),
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"handlers":
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handlers or [],
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"temp":
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temp,
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"expire_time":
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expire_time,
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"priority":
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priority,
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"block":
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block,
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"_default_state":
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default_state or {},
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"_default_state_factory":
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staticmethod(default_state_factory)
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if default_state_factory else None
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})
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matchers[priority].append(NewMatcher)
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return NewMatcher
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@classmethod
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async def check_perm(cls, bot: "Bot", event: "Event") -> bool:
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"""
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:说明:
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检查是否满足触发权限
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:参数:
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* ``bot: Bot``: Bot 对象
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* ``event: Event``: 上报事件
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:返回:
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- ``bool``: 是否满足权限
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"""
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return await cls.permission(bot, event)
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@classmethod
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async def check_rule(cls, bot: "Bot", event: "Event",
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state: T_State) -> bool:
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"""
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:说明:
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检查是否满足匹配规则
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:参数:
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* ``bot: Bot``: Bot 对象
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* ``event: Event``: 上报事件
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* ``state: T_State``: 当前状态
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:返回:
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- ``bool``: 是否满足匹配规则
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"""
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event_type = event.get_type()
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return (event_type == (cls.type or event_type) and
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await cls.rule(bot, event, state))
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@classmethod
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def args_parser(cls, func: T_ArgsParser) -> T_ArgsParser:
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"""
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:说明:
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装饰一个函数来更改当前事件响应器的默认参数解析函数
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:参数:
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* ``func: T_ArgsParser``: 参数解析函数
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"""
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cls._default_parser = func
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return func
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@staticmethod
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def process_handler(handler: T_Handler) -> T_Handler:
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signature = inspect.signature(handler, follow_wrapped=False)
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bot = signature.parameters.get("bot")
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event = signature.parameters.get("event")
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state = signature.parameters.get("state")
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matcher = signature.parameters.get("matcher")
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if not bot:
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raise ValueError("Handler missing parameter 'bot'")
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handler.__params__ = {
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"bot": bot.annotation,
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"event": event.annotation if event else None,
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"state": T_State if state else None,
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"matcher": matcher.annotation if matcher else None
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}
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return handler
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@classmethod
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def append_handler(cls, handler: T_Handler) -> None:
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# Process handler first
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cls.handlers.append(cls.process_handler(handler))
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@classmethod
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def handle(cls) -> Callable[[T_Handler], T_Handler]:
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"""
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:说明:
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装饰一个函数来向事件响应器直接添加一个处理函数
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:参数:
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* 无
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"""
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def _decorator(func: T_Handler) -> T_Handler:
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cls.append_handler(func)
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return func
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return _decorator
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@classmethod
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def receive(cls) -> Callable[[T_Handler], T_Handler]:
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"""
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:说明:
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装饰一个函数来指示 NoneBot 在接收用户新的一条消息后继续运行该函数
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:参数:
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* 无
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"""
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async def _receive(bot: "Bot", event: "Event",
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state: T_State) -> NoReturn:
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raise PausedException
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if cls.handlers:
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# 已有前置handlers则接受一条新的消息,否则视为接收初始消息
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cls.append_handler(_receive)
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def _decorator(func: T_Handler) -> T_Handler:
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if not cls.handlers or cls.handlers[-1] is not func:
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cls.append_handler(func)
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return func
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return _decorator
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@classmethod
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def got(
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cls,
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key: str,
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prompt: Optional[Union[str, "Message", "MessageSegment"]] = None,
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args_parser: Optional[T_ArgsParser] = None
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) -> Callable[[T_Handler], T_Handler]:
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"""
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:说明:
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装饰一个函数来指示 NoneBot 当要获取的 ``key`` 不存在时接收用户新的一条消息并经过 ``ArgsParser`` 处理后再运行该函数,如果 ``key`` 已存在则直接继续运行
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:参数:
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* ``key: str``: 参数名
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* ``prompt: Optional[Union[str, Message, MessageSegment]]``: 在参数不存在时向用户发送的消息
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* ``args_parser: Optional[T_ArgsParser]``: 可选参数解析函数,空则使用默认解析函数
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"""
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async def _key_getter(bot: "Bot", event: "Event", state: T_State):
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state["_current_key"] = key
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if key not in state:
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if prompt:
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await bot.send(event=event,
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message=str(prompt).format(**state))
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raise PausedException
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else:
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state["_skip_key"] = True
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async def _key_parser(bot: "Bot", event: "Event", state: T_State):
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if key in state and state.get("_skip_key"):
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del state["_skip_key"]
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return
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parser = args_parser or cls._default_parser
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if parser:
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# parser = cast(T_ArgsParser["Bot", "Event"], parser)
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await parser(bot, event, state)
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else:
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state[state["_current_key"]] = str(event.get_message())
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cls.append_handler(_key_getter)
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cls.append_handler(_key_parser)
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def _decorator(func: T_Handler) -> T_Handler:
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if not hasattr(cls.handlers[-1], "__wrapped__"):
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cls.process_handler(func)
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parser = cls.handlers.pop()
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@wraps(func)
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async def wrapper(bot: "Bot", event: "Event", state: T_State,
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matcher: Matcher):
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await matcher.run_handler(parser, bot, event, state)
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await matcher.run_handler(func, bot, event, state)
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if "_current_key" in state:
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del state["_current_key"]
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cls.append_handler(wrapper)
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return func
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return _decorator
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@classmethod
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async def send(cls, message: Union[str, "Message", "MessageSegment"],
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**kwargs):
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"""
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:说明:
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发送一条消息给当前交互用户
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:参数:
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* ``message: Union[str, Message, MessageSegment]``: 消息内容
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* ``**kwargs``: 其他传递给 ``bot.send`` 的参数,请参考对应 adapter 的 bot 对象 api
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"""
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bot = current_bot.get()
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event = current_event.get()
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await bot.send(event=event, message=message, **kwargs)
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@classmethod
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async def finish(cls,
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message: Optional[Union[str, "Message",
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"MessageSegment"]] = None,
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**kwargs) -> NoReturn:
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"""
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:说明:
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发送一条消息给当前交互用户并结束当前事件响应器
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:参数:
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* ``message: Union[str, Message, MessageSegment]``: 消息内容
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* ``**kwargs``: 其他传递给 ``bot.send`` 的参数,请参考对应 adapter 的 bot 对象 api
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"""
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bot = current_bot.get()
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event = current_event.get()
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if message:
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await bot.send(event=event, message=message, **kwargs)
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raise FinishedException
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@classmethod
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async def pause(cls,
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prompt: Optional[Union[str, "Message",
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"MessageSegment"]] = None,
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**kwargs) -> NoReturn:
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"""
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:说明:
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发送一条消息给当前交互用户并暂停事件响应器,在接收用户新的一条消息后继续下一个处理函数
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:参数:
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* ``prompt: Union[str, Message, MessageSegment]``: 消息内容
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* ``**kwargs``: 其他传递给 ``bot.send`` 的参数,请参考对应 adapter 的 bot 对象 api
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"""
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bot = current_bot.get()
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event = current_event.get()
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if prompt:
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await bot.send(event=event, message=prompt, **kwargs)
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raise PausedException
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@classmethod
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async def reject(cls,
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prompt: Optional[Union[str, "Message",
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"MessageSegment"]] = None,
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**kwargs) -> NoReturn:
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"""
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:说明:
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发送一条消息给当前交互用户并暂停事件响应器,在接收用户新的一条消息后重新运行当前处理函数
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:参数:
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* ``prompt: Union[str, Message, MessageSegment]``: 消息内容
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* ``**kwargs``: 其他传递给 ``bot.send`` 的参数,请参考对应 adapter 的 bot 对象 api
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"""
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bot = current_bot.get()
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event = current_event.get()
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if prompt:
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await bot.send(event=event, message=prompt, **kwargs)
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raise RejectedException
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def stop_propagation(self):
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self.block = True
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async def run_handler(self, handler: T_Handler, bot: "Bot", event: "Event",
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state: T_State):
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if not hasattr(handler, "__params__"):
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self.process_handler(handler)
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params = getattr(handler, "__params__")
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BotType = ((params["bot"] is not inspect.Parameter.empty) and
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inspect.isclass(params["bot"]) and params["bot"])
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EventType = ((params["event"] is not inspect.Parameter.empty) and
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inspect.isclass(params["event"]) and params["event"])
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if (BotType and not isinstance(bot, BotType)) or (
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EventType and not isinstance(event, EventType)):
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return
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args = {"bot": bot, "event": event, "state": state, "matcher": self}
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await handler(
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**{k: v for k, v in args.items() if params[k] is not None})
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# 运行handlers
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async def run(self, bot: "Bot", event: "Event", state: T_State):
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b_t = current_bot.set(bot)
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e_t = current_event.set(event)
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try:
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# Refresh preprocess state
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state_ = await self._default_state_factory(
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bot, event) if self._default_state_factory else self.state
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state_.update(state)
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for _ in range(len(self.handlers)):
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handler = self.handlers.pop(0)
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await self.run_handler(handler, bot, event, state_)
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except RejectedException:
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self.handlers.insert(0, handler) # type: ignore
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Matcher.new(
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self.type,
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Rule(),
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USER(event.get_session_id(),
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perm=self.permission), # type:ignore
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self.handlers,
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temp=True,
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priority=0,
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block=True,
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module=self.module,
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default_state=self.state,
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expire_time=datetime.now() + bot.config.session_expire_timeout)
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except PausedException:
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Matcher.new(
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self.type,
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Rule(),
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USER(event.get_session_id(),
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perm=self.permission), # type:ignore
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self.handlers,
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temp=True,
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priority=0,
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||
block=True,
|
||
module=self.module,
|
||
default_state=self.state,
|
||
expire_time=datetime.now() + bot.config.session_expire_timeout)
|
||
except FinishedException:
|
||
pass
|
||
except StopPropagation:
|
||
self.block = True
|
||
finally:
|
||
logger.info(f"Matcher {self} running complete")
|
||
current_bot.reset(b_t)
|
||
current_event.reset(e_t)
|