mirror of
https://github.com/eternnoir/pyTelegramBotAPI.git
synced 2023-08-10 21:12:57 +03:00
521 lines
15 KiB
Python
521 lines
15 KiB
Python
# -*- coding: utf-8 -*-
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import random
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import re
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import string
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import threading
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import traceback
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from typing import Any, Callable, List, Dict, Optional, Union
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# noinspection PyPep8Naming
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import queue as Queue
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import logging
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from telebot import types
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try:
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import ujson as json
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except ImportError:
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import json
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try:
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# noinspection PyPackageRequirements
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from PIL import Image
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from io import BytesIO
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pil_imported = True
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except:
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pil_imported = False
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MAX_MESSAGE_LENGTH = 4096
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logger = logging.getLogger('TeleBot')
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thread_local = threading.local()
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content_type_media = [
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'text', 'audio', 'animation', 'document', 'photo', 'sticker', 'video', 'video_note', 'voice', 'contact', 'dice', 'poll',
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'venue', 'location'
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]
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content_type_service = [
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'new_chat_members', 'left_chat_member', 'new_chat_title', 'new_chat_photo', 'delete_chat_photo', 'group_chat_created',
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'supergroup_chat_created', 'channel_chat_created', 'migrate_to_chat_id', 'migrate_from_chat_id', 'pinned_message',
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'proximity_alert_triggered', 'video_chat_scheduled', 'video_chat_started', 'video_chat_ended',
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'video_chat_participants_invited', 'message_auto_delete_timer_changed'
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]
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update_types = [
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"update_id", "message", "edited_message", "channel_post", "edited_channel_post", "inline_query",
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"chosen_inline_result", "callback_query", "shipping_query", "pre_checkout_query", "poll", "poll_answer",
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"my_chat_member", "chat_member", "chat_join_request"
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]
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class WorkerThread(threading.Thread):
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count = 0
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def __init__(self, exception_callback=None, queue=None, name=None):
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if not name:
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name = "WorkerThread{0}".format(self.__class__.count + 1)
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self.__class__.count += 1
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if not queue:
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queue = Queue.Queue()
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threading.Thread.__init__(self, name=name)
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self.queue = queue
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self.daemon = True
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self.received_task_event = threading.Event()
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self.done_event = threading.Event()
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self.exception_event = threading.Event()
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self.continue_event = threading.Event()
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self.exception_callback = exception_callback
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self.exception_info = None
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self._running = True
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self.start()
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def run(self):
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while self._running:
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try:
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task, args, kwargs = self.queue.get(block=True, timeout=.5)
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self.continue_event.clear()
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self.received_task_event.clear()
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self.done_event.clear()
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self.exception_event.clear()
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logger.debug("Received task")
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self.received_task_event.set()
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task(*args, **kwargs)
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logger.debug("Task complete")
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self.done_event.set()
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except Queue.Empty:
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pass
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except Exception as e:
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logger.debug(type(e).__name__ + " occurred, args=" + str(e.args) + "\n" + traceback.format_exc())
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self.exception_info = e
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self.exception_event.set()
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if self.exception_callback:
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self.exception_callback(self, self.exception_info)
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self.continue_event.wait()
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def put(self, task, *args, **kwargs):
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self.queue.put((task, args, kwargs))
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def raise_exceptions(self):
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if self.exception_event.is_set():
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raise self.exception_info
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def clear_exceptions(self):
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self.exception_event.clear()
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self.continue_event.set()
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def stop(self):
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self._running = False
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class ThreadPool:
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def __init__(self, telebot, num_threads=2):
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self.telebot = telebot
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self.tasks = Queue.Queue()
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self.workers = [WorkerThread(self.on_exception, self.tasks) for _ in range(num_threads)]
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self.num_threads = num_threads
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self.exception_event = threading.Event()
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self.exception_info = None
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def put(self, func, *args, **kwargs):
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self.tasks.put((func, args, kwargs))
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def on_exception(self, worker_thread, exc_info):
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if self.telebot.exception_handler is not None:
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handled = self.telebot.exception_handler.handle(exc_info)
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else:
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handled = False
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if not handled:
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self.exception_info = exc_info
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self.exception_event.set()
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worker_thread.continue_event.set()
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def raise_exceptions(self):
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if self.exception_event.is_set():
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raise self.exception_info
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def clear_exceptions(self):
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self.exception_event.clear()
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def close(self):
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for worker in self.workers:
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worker.stop()
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for worker in self.workers:
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worker.join()
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class AsyncTask:
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def __init__(self, target, *args, **kwargs):
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self.target = target
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self.args = args
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self.kwargs = kwargs
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self.done = False
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self.thread = threading.Thread(target=self._run)
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self.thread.start()
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def _run(self):
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try:
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self.result = self.target(*self.args, **self.kwargs)
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except Exception as e:
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self.result = e
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self.done = True
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def wait(self):
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if not self.done:
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self.thread.join()
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if isinstance(self.result, BaseException):
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raise self.result
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else:
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return self.result
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class CustomRequestResponse():
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def __init__(self, json_text, status_code = 200, reason = ""):
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self.status_code = status_code
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self.text = json_text
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self.reason = reason
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def json(self):
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return json.loads(self.text)
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def async_dec():
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def decorator(fn):
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def wrapper(*args, **kwargs):
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return AsyncTask(fn, *args, **kwargs)
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return wrapper
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return decorator
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def is_string(var):
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return isinstance(var, str)
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def is_dict(var):
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return isinstance(var, dict)
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def is_bytes(var):
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return isinstance(var, bytes)
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def is_pil_image(var):
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return pil_imported and isinstance(var, Image.Image)
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def pil_image_to_file(image, extension='JPEG', quality='web_low'):
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if pil_imported:
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photoBuffer = BytesIO()
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image.convert('RGB').save(photoBuffer, extension, quality=quality)
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photoBuffer.seek(0)
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return photoBuffer
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else:
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raise RuntimeError('PIL module is not imported')
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def is_command(text: str) -> bool:
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r"""
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Checks if `text` is a command. Telegram chat commands start with the '/' character.
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:param text: Text to check.
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:return: True if `text` is a command, else False.
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"""
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if text is None: return False
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return text.startswith('/')
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def extract_command(text: str) -> Union[str, None]:
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"""
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Extracts the command from `text` (minus the '/') if `text` is a command (see is_command).
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If `text` is not a command, this function returns None.
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Examples:
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extract_command('/help'): 'help'
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extract_command('/help@BotName'): 'help'
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extract_command('/search black eyed peas'): 'search'
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extract_command('Good day to you'): None
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:param text: String to extract the command from
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:return: the command if `text` is a command (according to is_command), else None.
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"""
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if text is None: return None
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return text.split()[0].split('@')[0][1:] if is_command(text) else None
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def extract_arguments(text: str) -> str:
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"""
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Returns the argument after the command.
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Examples:
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extract_arguments("/get name"): 'name'
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extract_arguments("/get"): ''
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extract_arguments("/get@botName name"): 'name'
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:param text: String to extract the arguments from a command
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:return: the arguments if `text` is a command (according to is_command), else None.
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"""
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regexp = re.compile(r"/\w*(@\w*)*\s*([\s\S]*)", re.IGNORECASE)
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result = regexp.match(text)
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return result.group(2) if is_command(text) else None
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def split_string(text: str, chars_per_string: int) -> List[str]:
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"""
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Splits one string into multiple strings, with a maximum amount of `chars_per_string` characters per string.
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This is very useful for splitting one giant message into multiples.
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:param text: The text to split
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:param chars_per_string: The number of characters per line the text is split into.
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:return: The splitted text as a list of strings.
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"""
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return [text[i:i + chars_per_string] for i in range(0, len(text), chars_per_string)]
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def smart_split(text: str, chars_per_string: int=MAX_MESSAGE_LENGTH) -> List[str]:
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r"""
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Splits one string into multiple strings, with a maximum amount of `chars_per_string` characters per string.
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This is very useful for splitting one giant message into multiples.
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If `chars_per_string` > 4096: `chars_per_string` = 4096.
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Splits by '\n', '. ' or ' ' in exactly this priority.
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:param text: The text to split
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:param chars_per_string: The number of maximum characters per part the text is split to.
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:return: The splitted text as a list of strings.
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"""
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def _text_before_last(substr: str) -> str:
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return substr.join(part.split(substr)[:-1]) + substr
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if chars_per_string > MAX_MESSAGE_LENGTH: chars_per_string = MAX_MESSAGE_LENGTH
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parts = []
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while True:
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if len(text) < chars_per_string:
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parts.append(text)
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return parts
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part = text[:chars_per_string]
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if "\n" in part: part = _text_before_last("\n")
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elif ". " in part: part = _text_before_last(". ")
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elif " " in part: part = _text_before_last(" ")
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parts.append(part)
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text = text[len(part):]
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def escape(text: str) -> str:
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"""
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Replaces the following chars in `text` ('&' with '&', '<' with '<' and '>' with '>').
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:param text: the text to escape
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:return: the escaped text
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"""
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chars = {"&": "&", "<": "<", ">": ">"}
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for old, new in chars.items(): text = text.replace(old, new)
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return text
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def user_link(user: types.User, include_id: bool=False) -> str:
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"""
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Returns an HTML user link. This is useful for reports.
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Attention: Don't forget to set parse_mode to 'HTML'!
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Example:
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bot.send_message(your_user_id, user_link(message.from_user) + ' started the bot!', parse_mode='HTML')
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:param user: the user (not the user_id)
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:param include_id: include the user_id
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:return: HTML user link
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"""
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name = escape(user.first_name)
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return (f"<a href='tg://user?id={user.id}'>{name}</a>"
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+ (f" (<pre>{user.id}</pre>)" if include_id else ""))
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def quick_markup(values: Dict[str, Dict[str, Any]], row_width: int=2) -> types.InlineKeyboardMarkup:
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"""
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Returns a reply markup from a dict in this format: {'text': kwargs}
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This is useful to avoid always typing 'btn1 = InlineKeyboardButton(...)' 'btn2 = InlineKeyboardButton(...)'
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Example:
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.. code-block:: python
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quick_markup({
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'Twitter': {'url': 'https://twitter.com'},
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'Facebook': {'url': 'https://facebook.com'},
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'Back': {'callback_data': 'whatever'}
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}, row_width=2):
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# returns an InlineKeyboardMarkup with two buttons in a row, one leading to Twitter, the other to facebook
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# and a back button below
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# kwargs can be:
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{
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'url': None,
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'callback_data': None,
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'switch_inline_query': None,
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'switch_inline_query_current_chat': None,
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'callback_game': None,
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'pay': None,
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'login_url': None,
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'web_app': None
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}
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:param values: a dict containing all buttons to create in this format: {text: kwargs} {str:}
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:param row_width: int row width
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:return: InlineKeyboardMarkup
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"""
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markup = types.InlineKeyboardMarkup(row_width=row_width)
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buttons = [
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types.InlineKeyboardButton(text=text, **kwargs)
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for text, kwargs in values.items()
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]
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markup.add(*buttons)
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return markup
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# CREDITS TO http://stackoverflow.com/questions/12317940#answer-12320352
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def or_set(self):
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self._set()
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self.changed()
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def or_clear(self):
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self._clear()
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self.changed()
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def orify(e, changed_callback):
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if not hasattr(e, "_set"):
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e._set = e.set
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if not hasattr(e, "_clear"):
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e._clear = e.clear
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e.changed = changed_callback
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e.set = lambda: or_set(e)
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e.clear = lambda: or_clear(e)
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def OrEvent(*events):
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or_event = threading.Event()
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def changed():
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bools = [ev.is_set() for ev in events]
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if any(bools):
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or_event.set()
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else:
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or_event.clear()
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def busy_wait():
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while not or_event.is_set():
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# noinspection PyProtectedMember
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or_event._wait(3)
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for e in events:
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orify(e, changed)
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or_event._wait = or_event.wait
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or_event.wait = busy_wait
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changed()
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return or_event
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def per_thread(key, construct_value, reset=False):
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if reset or not hasattr(thread_local, key):
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value = construct_value()
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setattr(thread_local, key, value)
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return getattr(thread_local, key)
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def chunks(lst, n):
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"""Yield successive n-sized chunks from lst."""
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# https://stackoverflow.com/a/312464/9935473
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for i in range(0, len(lst), n):
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yield lst[i:i + n]
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def generate_random_token():
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return ''.join(random.sample(string.ascii_letters, 16))
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def deprecated(warn: bool=True, alternative: Optional[Callable]=None, deprecation_text=None):
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"""
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Use this decorator to mark functions as deprecated.
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When the function is used, an info (or warning if `warn` is True) is logged.
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:param warn: If True a warning is logged else an info
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:param alternative: The new function to use instead
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:param deprecation_text: Custom deprecation text
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"""
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def decorator(function):
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def wrapper(*args, **kwargs):
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info = f"`{function.__name__}` is deprecated."
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if alternative:
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info += f" Use `{alternative.__name__}` instead"
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if deprecation_text:
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info += " " + deprecation_text
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if not warn:
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logger.info(info)
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else:
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logger.warning(info)
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return function(*args, **kwargs)
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return wrapper
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return decorator
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# Cloud helpers
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def webhook_google_functions(bot, request):
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"""A webhook endpoint for Google Cloud Functions FaaS."""
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if request.is_json:
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try:
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request_json = request.get_json()
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update = types.Update.de_json(request_json)
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bot.process_new_updates([update])
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return ''
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except Exception as e:
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print(e)
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return 'Bot FAIL', 400
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else:
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return 'Bot ON'
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def antiflood(function, *args, **kwargs):
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"""
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Use this function inside loops in order to avoid getting TooManyRequests error.
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Example:
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.. code-block:: python3
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from telebot.util import antiflood
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for chat_id in chat_id_list:
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msg = antiflood(bot.send_message, chat_id, text)
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:param function:
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:param args:
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:param kwargs:
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:return: None
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"""
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from telebot.apihelper import ApiTelegramException
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from time import sleep
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msg = None
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try:
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msg = function(*args, **kwargs)
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except ApiTelegramException as ex:
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if ex.error_code == 429:
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sleep(ex.result_json['parameters']['retry_after'])
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msg = function(*args, **kwargs)
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finally:
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return msg
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