mirror of
https://github.com/LonamiWebs/Telethon.git
synced 2024-11-23 18:03:46 +03:00
383 lines
16 KiB
Python
383 lines
16 KiB
Python
import os
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import sys
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import asyncio
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from getpass import getpass
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from telethon.utils import get_display_name
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from telethon import TelegramClient, events
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from telethon.network import ConnectionTcpAbridged
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from telethon.errors import SessionPasswordNeededError
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# Create a global variable to hold the loop we will be using
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loop = asyncio.get_event_loop()
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def sprint(string, *args, **kwargs):
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"""Safe Print (handle UnicodeEncodeErrors on some terminals)"""
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try:
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print(string, *args, **kwargs)
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except UnicodeEncodeError:
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string = string.encode('utf-8', errors='ignore')\
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.decode('ascii', errors='ignore')
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print(string, *args, **kwargs)
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def print_title(title):
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"""Helper function to print titles to the console more nicely"""
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sprint('\n')
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sprint('=={}=='.format('=' * len(title)))
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sprint('= {} ='.format(title))
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sprint('=={}=='.format('=' * len(title)))
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def bytes_to_string(byte_count):
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"""Converts a byte count to a string (in KB, MB...)"""
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suffix_index = 0
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while byte_count >= 1024:
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byte_count /= 1024
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suffix_index += 1
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return '{:.2f}{}'.format(
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byte_count, [' bytes', 'KB', 'MB', 'GB', 'TB'][suffix_index]
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)
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async def async_input(prompt):
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"""
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Python's ``input()`` is blocking, which means the event loop we set
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above can't be running while we're blocking there. This method will
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let the loop run while we wait for input.
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"""
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print(prompt, end='', flush=True)
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return (await loop.run_in_executor(None, sys.stdin.readline)).rstrip()
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class InteractiveTelegramClient(TelegramClient):
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"""Full featured Telegram client, meant to be used on an interactive
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session to see what Telethon is capable off -
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This client allows the user to perform some basic interaction with
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Telegram through Telethon, such as listing dialogs (open chats),
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talking to people, downloading media, and receiving updates.
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"""
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def __init__(self, session_user_id, user_phone, api_id, api_hash,
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proxy=None):
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"""
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Initializes the InteractiveTelegramClient.
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:param session_user_id: Name of the *.session file.
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:param user_phone: The phone of the user that will login.
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:param api_id: Telegram's api_id acquired through my.telegram.org.
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:param api_hash: Telegram's api_hash.
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:param proxy: Optional proxy tuple/dictionary.
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"""
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print_title('Initialization')
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print('Initializing interactive example...')
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# The first step is to initialize the TelegramClient, as we are
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# subclassing it, we need to call super().__init__(). On a more
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# normal case you would want 'client = TelegramClient(...)'
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super().__init__(
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# These parameters should be passed always, session name and API
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session_user_id, api_id, api_hash,
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# You can optionally change the connection mode by passing a
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# type or an instance of it. This changes how the sent packets
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# look (low-level concept you normally shouldn't worry about).
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# Default is ConnectionTcpFull, smallest is ConnectionTcpAbridged.
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connection=ConnectionTcpAbridged,
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# If you're using a proxy, set it here.
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proxy=proxy
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)
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# Store {message.id: message} map here so that we can download
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# media known the message ID, for every message having media.
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self.found_media = {}
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# Calling .connect() may raise a connection error False, so you need
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# to except those before continuing. Otherwise you may want to retry
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# as done here.
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print('Connecting to Telegram servers...')
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try:
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loop.run_until_complete(self.connect())
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except ConnectionError:
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print('Initial connection failed. Retrying...')
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loop.run_until_complete(self.connect())
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# If the user hasn't called .sign_in() or .sign_up() yet, they won't
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# be authorized. The first thing you must do is authorize. Calling
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# .sign_in() should only be done once as the information is saved on
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# the *.session file so you don't need to enter the code every time.
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if not loop.run_until_complete(self.is_user_authorized()):
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print('First run. Sending code request...')
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loop.run_until_complete(self.sign_in(user_phone))
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self_user = None
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while self_user is None:
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code = input('Enter the code you just received: ')
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try:
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self_user =\
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loop.run_until_complete(self.sign_in(code=code))
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# Two-step verification may be enabled, and .sign_in will
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# raise this error. If that's the case ask for the password.
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# Note that getpass() may not work on PyCharm due to a bug,
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# if that's the case simply change it for input().
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except SessionPasswordNeededError:
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pw = getpass('Two step verification is enabled. '
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'Please enter your password: ')
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self_user =\
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loop.run_until_complete(self.sign_in(password=pw))
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async def run(self):
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"""Main loop of the TelegramClient, will wait for user action"""
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# Once everything is ready, we can add an event handler.
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#
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# Events are an abstraction over Telegram's "Updates" and
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# are much easier to use.
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self.add_event_handler(self.message_handler, events.NewMessage)
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# Enter a while loop to chat as long as the user wants
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while True:
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# Retrieve the top dialogs. You can set the limit to None to
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# retrieve all of them if you wish, but beware that may take
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# a long time if you have hundreds of them.
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dialog_count = 15
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# Entities represent the user, chat or channel
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# corresponding to the dialog on the same index.
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dialogs = await self.get_dialogs(limit=dialog_count)
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i = None
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while i is None:
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print_title('Dialogs window')
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# Display them so the user can choose
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for i, dialog in enumerate(dialogs, start=1):
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sprint('{}. {}'.format(i, get_display_name(dialog.entity)))
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# Let the user decide who they want to talk to
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print()
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print('> Who do you want to send messages to?')
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print('> Available commands:')
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print(' !q: Quits the dialogs window and exits.')
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print(' !l: Logs out, terminating this session.')
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print()
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i = await async_input('Enter dialog ID or a command: ')
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if i == '!q':
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return
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if i == '!l':
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# Logging out will cause the user to need to reenter the
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# code next time they want to use the library, and will
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# also delete the *.session file off the filesystem.
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#
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# This is not the same as simply calling .disconnect(),
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# which simply shuts down everything gracefully.
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await self.log_out()
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return
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try:
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i = int(i if i else 0) - 1
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# Ensure it is inside the bounds, otherwise retry
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if not 0 <= i < dialog_count:
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i = None
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except ValueError:
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i = None
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# Retrieve the selected user (or chat, or channel)
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entity = dialogs[i].entity
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# Show some information
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print_title('Chat with "{}"'.format(get_display_name(entity)))
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print('Available commands:')
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print(' !q: Quits the current chat.')
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print(' !Q: Quits the current chat and exits.')
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print(' !h: prints the latest messages (message History).')
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print(' !up <path>: Uploads and sends the Photo from path.')
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print(' !uf <path>: Uploads and sends the File from path.')
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print(' !d <msg-id>: Deletes a message by its id')
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print(' !dm <msg-id>: Downloads the given message Media (if any).')
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print(' !dp: Downloads the current dialog Profile picture.')
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print(' !i: Prints information about this chat..')
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print()
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# And start a while loop to chat
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while True:
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msg = await async_input('Enter a message: ')
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# Quit
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if msg == '!q':
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break
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elif msg == '!Q':
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return
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# History
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elif msg == '!h':
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# First retrieve the messages and some information
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messages = await self.get_messages(entity, limit=10)
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# Iterate over all (in reverse order so the latest appear
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# the last in the console) and print them with format:
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# "[hh:mm] Sender: Message"
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for msg in reversed(messages):
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# Note how we access .sender here. Since we made an
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# API call using the self client, it will always have
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# information about the sender. This is different to
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# events, where Telegram may not always send the user.
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name = get_display_name(msg.sender)
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# Format the message content
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if getattr(msg, 'media', None):
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self.found_media[msg.id] = msg
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content = '<{}> {}'.format(
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type(msg.media).__name__, msg.message)
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elif hasattr(msg, 'message'):
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content = msg.message
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elif hasattr(msg, 'action'):
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content = str(msg.action)
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else:
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# Unknown message, simply print its class name
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content = type(msg).__name__
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# And print it to the user
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sprint('[{}:{}] (ID={}) {}: {}'.format(
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msg.date.hour, msg.date.minute, msg.id, name, content))
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# Send photo
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elif msg.startswith('!up '):
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# Slice the message to get the path
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path = msg[len('!up '):]
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await self.send_photo(path=path, entity=entity)
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# Send file (document)
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elif msg.startswith('!uf '):
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# Slice the message to get the path
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path = msg[len('!uf '):]
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await self.send_document(path=path, entity=entity)
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# Delete messages
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elif msg.startswith('!d '):
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# Slice the message to get message ID
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msg = msg[len('!d '):]
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deleted_msg = await self.delete_messages(entity, msg)
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print('Deleted {}'.format(deleted_msg))
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# Download media
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elif msg.startswith('!dm '):
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# Slice the message to get message ID
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await self.download_media_by_id(msg[len('!dm '):])
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# Download profile photo
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elif msg == '!dp':
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print('Downloading profile picture to usermedia/...')
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os.makedirs('usermedia', exist_ok=True)
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output = await self.download_profile_photo(entity,
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'usermedia')
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if output:
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print('Profile picture downloaded to', output)
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else:
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print('No profile picture found for this user!')
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elif msg == '!i':
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attributes = list(entity.to_dict().items())
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pad = max(len(x) for x, _ in attributes)
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for name, val in attributes:
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print("{:<{width}} : {}".format(name, val, width=pad))
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# Send chat message (if any)
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elif msg:
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await self.send_message(entity, msg, link_preview=False)
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async def send_photo(self, path, entity):
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"""Sends the file located at path to the desired entity as a photo"""
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await self.send_file(
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entity, path,
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progress_callback=self.upload_progress_callback
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)
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print('Photo sent!')
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async def send_document(self, path, entity):
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"""Sends the file located at path to the desired entity as a document"""
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await self.send_file(
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entity, path,
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force_document=True,
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progress_callback=self.upload_progress_callback
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)
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print('Document sent!')
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async def download_media_by_id(self, media_id):
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"""Given a message ID, finds the media this message contained and
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downloads it.
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"""
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try:
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msg = self.found_media[int(media_id)]
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except (ValueError, KeyError):
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# ValueError when parsing, KeyError when accessing dictionary
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print('Invalid media ID given or message not found!')
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return
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print('Downloading media to usermedia/...')
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os.makedirs('usermedia', exist_ok=True)
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output = await self.download_media(
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msg.media,
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file='usermedia/',
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progress_callback=self.download_progress_callback
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)
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print('Media downloaded to {}!'.format(output))
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@staticmethod
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def download_progress_callback(downloaded_bytes, total_bytes):
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InteractiveTelegramClient.print_progress(
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'Downloaded', downloaded_bytes, total_bytes
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)
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@staticmethod
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def upload_progress_callback(uploaded_bytes, total_bytes):
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InteractiveTelegramClient.print_progress(
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'Uploaded', uploaded_bytes, total_bytes
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)
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@staticmethod
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def print_progress(progress_type, downloaded_bytes, total_bytes):
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print('{} {} out of {} ({:.2%})'.format(
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progress_type, bytes_to_string(downloaded_bytes),
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bytes_to_string(total_bytes), downloaded_bytes / total_bytes)
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)
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async def message_handler(self, event):
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"""Callback method for received events.NewMessage"""
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# Note that message_handler is called when a Telegram update occurs
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# and an event is created. Telegram may not always send information
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# about the ``.sender`` or the ``.chat``, so if you *really* want it
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# you should use ``get_chat()`` and ``get_sender()`` while working
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# with events. Since they are methods, you know they may make an API
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# call, which can be expensive.
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chat = await event.get_chat()
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if event.is_group:
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if event.out:
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sprint('>> sent "{}" to chat {}'.format(
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event.text, get_display_name(chat)
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))
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else:
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sprint('<< {} @ {} sent "{}"'.format(
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get_display_name(await event.get_sender()),
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get_display_name(chat),
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event.text
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))
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else:
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if event.out:
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sprint('>> "{}" to user {}'.format(
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event.text, get_display_name(chat)
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))
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else:
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sprint('<< {} sent "{}"'.format(
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get_display_name(chat), event.text
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))
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