812 lines
32 KiB
Python
812 lines
32 KiB
Python
#!/usr/bin/env python
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import argparse
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import json
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import os
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import signal
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import time
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from datetime import datetime, timezone
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from typing import Callable, List
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import RNS
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import LXMF
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from aiohttp import web, WSMessage, WSMsgType, WSCloseCode
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import asyncio
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import base64
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from peewee import SqliteDatabase
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import database
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class ReticulumWebChat:
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def __init__(self, webchat_config_file, reticulum_config_dir, identity: RNS.Identity):
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# default values before loading config
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self.display_name = "Anonymous Peer"
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# load config
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self.config_file = webchat_config_file or "storage/config.json"
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self.load_config()
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# init database
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database.database.initialize(SqliteDatabase('storage/reticulum-webchat.db'))
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self.db = database.database
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self.db.connect()
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self.db.create_tables([
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database.LxmfMessage,
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])
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# init reticulum
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self.reticulum = RNS.Reticulum(reticulum_config_dir)
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self.identity = identity
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# init lxmf router
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self.message_router = LXMF.LXMRouter(identity=self.identity, storagepath="storage/lxmf")
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# register lxmf identity
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self.local_lxmf_destination = self.message_router.register_delivery_identity(self.identity)
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# set a callback for when an lxmf message is received
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self.message_router.register_delivery_callback(self.on_lxmf_delivery)
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# set a callback for when an lxmf announce is received
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RNS.Transport.register_announce_handler(LXMFAnnounceHandler(self.on_lxmf_announce_received))
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# remember websocket clients
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self.websocket_clients: List[web.WebSocketResponse] = []
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def load_config(self):
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# default config
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config = {
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}
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# attempt to load config and override default values
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try:
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with open(self.config_file, 'r') as f:
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custom_config = json.load(f)
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config |= custom_config
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# config is broken, fallback to defaults
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except:
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print("failed to load config, defaults will be used")
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# update display name from config
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if "display_name" in config:
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self.display_name = config["display_name"]
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# return loaded config
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return config
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def save_config(self):
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# build config
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config = {
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"display_name": self.display_name,
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}
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# attempt to save config
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try:
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with open(self.config_file, 'w') as f:
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json.dump(config, f, indent=4)
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# config is broken, fallback to defaults
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except:
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print("failed to save config")
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# web server has shutdown, likely ctrl+c, but if we don't do the following, the script never exits
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async def shutdown(self, app):
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# force close websocket clients
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for websocket_client in self.websocket_clients:
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print("force closing websocket for shutdown")
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await websocket_client.close(code=WSCloseCode.GOING_AWAY)
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print("force closed websocket")
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# stop reticulum
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print("stopping reticulum")
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RNS.Transport.detach_interfaces()
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self.reticulum.exit_handler()
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RNS.exit()
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def run(self, host, port):
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# create route table
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routes = web.RouteTableDef()
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# serve index.html
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@routes.get("/")
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async def index(request):
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return web.FileResponse(path="public/index.html")
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# handle websocket clients
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@routes.get("/ws")
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async def ws(request):
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# prepare websocket response
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websocket_response = web.WebSocketResponse()
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await websocket_response.prepare(request)
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# add client to connected clients list
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self.websocket_clients.append(websocket_response)
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# send config to all clients
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await self.send_config_to_websocket_clients()
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# send known peers to all clients
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await self.send_known_peers_to_websocket_clients()
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# handle websocket messages until disconnected
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async for msg in websocket_response:
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msg: WSMessage = msg
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if msg.type == WSMsgType.TEXT:
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try:
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data = json.loads(msg.data)
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await self.on_websocket_data_received(websocket_response, data)
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except Exception as e:
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# ignore errors while handling message
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print("failed to process client message")
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print(e)
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elif msg.type == WSMsgType.ERROR:
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# ignore errors while handling message
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print('ws connection error %s' % websocket_response.exception())
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# websocket closed
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self.websocket_clients.remove(websocket_response)
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return websocket_response
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# serve lxmf messages
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@routes.get("/api/v1/lxmf-messages")
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async def index(request):
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# get query params
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source_hash = request.query.get("source_hash", None)
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destination_hash = request.query.get("destination_hash", None)
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# source_hash is required
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if source_hash is None:
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return web.json_response({
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"message": "source_hash is required",
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}, status=422)
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# destination_hash is required
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if destination_hash is None:
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return web.json_response({
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"message": "destination_hash is required",
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}, status=422)
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# get lxmf messages from db where "source to destination" or "destination to source" and ordered by oldest to newest
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db_lxmf_messages = (database.LxmfMessage.select()
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.where((database.LxmfMessage.source_hash == source_hash) & (database.LxmfMessage.destination_hash == destination_hash))
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.orwhere((database.LxmfMessage.destination_hash == source_hash) & (database.LxmfMessage.source_hash == destination_hash))
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.order_by(database.LxmfMessage.id.asc())
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)
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# convert to response json
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lxmf_messages = []
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for db_lxmf_message in db_lxmf_messages:
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lxmf_messages.append({
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"id": db_lxmf_message.id,
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"hash": db_lxmf_message.hash,
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"source_hash": db_lxmf_message.source_hash,
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"destination_hash": db_lxmf_message.destination_hash,
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"is_incoming": db_lxmf_message.is_incoming,
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"state": db_lxmf_message.state,
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"progress": db_lxmf_message.progress,
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"title": db_lxmf_message.title,
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"content": db_lxmf_message.content,
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"fields": json.loads(db_lxmf_message.fields),
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"timestamp": db_lxmf_message.timestamp,
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"created_at": db_lxmf_message.created_at.replace(tzinfo=timezone.utc).isoformat(),
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"updated_at": db_lxmf_message.updated_at.replace(tzinfo=timezone.utc).isoformat(),
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})
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return web.json_response({
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"lxmf_messages": lxmf_messages,
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})
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asyncio.get_event_loop().add_signal_handler(signal.SIGINT, lambda: exit(-1))
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asyncio.get_event_loop().add_signal_handler(signal.SIGTERM, lambda: exit(-1))
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# create and run web app
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app = web.Application()
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app.add_routes(routes)
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app.add_routes([web.static('/', "public")]) # serve anything in public folder
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app.on_shutdown.append(self.shutdown) # need to force close websockets and stop reticulum now
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web.run_app(app, host=host, port=port)
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# handle data received from websocket client
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async def on_websocket_data_received(self, client, data):
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# get type from client data
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_type = data["type"]
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# handle updating config
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if _type == "config.set":
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# send lxmf message to destination
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config = data["config"]
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# update display name in state
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if "display_name" in config and config["display_name"] != "":
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self.display_name = config["display_name"]
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print("updated display name to: " + self.display_name)
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# save config
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self.save_config()
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# send config to websocket clients
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await self.send_config_to_websocket_clients()
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# handle sending an lxmf message
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elif _type == "lxmf.delivery":
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# send lxmf message to destination
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destination_hash = data["destination_hash"]
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message = data["message"]
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await self.send_message(destination_hash, message)
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# # TODO: send response to client when marked as delivered?
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# await client.send(json.dumps({
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# "type": "lxmf.sent",
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# }))
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# handle sending an announce
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elif _type == "announce":
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# send announce for lxmf
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self.local_lxmf_destination.announce(app_data=self.display_name.encode("utf-8"))
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# handle downloading a file from a nomadnet node
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elif _type == "nomadnet.file.download":
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# get data from websocket client
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destination_hash = data["nomadnet_file_download"]["destination_hash"]
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file_path = data["nomadnet_file_download"]["file_path"]
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# convert destination hash to bytes
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destination_hash = bytes.fromhex(destination_hash)
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# handle successful file download
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def on_file_download_success(file_name, file_bytes):
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asyncio.run(client.send(json.dumps({
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"type": "nomadnet.file.download",
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"nomadnet_file_download": {
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"status": "success",
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"destination_hash": destination_hash.hex(),
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"file_path": file_path,
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"file_name": file_name,
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"file_bytes": base64.b64encode(file_bytes).decode("utf-8"),
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},
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})))
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# handle file download failure
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def on_file_download_failure(failure_reason):
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asyncio.run(client.send(json.dumps({
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"type": "nomadnet.file.download",
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"nomadnet_file_download": {
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"status": "error",
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"failure_reason": failure_reason,
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"destination_hash": destination_hash.hex(),
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"file_path": file_path,
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},
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})))
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# handle file download progress
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def on_file_download_progress(progress):
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asyncio.run(client.send(json.dumps({
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"type": "nomadnet.file.download",
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"nomadnet_file_download": {
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"status": "progress",
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"progress": progress,
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"destination_hash": destination_hash.hex(),
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"file_path": file_path,
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},
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})))
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# todo: handle file download progress
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# download the file
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NomadnetFileDownloader(destination_hash, file_path, on_file_download_success, on_file_download_failure, on_file_download_progress)
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# handle downloading a page from a nomadnet node
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elif _type == "nomadnet.page.download":
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# get data from websocket client
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destination_hash = data["nomadnet_page_download"]["destination_hash"]
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page_path = data["nomadnet_page_download"]["page_path"]
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# convert destination hash to bytes
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destination_hash = bytes.fromhex(destination_hash)
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# handle successful page download
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def on_page_download_success(page_content):
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asyncio.run(client.send(json.dumps({
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"type": "nomadnet.page.download",
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"nomadnet_page_download": {
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"status": "success",
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"destination_hash": destination_hash.hex(),
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"page_path": page_path,
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"page_content": page_content,
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},
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})))
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# handle page download failure
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def on_page_download_failure(failure_reason):
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asyncio.run(client.send(json.dumps({
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"type": "nomadnet.page.download",
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"nomadnet_page_download": {
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"status": "error",
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"failure_reason": failure_reason,
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"destination_hash": destination_hash.hex(),
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"page_path": page_path,
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},
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})))
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# handle page download progress
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def on_page_download_progress(progress):
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asyncio.run(client.send(json.dumps({
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"type": "nomadnet.page.download",
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"nomadnet_page_download": {
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"status": "progress",
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"progress": progress,
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"destination_hash": destination_hash.hex(),
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"page_path": page_path,
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},
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})))
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# todo: handle page download progress
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# download the page
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NomadnetPageDownloader(destination_hash, page_path, on_page_download_success, on_page_download_failure, on_page_download_progress)
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# unhandled type
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else:
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print("unhandled client message type: " + _type)
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# broadcast provided data to all connected websocket clients
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async def websocket_broadcast(self, data):
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for websocket_client in self.websocket_clients:
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await websocket_client.send_str(data)
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# broadcasts config to all websocket clients
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async def send_config_to_websocket_clients(self):
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await self.websocket_broadcast(json.dumps({
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"type": "config",
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"config": {
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"display_name": self.display_name,
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"identity_hash": self.identity.hexhash,
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"lxmf_address_hash": self.local_lxmf_destination.hexhash,
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},
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}))
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# broadcasts known peers to all websocket clients
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async def send_known_peers_to_websocket_clients(self):
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# process known peers
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known_peers = []
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for destination_hash in RNS.Identity.known_destinations:
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known_destination = RNS.Identity.known_destinations[destination_hash]
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last_announce_timestamp = known_destination[0]
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known_peers.append({
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"destination_hash": destination_hash.hex(),
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"app_data": self.convert_app_data_to_string(RNS.Identity.recall_app_data(destination_hash)),
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"last_announce_timestamp": last_announce_timestamp,
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})
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# send known peers to websocket clients
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await self.websocket_broadcast(json.dumps({
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"type": "known_peers",
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"known_peers": known_peers,
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}))
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# convert app data to string, or return none unable to do so
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def convert_app_data_to_string(self, app_data):
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# attempt to convert to utf-8 string
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if app_data is not None:
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try:
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return app_data.decode("utf-8")
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except:
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# ignore failure to convert to string
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pass
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# unable to convert to string
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return None
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# convert an lxmf message to a dictionary, for sending over websocket
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def convert_lxmf_message_to_dict(self, lxmf_message: LXMF.LXMessage):
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# handle fields
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fields = {}
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message_fields = lxmf_message.get_fields()
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for field_type in message_fields:
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value = message_fields[field_type]
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# handle file attachments field
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if field_type == LXMF.FIELD_FILE_ATTACHMENTS:
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# process file attachments
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file_attachments = []
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for file_attachment in value:
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file_name = file_attachment[0]
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file_bytes = base64.b64encode(file_attachment[1]).decode("utf-8")
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file_attachments.append({
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"file_name": file_name,
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"file_bytes": file_bytes,
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})
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# add to fields
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fields["file_attachments"] = file_attachments
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# handle image field
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if field_type == LXMF.FIELD_IMAGE:
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image_type = value[0]
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image_bytes = base64.b64encode(value[1]).decode("utf-8")
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fields["image"] = {
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"image_type": image_type,
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"image_bytes": image_bytes,
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}
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# convert 0.0-1.0 progress to 0.00-100 percentage
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progress_percentage = round(lxmf_message.progress * 100, 2)
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return {
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"hash": lxmf_message.hash.hex(),
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"source_hash": lxmf_message.source_hash.hex(),
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"destination_hash": lxmf_message.destination_hash.hex(),
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"is_incoming": lxmf_message.incoming,
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"state": self.convert_lxmf_state_to_string(lxmf_message),
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"progress": progress_percentage,
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"title": lxmf_message.title.decode('utf-8'),
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"content": lxmf_message.content.decode('utf-8'),
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"fields": fields,
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"timestamp": lxmf_message.timestamp,
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}
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# convert lxmf state to a human friendly string
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def convert_lxmf_state_to_string(self, lxmf_message: LXMF.LXMessage):
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# convert state to string
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lxmf_message_state = "unknown"
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if lxmf_message.state == LXMF.LXMessage.DRAFT:
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lxmf_message_state = "draft"
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elif lxmf_message.state == LXMF.LXMessage.OUTBOUND:
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lxmf_message_state = "outbound"
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elif lxmf_message.state == LXMF.LXMessage.SENDING:
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lxmf_message_state = "sending"
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elif lxmf_message.state == LXMF.LXMessage.SENT:
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lxmf_message_state = "sent"
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elif lxmf_message.state == LXMF.LXMessage.DELIVERED:
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lxmf_message_state = "delivered"
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elif lxmf_message.state == LXMF.LXMessage.FAILED:
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lxmf_message_state = "failed"
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return lxmf_message_state
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# handle an lxmf delivery from reticulum
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# NOTE: cant be async, as Reticulum doesn't await it
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def on_lxmf_delivery(self, message):
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try:
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# convert lxmf message to dict
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lxmf_message_dict = self.convert_lxmf_message_to_dict(message)
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# save to database
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lxmf_message_db = database.LxmfMessage(
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hash=lxmf_message_dict["hash"],
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source_hash=lxmf_message_dict["source_hash"],
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destination_hash=lxmf_message_dict["destination_hash"],
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is_incoming=lxmf_message_dict["is_incoming"],
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state=lxmf_message_dict["state"],
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progress=lxmf_message_dict["progress"],
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title=lxmf_message_dict["title"],
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content=lxmf_message_dict["content"],
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fields=json.dumps(lxmf_message_dict["fields"]),
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timestamp=lxmf_message_dict["timestamp"],
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)
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lxmf_message_db.save()
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# send received lxmf message data to all websocket clients
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asyncio.run(self.websocket_broadcast(json.dumps({
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"type": "lxmf.delivery",
|
|
"lxmf_message": self.convert_lxmf_message_to_dict(message),
|
|
})))
|
|
|
|
except Exception as e:
|
|
# do nothing on error
|
|
print("lxmf_delivery error: {}".format(e))
|
|
|
|
# handle delivery status update for an outbound lxmf message
|
|
def on_lxmf_sending_state_updated(self, lxmf_message):
|
|
|
|
# upsert lxmf message to database
|
|
self.db_upsert_lxmf_message(lxmf_message)
|
|
|
|
# send lxmf message state to all websocket clients
|
|
asyncio.run(self.websocket_broadcast(json.dumps({
|
|
"type": "lxmf_message_state_updated",
|
|
"lxmf_message": self.convert_lxmf_message_to_dict(lxmf_message),
|
|
})))
|
|
|
|
# handle delivery failed for an outbound lxmf message
|
|
def on_lxmf_sending_failed(self, lxmf_message):
|
|
# just pass this on, we don't need to do anything special
|
|
self.on_lxmf_sending_state_updated(lxmf_message)
|
|
|
|
# upserts the provided lxmf message to the database
|
|
def db_upsert_lxmf_message(self, lxmf_message: LXMF.LXMessage):
|
|
|
|
# convert lxmf message to dict
|
|
lxmf_message_dict = self.convert_lxmf_message_to_dict(lxmf_message)
|
|
|
|
# prepare data to insert or update
|
|
data = {
|
|
"hash": lxmf_message_dict["hash"],
|
|
"source_hash": lxmf_message_dict["source_hash"],
|
|
"destination_hash": lxmf_message_dict["destination_hash"],
|
|
"is_incoming": lxmf_message_dict["is_incoming"],
|
|
"state": lxmf_message_dict["state"],
|
|
"progress": lxmf_message_dict["progress"],
|
|
"title": lxmf_message_dict["title"],
|
|
"content": lxmf_message_dict["content"],
|
|
"fields": json.dumps(lxmf_message_dict["fields"]),
|
|
"timestamp": lxmf_message_dict["timestamp"],
|
|
"updated_at": datetime.now(),
|
|
}
|
|
|
|
# upsert to database
|
|
query = database.LxmfMessage.insert(data)
|
|
query = query.on_conflict(conflict_target=[database.LxmfMessage.hash], update=data)
|
|
query.execute()
|
|
|
|
# handle sending an lxmf message to reticulum
|
|
async def send_message(self, destination_hash, message_content):
|
|
|
|
try:
|
|
|
|
# convert destination hash to bytes
|
|
destination_hash = bytes.fromhex(destination_hash)
|
|
|
|
# FIXME: can this be removed, and just rely on the router to check paths?
|
|
# find destination identity from hash
|
|
destination_identity = RNS.Identity.recall(destination_hash)
|
|
if destination_identity is None:
|
|
|
|
# we don't know the path/identity for this destination hash, we will request it
|
|
RNS.Transport.request_path(destination_hash)
|
|
|
|
# we have to bail out of sending, since we don't have the path yet
|
|
return
|
|
|
|
# create destination for recipients lxmf delivery address
|
|
lxmf_destination = RNS.Destination(destination_identity, RNS.Destination.OUT, RNS.Destination.SINGLE, "lxmf", "delivery")
|
|
|
|
# create lxmf message
|
|
lxmf_message = LXMF.LXMessage(lxmf_destination, self.local_lxmf_destination, message_content, desired_method=LXMF.LXMessage.DIRECT)
|
|
lxmf_message.try_propagation_on_fail = True
|
|
lxmf_message.register_delivery_callback(self.on_lxmf_sending_state_updated)
|
|
lxmf_message.register_failed_callback(self.on_lxmf_sending_failed)
|
|
|
|
# send lxmf message to be routed to destination
|
|
self.message_router.handle_outbound(lxmf_message)
|
|
|
|
# upsert lxmf message to database
|
|
self.db_upsert_lxmf_message(lxmf_message)
|
|
|
|
# send outbound lxmf message to websocket (after passing to router so hash is available)
|
|
await self.websocket_broadcast(json.dumps({
|
|
"type": "lxmf_outbound_message_created",
|
|
"lxmf_message": self.convert_lxmf_message_to_dict(lxmf_message),
|
|
}))
|
|
|
|
except:
|
|
# FIXME send error to websocket?
|
|
print("failed to send lxmf message")
|
|
|
|
# handle an announce received from reticulum, for an lxmf address
|
|
# NOTE: cant be async, as Reticulum doesn't await it
|
|
def on_lxmf_announce_received(self, destination_hash, announced_identity, app_data):
|
|
|
|
# log received announce
|
|
RNS.log("Received an announce from " + RNS.prettyhexrep(destination_hash))
|
|
|
|
# parse app data
|
|
parsed_app_data = None
|
|
if app_data is not None:
|
|
parsed_app_data = app_data.decode("utf-8")
|
|
|
|
# send received lxmf announce to all websocket clients
|
|
asyncio.run(self.websocket_broadcast(json.dumps({
|
|
"type": "announce",
|
|
"announce": {
|
|
"destination_hash": destination_hash.hex(),
|
|
"app_data": parsed_app_data,
|
|
"last_announce_timestamp": time.time(),
|
|
},
|
|
})))
|
|
|
|
|
|
# an announce handler for lxmf.delivery aspect that just forwards to a provided callback
|
|
class LXMFAnnounceHandler:
|
|
|
|
def __init__(self, received_announce_callback):
|
|
self.aspect_filter = "lxmf.delivery"
|
|
self.received_announce_callback = received_announce_callback
|
|
|
|
# we will just pass the received announce back to the provided callback
|
|
def received_announce(self, destination_hash, announced_identity, app_data):
|
|
try:
|
|
# handle received announce
|
|
self.received_announce_callback(destination_hash, announced_identity, app_data)
|
|
except:
|
|
# ignore failure to handle received announce
|
|
pass
|
|
|
|
|
|
class NomadnetDownloader:
|
|
|
|
def __init__(self, destination_hash: bytes, path: str, on_download_success: Callable[[bytes], None], on_download_failure: Callable[[str], None], on_progress_update: Callable[[float], None], timeout: int|None = None, auto_download=True):
|
|
self.app_name = "nomadnetwork"
|
|
self.aspects = "node"
|
|
self.destination_hash = destination_hash
|
|
self.path = path
|
|
self.timeout = timeout
|
|
self.on_download_success = on_download_success
|
|
self.on_download_failure = on_download_failure
|
|
self.on_progress_update = on_progress_update
|
|
if auto_download:
|
|
self.download()
|
|
|
|
# setup link to destination and request download
|
|
def download(self):
|
|
|
|
# request path to destination
|
|
RNS.Transport.request_path(self.destination_hash)
|
|
|
|
# find existing identity
|
|
identity = RNS.Identity.recall(self.destination_hash)
|
|
if identity is None:
|
|
self.on_download_failure("identity not found")
|
|
return
|
|
|
|
# create destination to nomadnet node
|
|
destination = RNS.Destination(
|
|
identity,
|
|
RNS.Destination.OUT,
|
|
RNS.Destination.SINGLE,
|
|
self.app_name,
|
|
self.aspects,
|
|
)
|
|
|
|
# create link to destination
|
|
RNS.Link(destination, established_callback=self.link_established)
|
|
|
|
# link to destination was established, we should now request the download
|
|
def link_established(self, link):
|
|
|
|
# request download over link
|
|
link.request(
|
|
self.path,
|
|
data=None,
|
|
response_callback=self.on_response,
|
|
failed_callback=self.on_failed,
|
|
progress_callback=self.on_progress,
|
|
timeout=self.timeout,
|
|
)
|
|
|
|
# handle successful download
|
|
def on_response(self, request_receipt):
|
|
print("file_received")
|
|
self.on_download_success(request_receipt.response)
|
|
|
|
# handle failure
|
|
def on_failed(self, request_receipt=None):
|
|
self.on_download_failure("request_failed")
|
|
|
|
# handle download progress
|
|
def on_progress(self, request_receipt):
|
|
self.on_progress_update(request_receipt.progress)
|
|
|
|
|
|
class NomadnetPageDownloader(NomadnetDownloader):
|
|
|
|
def __init__(self, destination_hash: bytes, page_path: str, on_page_download_success: Callable[[str], None], on_page_download_failure: Callable[[str], None], on_progress_update: Callable[[float], None], timeout: int|None = None, auto_download=True):
|
|
self.on_page_download_success = on_page_download_success
|
|
self.on_page_download_failure = on_page_download_failure
|
|
super().__init__(destination_hash, page_path, self.on_download_success, self.on_download_failure, on_progress_update, timeout, auto_download)
|
|
|
|
# page download was successful, decode the response and send to provided callback
|
|
def on_download_success(self, response_bytes):
|
|
micron_markup_response = response_bytes.decode("utf-8")
|
|
self.on_page_download_success(micron_markup_response)
|
|
|
|
# page download failed, send error to provided callback
|
|
def on_download_failure(self, failure_reason):
|
|
self.on_page_download_failure(failure_reason)
|
|
|
|
|
|
class NomadnetFileDownloader(NomadnetDownloader):
|
|
|
|
def __init__(self, destination_hash: bytes, page_path: str, on_file_download_success: Callable[[str, bytes], None], on_file_download_failure: Callable[[str], None], on_progress_update: Callable[[float], None], timeout: int|None = None, auto_download=True):
|
|
self.on_file_download_success = on_file_download_success
|
|
self.on_file_download_failure = on_file_download_failure
|
|
super().__init__(destination_hash, page_path, self.on_download_success, self.on_download_failure, on_progress_update, timeout, auto_download)
|
|
|
|
# file download was successful, decode the response and send to provided callback
|
|
def on_download_success(self, response):
|
|
file_name: str = response[0]
|
|
file_data: bytes = response[1]
|
|
self.on_file_download_success(file_name, file_data)
|
|
|
|
# page download failed, send error to provided callback
|
|
def on_download_failure(self, failure_reason):
|
|
self.on_file_download_failure(failure_reason)
|
|
|
|
|
|
def main():
|
|
|
|
# parse command line args
|
|
parser = argparse.ArgumentParser(description="ReticulumWebChat")
|
|
parser.add_argument("--host", nargs='?', default="0.0.0.0", type=str, help="The address the web server should listen on.")
|
|
parser.add_argument("--port", nargs='?', default="8000", type=int, help="The port the web server should listen on.")
|
|
parser.add_argument("--identity-file", type=str, help="Path to a Reticulum Identity file to use as your LXMF address.")
|
|
parser.add_argument("--identity-base64", type=str, help="A base64 encoded Reticulum Identity to use as your LXMF address.")
|
|
parser.add_argument("--generate-identity-file", type=str, help="Generates and saves a new Reticulum Identity to the provided file path and then exits.")
|
|
parser.add_argument("--generate-identity-base64", action='store_true', help="Outputs a randomly generated Reticulum Identity as base64 and then exits.")
|
|
parser.add_argument("--reticulum-config-dir", type=str, help="Path to a Reticulum config directory for the RNS stack to use (e.g: ~/.reticulum)")
|
|
parser.add_argument("--webchat-config-file", type=str, help="Path to a ReticulumWebChat config file for saving user preferences.")
|
|
args = parser.parse_args()
|
|
|
|
# util to generate reticulum identity and save to file without using rnid
|
|
if args.generate_identity_file is not None:
|
|
|
|
# do not overwrite existing files, otherwise user could lose existing keys
|
|
if os.path.exists(args.generate_identity_file):
|
|
print("DANGER: the provided identity file path already exists, not overwriting!")
|
|
return
|
|
|
|
# generate a new identity and save to provided file path
|
|
identity = RNS.Identity(create_keys=True)
|
|
with open(args.generate_identity_file, "wb") as file:
|
|
file.write(identity.get_private_key())
|
|
|
|
print("A new Reticulum Identity has been saved to: {}".format(args.generate_identity_file))
|
|
return
|
|
|
|
# util to generate reticulum identity as base64 without using rnid
|
|
if args.generate_identity_base64 is True:
|
|
identity = RNS.Identity(create_keys=True)
|
|
print(base64.b64encode(identity.get_private_key()).decode("utf-8"))
|
|
return
|
|
|
|
# use provided identity, or fallback to a random one
|
|
if args.identity_file is not None:
|
|
identity = RNS.Identity(create_keys=False)
|
|
identity.load(args.identity_file)
|
|
print("Reticulum Identity has been loaded from file.")
|
|
print(identity)
|
|
elif args.identity_base64 is not None:
|
|
identity = RNS.Identity(create_keys=False)
|
|
identity.load_private_key(base64.b64decode(args.identity_base64))
|
|
print("Reticulum Identity has been loaded from base64.")
|
|
print(identity)
|
|
else:
|
|
identity = RNS.Identity(create_keys=True)
|
|
print("Reticulum Identity has been randomly generated.")
|
|
print(identity)
|
|
|
|
# init app
|
|
reticulum_webchat = ReticulumWebChat(args.webchat_config_file, args.reticulum_config_dir, identity)
|
|
reticulum_webchat.run(args.host, args.port)
|
|
|
|
|
|
if __name__ == "__main__":
|
|
main()
|