mirror of
https://github.com/maziggy/bambuddy.git
synced 2026-09-30 19:21:33 +02:00
The remote_interface_ip setting only worked in proxy mode but was completely ignored in server modes (immediate/review/print_queue). Users with multiple NICs (LAN + Tailscale, Docker bridges) got wrong auto-detected IP in SSDP broadcasts and TLS certificates.
570 lines
22 KiB
Python
570 lines
22 KiB
Python
"""SSDP discovery responder for virtual printer.
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Responds to M-SEARCH requests from slicers and sends periodic NOTIFY
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announcements so the virtual printer appears as a discoverable Bambu printer.
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Also provides SSDP proxy functionality for proxy mode, where Bambuddy sits
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between two networks and re-broadcasts printer SSDP from LAN A to LAN B.
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"""
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import asyncio
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import logging
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import re
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import socket
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import struct
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logger = logging.getLogger(__name__)
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# SSDP addresses - Bambu uses port 2021
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# Real Bambu printers broadcast to 255.255.255.255, not multicast to 239.255.255.250
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SSDP_MULTICAST_ADDR = "239.255.255.250"
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SSDP_BROADCAST_ADDR = "255.255.255.255"
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SSDP_PORT = 2021
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# Bambu service target
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BAMBU_SEARCH_TARGET = "urn:bambulab-com:device:3dprinter:1"
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class VirtualPrinterSSDPServer:
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"""SSDP server that responds to discovery requests as a virtual Bambu printer."""
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def __init__(
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self,
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name: str = "Bambuddy",
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serial: str = "00M09A391800001", # X1C serial format for compatibility
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model: str = "BL-P001", # X1C model code for best compatibility
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advertise_ip: str = "",
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):
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"""Initialize the SSDP server.
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Args:
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name: Display name shown in slicer discovery
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serial: Unique serial number for this virtual printer (must match cert CN)
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model: Model code (BL-P001=X1C, C11=P1S, O1D=H2D)
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advertise_ip: Override IP to advertise instead of auto-detecting
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"""
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self.name = name
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self.serial = serial
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self.model = model
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self._running = False
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self._socket: socket.socket | None = None
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self._local_ip: str | None = advertise_ip or None
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def _get_local_ip(self) -> str:
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"""Get the local IP address to advertise."""
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if self._local_ip:
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return self._local_ip
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# Try to determine local IP by connecting to a public address
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try:
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s = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
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s.connect(("8.8.8.8", 80))
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ip = s.getsockname()[0]
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s.close()
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self._local_ip = ip
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return ip
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except OSError:
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return "127.0.0.1"
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def _build_notify_message(self) -> bytes:
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"""Build SSDP NOTIFY message for periodic announcements.
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Format matches real Bambu printer SSDP broadcasts observed on the network.
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Real printers use Host: 239.255.255.250:1990 (port 1990 in header).
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"""
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ip = self._get_local_ip()
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# Match exact format of real Bambu printers (captured via tcpdump)
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# Key: DevBind.bambu.com: free - tells slicer printer is NOT cloud-bound
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message = (
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"NOTIFY * HTTP/1.1\r\n"
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f"Host: {SSDP_MULTICAST_ADDR}:1990\r\n"
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"Server: UPnP/1.0\r\n"
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f"Location: {ip}\r\n"
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f"NT: {BAMBU_SEARCH_TARGET}\r\n"
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"NTS: ssdp:alive\r\n"
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f"USN: {self.serial}\r\n"
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"Cache-Control: max-age=1800\r\n"
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f"DevModel.bambu.com: {self.model}\r\n"
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f"DevName.bambu.com: {self.name}\r\n"
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"DevSignal.bambu.com: -44\r\n"
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"DevConnect.bambu.com: lan\r\n"
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"DevBind.bambu.com: free\r\n"
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"Devseclink.bambu.com: secure\r\n"
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"DevInf.bambu.com: eth0\r\n"
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"DevVersion.bambu.com: 01.07.00.00\r\n"
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"DevCap.bambu.com: 1\r\n"
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"\r\n"
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)
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return message.encode()
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def _build_response_message(self) -> bytes:
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"""Build SSDP response message for M-SEARCH requests.
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Format matches real Bambu printer SSDP responses.
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"""
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ip = self._get_local_ip()
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# Match format of real Bambu printers
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# Key: DevBind.bambu.com: free - tells slicer printer is NOT cloud-bound
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message = (
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"HTTP/1.1 200 OK\r\n"
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"Server: UPnP/1.0\r\n"
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f"Location: {ip}\r\n"
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f"ST: {BAMBU_SEARCH_TARGET}\r\n"
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f"USN: {self.serial}\r\n"
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"Cache-Control: max-age=1800\r\n"
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f"DevModel.bambu.com: {self.model}\r\n"
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f"DevName.bambu.com: {self.name}\r\n"
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"DevSignal.bambu.com: -44\r\n"
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"DevConnect.bambu.com: lan\r\n"
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"DevBind.bambu.com: free\r\n"
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"Devseclink.bambu.com: secure\r\n"
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"DevInf.bambu.com: eth0\r\n"
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"DevVersion.bambu.com: 01.07.00.00\r\n"
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"DevCap.bambu.com: 1\r\n"
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"\r\n"
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)
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return message.encode()
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async def start(self) -> None:
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"""Start the SSDP server."""
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if self._running:
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return
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logger.info("Starting virtual printer SSDP server: %s (%s)", self.name, self.serial)
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self._running = True
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try:
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# Create UDP socket
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self._socket = socket.socket(socket.AF_INET, socket.SOCK_DGRAM, socket.IPPROTO_UDP)
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self._socket.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEADDR, 1)
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# Try to set SO_REUSEPORT if available
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try:
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self._socket.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEPORT, 1)
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except (AttributeError, OSError):
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pass # SO_REUSEPORT not available on all platforms; non-critical
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# Set non-blocking mode
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self._socket.setblocking(False)
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# Bind to SSDP port
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self._socket.bind(("", SSDP_PORT))
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# Join multicast group
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mreq = struct.pack("4sl", socket.inet_aton(SSDP_MULTICAST_ADDR), socket.INADDR_ANY)
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self._socket.setsockopt(socket.IPPROTO_IP, socket.IP_ADD_MEMBERSHIP, mreq)
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# Enable broadcast
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self._socket.setsockopt(socket.SOL_SOCKET, socket.SO_BROADCAST, 1)
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# Set multicast TTL
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self._socket.setsockopt(socket.IPPROTO_IP, socket.IP_MULTICAST_TTL, 2)
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local_ip = self._get_local_ip()
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logger.info("SSDP server listening on port %s, advertising IP: %s", SSDP_PORT, local_ip)
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logger.info("Virtual printer: %s (%s) model=%s", self.name, self.serial, self.model)
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# Send initial NOTIFY
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await self._send_notify()
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logger.info("Sent initial SSDP NOTIFY announcement")
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# Run receive and announce loops
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last_notify = asyncio.get_event_loop().time()
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notify_interval = 30.0 # Send NOTIFY every 30 seconds
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while self._running:
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# Try to receive M-SEARCH requests
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try:
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data, addr = self._socket.recvfrom(4096)
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message = data.decode("utf-8", errors="ignore")
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await self._handle_message(message, addr)
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except BlockingIOError:
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pass # No data available on non-blocking socket; will retry
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except OSError as e:
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if self._running:
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logger.debug("SSDP receive error: %s", e)
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# Send periodic NOTIFY
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now = asyncio.get_event_loop().time()
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if now - last_notify >= notify_interval:
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await self._send_notify()
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last_notify = now
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await asyncio.sleep(0.1)
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except OSError as e:
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if e.errno == 98: # Address already in use
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logger.warning("SSDP port %s in use - real printers may be running", SSDP_PORT)
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else:
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logger.error("SSDP server error: %s", e)
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except asyncio.CancelledError:
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logger.debug("SSDP server cancelled")
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except Exception as e:
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logger.error("SSDP server error: %s", e)
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finally:
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await self._cleanup()
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async def stop(self) -> None:
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"""Stop the SSDP server."""
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logger.info("Stopping SSDP server")
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self._running = False
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await self._cleanup()
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async def _cleanup(self) -> None:
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"""Clean up resources."""
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if self._socket:
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try:
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# Send byebye message
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await self._send_byebye()
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except OSError:
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pass # Best-effort byebye broadcast; socket may already be closed
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try:
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self._socket.close()
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except OSError:
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pass # Best-effort socket close; may already be released
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self._socket = None
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async def _send_notify(self) -> None:
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"""Send SSDP NOTIFY message via broadcast (like real Bambu printers)."""
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if not self._socket:
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return
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try:
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msg = self._build_notify_message()
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# Real Bambu printers broadcast to 255.255.255.255, not multicast
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self._socket.sendto(msg, (SSDP_BROADCAST_ADDR, SSDP_PORT))
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logger.debug("Sent SSDP NOTIFY for %s", self.name)
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except OSError as e:
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logger.debug("Failed to send NOTIFY: %s", e)
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async def _send_byebye(self) -> None:
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"""Send SSDP byebye message when shutting down."""
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if not self._socket:
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return
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message = (
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"NOTIFY * HTTP/1.1\r\n"
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f"Host: {SSDP_MULTICAST_ADDR}:1990\r\n"
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f"NT: {BAMBU_SEARCH_TARGET}\r\n"
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"NTS: ssdp:byebye\r\n"
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f"USN: {self.serial}\r\n"
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"\r\n"
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)
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try:
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self._socket.sendto(message.encode(), (SSDP_BROADCAST_ADDR, SSDP_PORT))
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logger.debug("Sent SSDP byebye")
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except OSError:
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pass # Best-effort byebye send; network may be unavailable during shutdown
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async def _handle_message(self, message: str, addr: tuple[str, int]) -> None:
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"""Handle incoming SSDP message.
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Args:
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message: The SSDP message content
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addr: Tuple of (ip_address, port) of sender
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"""
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# Check if this is an M-SEARCH request for Bambu printers
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if "M-SEARCH" not in message:
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return
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# Check search target
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if BAMBU_SEARCH_TARGET not in message and "ssdp:all" not in message.lower():
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return
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logger.debug("Received M-SEARCH from %s", addr[0])
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# Send response
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if self._socket:
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try:
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response = self._build_response_message()
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self._socket.sendto(response, addr)
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logger.info("Sent SSDP response to %s for virtual printer '%s'", addr[0], self.name)
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except OSError as e:
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logger.debug("Failed to send SSDP response: %s", e)
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class SSDPProxy:
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"""SSDP proxy that re-broadcasts printer discovery from one network to another.
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Listens for SSDP broadcasts from a real printer on the local interface (LAN A),
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then re-broadcasts them on the remote interface (LAN B) with the Location
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header changed to point to Bambuddy's IP on LAN B.
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This allows Bambu Studio on LAN B to discover the printer via Bambuddy.
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"""
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def __init__(
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self,
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local_interface_ip: str,
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remote_interface_ip: str,
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target_printer_ip: str,
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):
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"""Initialize the SSDP proxy.
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Args:
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local_interface_ip: IP of interface on printer's network (LAN A)
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remote_interface_ip: IP of interface on slicer's network (LAN B)
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target_printer_ip: IP of the real printer to proxy SSDP for
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"""
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self.local_interface_ip = local_interface_ip
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self.remote_interface_ip = remote_interface_ip
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self.target_printer_ip = target_printer_ip
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self._running = False
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self._local_socket: socket.socket | None = None
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self._remote_socket: socket.socket | None = None
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self._last_printer_ssdp: bytes | None = None
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self._printer_info: dict[str, str] = {}
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def _parse_ssdp_message(self, data: bytes) -> dict[str, str]:
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"""Parse SSDP message into header dict."""
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headers = {}
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try:
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text = data.decode("utf-8", errors="ignore")
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for line in text.split("\r\n"):
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if ":" in line:
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key, value = line.split(":", 1)
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headers[key.strip().lower()] = value.strip()
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except Exception:
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pass # Return partial headers if parsing fails; malformed packets are common
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return headers
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def _rewrite_ssdp(self, data: bytes) -> bytes:
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"""Rewrite SSDP message for proxy re-broadcast.
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- Location: changed to Bambuddy's remote interface IP
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- DevBind: forced to 'free' so the slicer treats the proxy as a
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LAN-only printer (avoids cloud auth requirement for sending prints)
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"""
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try:
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text = data.decode("utf-8", errors="ignore")
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original = text
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# Replace Location header with our remote interface IP
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text = re.sub(
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r"(Location:\s*)[\d.]+",
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f"\\g<1>{self.remote_interface_ip}",
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text,
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flags=re.IGNORECASE,
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)
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# Force DevBind to 'free' - ensures slicer uses LAN mode for
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# both monitoring AND sending prints through the proxy
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text = re.sub(
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r"(DevBind\.bambu\.com:\s*)\S+",
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r"\g<1>free",
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text,
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flags=re.IGNORECASE,
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)
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# Append " - Proxy" to printer name so it's distinguishable
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text = re.sub(
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r"(DevName\.bambu\.com:\s*)(.+)",
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r"\g<1>\g<2> - Proxy",
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text,
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flags=re.IGNORECASE,
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)
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if text != original:
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logger.debug("Rewrote SSDP for proxy:\n%s", text)
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else:
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logger.warning("SSDP rewrite had no effect. Packet:\n%s", original)
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return text.encode("utf-8")
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except Exception as e:
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logger.error("Failed to rewrite SSDP: %s", e)
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return data
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async def start(self) -> None:
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"""Start the SSDP proxy."""
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if self._running:
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return
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logger.info(
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f"Starting SSDP proxy: listening on {self.local_interface_ip} (LAN A), "
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f"broadcasting on {self.remote_interface_ip} (LAN B), "
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f"proxying printer {self.target_printer_ip}"
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)
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self._running = True
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try:
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# Create socket for listening on LAN A (printer network)
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# Bind to 0.0.0.0 to receive broadcast packets (255.255.255.255)
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# We filter by source IP in the handler
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self._local_socket = socket.socket(socket.AF_INET, socket.SOCK_DGRAM, socket.IPPROTO_UDP)
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self._local_socket.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEADDR, 1)
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try:
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self._local_socket.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEPORT, 1)
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except (AttributeError, OSError):
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pass # SO_REUSEPORT not available on all platforms; non-critical
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self._local_socket.setblocking(False)
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# Bind to all interfaces to receive broadcasts
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self._local_socket.bind(("", SSDP_PORT))
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# Join multicast group on local interface (for multicast SSDP if used)
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mreq = struct.pack(
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"4s4s",
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socket.inet_aton(SSDP_MULTICAST_ADDR),
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socket.inet_aton(self.local_interface_ip),
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)
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self._local_socket.setsockopt(socket.IPPROTO_IP, socket.IP_ADD_MEMBERSHIP, mreq)
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self._local_socket.setsockopt(socket.SOL_SOCKET, socket.SO_BROADCAST, 1)
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# Create socket for broadcasting on LAN B (slicer network)
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self._remote_socket = socket.socket(socket.AF_INET, socket.SOCK_DGRAM, socket.IPPROTO_UDP)
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self._remote_socket.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEADDR, 1)
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try:
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self._remote_socket.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEPORT, 1)
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except (AttributeError, OSError):
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pass # SO_REUSEPORT not available on all platforms; non-critical
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self._remote_socket.setblocking(False)
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# Bind to remote interface
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self._remote_socket.bind((self.remote_interface_ip, 0))
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self._remote_socket.setsockopt(socket.SOL_SOCKET, socket.SO_BROADCAST, 1)
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logger.info(
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"SSDP proxy listening on 0.0.0.0:%s (filtering for printer %s)", SSDP_PORT, self.target_printer_ip
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)
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logger.info("SSDP proxy will broadcast on %s", self.remote_interface_ip)
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# Main loop
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last_broadcast = 0.0
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broadcast_interval = 30.0 # Re-broadcast every 30 seconds
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while self._running:
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# Listen for SSDP from printer on LAN A
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try:
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data, addr = self._local_socket.recvfrom(4096)
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await self._handle_local_packet(data, addr)
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except BlockingIOError:
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pass # No data available on non-blocking socket; will retry
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except OSError as e:
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if self._running:
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logger.debug("SSDP proxy receive error: %s", e)
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# Listen for M-SEARCH from slicer on LAN B (via remote socket would need separate bind)
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# For now, we periodically re-broadcast cached printer SSDP
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now = asyncio.get_event_loop().time()
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if self._last_printer_ssdp and now - last_broadcast >= broadcast_interval:
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await self._broadcast_to_remote()
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last_broadcast = now
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await asyncio.sleep(0.1)
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except OSError as e:
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logger.error("SSDP proxy error: %s", e)
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except asyncio.CancelledError:
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logger.debug("SSDP proxy cancelled")
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except Exception as e:
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logger.error("SSDP proxy error: %s", e)
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finally:
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await self._cleanup()
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async def stop(self) -> None:
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"""Stop the SSDP proxy."""
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logger.info("Stopping SSDP proxy")
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self._running = False
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await self._cleanup()
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async def _cleanup(self) -> None:
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"""Clean up resources."""
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for sock in [self._local_socket, self._remote_socket]:
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if sock:
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try:
|
|
sock.close()
|
|
except OSError:
|
|
pass # Best-effort socket close; may already be released
|
|
self._local_socket = None
|
|
self._remote_socket = None
|
|
|
|
async def _handle_local_packet(self, data: bytes, addr: tuple[str, int]) -> None:
|
|
"""Handle SSDP packet received on local interface (LAN A).
|
|
|
|
Processes two types of traffic:
|
|
- NOTIFY from the real printer → cache and re-broadcast on LAN B
|
|
- M-SEARCH from slicers on LAN B → respond with cached printer info
|
|
"""
|
|
sender_ip = addr[0]
|
|
|
|
# Ignore packets from our own interfaces (prevent loops)
|
|
if sender_ip in (self.local_interface_ip, self.remote_interface_ip):
|
|
return
|
|
|
|
# Handle M-SEARCH from slicers (any IP that's not the target printer)
|
|
if sender_ip != self.target_printer_ip:
|
|
if b"M-SEARCH" in data:
|
|
await self._respond_to_msearch(data, addr)
|
|
return
|
|
|
|
# Below: NOTIFY handling from the real printer
|
|
|
|
# Check if it's a NOTIFY message
|
|
if b"NOTIFY" not in data and b"HTTP/1.1 200" not in data:
|
|
return
|
|
|
|
# Check if it's a Bambu printer SSDP
|
|
if b"bambulab-com:device:3dprinter" not in data:
|
|
return
|
|
|
|
# Parse and store printer info
|
|
headers = self._parse_ssdp_message(data)
|
|
if headers:
|
|
self._printer_info = headers
|
|
logger.debug("Received SSDP from printer %s: %s", sender_ip, headers.get("devname.bambu.com", "unknown"))
|
|
|
|
# Store and immediately broadcast
|
|
self._last_printer_ssdp = data
|
|
await self._broadcast_to_remote()
|
|
|
|
async def _respond_to_msearch(self, data: bytes, addr: tuple[str, int]) -> None:
|
|
"""Respond to M-SEARCH from a slicer with cached, rewritten printer info.
|
|
|
|
When Bambu Studio sends an M-SEARCH (e.g., before sending a print),
|
|
we respond with the cached printer info, rewritten to point to the
|
|
proxy's LAN B IP. Without this, the slicer thinks the printer is
|
|
offline and shows a 'connect to printer' modal.
|
|
"""
|
|
# Check if it's a relevant M-SEARCH
|
|
if b"bambulab-com:device:3dprinter" not in data and b"ssdp:all" not in data.lower():
|
|
return
|
|
|
|
if not self._last_printer_ssdp:
|
|
logger.debug("M-SEARCH from %s but no cached printer SSDP yet", addr[0])
|
|
return
|
|
|
|
logger.debug("Received M-SEARCH from slicer %s", addr[0])
|
|
|
|
# Rewrite the cached printer SSDP (Location → proxy IP, DevBind → free)
|
|
rewritten = self._rewrite_ssdp(self._last_printer_ssdp)
|
|
text = rewritten.decode("utf-8", errors="ignore")
|
|
|
|
# Convert NOTIFY format to M-SEARCH response format:
|
|
# "NOTIFY * HTTP/1.1" → "HTTP/1.1 200 OK"
|
|
# NT: → ST: (Notification Type → Search Target)
|
|
# Remove NTS: header (only in NOTIFY)
|
|
text = re.sub(r"^NOTIFY \* HTTP/1\.1", "HTTP/1.1 200 OK", text)
|
|
text = re.sub(r"^NT:", "ST:", text, flags=re.MULTILINE)
|
|
text = re.sub(r"^NTS:.*\r\n", "", text, flags=re.MULTILINE)
|
|
|
|
# Send unicast response directly to the slicer via remote socket
|
|
if self._remote_socket:
|
|
try:
|
|
self._remote_socket.sendto(text.encode("utf-8"), addr)
|
|
logger.info("Sent SSDP M-SEARCH response to %s", addr[0])
|
|
except OSError as e:
|
|
logger.debug("Failed to send M-SEARCH response to %s: %s", addr[0], e)
|
|
|
|
async def _broadcast_to_remote(self) -> None:
|
|
"""Broadcast cached printer SSDP on remote interface (LAN B)."""
|
|
if not self._remote_socket or not self._last_printer_ssdp:
|
|
return
|
|
|
|
try:
|
|
# Rewrite Location to point to Bambuddy's remote interface
|
|
rewritten = self._rewrite_ssdp(self._last_printer_ssdp)
|
|
|
|
# Calculate broadcast address for remote network
|
|
# Use 255.255.255.255 for simplicity (works across subnets)
|
|
self._remote_socket.sendto(rewritten, (SSDP_BROADCAST_ADDR, SSDP_PORT))
|
|
|
|
printer_name = self._printer_info.get("devname.bambu.com", "unknown")
|
|
logger.debug("Broadcast SSDP for '%s' on LAN B (%s)", printer_name, self.remote_interface_ip)
|
|
except OSError as e:
|
|
logger.debug("Failed to broadcast SSDP on remote: %s", e)
|