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#1558: cached-as-base push_status only forced gcode_state=IDLE while letting the real printer's live-progress fields (mc_percent, stg_cur, layer_num, ...) leak through. Bambu Studio's Send pre-flight read them as busy and refused. The cached branch now overrides the activity-field set the same way it already overrode storage indicators (#1228) and protocol fields. Same bundle ships a multi-round VP audit that found adjacent bugs in the same family: - #1558: cached branch zeroes mc_print_stage / mc_percent / mc_remaining_time / stg / stg_cur / layer_num / total_layer_num / print_error - MQTT auth: per-IP rate-limit (5/60s lockout), hmac.compare_digest, access_code redacted in DEBUG log - FTP cmd_STOR streams chunks to disk + 4 GiB cap (was buffering whole upload) - Sticky-keys allowlist extended with upgrade_state / xcam / hw_switch_state / nozzle_diameter / nozzle_type / online / ams_status - _pending_files cleanup in finally for archive / queue / dispatch handlers - _add_to_print_queue position uses MAX+1 (was hardcoded 1) - DELETE VP removes orphan PendingUpload rows + upload_dir from disk - Per-VP cert regenerates on shared-CA rotation (real signature verification, not DN match) - DHCP target-IP refresh + queue_force_color_match toggle now restart proxy VPs - Per-slicer bridge-response routing (multi-slicer cross-leak fix via sequence_id map) - Child-service readiness barrier (FTP / MQTT / Bind / SSDP) — no false is_running before sockets bind - H2D Pro O1E / O2D model codes added (experimental, needs field confirmation) - FTP passive port range widened 50000-51000; docker-compose + wiki updated - VP refresh_loop crash now unbinds raw_message_handler; tailscale catches asyncio.TimeoutError; SlicerProxyManager lifecycle hardening
256 lines
9.4 KiB
Python
256 lines
9.4 KiB
Python
"""Bind/detect server for virtual printer discovery (ports 3000 + 3002).
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Bambu slicers (BambuStudio, OrcaSlicer) connect to a printer on port 3000
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or 3002 to perform the "bind with access code" handshake before using
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MQTT/FTP.
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Port 3000: plain TCP (legacy / some printer models).
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Port 3002: TLS (newer firmware, e.g. A1 Mini 01.07.x).
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Protocol (same on both ports, only transport differs):
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- Framing: 0xA5A5 + uint16_le(total_msg_size) + JSON payload + 0xA7A7
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- Slicer sends: {"login":{"command":"detect","sequence_id":"20000"}}
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- Printer replies: {"login":{"bind":"free","command":"detect","connect":"lan",
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"dev_cap":1,"id":"<serial>","model":"<model>","name":"<name>",
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"sequence_id":<int>,"version":"<firmware>"}}
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- Connection closes after one exchange.
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"""
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import asyncio
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import json
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import logging
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import ssl
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import struct
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from pathlib import Path
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logger = logging.getLogger(__name__)
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BIND_PORT_PLAIN = 3000
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BIND_PORT_TLS = 3002
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BIND_PORTS = [BIND_PORT_PLAIN, BIND_PORT_TLS]
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FRAME_HEADER = b"\xa5\xa5"
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FRAME_TRAILER = b"\xa7\xa7"
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HEADER_SIZE = 4 # 2 bytes magic + 2 bytes length
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TRAILER_SIZE = 2
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class BindServer:
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"""Responds to slicer bind/detect requests on ports 3000 and 3002.
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In server mode, Bambuddy IS the printer — it responds with its own
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identity so the slicer can discover and bind to it.
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Port 3000 is plain TCP, port 3002 is TLS. BambuStudio chooses which
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port to use based on the printer model discovered via SSDP.
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"""
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def __init__(
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self,
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serial: str,
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model: str,
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name: str,
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version: str = "01.00.00.00",
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bind_address: str = "0.0.0.0", # nosec B104
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cert_path: Path | None = None,
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key_path: Path | None = None,
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):
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self.serial = serial
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self.model = model
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self.name = name
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self.version = version
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self.bind_address = bind_address
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self.cert_path = cert_path
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self.key_path = key_path
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self._servers: list[asyncio.Server] = []
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self._running = False
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# Set after at least one bind port is listening — see ftp_server.py
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# for rationale. Bind server is best-effort across BIND_PORTS, so
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# "ready" means "at least one port bound", matching the existing
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# serve_forever path.
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self.ready = asyncio.Event()
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def _create_tls_context(self) -> ssl.SSLContext | None:
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"""Create SSL context for the TLS bind port (3002)."""
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if not self.cert_path or not self.key_path:
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return None
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ctx = ssl.SSLContext(ssl.PROTOCOL_TLS_SERVER)
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ctx.load_cert_chain(str(self.cert_path), str(self.key_path))
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ctx.minimum_version = ssl.TLSVersion.TLSv1_2
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ctx.verify_mode = ssl.CERT_NONE
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return ctx
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async def start(self) -> None:
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"""Start the bind server on ports 3000 (plain) and 3002 (TLS)."""
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if self._running:
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return
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self._running = True
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tls_ctx = self._create_tls_context()
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if not tls_ctx:
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logger.warning("Bind server: no TLS cert provided, port %s will be plain TCP", BIND_PORT_TLS)
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logger.info(
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"Starting bind server on ports %s (serial=%s, model=%s, tls=%s)",
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BIND_PORTS,
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self.serial,
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self.model,
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tls_ctx is not None,
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)
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try:
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for port in BIND_PORTS:
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use_tls = port == BIND_PORT_TLS and tls_ctx is not None
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try:
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server = await asyncio.start_server(
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self._handle_client,
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self.bind_address,
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port,
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ssl=tls_ctx if use_tls else None,
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)
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self._servers.append(server)
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logger.info(
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"Bind server listening on %s:%s (%s)",
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self.bind_address,
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port,
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"TLS" if use_tls else "plain",
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)
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except OSError as e:
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if e.errno == 98:
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logger.warning("Bind server port %s already in use, skipping", port)
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elif e.errno == 13:
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logger.warning("Bind server: cannot bind to port %s (permission denied), skipping", port)
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else:
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logger.warning("Bind server: failed to bind port %s: %s", port, e)
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if not self._servers:
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logger.error("Bind server: could not bind to any port")
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return
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self.ready.set()
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# Serve all successfully bound ports
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await asyncio.gather(*(s.serve_forever() for s in self._servers))
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except asyncio.CancelledError:
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logger.debug("Bind server task cancelled")
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except Exception as e:
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logger.error("Bind server error: %s", e)
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finally:
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await self.stop()
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async def stop(self) -> None:
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"""Stop the bind server."""
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logger.info("Stopping bind server")
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self._running = False
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self.ready.clear()
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for server in self._servers:
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try:
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server.close()
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await server.wait_closed()
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except OSError as e:
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logger.debug("Error closing bind server: %s", e)
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self._servers = []
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async def _handle_client(
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self,
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reader: asyncio.StreamReader,
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writer: asyncio.StreamWriter,
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) -> None:
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"""Handle a single bind/detect request from a slicer."""
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peername = writer.get_extra_info("peername")
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client_id = f"{peername[0]}:{peername[1]}" if peername else "unknown"
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logger.info("Bind server: client connected from %s", client_id)
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try:
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# Read the framed message (timeout after 10s)
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data = await asyncio.wait_for(reader.read(4096), timeout=10.0)
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if not data:
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return
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# Parse the request
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request = self._parse_frame(data)
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if request is None:
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logger.warning("Bind server: invalid frame from %s", client_id)
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return
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logger.info("Bind server: received from %s: %s", client_id, request)
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# Check if this is a detect command
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login = request.get("login", {})
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if not isinstance(login, dict) or login.get("command") != "detect":
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logger.warning("Bind server: unexpected command from %s: %s", client_id, request)
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return
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# Build response. `sequence_id` is an INTEGER counter chosen by
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# the printer side (not an echo of the slicer's string seq_id).
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# The protocol docstring at the top of this file documents the
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# asymmetry: slicer sends `"20000"` (string), printer replies
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# with an int. The hardcoded 3021 mirrors real-firmware-captured
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# value; an earlier audit suggesting we echo the slicer's seq_id
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# was wrong and would have broken slicers that validate the
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# type (int vs string).
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response = {
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"login": {
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"bind": "free",
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"command": "detect",
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"connect": "lan",
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"dev_cap": 1,
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"id": self.serial,
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"model": self.model,
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"name": self.name,
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"sequence_id": 3021,
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"version": self.version,
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}
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}
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frame = self._build_frame(response)
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writer.write(frame)
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await writer.drain()
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logger.info("Bind server: sent detect response to %s (serial=%s)", client_id, self.serial)
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except TimeoutError:
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logger.debug("Bind server: timeout waiting for data from %s", client_id)
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except Exception as e:
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logger.error("Bind server: error handling %s: %s", client_id, e)
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finally:
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try:
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writer.close()
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await writer.wait_closed()
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except OSError:
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pass
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logger.debug("Bind server: client %s disconnected", client_id)
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def _parse_frame(self, data: bytes) -> dict | None:
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"""Parse a framed message: 0xA5A5 + len(u16le) + JSON + 0xA7A7."""
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if len(data) < HEADER_SIZE + TRAILER_SIZE:
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return None
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if data[:2] != FRAME_HEADER:
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return None
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if data[-2:] != FRAME_TRAILER:
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return None
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# Length field is total message size (header + json + trailer)
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total_len = struct.unpack_from("<H", data, 2)[0]
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if total_len != len(data):
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logger.debug("Bind frame length mismatch: header says %d, got %d", total_len, len(data))
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# JSON payload is between header and trailer
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json_bytes = data[HEADER_SIZE:-TRAILER_SIZE]
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try:
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return json.loads(json_bytes)
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except (json.JSONDecodeError, UnicodeDecodeError) as e:
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logger.warning("Bind server: failed to parse JSON: %s", e)
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return None
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def _build_frame(self, payload: dict) -> bytes:
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"""Build a framed message: 0xA5A5 + len(u16le) + JSON + 0xA7A7."""
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json_bytes = json.dumps(payload, separators=(",", ":")).encode("utf-8")
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total_len = HEADER_SIZE + len(json_bytes) + TRAILER_SIZE
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header = FRAME_HEADER + struct.pack("<H", total_len)
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return header + json_bytes + FRAME_TRAILER
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