mirror of
https://github.com/maziggy/bambuddy.git
synced 2026-09-30 19:21:33 +02:00
The bidirectional forwarders inside create_tls_proxy._handle catch
(ConnectionError, OSError, asyncio.CancelledError) on writes, but
uvloop's UVStream.write raises a plain RuntimeError from
UVHandle._ensure_alive when the underlying handle is already closed.
asyncio's default selector loop reports the same situation as
ConnectionResetError, so the bug only surfaced on uvloop — and only at
the moment ffmpeg (or a snapshot-capture subprocess) dropped its socket
while the proxy was mid-flush.
The RuntimeError slipped past the except tuple, escaped the forwarder
coroutine, and asyncio's client_connected_cb task-exception handler
logged a noisy multi-line traceback ending in:
RuntimeError: unable to perform operation on
<TCPTransport closed=True ...>; the handler is closed
Adds RuntimeError to the except tuple in both _fwd_to_server and
_fwd_to_client (the latter is the actual frame from the bug report —
server→client is where buffered TLS chunks land after the client has
gone). The forwarders are intentionally fire-and-forget on tear-down;
the existing dst.close() in the finally block already handles cleanup.
No functional regression possible — the connection is already dead by
the time the exception fires; this only changes whether asyncio logs an
"Unhandled exception" trace for it.
2 new regression contract tests in test_camera_tls_proxy.py use
inspect.getsource to assert both forwarder closures' except clauses
include RuntimeError. Source-level rather than a runtime test because
the forwarders are nested closures inside _handle and extracting them
just for testability would require a pure-cosmetic refactor.
Latent since 0feed83c (Fix P2S camera TLS compatibility via OpenSSL
proxy, #661, 2026-03-15) — only commit that ever touched these
forwarders.
645 lines
22 KiB
Python
645 lines
22 KiB
Python
"""Camera capture service for Bambu Lab printers.
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Supports two camera protocols:
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- RTSP: Used by X1, X1C, X1E, X2D, H2C, H2D, H2DPRO, H2S, P2S (port 322)
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- Chamber Image: Used by A1, A1MINI, P1P, P1S (port 6000, custom binary protocol)
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"""
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import asyncio
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import logging
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import os
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import shutil
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import ssl
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import struct
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import uuid
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from datetime import datetime
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from pathlib import Path
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logger = logging.getLogger(__name__)
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# JPEG markers
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JPEG_START = b"\xff\xd8"
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JPEG_END = b"\xff\xd9"
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# Cache the ffmpeg path after first lookup
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_ffmpeg_path: str | None = None
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# Track PIDs of ffmpeg processes spawned for one-shot frame capture (snapshot).
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# The cleanup task in routes/camera.py checks this set to avoid killing active captures.
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_active_capture_pids: set[int] = set()
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def get_ffmpeg_path() -> str | None:
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"""Find the ffmpeg executable path.
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Uses shutil.which first, then checks common installation locations
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for systems where PATH may be limited (e.g., systemd services).
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"""
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global _ffmpeg_path
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if _ffmpeg_path is not None:
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return _ffmpeg_path
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# Try PATH first
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ffmpeg_path = shutil.which("ffmpeg")
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# If not found via PATH, check common installation locations
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if ffmpeg_path is None:
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common_paths = [
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"/usr/bin/ffmpeg",
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"/usr/local/bin/ffmpeg",
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"/opt/homebrew/bin/ffmpeg", # macOS Homebrew
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"/snap/bin/ffmpeg", # Ubuntu Snap
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"C:\\ffmpeg\\bin\\ffmpeg.exe", # Windows common
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]
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for path in common_paths:
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if Path(path).exists():
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ffmpeg_path = path
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break
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_ffmpeg_path = ffmpeg_path
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if ffmpeg_path:
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logger.info("Found ffmpeg at: %s", ffmpeg_path)
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else:
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logger.warning("ffmpeg not found in PATH or common locations")
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return ffmpeg_path
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def supports_rtsp(model: str | None) -> bool:
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"""Check if printer model supports RTSP camera streaming.
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RTSP supported: X1, X1C, X1E, X2D, H2C, H2D, H2DPRO, H2S, P2S
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Chamber image only: A1, A1MINI, P1P, P1S
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Note: Model can be either display name (e.g., "P2S") or internal code (e.g., "N7").
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Internal codes from MQTT/SSDP:
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- BL-P001: X1/X1C
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- C13: X1E
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- N6: X2D
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- O1D: H2D
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- O1C, O1C2: H2C
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- O1S: H2S
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- O1E, O2D: H2D Pro
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- N7: P2S
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"""
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if model:
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model_upper = model.upper()
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# Display names: X1, X1C, X1E, X2D, H2C, H2D, H2DPRO, H2S, P2S
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if model_upper.startswith(("X1", "X2", "H2", "P2")):
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return True
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# Internal codes for RTSP models
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if model_upper in ("BL-P001", "C13", "N6", "O1D", "O1C", "O1C2", "O1S", "O1E", "O2D", "N7"):
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return True
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# A1/P1 and unknown models use chamber image protocol
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return False
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def get_camera_port(model: str | None) -> int:
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"""Get the camera port based on printer model.
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X1/X2/H2/P2 series use RTSP on port 322.
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A1/P1 series use chamber image protocol on port 6000.
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"""
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if supports_rtsp(model):
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return 322
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return 6000
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def rewrite_rtsp_request_url(data: bytes, proxy_url: bytes, real_url: bytes) -> bytes:
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"""Rewrite RTSP request-line URLs, leaving other lines (e.g. Authorization) intact.
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RTSP request lines have the form ``METHOD <url> RTSP/1.0\\r\\n``.
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Only those lines are modified so that Digest auth headers (which embed
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the original URL and a cryptographic hash) are not broken.
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"""
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rtsp_marker = b" RTSP/1.0"
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if rtsp_marker not in data:
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return data
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lines = data.split(b"\r\n")
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for i, line in enumerate(lines):
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if line.endswith(rtsp_marker):
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lines[i] = line.replace(proxy_url, real_url)
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break
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return b"\r\n".join(lines)
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async def create_tls_proxy(target_host: str, target_port: int) -> tuple[int, "asyncio.Server"]:
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"""Create a local TCP→TLS proxy for RTSP streams.
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Bambu printers use RTSPS (RTSP over TLS) with self-signed certificates.
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The Debian ffmpeg package uses GnuTLS, whose hardened defaults reject
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certain TLS behaviors (renegotiation, legacy ciphers) that some printer
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firmwares (notably P2S) rely on. This causes streams to drop after a
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few seconds.
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This proxy terminates TLS using Python's ssl module (OpenSSL), which is
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more permissive, and exposes a plain TCP port that ffmpeg connects to
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with ``rtsp://`` instead of ``rtsps://``.
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RTSP embeds URLs in protocol messages (DESCRIBE, SETUP, PLAY). The proxy
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rewrites ``127.0.0.1:<proxy_port>`` → ``<target_host>:<target_port>`` in
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client→server data so the printer recognises the stream path.
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Returns ``(local_port, server)``. Caller must close the server when done.
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"""
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ssl_ctx = ssl.SSLContext(ssl.PROTOCOL_TLS_CLIENT)
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ssl_ctx.check_hostname = False
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ssl_ctx.verify_mode = ssl.CERT_NONE
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# Filled in after the server socket is created (handler only runs after).
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_local_port: list[int] = [0]
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async def _handle(client_reader: asyncio.StreamReader, client_writer: asyncio.StreamWriter):
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tls_writer = None
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try:
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tls_reader, tls_writer = await asyncio.wait_for(
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asyncio.open_connection(target_host, target_port, ssl=ssl_ctx),
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timeout=10.0,
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)
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# URL patterns for RTSP request-line rewriting.
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proxy_url = f"rtsp://127.0.0.1:{_local_port[0]}".encode()
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real_url = f"rtsps://{target_host}:{target_port}".encode()
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# Note on the broad except below: dst.write() raises RuntimeError
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# under uvloop when the underlying handle has already been torn
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# down (uvloop.loop.UVHandle._ensure_alive). asyncio's default
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# selector loop reports the same situation as ConnectionResetError
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# / OSError, so a tuple that doesn't include RuntimeError leaks the
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# uvloop variant up to asyncio's unhandled-exception logger
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# ("Unhandled exception in client_connected_cb"). The forwarders
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# are intentionally fire-and-forget on tear-down — once either
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# peer drops, both halves of the proxy should exit quietly.
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async def _fwd_to_server(src: asyncio.StreamReader, dst: asyncio.StreamWriter):
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"""Forward client→server, rewriting RTSP request-line URLs only."""
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try:
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while True:
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data = await src.read(65536)
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if not data:
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break
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data = rewrite_rtsp_request_url(data, proxy_url, real_url)
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dst.write(data)
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await dst.drain()
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except (ConnectionError, OSError, asyncio.CancelledError, RuntimeError):
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pass
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finally:
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if not dst.is_closing():
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try:
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dst.close()
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except OSError:
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pass
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async def _fwd_to_client(src: asyncio.StreamReader, dst: asyncio.StreamWriter):
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"""Forward server→client unchanged."""
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try:
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while True:
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data = await src.read(65536)
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if not data:
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break
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dst.write(data)
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await dst.drain()
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except (ConnectionError, OSError, asyncio.CancelledError, RuntimeError):
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pass
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finally:
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if not dst.is_closing():
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try:
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dst.close()
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except OSError:
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pass
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await asyncio.gather(
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_fwd_to_server(client_reader, tls_writer),
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_fwd_to_client(tls_reader, client_writer),
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)
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except (ConnectionError, OSError, TimeoutError) as e:
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logger.debug("TLS proxy connection to %s:%s failed: %s", target_host, target_port, e)
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finally:
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for w in (client_writer, tls_writer):
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if w and not w.is_closing():
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try:
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w.close()
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except OSError:
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pass
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server = await asyncio.start_server(_handle, "127.0.0.1", 0)
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_local_port[0] = server.sockets[0].getsockname()[1]
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logger.debug("TLS proxy for %s:%s listening on 127.0.0.1:%s", target_host, target_port, _local_port[0])
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return _local_port[0], server
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def is_chamber_image_model(model: str | None) -> bool:
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"""Check if printer uses chamber image protocol instead of RTSP.
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A1, A1MINI, P1P, P1S use the chamber image protocol on port 6000.
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"""
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return not supports_rtsp(model)
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def build_camera_url(ip_address: str, access_code: str, model: str | None) -> str:
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"""Build the RTSPS URL for the printer camera (RTSP models only)."""
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port = get_camera_port(model)
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return f"rtsps://bblp:{access_code}@{ip_address}:{port}/streaming/live/1"
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def _create_chamber_auth_payload(access_code: str) -> bytes:
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"""Create the 80-byte authentication payload for chamber image protocol.
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Format:
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- Bytes 0-3: 0x40 0x00 0x00 0x00 (magic)
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- Bytes 4-7: 0x00 0x30 0x00 0x00 (command)
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- Bytes 8-15: zeros (padding)
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- Bytes 16-47: username "bblp" (32 bytes, null-padded)
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- Bytes 48-79: access code (32 bytes, null-padded)
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"""
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username = b"bblp"
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access_code_bytes = access_code.encode("utf-8")
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# Build the 80-byte payload
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payload = struct.pack(
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"<II8s32s32s",
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0x40, # Magic header
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0x3000, # Command
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b"\x00" * 8, # Padding
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username.ljust(32, b"\x00"), # Username padded to 32 bytes
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access_code_bytes.ljust(32, b"\x00"), # Access code padded to 32 bytes
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)
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return payload
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def _create_ssl_context() -> ssl.SSLContext:
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"""Create an SSL context for chamber image connection.
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Bambu printers use self-signed certificates, so we disable verification.
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"""
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ctx = ssl.SSLContext(ssl.PROTOCOL_TLS_CLIENT)
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ctx.check_hostname = False
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ctx.verify_mode = ssl.CERT_NONE
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return ctx
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async def read_chamber_image_frame(
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ip_address: str,
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access_code: str,
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timeout: float = 10.0,
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) -> bytes | None:
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"""Read a single JPEG frame from the chamber image protocol.
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This is used by A1/P1 printers which don't support RTSP.
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Args:
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ip_address: Printer IP address
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access_code: Printer access code
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timeout: Connection timeout in seconds
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Returns:
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JPEG image data or None if failed
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"""
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port = 6000
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ssl_context = _create_ssl_context()
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try:
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# Connect with SSL
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reader, writer = await asyncio.wait_for(
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asyncio.open_connection(ip_address, port, ssl=ssl_context),
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timeout=timeout,
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)
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try:
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# Send authentication payload
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auth_payload = _create_chamber_auth_payload(access_code)
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writer.write(auth_payload)
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await writer.drain()
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# Read the 16-byte header
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header = await asyncio.wait_for(reader.readexactly(16), timeout=timeout)
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if len(header) < 16:
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logger.error("Chamber image: incomplete header received")
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return None
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# Parse payload size from header (little-endian uint32 at offset 0)
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payload_size = struct.unpack("<I", header[0:4])[0]
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if payload_size == 0 or payload_size > 10_000_000: # Sanity check: max 10MB
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logger.error("Chamber image: invalid payload size %s", payload_size)
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return None
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# Read the JPEG data
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jpeg_data = await asyncio.wait_for(
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reader.readexactly(payload_size),
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timeout=timeout,
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)
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# Validate JPEG markers
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if not jpeg_data.startswith(JPEG_START):
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logger.error("Chamber image: data is not a valid JPEG (missing start marker)")
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return None
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if not jpeg_data.endswith(JPEG_END):
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logger.warning("Chamber image: JPEG missing end marker, may be truncated")
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logger.debug("Chamber image: received %s bytes", len(jpeg_data))
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return jpeg_data
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finally:
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writer.close()
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try:
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await writer.wait_closed()
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except OSError:
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pass # Socket already closed; cleanup is best-effort
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except TimeoutError:
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logger.error("Chamber image: connection timeout to %s:%s", ip_address, port)
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return None
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except ConnectionRefusedError:
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logger.error("Chamber image: connection refused by %s:%s", ip_address, port)
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return None
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except Exception as e:
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logger.exception("Chamber image: error connecting to %s:%s: %s", ip_address, port, e)
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return None
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async def generate_chamber_image_stream(
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ip_address: str,
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access_code: str,
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fps: int = 5,
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) -> asyncio.StreamReader | None:
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"""Create a persistent connection for streaming chamber images.
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Returns a connected reader or None if connection failed.
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"""
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port = 6000
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ssl_context = _create_ssl_context()
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try:
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reader, writer = await asyncio.wait_for(
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asyncio.open_connection(ip_address, port, ssl=ssl_context),
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timeout=10.0,
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)
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# Send authentication payload
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auth_payload = _create_chamber_auth_payload(access_code)
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writer.write(auth_payload)
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await writer.drain()
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logger.info("Chamber image: connected to %s:%s", ip_address, port)
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return reader, writer
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except Exception as e:
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logger.error("Chamber image: failed to connect to %s:%s: %s", ip_address, port, e)
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return None
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async def read_next_chamber_frame(reader: asyncio.StreamReader, timeout: float = 10.0) -> bytes | None:
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"""Read the next JPEG frame from an established chamber image connection."""
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try:
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# Read the 16-byte header
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header = await asyncio.wait_for(reader.readexactly(16), timeout=timeout)
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# Parse payload size from header (little-endian uint32 at offset 0)
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payload_size = struct.unpack("<I", header[0:4])[0]
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if payload_size == 0 or payload_size > 10_000_000:
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logger.error("Chamber image: invalid payload size %s", payload_size)
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return None
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# Read the JPEG data
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jpeg_data = await asyncio.wait_for(
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reader.readexactly(payload_size),
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timeout=timeout,
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)
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return jpeg_data
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except asyncio.IncompleteReadError:
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logger.warning("Chamber image: connection closed by printer")
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return None
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except TimeoutError:
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logger.warning("Chamber image: read timeout")
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return None
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except Exception as e:
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logger.error("Chamber image: error reading frame: %s", e)
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return None
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async def capture_camera_frame(
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ip_address: str,
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access_code: str,
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model: str | None,
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output_path: Path,
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timeout: int = 30,
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) -> bool:
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"""Capture a single frame from the printer's camera stream and save to disk.
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Uses capture_camera_frame_bytes() internally for protocol selection,
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then writes the result to the specified output path.
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Args:
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ip_address: Printer IP address
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access_code: Printer access code
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model: Printer model (X1, H2D, P1, A1, etc.)
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output_path: Path where to save the captured image
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timeout: Timeout in seconds for the capture operation
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Returns:
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True if capture was successful, False otherwise
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"""
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output_path.parent.mkdir(parents=True, exist_ok=True)
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jpeg_data = await capture_camera_frame_bytes(ip_address, access_code, model, timeout)
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if jpeg_data:
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try:
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with open(output_path, "wb") as f:
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f.write(jpeg_data)
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logger.info("Saved camera frame to: %s", output_path)
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return True
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except OSError as e:
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logger.error("Failed to write camera frame: %s", e)
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return False
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return False
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async def capture_camera_frame_bytes(
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ip_address: str,
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access_code: str,
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model: str | None,
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timeout: int = 15,
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) -> bytes | None:
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"""Capture a single frame and return as JPEG bytes (no disk write).
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Uses the same protocol selection as capture_camera_frame but returns
|
|
bytes directly instead of writing to disk.
|
|
|
|
Args:
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|
ip_address: Printer IP address
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|
access_code: Printer access code
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|
model: Printer model (X1, H2D, P1, A1, etc.)
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|
timeout: Timeout in seconds for the capture operation
|
|
|
|
Returns:
|
|
JPEG bytes if capture was successful, None otherwise
|
|
"""
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|
# Chamber image models: A1/P1 - returns bytes directly
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|
if is_chamber_image_model(model):
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|
logger.info("Capturing camera frame bytes from %s using chamber image protocol (model: %s)", ip_address, model)
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|
return await read_chamber_image_frame(ip_address, access_code, timeout=float(timeout))
|
|
|
|
# RTSP models: X1/H2/P2 - use ffmpeg piping to stdout
|
|
# TLS proxy avoids GnuTLS compatibility issues with some printer firmwares
|
|
port = get_camera_port(model)
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|
proxy_port, proxy_server = await create_tls_proxy(ip_address, port)
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|
camera_url = f"rtsp://bblp:{access_code}@127.0.0.1:{proxy_port}/streaming/live/1"
|
|
|
|
ffmpeg = get_ffmpeg_path()
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|
if not ffmpeg:
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|
proxy_server.close()
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|
await proxy_server.wait_closed()
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|
logger.error("ffmpeg not found for camera frame capture")
|
|
return None
|
|
|
|
cmd = [
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|
ffmpeg,
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|
"-y",
|
|
"-rtsp_transport",
|
|
"tcp",
|
|
"-rtsp_flags",
|
|
"prefer_tcp",
|
|
"-i",
|
|
camera_url,
|
|
"-frames:v",
|
|
"1",
|
|
"-f",
|
|
"image2pipe",
|
|
"-vcodec",
|
|
"mjpeg",
|
|
"-q:v",
|
|
"2",
|
|
"-",
|
|
]
|
|
|
|
logger.info("Capturing camera frame bytes from %s using RTSP (model: %s)", ip_address, model)
|
|
|
|
process = None
|
|
try:
|
|
process = await asyncio.create_subprocess_exec(
|
|
*cmd,
|
|
stdout=asyncio.subprocess.PIPE,
|
|
stderr=asyncio.subprocess.PIPE,
|
|
)
|
|
|
|
_active_capture_pids.add(process.pid)
|
|
try:
|
|
stdout, stderr = await asyncio.wait_for(process.communicate(), timeout=timeout)
|
|
except TimeoutError:
|
|
process.kill()
|
|
await process.wait()
|
|
logger.error("Camera frame bytes capture timed out after %ss", timeout)
|
|
return None
|
|
|
|
if process.returncode == 0 and stdout and len(stdout) >= 100:
|
|
logger.info("Successfully captured camera frame bytes: %s bytes", len(stdout))
|
|
return stdout
|
|
else:
|
|
stderr_text = stderr.decode() if stderr else "Unknown error"
|
|
logger.error("ffmpeg frame bytes capture failed (code %s): %s", process.returncode, stderr_text[:200])
|
|
return None
|
|
|
|
except FileNotFoundError:
|
|
logger.error("ffmpeg not found for camera frame capture")
|
|
return None
|
|
except Exception as e:
|
|
logger.exception("Camera frame bytes capture failed: %s", e)
|
|
return None
|
|
finally:
|
|
if process is not None:
|
|
_active_capture_pids.discard(process.pid)
|
|
proxy_server.close()
|
|
await proxy_server.wait_closed()
|
|
|
|
|
|
async def capture_finish_photo(
|
|
printer_id: int,
|
|
ip_address: str,
|
|
access_code: str,
|
|
model: str | None,
|
|
archive_dir: Path,
|
|
) -> str | None:
|
|
"""Capture a finish photo and save it to the archive's photos folder.
|
|
|
|
Args:
|
|
printer_id: ID of the printer
|
|
ip_address: Printer IP address
|
|
access_code: Printer access code
|
|
model: Printer model
|
|
archive_dir: Directory of the archive (where the 3MF is stored)
|
|
|
|
Returns:
|
|
Filename of the captured photo, or None if capture failed
|
|
"""
|
|
# Create photos subdirectory
|
|
photos_dir = archive_dir / "photos"
|
|
photos_dir.mkdir(parents=True, exist_ok=True)
|
|
|
|
# Generate filename with timestamp
|
|
timestamp = datetime.now().strftime("%Y%m%d_%H%M%S")
|
|
filename = f"finish_{timestamp}_{uuid.uuid4().hex[:8]}.jpg"
|
|
output_path = photos_dir / filename
|
|
|
|
success = await capture_camera_frame(
|
|
ip_address=ip_address,
|
|
access_code=access_code,
|
|
model=model,
|
|
output_path=output_path,
|
|
timeout=30,
|
|
)
|
|
|
|
if success:
|
|
logger.info("Finish photo saved: %s", filename)
|
|
return filename
|
|
else:
|
|
logger.warning("Failed to capture finish photo for printer %s", printer_id)
|
|
return None
|
|
|
|
|
|
async def test_camera_connection(
|
|
ip_address: str,
|
|
access_code: str,
|
|
model: str | None,
|
|
) -> dict:
|
|
"""Test if the camera stream is accessible.
|
|
|
|
Returns dict with success status and any error message.
|
|
"""
|
|
import tempfile
|
|
|
|
fd, tmp_name = tempfile.mkstemp(suffix=".jpg")
|
|
os.close(fd)
|
|
test_path = Path(tmp_name)
|
|
test_path.chmod(0o600)
|
|
|
|
try:
|
|
success = await capture_camera_frame(
|
|
ip_address=ip_address,
|
|
access_code=access_code,
|
|
model=model,
|
|
output_path=test_path,
|
|
timeout=15,
|
|
)
|
|
|
|
if success:
|
|
return {"success": True, "message": "Camera connection successful"}
|
|
else:
|
|
return {
|
|
"success": False,
|
|
"error": (
|
|
"Failed to capture frame from camera. "
|
|
"Ensure the printer is powered on, camera is enabled, and Developer Mode is active. "
|
|
"If running in Docker, try 'network_mode: host' in docker-compose.yml."
|
|
),
|
|
}
|
|
finally:
|
|
# Clean up test file
|
|
if test_path.exists():
|
|
test_path.unlink()
|