mirror of
https://github.com/maziggy/bambuddy.git
synced 2026-10-03 12:46:49 +02:00
A printer with a wrong access code gave no explanation anywhere. The connect callback's failure branch was a bare `state.connected = False`, discarding the CONNACK reason code the printer had just sent, so the only trace was paho's follow-up disconnect -- logged every 30 seconds as "rc=Unspecified error", which is exactly what a powered-off printer produces. In the report behind this fix one of three printers had been in that loop for the whole capture, and neither the log nor the support bundle could say why. Bambu speaks MQTT 3.1.1, whose CONNACK return codes 4 and 5 paho maps onto reason codes 134 and 135. Both are now logged with the printer's own reason string and, for those two, the remedy: the access code is regenerated whenever LAN Only or Developer Mode is toggled, so it has to be re-read from the screen. The access code itself is never logged -- it would land in every bundle. The reason is kept on the client as a stable slug and plumbed through test_connection into the connection diagnostic, which now distinguishes two cases it previously conflated. "The printer refused our credentials" is asserted only when the printer said so; when all Bambuddy knows is that there is no session, the text hedges and names the alternatives (rebooting, or already at its limit of simultaneous connections). The old wording claimed the access code was most likely wrong in both cases. Frontend needed no change -- ConnectionDiagnostic already renders `<status>_<reason>` variants with fallback to the plain per-status text, so an unrecognised slug degrades to today's wording rather than a missing key.
366 lines
15 KiB
Python
366 lines
15 KiB
Python
"""Connection diagnostic for Bambu printers.
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Runs the checks a maintainer performs by hand when triaging a
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"printer won't connect / won't print" report — port reachability, LAN
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developer mode, Docker network mode, subnet match, and MQTT credentials —
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so users can self-diagnose setup problems instead of opening an issue.
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See the 2026-05-21 issue-triage analysis: ~1/3 of closed issues were
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user-side setup errors clustered on exactly these causes.
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"""
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import asyncio
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import ipaddress
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import logging
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import socket
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from backend.app.models.printer import Printer
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from backend.app.schemas.printer import DiagnosticCheck, PrinterDiagnosticResult
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from backend.app.services.bambu_mqtt import CONNECT_ERROR_AUTH_REJECTED
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from backend.app.services.camera import get_camera_port
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from backend.app.services.discovery import is_running_in_docker
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from backend.app.services.printer_manager import printer_manager
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from backend.app.utils.printer_models import has_external_storage, has_remote_storage_toggle
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logger = logging.getLogger(__name__)
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# Bambu LAN-mode ports.
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PORT_MQTT = 8883 # MQTT over TLS — control + status. Connection-critical.
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PORT_FTPS = 990 # FTPS — file upload; required to send prints.
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PORT_RTSPS = 322 # RTSPS — camera stream; optional.
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PORT_CHAMBER_IMAGE = 6000 # Chamber image protocol — A1/P1 camera stream; optional.
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_PORT_PROBE_TIMEOUT = 3.0
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# Default seconds the `printer_publishing` check will wait for the first
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# report-topic message before declaring fail. Bambu printers in idle publish
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# push_status every few seconds; 10s catches healthy bridges with margin while
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# staying short enough that the spinner-with-countdown UX stays acceptable.
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# The check exits the moment a message arrives, so the typical wall-clock is
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# 1–2s, not the full 10. Passed as ``wait_for_publish_seconds`` per call so
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# the support-package code path can skip the wait entirely (defaults to 0).
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PUBLISH_WAIT_DEFAULT = 10.0
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_PUBLISH_POLL_INTERVAL = 0.5
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async def _check_port(ip: str, port: int, timeout: float = _PORT_PROBE_TIMEOUT) -> bool:
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"""Test TCP connectivity to ip:port. Returns True if reachable."""
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try:
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_reader, writer = await asyncio.wait_for(asyncio.open_connection(ip, port), timeout=timeout)
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writer.close()
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try:
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await writer.wait_closed()
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except Exception:
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pass
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return True
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except Exception:
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return False
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def _auth_reason_params(reason: str | None) -> dict:
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"""Map a client's CONNACK-refusal slug onto the check's `params.reason`.
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The frontend renders `diagnostic.check.<id>.<status>_<reason>` when a reason
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is present and falls back to the plain per-status text otherwise, so an
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unknown or absent slug degrades to today's generic wording rather than a
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missing string. Only `auth_rejected` currently carries its own message:
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that is the one case where the printer positively told us the credentials
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were wrong, as opposed to us merely observing that we are not connected.
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"""
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if reason == CONNECT_ERROR_AUTH_REJECTED:
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return {"reason": CONNECT_ERROR_AUTH_REJECTED}
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return {}
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def _camera_port_for_printer(printer: Printer | None) -> tuple[int, str]:
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"""Return the model-specific camera diagnostic port and display protocol."""
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if not printer:
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return PORT_RTSPS, "RTSPS"
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model = getattr(printer, "model", None)
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if not model:
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return PORT_RTSPS, "RTSPS"
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camera_port = get_camera_port(model)
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if camera_port == PORT_CHAMBER_IMAGE:
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return camera_port, "Chamber Image"
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return camera_port, "RTSPS"
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def _detect_docker_network_mode() -> str:
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"""Detect Docker network mode.
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In host mode the container shares the host network namespace, so Docker
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infrastructure interfaces (docker0, br-*, veth*) are visible. In bridge
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mode the container only sees its own eth0.
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"""
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try:
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for _idx, name in socket.if_nameindex():
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if name.startswith(("docker", "br-", "veth", "virbr")):
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return "host"
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except Exception:
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pass
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return "bridge"
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def _get_host_ip() -> str | None:
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"""Best-effort IPv4 address the Bambuddy host routes from."""
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try:
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s = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
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try:
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# No packets are sent; this just picks the routing-table source IP.
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s.connect(("10.255.255.255", 1))
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return s.getsockname()[0]
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finally:
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s.close()
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except Exception:
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return None
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def _same_subnet(ip_a: str, ip_b: str) -> bool | None:
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"""True/False if both are IPv4 literals in the same /24; None if undeterminable."""
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try:
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addr_a = ipaddress.ip_address(ip_a)
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addr_b = ipaddress.ip_address(ip_b)
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except ValueError:
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return None
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if addr_a.version != 4 or addr_b.version != 4:
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return None
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net_a = ipaddress.ip_network(f"{addr_a}/24", strict=False)
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net_b = ipaddress.ip_network(f"{addr_b}/24", strict=False)
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return net_a == net_b
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async def run_connection_diagnostic(
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ip_address: str,
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*,
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printer: Printer | None = None,
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serial_number: str | None = None,
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access_code: str | None = None,
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wait_for_publish_seconds: float = 0.0,
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) -> PrinterDiagnosticResult:
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"""Run connection checks for a printer.
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Works for an existing saved printer (pass ``printer``) and for the
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pre-save Add-Printer flow (pass ``serial_number`` + ``access_code``).
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Each check carries a stable ``id`` and a ``status`` of
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pass / fail / warn / skip; the frontend renders the human-readable
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title and fix text (localized) keyed on that id + status.
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"""
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checks: list[DiagnosticCheck] = []
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# --- Port reachability (probed in parallel) ---
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camera_port, camera_protocol = _camera_port_for_printer(printer)
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mqtt_ok, ftps_ok, camera_ok = await asyncio.gather(
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_check_port(ip_address, PORT_MQTT),
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_check_port(ip_address, PORT_FTPS),
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_check_port(ip_address, camera_port),
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)
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# MQTT is connection-critical; FTPS/camera only degrade printing/camera.
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checks.append(DiagnosticCheck(id="port_mqtt", status="pass" if mqtt_ok else "fail"))
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checks.append(DiagnosticCheck(id="port_ftps", status="pass" if ftps_ok else "warn"))
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checks.append(
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DiagnosticCheck(
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id="port_rtsps",
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status="pass" if camera_ok else "warn",
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params={"port": camera_port, "protocol": camera_protocol},
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)
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)
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# --- Docker network mode ---
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network_mode: str | None = None
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if is_running_in_docker():
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network_mode = _detect_docker_network_mode()
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checks.append(
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DiagnosticCheck(
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id="network_mode",
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status="pass" if network_mode == "host" else "warn",
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params={"mode": network_mode},
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)
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)
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else:
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checks.append(DiagnosticCheck(id="network_mode", status="skip"))
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# --- Subnet match ---
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# Skipped in bridge mode: the container IP is the bridge IP, not the host's,
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# so the comparison is meaningless and the network_mode check already covers it.
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if network_mode == "bridge":
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checks.append(DiagnosticCheck(id="subnet", status="skip"))
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else:
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host_ip = _get_host_ip()
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same = _same_subnet(ip_address, host_ip) if host_ip else None
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if same is None:
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checks.append(DiagnosticCheck(id="subnet", status="skip"))
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else:
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checks.append(
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DiagnosticCheck(
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id="subnet",
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status="pass" if same else "warn",
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params={"printer_ip": ip_address, "host_ip": host_ip},
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)
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)
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# --- External storage (printer-side "Store sent files on external storage") ---
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# Install step 4. The setting has two variants depending on
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# firmware/slicer combo: on newer firmware the toggle lives on the
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# printer (P2S 01.02 / BambuStudio 2.6+), on older versions it's
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# purely a slicer-side preference.
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#
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# For the printer-side variant, `home_flag` bit 11 is pushed on every
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# status report and parsed into state.store_to_sdcard (bambu_mqtt.py
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# line 153). That's the signal here — instant, no FTP I/O.
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#
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# For the slicer-side variant, the printer never hears about it and
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# this check will pass even when the user is missing step 4. That gap
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# is covered separately by the "no_3mf_available" archive-fallback
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# banner. An FTP upload-and-verify probe was tried and rejected — the
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# /cache directory is always writable from Bambuddy regardless of
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# either toggle, so the probe always passes and detects nothing.
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#
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# Skip entirely on models with no external-storage slot at all (A1
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# and A1 Mini). They never set home_flag bit 11, so a naive read of
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# `store_to_sdcard` would fall through to a false `fail` for every
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# A1-series user (#1703).
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#
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# Some models (P1-series) DO have a slot but no reachable control to turn
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# the option on: the Bambu Studio toggle only appears when the printer
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# publishes `support_save_remote_print_file_to_storage`, which current
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# P1 firmware never does, and the P1S/P1P have no screen. For those,
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# `store_to_sdcard` is stuck False with no way to fix it — report `skip`
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# (with a reason the UI explains) instead of a permanently-red `fail`
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# (#2524).
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state = printer_manager.get_status(printer.id) if printer else None
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model = getattr(printer, "model", None) if printer else None
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model_has_slot = has_external_storage(model) if printer else True
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store_to_sdcard = getattr(state, "store_to_sdcard", None) if state else None
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if not model_has_slot or state is None or not state.connected:
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checks.append(DiagnosticCheck(id="external_storage", status="skip"))
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elif store_to_sdcard is True:
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checks.append(DiagnosticCheck(id="external_storage", status="pass"))
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elif store_to_sdcard is False and not has_remote_storage_toggle(model):
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# Slot present but no way to enable it on this firmware — don't nag
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# with an unresolvable fail; explain why via the reason param.
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checks.append(
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DiagnosticCheck(
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id="external_storage",
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status="skip",
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params={"reason": "unsupported_model"},
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)
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)
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elif store_to_sdcard is False:
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checks.append(DiagnosticCheck(id="external_storage", status="fail"))
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else:
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# State exists but the field was never populated — skip rather than
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# report a false fail.
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checks.append(DiagnosticCheck(id="external_storage", status="skip"))
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# --- MQTT credentials / connection ---
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if not mqtt_ok:
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# Can't reach the broker at all — the port check already reported it.
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checks.append(DiagnosticCheck(id="mqtt_auth", status="skip"))
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elif serial_number and access_code:
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# Pre-add flow: actively probe with the credentials the user entered.
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try:
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result = await printer_manager.test_connection(
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ip_address=ip_address,
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serial_number=serial_number,
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access_code=access_code,
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)
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checks.append(
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DiagnosticCheck(
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id="mqtt_auth",
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status="pass" if result.get("success") else "fail",
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params=_auth_reason_params(result.get("reason")),
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)
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)
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except Exception:
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logger.debug("test_connection failed during diagnostic", exc_info=True)
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checks.append(DiagnosticCheck(id="mqtt_auth", status="fail"))
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elif state is not None:
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# Existing printer: trust the live MQTT state rather than opening a
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# second connection (Bambu printers tolerate few concurrent sessions).
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# `connected == False` alone does not say *why* — the live client keeps
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# the last CONNACK refusal, so a rejected access code can be reported as
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# such instead of as a generic failure the user has to guess at (#2698).
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client = printer_manager.get_client(printer.id) if printer else None
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checks.append(
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DiagnosticCheck(
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id="mqtt_auth",
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status="pass" if state.connected else "fail",
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params={} if state.connected else _auth_reason_params(getattr(client, "last_connect_error", None)),
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)
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)
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else:
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checks.append(DiagnosticCheck(id="mqtt_auth", status="skip"))
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# --- LAN developer mode (only readable over a live MQTT connection) ---
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if state is not None and state.connected:
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if state.developer_mode is True:
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dev_status = "pass"
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elif state.developer_mode is False:
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dev_status = "fail"
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else:
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dev_status = "skip"
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checks.append(DiagnosticCheck(id="developer_mode", status=dev_status))
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else:
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checks.append(DiagnosticCheck(id="developer_mode", status="skip"))
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# --- Printer is actually publishing on its report topic ---
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# The mqtt_auth check above only proves TCP + TLS + auth + SUBSCRIBE
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# succeed. A printer with a wrong-cased serial — or one that simply isn't
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# publishing for some other reason — still passes mqtt_auth because the
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# broker accepts the subscription regardless. The user-visible symptom in
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# that case is "AMS / K-profiles / custom filaments missing on the slicer
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# side": the VP bridge has nothing cached to mirror because no reports
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# arrived. #1622 surfaced this: bridge keep-alive timeouts paired with
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# the `Connected and subscribed, but the printer has sent zero status
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# reports` warning. The check below turns that warning into a structured
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# diagnostic result the user can act on without grepping container logs.
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#
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# If ``_report_messages_since_connect`` is already > 0, we exit
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# immediately — the bridge has seen reports. If it's 0 and a wait is
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# requested, we poll every PUBLISH_POLL_INTERVAL up to
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# ``wait_for_publish_seconds`` so a fresh reconnect (counter reset to 0)
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# isn't reported as fail before the printer's first idle push lands.
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publishing_params: dict[str, int | float] | None = None
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publishing_status = "skip"
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if printer is not None and state is not None and state.connected:
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client = printer_manager.get_client(printer.id)
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if client is not None:
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wait_budget = max(wait_for_publish_seconds, 0.0)
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if wait_budget > 0:
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# Expose the budget so the UI can render a countdown next to
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# the spinner — the user knows how long this check might take.
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publishing_params = {"max_wait_seconds": wait_budget}
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loop = asyncio.get_running_loop()
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deadline = loop.time() + wait_budget
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while True:
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if client.report_messages_since_connect > 0:
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publishing_status = "pass"
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break
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if loop.time() >= deadline:
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publishing_status = "fail"
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break
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await asyncio.sleep(_PUBLISH_POLL_INTERVAL)
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checks.append(
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DiagnosticCheck(
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id="printer_publishing",
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status=publishing_status,
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params=publishing_params or {},
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)
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)
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statuses = {c.status for c in checks}
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if "fail" in statuses:
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overall = "problems"
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elif "warn" in statuses:
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overall = "warnings"
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else:
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overall = "ok"
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return PrinterDiagnosticResult(
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printer_id=printer.id if printer else None,
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ip_address=ip_address,
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overall=overall,
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checks=checks,
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)
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