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bambuddy/backend/app/services/printer_diagnostic.py
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"""Connection diagnostic for Bambu printers.
Runs the checks a maintainer performs by hand when triaging a
"printer won't connect / won't print" report — port reachability, LAN
developer mode, Docker network mode, subnet match, and MQTT credentials —
so users can self-diagnose setup problems instead of opening an issue.
See the 2026-05-21 issue-triage analysis: ~1/3 of closed issues were
user-side setup errors clustered on exactly these causes.
"""
import asyncio
import ipaddress
import logging
import socket
from backend.app.models.printer import Printer
from backend.app.schemas.printer import DiagnosticCheck, PrinterDiagnosticResult
from backend.app.services.camera import get_camera_port
from backend.app.services.discovery import is_running_in_docker
from backend.app.services.printer_manager import printer_manager
from backend.app.utils.printer_models import has_external_storage
logger = logging.getLogger(__name__)
# Bambu LAN-mode ports.
PORT_MQTT = 8883 # MQTT over TLS — control + status. Connection-critical.
PORT_FTPS = 990 # FTPS — file upload; required to send prints.
PORT_RTSPS = 322 # RTSPS — camera stream; optional.
PORT_CHAMBER_IMAGE = 6000 # Chamber image protocol — A1/P1 camera stream; optional.
_PORT_PROBE_TIMEOUT = 3.0
# Default seconds the `printer_publishing` check will wait for the first
# report-topic message before declaring fail. Bambu printers in idle publish
# push_status every few seconds; 10s catches healthy bridges with margin while
# staying short enough that the spinner-with-countdown UX stays acceptable.
# The check exits the moment a message arrives, so the typical wall-clock is
# 1–2s, not the full 10. Passed as ``wait_for_publish_seconds`` per call so
# the support-package code path can skip the wait entirely (defaults to 0).
PUBLISH_WAIT_DEFAULT = 10.0
_PUBLISH_POLL_INTERVAL = 0.5
async def _check_port(ip: str, port: int, timeout: float = _PORT_PROBE_TIMEOUT) -> bool:
"""Test TCP connectivity to ip:port. Returns True if reachable."""
try:
_reader, writer = await asyncio.wait_for(asyncio.open_connection(ip, port), timeout=timeout)
writer.close()
try:
await writer.wait_closed()
except Exception:
pass
return True
except Exception:
return False
def _camera_port_for_printer(printer: Printer | None) -> tuple[int, str]:
"""Return the model-specific camera diagnostic port and display protocol."""
if not printer:
return PORT_RTSPS, "RTSPS"
model = getattr(printer, "model", None)
if not model:
return PORT_RTSPS, "RTSPS"
camera_port = get_camera_port(model)
if camera_port == PORT_CHAMBER_IMAGE:
return camera_port, "Chamber Image"
return camera_port, "RTSPS"
def _detect_docker_network_mode() -> str:
"""Detect Docker network mode.
In host mode the container shares the host network namespace, so Docker
infrastructure interfaces (docker0, br-*, veth*) are visible. In bridge
mode the container only sees its own eth0.
"""
try:
for _idx, name in socket.if_nameindex():
if name.startswith(("docker", "br-", "veth", "virbr")):
return "host"
except Exception:
pass
return "bridge"
def _get_host_ip() -> str | None:
"""Best-effort IPv4 address the Bambuddy host routes from."""
try:
s = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
try:
# No packets are sent; this just picks the routing-table source IP.
s.connect(("10.255.255.255", 1))
return s.getsockname()[0]
finally:
s.close()
except Exception:
return None
def _same_subnet(ip_a: str, ip_b: str) -> bool | None:
"""True/False if both are IPv4 literals in the same /24; None if undeterminable."""
try:
addr_a = ipaddress.ip_address(ip_a)
addr_b = ipaddress.ip_address(ip_b)
except ValueError:
return None
if addr_a.version != 4 or addr_b.version != 4:
return None
net_a = ipaddress.ip_network(f"{addr_a}/24", strict=False)
net_b = ipaddress.ip_network(f"{addr_b}/24", strict=False)
return net_a == net_b
async def run_connection_diagnostic(
ip_address: str,
*,
printer: Printer | None = None,
serial_number: str | None = None,
access_code: str | None = None,
wait_for_publish_seconds: float = 0.0,
) -> PrinterDiagnosticResult:
"""Run connection checks for a printer.
Works for an existing saved printer (pass ``printer``) and for the
pre-save Add-Printer flow (pass ``serial_number`` + ``access_code``).
Each check carries a stable ``id`` and a ``status`` of
pass / fail / warn / skip; the frontend renders the human-readable
title and fix text (localized) keyed on that id + status.
"""
checks: list[DiagnosticCheck] = []
# --- Port reachability (probed in parallel) ---
camera_port, camera_protocol = _camera_port_for_printer(printer)
mqtt_ok, ftps_ok, camera_ok = await asyncio.gather(
_check_port(ip_address, PORT_MQTT),
_check_port(ip_address, PORT_FTPS),
_check_port(ip_address, camera_port),
)
# MQTT is connection-critical; FTPS/camera only degrade printing/camera.
checks.append(DiagnosticCheck(id="port_mqtt", status="pass" if mqtt_ok else "fail"))
checks.append(DiagnosticCheck(id="port_ftps", status="pass" if ftps_ok else "warn"))
checks.append(
DiagnosticCheck(
id="port_rtsps",
status="pass" if camera_ok else "warn",
params={"port": camera_port, "protocol": camera_protocol},
)
)
# --- Docker network mode ---
network_mode: str | None = None
if is_running_in_docker():
network_mode = _detect_docker_network_mode()
checks.append(
DiagnosticCheck(
id="network_mode",
status="pass" if network_mode == "host" else "warn",
params={"mode": network_mode},
)
)
else:
checks.append(DiagnosticCheck(id="network_mode", status="skip"))
# --- Subnet match ---
# Skipped in bridge mode: the container IP is the bridge IP, not the host's,
# so the comparison is meaningless and the network_mode check already covers it.
if network_mode == "bridge":
checks.append(DiagnosticCheck(id="subnet", status="skip"))
else:
host_ip = _get_host_ip()
same = _same_subnet(ip_address, host_ip) if host_ip else None
if same is None:
checks.append(DiagnosticCheck(id="subnet", status="skip"))
else:
checks.append(
DiagnosticCheck(
id="subnet",
status="pass" if same else "warn",
params={"printer_ip": ip_address, "host_ip": host_ip},
)
)
# --- External storage (printer-side "Store sent files on external storage") ---
# Install step 4. The setting has two variants depending on
# firmware/slicer combo: on newer firmware the toggle lives on the
# printer (P2S 01.02 / BambuStudio 2.6+), on older versions it's
# purely a slicer-side preference.
#
# For the printer-side variant, `home_flag` bit 11 is pushed on every
# status report and parsed into state.store_to_sdcard (bambu_mqtt.py
# line 153). That's the signal here — instant, no FTP I/O.
#
# For the slicer-side variant, the printer never hears about it and
# this check will pass even when the user is missing step 4. That gap
# is covered separately by the "no_3mf_available" archive-fallback
# banner. An FTP upload-and-verify probe was tried and rejected — the
# /cache directory is always writable from Bambuddy regardless of
# either toggle, so the probe always passes and detects nothing.
#
# Skip entirely on models with no external-storage slot at all (A1
# and A1 Mini). They never set home_flag bit 11, so a naive read of
# `store_to_sdcard` would fall through to a false `fail` for every
# A1-series user (#1703).
state = printer_manager.get_status(printer.id) if printer else None
model_has_slot = has_external_storage(getattr(printer, "model", None)) if printer else True
if not model_has_slot or state is None or not state.connected:
checks.append(DiagnosticCheck(id="external_storage", status="skip"))
elif getattr(state, "store_to_sdcard", None) is True:
checks.append(DiagnosticCheck(id="external_storage", status="pass"))
elif getattr(state, "store_to_sdcard", None) is False:
checks.append(DiagnosticCheck(id="external_storage", status="fail"))
else:
# State exists but the field was never populated — skip rather than
# report a false fail.
checks.append(DiagnosticCheck(id="external_storage", status="skip"))
# --- MQTT credentials / connection ---
if not mqtt_ok:
# Can't reach the broker at all — the port check already reported it.
checks.append(DiagnosticCheck(id="mqtt_auth", status="skip"))
elif serial_number and access_code:
# Pre-add flow: actively probe with the credentials the user entered.
try:
result = await printer_manager.test_connection(
ip_address=ip_address,
serial_number=serial_number,
access_code=access_code,
)
checks.append(DiagnosticCheck(id="mqtt_auth", status="pass" if result.get("success") else "fail"))
except Exception:
logger.debug("test_connection failed during diagnostic", exc_info=True)
checks.append(DiagnosticCheck(id="mqtt_auth", status="fail"))
elif state is not None:
# Existing printer: trust the live MQTT state rather than opening a
# second connection (Bambu printers tolerate few concurrent sessions).
checks.append(DiagnosticCheck(id="mqtt_auth", status="pass" if state.connected else "fail"))
else:
checks.append(DiagnosticCheck(id="mqtt_auth", status="skip"))
# --- LAN developer mode (only readable over a live MQTT connection) ---
if state is not None and state.connected:
if state.developer_mode is True:
dev_status = "pass"
elif state.developer_mode is False:
dev_status = "fail"
else:
dev_status = "skip"
checks.append(DiagnosticCheck(id="developer_mode", status=dev_status))
else:
checks.append(DiagnosticCheck(id="developer_mode", status="skip"))
# --- Printer is actually publishing on its report topic ---
# The mqtt_auth check above only proves TCP + TLS + auth + SUBSCRIBE
# succeed. A printer with a wrong-cased serial — or one that simply isn't
# publishing for some other reason — still passes mqtt_auth because the
# broker accepts the subscription regardless. The user-visible symptom in
# that case is "AMS / K-profiles / custom filaments missing on the slicer
# side": the VP bridge has nothing cached to mirror because no reports
# arrived. #1622 surfaced this: bridge keep-alive timeouts paired with
# the `Connected and subscribed, but the printer has sent zero status
# reports` warning. The check below turns that warning into a structured
# diagnostic result the user can act on without grepping container logs.
#
# If ``_report_messages_since_connect`` is already > 0, we exit
# immediately — the bridge has seen reports. If it's 0 and a wait is
# requested, we poll every PUBLISH_POLL_INTERVAL up to
# ``wait_for_publish_seconds`` so a fresh reconnect (counter reset to 0)
# isn't reported as fail before the printer's first idle push lands.
publishing_params: dict[str, int | float] | None = None
publishing_status = "skip"
if printer is not None and state is not None and state.connected:
client = printer_manager.get_client(printer.id)
if client is not None:
wait_budget = max(wait_for_publish_seconds, 0.0)
if wait_budget > 0:
# Expose the budget so the UI can render a countdown next to
# the spinner — the user knows how long this check might take.
publishing_params = {"max_wait_seconds": wait_budget}
loop = asyncio.get_running_loop()
deadline = loop.time() + wait_budget
while True:
if client.report_messages_since_connect > 0:
publishing_status = "pass"
break
if loop.time() >= deadline:
publishing_status = "fail"
break
await asyncio.sleep(_PUBLISH_POLL_INTERVAL)
checks.append(
DiagnosticCheck(
id="printer_publishing",
status=publishing_status,
params=publishing_params or {},
)
)
statuses = {c.status for c in checks}
if "fail" in statuses:
overall = "problems"
elif "warn" in statuses:
overall = "warnings"
else:
overall = "ok"
return PrinterDiagnosticResult(
printer_id=printer.id if printer else None,
ip_address=ip_address,
overall=overall,
checks=checks,
)