Every item in the collapsed header was flex-shrink-0, so the row was as
wide as its contents and the Card doesn't clip -- the remote-interface IP
and the enable toggle painted outside the card border. The name's
`truncate` couldn't save it: a flex item defaults to min-width:auto, so
it never shrank below its text (`flex-shrink-0 truncate` on the target
name was self-cancelling for the same reason).
Move the metadata into a flex-1 min-w-0 flex-wrap group so it wraps to a
second line, and keep the chevron, dot and toggle outside it. Wrapping
rather than truncating: the bind and remote-interface addresses are what
the page exists to show.
Needs three things at once, hence the report -- both IPs set (Bambuddy
and printer on different subnets), a target named "Printer at <ip>" from
discovery, and the 3-column card grid.
overflow-hidden is scoped to this card, not added to Card: half the cards
in the app render menus that deliberately paint outside their bounds.
Round-3 review of the "Save AMS mapping" PR.
The queue item's ams_mapping was set unconditionally, on the reasoning that
honouring the slicer's own pick is a correctness fix rather than a feature.
It is both. Storing a resolved mapping makes _ensure_ams_mapping return
early, so _compute_ams_mapping_for_printer never runs — and that function is
where prefer_lowest_filament lives, along with the AMS-filament-backup gate
that qualifies it (#1766), the inventory-remain overrides, and the per-slot
force-colour overrides. Every existing queue-mode VP pointed at a printer
would have quietly lost all of it on upgrade, without a setting to turn it
back on.
So save_ams_mapping now gates the queue item too, not just the archive
persistence. Off is exactly the old behaviour. The correctness case the PR
was written for — two spools of the same red PLA, and the slot the user
picked in the slicer thrown away — is still fixed, for anyone who asks for
it.
Force color match wins over it when both are on. Its only effect on a
fixed-printer item is the filament_overrides written onto the queue item,
and those are read inside the function a stored mapping skips, so the two
toggles sitting next to each other on the same card silently cancelled. The
dispatch now matches strictly, as asked, while the slicer's pick is still
saved onto the archive — that is what the toggle's name promises, and a
later reprint is a separate decision from this print. The queue-add fallback
applies the same rule to a request that carries force-colour overrides.
A mapping shorter than a plate's highest slot id cannot address that plate's
own slots, and _ensure_ams_mapping would have kept it anyway, since it only
rejects an all-unresolved one. Each plate now checks the length it needs and
falls back to a computed mapping if the array does not reach. Bambu Studio
sends a file-global array, so this normally never fires; it also means a
multi-plate Send All degrades safely if that ever stops being true.
The badges claimed more than they delivered. Both rendered whenever a saved
mapping existed, ignoring which printer it belonged to, while the tooltips
promised the reprint would reuse those exact spools — true only on the
printer the trays were resolved against. The queue row's flag is now
computed against that row's own printer, which is precisely when dispatch
reuses the mapping, and the archive card names the printer instead of
implying any of them will do. It hides itself when that printer no longer
exists. Retranslated in all 13 locales.
Frontend tests, which the PR had none of. The printer-scoping rule is now a
pure function rather than an inline expression, covered for the mismatched
printer, the no-printer-selected case that would otherwise compare undefined
against undefined, and malformed extra_data. The toggle's undo bookkeeping
is covered for unresolved slots, short mappings, and hand-made picks —
preserved when the toggle never wrote that slot, replaced when it did, which
is behaviour worth pinning either way.
Also reverts all three queue-mode switches when a save fails, not just the
new one; without it the card shows a setting the server rejected.
Lets a reprint reuse the AMS slot the slicer itself picked, instead of
re-deriving one from the file's static type/color.
When a Print Queue VP has "Save AMS mapping" on, the slicer's own
live-resolved ams_mapping (from the project_file MQTT command) is
persisted onto the archive as extra_data.slicer_ams_mapping. A later
reprint can reuse it via a new "Mapping" button in the filament-mapping
panel — one click snaps every slot to the saved pick, click again
reverts to auto-match. Archive cards and queue rows get an "AMS mapping
saved" badge so it's visible beforehand. add_to_queue also falls back
to the saved mapping automatically when the caller sends no explicit
ams_mapping (e.g. a plain reprint with no per-slot edits).
The queue item's own ams_mapping (used for that dispatch) is still
captured unconditionally whenever the slicer provides it — that part is
a correctness fix, not gated behind the toggle. Only the archive
persistence for future reprints is opt-in.
Split out from the original combined PR per review: this half is
genuinely opt-in and low-risk (#2684). The dispatch-time validation
gate that keeps a stored mapping honest (#1308) changes behaviour for
every existing user and will land as its own PR.
Review fixes applied:
- _extract_slicer_ams_mapping_json: dropped the unreachable `v is None`
arm and rejected bool explicitly (isinstance(v, int) accepts bool).
- Translated the Russian docstring text to English.
- save_ams_mapping's model comment moved to a trailing comment on the
column line, matching the file's convention.
- usingArchiveMapping now resets when the plate or archive changes, so
the Mapping button can't read ON against a mapping it never applied.
- Translated "Click to change slot assignment" and "Re-read".
- add_to_queue's fallback is now called out explicitly in code comments
and covered by three new integration tests (fallback fires, explicit
mapping wins, unrelated extra_data doesn't false-trigger).
Closes#2684
The app was built dark-first, so hundreds of hardcoded Tailwind semantic
text/icon utilities at light shades (text-amber-400, text-blue-300, ...) had
no dark: variant. With darkMode:'class' they applied in light theme too,
producing washed-out text on pale tints and white cards — including the three
reported spots (AMS Drying banner, Archives no-3MF warning, debug-logging
banner). Give each a theme-aware pair: a darker readable shade in light theme
with the original pinned to dark:, so dark theme is unchanged. ~100 files.
The bambu-* CSS-variable palette (self-correcting) and the dark-only SpoolBuddy
kiosk are left untouched. Plain text-white is already theme-aware via the
existing index.css .text-white override, so it needed no changes.
Non-proxy VPs (Archive / Review / Queue) with a target printer set up
a live-mirror bridge that forwards the slicer's MQTT and RTSPS auth
bytes through to the real printer. The slicer holds one code in its
profile (the one it bound the VP with), and that code has to satisfy
both the VP listener and the real printer at the far end of the
bridge. If the codes diverge the bridge silently fails at the second
hop — slicer reaches .49:8883, FINs before sending a ClientHello,
retries identically. The wiki framed the code-match requirement as a
camera-only concern; it isn't, all bridged protocols inherit.
Fix removes the foot-gun instead of re-documenting it. When a target
is selected on a non-proxy VP the access-code field switches to a
read-only display showing the target's code with an Eye-toggle
reveal; the backend auto-inherits on every create / update (any
explicit access_code submitted alongside a target is silently
overridden as belt-and-braces for non-UI clients). The required-when-
enabling check now treats target-set as satisfying the access-code
requirement. Standalone (no-target) non-proxy VPs still get the
editable input + Save button.
One-shot startup migration corrects any pre-existing mismatched
rows: SELECTs diverged VPs and logs one INFO line per row for the
audit trail, then UPDATEs via correlated subquery. Idempotent and
portable between SQLite and Postgres.
#1429 (reported by @TrickShotMLG02, confirmed by @Mape6 on a flat single-LAN
that rules out subnet / mDNS-reflector theories): with the physical printer
off the slicer's "Send" landed in Bambuddy's archive; once the printer
powered on every subsequent "Send" went straight to the printer's SD card
and bypassed Bambuddy. Bundle analysis: mape6-before showed clean FTP
receive + archive lines, mape6-after had zero FTP attempts to Bambuddy
once the printer was online.
Cause: mqtt_bridge.py::_resolve_client encoded _target_ip_uint32_le /
_vp_ip_uint32_le ONLY on client-identity change and early-returned on
every refresh tick when the same client object was still bound. If
target_client.ip_address was empty at first bind (DB row stale, or client
constructed before SSDP refresh filled it in), the encoding stayed None,
the net.info[*].ip rewrite block was skipped, the cache filled with the
real printer IP, sticky-key preservation kept the poisoned net value
alive across every subsequent incremental push, and the slicer followed
the leaked IP. Only Bambuddy-restart-with-printer-off cleared it — the
workaround both reporters independently arrived at. Same shape on
multi-NIC printers (X1C, H2D Pro): the rewrite only matched entries
whose ip equalled _target_ip_uint32_le, so a secondary interface IP
Bambuddy never saw would leak through unchanged.
Bridge fix:
- _resolve_client calls a new _refresh_ip_encoding() on every refresh
tick, even when client identity is unchanged; self-heals once
ip_address becomes valid.
- _refresh_ip_encoding() sweeps the existing _latest_print_state when
encoding becomes valid for the first time. Without the sweep,
sticky-key preservation keeps the pre-arm poisoned cache alive
forever — incremental pushes that don't include net carry the bad
value forward.
- _rewrite_net_info_ips() rewrites EVERY non-zero net.info[].ip entry
that doesn't already equal the VP IP, not just entries matching
_target_ip_uint32_le. Multi-NIC printers stop leaking secondary
interfaces. Zero-IP placeholders are left alone so "active interface"
detection still works.
- INFO logging on encoding arm/update and on cache sweep so future
bundles directly answer "did the rewrite fire?".
Mode wire-value rename (#1429 follow-up, separate confusion source):
- Both reporters' support bundles showed mode: immediate while the UI
said "Archive"; @TrickShotMLG02 quoted: "I have no idea why it says
immediate in the support-info.json file. In the webui the printer is
set to archive". UI button "Archive" had always saved immediate, and
"Queue" had always saved print_queue. Canonical wire values are now
archive / review / queue / proxy, matching the button labels 1:1.
- New normalize_vp_mode() + VP_MODE_* constants in
models/virtual_printer.py; manager.py normalises on construction so
a legacy row read pre-migration still dispatches correctly.
- core/database.py::run_migrations rewrites existing virtual_printers
and settings rows; idempotent (re-runs are no-ops); identical SQL
under SQLite and Postgres.
- API routes accept both legacy and canonical on input, normalise
before storage. GET /settings/virtual-printer normalises on read so
the frontend's mode-button highlight works for stale legacy values.
- Three frontend VP components (VirtualPrinterSettings,
VirtualPrinterCard, VirtualPrinterAddDialog) switched click handlers
and type aliases to canonical; each got its own normalizeMode()
helper so a stale-cached settings payload still highlights the right
button. Two pre-existing `printer.mode === 'queue' ? 'review'`
legacy mappings in VirtualPrinterCard were the source of a test
failure caught mid-implementation where the new canonical 'queue'
was being mis-aliased back to 'review' and hiding the auto-dispatch
+ force-color-match toggles.
mode handler is NOT the dispatch bug: manager.py::_archive_file (the
handler for archive mode) doesn't dispatch to the physical printer.
The "files end up on the printer's SD card" symptom was the IP-leak
from the bridge cache. The mode rename is purely clarity / support-
bundle accuracy.
Two recurring virtual-printer support pains, both on the Virtual Printers
settings page.
Setup check: a stethoscope action on each VP card runs a pass/fail/warn/skip
checklist — VP enabled, services running, bind interface still exists, access
code set, target printer (proxy mode), and a live TCP probe of the FTP / MQTT
/ discovery ports on the bind IP. start_server swallows per-service bind
errors, so a service object can exist while nothing is listening; probing the
bind IP from outside is the only reliable signal and it catches the common
"VP not visible in the slicer" bind-IP-conflict and stale-interface cases.
Slicer certificate: virtual printers present a TLS cert signed by a shared CA
the slicer must trust. Until now users had to docker exec in and cat
bbl_ca.crt. A "Slicer certificate" row on the settings card now offers Copy
and Download (bambuddy-virtual-printer-ca.crt) plus the SHA-256 fingerprint.
GET /virtual-printers/ca-certificate returns only the public certificate; the
CA private key never leaves the backend. The CA is generated on demand so the
button works before the first VP is enabled.
Backend:
- services/virtual_printer/diagnostic.py — run_vp_diagnostic + port probes
- schemas/virtual_printer.py — VPDiagnosticResult
- CertificateService.get_ca_certificate_info() + manager helper
- routes: GET /virtual-printers/ca-certificate, /{vp_id}/diagnostic
Frontend:
- VirtualPrinterDiagnosticModal.tsx; stethoscope button on VirtualPrinterCard
- caCert row on VirtualPrinterList; utils/clipboard.ts (shared copy w/
non-secure-context fallback + downloadTextFile), de-duplicating the
existing FQDN-copy logic
- vpDiagnostic.* + virtualPrinter.caCert.* across all 9 locales
9 backend unit tests + 4 route integration tests + 6 frontend tests.
Backend ruff clean, frontend build clean, i18n parity green.
The Tailscale toggle was supposed to obtain a publicly-trusted Let's Encrypt
cert via `tailscale cert` so users wouldn't need to import Bambuddy's CA into
the slicer. End-to-end testing showed this was always going to fail:
- Bambu Studio and OrcaSlicer refuse hostname input in the Add Printer
dialog (IP-only).
- Their printer-MQTT trust path validates only against the bundled BBL CA
store (`printer.cer`), NOT the system trust store. Confirmed against
ClusterM/open-bambu-networking's clean-room reimplementation:
`mosquitto_tls_set(BBL_CA)` + `verify_peer=1` + `tls_insecure=true` —
chain validation against BBL CA only, hostname check intentionally
skipped (because Bambu's printer cert CN is the device serial).
- LE certs don't chain to BBL CA, so the slicer rejects with the
well-known "-1" before any hostname/IP logic runs.
The cert-import step is unavoidable; LE provisioning was dead code for slicer
connections. Pivot:
- Toggle stays as an informational marker — when ON, the VP card surfaces
the host's Tailscale IP + MagicDNS hostname so users know what to paste
into the slicer.
- Cert is always self-signed (signed by `bbl_ca`).
- Tailscale exposure is via the existing bind_ip dropdown, which already
includes `tailscale0` IPs.
- Tailscale's role is strictly network reach — same trust burden as LAN.
Backend cuts:
- `tailscale.py`: `provision_cert`, `ensure_cert`, `cert_needs_renewal`,
`_FQDN_RE`, `_HTTPS_DISABLED_RE`, `TS_CERT_EXPIRY_THRESHOLD_DAYS`,
`cryptography` import. Keep `get_status` and `TailscaleStatus`.
- `certificate.py`: `ts_cert_path`, `ts_key_path`, `use_tailscale_cert`.
- `manager.py`: `tailscale_fqdn` field, `_cert_renewal_task`,
`_cert_restart_task`, `_cert_renewal_loop`, `_restart_for_cert_renewal`,
`_cancel_renewal_task`, `_cancel_restart_task`. Simplify
`_resolve_cert_and_advertise` to a sync method that just generates the
self-signed cert. Drop `tailscale_disabled` from the change-detection
diff (toggle is informational — no service restart needed).
- `routes/virtual_printers.py` + `routes/settings.py`: drop the
`tailscale_not_available` 409 guard on toggle-enable.
Frontend cuts:
- `VirtualPrinterCard.tsx`: FQDN/IP display sourced from
`multiVirtualPrinterApi.getTailscaleStatus()` (host-level) when toggle
is ON, instead of `printer.status.tailscale_fqdn` (cert side-effect,
no longer populated). Drop the `tailscale_not_available` toast handler.
- `api/client.ts`: drop `tailscale_fqdn` from the VP status type.
- i18n: rewrite `tailscaleDisabled.description` in all 8 locales to drop
the "no cert import" promise. Remove `toast.tailscaleNotAvailable` key.
Docs:
- Wiki `features/virtual-printer.md`: rewrite the entire Tailscale section
— remove the LE-cert + HTTPS-Certs-toggle + tailscale-cert-operator
steps, document the toggle as informational, keep the Docker socket
mount + LXC TUN troubleshooting (those still apply for daemon
reachability).
- README: drop "the Tailscale benefit here is the tunnel, not cert-import
elimination" framing in favour of "surfaces the IP for paste into
slicer; CA import unchanged because BBL CA store, not system trust
store, is what gets validated".
Tests:
- `test_tailscale.py`: reduced to surviving `get_status` cases (binary
missing, command fails, success, empty DNSName, malformed JSON).
- `test_virtual_printer.py::test_sync_from_db_restarts_on_tailscale_disabled_change`
→ `test_sync_from_db_does_not_restart_on_tailscale_toggle` (toggle is
informational; `remove_instance` must NOT be called).
- `test_virtual_printer_api.py::TestVirtualPrinterTailscaleGuardAPI` →
`TestVirtualPrinterTailscaleToggleAPI` (single test asserts both
directions succeed and daemon is never consulted).
- `VirtualPrinterCard.test.tsx`: mock now stubs `getTailscaleStatus`;
FQDN-copy block drives data through that query.
DB column `tailscale_disabled` is kept (persists toggle state) — Postgres-
safe column drop is harder; future cleanup can remove if the toggle goes
away entirely. LE cert files on disk (`virtual_printer_ts.{crt,key}`) are
left in place per VP — harmless residue, manual cleanup if desired.
Verified: ruff clean, 2484 backend unit tests pass, 17 frontend VP-card
tests pass, frontend build succeeds, live service restart confirms VPs
serve `issuer=CN=Virtual Printer CA` on the Tailscale interface — slicer
trusts the user-imported bambuddy CA and skips hostname checks, so MQTT
connection succeeds end-to-end.
Edward's diagnosis was exact: the manual /print-queue/ POST extracts
filament requirements from the 3MF and writes
required_filament_types + filament_overrides + ams_mapping onto the
queue item, but the VP queue-mode write path skipped all of that.
Net effect: scheduler reached its model-only-matching fallback and
auto-dispatched onto whatever printer was free regardless of loaded
colour.
Extract the scheduler's existing _get_filament_requirements 3MF
parser into a shared helper so the VP path can reuse it. VP's
_add_to_print_queue now populates required_filament_types
unconditionally (cheap; helps the scheduler reject obvious type
mismatches) and writes filament_overrides with force_color_match:
true per consumed slot when a new per-VP queue_force_color_match
toggle is on. Default off to preserve current behaviour for
upgraders.
UI: new toggle on VirtualPrinterCard, mode-gated to print_queue,
mirroring the existing auto-dispatch toggle. i18n: en + de
translated, other 6 locales seeded with English copy.
Schema: one nullable column on virtual_printers
(queue_force_color_match BOOLEAN, default 0/FALSE).
11 new backend tests (8 for the extracted parser, 3 for the VP
write path) + 6 new frontend tests (toggle render gating, default
state, click posts queue_force_color_match in update body).
Existing scheduler tests pass against the refactored helper.
README, CHANGELOG, website features page, and wiki virtual-printer
page all updated.
1. `_cancel_restart_task` self-await guard (manager.py:389-413).
stop_server() / stop_proxy() are called from inside
_restart_for_cert_renewal, which runs AS _cert_restart_task.
Cancelling+awaiting self flagged a CancelledError on the next
`await` in stop_server, tearing down old listeners but never
letting start_server run — the VP sat on the expired cert
until the process was manually restarted, silently defeating
auto-renewal. Skip when `task is asyncio.current_task()` and
just clear the reference.
2. Clipboard fallback textarea leak (VirtualPrinterCard.tsx:66-81).
The HTTP fallback created a hidden textarea, called
select() + execCommand('copy'), then removed the textarea.
If select() or execCommand threw, removal never ran and the
textarea leaked into the DOM. Move the removal into `finally`
so it happens regardless of the inner block's outcome.
Regression tests in test_tailscale.py::TestCancelRestartTaskSelfAwait
cover both the self-cancel path (must NOT cancel self) and the
outside-cancel path (must still cancel and await).
The Tailscale FQDN copy button used only `navigator.clipboard.writeText`,
which browsers block when `window.isSecureContext === false` — i.e. when
Bambuddy is reached over HTTP on a LAN / tailnet IP, which is the
common case. My catch block swallowed the error and the generic
"Failed to update settings" toast fired instead of actually copying.
Add a legacy `document.execCommand('copy')` fallback via a hidden
textarea for non-secure contexts. New i18n key
`virtualPrinter.toast.copyFailed` added to all 8 locales for the
(rare) both-paths-fail case.
Virtual printers in Queue mode now have an "Auto-dispatch" setting.
When enabled (default), prints start automatically — preserving current
behavior. When disabled, prints are added with manual_start so they
wait for manual dispatch from the queue UI.