When a spool ran out mid-print and the printer carried on from the backup
spool, the queue card still named the original slot and marked it Empty.
The printer status now carries the print's tray change log, and the card
shows the tray that took over: one outside the job's mapping, right after
the mapped tray it replaced, followed through a backup that ran out in
turn. Queued jobs still warn about an empty slot.
Posts to the server's /message endpoint with the app token in the
X-Gotify-Key header. Each event's priority level is sent to Gotify as
0, 2, 5, 8 or 10, set in the same per-event priority section ntfy uses.
Events without a level go out at 5. The snapshot goes out as a
bigImageUrl, and the outcome confirmation opens its dialog on tap.
-----
List notification providers alphabetically
The Provider Type list in the Add Notification Provider dialog is now
sorted by the name shown on screen, in the current UI language, so the
order holds in every locale.
Print costs covered filament and energy but not the printer. Each printer
can now carry an optional wear cost per printing hour. Every run's wear is
its logged duration at that rate, stored on the print log entry; the
archive keeps the first run's wear, like energy (#1378). Failed and
cancelled runs count, reconciled runs (unknown duration) don't, and a rate
applies to new prints only.
Wear is shown on the archive card, as a hidden sortable Print Log column,
as a Quick Stats tile, in the most expensive record, in project totals and
in batch order cost, and is kept by GitHub backup and restore. Billing
still charges filament only.
New nullable columns: printers.wear_cost_per_hour, print_log_entries.wear_cost
and print_archives.wear_cost.
Users with library:read_own saw every folder anyone had made, and the
folder counts and activity times included other users' files. Folders
now have an owner. A read_own user sees their own folders, shared ones,
folders holding their files and the parents leading there, and adds
files only to their own and shared folders. Admins can share a folder
with everyone. Owners can rename their folders and delete them when
everything inside is theirs.
On upgrade, a folder whose files all belong to one user becomes that
user's; every other folder is shared, so it stays visible as before.
Each hourly energy snapshot records the price, and the energy used until the
next one is costed at it. Prints and the Statistics energy cost follow the
price over time instead of applying one price after the fact. The price can
come from a Home Assistant sensor, read hourly and at print start and end.
Energy multipliers now accept any value above zero, for plugs that report
watt-seconds.
The person slicing is often away from the printer, and the useful filaments
are the ones already loaded. Two optional filters in the Slice dialog narrow
the printer profiles to the models online now and the filament profiles to
the spools loaded in them, and a Pick button fills a filament row and its
colour from a loaded spool.
A new route returns the connected printers and their slots in one call,
limited to the caller's printers. A spool is matched by the profile saved
for its slot, then that profile's copy for the selected printer, then its
brand text. Both filters are off by default, fall back to the full lists
when they would leave nothing, and never replace a profile the user chose.
Groups can be limited to printers and whole locations, managed on the new
Printer access page, and jobs can wait for staff review before they print.
Merging onto the current dev:
- The Printer Locations page keeps to the same access rules: a rename keeps
its groups' access, deleting a granted location or moving printers into or
out of one needs an admin and drops the stale grant, and a user limited to
some printers sees and changes only their own locations.
- The overlay logo checks its token without a printer, which the stricter
overlay check now needs and the logo route doesn't have.
The MakerWorld page becomes Model Sources, with a MakerWorld tab and a
Manyfold tab. Bambuddy signs in to a self-hosted Manyfold with an OAuth
application (public read scopes), lists and searches its models with their
previews, and imports 3MF, STL and STEP files into the library, from where
they are sliced and printed like any other file.
New permissions manyfold:view and manyfold:import are granted once to the
groups that hold the matching MakerWorld permissions. The client secret is
never returned and is left out of GitHub backups. The Manyfold URL and every
redirect pass the LAN-service URL check. Old /makerworld links open the
MakerWorld tab.
Several files import at once: tick files in a model, or Select all, then
Import selected or Import all; or tick models in the grid and import all
their printable files. Files import one after another, failures don't stop
the rest, and a summary reports the outcome.
A printer kept dark between uses showed a black live view and sent black
notification photos (#1655). Settings → Camera can turn the light on for
all printers or for selected ones, for the live view, notification
photos, the finish photo and the snapshot API that Home Assistant uses,
and turns it off 15 seconds after the last use. It only turns off a
light it turned on, and switching the light by hand hands it back.
Snapshots wait an adjustable delay after the light comes on. Timelapse,
the Obico check and the in-print frame bank don't switch it, since they
would make it flash.
The camera card no longer lists every printer: external cameras are
added from a searchable printer picker and only those printers are
listed, so large farms get a short page.
A group can now be given locations as well as single printers: it then
reaches every printer in them, including printers added there later.
Printer access moves out of the group editor to Settings ->
Authentication -> Printer access, built for large fleets: groups and
printers searchable and filtered by location, model and access, edited
by group or by printer, saved together. "Who has access" in the printer
card menu opens it on that printer.
- group_locations table; the scope is picked printers plus printers
whose location matches.
- Moving a printer into or out of a location a limited group has is
admin-only, and open connections are rescoped. The edit dialog names
the groups a move affects. Locations are trimmed on save.
- Clearing a printer's location in the edit dialog now clears it.
A group can now be limited to a set of printers. Its members see and
control only those printers. Every other printer answers 404, as if it
didn't exist.
- Groups gain restrict_printers and a group_printers table (migration
for SQLite and Postgres). A user's printers are the union of their
limited groups. Groups without the flag don't limit anything, a user
in no limited group keeps every printer, and admins see all of them.
- core/printer_scope.py holds the scope. RequestPrinterScope and
RequirePrinterPermissionIfAuthEnabled apply it to routes: printer
routes, camera, queue and batches, archives, projects, stats, print
log, pipeline runs, inventory and Spoolman assignments, maintenance,
smart plugs, scheduled drying, firmware and Obico status.
- API keys, camera stream, Cam Wall, overlay and WebSocket tokens carry
the printers of whoever created them. WebSocket broadcasts are
filtered per connection, and the filtering fails closed.
- Scheduler: "Any <model>" jobs stay on their owner's printers. A job
pinned to a printer its owner lost waits with a reason. Callers with
no user identity and limited printers must queue to a specific printer.
- Group editor: new Printer access section, translated into all 15
locales. Saving a system group no longer resends unchanged
permissions, which the backend refused.
Fetch a signed feed.json from the public bambuddy-notifications repo on
GitHub at startup and every 6 hours. Nothing about the install is sent;
targeting (version, beta channel, install type) is decided locally.
- Ed25519 against a key built into the app; an older serial is refused so a
withdrawn message can't come back. The feed replaces the stored list, and
a failed or rejected fetch keeps the last good one.
- Sidebar entry above System with an unread count, a slide-over list, and a
banner for unread important/critical messages. Read state per user.
- Admins by default; Settings > General > Updates can show them to all
users or switch them off, which also stops the fetch.
- Plain text only; links to github.com and bambuddy.cool only.
POST /notifications/app-message delivers an app's message to every channel
with the new "Messages from connected apps" switch on (off by default),
through quiet hours, the digest and the log. API keys need the new "Send
notifications" permission, and their owner notifications:update; plain text,
http(s) links, 20 messages a minute per key. The electricity-price door and
this one now share one scoped-key check. /queue?batch=<id> opens and
highlights one batch order.
Minimal OAuth 2.0 authorization-code flow with PKCE (S256): admins register
an app with one exact callback URL (Settings > API Keys > Connected Apps);
/connect/authorize asks for consent once and returns a single-use, 60 s code
bound to app, callback and challenge; POST /api/v1/connect/token swaps it,
with the client secret, for the user's identity and permissions. Codes and
secrets stored hashed, exchanges rate-limited per client and IP, no redirect
before the callback is validated, API keys cannot authorize, refused while
auth is disabled. i18n for all 15 locales.
-----
fix(db): upgrading from 0.2.4.0 or older no longer crashes at startup
The #2974 failure-reason conversion ran before the #1378 migration that adds
print_log_entries.failure_reason, so older databases stopped with "no such
column: failure_reason". It now skips a table without the column, only runs
where a legacy label exists, and on SQLite rebuilds archive_fts first, since
archives created before that index existed trip "database disk image is
malformed" when updated.
POST /queue/batches accepts external_source + external_ref; both are
returned on every batch and filterable on GET /queue/batches. The pair is
unique (index uq_print_batches_external), so a retried create answers 409
instead of queueing the same order twice. Migration covers SQLite and
PostgreSQL.
The per-event Priority header from #990 never reached ntfy. The dialog
builds its rows from the provider's event toggles and stores the map
under those names -- on_print_complete, on_print_failed -- while every
sender is called with the bare event name, print_complete. The lookup
missed for all 18 events the dialog offers, so every notification went
out at the ntfy server's default with the configured priority sitting
untouched in the database.
Both ends looked healthy, which is why it shipped. The stored config
held exactly what was set, and the tests were green because they called
_send_ntfy directly with the prefixed name -- the one spelling the
running system never produces.
- notification_service.py: accept either spelling, bare first, so
existing configs keep working and nothing needs migrating.
- schemas/notification.py: document both key forms, and which one the
UI writes.
- tests: use the bare names, and add one that runs from a finished
print through to the outgoing request. Without the fix it fails on a
header dict holding only Title, which is the assertion that was
missing.
The daily digest is unchanged: send_digest sends with no event_type at
all, and the dialog offers no priority for it -- it is one message for
several events.
macOS attributes Local Network permission to a code signature and judges a
launchd-spawned process on its own, rather than letting it inherit the grant
of the Terminal that started it. Homebrew ships Python unsigned on Intel, so
there is no identity for the grant to attach to: every connection to a LAN
address is dropped with no error the application can log and no permission
prompt. The printer reads as unreachable and nothing says why, and the entry
in Privacy & Security cannot be made to work because it refers to an identity
that no longer resolves.
install.sh signs during a macOS install; update_macos.sh re-checks on every
update, because `brew upgrade python` installs a fresh unsigned binary under
a new versioned path.
Both sign only what is currently unsigned. That gate is load-bearing: on
arm64 the linker ad-hoc signs every binary and the identity is a hash of the
file, so re-signing would rotate it and revoke a working grant on each update.
A python.org build carries a real Developer ID and must not be downgraded for
the same reason.
The interpreter and the framework's Python.app are both signed. The first is
what sys._base_executable resolves to and what the reporter's TCC log names;
the second is what his fix actually targeted. Which one macOS attributes
could not be established from either, and signing both costs nothing.
-----
fix(diagnostics): name the macOS permission that silently blocks the printer (issue #3114)
The port checks reported all three ports unreachable while the subnet check
passed, and port_mqtt's fix text sent the reporter after firewalls and IP
addresses. On a macOS native install that pattern has a cause neither of
those covers: no Local Network grant, denied with no error and no prompt.
A new macos_local_network check, appended on macOS only so no permanently
dimmed row appears for anyone else. It passes when the control port answered,
which is proof the permission is in place and means the signature probe never
runs on a healthy diagnostic. Otherwise it probes the interpreter: an
unsigned one gets the repair that fixes it, a signed one gets System Settings
— the arm64 case, where the identity is a hash of the binary, so a Python
upgrade presents macOS with a new application and strands the old grant.
Always warn, never fail, and only once port_mqtt has already failed, so this
can never be why a green diagnostic turns red. A printer that is simply
switched off produces the same all-ports-dead pattern, which is why the
signature, not the pattern, is what earns the specific advice. An
undeterminable signature is reported as the generic case rather than as
unsigned: that advice rewrites a file in the user's Python installation and
must not be offered on a guess.
POST /library/files/add-to-queue reported every per-file rejection in an
errors array and returned 200 regardless. A caller that checks the status
code saw a successful request, no visible failure, and no queue item.
That is a 400 now when nothing at all was added, with the same reasons in
the body. A call that created some items still succeeds, because it did.
The items it created were aimed at nothing. The route always wrote
printer_id=None with no target_model, and the scheduler dispatches on one
or the other -- so those rows matched neither branch and could never be
picked up by anything. They sat in Unassigned until someone opened each
one by hand.
The request takes an optional printer_id or target_model for the batch,
and with neither it aims each file at the model its own G-code declares.
Only when a printer of that model is active: owning no H2D is the user's
situation rather than their mistake, so the file still queues as the
unassigned row it has always been, rather than gaining a target nothing
can answer.
Three gates POST /queue/ has applied for a while now apply here too,
because an item reaching the scheduler through this route has to be as
printable as one reaching it through that one: the cross-model check that
stops a file sliced for one printer being dispatched to another (#2578),
the filename check that would otherwise surface as a failed upload hours
later (#1540), and the filament requirements the scheduler matches before
handing a model-based item to hardware.
Nothing inside Bambuddy calls this endpoint -- the Library's own Print
action goes through the queue API with a printer already chosen -- which
is how it came to drift this far from it.
-----
fix(library): scope add-to-queue file reads to the caller
The bulk add resolved its files by raw id. Every other read in this
module goes through the ownership gate, and so does the single-item
queue path; this one did not.
Invisible rows are dropped before the loop, so they report as the plain
"File not found" an unknown id already gets.
A job queued as "Any X1C" explains itself when it cannot start: the
model-based branch builds a reason for every candidate printer and puts it
on the row, so the queue shows "Busy: X1C-01" or "Waiting for filament:
X1C-02 (needs PETG)". The same job pinned to one printer showed nothing.
It sat at Pending with waiting_reason NULL for as long as that printer was
busy, which from the outside is indistinguishable from a queue that has
stopped working -- the reporter watched fourteen minutes of it while his
X1C ran a print he had started from its own screen.
The fixed-printer branch had six ways out and none of them wrote the field.
The sensor interlock (#1148) was its only writer, and it cleared the field
up front on every pass where no sensor was holding the printer, so NULL was
not an oversight on those paths but a guarantee.
Every exit now writes, through one helper. The reasons reuse the
model-based branch's vocabulary so _is_busy_only() keeps deciding what is
worth a notification: a printer that is printing, drying, or working
through the item ahead of this one reads as "Busy: <printer>" and stays
silent, because it resolves itself. A printer that is off with no Auto On
plug, and one whose plug could not switch it on, are worth saying.
A finished plate nobody has acknowledged is split out from plain busy and
named as itself. _is_printer_idle() returns the same plain False for that
and for a running print, but they are not the same thing to the person
looking at the queue: one clears itself and the other needs somebody to
walk over to the printer.
That notification fires on the transition into asking, where a busy-only
reason counts as not asking. Testing whether the item was waiting at all --
which is what the model-based branch does -- would never fire it here:
nobody's queue goes straight from idle to an unconfirmed plate, it waits
behind the print first. The cost is that a printer dropping offline,
returning busy and dropping again asks twice rather than once.
The interlock stays silent. It has never sent this notification, and a
change about what the queue displays is not the place to start.
Clearing the field up front is gone with it. It existed so a shut door
could not leave "Waiting on Enclosure Door" standing while the printer
stayed busy with something else, and the new rule carries that guarantee
instead -- whichever exit runs next overwrites it, and the dispatch path
clears it.
Two paths clear it that the report did not mention. A staged item and a
future-scheduled one skip before this branch and never reach it again, so
anything written on an earlier pass would outlive its condition for the
life of the row. That includes the filament-deficit check, which stages the
item itself.
The notification is wrapped: a queue that cannot say why it is waiting is
the bug being fixed, and a queue that stops dispatching because a provider
timed out would be a worse one.
On the frontend, the queue timeline drops any pending item carrying a
reason, on the grounds that such an item will not auto-dispatch. That held
while only the model-based branch wrote the field; "Busy: <printer>" is
now the commonest reason there is, and it describes the very chain the
timeline forecasts, so the rule would have emptied the view for anyone
whose queue is pinned. It now asks whether the reason needs the user, via
a small shared reader of the same shape the scheduler encodes.
Which job goes out, and when, is unchanged: running the previous scheduler
and this one over the same 768 states dispatches the same items in the same
order with the same statuses, across 1452 rows that now carry a reason.
A jam can destroy everything on the plate while the printer still reports the
job as a success, so the honest count of usable parts is zero. The edit dialog
floored the field at one, and a project's completed-items count sums that
column, so there was no way to record that a job produced nothing.
The floor was in the dialog only; the API stored whatever it was given, which
also meant a negative count was accepted and would have subtracted from the
project totals. The column is now bounded at zero instead.
Filament Trends counted prints as `quantity || 1`, which would have read a
deliberate 0 as "unset" and charged the ruined plate as one print while the
project page counted none.
Every file the internal slicer produced came back with filament_colour
= #00AE42 whatever filament was picked: a green plate thumbnail, green
metadata, and a "Color mismatch" in the Print dialog against the AMS
slot the job had just been correctly mapped to.
A colour is not a property of a filament preset in either slicer. It
belongs to the project, and Bambu Studio and OrcaSlicer set it from the
plate in their GUIs -- so nothing was attached to the preset Bambuddy
sends by name, and the CLI fell back to its own compiled-in default,
which is Bambu green. None of the shipped BBL filament profiles define
filament_colour; the whole tree has zero occurrences.
default_filament_colour is not the answer on its own. Measured against
a 02.08.02.61 sidecar, a profile carrying only that still slices to
filament_colour ["#00AE42"] -- Bambu Studio consumes it in the GUI when
a project is created, not in --load-filaments. So it is read and
rewritten as filament_colour, which the same sidecar does honour: the
reporter's exact triplet returns ["#E8B00C"] when patched this way, and
the colour lands in both project_settings.config and slice_info.config,
which is what the thumbnail and the AMS mapping actually read.
Each filament row in the slice dialog gets a colour control, and the
resolved value flows through a chain: the user's pick, then the preset's
own default_filament_colour, then the colour that slot was designed with
in the source 3MF. A slot with none of the three is left untouched
rather than given a guess.
The designed colour is read from project_settings.config, not
slice_info.config. The latter records what the file was last sliced
with, which for a source that never carried a colour is #00AE42 itself
-- measured -- so using it would have been circular.
The control is offered on single-filament sources too, because an STL,
and equally a mesh-only 3MF exported from CAD, has no colour anywhere
else to inherit. That is the case this exists for, and it took three
shapes to make it visible: a swatch in the label row was identical to
the read-only dot multi-colour rows have carried for releases, and
adding the hex beside it only made it look like a caption. It now sits
beside the dropdown, styled like it and the same height, with the
swatch and hex wrapped in one label bound to the input so a click
anywhere on it opens the picker.
An untouched slot with no designed colour submits an empty string
rather than the control's displayed default. A sent colour outranks the
preset's own, so pinning the placeholder would silently discard the
real colour of an imported OrcaSlicer profile that carries one.
Slicer Pipelines pick up the same chain without carrying a colour of
their own.
Also adds a warning for a defect found while investigating this: a
filament preset whose name the sidecar's bundle cannot resolve is not
rejected. The CLI inherits nothing, falls back to its defaults for
every field, and returns a well-formed success -- measured, an
unresolvable name slices as filament_type ["PLA"] at nozzle_temperature
["200"] with filament_ids [""] and filament_vendor ["(Undefined)"], so
a PETG preset a sidecar image predates prints at PLA temperatures with
no diagnostic anywhere. Both signals are required together, which keeps
it off the two legitimate lookalikes: a hand-written profile that never
named a vendor still carries a real filament id, and a user's own cloud
preset carries a vendor while legitimately having no bundled id. The
file is kept rather than refused, unlike the missing start G-code of
whoever can see the temperatures.
A slicer preset is bound to a printer model: "Bambu PLA Basic @BBL X1C" is
not the same preset as "@BBL H2C", and Bambu names a nozzle size in it as
well. A spool carried exactly one, which was right until the same spool was
used on a second machine -- the AMS slot on the other one was then
configured with a preset that machine has no profile for. K profiles had
the matching gap from the other side: the tables have always been keyed per
hotend, but the picker could not express it.
spool_filament_preset and its Spoolman twin store the exceptions, keyed
(spool, printer_model, nozzle_diameter). Model rather than printer because
the preset is a property of the model -- "@BBL X1C" is the same preset on
every X1C, and asking per machine would mean picking the identical value
twice. K profiles stay on printer_id, because a K value is measured on one
physical hotend and two machines of the same model legitimately differ.
Resolution is exact (model, diameter) -> (model, "") -> the spool's own
preset, so a spool nobody has configured behaves exactly as it did before.
The form writes one row per nozzle size and never the "" row; that level is
kept for API clients wanting one value to cover a model.
Both halves cover every standard nozzle size rather than the size currently
fitted, because a spool is configured once and nozzles get swapped. The PA
Profile tab becomes a Printers tab: a model list beside a detail pane
holding a preset row per size and a K-profile grid of size by hotend. Each
model is offered only the presets that name it, through the same matcher
the Configure AMS Slot modal filters with, which moves out of that
component into utils/slicerPrinterMatch. Presets whose name identifies no
model -- most user-authored and OrcaSlicer ones -- stay offered everywhere,
as does whatever is already selected, so a saved override cannot vanish
from the control that shows it. Every preset carries an origin badge in the
wording and colours that modal already uses.
Every path that configures a slot now respects both: manual assign in
either inventory mode, RFID auto-assign, the Spoolman tag link, the re-fire
when a slot goes empty to loaded, the re-apply after a calibration-table
refresh, and the re-selection when a Filament Track Switch moves an AMS to
the other nozzle. Which nozzle a slot feeds, and how wide it is, was worked
out independently in seven of those places, each reading nozzles[0] for
every slot on the machine -- correct on a single-nozzle printer and on a
dual-nozzle printer with matching nozzles, wrong the moment two sizes are
fitted. That resolution is now services/slot_nozzle.
Which array entry belongs to which hotend is no longer inferred. Measured
on an H2D fitted with a 0.4 high flow on the left and a 0.6 on the right,
nozzles[0] reads the right hotend, so the array is indexed by extruder id
and the H2/X2 parser's convention is the one that holds. The legacy
parser's opposite convention never governs a real dual-nozzle machine:
every model in DUAL_NOZZLE_MODELS reports device.nozzle.info, and
left_nozzle_diameter appears in no log or wire capture. Two comments that
said otherwise were wrong and are fixed; amsHelpers' code was right all
along and only its comment lied.
Four defects surfaced while wiring it, all pre-existing except the last.
The picker identified a chosen calibration by cali_idx alone, and the
printer numbers its calibration table per nozzle -- on a dual-nozzle
machine the same index exists on both hotends meaning different things, so
saving could persist the other hotend's K value and diameter; SpoolBuddy's
write-tag page carried a verbatim copy and gets the same fix. RFID
auto-assign chose a K profile with no extruder test at all, so a spool
calibrated on both hotends had a coin toss decide which pressure-advance
value the slot got, on the path that runs unattended every time a Bambu
spool is loaded. The Spoolman tag-link path resolved no preset whatsoever,
configuring every linked slot with a generic material id and discarding a
preset set in inventory -- the same defect #1713 fixed on the assign path,
one function over. And an FTS inlet move re-selected K for nozzle 0 rather
than for the nozzle the AMS had just been moved to.
The last one is new here: a per-model override can be a cloud USER preset,
whose PFUS-prefixed id the slicer rejects, and passing it straight into
extrusion_cali_sel would silently lose the K-profile link. Reached the
printer only where such an override exists, which is why nothing in the
suite caught it. printer_safe_filament_id falls through to the spool's own
preset and then the tray's RFID value instead.
Reading a printer's calibration table asks for one nozzle size at a time.
H2-series firmware answers only the first one or two of a concurrent burst
of extrusion_cali_get and silently drops the rest, each dropped request
costing a five-second timeout before its retry: measured at 11 and 23
seconds on an H2C and an H2D for four parallel requests, against roughly
one second in series. An X1C answers all four at once, which is why this
only ever surfaced on dual-diameter printers. Printers themselves are read
in parallel -- separate machines are separate connections.
The Configure AMS Slot dialog opens on the spool's own configured values,
falling back to the slot's last manual configuration and then the tray's
RFID data. The spool form is wider for the two-pane layout, colour, weight,
cost and location move to their own tab in two columns, and a printer card
in expanded view lists every fitted nozzle size rather than the first entry
alone.
Load and Unload in the AMS slot menu did nothing on an H2C with the switch
fitted. The ams_change_filament command carries an optional extruder_id and
Bambuddy never sent it. That is correct on every printer without the switch,
and is what BambuStudio does there too -- each AMS is wired to one hotend, so
the firmware works the target out for itself and an explicit value would only
be a guess at something it already knows. Fit the switch and every AMS is
bound to one of its two inlets instead, either hotend is reachable from any
slot, and a command naming neither leaves the firmware nothing to act on. It
was discarded in silence.
Load now asks which hotend to feed, on the same terms as Bambu Studio: no
preselection, so a stray Enter cannot feed the wrong one, and the hotend
already fed from that very slot greyed out. Printers without a switch send a
byte-identical command and still load in one click. A switch fitted but not
yet set up -- any AMS still unassigned to an inlet -- refuses the load up
front rather than publishing one the firmware will drop, mirroring
DevFilaSwitch::IsReady, which likewise demands a switcher position on every
AMS.
Unload was addressed at the same time. It was aimed with tray_now, a single
value for the whole printer, so on any dual-nozzle machine with both hotends
loaded it unloaded whichever that field happened to name regardless of which
slot's menu was used. It now names the slot and resolves the holding hotend
from device.extruder.info, previously read for temperatures only. That
resolution is gated on the printer having reported two extruders:
single-nozzle machines do send the block, but nobody has read a single-nozzle
snow value off the wire, and staking every X1C, P1S and A1 unload on an
unverified encoding buys nothing where tray_now is already unambiguous.
Both new state fields ride the WebSocket and are in the broadcast key, and
both are computed in the REST status route as well -- that response is what
the page has before any push arrives, and leaving them at their defaults
would have told a correctly set-up machine that its switch was not set up.
Verified on H2C-1, AMS-A slot 3: loaded and unloaded from each hotend in
turn, all four correct. Covered by 18 MQTT unit tests, 4 status-dict tests,
7 integration tests and 6 component tests.
Two known stragglers, both deliberately left alone. Load on an AMS-HT slot
has never worked -- an HT unit is addressed by its unit id rather than
ams*4+slot, which these endpoints do not accept -- so unload there keeps the
printer-wide form it always used instead of gaining a slot it cannot name.
And a slot's K-profile still follows the AMS's plumbing rather than the
nozzle just loaded, so loading to the far hotend leaves the other one's
calibration bound; that is the same per-nozzle problem the filament and
K-profile redesign is scoped to fix.
An order produces what it still owes by cloning an existing queue item for
the same plate. That row is the only record of the printer target, AMS
mapping and print options the user chose, so deleting the last one left the
order reporting work outstanding that nothing could produce, and no way to
close it out: Cancel was hidden unless there were pending items to cancel,
which by then there were none.
Deleting an order's last surviving run for a plate now cancels it instead.
A cancelled run does not satisfy a target, so the order still owes the print
and can still make it. A completed run is exempt and still deletes outright
-- rewriting it as cancelled would falsify what the order produced.
Also: the response reports per plate whether anything is left to clone, so
the card explains a stranded plate rather than offering a button that can
only fail; dispatch skips a stranded plate instead of aborting the whole
order; and Cancel is offered for any active order.
Adding on_stock_reorder_alert and on_stock_break_alert to the provider
schema made them required on the way out as well as in: the response model
inherits the write model. Every on_* column on notification_providers is
nullable with no server default, and where the table was created from
Base.metadata before run_migrations, the ALTER ... DEFAULT false that
introduced those columns was swallowed as a duplicate and never backfilled
existing rows. Those NULLs were harmless until the flags were read, at
which point the row failed validation -- and a list is validated as a
whole, so one row took every provider with it. The route returned 500 and
the UI rendered an empty list, so configured providers looked deleted.
Backfill them to off, which is what the sender already assumed: it selects
providers with IS TRUE, so a NULL flag never sent anything. A NULL flag now
also reads as off rather than failing the response, across all of them, so
the next flag added to this schema cannot repeat it. Writes are unchanged.
Two features in the slice dialog read as one. "Use the file's built-in
settings" slices a 3MF the way its designer set it up, ignoring the picked
profiles. The per-option "from file" ticks beside each setting carry the
designer's individual deviations onto the profile you picked, and those
arrived pre-ticked whatever the checkbox said. So a slice run deliberately
without the file's settings still took sixteen values out of it -- the
reporter's log names them, enable_support and support_type among them,
landing on a process preset they had chosen on purpose.
The ticks now follow the checkbox. Off, nothing comes out of the file until
it is asked for by name; on, every setting the file changed shows ticked,
because on that path the file really does drive the whole slice. Taking the
designer's work in bulk is still one click, from a line at the top of the
panel that says how many settings the file changed -- it is the only way
left to reach them without hunting for chips across six pages of 348
options -- and it still leaves the machine-tuned keys and the two that are
the picked preset for a per-key decision.
The panel greys out options the slicer's own rules switch off, and it was
evaluating those rules against what the user had typed alone, falling back
to the compiled-in schema defaults for the rest. A preset with supports on
therefore read as enable_support: false and greyed out the whole Support
page while the slice ran supports. A greyed row greyed its tick too, which
is how the reporter's screenshot shows a support type marked "from file",
applied to the slice, and impossible to clear. The rules now see what the
slice will actually run with: the preset's values, the file's values for
the keys that are on, and anything typed on top. The tick is no longer
gated on those rules at all -- it answers a different question, not whether
an option is in play but where its value comes from.
Underneath both, the support carry-over ran outside the ticks entirely,
lifting four keys out of any 3MF that had supports on with nothing on
screen able to decline. It now stands down for the keys that were offered
and turned down, which the request can say for the first time: an empty
design_overrides list means the caller was shown the file's settings and
took none, where no list at all is a caller that predates the choice. That
distinction is what keeps the carry whole for sources with no deviations to
tick, an OrcaSlicer export among them, rather than trading one silent
default for another.
Worth knowing: a Bambu Studio file with supports enabled no longer switches
supports on for you. Tick Enable support, or the checkbox above the panel.
Measured against the reporter's own sixteen keys, and covered by backend
and frontend tests -- reverting any one of the three changes fails tests.
The HMS catalogue has been in the backend all along and the status
response never carried it, so every consumer that wanted to tell a user
why a print halted resolved the same 853 codes from its own duplicate of
the same sentences -- this repo's Python table, the frontend modal's, and
at least one third-party client whose catalogue exists purely because the
server would not say. Each ages separately, and a relay watching a
printer could only manage "your printer needs attention" while the server
already knew it was "Filament ran out. Please load new filament."
hms_errors[] entries now carry a description, defaulting to null so a
client that has never seen the field is unaffected.
It is resolved where the fault is parsed rather than at the boundary that
prompted the request, because there are three serializers of a fault, not
one: the status response, the WebSocket broadcast, and the completion
payload the queue's failure reason is built from. Adding it to only the
first would have handed half the feature to a relay watching the stream,
which is the likelier consumer of the three. The queue's failure reason
now quotes the resolved sentence instead of looking the code up a fourth
time, and the notification path reads it rather than re-deriving. That
they cannot report different text for one fault is the point, and a test
asserts they agree.
describe_fault is the single mapping from either code shape onto the
table. An 8-char print_error is the catalogue's MMMM_EEEE key with the
separator removed -- the parser derives full_code and that key from the
same 32-bit value -- so it resolves exactly. A 16-char hms[] identifier
is tried whole and then collapsed to its first and last groups.
That collapse is lossy, and keeping it was the decision worth making
carefully. #2728 counts 65 documented faults falling onto 0300_0001
alone, so a hit can attribute a neighbour's sentence to this fault, and
refusing it looks like the stricter reading. It is not: the notification
path, the queue's failure-reason helper and the frontend modal have all
resolved hms[] faults this way for as long as they have existed, and it
resolves real ones -- a 0500_4038 nozzle mismatch arrives in that shape.
Declining to collapse would have stopped describing faults that are
described today, silently suppressed the notifications they raise, and
left this field null while the UI showed text for the same fault.
Narrowing it belongs with #2728, where both key spaces can move together.
So the lookup is exactly what it was, verified rather than asserted:
a test walks every catalogue code in both fault shapes across all three
alert levels and checks the result against the derivation this replaces.
A future change to the lookup cannot quietly stop notifications firing.
The catalogue ships one language, so the field is English and
unlocalized, which the schema and the API reference both say next to it.
The camwall feed is deliberately left alone -- it is code-only because
its token travels in a URL on a screen, and a readable sentence discloses
more than the camera picture already does. The frontend keeps resolving
its own text: switching it would change what filterKnownHMSErrors counts
across eight call sites, which is #1840 and #2728's argument to have.
HMSError.message goes with this -- a text field that was never set or
read anywhere, and an invitation to populate the wrong one now that a
live description sits beside it.
-----
Record a failure code the user can actually look up
The queue's failure reason formats a fault's module and error into
MMMM_EEEE, and that one derivation never masked the error to 16 bits. A
fault arriving from the printer's hms[] array carries its alert level in
the code's high half, so the label came out as 0500_24038 -- five digits
in a group that has four. It is not a code anyone can find on Bambu's HMS
index, and because it matches no catalogue key the sentence explaining
the failure was dropped along with it, leaving the bare number alone.
The nozzle-size mismatch behind #1111 is exactly such a fault. Reported
one way it read "[0500_4038] The nozzle diameter in sliced file is not
consistent with the current nozzle setting"; reported the other, the same
physical fault read "[0500_24038]" and nothing else.
There is already a helper that gets this right, used by the archive's own
failure-reason lookup, so this calls it instead of keeping a fourth copy
of the derivation. It also takes the raw integer code the MQTT payload
carries, which the local version only handled as a string.