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6988a30eaef6ced6a0ae75501da4daf8589b4143
109
Commits
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6988a30eae |
Carry a fault's description in the status response (issue #2926)
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. |
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dd50c51c1b |
Stop waking printers that cannot print the queued job (issue #2876)
The queue's smart-plug step chose a printer to switch on by model alone. With a class-targeted job and every matching printer off, it walked the farm in printer-ID order, woke the first machine with an Auto On plug, and only then read the loaded filament -- so a job for a colour loaded at the far end of the farm woke every earlier printer in turn and left each one running until its own auto-power-off timer expired. The colours were known the whole time. A printer keeps its last reported AMS and external-spool trays after the power goes; mark_power_off blanks connected and state and leaves raw_data alone. The wake step now asks the same three questions the matcher asks a live printer -- required types, forced colours, preferred colours -- of that reading, and passes over a printer it rules out. A printer with no reading at all is still woken: never having heard is not the same as nothing being loaded. The matcher reports such a printer as needing filament rather than as offline, so the waiting reason explains why nothing was switched on. The manager now keeps a printer's last tray reading when it drops the client, and the queue falls back to that. _power_on_and_wait calls connect_printer in a retry loop, so an attempt that timed out used to erase the reading the next one depends on. The record is kept beside the clients, not inside one: the AMS merge is additive, so feeding it back into live status would merge an unplugged AMS unit back in for good. |
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05d87a9740 |
Release the plate-clear gate on a powered-down printer (issue #2864)
POST /printers/{id}/clear-plate answered 400 "Printer not connected" for
anything without a live MQTT client, and the printer card hid the button
under the same condition. With Auto Power Off that is the ordinary end of
every print: the reporter's log has printer 1 marked offline at 12:00:55
by the plug and the clear-plate POST rejected at 12:03:12, with the plate
already cleared by hand. Nothing could release the gate short of powering
each printer back on, clearing, and switching it off again.
Nothing in the clear path talks to the printer. set_awaiting_plate_clear
writes an in-memory set and the printers.awaiting_plate_clear column, and
that column exists precisely so the gate survives an Auto Off cycle
(#961). The guard came in with the endpoint in
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c5e0055864 |
Track which nozzle each AMS feeds through the Filament Track Switch
With a switch fitted, an AMS is not wired to a nozzle any more. It is plumbed into one of the switch's two inlets and reaches both nozzles through it, so every unit reports its extruder as "not fixed" (0xE) and ams_extruder_map comes back empty. Bambuddy had nothing to fall back on but the AMS unit number, so AMS-A was badged R and AMS-B was badged L purely because their unit ids are 0 and 1, a third unit got no badge at all, and every one of those labels was wrong. The binding needed no new telemetry. BambuStudio reads it out of bits 24-27 of the same AMS info string we already parse for the type and the extruder id -- 0 is In-B, 1 is In-A -- and it only means anything when a switch is installed, because without one 0xE really does mean an uninitialised unit. That gates the read, which forced the switch block to be parsed before the AMS block: _handle_ams_data runs early in _process_message and _update_state only much later, so the binding was lost on every frame that carried both. The badge letters stay L and R, In-A reading as L, with the inlet named in full in the tooltip -- the letter is the inlet's position and not a claim about which nozzle that AMS feeds, since the switch can route either inlet to either outlet. Both views update live now. The switch fields were missing from the WebSocket payload, and the frontend shallow-merges each push over its cached status, so an absent field kept whatever the last full fetch left behind. The broadcast dedup key had no term for them either, so "Join IN-B" on the printer screen moved nothing: the binding is not in the tray component of that key, and not in the AMS change-hash, which covers tray fields only and must stay that way because it drives Spoolman sync. The rest of this is the calibration half, which is where it actually bites. K-profiles are calibrated per nozzle and the printer numbers its calibration table per nozzle too, so entry 16 exists on both hotends and means a different profile on each. A tray holds exactly one index. Move an AMS to the other inlet and every configured slot in it silently keeps pointing at the old hotend's table -- measured on the maintainer's H2C, a black PLA calibrated 0.018 left and 0.020 right stayed on the left profile after the move, and a manual RFID re-read only re-asserted the same wrong one. Bambu has not solved this either; their AMS dialog carries "TODO: fila_switcher broken the connection of ams->extruder" above the line that decides which nozzle's profiles to offer. Three copies of "which extruder is this slot on" each ended in else 0, which on a switch machine filed every profile under the right-hand nozzle. They now share one resolver that returns None for "unknown", because unknown and extruder 0 are very different answers on a dual-nozzle machine and conflating them is what bound a left-nozzle profile to a slot sitting on the right. The per-slot K value on the printer card had the same confusion from the other direction: its lookup was keyed on cali_idx alone, so one nozzle's K silently overwrote the other's. Moving an AMS now re-selects each configured slot's counterpart profile for the nozzle it has arrived on. Only the calibration binding moves, and only for slots whose spool already has a profile for that nozzle: configuring a slot is a deliberate preparation step, so a slot we know nothing about, or a spool calibrated on one hotend only, is left exactly as the operator set it. Nothing fires on the first sighting of a binding either, since every reconnect learns them afresh and re-applying there would overwrite a choice made by hand. Configure Slot resolves against the slot's own nozzle throughout. Option identity carries the extruder, so a filament calibrated on both hotends gives two distinguishable entries instead of two that collapse into whichever the printer listed first; options name the hotend; matches are scoped to the nozzle the slot feeds, with the other hotend's profiles still reachable under Other K profiles; and the slot's active index is resolved as a pair rather than followed into the wrong table. Inlet to nozzle is one table, In-A to the left hotend and In-B to the right, measured rather than assumed -- fila_switch.out cannot be used for it, reporting [1, 1] unchanged across a 90-second capture, both outlets claiming the same extruder. The print dialog picks up the same inlet labelling in its slot dropdown, replacing a left/right hint that never rendered because it matched snow-encoded values against global tray ids; decoding it correctly would not have saved it, since the firmware never reports which inlet is currently paired with which outlet. The dialog also notes when every filament a print needs sits behind one inlet, which is legal but slow -- a change between two filaments on the same inlet retracts the outgoing spool all the way back to its AMS, where a change across the two only retracts as far as the switch. Assigning an AMS to an inlet remains printer-side. BambuStudio can read that binding and has no command to write it, so there is no wire format to copy. |
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7a42e0a7e5 |
Show which Filament Track Switch inlet each AMS feeds
With a switch fitted, an AMS is not wired to a nozzle any more. It is plumbed into one of the switch's two inlets and reaches both nozzles through it, so every unit reports its extruder as "not fixed" (0xE) and ams_extruder_map comes back empty on these machines. The printer card had nothing to fall back on but the AMS unit number, so AMS-A was badged R and AMS-B was badged L purely because their unit ids are 0 and 1, a third unit got no badge at all, and every one of those labels was wrong. The SpoolBuddy assign modal had the same fallback in a worse form, mapping anything that was not extruder 1 to R. The binding turned out to need no new telemetry. BambuStudio reads it out of bits 24-27 of the same AMS info string we already parse for the AMS type and the extruder id -- 0 is In-B, 1 is In-A -- and it is only meaningful when a switch is installed, because without one 0xE really does mean an uninitialised unit and those bits carry nothing. That gates the read, which in turn forced the switch block to be parsed before the AMS block: _handle_ams_data runs early in _process_message and _update_state only much later, so the binding was lost on every frame that carried both. _parse_fila_switch is split out and called first, and left in _update_state as well so that stays a complete absorb step. The badge keeps L and R rather than A and B, because the lettering is familiar and matches the physical layout. It is a different colour from the plain nozzle badge, and its tooltip names the inlet in full, since the letter is the inlet's position and not a claim about which nozzle that AMS feeds -- the switch can route either inlet to either outlet. An AMS still reporting a real extruder id keeps its ordinary badge, which BambuStudio also treats as authoritative over any switch binding, and a switch that has been fitted but not yet set up on the printer shows nothing rather than a guess. The print dialog's slot dropdown gets the same label. It replaces a left/right hint that never once rendered: ftsExtruderForSlot compared snow-encoded in[] values against global tray ids and could not match. Decoding it correctly would not have saved it -- the firmware reports which slot sits in each inlet and which nozzle each outlet feeds, but never which inlet is currently paired with which outlet, so no per-slot nozzle can be derived. That function is gone rather than fixed. The dialog also points out when every filament a print needs sits behind one inlet. Bambu's own guidance is that this is legal but slow: a change between two filaments on the same inlet retracts the outgoing spool all the way back to its AMS before the next can be fed up the shared tube, where a change across the two inlets only retracts as far as the switch. All on one inlet means every change in the job takes the slow path, and moving a single spool fixes it. So it advises, it does not block. Both views update live. Two things were stopping that. fila_switch and ams_switch_inlet were absent from printer_state_to_dict, and the frontend shallow-merges each WebSocket push over its cached status, so a field the push omits keeps whatever the last full fetch left behind. And the broadcast dedup key had no term for either, so "Join IN-B" on the printer screen moved nothing: the binding is not in the tray component of that key, and it is not in the AMS change-hash either, which covers tray fields only and must stay that way because it drives Spoolman sync. Assigning an AMS to an inlet remains printer-side. BambuStudio can read the binding and has no command to write it -- its switch class is parse and getters only, and the recommended-arrangement popup draws and publishes nothing -- so there is no wire format for us to copy. Adding the two fields to PrinterState broke four test modules whose SimpleNamespace stubs predate them. The stubs are fixed rather than the production reads made defensive: the real dataclass always carries both, and a getattr in the dedup key would silently stop tracking the field if it were ever renamed. |
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454457a0af |
Attribute filament correctly when AMS backup swaps spools mid-print
Everything the completion path needs to split a print's filament across the trays it fed from lived only in memory: the dispatched plate and slot-to-tray mapping, the spool-assignment snapshot, and the tray-change log. A print that outlived a restart lost all of it and fell back to what the printer reports at completion -- which, with AMS Filament Backup on, is the substitute tray. The whole print was charged to the spool that only finished it while the spool that ran dry was charged nothing. Persist that context in a new active_print_sessions row, append tray changes as they happen, and restore both the session and the printer's tray-change log at restart recovery. Seed the log from the current tray when there is nothing to restore, since last_loaded_tray advances even when no change is logged. Rank the queue item's stored ams_mapping above the printer's live mapping field, which is what backup rewrites. Recover plate_id from the archive or queue item, and give extract_layer_filament_usage_from_3mf a plate_id instead of taking the first .gcode member -- a Bambu Studio export stores plate 2 first, so per-layer figures were measured against the wrong plate for both inventory backends. Stop auto-unlinking a spool assignment when its slot reports empty during a running print. At a runout the spool is still in the AMS, and dropping the link leaves the completion path nothing to charge. Capture the print-start context for both inventory backends. Spoolman's own durable row (#1820) carries its plate-scoped figures and dispatched mapping but not the tray-change log, and its slot assignments -- the way. Registration in _active_sessions stays gated, since on_ams_change reads it to decide whether to skip the remain%-based weight sync (#880). |
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ec26cba927 |
Resolve the H2C rack nozzle at dispatch instead of letting firmware pick (#2800)
An H2C ran its startup clean and bed levelling on one hotend, switched, and then printed several millimetres above the plate. The same job from Bambu Studio was fine. The H2C is the only model that mounts its nozzle from a rack of six, and a print command names that nozzle by physical rack position -- the firmware reports those as 16 to 21 -- not by the extruder index, 0 or 1, every other dual-nozzle printer uses. Bambuddy only ever had a rack position when a job arrived through the Virtual Printer, which captures Bambu Studio's pick and replays it (#1780). Anything queued from the library, an archive, the webhook or a slicer pipeline carried none, so the field was omitted and the firmware chose -- and its choice need not match what the file was sliced for. The scheduler now derives the per-slot extruder assignment from the file it is about to send, and the MQTT layer resolves it against the rack position the printer reports live. Both are needed: the file knows which side a slot prints from, only the printer knows which hotend is in the carriage, and it can be swapped from the touchscreen between queueing a job and printing it. Derived at dispatch rather than at creation because that is the first point knowing both the real printer and the real file -- an item can be created unassigned, reassigned later, or have its file swapped for a G-code-injected copy. One call therefore covers the print dialog, bulk library adds, the webhook and pipeline runs, and no column is needed. extract_nozzle_mapping_from_3mf is deliberately untouched. Its output feeds the AMS matcher, where nozzle_id is compared against a tray's extruder_id as a hard filter, and physical_extruder_map is what makes that comparison correct -- on an H2D it is [1, 0] and flips the two. Dropping the translation to suit the rack would send every dual-nozzle AMS match to the wrong extruder. The dense per-slot form is a separate function reusing the same output. Nothing here can fail a dispatch. The command is built and published with no exception handler above it, and the queue item is already committed as printing by then, so a bad input has to degrade to "firmware picks" rather than wedge the item. resolve_rack_nozzle_mapping validates every input and raises nothing; an unresolvable mapping, an unparseable value or an unknown rack position all omit the field, which is the behaviour that existed before. Slot IDs are bounded before the dense list is built: they come from the file, and one declaring filament id="50000000" would otherwise allocate a fifty-million-entry list on the dispatch path. Two things are not guessed. A job printing only from the fixed hotend is still left to the firmware, because that nozzle's physical ID is not confirmed by a known-good capture. And the rack is taken to feed extruder 0 from a single hardware observation -- if that is flipped, a one-sided job matches nothing and falls back to the old behaviour, so only a job using both nozzles at once could be harmed, which is what a second capture needs to confirm. Confined to the H2C throughout. Building the print command for 21 model spellings with and without the new argument changes exactly three of them -- H2C, O1C and O1C2. The other 18, including H2D and X2D, are identical. Reported by @tru3l3gend, who diagnosed it on real hardware against a working Bambu Studio dispatch, established the rack ID range and supplied a patch. |
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fce7ea0200 |
Stop the drying badge inventing a temperature on a uniform AMS (#2759)
The follow-up to the same report: a second AMS 2 Pro, no aux power, loaded entirely with PLA and drying at the 45C the reporter picked, showed 45C and then switched to 55C. Bambu never echoes back a cycle's filament or temperature, so both come from the target cached when the command went out, and the fallback for a missing cache reads the loaded trays. The first pass narrowed that fallback to units whose spools agree on a filament, which fixed the mixed-unit case in the original report but left the uniform case answering with the spools' RFID-recommended drying_temp -- 55C here. Agreement across slots is evidence of what is being dried, because the dryer heats all of them. It is no evidence of the temperature, which is picked freely in the popover, so the recommendation was never more than a guess wearing the same confident "PLA @ 55C" as a known target. uniform_tray_drying_hint therefore becomes uniform_tray_filament_hint and returns the filament alone. The badge names a temperature only when we sent it, and otherwise shows the filament and the countdown. Both status builders also stopped filling the two fields independently. Entering the fallback when either was missing let a cached filament pair with a guessed temperature and render as though both were known; the temperature now simply has no fallback to reach. The badge required both fields before rendering anything, so dropping the temperature would have blanked it rather than shortening it -- the frontend now renders each on its own terms. No new translation key: the filament type is a passthrough. This changes what is shown when the cached target is missing, not why it goes missing. If the reporter was on the fixed build, the falling- edge gate is still letting a zero through on an unpowered unit, which needs a log covering the start of the cycle. |
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33ab5f1ead |
Add temperatures to the streaming overlay and a URL builder (#1422)
The overlay at /overlay/{printer} draws live print data over a
full-screen camera view for OBS, a wall display or any browser source.
It has been tunable since it shipped -- which fields, what size, what
frame rate -- but only through query parameters documented in the wiki,
and temperatures were not among the fields on offer. The request asked
for temperatures first and for the field set to be selectable in the web
UI; this addresses both.
Nozzle, bed and chamber readings join the list. The target is drawn only
while the heater is still climbing, so a settled hotend reads "220°C"
for the rest of the print instead of the noisier "220 / 220°C" -- 219.6
against a target of 220 rounds to the same number, and repeating it says
nothing. Both nozzles appear on a dual-nozzle machine. They are drawn
whether or not a print is running, because a preheating printer is
exactly when they are worth watching, and each reading appears only when
the printer genuinely reports one: chamber temperature stays absent on
P1 and A1 models, which publish a chamber_temper with no sensor behind
it, so the overlay never puts a measurement on screen that does not
exist. Labels reuse the heater chart's strings rather than inventing a
second vocabulary for the same three things.
The feed sends an allow-list rather than the temperatures dict. That
dict doubles as the MQTT client's working memory -- derived heater flags
and private target-set timestamps live alongside the readings -- and an
overlay token is a narrower grant than a login, so it gets exactly what
the overlay draws and does not pick up fields as the dict grows. The
same chamber-sensor gate the full status payload already applies is
applied here. The integration test that asserts the payload's exact key
set, which exists to catch that surface widening silently, is updated
deliberately.
Temperatures are not in the default field set, so an overlay URL already
pasted into a scene renders identically after upgrading.
Settings -> API Keys -> Streaming Overlay now builds the URL: printer,
field checkboxes, size, frame rate, camera toggle, an optional token,
and a copy button. It persists nothing and calls nothing new -- the URL
is the configuration, which keeps a scene reproducible by copy-paste and
lets two displays show different fields off one token. Fields are
emitted in the overlay's own top-to-bottom order rather than click
order, and parameters left at their default are omitted, so the same
selection always produces the same URL. The preview alongside it stays
off until asked for: an always-live iframe would hold a subscriber on
the printer's single camera connection for as long as the settings tab
stayed open.
The preview needed one narrow security-header change. Every SPA route
sent frame-ancestors 'none', which is stricter than the SAMEORIGIN in
X-Frame-Options beside it and refuses even a same-origin frame, so the
preview showed Firefox's "another site has embedded it" page instead of
the overlay. The overlay path now sends 'self', mirroring /gcode-viewer,
which admits a framer only on this origin -- Bambuddy's own UI. Every
other path keeps 'none', and embedding the overlay from another host
still requires TRUSTED_FRAME_ORIGINS.
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48c231d8ce |
Stop a drying cycle reporting itself finished a minute in (#2759)
Starting the dryer on an AMS 2 Pro holding two PETG and two PLA spools and picking PLA showed "PLA @ 45°C" for about a minute and then switched to "PETG @ 65°C" for the remaining twelve hours. Bambu never echoes back which filament or temperature a cycle is running, so the badge reads the target cached when the command went out, and that cache had been dropped. Between accepting the command and settling its countdown the firmware publishes one update with the remaining time at zero while the unit is still in its Checking phase -- the reporter's log has 720, then 0, then 719, and four seconds later the same unit's info hex decodes to dry_status 2, Drying. The falling-edge detector read that zero as the cycle ending. Losing the cached target left the badge to guess from the first loaded slot, which was PETG, and its RFID-recommended 65°C. The same false ending fired on_drying_complete, so anyone with smart-plug auto-off-after-drying switched on had power scheduled to cut one minute into a twelve-hour dry; the reporter had it off, which is the only reason this reads as a cosmetic bug. A remaining time of zero now ends a cycle only when the unit is not also reporting an active phase. dry_status comes from the same info hex already parsed a few lines above, so this costs nothing to check. Stopping and Error are deliberately not treated as active -- those should end it -- and a unit that reports no phase at all still ends its cycles, so the gate can only ever suppress on positive evidence that the cycle is live. A suppressed edge leaves the remembered dry_time alone, exactly as the #1462 absent-value skip does, so the push that really ends the cycle still sees a non-zero previous. The fallback guess is tightened to match. On a mixed unit the first tray is evidence of nothing, and naming a temperature the cycle is not using is worse than naming none, so it now answers only when every loaded spool is the same filament and otherwise leaves the badge showing the countdown alone. Both the websocket and REST status builders carried their own copy of that loop; they now share one helper, which also takes the temperature from the first slot that carries an RFID one rather than giving up when slot 1 holds a third-party spool. |
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db6cdb0745 |
fix(camera): take the finish photo when the print ends, not when its last layer starts (#2547)
The photo fired the moment layer_num reached total_layer_num. That edge is where the printer *starts* its final layer, not where it finishes it: the reporter's H2C capture shows it arriving at 92% with mc_remaining_time=2, three minutes and seventeen seconds and one filament change before the print actually ended, so the frame caught the toolhead mid-print over the model. The trigger also latched _finish_photo_captured, which locked out both the stage-22 and FINISH triggers for the rest of the print — so on firmware that never reports an end-of-print filament unload (H2C and A1 Mini confirmed) nothing could replace the bad frame. Remove the last-layer trigger. The photo is now taken at the FINISH-state trigger, which every model sends and which lands after the toolhead parks. Since Bambu's end G-code drops the plate ~100mm just before that, restore the framing before capturing: absolute G90/G1 Z to max_z_height + 10mm clearance, settle, capture, then drop it back so the print is as reachable as the printer left it. Absolute is the safety argument — that Z is a height the toolhead occupied seconds earlier, so it is inside the travel limits by construction and leaves the nozzle above the part, and it is unambiguous across model families because Z is the nozzle-to-bed gap whether the bed moves or the toolhead does. M211 is never touched (#2579). This is what #1145, #1397 and #1565 asked for. The height is only trusted when two independent sources agree: the archive is matched by the finished print's subtask_name by equality (not LIKE, so "Cube" cannot resolve to "Cube v2"), and its layer count from the 3MF must match the layer count the printer reported over MQTT. Matching on "most recent archive for this printer" was not safe — on_print_complete pops the _active_prints binding concurrently, and a print Bambuddy failed to archive would have resolved to its predecessor. A wrong height is the one failure that could drive the nozzle into the model. The move is additionally skipped when the print height is unknown, when a queue item is pending for the printer, when the printer has left FINISH, and when the new finish_photo_restore_plate setting is off. for every FINISH-state capture — which is what shipped the mid-print photo — the bank is used only when the dispatcher recorded that it injected End G-code into this print, since a SwapMod snippet may have ejected the plate. The flag is handed over in two steps (mark_pending at dispatch, adopt at print start) so it can never outlive its print: a job started from the slicer or SD card adopts False rather than inheriting its predecessor's answer. Those prints also skip the plate move outright, bank or no bank. The bank now refreshes on mc_percent advances as well as layer changes, via a new on_print_progress callback. Layer changes stop the instant the final layer begins, which left the #1867 fallback frame stale by the whole length of that layer; progress keeps ticking there and freezes before the End G-code runs, so a swapped plate still cannot reach the bank. The last-layer throttle exemption is dropped, since it would now fire a grab on every percent tick. On the timelapse path the moment producer returns early, so the consumer does the restore itself before its live-grab fallback — the documented usual outcome on P1-series, where the video has not transferred by the time the notification goes out and the shipped photo was of an already-dropped plate. The two waits are now derived from the settle window and the video poll timeout rather than hardcoded; at the old flat 75s that fallback was guaranteed to be cut off mid-settle. extract_max_z_height_from_3mf reads only a bounded prefix of the plate G-code, since a sliced plate is routinely tens of megabytes and the header is ~40 lines. It returns None for missing, unparseable, zero and negative values so callers must treat "don't know" as such rather than defaulting. |
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f2babc9027 | Merge branch 'dev' into feature/p2s-x2d-accessory-fans | ||
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91269f14fe |
fix(mqtt): report why a printer refused the connection instead of looping silently
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. |
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9ee162d51a |
feat(printers): expose P2S/X2D accessory fans (left aux + exhaust)
The P2S/X2D have two fans bambuddy didn't fully handle. On the P2S both are add-on kits; on the X2D they ship from the factory. 1. Left auxiliary part cooling fan — not shown or controllable. It is reported ONLY as device.airduct part id 10 (raw id 160 >> 4; FAN_REMOTE_COOLING_1 in Bambu Studio's DevFan::ParseV3_0) and is never mirrored into a flat big_fanX_speed field, which is why it was invisible. This is the gap identified in #2576, where the single 'Auxiliary' fan (big_fan1 / M106 P2) only reaches the right-hand aux fan. 2. Chamber exhaust fan — shown on every P2S labelled 'Chamber Fan'. On P2S/X2D Bambu's firmware/UI (and Bambu Studio's FAN_CHAMBER_0_IDX) call it 'Exhaust', and it is a kit on the P2S rather than built in. Both are now detected from device.airduct.parts, which lists only the fans that physically exist, so each tile appears only when the hardware is present. - bambu_mqtt: parse airduct part 10 -> left_aux_fan_speed (None when absent) and part 3 presence -> exhaust_fan_present; set_fan_speed() accepts index 10 plus a set_left_aux_fan() helper - schema / status route / printer_manager broadcast / mqtt_relay expose both fields - POST /printers/{id}/fan-speed accepts fan=aux2 -> M106 P10, the command Bambu's official P2S machine profiles use - frontend: 'Left Auxiliary Fan' tile shown when reported; big_fan2 tile labelled 'Exhaust' and presence-gated on P2S/X2D, unchanged 'Chamber Fan' elsewhere - i18n: leftAuxiliary + exhaust for all 12 locales Verified fan -> field map on a live P2S (fw 01.02.00.00), stable across cooling and heating airduct modes: Part cooling -> cooling_fan_speed / airduct id 1 (built in) Aux -> big_fan1_speed / airduct id 2 (built in) Exhaust -> big_fan2_speed / airduct id 3 (kit) Left aux -> airduct id 10 only (kit; forced off in heating by mode config) Tests: airduct id-10 parsing (raw 160 -> id 10, not literal 160), id-3 presence, base-P2S absence, diff-push survival, clamping, malformed entries, M106 P10 emission, invalid-index rejection; fan-speed API aux2->10 mapping; frontend tile presence and labelling per model/kit. |
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8fd1f884dc |
feat(mqtt): publish the plate-clear gate and add a notification for it (#2525)
When a print reaches a terminal state Bambuddy holds the queue until
someone confirms the build plate is clear. That gate was visible only in
the Web UI: the printer's own MQTT push reports nothing beyond RUNNING,
PAUSE, FAILED, FINISH and IDLE, so an external automation could not tell
"finished" from "finished and still waiting for a human".
The per-printer status topic now carries an awaiting_plate_clear field,
and every transition is additionally published on a new retained topic,
bambuddy/printers/{serial}/plate_clear. Retained, and published from the
flag itself rather than from printer telemetry: a subscriber learns the
state of every printer the moment it connects, and the state stays
correct after Auto Off powers a printer down - telemetry stops there,
which would otherwise leave the status topic frozen at false.
Publishing is edge-triggered. The queue clears the gate on every
dispatch whether or not it was up, and no subscriber should see a
"plate cleared" for a plate that was never dirty. Persistence and the
WebSocket broadcast stay unconditional; they are idempotent and predate
this.
A matching Plate Clear Required notification event was added, off by
default on every provider because it fires after every print at the
same moment as the print-complete alert. Only the rising edge notifies.
Acknowledging still goes through POST /printers/{id}/clear-plate.
Two tests in test_printer_manager_status_broadcast.py asserted
_schedule_async.call_count == 2 for the setter. The new emission makes
it three on a transition, so they now assert that the persist and
broadcast coroutines are actually scheduled - which is the contract
Translated in all locales; wiki updated. Covered by backend and
frontend tests.
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13183e365a |
fix(ams): clear empty AMS-HT slot via its real tray_exist_bits position (#2670)
After #2594 every empty-slot clearing path skipped AMS-HT units, so a removed HT spool never cleared on the printer card while Bambu Studio correctly showed Empty. Root cause: the HT presence bit is packed as a single consecutive bit in tray_exist_bits at 16 + (ams_id - 128) (HT-A=16, HT-B=17, ...), not the regular ams_id*4 position -- so the bitmask cleanup, which skipped id>=128, never touched it. The HT's state field is firmware-variant (loaded reports 11 on H2D, 9 on the #2594 firmware) and it keeps echoing stale tray_type after removal, so the bitmask is the only reliable, firmware-independent signal. Confirmed against a live H2D capture (loaded=0x10f7f, empty=0xf7f) and the OrcaSlicer DevFilaSystem.cpp reference (is_exists = tray_exist_bits >> (16 + (ams_id-128))). - apply_tray_exist_bits: handle AMS-HT (128-135) at 16+(ams_id-128) instead of skipping it; clears an empty HT and, because a loaded HT keeps its bit set, never wrongly clears one (keeps the #2594 fix intact). Ids outside the known regular (0-15) and HT (128-135) ranges are left untouched rather than guessed. - Build the AMS change-hash from the merged state, not the raw payload, so a removal signalled only by the bitmask (firmware still echoing tray_type) still flips the hash and fires on_ams_change to unbind the spool_assignment row. - Emit the exists presence bit in the websocket status serializer (REST already did) so the card renders "Empty" instead of "?" where state is ambiguous. |
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56accd24de |
fix(smart-plugs): don't blank printer state when an accessory plug switches off (#2629)
An end-of-print auto-off on a plug that powers a filter fan marked the linked printer offline and forced its state to "unknown". The mark was unrecoverable: connected heals on the next MQTT message but state does not (only frames carrying gcode_state rewrite it, and steady-state push_status frames are partial), so the printer stayed "unknown" until a manual Force Refresh and the queue never dispatched to it again. The offline mark is now an explicit presumption: mark_power_off records the state it overwrites and _on_message undoes it as soon as the printer sends another report on its own topic, since inbound traffic proves the power was never cut. A reconnect discards the saved state, so a genuine power cut is unaffected. Each plug also gains a controls_printer_power flag (default true, backfilled) that gates all five power-off paths, and the queue's power-on step now picks the flagged plug instead of whichever linked plug came first. |
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fb11adc8fb |
fix(a2l): normalise AMS Lite unit 16->6 so slots load and deduct (#a2l-am-unit-16)
The A2L reports its 4-slot AMS Lite as unit id 16, but its slot-presence
bitmasks sit at bit base 24 (id 6) and it reports tray_now as a local 0-3
slot. Fed the raw id 16, the ams_id*4+slot convention probed bits 64-67
(always zero) and marked loaded slots empty; the local tray_now was read as
global, so usage deducted from the wrong spool (or not at all); and the
ams_id<=7 DB constraint rejected id-16 Spoolman links.
Normalise the Lite 16->6 at the MQTT ingest boundary so global tray ids land
at 24-27 - matching the firmware's own bit base, working with every existing
ams_id*4+slot consumer, colliding with nothing, and passing the DB
constraint. Globalise tray_now to 24+slot, widen the valid-tray guards, label
the unit "AMS Lite", and build the confirmed ams_mapping2 {ams_id:16,
slot_id:0-3} / flat 0-3 for dispatch. Outbound slot commands translate 6->16
on the wire via a single helper. Self-scoping: only unit id 16 is touched, so
all other printers/AMS types are unaffected. One uncaptured wire field (the
physical global tray on load/cali) is extrapolated and isolated to the helper.
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2e74f2ad41 |
feat(ams): confirm spool assignments landed instead of fire-and-forget (#2582)
Assigning a spool to an AMS tray pushed ams_filament_setting + extrusion_cali_sel and reported success immediately, whether or not the tray accepted it. A silently-dropped assignment never surfaced, and since a print only deducts from the spool on the exact tray it pulls from, it also recorded no filament usage - which made the whole thing feel random. Read the AMS telemetry back after every assign (inventory assign_spool and the Configure Slot modal) and toast the outcome: loaded when the tray echoes the pushed tray_info_idx, a warning when the filament loaded but the K-profile (cali_idx) did not, or not-confirmed after ~30s. Verification uses the periodic per-tray push (the command ack hardcodes sequence_id 0 and can't be correlated); an on-demand pushall is nudged so it lands quickly. Covers regular AMS, AMS-HT and external slots; stays silent rather than inventing a failure if the printer goes quiet. The read-back check runs on every AMS push because the change-hash excludes tray_info_idx. |
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2e45893dd5 |
feat(print-options): add "Auto" state to bed levelling, flow & nozzle-offset calibration
Bed levelling, flow calibration, and nozzle-offset calibration were on/off only, so the sole way to run bed levelling was to force a full level before every print. Bambu Studio has always offered a third "Auto" state that lets the printer skip the calibration when it was done recently -- the state most users actually want. Make these three options tri-state (off/on/auto), defaulting to auto, and leave vibration/layer-inspect/timelapse as on/off (Bambu Studio exposes no auto for those). Wire encoding follows Bambu Studio's source exactly: each option sends a JSON bool (true only for "on") plus a companion int -- off=0, on=1, auto=2. The bool fields stay booleans (the #1478 H2S regression); only the companion int widened from {0,1} to {0,1,2}. #1721's observation that stage 8/39 stays queued when sending 2 is the auto contract (queued, skipped at runtime if recent), not a broken "off". - schemas: TriState = Literal[off/on/auto] with a BeforeValidator coercing legacy bool / 0-1 / true-false so old clients and un-migrated rows validate - model + migration: boolean columns -> String; SQLite via column affinity + data backfill, PostgreSQL via ALTER COLUMN TYPE guarded on information_schema (verified on both dialects); settings rows normalised true/false -> on/off - MQTT: start_print takes the tri-state strings and emits the paired bool+int - Virtual Printer: reconstructs the slicer's auto/on/off from the int companion (auto_bed_leveling / extrude_cali_flag) in both capture paths - frontend: CalibrationMode type; off/auto/on segmented controls in the print dialog, queue bulk-edit, and Settings -> Workflow; calibrationMode_* strings in all 11 locales |
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e77e10896f |
feat(ams): name the expected slot when a paused print hits an AMS runout (#2587)
The firmware's runout HMS text says "insert into the same AMS slot", which is wrong under AMS Filament Backup: the firmware won't re-accept the depleted slot and advances to the next compatible one. Bambuddy parsed print.ams.tray_now only and dropped tray_tar/tray_pre, so the expected slot never reached the UI. Capture tray_tar/tray_pre on PrinterState and, while paused, resolve them to global tray IDs (expected_tray/previous_tray) on both the REST and WebSocket status payloads via a shared resolver: single-AMS passthrough, multi-AMS snow-mapping resolution, AMS-HT/external passthrough, and an honest null when the slot can't be placed. The AMS graphic highlights the expected slot (amber) and the ran-out slot (red); the HMS modal re-describes runout codes to name both, falling back to "check the printer" when unresolved. Runout copy translated in all 11 locales. Reporter @Jostxxl confirmed tray_pre=1/tray_tar=2 during the pause (ran out in Slot 2, printer expected Slot 3). |
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b8cd1ab22d |
fix(cover): release the DB connection before the FTP thumbnail download (#2572)
GET /printers/{id}/cover took its printer row via Depends(get_db), whose
yield-dependency session stays open for the whole request — including the
3MF cover download (up to 8 remote paths x retries with backoff, minutes
under FTP contention). One pooled connection sat idle-in-transaction the
entire time; on a large farm a wall of dashboards drained the pool. The
route now fetches the printer in a short-lived async_session() and releases
the connection before the download (expire_on_commit=False keeps printer.*
readable). Pinned by a signature-inspection guard that fails if get_db is
ever re-added.
fix(print-start): release the DB connection across plate detection and 3MF download (#2572)
on_print_start held one session from top to bottom of the handler, across
two slow I/O blocks that need no database: the plate-detection camera grab
and, on the new-archive path, the multi-path 3MF FTP download (its own
comments cite worst cases of tens of minutes). The connection sat idle-in-
transaction for both, once per starting print. It now commits at each
boundary — only read SELECTs have run on those paths (every write branch
returns earlier), so the commit persists nothing and simply returns the
connection to the pool for the I/O; the next query re-acquires, and
expire_on_commit=False keeps printer.* readable.
fix(startup): connect to printers concurrently so the API serves within seconds (#2572)
init_printer_connections awaited each printer's connection serially, and
connect_printer ends in a fixed 1s settle wait. The MQTT connect is non-
blocking (connect_async + loop_start), so that 1s x fleet size was pure
serial dead air the FastAPI lifespan blocked on before uvicorn began
serving — ~100s before port 8000 responded on a 93-printer farm. The
connections are now started with asyncio.gather, so the step takes ~1s
regardless of fleet size. return_exceptions=True isolates each result: one
unreachable printer no longer aborts the rest, or startup itself.
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ca3f6e5ee0 |
fix(drying): P1 AMS drying is screen-only — stop offering it (#2533)
The reporter found what his P1S was doing, and it is in Bambu's P1 manual: "P1S connected AMS drying functions may only be controlled from the P1S screen." The firmware acks ams_filament_drying with result: success and then discards it, which is why three commands on an idle printer left the AMS 2 Pro at dry_status 0. No command can start a cycle on a P1, on any firmware, so don't offer one. supports_drying() now excludes the P1 series outright, replacing the 01.08+ gate carried since #292 — that version is when P1 firmware gained AMS 2 Pro support, not remote drying, and it was never checked against a live P1. Both drying routes refuse with a specific 400 instead of publishing a message the printer will drop; queue and ambient auto-drying skip P1s via the same helper. A new drying_screen_only flag keeps the control on the card, disabled, saying why — a P1 owner needs to learn where to dry, not watch the button disappear. A cycle started at the printer still shows with its countdown; only Stop goes away, since a P1 ignores stop exactly as it ignores start. Also corrects the wiki firmware matrix, which listed P1P/P1S as supported and (separately) P2S/H2S/H2C as unsupported. 8 tests. |
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d568307eac |
fix(smart-plug): don't cut power when a print restarts, honor per-plug cooldown setting (#1890)
The print-queue "auto off after this job" trigger used a second, inline auto-off implementation (main.py, print_scheduler.py, print_queue.py) that hardcoded wait_for_cooldown(50C, 600s) — ignoring each plug's configured off_delay_mode / off_delay_minutes / off_temp_threshold — and ignored the return value, powering off on the 600s timeout regardless of print state. A print that failed and was reprinted from the touchscreen got its power cut mid-print. The inline tasks were also uncancellable, so a reprint couldn't abort a pending off. Consolidate all three into SmartPlugManager.schedule_off_after_queue_job, which schedules via the plug's configured strategy (shared with on_print_complete through _schedule_off_per_mode) and is cancellable via _pending_off. Add printer_manager.is_print_active() and guard the actual power-off in _delayed_off and _temp_based_off so no path cuts power on a loaded print. Move the on_print_start cancellation ahead of the auto_on gate so a reprint always aborts a pending off. |
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61a7f2e4ac |
feat(scheduler): preheat & heat-soak before queued prints with per-filament chamber targets + airduct flap control (#1468)
New scheduler stage that heats the bed (and the chamber, on supported
printers) and holds at temperature before each queued print starts —
the heat-soak engineering filaments need for adhesion and warp
control. Bambuddy waits between FTP upload and start_print, so the
soak runs while the printer is otherwise idle. M191 is silently
ignored by Bambu firmware, so doing this at the orchestration layer
is the only place it works.
Resolution order at dispatch:
1. PrintQueueItem.preheat_override ∈ {inherit, on, off}.
'off' skips entirely; 'inherit' falls back to the global
preheat_enabled toggle; 'on' forces the stage even when the
global is off.
2. chamber_target = item.preheat_chamber_target_override
?? max(filament_map[normalize(t.tray_type)] for loaded slots)
?? 0.
Mixed PA+PLA picks PA's 50 (max-across-slots — PA's chamber
requirement is binding, PLA doesn't suffer being warm). PLA-only
derives 0 and skips the chamber phase automatically.
3. Three hardware tiers for chamber heat:
- Active chamber heater (H2C/H2D/H2D Pro/H2S/X2D/X1E) → M141 +
chamber-sensor wait
- Chamber sensor only (X1C/P2S) → no M141, passive bed-radiation
wait with hard max-wait cap
- No chamber sensor (P1S/P1P/A1/A1 Mini) → bed + soak timer only
4. Airduct flap (H2C/H2D/H2D Pro/H2S/X2D/P2S) auto-switches to
match the chamber target — heating mode for engineering
filaments, cooling mode for PLA. Bambu firmware does NOT
auto-switch the flap with M141, so without this an ABS print
on a previously-cooling flap fights the open exhaust, and a
PLA print on a previously-hot flap recirculates ABS heat.
Idempotent: only fires set_airduct_mode when current ≠ desired.
Settings → Workflow → Queue & Dispatch → Preheat & Heat Soak card:
master enable toggle (default off — disabled installs see no change),
per-filament chamber-target editor (replaces a single global int that
shipped in the first cut and couldn't serve PA + PLA in the same
config), preheat_max_wait_seconds, preheat_soak_seconds. The Print
Options panel in PrintModal gets a Preheat sub-section with the
tri-state Inherit/On/Off control and an optional chamber-target
override input.
DB migration: PrintQueueItem gains preheat_override VARCHAR(10)
DEFAULT 'inherit' and preheat_chamber_target_override INTEGER NULL.
Idempotent via _safe_execute. Existing rows behave exactly as before
the migration.
Best-effort throughout: printer drops, refused M141 or set_airduct,
missing bed temp, lost MQTT state mid-wait all log and return cleanly.
Normal upload + start path runs after this returns regardless.
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d4ad41d850 |
fix(hms): action buttons actually reach the printer (#1830)
Three distinct bugs combined into one user-facing failure: clicking
Stop / Problem-solved-and-resume / Ignore-and-resume returned 200 OK
but the printer didn't act, modal stayed up, print stayed paused.
Verified by injecting candidate command shapes on device/<sn>/request
against a live H2D paused on a wrong-plate HMS (print_error=0x05008051).
(1) hms_resume / hms_stop dispatched the "err"-bearing shape that
BambuStudio doesn't actually send; Bambu firmware silently rejects it.
Both now send the plain shape ({"print":{"command":"<x>","param":"",
"sequence_id":"0"}}). PAUSE -> FAILED in 1.7s for stop, PAUSE -> RUNNING
in <2s for resume.
(2) IGNORE_RESUME mapped to idle_ignore, which is BambuStudio's
"dismiss a warning" command and only works for non-pause warnings.
hms_ignore now branches on state.state == "PAUSE": paused -> plain
resume; not-paused -> idle_ignore with the full-length err.
(3) 64-bit hms[]-array faults were truncated to a non-matching err.
short_code in _parse_status discarded 32 of the 64 identifier bits, so
the firmware didn't match it to the active fault. HMSError.full_code
now carries the canonical hex identifier (16 chars for hms[] faults,
8 chars for print_error faults). Catalog lookup tries 16-char first,
falls back to 8-char. HmsActionBody.print_error pattern relaxed to
^[0-9A-Fa-f]{8}([0-9A-Fa-f]{8})?$.
(4) execute_hms_action returned publish-success as success, masking
every silent-rejection bug above as 200 OK. Route now snapshots
(state.state, len(state.hms_errors)) before dispatch, awaits
HMS_ACTION_ACK_WAIT_SECONDS (default 2.5s, module-level so tests
override), and returns 502 with "Printer did not acknowledge HMS
action within 2.5s" if state didn't move.
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3ddf8d847e | [Feature]: HMS Actions (#1743) | ||
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fd61812d01 |
feat(drying): show active-cycle filament + target temperature on the AMS drying badge
Bambu's per-tick AMS push carries only the dry_time countdown — the
filament name and target temperature the user chose are never echoed on
the wire. The AMS card had no source of truth for them and rendered the
bare "Drying · 11h 35m left". The badge now shows
"Drying · PETG @ 65°C · 11h 35m left", matching the cycle the user
actually started.
BambuMQTTClient caches {ams_id: {filament, temp}} on send_drying_command
(mode=1), clears on mode=0 and on the dry_time falling edge to 0 — the
same per-AMS edge detector that drives the smart-plug-after-drying
callback. PrinterManager.get_drying_targets exposes it, the four
printer_state_to_dict call sites thread it through, AMS schema gains
dry_target_temp + dry_filament, and routes/printers.py builds the same
fields into the manually-constructed AMSUnit response.
When no cached target exists (drying started in a previous backend
lifetime, or initiated outside Bambuddy), the badge falls back to the
first loaded tray's tray_type + RFID-recommended drying_temp — the
heuristic the popover already uses to seed defaults.
i18n: printers.drying.targetSummary = "{{filament}} @ {{temp}}°C" in
all 11 locales. Parity check 5356 leaves per locale.
Note: a user reported the H2D's own physical display still labels the
cycle by the loaded tray's filament (e.g. "PLA" instead of the
Bambuddy-requested "PETG"). The wire payload is correct end-to-end —
journalctl shows filament: "PETG" sent and result: success ACKed — and
the badge in Bambuddy's own UI now reflects what we actually sent,
independent of the firmware's display choice.
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8d6f701f1d |
feat(drying): continue drying while printing + gate rotate-spool when tray loaded (issue #1816)
Continue Auto-Drying while a print is running on capable hardware. New Settings > Print Queue > "Continue drying while printing" toggle (default OFF). Extends _check_auto_drying in print_scheduler.py to evaluate running printers when supports_drying_while_printing(model, firmware) returns true. Strict allowlist verified per Bambu wiki release notes for "Print While Drying" / "printing while filament is drying": H2D 01.03.00.00+, H2C/H2S/P2S/H2D Pro 01.02.00.00+, X2D/A2L 01.01.00.00+, X1C 01.11.02.00+. P1*, A1, A1 Mini, X1 (non-C), X1E intentionally excluded. Mid-print drying temperature is capped at max(40, preset_temp - 5) to protect spools from heat damage inside the hot enclosure during a print, matching Bambu's own "lower drying temperature during printing" guidance. Rotate-spool toggle in the drying popover is now disabled when any tray in the targeted AMS has filament threaded into the feed tube (tray.state === 11). The whole AMS rotates as one mechanism, so a single loaded slot locks the entire unit. Previously the toggle was always clickable and the firmware rejected with dry_sf_reason=[3] (ConsumableAtAmsOutlet) after the click. The first cut keyed on the printer-level tray_now but missed the H2D's typical post-print state where tray_now resets to 255 while filament stays in the tube — the per-tray state field reports it correctly. Submission also clamps rotateTray off so a stale-true state from a previous AMS can't leak through. Backend: supports_drying_while_printing in printer_manager.py covers display names and internal SSDP/MQTT codes (O1D, O1E/O2D, O1C/O1C2, O1S, N6, BL-P001, N7, N9). New print_drying_enabled boolean in settings schema. Frontend: toggle on SettingsPage, gate + clamp on PrintersPage drying popover using existing amsData cache. i18n: 3 new keys x 11 locales, no English fallback. Tests: 7 cases on the gate matrix (TestSupportsDryingWhilePrinting), 4 cases on the scheduler mid-print path (TestMidPrintDrying), 9 cases on the rotate gate state transitions. Full backend pytest -n 30 green (4251/4251), ruff clean, frontend npm run build clean, i18n parity 5355 leaves per locale. |
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166e9f9ef2 |
fix(vp): correct #1780 root cause — VP intake key mismatch dropped every slicer field
First-attempt fix ( |
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b1cb26f6ee |
feat(ams-backup): add status badge + toggle, fix prefer-lowest (#1766)
Two tightly-coupled deliverables in one drop -- a new AMS Filament Backup status/control surface, and the #1766 fix that depends on it. Added -- AMS Filament Backup status + control - Parse bit 18 of top-level print.cfg into PrinterState.ams_filament_backup on every push_status. Verified against OrcaSlicer source (DeviceManager.cpp:4961) and a live H2D ON/OFF capture. Tri-state (None = A1 family / pre-cfg push) preserves today's behaviour. - Hold-timer guard (3 s) prevents stale frames from flickering the badge back to the printer's old cfg after a user-initiated toggle. - POST /printers/{id}/ams-backup toggle, set_ams_filament_backup() client method calling _set_print_option("auto_switch_filament", enabled). - GET /printers/{id}/inventory-remain endpoint exposes the same map the dispatcher uses (internal and Spoolman modes both work uniformly). - Small icon badge in the printer card's "Filaments" section header (placement reads as printer-wide because the cfg bit is printer-wide, not per-AMS). Click to toggle, success toast. - 5 i18n keys x 11 locales for the badge UI. Fixed -- #1766: prefer_lowest didn't pick lowest, ignored backup state - Backend gate in _compute_ams_mapping_for_printer: coerce prefer_lowest to False when status.ams_filament_backup is False; log the skip. - New effectivePreferLowest(setting, backup) helper applied at every frontend sort entry point: single-printer PrintModal, multi-printer hook per-printer, PrinterSelector InlineMappingEditor, FilamentMapping standalone editor (the last had NO preferLowest awareness at all before this change). - New preferLowestSortKey(f, inventoryByTrayId) mirrors backend's two-tier key exactly, including the banding tie-break (regular AMS < AMS-HT < external) so the client-side pre-compute matches the dispatch-time pick. An earlier draft used a flat `amsId * 4 + trayId` priority which gave external slots (ams_id = -1) a NEGATIVE priority -- caught in code review before commit. - Settings -> Filament -> "Prefer lowest remaining filament" gets an explanatory note about the printer-side AMS Backup dependency, with i18n key in all 11 locales. |
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d196cfc500 |
fix(virtual-printer): forward H2C rack-swap nozzle pick from slicer to dispatch (#1780)
BambuStudio's project_file MQTT command for O1C2 (the H2C dual- nozzle-rack variant) carries nozzle_mapping (per-filament physical nozzle position IDs) and nozzles_info (per-extruder rack metadata). The VP intake was dropping both, so the H2C firmware fell back to "last matching nozzle type" auto-pick and ignored the user's slicer choice — every HF print landed on R2, every standard print landed on R4. Carry both fields through the VP intake → queue item → MQTT dispatch path. New nullable TEXT columns on print_queue, non- branched ALTER (matches ams_mapping / filament_overrides precedent). Dual-nozzle gate at start_print() keeps the fields off single-nozzle dispatches. Fail-open on malformed JSON — firmware auto-picks, never worse than pre-fix. Stamps both fields on every plate in the multi-plate Send All loop (#1697 / #1188 precedent). ams_mapping2 still handles H2D/X2D dual-extruder routing unchanged; this fix is scoped to the O1C2 rack-swap mechanism. |
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0f99b54d7e | feat: Update printer card UI for structure and readability (#1661) | ||
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be7e85344c |
fix(finish-photo): drive capture from stg_cur=22, drop dispatch force-on (#1721)
capture_finish_photo (default-on) was forcing the timelapse MQTT field to true on every print, even when the user explicitly unchecked Timelapse in the slicer send dialog. On profiles with Timelapse Type = Smooth, that flipped the printer's timelapse_record_flag and un-gated the per-layer M622 J1 wipe blocks the slicer had baked in — toolhead parked off the part every layer, on prints the user opted out of recording. Root cause: #1397 implemented the finish-photo feature as a side channel of "force the printer into timelapse-recording mode at dispatch" so the last-frame extractor had a video to pull from. That conflated recording a timelapse with snapping a finish photo, and the per-layer side effects were decided at slice time by the user's timelapse_type, which Bambuddy has no visibility into post-slice. Fix: replace the force-on with a clean MQTT-state-driven trigger. bambu_mqtt.py fires a new on_finish_photo_moment callback when stg_cur transitions INTO 22 ("Filament unloading") while _was_running AND end-of-print gate matches (progress >= 99 OR layer_num >= total_layers OR remaining_time <= 0). The gate disambiguates from mid-print color swaps (which also transit stage 22 but at progress < 99). FINISH-state fallback in the same handler fires the callback at the existing transition if stage 22 never arrived (cancel, external-spool-only, HMS halt, firmware variants). main.py registers on_finish_photo_moment as a top-level handler. It pre-captures one camera frame at the trigger edge (external cam → buffered RTSP → fresh RTSP via capture_camera_frame_bytes) and caches the JPEG bytes in _stage22_finish_frames[printer_id]. _background_finish_photo consumes the cached bytes before its existing live-grab chain, so the saved photo has the better framing (toolhead parked, before bed drop) without restructuring the archive-resolution / fallback / notification wiring. When a timelapse IS actively recording (user explicitly opted in), pre-capture is skipped — _capture_finish_photo_from_timelapse still extracts the last frame, which is still the best framing and now has no force-on side effects because the user wanted the video. Removed: resolve_effective_timelapse, _resolve_effective_timelapse wrapper, both background_dispatch call sites, the print_scheduler call site, the archive.bambuddy_forced_timelapse write, _cleanup_forced_timelapse (~75 lines including the FTP-DELE walk across /timelapse, /timelapse/video, /record, /recording) and its call site. All paths now read bool(item.timelapse) / bool(job.options.get("timelapse", False)) directly. The archive.bambuddy_forced_timelapse DB column stays defined (default False) for back-compat with existing rows — no consumer reads it anymore. |
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2c2725cb53 |
fix(print): expose nozzle_offset_cali toggle for dual-nozzle printers (#1682)
Bambuddy's project_file MQTT payload hardcoded "nozzle_offset_cali": 2 (skip), giving users on H2D / H2D Pro / H2C / X2D no way to control the same toggle BambuStudio exposes. Critical for diamond-nozzle setups that must keep the calibration off. start_print() now takes a nozzle_offset_cali kwarg; the value is encoded as 1 (run) or 2 (skip) and gated on is_dual_nozzle so single-nozzle machines always send 2 even if a stale flag arrives. The kwarg threads through printer_manager, both background_dispatch sites, and print_scheduler so every dispatch path respects the per-item setting. print_queue gains a nozzle_offset_cali column (DEFAULT TRUE, is_sqlite() branch for Postgres BOOLEAN). Settings default key default_nozzle_offset_cali defaults to TRUE to match BambuStudio. Schemas updated across print_queue, library FilePrintRequest, archive ReprintRequest, settings. PrintModal renders the new toggle only when the selected printer is dual- nozzle (printer-mode: nozzle_count===2; model-mode: DUAL_NOZZLE_MODELS). SettingsPage default-print-options row + QueuePage bulk-edit tri-state both hide unless any registered printer is dual-nozzle. Labels reuse the existing settings.default* keys so the only new i18n strings are settings.defaultNozzleOffsetCali / Desc and queue.bulkEdit.nozzleOffsetCali - real translations in all 11 locales. |
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51abc4b7a8 |
feat(drying): enable AMS drying for H2C at firmware 01.02.00.00+ (issue #1624)
H2C was in _DRYING_UNSUPPORTED_MODELS. Move to _DRYING_MIN_FIRMWARE with the same 01.02.00.00 floor as H2S / P2S. Both SSDP model codes the H2C advertises (O1C single-nozzle, O1C2 dual-nozzle) get the same gate so supports_drying() fires correctly regardless of which form is stored on the printer record. |
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ed08ed3787 |
fix(timelapse): capture baseline on restart-recovery so post-reboot timelapses attach (follow up issue #1485)
When Bambuddy is restarted mid-print, the first MQTT push from the printer carries `_previous_gcode_state = None`. The #1304 guard deliberately suppresses on_print_start on that first push to prevent duplicate archive creation — but on_print_start is also where _capture_timelapse_baseline_at_start runs, so the in-memory _timelapse_baselines dict stays empty for the resumed session. At PRINT COMPLETE, _scan_for_timelapse_with_retries finds no baseline and falls into its "take baseline now" fallback. By that point the printer has already uploaded the in-flight MP4, so the snapshot includes the new file. Every "Found N files / no new files since baseline" retry then fails to detect a diff, and the archive ends up with no timelapse attached — pwostran's report (#1485 follow-up): card shows the finish snapshot but no video. Add a sibling callback on_print_running_observed that bambu_mqtt fires in the "Now tracking RUNNING state" branch when on_print_start was suppressed. main.py wires it to a thin handler that looks up the printer row and calls the existing _capture_timelapse_baseline_at_start. Idempotent — skips if a baseline already exists (handles the rare same-session race where on_print_start also fires for some reason). The printer doesn't upload the timelapse until after PRINT COMPLETE, so a baseline captured any time during the print is still pre-upload — no narrow window to hit. Verified against the in-the-field logs in #1485 (pwostran's 2026-05-23 support bundle): pre-reboot: baseline = 7 files reboot post-reboot completion: fallback baseline = 8 files (includes new MP4) -> all 4 retry attempts report "no new files since baseline" 10 new tests cover both the MQTT-side fire decision (fires when suppressed, doesn't fire when on_print_start handles it, once per session, payload shape mirrors on_print_start) and the main.py handler (snapshot capture, double-capture guard, missing-printer-row guard). |
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0406487eb3 |
Fix: Add Printer no longer hangs the container on P1S (#1445)
The pre-insert MQTT probe added in 0.2.4.2 (
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6f2cec5eb3 |
feat(smart-plugs): auto-off after AMS drying completes (#1349)
Reporter Kyobinoyo asked for the equivalent of the existing print-finish auto-off but triggered when AMS drying ends. Two new SmartPlug columns: auto_off_after_drying (default false), off_delay_after_drying_minutes (default 10 — AMS chamber is hot post-cycle so longer cooldown than the print-finish default of 5). SQLite + Postgres migrations both idempotent. Trigger lives in BambuMQTTClient — per-AMS _previous_dry_times tracks the dry_time > 0 → 0 falling edge and fires a new on_drying_complete(ams_id) callback. Plumbed through PrinterManager.set_drying_complete_callback to SmartPlugManager.on_drying_complete(printer_id, db), which walks linked plugs and respects the per-plug toggle. Catches queue, ambient and manual drying identically because it observes firmware state, not scheduler intent. Frontend: single "Auto Off After Drying" toggle + delay input on the smart plug card, next to the existing print-finish auto-off section. Per-AMS plug routing (separate plug for AMS only, per-AMS targeting on dual-AMS printers) deferred — Bambuddy's plug model is plug→printer, so the trigger fires whenever any AMS on the linked printer finishes a cycle. |
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5680f5d34b |
fix(scheduler): watchdogs no longer falsely treat FINISH->IDLE as "print landed" (#1370)
Both the queue-side _watchdog_print_start and the direct-dispatch _verify_print_response used `status.state != pre_state` to decide whether a project_file command had been accepted. When a printer was in FINISH at dispatch time (un-dismissed post-print prompt from a prior job), the firmware silently rejected the new command; if the user then dismissed the screen prompt, the printer moved FINISH -> IDLE and the watchdog returned early as "command landed" — leaving the queue row stuck at status='printing' indefinitely and the scheduler permanently marking the printer as busy. Narrow the "command landed" check in both verifiers to an allow-list of active-print states (PREPARE / SLICING / RUNNING / PAUSE). Inactive transitions (FINISH -> IDLE, etc.) no longer short-circuit the revert. The subtask_id-advance signal stays in place for H2D's slow FINISH -> PREPARE transition (#1078). Also wrap _watchdog_print_start's revert commit and printer_manager._persist_awaiting_plate_clear in run_with_retry so SQLite single-writer contention can't silently drop these writes. The revert path returns a tristate sentinel so the post-revert MQTT session-recovery logic only runs when we actually reverted (or the commit failed) — not when on_print_complete had already cleared the row, where a forced reconnect could break a healthy concurrent print. |
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7d3af9834c |
fix(inventory): emulate state=9 for bare-tray empty-slot signal on P1S/A1 (#1322)
Follow-up to the #1322 root fix. Reporter @RosdasHH traced the raw MQTT payload and found that P1S and A1 Mini send only {"id": N} for a physically empty slot — no state, no tray_type, no other fields. Without that signal, the assign-spool path was firing one wasted MQTT publish per click on a truly-empty slot (firmware dropped it silently, but still). The AMS parser in printer_manager.py now detects the bare-tray shape and promotes it to state=9 — the firmware's explicit "no spool" code — which lets the existing state in {9, 10} short-circuit in the inventory route apply automatically. The detection is intentionally narrow: len(tray) == 1 and "id" in tray and state is None so the post-Reset-Slot A1 Mini BMCU case (populated payload with state=3 and tray_type="") has more than one key and stays unaffected — the #1322 root fix is preserved. |
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a2c9eef87c |
fix(safety): invert bed-jog Z direction on A1 / A1 Mini bed-slingers (#1334)
On A1 / A1 Mini, clicking the "Up" arrow on the printer-card bed-jog
control sent the nozzle straight into the build plate. Reporter
triggered it with the 50 mm step and crashed their nozzle.
Root cause: the bed-jog UI was designed against the X1 / P1 / H2 family
where the bed is the Z-axis and Bambu's firmware homes Z=0 at the top,
so G1 Z- raises the bed toward the toolhead (decreases the nozzle-bed
gap). The frontend maps "Up" to negative distance with that convention
in mind.
A1 / A1 Mini are bed-slingers: bed moves on Y, toolhead moves on X+Z,
firmware uses standard cartesian Z (Z+ = toolhead up). On those models
G1 Z-10 drives the toolhead DOWN 10 mm. There was no model
classification at the bed-jog code path, so every printer got the same
X1-convention G-code.
Fix: new is_bed_slinger(model) helper in printer_manager (sibling to
existing supports_chamber_temp / has_stg_cur_idle_bug, reuses the
already-defined A1_MODELS frozenset which covers display names and
internal codes N1 / N2S). The bed-jog route now inverts the signed
distance before emitting G-code when the printer model is in that set,
so UI "Up" semantics ("decrease nozzle-bed gap") stay consistent
regardless of which physical part moves. Frontend untouched, single
source of truth lives in the backend, keyed off the Printer.model
column. Route Query description and docstring updated to spell out the
new contract: distance is the gap adjustment, not the raw Z value.
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889c8bd87f |
fix(printers): show correct plate thumbnail on multi-plate 3MFs (#1166)
P1S 01.10.00.00 (and similar firmware revisions) only echo the .3mf
filename in print.gcode_file, dropping the Metadata/plate_N.gcode path.
The /cover route's regex falls back to plate 1 — and the printer card
shows the wrong plate's thumbnail on multi-plate prints.
Resolution order in the new resolve_plate_id() helper (used by both
the status route's current_plate_id and /cover):
1. The plate Bambuddy dispatched. start_print() now records
(dispatched_plate_id, dispatched_subtask) on PrinterState; the
subtask check rejects stale records from a previous Bambuddy
dispatch bleeding into a Studio-direct print on the same project.
2. plate_(\d+)\.gcode regex on state.gcode_file (existing behaviour
for firmware that does include the path).
3. After download, scan the 3MF for a unique Metadata/plate_*.gcode —
covers per-plate archives sliced separately in Studio without a
Bambuddy dispatch record.
4. Default to plate 1.
Cover-byte cache key simplified to (subtask_name, view_key) now that
plate resolution is late-bound. clear_cover_cache() already fires on
every print start, so re-dispatches with a different plate always
fetch a fresh thumbnail.
Bambuddy-dispatched prints additionally register the local archive
3MF in the cover cache at dispatch time, so /cover reads straight
from the archive directory and doesn't refetch the file over FTP
from a printer whose FTP server is busy serving the active print.
Coverage: 5 unit tests for resolve_plate_id, 4 unit tests for the
dispatch record on start_print, 2 integration tests for the cover
route (dispatch wins over plate-1 default; 3MF-scan fallback for
per-plate archive without dispatch record).
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096bdd92a8 |
fix(#1128): broadcast printer_status when awaiting_plate_clear flips
awaiting_plate_clear is a Bambuddy-side flag, not a printer-side one,
so toggling it does not produce an MQTT push from the printer. Commit
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c44b62195a |
refactor(gcode-viewer): archive-scoped previews, bed from capabilities, plate picker
Reshapes the embedded PrettyGCode viewer (landed in #963) into a focused archive-preview tool, matching Bambuddy's data model instead of the OctoPrint-style "connected-printer + library file picker" flow it shipped with. Reached only from the Archives page 3D-preview button; URL /gcode-viewer?archive=<id>[&plate=<N>]. Backend: - /archives/{id}/gcode accepts ?plate=N and resolves the filename by parsing the suffix as int, so zero-padded names like plate_01.gcode are found when the plates endpoint reports index 1. - /archives/{id}/plates gains top-level has_gcode: bool. Source-only 3MFs (PNG/JSON fallback path) surface the flag so the frontend can skip the picker instead of sending the user into a dead viewer. - printer_state_to_dict injects name + model into every WS snapshot so consumers render proper labels on the initial tick without racing a separate /printers fetch. - /gcode-viewer (no trailing slash) dropped from the backend so reloads fall through to the SPA catch-all and keep the layout shell; only /gcode-viewer/ (trailing slash) and /gcode-viewer/<path> remain for the iframe + static assets. Frontend: - PlatePickerModal shown only for multi-plate archives with sliced gcode, grid layout with thumbnails matching the Re-print modal. - Source-only archives show a noGcode toast instead of the empty viewer. - ArchivesPage navigate path swapped to /gcode-viewer?archive=<id> with no trailing slash; GCodeViewerPage iframe forwards window.location.search so the archive reference survives both the initial navigate and a full-page reload. - Viewer iframe's auth path: fetch intercept injects Bearer; a 401 redirects to / so the SPA handles login. Viewer adapter: - Stripped the printer selector, WebSocket subscription, library file picker, tryAutoLoadPrintingFile, BAMBU_BED_SIZES, and updatePrinter- Selector. The viewer no longer observes live printer state. - Bed size derived from /archives/{id}/capabilities.build_volume (extracted from the 3MF's printable_area/printable_height), so H2D, H-family, and any future printer render on the correct bed without a hardcoded map. - loadArchiveById accepts a plate param; fetch intercept rewrites __bambuddy_archive_<id>[_plate<N>] to /archives/<id>/gcode[?plate=N]. Nav + locale cleanup: - Sidebar "GCode Viewer" nav entry removed (viewer is archive-scoped now, not a destination page). - 32 orphaned gcodeViewer locale keys deleted across all 8 locales. - platePicker.{title, hint, plateLabel, objectCount, noGcode} keys added in all 8 locales. ArchivesPage: the now-unreachable ModelViewerModal render paths + its showViewer state removed. ModelViewerModal itself stays — File Manager still uses it for library file previews (plate picker + .3mf 3D model). pre-commit: - gcode_viewer/ excluded from trailing-whitespace + end-of-file-fixer so vendored third-party JS libs don't drift away from upstream. Incidental sweeps picked up by pre-commit and kept (unrelated but benign): - NotificationsPage.tsx: single trailing-whitespace line removed. - spoolbuddy/scripts/pn5180_diag.py: dead `import gpiod` dropped — the pn5180 driver module imported at line 27 does its own `import gpiod` and `gpiod.Chip()` calls, so the diag script's top-level import was never referenced. Tests: - 6 new cases in test_gcode_viewer.py for the backend plate / has_gcode behaviour (plate=N resolution, zero-padded filenames, missing-plate 404, no-plate fallback, plate=0 rejection, has_gcode true/false). - 3 new cases in test_printer_manager.py for name/model WS injection. - PlatePickerModal.test.tsx — 6 frontend cases covering render, plate-name composition, onSelect payload, backdrop close, and thumbnail fallback. |
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4e86e8cb16 |
fix(printers): Clear-Plate button delayed 30s–5min after print completes (#939 follow-up)
PR #939 added the awaiting_plate_clear gate but stored it on PrinterManager, not on PrinterState. printer_state_to_dict() — which builds every WebSocket printer_status payload — never emitted the flag, so the frontend's WS merge preserved the stale false value. The only path that surfaced true was the 30s HTTP fallback poll, and incoming WS ticks kept bumping React Query's dataUpdatedAt, pushing the refetch out further on chatty printers. Emit awaiting_plate_clear from printer_state_to_dict by reading printer_manager.is_awaiting_plate_clear(printer_id) directly; returns False when no id is passed. No frontend change needed — the existing WS merge carries the flag end-to-end and the button now appears the instant the printer transitions to FINISH. Regression tests assert the WS dict always contains the key and surfaces True when the manager has the flag set for that printer_id. Affects every printer (A1/H2D/X1C) equally — transport-agnostic path. |
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fa1c46d9a5 |
feat(printers): show plate name on card for multi-plate active prints (#881)
When two printers were running different plates of the same multi-plate 3MF, the Printers page cards displayed the same file name on both and there was no way to tell them apart. The Queue view already had this information by cross-referencing the archive's plate list; the card didn't have the linkage. Expose `current_archive_id` (resolved by matching the MQTT `subtask_id` against `PrintArchive.subtask_id` — the bridge introduced in #972 for restart-resume) and `current_plate_id` (parsed from `gcode_file` by a new shared `parse_plate_id` helper) on the status endpoint. The helper is also called from the WebSocket push path so plate transitions reflect within 100 ms instead of waiting 30 s for the next REST poll; the archive id itself stays REST-only since it's stable for the life of a print and shouldn't make the push path touch the DB. The card fetches plate metadata via the same `api.getArchivePlates()` call QueuePage uses — shared React Query cache keeps it cheap across polls — and renders the actual plate name (or a "Plate N" fallback) only when `is_multi_plate` is true. Single-plate prints stay clean. Falls back to the previous `plate_N.gcode` regex path when there's no archive linkage (e.g. prints started directly from the printer LCD). Tests cover the plate-id extraction across Bambu Studio path shapes (backend parse_plate_id, printer_state_to_dict wiring) and the label override precedence in formatPrintName (frontend). |
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6fb814c5ea |
feat(printer): add X2D support — camera, dual-nozzle, K-profile, maintenance (#988)
The Bambu Lab X2D (launched April 2026, dual-nozzle, enclosed, hardened
steel rod gantry, AMS 2 Pro compatible) identifies itself as internal
model code N6 via SSDP/MQTT, and real serials begin with 20P9. None of
these identifiers existed in Bambuddy's registries, so the camera
service fell back to the chamber-image protocol on port 6000 (X2D
doesn't speak it), firmware-check logged "Unknown printer model: N6",
and the dual-nozzle K-profile paths — gated on the H2D serial prefix
"094" — would have treated X2D as single-nozzle.
Backend:
- Register N6 → X2D across every registry (PRINTER_MODEL_ID_MAP,
PRINTER_MODEL_MAP, STEEL_ROD_MODELS, ETHERNET_MODELS,
CHAMBER_TEMP_SUPPORTED_MODELS, firmware-check API keys + wiki path,
virtual-printer SSDP/product/serial tables, DB vp_model_fixes).
- supports_rtsp(): match the X2 display-name prefix and the N6 internal
code; camera now routes to RTSP on port 322.
- Dual-nozzle serial prefix check in bambu_mqtt.delete_kprofile and
kprofiles.set_kprofile broadened to ("094", "20P9") — X2D now takes
the H2D-style cali_idx in-place edit path.
- is_h2d model gate in bambu_mqtt.start_print extended with "X2D" so
timelapse / bed_leveling / flow_cali / vibration_cali / layer_inspect
are sent as integers and external-spool ams_id 254/255 routing is
preserved (H2D-style deputy-nozzle addressing).
X2D uses hardened steel rods like P2S — it is intentionally placed in
STEEL_ROD_MODELS, not CARBON_ROD_MODELS. A regression-guard test pins
the classification.
Frontend:
- mapModelCode in PrintersPage and SpoolBuddyAmsPage handle N6 and X2D.
- Enclosure-door badge and airduct-mode whitelists include X2D.
- MaintenancePage.getMaintenanceWikiUrl routes X2D to P2S wiki URLs for
steel-rod lubrication, belt tension, cold-pull, and PTFE tube
(exported to enable direct unit testing).
Tests:
- test_printer_models.py: TestX2DModel (10 assertions).
- test_bambu_mqtt.py: X2D in start_print ams_mapping and is_h2d gate;
TestDeleteKProfileDualNozzleDetection across H2D, X2D, P2S, X1C.
- MaintenancePageWikiUrls.test.tsx: 15 assertions covering X2D, P2S
regression, X1C/H2D/A1Mini regression, and model-name normalisation.
Docs:
- README: added X2 series to the supported printers table.
- CHANGELOG: new entry under 0.2.3b4 Fixed.
Credit to @krautech for the report and debug bundle, and to @legend813
for PR #989 which seeded most of the registry changes — rod-type
classification was corrected (steel, not carbon) and the dual-nozzle /
K-profile / is_h2d gaps were added on top.
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c73c23b083 |
fix(printers): forward speed_level in websocket status payload (#993)
The MQTT parser already tracked spd_lvl and updated state.speed_level, but printer_state_to_dict omitted the field, so live WebSocket pushes never carried it. The frontend's merge-over-old-cache update kept the icon stuck on its previous value; only a full page reload (which hits the REST /status endpoint — that field was included) would refresh it. Changing the print speed from the printer's own panel now updates the Bambuddy icon live, without a reload. |
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8af0966e68 |
feat(printers): airduct mode + status badges + force refresh on printer card
Surface four Home Assistant-style controls on the Printers page card:
- SD Card badge in the top status row (green / red, icon-only).
- Enclosure Door badge in the top status row (green / yellow, icon-only).
Detection per printer family — X1/X1C/X1E read home_flag bit 23, all
others read top-level `stat` (hex string) bit 23 — so X1 firmware that
does not flip stat bit 23 stops false-triggering "open". WebSocket
status-change dedup key now includes door_open so toggling the door
alone publishes a push, no 30s REST-poll wait.
- Airduct Mode badge beside the speed control (cooling / heating)
for P2S/H2D/H2C/H2S; one-click dropdown calls the existing
set_airduct MQTT command via a new POST /printers/{id}/airduct-mode
route.
- Force Refresh entry in the kebab menu — calls the existing
/printers/{id}/refresh-status endpoint to request a pushall snapshot
without forcing a reconnect.
Tests: door-open parsing (X1 home_flag, non-X1 stat, ignore mismatched
source, invalid hex) and airduct route (validation, not-connected,
success, failure).
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