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956
Commits
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2c7c97c130 |
fix(jog): send the nozzle-bed gap the API promises on every model (issue #1334)
POST /printers/{id}/bed-jog takes a signed nozzle-bed gap, documented since it
was written: positive asks for more room between the nozzle and the plate. On
an A1 it did the opposite. The reporter sent distance=5 for clearance and
watched the toolhead come down.
The sign had been flipped on A1 models since the original report on this issue,
where an A1 Mini owner clicked an arrow labelled "move the plate up" and watched
the nozzle dive. That is a labelling problem -- a bed-slinger's plate does not
move in Z at all, so closing the gap shows up as the toolhead descending -- and
it was solved in the transport layer, which turned a parameter documented as
model-independent into one that meant the opposite thing on part of the fleet.
Z is the nozzle-to-bed distance on every Bambu model, by definition of the
coordinate system rather than by convention: G1 Z+ opens the gap whether the bed
drops away from a fixed nozzle (X1/P1/H2, whose end G-code parks with
G1 Z{max_layer_z + 100}) or the nozzle rises off a fixed bed (A1/A2L). The
finish-photo plate restore already relies on exactly that and carries no model
branch. So distance goes onto the wire unchanged and one call means one physical
outcome everywhere: positive is the safe direction on every printer.
Which way an arrow points is a different question, about the machine in front of
the user rather than about G-code, so the printer card answers it and asks for
the gap it wants. The buttons move what you would expect them to move, exactly
as before; on a bed-slinger they now say toolhead rather than plate.
The A2L never had the old fix. It slings its bed the same way the A1 does, but
the inversion listed the A1 names and the A2L was not among them, so its up
arrow has been sending the toolhead at the plate for as long as the machine has
been supported. The new classifier also covers the alternate internal codes
A04 / A11 / A12, which LINEAR_RAIL_MODELS and SINGLE_NOZZLE_FLOW_MODELS both
carry and the old gate did not.
is_bed_slinger is gone from the backend rather than widened: with the route
model-independent it had no caller, and a kinematics helper sitting unused in
the service layer invites the next person to assume the backend handles
direction. It does not, deliberately.
Separately, the soft-endstop comments on both jog routes claimed the firmware
clamps a bare move at the travel limit. It does not, and #2579 measured that:
an H2D at its Z limit ran straight past a clean G91/G1 Z-1.00/G90, while its own
touchscreen refuses the identical move. What #2579 removed was M211 S0, which
disabled the limits globally and took the touchscreen's protection with them.
The jog popover has warned about this correctly the whole time; only the code
comments disagreed with it.
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a4cfbd4212 |
fix(archives): come back for a 3MF whose transfer ran out of time (issue #3063)
The reporter's P1S had the sliced file on its card and was serving it. The 19MB transfer just did not finish inside the budget while the printer was also running its camera, its status messages and the upload of the job itself. Bambuddy wrote an empty fallback archive and never looked again -- then downloaded that same file successfully three times over the next two minutes and discarded every copy, because the only code that would have attached one had already run. The recovery machinery was there. It was armed for exactly one give-up, the FTPS cool-off, on the grounds that the three storage verdicts are settled: a job on internal eMMC never appears at any FTPS path, and sweeping for it again is what where the file is demonstrably still on the card. The sweep already had the signal and never used it. A file that is genuinely not there is answered with 550, which surfaces as FileNotOnPrinterError and is caught by name; a timeout returns falsy instead. So "the printer says no such file" and "we never got a straight answer" are distinguishable without guessing, and only the second schedules anything. Not scheduled either for a 3MF that downloaded fine and turned out to be another plate's. Recovery checks that a candidate is a readable 3MF but not which plate it holds, and the names a retry would use are the same stale ones that fetched the contradicted file -- so it would put back exactly what #2957 discards. The ladder follows the cause: a cool-off has to expire, so its first attempt sits past the 300s; nothing has to expire here, and this reporter's file completed 48 seconds after the budget was spent. The archives banner gets its own wording for this, because the old text sends an owner whose card is working to switch on a setting that is already on. It names the Connection Timeout setting instead. |
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309e64b8a2 |
fix(ams): resolve a slot's K profile by index when the printer does not file per hotend (issue #3044)
An X2D with two AMS 2 Pro, one per hotend, showed a K value on every slot of the first and nothing on any slot of the second. Configure Slot was worse than blank there: the picker offered no matching profile, the slot read as though nothing were bound, and choosing one changed nothing the user could see. Both symptoms are one rule. A calibration index can mean two different profiles on a dual-nozzle machine -- on the maintainer's H2C, index 16 is the left hotend's black PLA at K=0.018 and 15 is the right's at K=0.020 -- so the index is resolved against the slot's own hotend, and a miss shows nothing rather than the other nozzle's number. That is right whenever the printer files its calibrations per hotend. This one files them per filament: the second AMS's slots point at the same entries as the first, every entry tagged with one extruder, and requiring a match found nothing at all. The hotend now has to appear in the table the printer actually sent before it is used to narrow anything. Where it does not, the index stands on its own, which is what BambuStudio does for this same card -- AMSItem.cpp resolves it through get_pa_k_n_value_by_cali_idx, matching cali_idx and nothing else. Where it does, nothing changes: the H2C case still blanks rather than borrowing, and the other hotend's profiles stay reachable under Other K profiles. The relaxed path still refuses an answer when the candidates disagree on a value. The premise that the table is always numbered per nozzle had been written into three comments and two layers of code; it is corrected where it appears. Alongside it, in the same picker: the K-profile options rendered the hotend suffix twice in the matching group and three times under Other, so every option on a dual-nozzle printer read "... . Left . Left". |
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9a837d19a1 |
fix(slicer): strip zero-valued filament-index sentinels, and sanitise the preview slice too (issue #3030)
Bambu Studio writes 0 into wall_filament, sparse_infill_filament and solid_infill_filament to mean "use whichever filament the object is set to". Bambu Studio and OrcaSlicer 2.4 define these min 0 and accept it; OrcaSlicer 2.3 and earlier used the 1-based scheme (min 1, default 1) and reject it with "0 not in range [1.000000,...]". Sidecar images are version-tagged, so an install can be pinned to one of those builds. Same shape as the -1 inherit markers from #1201 with a different marker, so the allowlist becomes a key-to-marker map rather than one global constant. The buckets must not bleed: a -1 on a filament index is a real value, and a 0 on a raft field is a setting the user chose. The key is removed rather than rewritten, which is what makes it safe on every build. The CLI then uses its own default: 0 where 0 was legal (unchanged), 1 on the older builds, which is what "the active filament" means under that scheme. The preview slice never ran the sanitiser at all, so a file that sliced fine could still fail its automatic plate preview and fall back to the painted-face heuristic. It matters more there than in a real slice: the preview runs on the file's own embedded settings, so there is no --load-settings pass that could supply a replacement for a field the range validator has already rejected. That also explains the reported "same error on a later attempt of an unchanged file" without any second copy of the keys -- the validator that emits it reads the merged global config, which per-object model_settings.config overrides never reach. The sanitiser moves to utils/threemf_tools so the service can use it without importing a route module, and both preview callers pick it up from one place. Drops _strip_3mf_embedded_settings and its constant, which have had no callers since the strip-everything experiment was reverted. |
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b9bd312826 |
fix(slicer): keep protocol-handler download tokens valid for their whole TTL (issue #3029)
The Slice and Open in Slicer actions mint a short-lived token and put it in the URL, because a protocol handler cannot carry an Authorization header. That token was spent by the first request to reach the endpoint, which made the handoff depend on the slicer fetching the URL exactly once. Nothing guarantees that: Bambu Studio's downloader retries three times after a failed attempt, transfers get resumed, on-access scanners fetch. The first request won and the slicer was handed a 403. verify_slicer_download_token takes a keyword-only single_use flag. The default still consumes via DELETE...RETURNING; single_use=False verifies with a SELECT and leaves the row for the rest of its five-minute TTL. The stored row is the same either way, so the endpoint decides, not the mint. The three protocol-handler downloads pass single_use=False: a library file, an archive's sliced 3MF, an archive's source 3MF. Resource binding and expiry are untouched. The two browser downloads keep consuming, because what they hand over is itself consumed -- the prepared printer bundle is deleted the moment it has been streamed. Also: add "/source-dl/" to PUBLIC_API_PATTERNS. Those patterns match by substring and the source 3MF route's segment is source-dl, which does not contain "/dl/", so with auth enabled the middleware rejected the slicer's header-less request before the route's token check ran. Open source 3MF in slicer could never work on an install with authentication on. |
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816f073a9e |
fix(auth): decouple media routes from the camera stream token (issue #3025)
Thirteen routes with nothing to do with a camera took the camera stream
token as their credential -- library and archive thumbnails, plate
previews and plate thumbnails, timelapses, print photos, archive QR
codes, project covers, print-log thumbnails, printer covers and
external-link icons. A browser cannot put an Authorization header on an
<img src>, so these need a credential that fits in the URL, and the
camera token was the only one that existed. Minting one costs
camera:view, so a user granted library access to their own files got a
grid of broken images until they were also handed the live camera.
Adds a media token: minted by POST /auth/media-token behind plain
authentication, and identified -- it records the principal the way the
websocket token does rather than being anonymous the way the camera
token is. Each route now gates on the permission and ownership rules of
the resource it serves, through the same _ensure_*_visible helpers its
header-authenticated siblings already use. The three camera routes keep
the camera token, and require_camera_stream_token_if_auth_enabled now
documents that it is for those only.
The media dependencies accept ordinary Authorization / X-API-Key headers
as well as ?token=, delegating that path to the existing checkers, so
API-key scope rules and the per-printer allowlist are unchanged.
Long-lived camera_stream, camwall and overlay tokens are deliberately
not accepted on the media routes -- those are handed to kiosks, walls
and Home Assistant to display video. The cam wall, streaming overlay and
kiosk views use only the three camera routes and are unaffected.
Frontend: withMediaToken alongside withStreamToken, and
useStreamTokenSync fetches a media token for every signed-in user while
asking for a camera token only when the user can mint one, which also
stops the 403 that fired on every page load for everyone else.
Also fixed, same class:
- /printers/{id}/files/plate-thumbnail/{i} is rendered in an <img> but
had a header-only guard, so the file manager's plate thumbnails 401'd
whenever auth was enabled. It now takes a media token too.
- getProjectCoverImageUrl returned a URL ending in ?token=, and the
project edit dialog appended its own ?v= cache-buster after it, so the
second ? landed inside the token value. The version is now a parameter
applied before the token.
Tests: 15 integration tests for the token boundary, permission
enforcement and per-row scoping; 10 frontend tests for the URL split and
the two-query hook. test_cover_image_get_uses_stream_token_gate is
renamed and repointed at the media gate -- what it pins, that the
credential has to fit in a URL, is unchanged.
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93eeb05264 |
fix(auth): let the sidebar read install flags without settings:read (issue #3023)
cost_centers:read_own exists so a non-admin can see their own wallet, balance and cost-centre spend, and the Finance page honoured it -- typing the URL worked and rendered their balance. The sidebar never offered the entry. It decides whether to show Finance by reading billing_enabled from GET /settings, which requires SETTINGS_READ. A non-admin gets 403 there, so the value arrived undefined, `undefined !== true` held, and the entry was hidden from precisely the users the permission was written for. The permission map and the route guard were both already right; only discovery was broken. Three more fields came from that same 403, and one of them failed the other way up. The Notifications gate tests `=== false`, which undefined never satisfies, so an administrator who switched user notifications off still left the entry showing to the non-admins it governs. Nobody reported that one, and no administrator could have reproduced either: administrators can read /settings. The remaining two were quieter -- the sponsor prompt fell back to EUR whatever the install uses, and the update check ran where it had been turned off. SETTINGS_READ cannot be the price of knowing whether billing is on. It also grants sight of the SMTP, LDAP and MQTT credentials, which is the reason /settings/ui-preferences exists at all. So: a second endpoint, GET /settings/ui-flags, carrying those four fields and asking only that the caller be signed in, via the existing require_auth_if_enabled. Layout drops its /settings query altogether, which closes the class rather than the two instances that happened to be visible. Deliberately not four more fields on /ui-preferences. That endpoint is served to anyone at all on the recorded grounds that its contents are "public defaults that ship with the app" (test_route_auth_coverage.py), and its field set is pinned by a test written to make anyone adding to it stop and think. These fields are not defaults -- they say how this deployment is configured -- so they get their own endpoint at their own trust level instead of stretching that charter to fit them. require_auth_if_enabled also keeps the auth-disabled case that /ui-preferences was ungated for: "works when there is no auth" and "readable by anyone" are different statements, and conflating them is what put a settings read in front of a permission that never needed one. Twelve tests. Backend pins that the operator can read the flags, that the same operator still gets 403 from /settings, that an anonymous caller is refused when auth is on, that it answers when auth is off, the exact field set, that no credential ever appears, and that the public endpoint did not quietly gain these fields. Frontend pins Finance visible for cost_centers:read_own with /settings returning 403, and Notifications hidden when the flag is off -- each waiting on a positive signal before asserting an absence, so the negative cases cannot pass before the query resolves. Reported by @lonix, who traced it to the queryKey and the route gate. |
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6564c74071 |
fix(archives): report a refused FTPS handshake as the printer, not the slicer (issue #2780)
The Archives banner picks its wording from a priority list of the causes it knows. REASON_FTPS_COOLOFF was added by #2957 and never put in that list, so an install whose empty archives all came from a printer refusing the TLS handshake matched nothing, got reason: null, and fell to the original wording: the slicer did not leave the .gcode.3mf on the card, switch on "Store sent files on external storage", here is installation step 4. Every clause of that is wrong for this cause. The slicer did write the file -- reason he read the whole thing as Bambuddy being broken. The setting was already on. And there is nothing on his side to change: the printer's file service answered port 990 with something that is not TLS, so no lookup ever ran and where the file went was never tested. It is #2899's mistake -- an error message describing a cause that was ruled out before it was printed -- in a surface that did not get that pass. The slug now leads the list rather than joining the end of it. The other three describe an install working as configured and each ends in something the operator can change; this one reports a fault nobody can yet explain, which is both the more urgent thing to say and the thing that produces a useful report. The banner also dismisses one-shot into localStorage, so a reason ranked below another is not deferred to next time -- it is never shown to that user again. Ranking it first cannot bury a permanent cause in exchange: a successful recovery clears the row's markers (#2957), so a row still carrying this slug is one whose retry failed too, days after the print. New wording in all fourteen languages says the printer refused the connection, that this is not a slicer setting and not something the operator did, that Bambuddy comes back for the file when the five-minute pause clears so a brief episode fills itself in, and that a card still empty means the refusal outlasted the retry. It links to the handshake entry in the troubleshooting guide instead of to the installation guide. The client's getNo3MFWarning type still declared the old three-slug union, which made all three new comparisons provably dead -- caught by tsc, not by any test. Four tests. One pins the slug reaching the banner, one pins it outranking the three settled causes, one pins those three keeping their order behind it, and one asserts the rendered wording carries no slicer advice at all. Also corrects the wiki page these reports are pointed at. It said to power-cycle the printer; the reporter who prompted that advice power-cycled both of his and the failure continued unchanged, and bambu_ftp.py has carried the retraction in a comment since. The page now states what was actually measured -- that a version mismatch reports itself differently, that every printer probed refuses TLS 1.3 and completes on 1.2 so there is no version to fall back from, and that three P2S units failed while three more on the same switch never did -- says plainly that the trigger is unknown, and names the one cleartext-probe line worth collecting. |
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f3b1c59169 |
fix(orca-cloud): close the HTTP client when an authenticated build fails
OrcaCloudService owns an httpx client from construction, and every path in _build_authenticated_service after that point can raise: no stored refresh token, a rejected refresh, an unreachable Orca, and the token-rotation write. On success the caller closes the client. On failure nobody is ever handed it, so all four paths leaked one into the connection pool. That went unnoticed while the only callers were routes, where the trigger is a person retrying a broken sign-in a handful of times. It stopped being harmless in |
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9434875fa1 |
fix(ams): resolve a custom filament's own id from every preset source (issue #3003)
A custom filament profile reaches an AMS slot as itself through exactly one field, tray_info_idx, and every source we can read that id from was reading it from the wrong place or not reading it at all. Bambu Cloud returns a preset's own filament_id either on the response envelope or inside the preset JSON under `setting`, and only the envelope was read. Presets of the second shape fell through to the base_id branch and reached the slicer as the Bambu filament they inherit from. filament_type next door already handled both spreads; filament_id now does too. Orca Cloud was absent from the resolver entirely. A spool stores the bare profile UUID, which matched no branch and fell through normalize_slicer_filament -- a function that passes anything it does not recognise straight through -- so a 36-character UUID went into the field. Orca profiles carry their own filament_id in the slicer JSON that OrcaProfileDetail already exposes under `setting`, so the lookup is the same one the Bambu branch does. It is best-effort: no pairing, a dead token or a missing orca_cloud:auth permission degrades to the fallback rather than failing the assignment, and it passes clear_on_auth_failure=False because a background caller cannot tell a real revocation from a lost refresh-rotation race. configure_ams_slot sent the cloud setting_id as tray_info_idx when it found no real filament id. That field is 8 characters on the printer -- exactly the width of a local preset id, less than half a cloud one. Measured on the reporter's A1: sent PFUS9ddc938fe3ab8f, the tray read back PFUS9DDC, acknowledged as a success. The slot then resolved to nothing, so the slicer showed Generic anyway and the calibration table, keyed by the same field, lost the slot. It now falls back to the slot's existing filament id or the generic for the material, and the route's guard was aligned with the resolver's so both refuse the same four shapes from one shared definition. This reverses the contract #1053 pinned. Six tests asserted that the PFUS belonged in tray_info_idx; the A1 capture shows it never worked, so they were rewritten with the measurement in their docstrings. Verified against 874 AMS trays across twelve models in the support archive: 92 already carry a custom "P" + 7 hex filament id, which is what confirms the mechanism works and this is a lookup failure rather than a platform limit. No tray on any model carries a setting_id, so a profile with no filament_id of its own still cannot be told apart from its base. |
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2e405afcd1 |
Decide whether a 3MF is sliced by looking inside it (issue #2993)
An archive that showed the green GCODE badge could re-import into the File Manager as a source-only project with no Print button, seemingly at random. Nothing was ever lost from the file. The download serves the stored bytes verbatim and the G-code was still in the zip; the two sides simply asked different questions. Archives looked inside the file. The library looked at the filename. So a sliced 3MF stored as Foo.3mf rather than Foo.gcode.3mf earned the badge and lost the Print button, and which one you got depended on how the print had reached the printer -- a slicer's LAN send names it .gcode.3mf, a per-plate export or a cloud-dispatched print does not. Both sides now ask one shared predicate about the zip itself, and every route into the library classifies on content. Only the central directory is read, and only when the name has not already settled it, so ingest costs nothing extra -- the external scan opens each 3MF for its thumbnail regardless. Rows already stored are re-checked once, internal ones only: an external row points at a mount that may be slow or absent, and startup is the worst place to discover that. The Slice action moves with it. Its refusal to slice an output was as name-bound as the Print gate, and without that a file that correctly gained a Print button would have offered to re-slice its own G-code. |
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7c10412f99 |
Refuse a same-named 3MF that contradicts the running print (issue #2957)
When a print's own 3MF cannot be fetched the usage tracker borrows one from the library or a previous archive, matching on the filename stem. That is far weaker evidence than it looks: Bambu Studio writes the printer-side filename from the project's Title metadata, so every plate of a project reaches the printer under one name however the file was renamed on disk. The reporter's single-filament job was handed a previous archive's three-filament plate. Three spools were debited for material that was never extruded, and nothing on the archive said the numbers were someone else's. A candidate is now rejected when it positively contradicts the print - a different plate, or a filament count the slicer's ams_mapping disagrees with - and the accepted one is logged with both expectations. Only on a contradiction: the plate needs firmware that echoes it and the count needs a print command Bambuddy saw, and refusing everything uncorroborated would retire the fallback recovery this same issue asked for. The count is scoped to one plate or not compared at all. Unscoped, the filament reader collects every <filament> in the file, and that sum against one plate's count would reject every multi-plate library upload on exactly the firmwares that cannot tell us the plate. ----- Give a download the time the file needs, and one printer at a time (issue #2957) ftp_timeout is handed to every download as both the socket inactivity timeout and the whole-transfer deadline, which makes its 30s default a cap on how big a file a printer may serve. The reporter measured one 5.4 MB 3MF at 45s off a worn P1S SD card and 25s off a new one, and a 15.15 MB 3MF at 105s. None of those links were broken - they were slow, which is what the inactivity timeout exists to tell apart. download_to_file already asks for SIZE. It now reports it, and the total deadline follows the file at the 25 KB/s floor _upload_deadline has used since do, so #2572's cap on the executor queue wait is untouched. Capped at 300s for a reason that is not about FTP: on_print_start holds a pooled DB connection across its whole 3MF hunt. Downloads also take turns per printer now. He watched Bambu Studio lose its own connection while Bambuddy pulled a 12 MB 3MF, and a later log caught two Bambuddy downloads of the same file overlapping at print start. The gate is soft - whoever cannot have it within 30s goes anyway, because a print losing its 3MF to queueing is worse than the contention, and a soft gate cannot deadlock. It is also meaningful for the first time. The 90s cap on a multi-path lookup returned while its worker kept walking the remaining paths, still on the printer's socket; that walk is now cancelled and waited out before the printer is handed on. ----- Look in the shared 3MF cache again before each cover retry (issue #2957) The cover endpoint and the print-start archive flow share a cache so whichever fetches the 3MF first hands it to the other (#972). The cover consulted it once on the way in, then retried for up to two and a half minutes without looking again. In the reporter's log the archive flow published the file 42 seconds into that sequence and the cover's third attempt still pulled its own 5,250,969-byte copy, off a printer that was mid-print on the same SD card. A file picked up that way is left alone rather than re-registered under this endpoint's own name or deleted on the way out. It is the archive flow's. |
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d4477e9b71 |
Log ffmpeg's error instead of its build banner
ffmpeg opens every run with ~20 lines of version and build banner and prints its diagnosis last, so the stderr[:200] eight of the nine call sites used kept the banner and threw the error away. The reporter's twelve capture failures all read "ffmpeg version 7.1.4 ... configuration: --prefix=/usr --extra-version=", identical on every install; the exit code was the only usable byte. The banner-stripping summariser written for #925 lived private to the camera route. It now lives in backend/app/utils/ffmpeg_output.py and every ffmpeg and ffprobe stderr goes through it. Two things the scattered copies also got wrong: four logged the input URL unmasked, publishing a printer access code or camera password, and four called a bare .decode() on bytes ffmpeg copies stream fragments into. ----- Delete the files a no-3MF archive owns, without taking a printer folder Both delete paths derived the directory from file_path, which such an archive does not have, so they removed nothing and logged it at ERROR under a SECURITY banner. That was true when the archive was an empty row and stopped being true once one could hold a timelapse and finish photos in <archive_dir>/<id>/ and an uploaded source in archive/no_source/<id>/. The two are cleaned up by different means, because <archive_dir>/<id> shares a namespace with the per-printer folders: a normal archive lives at <archive_dir>/<printer_id>/<timestamp>_<name>/, so archive/1 is printer 1's folder and also the directory the shared helper hands archive id 1. Ids come from unrelated sequences, so the first few archives collide with the printers on every install, and an rmtree there takes every print that printer made -- measured on a scratch tree. no_source/<id> is a level deeper under a name no printer id can take and is removed whole; the id-named directory gives up only its photos subdirectory and the video the row records, then goes only if that left it empty. The depth guard moves from one to two for the same reason: a file_path that lost a path component could point the delete at a printer folder, and no archive directory has been one level deep since the first commit. Hard delete had its own copy of these rules, which the helper's docstring says it exists to prevent, and it had diverged -- it skipped the print-log thumbnail cleanup whenever a guard tripped. ----- Stop the RTSPS proxy leaving a handler behind at shutdown asyncio.start_server keeps only a weak reference to the connection callback's task, so a handler still awaiting its forwarders could be collected while pending -- "Task was destroyed but it is pending!", at ERROR with a traceback into camera.py, once every few hundred snapshots. Teardown had the matching gap: server.close() leaves established connections running, so the close waited on a handler that only finishes when the peer drops, and ffmpeg has already been reaped by then. Handlers are held for as long as they run and cancelled at shutdown, which is Server.close_clients() by hand -- that landed in 3.13 and Bambuddy supports 3.10. Both the snapshot path and the streaming endpoint share the shutdown. |
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0d21239e18 |
Send AMS tray colours as uppercase hex (issue #2987)
Assigning a spool to an AMS slot unassigned it again seconds later, and
the slot's colour changed at the same time. It presented as Bambu Studio
and Bambuddy fighting over the slot. The reporter's log shows Bambuddy
losing to itself.
P1S firmware 01.10.00.00 reads every lowercase hex letter in an AMS
tray_color as a zero, and hides it completely: the command response
echoes back the value that was sent and reports result "success", so
only the next AMS push says what was really stored. The spool-assign
path sent spool.rgba verbatim and that column stores lowercase. From the
bundle:
sent 09ff00ff -> AMS reports 09000000
sent ff5100ff -> AMS reports 00510000
sent 090000FF -> AMS reports 090000FF
That is the visible colour change, and it is also what deleted the
assignment. The auto-unlink sweep asks whether the slot still matches
the spool assigned to it; the mangled colour no longer did, so the
assignment Bambuddy had made four seconds earlier was removed.
colors_similar('09000000', '09FF00FF') is False, which is the whole of
it.
Re-assigning could not recover, because the Configure Slot dialog seeds
its colour from whatever the printer currently reports. It wrote the
mangled colour back and cemented it, which is the loop the report
describes in its steps 4 and 5.
Colours are now uppercased where the command is assembled rather than in
each of the four routes that configure a slot. A caller that forgets is
exactly how this arrived. Nothing else changes: no padding, no invented
alpha, no six-to-eight widening, and tray_type and tray_sub_brands keep
their case, where it carries meaning -- "PLA Matte" is a product line,
"PLA MATTE" is not.
Two paths deliberately left alone. The developer-mode probe re-sends the
colour the printer itself just reported so that the probe is inert;
uppercasing there would turn it into a write. And the Virtual Printer
forwards the slicer's own command verbatim -- Studio could in principle
hit the same firmware bug, but nothing here evidences that it sends
lowercase, and rewriting a slicer payload inside a transparent proxy is
not a change to make on a hunch.
Two more defects from the same log.
A spool with a brand and no subtype was configured with the string
"None" in its name: the branded branch interpolated spool.subtype
without checking it while the unbranded branch guarded it, so
"Sunlu PLA Matte None" went on the wire and into Studio's display.
And the FTP log is readable again. A 426 whose bytes Bambuddy has
already verified against the printer is how Bambu FTPS normally ends a
transfer, not a fault, so it drops from WARNING to INFO. It fired 54
times in this one bundle, every one followed by a completed upload, and
it was burying the 26 TLS handshake failures in the same log that
actually cost the reporter two prints. A 426 whose bytes do not verify
is still an error and still fails the upload.
The handshake failures themselves are printer-side FTPS cool-off under
load and are not touched here.
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e9daa2124e |
Match slicer presets on what they declare, not what they are named (issue #2982)
The internal slicer picked PETG for a PLA plate and an A1 process for a P1S. Both come from the sidecar's bundled-profile listing, fixed in the sidecar repo; this is the consuming half plus the hardening that keeps an older sidecar degrading rather than breaking. Standard-tier presets now carry the compatible_printers the sidecar reports. That list is the only truthful account of which printer a preset belongs to, because the bundle ships no process preset named after a P1S, an X1, an X1E or an H2D Pro -- all ten of the P1S's are named "@BBL X1C" and name the P1S only in that list. Reading the printer out of the preset NAME therefore made a P1S look like it had no compatible process at all: all 198 hid behind "Show all" and the auto-pick fell through to an alphabetically-first 0.06mm Fine @BBL A1 0.2 nozzle the CLI refused. A P1S now gets 0.20mm Standard @BBL X1C and 73 filaments instead of 4. An older sidecar reports nothing here, which leaves the name matcher in place -- degraded as before, not broken. Material is now a hard partition in the filament pre-pick rather than a +10 bonus. A preset stating a different material than the plate asks for is the wrong preset, not a worse one: wrong nozzle temperature, wrong bed temperature, wrong flow. A preset stating NO material stays eligible -- unknown is not wrong, and 32 shipped profiles genuinely have none. The same rule reaches the retain path, which held a slot on printer-compatibility alone and so cemented a wrong-material pick through every re-pick. A preset the user chose themselves is exempt: printing PETG on a plate a designer labelled PLA is a legitimate thing to do, and this rule exists to correct the auto-pick, not to overrule the user. Two more, both found while tracing this and neither reported: Among process presets equally valid for the selected printer, the one nearest a 0.2mm layer height now wins. Within a tier the list is alphabetical and Bambu's naming puts the finest height first, so every slice that did not name its own process silently got 0.08mm Extra Fine on an X1 Carbon and 0.06mm Fine on an A1 mini -- correct presets, nobody's default. Ties break toward the coarser, faster height; a name with no readable height is still pickable when it is the only candidate; a process the 3MF named still wins outright. H2DP is aliased to H2D Pro, the same shape as the A1M rename in #1649 -- the bundle spells the model one way in preset names and another in the printer preset, so an H2D Pro classified all 198 processes as another printer's. Deliberately narrow: H2DP and a plain H2D are different machines and must not collapse. A dropdown the printer filter would empty now shows the unfiltered list instead. That state was reachable for four printer models and told the user nothing; a visible preset for the wrong printer can be changed, an empty dropdown cannot. Verified against live Orca 2.4.2 and BambuStudio 02.08.02.61 sidecars over the real 1156- and 1792-profile trees: every one of the eight printer models tested now auto-picks a 0.20mm process for its own printer, a PLA plate draws a PLA preset and a PETG plate a PETG one. Each change was confirmed to fail its tests when reverted. |
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699fc419fe |
Paint an AMS slot card with the spool's colours, not the tray's (issue #2967)
A Ziro "Colorful Mist" -- yellow, cyan and pink, effect Tri Color -- hovered on the printer card as a single flat pink rectangle. A printer reports exactly one tray_color hex per tray and nothing else, so telemetry cannot describe a gradient or a surface effect and never will. The header now paints the bound spool's own swatch whenever that spool declares extra colour stops or an effect, through buildFilamentBackground -- the builder the Inventory swatches already use, so the two surfaces cannot drift apart. A plain single-colour spool keeps the flat backgroundColor it has always had, and a slot with nothing bound is untouched, so the common case goes nowhere near the gradient path. The gate is "any stop at all", not "more than one". buildColorLayer ignores rgba the moment stops exist, so a one-stop spool renders that stop rather than the slot hex; skipping it would leave this card showing a different colour from the Inventory row for the same spool, which is the class of disagreement the shared builder exists to prevent. isLightColor now tests the colour actually on screen. Once the spool's swatch is painted the base is no longer the slot hex -- a single stop replaces it outright, and an effect-only spool paints the spool's own rgba -- so testing the slot hex would pick the text colour for a background that is not there. Above one band no single hex can decide legibility, and the name sits dead centre where a multi-stop background is likeliest to change under it. So a genuinely multi-band header puts the name on the same scrim the vendor badge already uses. One stop, or an effect over one colour, still vendor badge already uses. One stop, or an effect over one colour, still leaves a real base colour to test and keeps the contrast rule it had. Spoolman mode gains the gradient in the process. Spoolman has held the stops in filament.multi_color_hexes all along and the label renderer has been reading them for releases, but _map_spoolman_spool never returned them -- so the identical roll registered in Spoolman rendered flat while the internally-managed one did not. Both now share one parser rather than reading the same field two ways. What stays asymmetric is Spoolman's own limitation, and it is pinned by a test rather than left to be rediscovered: Spoolman has no field for a surface effect at all. Its only neighbouring field, multi_color_direction, says how the stops are laid out, not that the roll is silk or glitter. effect_type is therefore None for a Spoolman spool instead of guessed at, and silk/sparkle/wood remain internal-only. The other two halves of the report -- the header naming the colour "White" instead of "Colorful Mist", and the print dialog offering "A3: PLA (White)" -- were already fixed on dev by #2875 and by the slot-naming change that landed the day after this was filed. Neither is in 1.2.5.3, which is what the reporter is running. |
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4f10d15584 |
Record the colour a slice is actually printed in (issue #2977)
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. |
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5211fd4575 |
Store a failure reason in one vocabulary, not three (issue #2974)
failure_reason was written three different ways and nothing reconciled
them. derive_failure_reason wrote English display labels ("Layer shift"),
older builds of the archive editor wrote the translated label in whatever
locale that user was running, and the two stale-archive paths wrote
English prose sentences. All three reach one column -- the archive PATCH
has mirrored the field onto the latest print-log entry since #1444 -- and
the Failure Analysis widget groups on the raw value, so one real cause
occupied several buckets. On a live install before this landed:
print_log_entries held 91 rows reading "User cancelled" beside 1 reading
"userCancelled".
In an English UI those two render as the same words twice with different
counts, which is why nobody spotted it. In any other locale one of them
stays English, because a stored label has no key for t() to resolve. The
editor was worse than cosmetic about it: its reverse lookup compared the
stored value against t() in the current locale, so for a non-English user
nothing matched and the dropdown opened empty over an archive that
plainly showed a reason.
The keys were already canonical and already enforced.
_FAILURE_REASON_KEYS in api/routes/print_log.py rejects anything else
with a 400 and explains why in its own comment -- the widget renders
values back through t(), so an unrecognised one surfaces as a raw string.
derive_failure_reason had simply never been held to that rule. It now
produces keys, and the cancel branch returns userCancelled.
The two "Stale - ..." sentences become one new noStatusUpdate key. Both
describe the same observation, that no end-of-print status ever arrived;
which of the two situations occurred is already carried by status --
cancelled at the stale-cleanup site, the reconciled outcome at the
reconnect site -- so collapsing them loses nothing and gives Statistics
one bucket instead of two sentences that could never be translated. It
had to enter the vocabulary rather than merely be tolerated, because the
editor discards any value it does not recognise.
Existing rows are converted by a startup migration folding 168 historical
labels onto the 12 keys across both columns. It is exact rather than a
guess: every label across all 14 locales resolves to exactly one key,
with no collisions. The map is a frozen snapshot rather than something
read from the locale files at run time -- it maps what was written
historically, so regenerating it from the current translations would
silently stop recognising the very rows it exists to convert. A value
outside the map is left alone; guessing would be worse than leaving one
honest string in its own bucket. There is no one-shot settings flag, on
purpose: the statement only matches values in the map and a key is never
a label, so it is self-terminating, and a flag would permanently skip
anyone who restores an older database.
The last part is a data-loss bug that was not in the report. The editor's
fallback to '' was not merely a wrong-looking dropdown -- the empty
selection was then saved over the stored text, so opening the editor on
an archive whose reason was free text and pressing Save destroyed the
classification. An unrecognised value now keeps its own option and
survives a save.
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e5a18bf58b |
Key a K profile on its nozzle's flow type
A printer files each calibration under a nozzle id of the form HH00-0.4 (high flow) or HS00-0.4 (standard) and can hold both for one diameter -- a maintainer's H2D carries 102 high-flow entries against 6 standard -- because the same filament reads a different K through each. Nothing read that, so a standard-flow profile could be selected for a high-flow nozzle and vice versa. The flow is now stored with the profile, shown against each option in the picker, and checked before a stored profile is applied. Two spellings have to agree for that: a calibration entry says HH00-0.4 while the fitted nozzle reports HH01, so the comparison is two characters rather than four -- the trailing digits are a hardware variant the calibration table normalises to 00. Unknown flow on either side matches anything, which is what it has to do. Every profile stored before this has none. And an X1C declares none on any profile at all -- probed live, all eight come back with an empty nozzle id, against a four-digit cali_idx and a populated setting_id -- even though the machine really does take either nozzle. supports_nozzle_flow_type is therefore the wrong thing to gate on: it returns True for an X1C, and treating that silence as Standard would have dropped every X1C profile the moment a high-flow nozzle was fitted. What the printer's own table declares per profile is the test. NozzleInfo.nozzle_type carries two vocabularies by printer generation -- the nozzle material on legacy printers, the flow code on H2 -- and the comment claiming only the former is corrected. Anything that is not HH or HS reads as unknown, which is what makes the material spelling harmless. Storing both flows for one hotend and diameter is deliberately not done: spoolman_k_profile is UNIQUE on (spool, printer, extruder, diameter) with no flow column, and allowing a second row in internal mode alone would break inventory-mode parity. The picker marks a profile whose flow does not match what is fitted instead of letting it look configured while doing nothing. |
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a7b563334e |
Configure a spool's filament preset and K profile per nozzle
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. |
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9500c046c0 |
Ask which nozzle to feed when a Filament Track Switch is fitted
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. |
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196fcaf15b |
Keep the last run a batch order can re-queue a plate from
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. |
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a68933cb2f | Allow Avery label sheets to start at an unused position (#2879) (#2918) | ||
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14f46510ba |
File the printer's calibration table under the nozzle it belongs to (issue #2854)
The K value on an AMS slot card went blank after a while and came back after a backend restart. It is not the MQTT merge: that preserves a tray's k correctly. H2-series trays have no k to preserve. Verified against the H2 wire capture in logs/vp_wire -- every tray reports cali_idx and nothing else -- so the number on the card is resolved from that index against the printer's calibration table in state.kprofiles, and that table was a single global list. An extrusion_cali_get response is the complete table for one nozzle diameter, and the printer answers whoever asks; BambuStudio's queries arrive on the same report topic we subscribe to. Every response was assigned straight to state.kprofiles, so any one answer stood for the whole printer. The nightly GitHub backup asks for 0.2, 0.4, 0.6 and 0.8 in turn and finishes on 0.8, which holds nothing on a 0.4+0.6 machine: logs/bambuddy.log records exactly that at 17:15 on 2026-08-25, and the table was empty from then until something refilled it. Responses are now bucketed by the diameter they describe, so an empty answer for a size the printer does not have clears only that size. The three assign paths that look an index up by nozzle_diameter get the same fix for free -- they were quietly finding nothing whenever the last response was for another nozzle, which is what spoolman_inventory has been logging as a stale kp. Bucketing makes state.kprofiles a union, and cali_idx is numbered per nozzle, so the index alone no longer identifies a profile. The REST serializer has keyed on (extruder, cali_idx) since c5e005586; the WebSocket one still keyed on the index alone, which meant the first render of a card could be right and every update after it wrong. Both now share one resolver. It goes through the extruder the slot feeds, and where that does not single out one profile -- a single-nozzle printer that has been swapped, so both its tables sit under extruder 0 -- it falls back to which diameters are actually fitted. Where neither settles it the card shows nothing, because a blank space is a smaller error than confidently printing the other nozzle's number. Deliberately no loosening to a bare cali_idx lookup on a miss: that is the cross-nozzle bleed the extruder keying was added to stop. Nothing read the table on connect, which is the other half of the report. It arrived by luck -- a visit to Profiles or Configure Slot, a backup, or the printer answering someone else -- so a Bambuddy nobody had opened showed a card with no K values at all, and "restart and they come back" was the printer happening to broadcast rather than anything we did. It is now read once per connection, on the same latch the stale-print reconcile uses. Only the fitted diameters are asked for, one request on a single-nozzle printer and two on a dual; probing the four sizes blind is what the backup does and what blanked the table. The edge is gated on a nozzle diameter being known as well as on the state being known, because the first push_status is what makes the state known and does not always carry the nozzle fields -- latching there would spend the connection's one attempt on a printer that could not yet say what was fitted. Adopting an unsolicited table now logs at debug. It was the quietest way for the card to change underneath us and there was no way to see it in a support bundle. Three test files gained nozzles=[] on their PrinterState stubs. The field has always been on the dataclass; the connect edge is simply the first thing on that path to read it. |
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08a58b1ef4 |
Keep both modes' slot assignments across an inventory mode switch (issue #2812)
Turning Spoolman mode on ran an unfiltered delete(SpoolAssignment) across every printer. Turning it straight back off cleared the other table instead, so the two directions were symmetric in code and one-way in effect, and the setting auto-saves on a 500 ms debounce with no save button and no confirmation. Opening the settings page to see what the option did was enough to destroy the configuration: the reporter's log shows four toggles in 85 seconds, which is someone looking and reverting, and the assignments never came back. The deletion was not careless. Checks that read both assignment tables would otherwise let a row in the mode you are not using answer for the mode you are, which is how #1473 was fixed, and emptying the inactive table made that impossible by construction. The cost was that the guarantee was bought with the user's data. That decision belongs to the readers -- the mode is a property of the install, not of the rows -- so spoolman_owns_assignments now answers it and nothing is deleted on a toggle. Each mode keeps its own assignments and switching is reversible. Existing installs need no migration: their inactive table is already empty, because it was being emptied. Six sites had to be told which mode they meant, and only two of them are the reads you would guess at, the missing-assignment notification and the queue cost estimate. The per-slot K-profile lookup consults the built-in table first and, on a hit with no matching profile, deliberately stops rather than falling through to Spoolman, so a leftover row would have shadowed the Spoolman binding for that slot -- the symptom #1556 reported from the other direction. configure_ams_slot *writes* a K-profile against whichever table answers first, so the same leftover would have filed a calibration against a spool the printer is not drawing on and never written the local one, leaving a calibration that appeared to succeed and then did not apply. The auto-unlink pass in on_ams_change is the one that would have made this change worthless. It drops any assignment whose tray no longer matches the fingerprint it recorded, and it ends in db.delete. Ungated, it would have removed the preserved rows one slot at a time as the AMS contents changed under the other mode -- the same loss, arriving slowly enough not to be connected to the toggle that caused it. The sixth is the built-in remaining-weight fallback inside the Spoolman AMS sync, and it is deliberately left inert rather than woken up. It could never fire while the table it reads was being emptied, it is keyed by slot rather than by spool, and create_spool writes remaining_weight unconditionally where the update path does not -- so preserving the rows would have seeded a stale figure into a brand new Spoolman spool the first time a tray reported an unusable remain%. The query stays, gated off, so the intent survives for whoever revisits the cross-mode fallback. Separately, a print that could not debit a spool said nothing about it, and that is what turned a mis-click into lost filament. The reporter's print was already running when they toggled. At completion it resolved its 3MF, read its per-filament grams, resolved its tray, and then skipped the debit because the assignment row no longer existed -- logged at INFO, invisible under the default log level, while the completion notification fired as usual. 65.49 g was never deducted and they only noticed because a spool's remaining weight looked wrong. _resolve_spool_id_for_tray has no tag or fingerprint fallback, so there was nothing else to catch it. The skip is now a warning naming the grams, and a completed print that failed to charge a tray it drew from raises the missing-spool-assignment notification. The print-start check cannot cover this and was right to stay quiet: the assignments existed when it ran. The two are different statements -- the first says the weight may not be tracked, the second says it was not -- so a print warned at start will notify twice, which is the right trade. Collected across the print rather than fired per slot, and given the caller's session, because this runs inside on_print_complete's transaction and opening a second one to read the printer's name would deadlock against it on SQLite. This is independent of the toggle and catches any other cause of an assignment disappearing mid-print. |
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39835437a3 |
Price a print from the spool that fed it, not the default rate (issue #2591)
Spoolman holds per-spool pricing, and #261 gave that as the reason for integrating with it. Nothing ever read it. A print's cost is set once, at archive time, from the built-in Filament catalogue matched on the primary type and falling back to a global default rate -- and in Spoolman mode nothing revisited that figure afterwards. The per-spool recompute that would have fixed it, in usage_tracker.on_print_complete, runs only over rows the built-in inventory writes, and Spoolman mode hands the usage tracker spoolman_owns_usage at print start so it writes none. The reporter's catalogue was empty, which is the ordinary state of one in Spoolman mode, so every print came out at the default no matter what the linked spool cost. Multi-material was wrong twice over there: the primary type's rate applied to the whole print's weight, so a slot of expensive PA was billed at the price of the PLA beside it. Each slot is now priced from the spool it was actually charged to, at the moment of the charge, and the per-slot costs are summed -- which is what fixes the multi-material case, rather than a separate change. All three charge paths feed it: per-slot, tray-split, and the remain%-delta fallback. The rate is the spool's own price when set, else the filament's, over filament.weight. That is net grams excluding the core, and the same field the remain-delta path already divides by to turn a percentage into weight, so a spool that can be charged by percentage can always be priced. The price comes out of the get_spool call the colour and material rewrites already pay for, so the tagged path costs no extra round trip. Grams no spool could price are covered at the global default in one subtraction against the archive's own total. A spool with no price, a tray with no Spoolman row, and filament the sliced file never attributed are the same case from here, and without the top-up a print with one priced slot out of four would report a quarter of its cost -- #1344 in the other inventory mode. Only the first run writes the archive, matching the built-in writer (#1378); reprint actuals live in PrintLogEntry. If no slot could be priced at all, whatever archive.py recorded is left alone, so an install with prices in neither place stays where it was. Applied even when the slot-to-tray mapping was a positional guess, unlike the colour and material rewrites beside it. Those overwrite what the slicer recorded, which is why a guess must not touch them. The cost has no such original -- archive.py's figure is itself derived from a default rate -- and the grams have already been deducted from these spools, so the archive should say what that deduction was worth. Both cost recalculations would have undone it on the next run. /rescan and /recalculate-costs rebuild an archive's cost from SpoolUsageHistory and fall back to the catalogue or the default when there are no rows, which in Spoolman mode is always, so the fallback was not a recalculation but a downgrade. The spool-to-slot resolution a price is derived from exists only while a print is completing and cannot be rebuilt from the archive row, so both now leave a cost alone rather than replacing it with a worse one, and the bulk endpoint reports how many it kept. An archive with no cost yet is still priced, and with Spoolman off both behave exactly as before. The rate parser refuses more than it looks like it needs to, because everything it refuses was reachable. A non-dict filament raised through a call that sits after a successful use_spool, which would have abandoned the remaining slots of a multi-material print with the charges already made. NaN compares False against every bound, including the applier's own total <= 0, so a NaN price would have been written to the archive with nothing downstream able to clear it; two finite operands can produce it by overflow, so the quotient is checked as well as the inputs. A bool is an int in Python, and float(True) is 1.0 -- a weight of 1 g prices a spool per-gram at its whole cost. And a spool-level price of 0 now falls through to the catalogue rather than reading as free: Spoolman leaves the override null when unset, but importers write 0 often enough that treating it literally would price a whole print at the default with a good catalogue price one level down. |
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c3677865b6 | Give the AMS temperature alarm its own threshold (issue #2905) (#2943) | ||
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73912d4f05 | Let a clear spool stay clear on the way to Spoolman (issue #2912) (#2924) | ||
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54af3146a3 | [Feature]: Bind Home Assistant sensors to storage locations (dryboxes/bins) (#2827) | ||
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5dd7bd213f |
Read a print's destination from the report topic, not just the request one (issue #1820)
current_project_url was assigned in exactly one place, _handle_request_message, and _on_message calls that only for the request topic. A print started from the printer's own screen publishes nothing there, so the field stayed None for the one case the storage verdict exists for: the file is already in the printer's model library under /userdata/model/history/, which port 990 does not serve. The verdict then fell through to the sdcard flag, and @ojimpo's H2S reports that flag true -- its "card" is the internal eMMC -- so every such print ran the full sweep before giving up. He measured one: 16 filename-and-directory attempts over 22 FTPS connections, 18 of them refused, 6.4 seconds, then a fallback archive holding a name and nothing else. The printer does announce where the file lives, as an unsolicited project_file *response* on the report topic about two seconds before gcode_state reaches PREPARE. _process_message now reads the url off it, gated on result SUCCESS and a non-empty value so a refused dispatch cannot name a file that was never written. Reading it there rather than only at the request topic also covers an install neither of us had in view: some brokers refuse the request-topic subscription, and on those no print of any kind had ever populated the field. The new branch captures state and nothing else. The "External project_file payload" diagnostic stays with the request-topic handler: our own dispatch is echoed on both topics, the request-topic echo lands first and clears _own_project_file_key, so reusing the diagnostic here would have logged every Bambuddy-started print as somebody else's. A test pins that. What the print names is now what gets tried -- the five directories a copy could be in, rather than the ~110 connections that cannot succeed. The probe is still worth running: an H2S keeps recently used jobs under /cache and archives them in full while they last, which is why the reporter's two prints on the same day behaved differently. Slicer-sent prints are unchanged. The banner no longer describes a step that never happened. With no reason recorded, a blank archive fell back to the original wording -- "Store sent files on external storage" is off in your slicer -- which on that printer is on, and which the internal-storage wording from #2780 already explains would not help on an H2. The archive that most needed that explanation was the only one that could not be given it. So file:///userdata/ now earns its own reason, internal_history, separate from the brtc://emmc dispatch case. A dispatch chose internal storage and can be aimed elsewhere; a print of a file that was already there had no dispatch at all, and telling that operator to pick External in Send names a dialog they never opened. The banner and the connection diagnostic both read the verdict's reason rather than a fixed one, so the two surfaces cannot give the same printer different advice. Thirteen locales, and a wiki section the banner links to. ----- Read the K-profile selection when the mutation runs, not when it is captured Configure Slot sends cali_idx from selectedKProfile, and the mutation read it through its own closure. React Query hands a mutation its options from an effect, so a click landing between a commit and that effect flushing runs the previous render's mutationFn -- one that captured the selection as it was before the K-profile query resolved. The payload then carries cali_idx -1 and the printer binds the default 0.020 instead of the calibrated K, while the dialog shows the right profile selected throughout. It surfaced as an intermittent failure of the per-nozzle K-profile test, about one full-suite run in six. Reproducing it with staggered query resolution showed the divergence directly: the select element held the correct profile immediately before and after the click, and the payload still carried -1. That test's slot is the most exposed case in the file -- a right-hotend slot carrying the left hotend's index, where the "keep showing the active profile" safety net cannot repair an empty recompute. The selection now goes through a ref written during render, so the mutation resolves it at execute time. An effect would have inherited the same flush ordering this exists to escape. The K value and the profile's ids travel in the same payload and had the same exposure, so they move with it. Measured over a staggered-resolution grid: 2 failures in 15 runs before, 0 in 12 after. api.getSlicerPrinterModels was also missing from the test file's mock, so that query ran with no query function and rejected in all 37 tests -- mocked now, though on its own it changed nothing, which is how the ref was confirmed as the fix rather than assumed. |
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4e79f9c2f7 |
Fill in a fallback archive when the 3MF finally arrives (issue #2957)
A failed TLS handshake pauses a printer's file service for five minutes, and the archive flow checks that pause at the top of its path loop and gives up before opening a connection. A print that starts inside one gets an empty fallback archive 13 milliseconds later, having never touched the network. Four minutes on, the pause clears and the cover endpoint downloads the same file, parses it, takes a thumbnail out of it, and publishes it to the shared 3MF cache under the exact key the archive flow looks up. Nothing ever looks: all three readers of that cache run before or during the print-start handler that already gave up, and print completion drops the cache as its first act, deleting the file. No path existed by which a fallback archive could become a real one. Offer a later 3MF to the running print's archive, filling the existing row rather than adding a second -- the row id carries the energy reading, the timelapse session and the start notification. That covers the reported case at no network cost, since opening the printer card already downloads the file. Schedule a bounded retry when the pause is what caused the fallback, spending the cache first and the printer only if that misses. Not scheduled for the other cause: a print kept on internal eMMC has no FTPS copy to come back for, and retrying it is the sweep removed in #2780. The two reasons are now recorded separately instead of both landing as "no 3MF". Recovery refuses anything that is not a readable 3MF -- a truncated download would replace an honest empty archive with wrong metadata -- and leaves an archive alone once it has a real file. Three things the recovery path has to get right, each with a test: Reduce every retry candidate to a bare name. MQTT hands `filename` over as "/data/Metadata/plate_1.gcode" on some firmware, and joining that onto the temp directory yields the absolute path itself, so the retry is fed the flow's own sanitised candidate list and strips the path again on its own account. Serialise recovery per printer. The cover endpoint's single-flight coalesces by view, so two views race each other, and the retry task and print completion can land on top of either -- each reads file_path == "" and runs a full copy, leaving the row on one timestamped directory and the rest orphaned. Keep looking for photos in the pre-recovery directory. `archive_dir` derives from `file_path`, so filling the row moves the archive's directory, and a photo uploaded to the empty card while the print ran stays where it was put. |
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06e5114a03 |
Do not report a printer as Safe when nothing is checking it (issue #2952)
The printer card's AI badge collapsed every class that was not Warning or Failure into green Safe, and the service reported `safe` whenever it had no verdict. The state entry is created when a monitored print is first seen -- before the first snapshot, let alone the first inference -- so a rejected ML API token, an unreachable ML API, a failed capture and an unset External URL all rendered as a healthy watched print: green Safe at score 0.000. For a safety feature that is the worst failure mode available: it asserts the print is being watched exactly when it is not. The reporter read that badge and concluded the loop had never started. It had been calling the ML API every ten seconds and being turned away with a 401 -- invisible because Obico's auth layer rejects a bad token before its request log sees it, and because successful checks log nothing there either. Add two honest states. Not checking (amber) when the last poll produced no result, carrying the reason; Starting while a monitored print waits for its first result. Score and frame count are withheld while not checking, since 0.000 beside "Not checking" reads as a measurement rather than its absence. The reason is per printer, so a card names its own problem rather than whichever printer failed most recently, and stays behind settings:read because it can quote configured URLs -- the badge state does not, because whether a print is watched is not configuration. An unrecognised class now falls back to Starting, not Safe. Test Connection saves the form before probing, so a green result describes the configuration the loop actually runs with rather than what is typed in the boxes. |
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b1f5ec9642 |
Let one checkbox say where a slice's settings come from (issue #2942)
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. |
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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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7b181b84f0 |
Let a filled or foamed filament keep its own name (issue #2902)
The reduction that gave an AMS slot a material type read PLA-AERO, PLA-GF, ASA-GF and PPS-GF as their base material, so a slot loaded with foaming or glass-filled filament went out saying plain PLA or ASA. That is worse than the bug it replaced. "PLA-AERO" matched nothing before, which was useless but honest; "PLA" matches every PLA plate in the queue, so the dispatcher would have sent one to filament that will not print it -- and the contract the first fix claimed, that it could only ever repair a slot, no longer held. @doncaruana caught PLA Aero on the issue. All four are values Bambuddy itself offers: filament_fields.json is the material list the Profiles editor puts in a dropdown, and the reduction table was assembled from the cloud filament names and the frontend preset parser without ever being checked against it. It is checked now, so the next type added to one and not the other fails a test rather than a print. ASA-AERO joins them from the cloud catalogue (GFB02). The table hyphenates because the slicers do, while a spool says "PLA Aero" and every Bambu preset name says "Bambu PLA Aero". Adjacent words are joined and taken when the join is a type exactly -- exactly, because letting the prefix and suffix rules reach across a space would make "Support for PLA" a type by its tail. Also from @doncaruana, and the better half of his point: a preset is chosen from a list the slicer defines, so it already knows its own type and nothing has to be read out of a product name. The resolver now hands that answer back and both assign routes prefer it. It cannot be the only source -- material is required on a spool and slicer_filament is not, and the spool this issue was reported for had no preset at all -- so the reduction stays as the fallback for spools without one. Two things had to move with it. The auto-unlink guard compared the slot's reported type against the reduced material, so a spool whose preset outranked its material column would have been unlinked from the slot it had just been assigned to; it now accepts any type the assign path could have written. And two lookups keyed by material took the catch-all for a type they had no row for, which sent an ASA-GF spool out at 200/240 -- too cold to extrude -- and preheated its chamber to nothing. Both fall back to the base material last, so PLA-CF, PETG-CF and PA-CF keep the rows they are listed with, and ASA-CF and ABS-GF pick up ranges they had been missing all along. What counts as a material name is decided by the base for the same reason: saying yes throws the value away and rescues the slot from the generic-material fallback, so the answer has to be no when that fallback has nothing to offer. ABS-GF reduces to a generic ABS the printer can resolve; PPS-CF reduces to nothing and is left as it stands. Adding a type to the table therefore cannot quietly change that answer, which is how these five slipped through in the first place. ------ Hand the bundled chamber-preheat table back the way it is read Every lookup of the per-filament chamber map happens after the keys are upper-cased, and the parser documents exactly that: keys uppercased, DEFAULT always present so the resolution loop can index it unconditionally. The three fallback paths returned the bundled constant as declared, with the lowercase "default" row the Settings editor writes and displays, so an install that had never opened the setting got a dict the loop could not read its fallback out of and used a hardcoded 0 for any filament without a row of its own. It reported the right number only because that bundled default is 0. Raising it would have changed nothing for everyone who had not customised the map, with the map in Settings still showing the value that was not being used. The test that should have caught this asserted the fallback under either spelling, and its docstring contradicted itself between title and comment. It pins the contract now, over all four ways the parser can fall back. |
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55cc64c87d | Add printer video downloads and range selection (#2853) | ||
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937440f956 | Report the selected plate on the archives API (#2796) (#2871) | ||
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4e40a5022c |
Register a Spoolman extra field with its own write (issue #2903)
Spoolman rejects a spool whose extra dict carries a key it has not been told about, answering 400 "Unknown extra field tag.". Bambuddy keeps the tray UUID in extra.tag, so that key has to exist before the first spool is created. Registration ran from three hand-maintained lists that fire when the integration is set up -- the connect route, startup, and two inline blocks in the inventory routes. Enabling Spoolman from the Settings page reaches none of them, so the first AMS sync on a fresh Spoolman failed on every slot while vendor and filament creation succeeded. Neither fix suggested on the issue is quite the right shape. Adding the block to PUT /settings/spoolman fixes this path and makes a third copy of a list that has already drifted -- it would still omit bambu_color_name. Ensuring at the sync entry point leaves the other four tag writers alone: linking and unlinking a tag, and both inventory edit paths. So the registration moved to the write. create_spool, update_spool and update_spool_full each register the keys of the extra dict they are about to send, once per client, before sending. Every tag writer funnels through one of the three, merge_spool_extra included. This closes the class rather than the instance: a write that carries a key is a write that registers it, and bambu_color_name shows why that matters -- it never made it into the connect or startup lists at all, and works today only because two call sites remembered it by hand. Best-effort, deliberately. ensure_extra_field already logs and returns False rather than raising, so a registration that fails leaves the write to be attempted and to report exactly what it reported before. Failures are not memoised either, so a Spoolman that was merely restarting gets another try on the next write. The older blocks stay. They are redundant now, but the inventory routes' inline calls are pinned by tests that assert them against a mocked client, where the funnel cannot run. The status endpoint is the other half. The Connect button would have registered the fields, and the reason nobody reaches it is that GET /spoolman/status reported "connected" whenever an earlier request had left a client object behind. Roughly twenty call sites build one lazily, and saving the Settings page builds one as a side effect of syncing locations, so the flag turned on which page had been opened rather than on anything about Spoolman. The UI reads it twice -- Connect only while disconnected, the sync section only while connected -- so those two controls landed in states the user cannot explain. It now asks the Spoolman that is configured, including the stale-URL check every other route already does, and does not probe at all when the integration is switched off, which used to let a leftover client report a disabled Spoolman as connected. That leaves nothing for Disconnect to do, so it is gone. Spoolman is a stateless HTTP API with no session to close; the button dropped the client object, the next request rebuilt it lazily, and the status flipped back on its own within the 30s poll -- an action that looked like it worked and then quietly undid itself. The enable toggle owns turning the integration off. Connect stays as what it always was in practice, a way to re-check a Spoolman that is not answering, and is shown only then. Its translation keys are left in place; only the control is removed. Resolving the client there means the status poll can now fail in ways a read-only check could not, so it no longer reports failure by failing. Replacing a client closes the previous one and httpx's aclose() is not guaranteed not to raise; a poll that runs every 30 seconds answering 500 is worse than one answering what is true either way, which is that Spoolman could not be reached. The SSRF rejection keeps its own message rather than folding into the general one -- a URL the guard refuses is the admin's to correct, and that is only actionable if the log says so. Tests drive the real client against a fake Spoolman that enforces the unknown-extra-field rule rather than mocking it away, so each one fails against the old code for the reason the reporter's install did. The concurrency test needed the fake to be async: MockTransport answers without suspending, so the first version ran each request to completion in turn and passed just as happily with the lock removed. |
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88e8ca81c3 |
Give an AMS slot a material type, not a product name (issue #2902)
Assigning a spool wrote its material straight into the slot's tray_type. A slot that says "PLA+" satisfies nothing that asks for PLA: not OrcaSlicer, not Bambu Studio, and not Bambuddy's own dispatch matcher, which compares the type the printer reports to the one the 3MF declares as plain equality. The reporter's slot was unusable for every PLA plate he had. Not only a label, either. The same string went into the generic-filament lookup, which missed, so the slot went out with no tray_info_idx at all -- the half-configured state #2604 documents the printer as reverting from -- and took the 200/240 catch-all nozzle range instead of PLA's 190/230. PLA+ is not a special case. Bambuddy's own colour catalogue supplies the material dropdown, and around forty of its values are vendor product lines rather than filament types: HTPLA, PolyTerra PLA, PLA Matte, ASA Extrafill, Flexfill TPU 98A. So the four routes that configure a slot reduce the material to a name the printer knows before sending it, and the product name moves to tray_sub_brands -- which is where Bambu Lab puts it too: their catalogue carries a preset named "eSUN PLA+" whose type is PLA. A name the reduction cannot place is sent exactly as before rather than guessed at, so this can only repair a slot, never break a working one. The spool's own wording still leads the id and temperature lookups with the reduced type appended behind it, so "PETG HF" keeps its own generic preset (GFG96) rather than being traded down to plain PETG's. Two guards decide whether a candidate filament id is really a material name -- the resolver's, which discards one, and slot reuse, which will not carry one forward. Both saw only bare types, so "PLA+" passed as a filament id. They share one answer now, which also refuses to read an id-shaped value: "GFPLA" ends in a material name, and reducing it would throw away the calibrated preset in the slot. One thing had to move with it. on_ams_change auto-unlinks an assignment whose slot stopped looking the way it did when the spool was assigned, and the check that spares a slot Bambuddy itself reconfigured compared the printer's reported type against the spool's raw material. With the slot now carrying the reduced type, every spool this issue is about would have been unlinked from the slot it had just been assigned to. Both sides are reduced there -- the printer's too, so slots configured by an older version, still reporting "PLA+", keep matching. Something starts working as a result: a slot holding a calibrated preset is reused when a same-material spool is assigned to it, which could not happen for these spools while "PLA" and "PLA+" compared unequal. Reverting any one of the behaviours above fails a distinct test -- the reduction's four matching rules and its pass-through contract included, since that contract is what makes the rest of it safe. |
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7c8f1f9435 |
Keep a dispatch's retries out of the FTPS cool-off (issue #2898)
A failed TLS handshake arms a 300s per-IP cool-off, and connect() consulted it for every caller. A print dispatch retries after 2s, so once the cool-off was armed all four attempts were answered from the gate rather than the network, and every further job queued for that printer failed the same way for the rest of the window. The reporter's farm lost three jobs to one handshake error, with the retry budget contributing nothing to any of them. The gate was serving two callers that want opposite things from it. The background sweeps -- the post-print 3MF, cover and timelapse fetches -- walk ~110 candidate paths against one wedged printer with nobody waiting, and backing off for minutes is right for them. A dispatch is one delete plus at most four upload attempts with someone watching a progress bar. So the split is by caller: a client built with respect_handshake_cooloff=False goes to the printer regardless, and the dispatch's delete and upload -- and a firmware upload, same shape -- opt out. Everything else keeps #2780's behaviour untouched. In the reported trace it is the pre-upload delete that takes the SSL error and arms the cool-off, 8ms before the upload's first attempt, so exempting the upload alone would have left one dispatch's worth of the problem in place. Callers that do respect the cool-off no longer sleep out a retry loop against it: with_ftp_retry takes the printer's IP and stops at the attempt that armed the gate, instead of spending three more attempts and six seconds on connections that cannot happen. It also reports the attempts it really made -- "failed after 4 attempts" for one attempt is part of how this read as a network problem. Two diagnosis fixes go with it. The cool-off skip was the one connect() failure path that reported without naming its cause, and at DEBUG, so four identical reason-free warnings were all the operator saw. It now says at WARNING that nothing was sent and how long the printer has left, once per cool-off rather than once per attempt -- not every caller is gated, and a download-zip of 200 files would otherwise repeat the sentence 200 times, which is the flood #2780 set out to stop. And a dispatch that fails this way no longer tells anyone to check whether the SD card is inserted and formatted -- nothing reached the printer's filesystem, so the card is the one part of the machine that was working. The message names the file service and rules the card out. It is used only when a handshake failed during the dispatch itself, read from the cool-off deadline MOVING rather than merely being armed: the dispatch ignores the gate, so it can be running underneath one an unrelated background fetch left behind, and blaming TLS for an upload that really hit a full disk would repeat the mistake in the other direction. Tests count sockets rather than return values, since "returned False" looks identical whether or not anything was attempted -- which is what made the original report a log dive. Reverting any one of the five behaviours above fails a distinct test. |
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3901043238 |
Name an AMS slot's colour by its material, not its hex alone (issue #2875)
A hex is not one colour in Bambu's range. #FFFFFF is Jade White in PLA Basic, Ivory White in PLA Matte and plain White in six other materials; popover resolved its title from the hex alone, against a map that keeps one name per hex, so an ivory Matte spool read "Jade White" while the profile line beside it correctly read Matte Ivory. /inventory/colors/map now carries the names collapsing loses, keyed "<material>|<hex>". An entry is emitted only when it recovers a name the same manufacturer's own range lost -- 11 of them against the 608 colours in the shipped catalog. Both halves matter: a name equal to the flat answer is weight, and a name from another brand is not a recovery, it would put Prusament's "Pristine White" on every generic white PLA slot. A slot with a spool assigned from Inventory is titled with that spool's own colour name: it is the roll the user said is in there. Bambu internal codes are still rejected as non-names (#857). |
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28781ea558 |
Keep the printer's name on statistics after it is deleted (issue #2873)
Every per-printer breakdown resolved the name against the printers that exist now, so deleting a printer and choosing to keep its prints turned "Ultron" into "Printer 1" in Prints by Printer, the success-rate and time-accuracy lists, and Failures by Printer. Archives lose their printer on that delete as well, so nothing was left to read a name from. The runs themselves recorded the name they printed on. /archives/stats now reports the last name each id was known by - taken from the newest run that has one, so a later name-less row cannot blank it - and failure analysis falls back to the same thing for ids with no printer left. The client keeps preferring a live printer's own record, so a rename still shows up straight away rather than after the next print. |
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cfecfa360e |
Restore the skip-objects list after a restart mid-print
The object list lives in PrinterState and is filled by the print-start path, which bambu_mqtt suppresses on the first RUNNING push after startup so a running print is not archived twice (#1304). Everything else that moment restores came back - the archive into _active_prints, the filament attribution session, the timelapse baseline - and the object list did not. So the card saw zero objects and greyed out its Skip button for the rest of the print. Measured on the maintainer's H2C: 8 objects loaded at 09:02, a restart at 09:17, Skip dead for the remaining hour. Nothing could bring it back either. GET /print/objects rebuilds the list whenever it is empty, but its only caller is the modal that the greyed-out button opens. on_print_running_observed now reloads the objects from the archive of the print that is still running, anchored on subtask_id - the firmware mints one per print, so a leftover status="printing" row from a completion that was never seen cannot lend its objects to another job. Without an id nothing is loaded rather than guessed; the endpoint's own reload covers that on demand. That endpoint now reads the archived 3MF from disk before it asks the printer. The archive of a running print normally holds the very file the printer is executing, so the fan-out was fetching back 15 MB Bambuddy already had, over the printer's single FTP socket, while it was printing - and on a printer that kept the file on internal storage it cannot succeed at all. FTP stays as the fallback. skipped_objects is left alone: a reload is not a new print, and what the user has already skipped only lives there. The plate image had the same fault one layer down. Opening the modal asks for the cover, the top view and the object-ID mask, and the in-memory 3MF cache those share dies with the process - so after a restart all three went back to the printer at once: three fan-outs, thirteen seconds, and a 0-byte read from socket contention, which is the storm #972 was about. The cover flow takes the running print's archived file too, resolved in the caller's short-lived session and passed in so _produce_cover_image still does no DB work, and marked as a shared file so the cleanup cannot delete the archive. Finally the card: a running print always has at least one object, so a count of zero means "not loaded", not "nothing to skip". Exactly one object is the real nothing-to-skip case and still disables the button. --- Stop a test's printer client leaking into the next test POST /api/v1/printers really connects, so a test that creates a printer through the API leaves a live client in the printer_manager singleton. The singleton outlives the per-test in-memory database, so the next test on that xdist worker - whose own first printer is handed the same primary key - reads that leftover client as its own live status. test_scheduled_drying_routes was the visible victim: an "online" printer with no firmware version fails the drying preflight, so scheduling came back 400 instead of 200. It only bites when --dist load happens to put victim and leaker on one worker, which is why it passes on its own and flakes under -n. Registrations made during a test are now undone after it, ids the test did not add are left alone, and disconnect_printer is what also drops the model and printer-info caches and stops the paho thread the leaked client was keeping alive against an unreachable address for the rest of the run. |
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d227d42272 |
Let a print with no 3MF be given its filament weight (issue #1820)
When the sliced file stays somewhere Bambuddy cannot read, the archive is built from the printer's report alone and carries no weight. Nothing could supply one afterwards: rescan reads the figure out of the 3MF, and that archive has no file to read. The reporter's H2S print left 46.16 g on the spool with nothing recording it, and he corrected Spoolman by hand. Edit Archive now has a Filament used (g) field. It is written to the archive's most recent run as well, because the Projects roll-up and the Prometheus counter sum PrintLogEntry rather than the cards - correcting only the archive would fix the display and leave every aggregate reading the old figure, or none at all. But not over a figure the run measured for itself. A run's grams come from the tracked spool delta when there is one and only fall back to copying the archive's estimate when there is not, so mirroring unconditionally would overwrite a measurement with a typed estimate. The mirror now takes a run that has no figure, or one holding exactly what this archive held - which also makes the undo complete, since clearing the archive clears the copy it made and leaves a measured run alone. The field is text rather than a number input. A number input reports an empty string for anything the browser judges malformed, a decimal comma in a locale that does not expect one included, and that reads here as "the user cleared it" - it would have wiped a good figure while the field still showed what was typed. Filtering on the way in keeps what is displayed and what would be sent the same string, and clamps it to the range the API accepts: this modal has no error surface, so a refused save looks like nothing happened at all. Saving also invalidates the archive's runs query. The Print Log this modal renders at its top reads them separately and kept serving the pre-edit row, so a correction looked like it had not taken - true for the status and failure-reason mirrors since #1444 as well. Second half of the same report: the internal-storage probe (#2856) logged which file it found but not where. On a printer that keeps uploads for weeks - the reporter has months of them in /cache - a reprint of a name that was re-sliced but never re-sent can match an older copy, and without the directory that mismatch is invisible rather than merely rare. The download helper returns the path that served the file instead of a bare flag; every caller only ever tested it for truth. |
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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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607b34e94d |
Check the card before writing a print off as internal-storage-only (issue #2856)
A print's dispatch says where the printer put the sliced file: ftp://<name> for external storage, brtc://emmc/<name> for internal. Since that there is then no file to find at any path. That is where the printer chose to put it, which is not the same as where port 990 can read it. The reporter's H2D - firmware 01.03.00.00, card in the slot - reports brtc://emmc and keeps the same file under /cache: his log has every print from 08-12 downloading from there, 19 MB included, until the skip landed and two days of archives came out as a name and nothing else. #2780's P2S and H2C really did 550 on every path, so both are true and the URL alone cannot tell them apart. So ask the printer rather than the model. The dispatch names the exact file, which turns the question into one connection walking five directories - against the sweep's ~110, which is the cost that made skipping worth doing. A hit archives normally and is shared with the cover endpoint; a miss keeps #2780's fallback archive and its reason, so the archives banner still explains itself. Not probed when the printer reports an empty slot, or while its file service is in TLS cool-off: both have already answered the question. The connection diagnostic asked the same question off the URL and warned that the last print was out of reach. On this reporter's printer that warning would have sent him to a setting that was already right, so it now probes too - by directory listing, since the file it is asking about can be tens of megabytes and the answer is a yes or a no. Capped at 6s to stay inside the support bundle's per-printer budget, and "could not check" leaves the warning standing. The probe filename arrives over MQTT and becomes both a remote path and a local temp filename, so names carrying separators, traversal or control characters are declined rather than cleaned. |
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28b2b9f151 |
Pin the PostgreSQL session to UTC so defaulted timestamps are UTC (#2855)
On a UTC+3 install every AMS humidity reading and every archive was stamped three hours ahead of when it happened. Bambuddy stores naive timestamps that hold UTC and the frontend's parseUTCDate reads an offsetless timestamp as UTC, so the display added the offset to a value that was already local. The Python side has honoured that contract since #504. The reporter's timestamps were not written by Python. Around ninety-six columns take their value from server_default=func.now() and the migration DDL carries another forty-nine on DEFAULT CURRENT_TIMESTAMP -- the database fills those, and on PostgreSQL now() is a timestamptz, so storing it into a timestamp without time zone casts it through the session TimeZone. A Postgres container started with TZ=Europe/Istanbul bakes that zone into postgresql.conf at initdb, and every defaulted column then receives local wall-clock. recorded_at is the clearest case: nothing in the codebase ever assigns it, so its value is entirely whatever the database decided. Connections now carry timezone=UTC, which makes the cast a no-op whatever the server is set to. Measured through the real engine factory against a live PostgreSQL, a session on the reporter's configuration stored +10800s and the fixed one +0s. Pinning the session was preferred over a hundred and forty-five individual edits partly for its size but mostly because half of those sites are raw DDL that no model-level change can reach. SQLite needed nothing and gets nothing: its CURRENT_TIMESTAMP is UTC by definition and it has no session timezone to get wrong, which is why this survived two years of timezone fixes without showing itself. That also makes it the reference -- the change moves Postgres onto SQLite's behaviour rather than introducing a third convention -- so the SQLite behaviour is now pinned by a test instead of being assumed. asyncpg is the documented driver and takes the setting in its startup packet; any other Postgres driver gets the same setting the libpq way, so a psycopg URL does not fail at connect on a keyword asyncpg alone accepts. Rows already written are deliberately left alone. The inverse cast is computable and DST-correct, but it cannot be applied safely: created_at is assigned explicitly on some paths and defaulted on others, an install that began on SQLite holds correct and shifted rows side by side, and nothing distinguishes them after the fact. Timestamps are right from the upgrade forward and history keeps the times it was given. One related mismatch goes with it, because fixing the database side alone would have made it start lying on exactly the installs this repairs. The support package's oldest_pending_age_seconds subtracted a naive local clock from a naive UTC column, with a comment claiming it was UTC; on the reporter's install the two errors cancelled. It reported a job queued five minutes ago as three hours old east of Greenwich and a negative age west of it. The two AMS and printer-sensor retention cutoffs move to the same utcnow_naive helper -- correct in value already, but deprecated in 3.12 and emitting warnings on every sweep. |
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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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d37ce94f81 |
Feature: Scheduled drying (#2703)
* feat: add ScheduledDrying model for delayed drying runs (#2638) * Release the printer when a scheduled dry ends (#2638) _check_scheduled_dryings marks a printer as drying in _drying_in_progress, which is shared with auto-drying. Auto-drying prunes that map in _sync_drying_state(), but that call sits behind its enabled check, and this is the first writer that runs whether auto-drying is on or not. With it off -- the default -- nothing dropped the entry short of a print being dispatched to the same printer, so the next scheduled run parked on "already_drying" forever and queue_drying_block held that printer's prints too. A nightly off-peak dry with no printing in between is exactly the workflow this feature is for: night one worked, every night after it silently did not. The check now releases what it acquired, covering both a run that ends mid-pass and one cancelled through the route between passes. The retention prune ran on every pass. Issuing the DELETE is what opens a write transaction, this method is called every 3s while the queue dispatches, and rows only become prunable a week after they finish, so it is now gated to hourly on a monotonic stamp -- with the first pass after a restart still reaping whatever the dead process left behind. Both drying paths now pick the blocking dry_sf_reason through one rule. The immediate endpoint quoted whichever code the firmware listed first while the scheduler prioritised power over retract, so one blocked AMS read two ways depending on which button you pressed. drying_preflight.primary_reason_code holds the order and both call it, including the flame button's tooltip, which had no wording for filament at the outlet at all and sent those users to the generic "can't start drying right now". scheduled_drying joins the model list in init_db. The table was already created -- importing the package registers it -- but it was the only model relying on that indirection. Tests: the release (completion and route-cancel), the prune throttle, the shared reason rule, the tooltip priority, and four driving the real check_queue, which nothing covered before -- a pass with no rows still dispatching prints, a due row dispatching, and a failed row not stalling the queue behind it. Each one fails against the code it guards. --------- Co-authored-by: MartinNYHC <martin@bambuddy.cool> Co-authored-by: maziggy <mz@v8w.de> |