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Commits
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0e591b2199 |
Suppress two Bandit false positives in the new FTP and batch-order tests
The 1.2.5.3 code-scanning run flagged two new alerts, both in test files added this release, and both false positives. B402, the ftplib import in the #2780 connect-cleanup tests, is the HIGH finding that failed the check. The test imports ftplib to construct the exceptions BambuFTPClient.connect has to survive -- error_perm and error_temp, at lines 50, 51 and 75. Nothing in the file opens a connection, and bambu_ftp.py already carries the same marker on its own import. B108, the /tmp path in the batch-order archive fixture, is the MEDIUM one. The value is a string written into PrintArchive.file_path so the row has a path; nothing ever opens it. Every other archive fixture in the suite carries the same marker on the same idiom. Both markers follow the wording already in test_bambu_ftp.py and test_sjf_scheduling.py. Bandit's medium+ count over backend/ drops from 17 to 15, and neither file contributes to what is left. |
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f3b6a503bd |
fix(profiles): read the companion files that hold a preset's real gcode
A bundled preset can keep a setting in `<preset> template <key>.json`, a file the preset itself does not reference -- the desktop slicer finds it by name. Walking only `inherits` never reached it, so every one of the 56 instantiable BBL machine presets resolved `machine_start_gcode` to the 577-character generic block on fdm_machine_common instead of its own 6.5-21 KB one. That block holds the M620 AMS load and the M1002 gcode_claim_action calls, so a print sliced from it heats the bed, moves the toolhead and extrudes nothing (bambuddy#2838). Companions are now folded into each ancestor as the chain is walked, at that ancestor's precedence, so a caller's own value still wins and the 0.2/0.6/0.8 variants reach their 0.4 sibling's companion. They are found by listing rather than by a fixed set of keys. Covered against the shipped bundle, not fixtures: a new e2e spec resolves all 56 presets inside the image and fails on any that still lands on the generic block. |
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a4795c5ca3 |
Let API keys read and run slicer pipelines (#1425 follow-up)
Every pipeline endpoint answered 403 for API keys whatever scopes the key carried. PR A parked all three permissions on the admin denylist until the run dispatch existed to decide about; it landed in PR C and the parking was never revisited. PIPELINES_READ now rides can_read_status. PIPELINES_RUN requires can_queue AND can_manage_library together, so the allowlist gained tuple values: a run slices into the library and then queues prints, and mapping it to either flag alone would hand that flag the other one's authority. The 403 names every flag the key is short of. PIPELINES_WRITE stays admin-only -- a key can run the recipe, not rewrite it or clear the log. Opening the run route also needed the cloud-owner fallback the direct slice route makes: a pipeline can carry Bambu/Orca Cloud presets, and resolving those reads a token off a user record that an API-keyed request does not have. retry_failed forwards the new dependency explicitly, since a direct call receives the Depends marker rather than None. |
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aff737999f |
Build the slice output's path from a name a folder can have (#2832)
A print's display name comes from inside the 3MF, not from the filename, so a MakerWorld title arrives with its punctuation: "Planter Pot with Drip Tray, 12 cm / 5 inches". The slice-to-archive sink used it verbatim for the output folder and the output file, and a slash in a folder name is not a character -- it is another folder. mkdir(parents=True) created the level it implied and the file's own join added a third that nobody had made, so the slice failed with ENOENT on a path that half existed. Renaming the print first was the only way through. Reduce a display name to a single path component before it becomes one. Characters a name cannot hold are replaced rather than dropped, so the folder still reads like the model's title, and the set is the one the SD card already rejects -- which covers a Windows install too, where the colon in "Model: v2" fails the same way. The name shown in Bambuddy is untouched: a title is allowed its punctuation, and refusing the slash would reject the name this was reported about. The joins are asserted to stay under the archive directory. That was already claimed by a SEC-PATH-OK marker on both lines, citing a sanitiser that is defined in another module and was never called here; without the marker the path-join backstop flags them both. The claim is now true, and a future edit that reaches around the reduction is caught rather than trusted. The library sink takes the same embedded name, so it gets the same reduction: managed storage names the file after a UUID and never saw this, but an external folder writes the name as given. Display names are also stripped of control characters on the way into the database, in the schema and in the archive service. The validator hands back anything that is not a string rather than iterating it, so the field still answers a list or a bare int with a 422 instead of accepting the one and failing on the other. Display names are also stripped of control characters on the way into the database, in the schema and in the archive service, cleaned before the filename fallback rather than after it so a whitespace-only embedded name still falls through to the filename. The validator hands back anything that is not a string rather than iterating it, so the field still answers a list or a bare int with a 422 instead of accepting the one and failing on the other. |
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0623cc46df |
Repair no-3MF archives' photos and their silent filament writes (#1820)
Two faults behind the same kind of print: one that arrives without a
retrievable 3MF, which on an H2S is any job started from the printer's
own internal library.
Such an archive has no file_path, and Path("").parent is Path("."), so
every site that derived the archive's folder from it landed on the data
directory itself. The finish-photo capture spotted that and wrote to
<archive_dir>/<id>/photos instead. Nothing else did. The photo was
written in one place and looked for in another: reads 404'd, deletes
dropped the name and left the file, and the notification attachment
never found the image. Hand-uploaded photos worked only because upload
and read agreed with each other rather than with the capture. Give the
question one owner in utils/archive_paths and have all four sites ask
it. Lookups check the old shared location too, so photos already
uploaded there stay reachable; uploads now go where captures go.
Separately, the remain%-delta fallback that stands in for a missing 3MF
can charge nothing for several reasons, and did so without a word. The
AMS reading is coarse and, on the reporter's printer, noisy: it rises
mid-print, swings five points over a job, sits at 100% through a
36-minute print on a fresh spool, and goes negative on a nearly empty
one -- which the start-of-print gate rejects, dropping the only slot
that was printing. Two of their prints went uncounted for two different
reasons and both read as "no spools updated", which is also what a print
with nothing to charge prints. Name the slot and the two readings in
each case, on the Spoolman path and on the internal-inventory path,
which has carried the same gates since #1119.
The Spoolman path also had no notion of which slots the print used, so a
spool swapped into an idle slot mid-print reads as consumption and is
billed to whoever that slot is assigned to -- the fault #1269 fixed for
the internal tracker, still open here, and likeliest on exactly the
prints this fallback serves, where nothing else narrows the field. Use
the same three pieces of evidence it does: the print's mapping, its
mid-print tray changes, and the tray it started on. The last needs
storing, because the internal tracker's row is deleted before this runs
and a screen-started print has no mapping to fall back on -- hence a new
nullable column, and no backfill, since a row from before it existed has
nothing to say. Where no evidence exists at all, every slot is still
considered.
Both paths also treated tray_now == 255 as naming a slot. It does not:
it is the field's initial value, the fallback for an unparseable
reading, and what it reports with nothing loaded. Mapped as a tray id it
becomes (255, 1), so as the only evidence it excluded every real slot
and charged nothing at all -- this issue's own bug, arriving by a new
route. On the internal path that is live today; on the Spoolman path it
would have shipped with the guard above. The external holder reports 254
when it is genuinely in use.
The arithmetic is untouched: at one percent per step this cannot resolve
a small print, and pretending otherwise would be worse than saying so.
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9a2b811566 |
Show the plug that powers the printer in the card's Power row (#2830)
A printer card has one Power row: a plug name, its draw, and the auto-off and on/off buttons. Which plug filled it was decided by nothing -- the endpoint returned the first row the database handed back that was not a Home Assistant script, from a query with no ORDER BY. For the reporter that was an enclosure exhaust fan, added before the outlet their X1C is plugged into. The card showed the fan's name with '--' for watts, offered to switch the printer off by cutting the fan, and demoted the metered outlet to the small HA button row. The fan was marked as not powering the printer and hidden from the card; neither setting was consulted here, though controls_printer_power has decided the scheduler's power-on pick since #2629. Rank the candidates instead: switchable at all, controls_printer_power, enabled, show_on_printer_card, reports power, lowest id. The first rules out a script, which can only be run, and an MQTT plug, which the control endpoint rejects as monitor-only -- and an MQTT plug is exactly the kind that reports watts, so without it ahead of the power tiebreak the row could land on a plug whose on/off button answers with an error. The last is not cosmetic: with no ORDER BY, a plain UPDATE on PostgreSQL can move a row and silently swap which plug the card calls the printer's power. None of these excludes a plug. A printer whose only plug is hidden, disabled or monitor-only still needs its Power row, because that row holds the on/off button and the HA buttons are drawn inside it. controls_printer_power sits above show_on_printer_card because the two only disagree when the plug that really feeds the printer is hidden, and letting a display preference win there points the power buttons at an accessory -- the fault #2629 fixed. Power capability is read from the configuration, not measured: this runs on every card render, and it is approximate both ways, so it only breaks a tie. The scripts endpoint shares the same pick and excludes it, so a switchable main plug is not repeated as a button directly below itself. A script is left in place: a printer whose only entities are scripts falls back to showing one in the power row, and taking it out of the button row too would cost it the one-click run it has always had. |
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a9624d3887 |
Match a print completion to its queue job the way the printer names it (#2829)
Bambuddy has no run identifier to tie a completion to a queue row, so it
finds the row by printer and status='printing' alone.
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fffa68ec55 |
Explain a print that never reached the printer's card, instead of sweeping for it (#2780)
Bambuddy reads a print's 3MF, cover and timelapse over FTPS on port 990, which on every Bambu model serves external storage only. Under some configurations H2-series and P2S firmware keeps the sliced file on internal storage, where Bambu Studio put it over the port-6000 service, and then no path on 990 can find it. The print command has always said which of the two it used -- `url` reads ftp://<name> or brtc://emmc/<name>. We discarded it and swept anyway: ~110 connections per print, all certain to fail, ending in an archive card with nothing on it and no stated reason. In the reporter's bundle all 35 dispatches to their H2C and P2S said internal storage, all 25 to their X1C said external, and all 44 empty cards belonged to the first two. Read the field, skip the sweep when it cannot succeed, and record which reason applied. A printer that uses the card is unaffected, and so is one we have no answer for -- silence is not evidence, and reading it as bad news would break archives that work today. The answer is held per print and dropped when that print ends, rather than kept as a standing fact about the printer. Plenty of prints never announce themselves: 14 of the 79 print starts in that bundle arrived with nothing on the request topic, started from the printer's own screen or picked up after a restart. Left standing, one slicer print to internal storage would suppress the lookup for every screen-started print after it, on a printer whose files really are on the card. The sticky reading is kept for the connection diagnostic alone, which is run after the print that prompted it and would otherwise have nothing to report. Two things that pointed the wrong way go with it. The archives banner told everyone to enable "Store sent files on external storage"; the reporter had it on for the whole three weeks and it would not have helped. The diagnostic passed a printer whose slot was empty, because it read only the toggle -- an empty slot is now a failure naming the slot, and a printer that has storage and still used its own is a warning. On P1-series that empty-slot failure yields to the existing unsupported-model skip: the toggle cannot be switched on there at all, so telling the operator to insert a card would promise a fix inserting a card does not deliver (#2524). Also close FTP sockets on the failure paths, which dropped them for the garbage collector -- 1813 in a day in that bundle -- and drop the advice to restart the printer, which the reporter tried twice while a single manual connection to the same printer handshook cleanly. This does not make the affected prints archive in full; that needs the port-6000 protocol tracked in #2762. |
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3954d3a7e6 |
Choose which rack nozzle each filament prints from on an H2C (#1784)
The Vortek rack holds six hotends, and a multi-colour plate is sliced to
use a different one per colour so it can skip the purge. Which of the six
each colour takes is not in the 3MF. The same plate, sliced and sent twice
from Bambu Studio with a different choice each time, produces two files
that differ only in rounding in the last digit of a few extrusion figures
-- the filament grouping, the toolchange stream, the 120 nozzle-change
markers and project_settings.config are all identical. The choice travels
only in the dispatched nozzle_mapping.
Bambuddy had no way to state it, so those plates went out with no nozzle
assignment at all and the printer chose for itself. That is what levelled
on one hotend and printed with another, millimetres above the plate.
Every rack-bound filament now carries a position picker beside its AMS
slot dropdown, listing all six with the nozzle each holds. An empty
position, or one holding the wrong diameter or flow type, is shown greyed
out with the reason rather than hidden, so someone looking for position 4
finds it. The choice is per filament *group* rather than per slot, because
a group is one hotend: two filaments the slicer grouped together share it
and cannot point at different positions.
Nothing has to be picked. Positions are assigned automatically, preferring
one already loaded with that colour, which on the plate this was built
against reproduces Bambu Studio's own pick exactly.
A nozzle currently picked up onto the carriage is offered too. The
firmware drops its rack position from the report entirely rather than
sending a placeholder (#943), and refusing it would rule out the position
most likely to be wanted -- the one the last print left mounted. Only
recoverable when exactly one position is missing; two gaps are genuinely
ambiguous and stay unavailable.
Positions are re-checked at dispatch, not just when queued, because the
rack can be re-loaded in between. The two failure modes differ on purpose:
an explicitly chosen position that no longer fits stops the print, names
what the position now holds, and deletes the uploaded file from the SD
card so it cannot be started by hand either -- an operator who named a
hotend must not silently get a different one. An automatic assignment that
cannot be made instead falls back to letting the firmware choose, which is
what happened before any of this existed.
The pick is stored as {group: position} rather than as the expanded
nozzle_mapping, though that is what goes on the wire. That column means
"Bambu Studio decided, forward verbatim", and only the group-and-position
form can be re-checked against what is actually mounted at dispatch.
The existing multi-rack refusal in extract_nozzle_mapping_from_3mf stays.
It still guards the #2800 fallback, which can only ever name one rack id.
Measured on the maintainer's H2C: rack position n is physical nozzle id
15 + n, confirmed by cross-referencing two captured dispatches against
Bambu Studio's own dialog. extruder_max_nozzle_count names which carriage
is the rack straight from the file, and is read rather than assumed -- a
fourth independent confirmation of the carriage indices fixed in
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45dc139c41 |
Print an H2C two-nozzle plate from the carriage it was levelled on
The two carriages were the wrong way round: extruder index 0 was treated as
the fixed hotend and index 1 as the swappable rack, and it is the other way
about. A plate using both was levelled with one nozzle and printed with the
other, several millimetres off the plate.
Three sources agree, and disagreed with the code. Telemetry reports
ams_extruder_map {'0': 1, '1': 0, '2': 0}. BambuStudio, dispatching a plate
that used all three of those AMS units, sent the filament from the unit on
extruder 1 to physical nozzle 1 and the ones on extruder 0 to rack positions
16 and 18, and that print completed. And the two constants could not both
have been right: _FIXED_NOZZLE_ID is 1 while the fixed extruder was 0, in a
scheme where physical nozzle id N sits on extruder N.
The old value came from the #2800 hardware A/B, where [17, -1, -1, 1] printed
in mid-air and [1, -1, -1, 17] printed correctly. That result stands -- it
established which wire worked. The extruder indices were not measured by it;
they were inferred by pairing the working wire with a slot_extruders list
produced by the 3MF reader that has since turned out to mis-read exactly
these files. The reasoning is recorded at the constants so a future
regression report is not re-litigated from scratch.
Also withholds nozzle_mapping entirely when more than one filament group
needs the rack. Two groups on one extruder means that extruder is a rack and
the plate wants a different hotend per group -- which physical slot each
takes is the slicer's choice against the live rack and is stated nowhere in
the file, since both groups can carry identical diameter and nozzle type.
Studio dispatched such a plate to 16 and 18; nothing here can reproduce that,
and answering anyway is what printed in mid-air, so the firmware picks.
Restores the fixed 32-entry padding that
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d1c65a6659 |
Report a print stage we cannot name at the default log level
STAGE_NAMES is hand-maintained and every new model adds to it, so a printer occasionally reports a number that is not in it and the card reads "Unknown stage (72)" -- which an H2C did, where the table runs to 66 and then jumps to 74. Stage transitions were logged only at DEBUG, off in normal running, so the sole record that it had happened was the card itself, and by the time anyone looked the printer had moved on. The asymmetry is the point: a stage we can name is worth DEBUG, and the one we cannot is the interesting one. An unnamed stage is now logged at INFO, once per stage number per session, with the model, the stage it came from and the print state at the time -- which is what naming it afterwards needs. Named stages are unchanged, so a normal print logs nothing new. -1 is excluded: it is Bambuddy's own "not in a stage" sentinel and the field's initial value, so every print would otherwise report it on the way out of its last real stage. Fixes a latent crash found while testing this. The stage-change log line builds its text before the log level is consulted, so get_stage_name runs on every transition whatever the level is set to; a stg_cur that was not hashable -- malformed telemetry rather than an unknown stage -- raised TypeError out of STAGE_NAMES.get and aborted the whole state update. Labelling a value can no longer do that. |
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dfeac792fb |
Stop an H2C refusing a multi-colour print as a hotend mismatch
The print uploaded, the printer took the command, and stopped at once with HMS 0500-4047 -- "the available hotend quantity or model does not match the sliced file". nozzle_mapping told the printer one of the plate's filaments went to no hotend while ams_mapping named the tray it comes from, and the firmware will not start a job on that contradiction. Each filament in a 3MF names the group it belongs to, and on every other dual-nozzle Bambu the group number is also the extruder index, so it was read as one. On a rack machine it is not: the rack carriage holds six hotends to the fixed carriage's one, so the slicer writes a group per nozzle rather than per carriage. The failing plate carried groups 0, 1 and 2 against a two-entry physical_extruder_map, and the filament in group 2 was dropped -- indistinguishable downstream from a slot the plate does not print, which is what reached the wire as -1. extract_nozzle_mapping_from_3mf now resolves the group through the table the file states for itself, the <nozzle id extruder_id> elements in slice_info.config. Files carrying no such table keep the direct index, so H2D slices are unaffected. A filament that still cannot be placed drops the whole mapping with a logged reason instead of half an answer: the firmware then picks its own nozzle, which is the pre-existing behaviour and far better than an answer that contradicts itself. Two related faults fixed in the same pass. The mapping was read across every plate in the file, so on a multi-plate project a slot took its extruder from whichever plate came last; it is now scoped to the plate being dispatched, in extract_filament_requirements as well. And the array is now one entry per filament slot, matching BambuStudio's own dispatch of [1, 16, 16] for a three-filament plate, rather than padded to a fixed 32. Verified against the file that failed: slot extruders [-1, 1, 0] became [0, 1, 0], and the wire [-1, 16, 1, -1 x29] became [1, 16, 1]. |
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e6842e1d3c |
Rank near-colour matches by how they look, and share one filament type table (#2804)
Three follow-ups to #2804, all bearing on one decision: which spool a print uses when the exact colour is not loaded. Colour ranking is now perceptual. The ranking added in #2804 measured RGB distance, which rates a colour by how far apart the numbers are rather than how far apart they look, and it overweights blue badly enough to invert the answer: against a required #1E4821 green, a purple #38202F is the nearer of two eligible spools by RGB and four times the further once measured properly. Both sides now use CIEDE2000 -- perceptual_color_distance in backend/app/utils/color_utils.py and colorDistance in amsHelpers.ts, kept structurally identical so they can be read side by side. Verified against the Sharma/Wu/Dalal published reference set, all 31 pairs to 1e-4, and the two implementations agree to within 1e-9 across 800 sampled pairs. Eligibility is untouched, still the per-channel RGB box, so this only reorders spools that already qualified. Type matching now agrees between the interface and the scheduler. Bambu firmware treats PA-CF, PA12-CF and PAHT-CF as one material and the scheduler has always matched them accordingly, but the interface compared raw type strings and called that same pairing a mismatch. The badge contradicted what the printer was about to do, and the manual override picker, which groups by canonical type, offered the very spool the badge then rejected. The fifteen comparison sites in useFilamentMapping.ts, useMultiPrinterFilamentMapping.ts and PrinterSelector.tsx now call filamentTypesCompatible. The pipeline pre-flight reads the matcher's table instead of its own copy. That copy had drifted into disagreeing in both directions: it aliased PLA Basic to PLA where the matcher never has, so a run could clear the check and then fail to map its slots, and it lacked the nylon grouping, so it flagged runs the matcher handles without complaint. A check whose job is to predict dispatch is wrong whenever it disagrees with dispatch, whichever way it leans, so it and the scheduler now both read backend/app/utils/filament_types.py. That canonicaliser deliberately does not strip surrounding whitespace. It looks like a free improvement, but it would collapse a junk tray_type to "" just as a 3MF declaring no filament type yields "", and a typeless requirement would start matching a junk-typed tray instead of reporting the slot unmapped. Padded type strings are worth handling on their own terms, with that case addressed. One behaviour change outside the ranking: the pre-flight is stricter for a printer reporting a product name such as "PLA Basic" where the generic material belongs, which it now flags rather than passes. Rare in practice, since the printer reports material and product name in separate fields, and it is the answer the matcher would give. Nothing about which spool a print actually uses changed outside the colour ranking itself. Adds 203 backend and 6 frontend tests. The #2804 tie-break test now uses identical colours: two colours at equal RGB distance are not perceptually tied, which is rather the point. |
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4f7a02b393 | Pick the nearest eligible filament colour instead of the first one in tray order (#2804) (#2823) | ||
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36d996e453 |
fix(slicer): stop a 3MF from switching off supports its process preset turned on (#2820)
--load-settings is authoritative, so since #1881 four support fields travel the other way -- enable_support, the two filament slots, and support_type -- lifted out of the source 3MF and written over the picked process preset. Bambu's shipped presets all set enable_support: 0 because supports are a per-print decision, and without the carry a project exported with PVA in the interface slot sliced single-material. But the carry ran in both directions, and the off direction is the one nobody asked for. Nearly every published model ships with supports off, so slicing one against a custom preset that deliberately enabled them stripped them back out. The reporter's preset sets enable_support 1, support_type normal(auto), support_style snug; the slice came back disabled and tree(auto). Only the style survived -- it is not one of the four carried, and they had re-entered it in the slice dialog. The source can now switch supports on, never off. Nothing is lost: every shipped preset has them off, so a preset that has them on is a deliberate choice by whoever wrote it, and a file that wants supports still gets them with its slot assignments. A file that never declares enable_support is treated as off -- no intent to act on. The truthiness rule ("1", true, 1, and the forks that write neither) now lives in one place as supports_enabled_in_config(), shared with extract_support_filament_slots_from_3mf, which had it inline. Also log the carry with the fields it took. The slice dialog shows the picked preset's values, so a carried field silently disagrees with what was on screen and this step logged nothing at all -- the report chased an unrelated sanitiser line about the source file's own settings, which was the only thing in the log that mentioned any of these keys. |
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02616f0c91 |
fix(queue): stop a library-file delete from destroying the jobs queued against it (#2819)
Nothing tied a library file to the queue rows pointing at it, and the FK that describes the relationship is ON DELETE CASCADE -- which SQLite does not enforce and PostgreSQL does. So the same fault had two faces: rows left pointing at a file that no longer existed, failing at the printer with "Library file not found" days later, or rows deleted outright with no error and no history. Two routes into it, both fixed by taking the queue off the file before the row goes. Dispatch (the reported case): quantity>1 on the printer-card upload-and-print flow puts cleanup_library_after_dispatch on every copy, and _clone_queue_item copies library_file_id onto batch clones, so the first dispatch consumed the file the rest were waiting on. The copies are now pointed at the archive that dispatch just created -- it holds its own copy of the 3MF -- and the consume flag is cleared on them. A copy already printing from its own archive keeps it, a finished one keeps its outcome, and a cross-model item (#671) keeps any candidate this does not consume. Deletion: the File Manager, bulk delete, folder delete, emptying the trash and the retention sweeper all removed rows with queued work against them. Folder delete did not even clear the cross-model candidates, because the file-id walk it already performs threw its result away. Jobs waiting on a deleted file are now cancelled at that moment, naming the file, and every other row referring to it is detached rather than destroyed -- print history and batch progress are counted from those rows. A job that is printing is left alone: what is deleted is the library copy, not the copy on the machine. The trash is reversible so it still changes nothing about the queue, and a job dispatched while its file is in the trash now says so instead of "not found". Verified row for row on PostgreSQL 16 as well as SQLite: without this, PostgreSQL deletes every queue row referencing the file. |
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454457a0af |
Attribute filament correctly when AMS backup swaps spools mid-print
Everything the completion path needs to split a print's filament across the trays it fed from lived only in memory: the dispatched plate and slot-to-tray mapping, the spool-assignment snapshot, and the tray-change log. A print that outlived a restart lost all of it and fell back to what the printer reports at completion -- which, with AMS Filament Backup on, is the substitute tray. The whole print was charged to the spool that only finished it while the spool that ran dry was charged nothing. Persist that context in a new active_print_sessions row, append tray changes as they happen, and restore both the session and the printer's tray-change log at restart recovery. Seed the log from the current tray when there is nothing to restore, since last_loaded_tray advances even when no change is logged. Rank the queue item's stored ams_mapping above the printer's live mapping field, which is what backup rewrites. Recover plate_id from the archive or queue item, and give extract_layer_filament_usage_from_3mf a plate_id instead of taking the first .gcode member -- a Bambu Studio export stores plate 2 first, so per-layer figures were measured against the wrong plate for both inventory backends. Stop auto-unlinking a spool assignment when its slot reports empty during a running print. At a runout the spool is still in the AMS, and dropping the link leaves the completion path nothing to charge. Capture the print-start context for both inventory backends. Spoolman's own durable row (#1820) carries its plate-scoped figures and dispatched mapping but not the tray-change log, and its slot assignments -- the way. Registration in _active_sessions stays gated, since on_ams_change reads it to decide whether to skip the remain%-based weight sync (#880). |
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b5a34b7ba7 |
Do not close a queue item on a completion for another print
on_print_complete finds the row to close by printer and status='printing'
alone. The MQTT payload carries a subtask name but no run identifier, so
nothing tied the event to the row: any completion delivered for a printer
closed whichever job was printing on it. A job closed that way is marked
completed while the printer is still working, leaves the queue for
history, and strands the rest of its batch, because the queue correctly
refuses to dispatch onto a busy printer.
The handler now checks the completion against the file the row was
dispatched with, recovered from its archive, and leaves the row alone
when they disagree. Only a positive disagreement refuses: no archive, no
file name or no subtask name is unverifiable rather than wrong, and
refusing those would strand the item in 'printing' and wedge the queue --
the failure the loose lookup was avoiding in the first place.
This surfaced through the test suite, which could reach a real database.
conftest built its own SQLite engine, but core/config.py snapshots
DATABASE_URL at import time and core/database.py builds the module-level
engine and async_session from it. Tests reaching code that opens its own
session -- run_with_retry, which the completion path uses, takes its
sessions from core.database and so is untouched by the widespread
patch("backend.app.main.async_session") -- therefore talked to whatever
database .env named: the developer's own SQLite file on a plain checkout,
a live install with a PostgreSQL .env. DATABASE_URL is now redirected to
a throwaway file before any app import, and the run aborts rather than
starts if that did not take.
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0229d61cea |
Open multi-plate G-code on the plate that was asked for
Previewing a sliced multi-plate 3MF from the File Manager showed a plate nobody picked. The library route took no plate parameter at all, so the one the viewer has always put in the URL was dropped -- FastAPI discards unknown query parameters silently. Both routes then fell back to the first .gcode member of the zip, and member order is whatever the slicer wrote: the reported file stores plate_2.gcode ahead of plate_1.gcode. Nothing that opens the viewer from the File Manager passes a plate, so there was no way to ask for another one either. Plate resolution now lives in threemf_tools and both routes share it. select_plate_gcode_name() returns the named plate or None, so a caller serving an explicit choice can 404 instead of rendering something else; default_plate_gcode_name() returns the lowest-numbered plate. The viewer gained a plate switcher, and keeps the choice in its URL so a link to one plate survives a reload. Filament colours follow it too -- they were taken from the first plate regardless of which one was on screen. G-code injection and the finish-photo max_z_height read shared the old first-member fallback and now resolve the lowest plate as well. |
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df5aa04df1 |
Pool AMS backup spools in the print dialog's filament check
The dialog weighed each plate against the spool in the slot it mapped to and knew nothing about AMS Filament Backup, so a two-plate job needing 1441 g of ABS was refused against a 1000 g spool while the identical full spool in the next slot went uncounted. The dispatcher has pooled matching spools since #1762 and would have run the print -- "Print anyway" was always the right answer to this warning. The rule for which spools back each other up now lives in one place: build_slot_materials() in filament_deficit, which the dispatcher's pool and the new slot_materials half of GET /printers/{id}/inventory-remain both draw on. The dialog groups on the keys it is handed rather than resolving spools a second time, which is what let the two answers drift apart, and which also gives the check to Spoolman users -- it read the internal inventory only, so in Spoolman mode it approved everything. Where a pool really is short the warning quotes the pooled totals, since the per-slot figure reads as a contradiction next to a full peer spool. |
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e9d9e51a81 |
fix(h2c): send physical nozzle IDs for both carriages, not extruder indices (#2800)
The first pass at the H2C rack mapping had both of its hardware-derived values wrong, and the reporter's follow-up A/B on real hardware settled them. The rack does not feed extruder 0. A mixed-nozzle plate extracted as slots=[0, -1, -1, 1] with rack position 17 dispatched as [17, -1, -1, 1], and the rack nozzle printed several millimetres above the bed. The rack is extruder 1. Correcting only that is not enough. The fixed hotend answers to physical ID 1, not to its extruder index of 0, and forwarding the index produced [0, -1, -1, 17] -- a command the printer rejected outright rather than mis-printing. Translating both carriages gives [1, -1, -1, 17], and the same sliced file then cleaned, levelled and printed on the correct nozzle at the correct Z through to completion. Both values agree with three native Bambu Studio captures from the same machine, which carry [1, 17, ...] and [17, 1, ...] depending on filament slot order. An extruder index naming neither carriage now omits the field instead of reaching the wire as a physical ID that identifies no nozzle. The fixed-hotend-only path is unchanged but no longer a guess: Bambu Studio sends no nozzle_mapping at all for such a plate, which is what Bambuddy already did. Reported, diagnosed and hardware-verified by @tru3l3gend, who ran the mixed-nozzle A/B on both nozzles and captured what Bambu Studio sends for fixed-only and mixed plates. |
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3dc681d9f1 |
fix(slicer): write slice output to the source's external folder (#2810)
slice_and_persist always wrote to get_library_files_dir() while giving the new row the source folder's id, so slicing a file on a NAS mount produced a .gcode.3mf that showed up in the right folder in the UI and never reached the share -- invisible from the web UI, which is why it did not reproduce. Resolve the destination from the target folder like uploads (#1112) and moves already do, set is_external and store the absolute path. Collisions uniquify to "Model (2).gcode.3mf": a 409 would throw away minutes of CPU on a routine re-slice, and overwriting a file on someone's NAS is worse. An external folder that cannot take the file (read-only, unreachable, not writable) falls back to managed storage rather than discarding the slice, and reports why on SliceResponse.external_write_fallback -- surfaced as a warning toast. Silent fallback is what made this bug invisible. |
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d120a804ff |
fix(slicer): name the sidecar service in the update command (#2802)
The "update your sidecar image" advice told users to run a bare `docker compose pull`. bambu-studio-api is declared with `profiles: [bambu]`, and compose skips profile-gated services silently, so the pull was a no-op for exactly the users the message was written for -- and `restart: unless-stopped` kept the old container serving. The reporter pulled, restarted, set MAX_MODEL_UPLOAD_MB and got the same 100 MB rejection, because the image never changed. Name the service in both commands instead. Naming enables the profile implicitly, for pull and up alike. `--profile bambu` would also work but downloads the 220 MB Bambu image on an OrcaSlicer-only host and then starts a sidecar the user never asked for. Same correction in the sidecar README, the compose header and the changelog entry, which all carried the bare form. |
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fd3f5331f3 |
Drop the restore's foreign keys in the database, not in the ORM metadata
Restoring a SQLite backup into PostgreSQL died part-way with insert or update on table "library_files" violates foreign key constraint "library_files_folder_id_fkey" DETAIL: Key (folder_id)=(1) is not present in table "library_folders". The import recreates the schema and is supposed to create every table without foreign keys, so the order rows arrive in cannot matter; the constraints are added back once the data has landed. Phase 1 did that by discarding each ForeignKeyConstraint from table.constraints before create_all -- which only suppresses the inline REFERENCES clause. Table.foreign_key_constraints is derived from the columns' ForeignKey objects and was never touched, and when create_all meets a dependency cycle it cannot sort, it falls back to emitting those tables' keys as separate ALTER TABLE ... ADD FOREIGN KEY statements read from exactly that property. library_files, library_folders and print_archives form such a cycle, so twelve constraints survived across the three of them -- measured against a real PostgreSQL by running the old phase verbatim. The same cycle also costs those tables their place in sorted_tables, so they were imported alphabetically, putting library_files ahead of the library_folders rows its folder_id references. Phase 1 now creates the tables normally and drops every foreign key from pg_constraint afterwards, in the same transaction, scoped to contype 'f' in the public schema. That is indifferent to how create_all chose to emit them, so a future cycle between other tables cannot bring this back. Phase 3 is unchanged. This also removes a second fault: the keys were stripped from the process-wide Base.metadata and only restored after the drop/create transaction, so a failure in between left the running app without them until restart. The metadata is no longer modified at all. Verified end to end against a real PostgreSQL -- a backup whose child rows import before their parents restores cleanly, with all 90 constraints back afterwards. Four regression tests added. |
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15ea11e10b |
Recover the preview slice from custom G-code the sidecar cannot parse
Opening the slice dialog on an unsliced project runs a preview slice purely
to ask the slicer which AMS slots the chosen plate consumes. Bambu Studio 2.8
writes {if timelapse_inline_photo} into the machine's time_lapse_gcode but
exports no definition for that variable, so the template is unresolvable the
moment it leaves Studio: an older sidecar stops with a placeholder parse error
before producing any slice_info. The preview returned nothing and the caller
fell back to guessing from painted faces, silently. On the H2D project this
was found with, the guess dropped the support material -- a whole slot off a
four-filament plate.
Retry the preview once with just the named template emptied, still on the
file's own settings. Keeping the embedded settings is what keeps the answer
honest: overriding the process preset instead discards the project's support
configuration, which loses that slot and moves used_g by up to 2x. Measured
against the same file: retry reproduces all four slots gram for gram, a
printer+process override returns three.
Only templates that cannot extrude are eligible -- a start or filament-change
template lays a prime line or purges, so emptying one would move the very
grams the preview reports, and returning nothing beats a confident wrong
number. Verified on a working H2D slice that emptying time_lapse_gcode leaves
every used_g/used_m in slice_info identical.
Match on a normalised option name: the slicer reports timelapse_gcode while
the 3MF stores time_lapse_gcode, so a literal comparison finds nothing.
Decide whether a retry applies before logging, so a slice that recovers does
not announce itself at WARNING twenty seconds before it succeeds.
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b03603c4e2 |
Release the keep-warm bed on the dispatch paths that skip the rollback (#2727)
Selecting an item hands any keep-warm hold on its printer over to the preheat
pin: `_sweep_keep_warm` drops the `_keep_warm` entry and records "bed" instead,
on the promise that `_dispatch_one` will unwind it on any non-success exit. Two
of that function's exits never reached the `finally` that keeps the promise --
the claim failure returns before the `try` opens, and the vanished-row return
sat inside it but left `item_printer_id` at None, which the rollback guards on.
Either one left the bed hot with nothing tracking it. The keep-warm entry was
already gone, so the max-duration cap no longer applied and `_release_keep_warm`
had nothing to act on; if the cancelled item was that printer's last pending
one, the printer also dropped out of the candidate set, and nothing would ever
switch the bed off. Reachable whenever a cancel or delete lands between
selection and the claim -- narrow, but the outcome is exactly what the cap was
added to prevent.
`_dispatch_one` now takes the printer it was selected for. `_launch_uploads`
already had it (it stores the same value in `_inflight`), so nothing new is
plumbed, and the parameter is optional so the tests that call `_dispatch_one`
directly keep their existing behaviour.
Two pieces of hardening found while tracing that:
* The rollback switched the bed off unconditionally, where the keep-warm
release deliberately checks first that firmware still reports the target it
set. It now records what it pinned and declines when someone else owns the
bed. Every uncertain case still switches off -- no recorded target, or a
status that cannot be read -- because a bed left hot with no owner is the
worse failure, and this runs in a `finally` where raising would mask the
real exception. That is why the status read is factored out into a total
helper returning None for "no evidence" rather than 0.
* `_apply_keep_warm` ran unguarded between selection and `_launch_uploads`, so
anything raising there discarded the tick's selections, computed AMS
mappings included, and on a persistent fault stopped the queue dispatching
altogether. Wrapped, for the same reason the deficit check is: an auxiliary
comfort feature must never wedge dispatch.
Also documents why the max-duration check sits behind the FINISH and client
guards rather than ahead of them, since the ordering looks like a hole and is
not: with no client there is no M140 to send and the elapsed check fires on the
first tick after the printer returns, and leaving FINISH means the plate was
cleared, which routes the printer to `_release_keep_warm` instead. The invariant
to preserve if that is ever reordered is that every path out of an engaged hold
ends in a bed-off.
Six tests: the handover recording its target, both early returns releasing, a
call with no printer id staying a no-op, the reassigned-bed skip, the matching
and unreadable cases switching off, and eviction on deregistration.
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37b0e25a2b | Merge branch 'dev' into feature/queue-keep-warm-chamber-history | ||
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57190b10ba |
Stop offering server-side slicing for STEP files
The Slice action appeared on .step / .stp and the endpoint accepted the job, but neither slicer can load one from its command line -- both answer "Unknown file format. Input file must have .stl, .obj, .amf(.xml) extension." So the file was read, converted and uploaded before failing as "The input model file to the slicer can not be parsed", which reads as a corrupt model rather than an unsupported format. The endpoint refuses a STEP up front with a message saying to export it as STL or 3MF, and the Slice and pipeline buttons no longer appear on one. Open in Slicer is unchanged and still hands STEP to the desktop application, which opens it fine -- that was always the working path. isSliceableFilename (desktop) and isApiSliceableFilename (sidecar) are now separate predicates so the two cannot drift back together. |
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a849759469 |
Explain an oversized model instead of reporting a slicer crash (#2802)
The sidecar caps model uploads and reports a rejection as a bare HTTP 500 "File too large" -- multer's MulterError is not the sidecar's AppError, so its handler falls through to the default status. A 500 reads as a crash inside the slicer, and the one message Bambuddy had about request size was written for the 413 a reverse proxy sends, so it never appeared. The reporter tried MAX_FILE_SIZE, BODY_PARSER_LIMIT and EXPRESS_PAYLOAD_LIMIT, stopped nginx, and moved from Windows to Docker -- none of which the sidecar reads. Match the rejection by what it says rather than by its status, so an installation still on an older sidecar image gets the same explanation. The 500 match is strict -- the body must be only multer's message -- because a genuine CLI failure is also a 500 and has to keep reaching the embedded-settings fallback. Old images are told to update, since they have no setting to change; current ones are told which one to set. Raising SlicerInputError rather than SlicerApiServerError is also what skips the fallback retry, which had been re-uploading the identical oversized file after a second 25-second 3MF conversion. Log the model size on every slice. Nothing recorded it, so a support package from a slice that died on an upload cap looked exactly like one that died on a bad profile, and this had to be sized by hand. Fall back to the exception class name when a transport error stringifies empty -- three lines of the reporter's log read "Slicer sidecar unreachable: " and stopped there. Needs a sidecar image update to take full effect; MAX_MODEL_UPLOAD_MB is documented in slicer-api/.env.example. |
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7c117dc6bc |
Let API clients resolve user ids to names (#1894)
Archives, the queue and statistics report ownership as a numeric created_by_id, and statistics accept it as a filter, but nothing let an API key discover whose id was whose -- the only user listing returns emails, roles, group membership and full permission sets, so it is administrative and rejects keys. Add GET /users/slim returning id + username only, gated on a new users:read_slim permission mapped to can_read_status. That grants no data a key could not already reach: for API-keyed requests the permission deps return None as current_user, so the stats:filter_by_user guard short-circuits and ?created_by_id=N is already honoured for every N. What was missing was the ability to address the filter, not permission to use it. The full listing stays unmapped = admin-only. Also fix /auth/me, which answered an API key with a synthetic administrator: id 0, role admin, is_admin true and every permission in the enum. A key cannot reach an administrative route at all, so clients building their UI from that response rendered actions that 403 on use. It now reports the key owner's identity, is_admin false, and the permissions the key's scopes actually admit. Ownerless legacy keys keep id 0 but no longer claim admin. --- Source user names from the slim listing where only names are needed (#1894) Stats filter-by-user, the Archives print log filter, the File Manager username autocomplete, the camera-token owner column and the Finance member picker all render nothing but a username, but all of them read the full user listing, which is gated on the admin-level users:read. An operator granted stats:filter_by_user but not users:read got an empty filter with no indication why. Point them at /users/slim under a separate react-query key, since the full listing shares the 'users' key and the two shapes would clobber each other in the cache. |
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71709c16aa |
Stop tearing down AMS drying for a print that cannot start (#2801)
A printer in FINISH with an unacknowledged plate and something pending in its queue stopped and restarted drying once per scheduler tick, for as long as the plate stayed unacknowledged. The reporter's Home Assistant history recorded about 2000 state changes over ten days. No cycle ever ran long enough to remove moisture, and cycles the user had started by hand on other AMS units of the same printer were torn down with it. Two concerns had become tangled. Plate-clear answers "is the bed ready for the next job" and says nothing about whether the AMS may heat. The gap between a finished print and the acknowledgment is when drying is most useful -- the printer is free and nobody is waiting on it -- and leaving the plate unacknowledged is also how people hold the queue by hand, so the hold was costing them the drying it should have enabled. Four faults, all in print_scheduler. The "print takes priority" stop sat inside the not-idle branch. Drying is not one of the things _is_printer_idle looks at, so stopping a cycle can never turn a non-idle printer into an idle one: the stop was futile every time it fired, and never fired on the dispatches where it was supposed to mean something. It now runs when the printer is actually dispatchable, and only where the model cannot dry through a print -- #2758 settled that capable hardware should keep its cycle. mid_print was inferred from busy_printers, which means "the queue could not dispatch here this pass", not "is printing". A plate-held printer was therefore treated as printing: the mid-print spool-protection cap silently lowered its drying temperature, the cycle was logged as (mid-print) in FINISH, and it bypassed the very gate meant to hold it. busy_printers keeps its dispatch role; auto-drying now gets a narrow set snapshotted before the item loop -- running, held post-dispatch, or mid-upload -- and mid_print comes from the printer's own state. The interlock comment at the seed already documented this hazard and worked around it by staying out of the set; this generalises that instead of adding a third special case. The other call site was already passing the narrow set, so the wide one was the inconsistency. _stop_drying sent a stop to every AMS reporting dry_time > 0. One auto-dried unit was enough to kill a manual cycle on a different unit of the same printer, contradicting the contract _sync_drying_state already documents: the entry gate only knows about cycles Bambuddy began, so the action must not reach past them. Consequence worth stating -- after a restart Bambuddy cannot prove a running cycle is its own, so it leaves it alone rather than risk stopping somebody's manual dry. Fourth, and the reason #2770's guard did not catch this: a reading at or below the threshold popped the unit's whole entry, ended_at included, so the 30-minute re-arm cooldown went with it. An AMS reads higher warm than cool, which is #2770's own finding, so a unit a point or two above the threshold dipped below it as it cooled, wiped its history, and re-armed immediately. Lifting a suspension now clears the judgement and keeps the clock. queue_drying_block changes behaviour as a result. It previously had no effect on dispatch at all -- both branches skipped anyway, and it only decided whether drying was needlessly killed. With the stop on the dispatch path it now does what it says: a queued print waits for a running cycle. Off by default. Reported by @superflyer11, who traced both defects to the line and brought ten days of external sensor history to date the cadence. |
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ec26cba927 |
Resolve the H2C rack nozzle at dispatch instead of letting firmware pick (#2800)
An H2C ran its startup clean and bed levelling on one hotend, switched, and then printed several millimetres above the plate. The same job from Bambu Studio was fine. The H2C is the only model that mounts its nozzle from a rack of six, and a print command names that nozzle by physical rack position -- the firmware reports those as 16 to 21 -- not by the extruder index, 0 or 1, every other dual-nozzle printer uses. Bambuddy only ever had a rack position when a job arrived through the Virtual Printer, which captures Bambu Studio's pick and replays it (#1780). Anything queued from the library, an archive, the webhook or a slicer pipeline carried none, so the field was omitted and the firmware chose -- and its choice need not match what the file was sliced for. The scheduler now derives the per-slot extruder assignment from the file it is about to send, and the MQTT layer resolves it against the rack position the printer reports live. Both are needed: the file knows which side a slot prints from, only the printer knows which hotend is in the carriage, and it can be swapped from the touchscreen between queueing a job and printing it. Derived at dispatch rather than at creation because that is the first point knowing both the real printer and the real file -- an item can be created unassigned, reassigned later, or have its file swapped for a G-code-injected copy. One call therefore covers the print dialog, bulk library adds, the webhook and pipeline runs, and no column is needed. extract_nozzle_mapping_from_3mf is deliberately untouched. Its output feeds the AMS matcher, where nozzle_id is compared against a tray's extruder_id as a hard filter, and physical_extruder_map is what makes that comparison correct -- on an H2D it is [1, 0] and flips the two. Dropping the translation to suit the rack would send every dual-nozzle AMS match to the wrong extruder. The dense per-slot form is a separate function reusing the same output. Nothing here can fail a dispatch. The command is built and published with no exception handler above it, and the queue item is already committed as printing by then, so a bad input has to degrade to "firmware picks" rather than wedge the item. resolve_rack_nozzle_mapping validates every input and raises nothing; an unresolvable mapping, an unparseable value or an unknown rack position all omit the field, which is the behaviour that existed before. Slot IDs are bounded before the dense list is built: they come from the file, and one declaring filament id="50000000" would otherwise allocate a fifty-million-entry list on the dispatch path. Two things are not guessed. A job printing only from the fixed hotend is still left to the firmware, because that nozzle's physical ID is not confirmed by a known-good capture. And the rack is taken to feed extruder 0 from a single hardware observation -- if that is flipped, a one-sided job matches nothing and falls back to the old behaviour, so only a job using both nozzles at once could be harmed, which is what a second capture needs to confirm. Confined to the H2C throughout. Building the print command for 21 model spellings with and without the new argument changes exactly three of them -- H2C, O1C and O1C2. The other 18, including H2D and X2D, are identical. Reported by @tru3l3gend, who diagnosed it on real hardware against a working Bambu Studio dispatch, established the rack ID range and supplied a patch. |
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f86f5a7c34 |
feat(queue): keep the chamber warm between prints and skip redundant soak
Back-to-back prints in chamber-heated materials (ASA, ABS, PA, PC) each paid
a full heat-soak from cold, even when the print that just finished had left
the chamber at temperature. Two changes remove that cost.
Keep bed warm between prints
While a printer sits in FINISH awaiting plate-clear and the next queued item
needs chamber heat, hold the bed hot so the chamber does not cool during the
bed-clearing window. The bed is the chamber's heating element here, not a
print surface, so the hold runs at the new `queue_keep_warm_bed_temp`
(default 90C, which also satisfies bed-threshold-linked aftermarket chamber
heaters), raised to the item's own bed temperature when that is higher.
Gated on `queue_keep_bed_warm` AND `require_plate_clear` AND
`preheat_enabled`, all re-checked in the backend so a stale UI cannot leave
the feature running. `queue_keep_warm_max_minutes` (default 120) bounds the
hold: when it elapses the bed is switched off and the hold latches until the
printer is next a candidate, so a plate nobody clears cannot leave the bed
hot indefinitely. The hold is also released when the item is deleted, the
queue empties, or a gate is toggled off mid-hold, and never when firmware
reports a target other than the one it set — a temperature the user or a
print changed is left alone. Publishing is idempotent.
Smart soak reduction from chamber history
The scheduler samples each connected printer's chamber temperature every tick
into a 2h rolling history. Preheat credits time the chamber has already spent
at temperature against the configured soak, shortening or skipping it.
Credit starts no earlier than the newest sample, the most recent unbroken run
of samples, or the end of the last real dip below target. A dip only counts
once it outlasts a grace period: an enclosed chamber cannot lose and regain
several degrees quickly (measured on an X1C, cooling from 55C to below 48C
takes 23-73 minutes, ~0.2 C/min), so a brief low reading is a door opening or
sensor noise rather than lost soak — and a plate swap, which is exactly when
keep-warm runs, produces one. A stale history credits nothing: at that
cooling rate the chamber can cross the threshold unobserved, so the full soak
runs instead.
Three supporting changes to preheat itself:
* Cancelling or deleting a queued item now stops a preheat already running
for it. Those routes only write `status` to the database, which a dispatch
coroutine parked in `asyncio.sleep` cannot observe, so the heaters ran for
the rest of max_wait + soak — 45 minutes at the default settings — and the
printer stayed in `busy_printers`, blocking every other queued item behind
a print that was not happening. The routes now signal the scheduler
directly, and the stage sleeps in slices so it notices promptly and
abandons the dispatch, letting the existing rollback shut the heaters off.
* A chamber-heated print whose slicer metadata carries no bed temperature
(common for Orca-exported 3MFs) used to skip preheat entirely and start
with a cold chamber. It now heats the bed to `queue_keep_warm_bed_temp`.
A parsed bed temperature still wins, and a print with no chamber
requirement still skips — no bed temperature is invented for the print
itself. Preheat's bed target is transient regardless: the print's own
gcode issues its M140/M190 at start.
* Preheat records which commands it sent (bed, chamber, airduct) and unwinds
them if the dispatch aborts before the print starts — a failed upload, a
cancelled item, an exception — instead of leaving the printer heating for
a job that is not happening.
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08df660f6c |
Replace the embedded G-code viewer with the slicer's own renderer
Sliced files previewed through a vendored copy of PrettyGCode in an iframe. It drew each move as a screen-space line -- a line has no thickness in the scene, so it cannot occlude the layer behind it, which is why prints came out stringy and shimmered where layers crossed. Being a separate app in a frame, it could be neither themed nor translated, and carried its own machinery for detecting a proxy refusing the embed. Now built on libvgcode, the renderer OrcaSlicer draws its own preview with, vendored from three-slicer (AGPL, same as us). It takes the THREE namespace as an argument and imports nothing, so it runs on our 0.181 rather than the 0.160 its package pins. The parser is ours; upstream renders its own kernel's output and ships no G-code parser at all. Two things it has to get right, both found by checking a real plate rather than assuming: - BambuStudio does not use the OrcaSlicer/PrusaSlicer annotations. It writes "; FEATURE:", "; LINE_WIDTH:", "; CHANGE_LAYER" and "; Z_HEIGHT:", not ";TYPE:", ";WIDTH:" and ";LAYER_CHANGE". Reading only the latter showed a 52-layer print as 23,165 layers in one colour, because with no layer marker recognised every travel Z-hop split a layer and every segment took the fallback feature. - It emits a tenth of its moves as G2/G3 arcs -- 706 extruding ones in a single plate. Ignoring them punched holes through curved walls and tree supports. Arcs with no X/Y are the helical travel lift and lay down nothing, so they interpolate as travels. Four colour modes: filament (default, from the AMS slots the file was sliced with), feature, layer height, line width. Speed, fan and temperature are deliberately absent -- upstream derives those from settings rather than the toolpath, and guesses dressed as measurements are worse than an honest omission. The parser now carries the data to do them properly later. Legend entries are switches. Hiding removes the records before the mesh is built rather than recolouring them: the shader packs colour into a single float with no alpha, so there is no transparent to set, and removal is the useful behaviour anyway -- a hidden support stops occluding what it covered. The scene is built once and only the toolpath rebuilds. Doing otherwise constructed a new WebGLRenderer on every render, because the buildVolume default is an object literal and so a fresh identity each time; browsers cap live WebGL contexts and drop the oldest, which blanked the canvas after a few interactions. utils/framing.ts goes with the iframe, along with six now-orphaned strings in all 13 locales. src/lib/vendor is excluded from eslint -- acting on findings in vendored code makes it impossible to re-copy on the next upstream release. |
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b6027b7138 |
Say why a preset's values are unavailable, not just that they are
The settings panel collapsed four causes into one message -- "the picked preset's own values could not be read" -- with no indication of what to do about it. The overwhelmingly common cause has an obvious fix, and it isn't an edge case: an install pulls its sidecar as SIDECAR_TAG:-latest regardless of which Bambuddy channel it is on, so a current Bambuddy talking to a sidecar that predates POST /profiles/resolve is the normal state, not a misconfiguration. Those users would have seen an amber warning on every slice with nothing pointing at the sidecar image. resolve_profile now returns ResolvedProfile(values, reason) instead of None for everything, the route passes the reason through, and the panel picks its message from it: sidecar_outdated -> name the fix: update the sidecar image sidecar_unavailable -> the sidecar did not answer not_configured -> no sidecar is configured preset_unresolved -> the previous generic wording A request that fails outright maps to sidecar_unavailable, since a backend we cannot reach and a sidecar that will not answer are the same thing from the dialog. Every variant still ends with "anything you don't change still uses the preset" -- that reassurance is the point of the notice, and it is true whichever way the lookup failed. Tests pin the distinction rather than just the happy path: a 404 and a 500 must produce different reasons, and each panel case asserts both that its own message appears and that the "update the sidecar image" line does not leak into the others. |
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f421bb8160 |
Show the picked preset's real values in the process-settings panel
The panel baselined every field on the option schema's compiled-in
defaults, so a preset setting a 0.42mm line width displayed 0 -- the C++
default meaning "derive from the nozzle". Every field was affected; the
Line width group just made it obvious.
Bambuddy cannot answer this itself. A standard-tier pick is only an
{inherits: ...} stub on our side, and local/cloud presets are deltas whose
remainder lives in the profile tree bundled inside the running sidecar.
The values now come from the sidecar's POST /profiles/resolve, which runs
the same resolver /slice does against the same profiles, so what the panel
shows cannot disagree with what a slice produces. Deliberately not the
local orca_profiles resolver: it walks OrcaSlicer's published tree, which
can differ from the image actually installed.
An untouched field shows the preset's value and reverting returns to it.
isModified compares against that baseline too, so fields the preset moved
off the C++ default are no longer flagged as user edits, and values nobody
typed are no longer sent. When the values can't be read -- sidecar offline
or older than the endpoint -- the panel falls back to schema defaults and
says so rather than presenting them as the preset's.
Row layout, from screenshots:
- The control column is anchored to the right edge at a fixed width. It
had been packed left after a fixed label column, leaving the values
stranded mid-container with dead space beside them.
- Units are no longer truncated to "mm o...". The cap fitted the common
"mm" but not "mm or %" or "mm/s² or %".
- The "from file" tick moved ahead of the control it qualifies; it used to
sit past the unit at the row's right edge, reading as unrelated.
Both the unit and the control keep fixed widths, and the tick's slot is
reserved on rows without one -- sizing any of them to content makes each
row's input land at a different x and the column comes out ragged.
Also fixes a field that could not be cleared: emptying a free-text input
dropped the key, so it snapped back to the baseline and retyping appended
to it ("0.42" + "0.5" = "0.420.5"). The number branch was fixed earlier;
the text branch -- coFloatOrPercent, coString, the vector types -- was
not, and the regression test used a number input so it never caught it.
Requires a sidecar built from orca-slicer-api 4b664b7 or later. Older
images 404 the endpoint, which is handled as the fallback above.
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f0500578bd |
Edit the full print-parameter set from the slice dialog
Slicing from Bambuddy meant taking a process preset as-is; any change meant a round trip through Bambu Studio. The slice dialog now carries OrcaSlicer's full process tree -- pages, groups, labels, tooltips, ranges and defaults extracted from the slicer's own sources. Enable/disable rules are evaluated from the slicer's own enable_if expressions via a recursive-descent interpreter (no eval, CSP), with enum comparisons validated against each option's declared values. Anything undecidable leaves the field editable rather than greyed. Overrides apply after the source's support config (#1881) and the designer's carried tweaks (#2622), so an explicit choice always wins; an untouched panel sends the same request as before. Adds slice_engine as a separate setting from preferred_slicer -- where slicing runs is a different axis from which binary the sidecar drives. Only the sidecar engine is registered, so no picker renders yet. |
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287ee05596 | Removed unused test backend/tests/unit/test_finance_table_migration.py | ||
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328bac450a |
Stop auto-drying re-arming into a threshold it can never reach (#2770)
An H2D armed five 12-hour drying cycles inside four hours, one of them six seconds after the previous one ended, and none ran more than a couple of hours. Two things combine. The firmware ends a cycle when it decides the filament is dry rather than when the clock runs out, and reports no fault doing it -- across this printer's history the run length tracks how wet the spools were, from nearly the full 12 hours starting at 32% down to minutes once the unit sat at 10-13%. That part is the AMS doing its job. The loop is ours. An AMS reports higher relative humidity while it is warm than once it has cooled: the same unit read 10-13% cold and 15-20% through every cycle. With the threshold at 14% the reading at the moment a cycle ended was always still above it, so the next 30-second pass armed another 12-hour cycle. Nothing counted, nothing waited, and it only stopped when the box finally cooled enough to read 13%. Auto-drying now waits 30 minutes after a cycle ends before arming another on the same unit, and gives up on a unit after two consecutive cycles that bring the reading no lower -- logging why and sending a new notification, on by default because it reports that Bambuddy has stopped acting. Progress is judged against the lowest reading any cycle on that unit has ended at, not against the threshold, so a genuinely wet spool in a humid room coming down 40-37-35 keeps drying however far it still is from the target; comparing against the best so far rather than the previous end stops a sensor wobbling by one point reading as progress every other cycle. The suspension lifts by itself once the reading falls below the threshold. Neither guard can stop a running cycle, and a cycle Bambuddy cut short for a print, or that the user stopped by hand, is not counted against the unit -- so a farm that dries between queue jobs is unaffected. The threshold field now warns below 20%, and every cycle end logs the unit's temperature and humidity, which is what made this diagnosable. The same bundle showed unrelated tasks failing with "database is locked", each inside a 30.000-second Discord connect timeout. Alarms are raised from inside the loop that records sensor history, at a point where the new rows are added but not committed; the first read in the notification path flushed them to satisfy itself, opening a write transaction, and the provider was then contacted over the network with that transaction still open. SQLite allows one writer and 30 seconds outlives the 15-second busy timeout, so every other write in that window failed. The two reads that run before a provider is contacted no longer flush the caller's pending work, and the connect timeout is 5 seconds rather than 30 -- the body keeps the full 30, so image uploads on a slow uplink are unaffected. SQLite only; Postgres has no single-writer limit. |
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bf525661d3 |
Three fixes on top of the billing branch, all found by running the suite against
both dialects rather than one. Postgres upgrades never got as far as the finance schema. database.py added on_billing_charge_failed with BOOLEAN DEFAULT 1. The 1 is a SQLite-ism; Postgres answers DatatypeMismatchError, and _safe_execute deliberately re-raises anything that is not an idempotency error, so run_migrations died there and rolled the whole transaction back. No finance tables, no columns, and the app does not start. Six lines above, the same change gets is_voided right with an is_sqlite() branch, so this was an oversight rather than a decision. Now branched the same way. This also explains the four test_security.py::TestBackupKeyFiles failures reporting "column print_archives.cost_center_id does not exist". That column's migration exists and works -- it simply never ran, because every startup aborted before committing. Reproduced against Postgres 16 by building a pre-billing schema from dev and upgrading over it: fails without this, completes with it, and re-running the migrations or starting from an empty database are both clean. test_billing_run_id_migration.py failed on any Postgres-configured checkout. It builds its own SQLite engine, but run_migrations branches on the global dialect rather than the connection in hand, so on a box whose DATABASE_URL points at Postgres it emitted md5(random()::text) and btrim() into SQLite. Given the same fixture test_ldap_migration.py already carries for exactly this reason. The suite now agrees across dialects -- 9190 passed either way, where it used to be 9184 on one and 9183 on the other. The kill switch could not tell a print Bambuddy started from one it merely watched. Authorization fell back to a print_archives row in status="printing" matched on subtask_id. But on_print_start archives every print it observes, including ones started from Bambu Studio or Handy, and stamps them with the same status and subtask_id -- the code says as much where it notes "a print Bambuddy didn't dispatch". So a foreign print became authorized the moment its 3MF finished downloading, and _active_prints was rehydrated from it, making that permanent. The switch fired only inside the download race, and never afterwards. Neither test caught it: one stubs the authorization call to False, the other stubs the query to return an archive, so the real lookup was never exercised against a foreign print. Authorization now requires a marker Bambuddy writes itself: billing_run_id, minted per dispatch in the scheduler, or created_by_id carried over from the queue item. Failing that, it looks for a queue row in status="printing" on that printer -- committed before the MQTT send, and the only durable trace a library-file dispatch leaves, since those have no archive at send time and the row created for them moments later carries neither marker. That row cannot be tied to a subtask_id, so it defers rather than authorizes. Deferring also closes a false positive the previous version shared: a restart in the window between the send and the download left no archive at all, and a Bambuddy print was stopped as unauthorized. Stopping a print is irreversible and declining to act costs a log line, so ambiguity resolves that way. Tests cover an unmarked archive not being authorization and not entering _active_prints, either marker alone authorizing and rehydrating the fast path without touching the queue, an unmarked archive with a live dispatch deferring, a dispatch not yet archived deferring, and nothing at all being unauthorized. |
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406cf71149 | Merge branch 'dev' into feature/billing | ||
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604fa44593 |
Explain Bambu Cloud's CAPTCHA challenge instead of repeating it (#2790)
A reporter tried to connect to Bambu Cloud and got "We need you to confirm you
are not a robot" as an error toast, with no CAPTCHA anywhere to answer and
nothing to click. That sentence is Bambu's, not ours. Their anti-abuse layer had
flagged the network and was answering the sign-in with HTTP 418 and a challenge
body: {"captchaId": "...", "error": "We need you to confirm you are not a
robot"}.
Bambuddy had no idea what that was. The reply is well-formed JSON, so
_detect_cloudflare_challenge -- which triggers on an unparseable body, CF
markers, 403+cf-mitigated or 503+cf-ray -- never fired on it, and login_request
fell through to its generic error path, which lifts data["message"] or
data["error"] out and hands it to the UI verbatim. The user was left to conclude
their password was wrong or that Bambuddy was broken. Four sign-in attempts
inside eighteen seconds appear in their log, each one more evidence for the
thing that had flagged them.
is_captcha_challenge matches on the 418 status plus a challenge marker in the
body -- captchaId is the reliable one, the wording is matched too because Bambu
has shipped it under more than one phrasing. A bare 418 with no marker is
has shipped it under more than one phrasing. A bare 418 with no marker is
deliberately NOT reported as a CAPTCHA: telling someone to solve a challenge
that was never offered is the exact confusion this issue is about.
login_request, verify_code and verify_totp now return reason="captcha" with an
explanation covering the three things the reporter had no way to find out: the
credentials are not the problem, the block is keyed to the public IP address
rather than the account, and it clears by itself within a few hours.
Sign-in requests are then held back for 300s so Bambuddy stops deepening the
block. Keyed per origin, not per service: TOTP verification posts to
bambulab.com while everything else posts to api.bambulab.com, and a challenge
seen on one must not strand somebody halfway through a two-factor sign-in on the
other. Entries expire on read, so the map cannot grow past one per region. The
token endpoint is deliberately left ungated -- it is the way out.
The UI shows a persistent panel rather than a toast. A toast names a problem the
user cannot act on and then vanishes; this one stays put and carries a one-click
route to "Use access token instead", which is the only thing that works while
the challenge lasts, since that path does not touch the challenged endpoint.
MakerWorld meets the same challenge from the same edge and now shares the
detection. It used to require the literal word "robot" in the error text and
reported any other wording as an unexplained block.
The System Health scanner gets a bambu-cloud-captcha signature. The reporter's
bundle came back with zero findings while their log was full of the failure.
Its advice for a failed FTPS handshake was corrected at the same time: it still
blamed firewalls and outdated firmware, which the #2780 investigation ruled out
last release -- it is the printer's own file service wedging, and the fix is to
restart the printer. The wiki said so already; the health panel did not.
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14d0d14365 |
Power on a printer for jobs queued to a printer class (#2786)
Queue a print against a printer class -- "Any X1C", or a Slicer Pipeline whose target type is Printer class -- with every printer of that class switched off, and nothing happened. The job sat pending and no smart plug was touched, while the same file pinned to a specific printer powered that printer on within one queue check. The reporter's log holds both halves: thirteen minutes of the item being polled as (133, None, ...) and passed over, then a PATCH onto printer 2, then "Printer 2 offline, attempting to power on via smart plug(s)" on the very next tick. Same item, same plug, same Auto On setting. Powering a printer on had only ever been written inside `if item.printer_id:`. The model-based branch below it walks the same queue but its matcher classes an offline printer as a reason to keep waiting -- printers_offline collects the *name*, for the waiting reason -- and nothing on that path ever looks at plugs. _wake_printer_for_model adds it. The model query moves into _printers_for_model so the matcher and the wake step answer "which printers can this job run on" from one place: a job can only be woken onto a printer the matcher would also have considered. Candidates that failed the cross-model gate are excluded -- switching a printer on for a file that can never legally run on it leaves the job just as stuck, with the printer now drawing power. Two things it does that the fixed-printer branch does not: A printer awaiting plate-clear acknowledgment is skipped. Waking it buys nothing; it boots into IDLE and is held by the gate. That is what the reporter's log shows for the eighty minutes after their manual edit -- "printer 2 not available -- connected=True, state=IDLE, awaiting_plate_clear=True" every thirty seconds to the end of the capture. The flag is Bambuddy-side and persisted, so it is readable while the printer is still off. At most one printer per pass, because each wake blocks the queue loop for the boot wait. Several queued jobs bring several printers up over the following minutes rather than a whole shelf at once. A failed power-on opens a 600s per-printer cool-off. Without it the walk is by id, the pass spends its single attempt on the same broken printer every time, and a healthy sibling two slots down is never reached -- one unreachable plug starves its whole model, and costs a 180s boot timeout out of every 30s pass. Entries expire on read: a printer inside its cool-off is skipped before the power-on is reached, so a live entry can never be overwritten by a success. The failed printer is deliberately NOT added to busy_printers. It is off, not busy; labelling it busy would misdescribe it in every later item's waiting reason and, because an all-busy reason is treated as needing no user action, suppress the notification too. Assignment is left to the next pass. AMS trays arrive with the first status push after connect, so matching filament against a printer that booted five seconds ago can reject the printer we just woke. Finally, the waiting reason separates "Offline: X1C-1" from "Offline, no Auto On smart plug: X1C-2". Those are different problems and only the second is one the user has to go and fix -- it was also the first question the reporter had to be asked, and the queue could not answer it. Tests cover the wake, the plate-clear skip in both gate states, all-candidates- awaiting-plate-clear waking nothing, one wake per pass, the starvation case over two passes, cool-off expiry, no-Auto-On-plug being left alone and named, an incompatible sliced model waking nothing, connected printers being left alone, scheduled-for-later and manual-start jobs switching nothing on, and a regression pin on the fixed-printer branch. |
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91acac2b35 |
Stop retrying a printer whose FTPS handshake fails, and name the cause (#2780)
Two printers went on printing while every archive they produced held nothing but a filename. Bambuddy opened port 990, the printer accepted the connection and answered with something that was not TLS, and connect() logged a warning and returned False -- indistinguishable, to every caller, from "the file is not at this path". So the 3MF lookup walked all six filename variants across five directories with four retries each, the cover endpoint ran its own sixteen-path sweep, and the timelapse scan added four more, all against a sixteen-path sweep, and the timelapse scan added four more, all against a printer that could not have answered any of them. One reporter's log carried 1813 identical handshake failures, another's 3511. The evidence says this is the printer's own file service getting stuck, not a model, firmware or TLS-configuration problem. In #2780's bundle the same two printers ran clean from 22 July to 4 August and failed again from the 5th; a second bundle shows an X2D serving files for five days, flipping on 19 July, then failing every connection for eight days with zero successes. The same models and firmware appear in roughly twenty other bundles with no occurrences at all. Both bundles show it happening with cap_tls_v1_2 in effect -- the X2D and H2C entries in ftp_profiles were added on analogy with P2S to fix exactly this symptom, and the reporter's own debug line proves they do not. An ssl.SSLError from connect() now opens a five-minute cool-off for that printer. Subsequent connects return False without touching the network, so a wedged printer is contacted twice an hour instead of hundreds of times a minute, and the single warning that is logged names the remedy. The cool-off is dropped on expiry rather than kept, so the map holds one key per currently wedged printer. ftps_handshake_blocked() lets the sweeps stop: the 3MF lookup abandons the remaining paths and skips the directory-walk fallback, the cover endpoint returns 503 naming the file service instead of a 404 that reads as "this print has no thumbnail", and the timelapse scan separates 503 (cannot reach the printer) from 404 (no timelapse directory) -- one 500 used to cover both, which is what the reporter hit when reproducing. The Connection Diagnostic completed a bare TCP connect to 990, which is why it reported the port green throughout: the port is open, it is what is behind it that is broken. It now completes a real implicit-TLS handshake using the model's own ftp_profiles cap, so a pass means the FTP client would also get through. An open port that cannot negotiate reports warn with reason no_tls, selecting a new message in all 13 locales that points at a printer restart rather than at the firewall. No login is attempted, so this stays valid in the pre-save Add Printer flow. The cool-off tests run against a real socket that accepts on 990 and replies with a plaintext FTP banner, reproducing WRONG_VERSION_NUMBER rather than mocking ssl. The autouse fixture clearing _mode_cache now clears the cool-off map too -- every test here talks to 127.0.0.1, so one left behind would make the next test's connect() a no-op. |
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a9e23910fc | Merge branch 'dev' into feature/billing | ||
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2e5d36d680 | implemented pr (minor) feedback | ||
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dd1d40b0d4 |
implemented pr (worth fixing) feedback
update commit |
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9c86a05657 |
Check filament deficit for Library-backed queue items (#2779)
A job needing 20.5 g was dispatched onto a spool holding 9 g and the printer started. _resolve_source_3mf returned LibraryFile.file_path verbatim, but that column stores a path relative to base_dir -- so it resolved against the process working directory, found nothing, and compute_deficit_for_queue_item treated a missing source as "nothing to verify" and returned no deficit. Every library-backed queue item was affected: Slicer Pipeline jobs, which are always library-backed, and everything added through the Library's bulk Add to queue. Both callers share the resolver, so the Play button on the queue was as blind as the auto-dispatcher. Archive-backed items (print history, VP intake) resolved correctly and were never affected, and neither was PrintModal, which resolves the file on its own path. The library branch now uses the same idiom as the eleven other readers of file_path -- absolute stays, relative joins base_dir. The join carries a SEC-PATH-OK marker: the value is DB-stored and generated by the Library ingest, and it is already what resolves the file for upload, so the check has to resolve it identically or it is not checking what gets printed. A source that is configured but absent now logs a warning naming the item and the resolved path. It still dispatches, because the upload needs the same file seconds later and fails there, where blocking would strand a queue on a moved file -- but a safety check that skips itself must not do so in silence, which is what hid this for every library-backed item. Tests cover the relative path (the reporter's 20.5 g against 9 g), the absolute path against a base_dir the file is not under, and the missing-source warning. The existing cases all used archives with absolute paths, which is the gap the bug lived in. |
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306b9ba7fd |
Accept Forgejo tokens scoped to a single repository (#2775)
ForgejoBackend.test_connection asked GET /user who the token belonged to
before asking whether the token could reach the repository, and treated a 403
there as fatal. A Forgejo v15 repository-scoped token may only carry
read/write on issues and repositories, so it 403s on /user -- and was rejected
despite reaching its own repository fine, which is all a backup needs: the push
path uses the Contents API and restore reads commits, trees and blobs, all
under /repos/{owner}/{repo}. That /user call was the only one in the whole
provider layer.
The probe stays, because a 401 from it is genuinely conclusive and names a bad
token before the repo call has to guess -- Forgejo v15+ hides a private repo
behind 404 rather than 403, so the repo call cannot always tell those apart.
Every other status now falls through to the repo check.
Two additions keep the messages as sharp as before: the repo call's own 401 is
mapped to "Invalid access token" instead of a generic API error, and the 404
names write:repository and the scoped-to-another-repository case, mentioning a
possibly-invalid token only when /user did not confirm the identity.
The token hint under the field was one shared string reading "fine-grained
token with Contents read/write" -- GitHub's advice, shown to Gitea, Forgejo and
GitLab users too. It is now per provider via PROVIDER_TOKEN_HINT_I18N_KEY,
following the existing repo-URL placeholder map, translated in all 13 locales.
Tests pin the repository-scoped token connecting, a transient /user status not
blocking the repo call, both 404 wordings, and the repo-call 401; a frontend
test switches providers and asserts the hint follows.
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9beb001a17 |
Record who queued a file from the Library and the webhook API
PrintQueueItem.created_by_id is what the queue:read_own / queue:update_own / queue:delete_own permissions filter on, but only three of the paths that create queue items were setting it. The Library's bulk "Add to queue" required Permission.QUEUE_CREATE and then bound the dependency to `_`, discarding the user, so every item it created was ownerless -- and invisible to the person who added it if their permissions are scoped to their own work. That is the one path built for adding many files at once, which is where it was hardest to notice. The webhook queue endpoint has no request user, but APIKey.user_id records the key's owner, which is the acting identity everywhere else the key is used, so its items are credited to that owner. Keys minted before per-user ownership have no user_id and their items stay ownerless. The virtual-printer path is left as-is on purpose. VirtualPrinter carries no owner, and the obvious substitute is wrong rather than incomplete: one admin typically configures the VP while everyone sends prints through it, so crediting those to the admin would make the "added by" column lie and put other people's jobs in the admin's own queue. Existing NULL rows are not backfilled -- there is no record of who created them, and the ownerless case is already handled throughout. Tests pin both fixed paths and the two cases that must stay ownerless (auth disabled, legacy key). |