Files
OrcaSlicer/doc/developer-reference/filament_id.md
SoftFever f7c1b290fd v3.2: vendor-bundle re-mint under the product-triple rule
Every remaining legacy filament_id outside the BBL/QD_* islands re-derives
from its product triple (filament_vendor / filament_type / family name),
completing the content-addressed id model of filament_id_plan_v3.md:

- Relocation pre-step: 14 fdm_filament_* template forks (Cubicon x3,
  Prusa x6, RH3D x6 minus the pc fork already re-homed) stop declaring
  ids; the 16 presets that rode Prusa's forks now declare the id they
  already resolved (verified zero effective-id drift over all 5892
  instantiated presets).
- --drop-redundant-ids: 6 Custom/MyToolChanger generics drop copied GF
  ids and ride their OFL families.
- --remint over all 62 non-island vendors: 2647 declarations re-derived;
  identical products converge cross-bundle (showcase: PolyLite PLA is now
  OF5CgdDq in OrcaFilamentLibrary, Qidi, OrcaArena and Snapmaker).
- Prusament @XL completions surfaced by the relocation: filament_vendor
  ["Prusa Polymers"] on the 8 @XL declarers; Prusament PA-CF typed
  PA11-CF (the product is Prusament PA11CF) and PC-CF typed PC-CF
  (-CF family typed as base polymer); each family converges on one id.
- Succession: 331 ids retired with mode-rule successors, 355 never-shipped
  v1 mints forgotten with chain splicing, 151 GF-shaped ids released to
  the island space with hints, 27 curated BBL-generic -> OFL-generic
  hints (GFL99 -> OFDSrzZ8 class). New --retire "OLD=NEW" maintenance
  mode records lineage for OGFC99/OGFG99/OGFN99 (the shipped ids of OFL's
  Generic PC/PETG/PA in released versions, whose claims migrated in v3.1
  while Cubicon's inert fork declarations kept them alive).
- Retiring the P-hex system ids removes the last system ids from
  check_ams_filament_valid's destructive P-gate.
- AMS-ambiguity fixes surfaced by convergence (validator -f): 4 presets
  riding another family's id through inherits now declare their true
  family id (Elegoo Generic ASA-CF/PETG-CF, Snapmaker PolyLite Dual PLA /
  PolyLite J1 PLA); 9 Cubicon @base presets and Dremel Generic PLA, which
  duplicate their per-printer variants on the same printers, split onto
  the salt-1 iteration of their triple (sanctioned by the mint-conformance
  check; --remint now leaves salt-conformant declarations alone).

Gates: assign_filament_ids --check 0; orca_extra_profile_check 0;
116 python unit tests; config-equivalence over all 5892 instantiated
presets (byte-identical configs except the 14 sanctioned Prusament
vendor/type corrections; setting_id and compatible_printers unchanged;
per-family convergence and ledger conservation verified); profile
validator base/-f/-r(BBL)/-r(Qidi) all green; libslic3r_tests 48610
assertions; Moonraker OFL generic map check; custom-preset fixture
archives v1.9.0-v2.4.1.
2026-07-04 21:09:29 +08:00

13 KiB

Filament IDs (filament_id)

filament_id identifies a material family: one commercial product line = one id, shared by all of that material's per-printer / per-nozzle variants. Devices use it to match a physical spool or tray to a filament preset. It is never per-color, per-printer, per-nozzle, or per-preset (per-preset identity is setting_id).

This page is the rule for authoring filament_id in system profiles (resources/profiles/**). CI enforces everything below; the short version is:

Important

Never write a filament_id value by hand. New families get their id from python scripts/assign_filament_ids.py; existing families already have one — inherit it.

Who consumes the id

Every device integration funnels a tray material id (tray_info_idx) through the same matching pipeline (PresetBundle::sync_ams_list and friends):

Ecosystem Where the id comes from
Bambu AMS device side (RFID / user tray setting) — the GF* catalog
Qidi box built from device enums (QD_*); needs an exactly matching visible preset
Creality CFS runtime brand/type scoring returns the current preset's id
Klipper (AFC / Happy Hare) runtime lookup by filament type
Snapmaker runtime color/vendor/type match

Tray-to-preset matching is printer-scoped, but several consumers match globally by id alone, first hit wins: tray display names, filament_is_support, vitrification warnings, and multi-nozzle filament grouping in the slicing pipeline. Two different materials sharing one id feed wrong data to those consumers even when the presets live in different vendors — so cross-material id sharing is never safe. Within one printer, duplicate ids silently break AMS matching (first match wins, the tray-edit dialog hides the second preset); the profile validator's -f check rejects this.

Do I need a new id? The one-question test

Would a user consider this a different spool product than anything already in the tree?

Different polymer, different sub-brand (Basic / Matte / Silk / HF), fiber-filled sibling, or a second selectable diameter → new family, new id. The same spool tuned for another printer or nozzle → join the existing family (inherit its @base, write no id key). Tuning a generic material → join the OrcaFilamentLibrary family (inherit Generic X @System, keep the Generic X base name, write no id key).

Situation id
Per-printer / per-nozzle variant of an existing material same id (inherit, never write the key)
Sub-brand or product line (PLA vs PLA Matte vs PLA Silk vs PLA HF) new id each
Color never a new id
Second diameter selectable on the same printer (1.75 + 2.85) sibling family, new id
"High-speed" tuned for a different printer model same id (it is a printer variant)
"High-speed" selectable alongside the normal preset on one printer new id (it is a product line)

Structure rules

  1. Only family roots carry the key. Root presets (any preset not marked "instantiation": "true", typically <Family> @base with "instantiation": "false") declare filament_id; instantiated variants inherit a root and never write the key. A family may have several roots (e.g. per-series bases) — all of them must declare the identical id.
  2. The family name is the base name: the preset name with everything from the first (optionally space-preceded) @ stripped. MyBrand PLA @Orca 3D Fuse1 and MyBrand PLA@HS both belong to family MyBrand PLA.
  3. Within a family, variants' compatible_printers are pairwise disjoint — per printer preset, at most one compatible instantiated preset per id. The C++ validator (-f) enforces this.
  4. Generics belong to OrcaFilamentLibrary. A vendor tuning a generic material inherits Generic X @System, keeps the Generic X base name (that alias is what hides the library preset on your printers), sets a non-empty compatible_printers, and writes no id key. A vendor-branded filament never rides a generic family id.
  5. Ids follow the product identity. The id is a pure function of the product triple (filament_vendor, filament_type, family name) — correcting any of them re-mints the id by design, and --update-snapshot records the old id in the shipped succession ledger with its successor so device trays, calibration records, and user presets keep resolving (renamed_from still gates preset-name compatibility as before). A shipped id is never recycled for a different material: retired ids are blocked forever.

Minting — nobody invents ids

New ids are deterministic, computed exactly like the setting_id precedent (scripts/assign_vendor_setting_ids.py):

FILAMENT_ID_NAMESPACE = uuid5(setting-id NAMESPACE, "filament_id")
                      = c4d3ff49-4c32-5534-a3e3-00894157ab97
filament_id = "OF" + base62_6( uuid5(FILAMENT_ID_NAMESPACE,
                  "filament_product/<filament_vendor>/<filament_type>/<family_name>") )

base62_6 is the low 6 base62 digits (alphabet 0-9A-Za-z) of the UUID taken as a big-endian integer, most-significant digit first — 8 chars total, within the AMS length limit. The triple comes from the family root's flattened config: <filament_vendor> is the filament manufacturer ("Polymaker", or "Generic" for generics — never the printer brand), <filament_type> the material type, <family_name> the root's base name; the two config values are inheritable list options and the first element counts. The key contains no bundle name, so the same product mints the same id in every bundle — hoisting a family into OrcaFilamentLibrary never changes its id. On the rare collision with any existing or retired id, the minter salts the input (…/1, …/2, …) until free and the result is frozen in the file. Example: Polymaker/PLA/PolyLite PLA mints OF5CgdDq.

Workflow for a new family:

# 1. Author the family with NO filament_id key anywhere.
python scripts/assign_filament_ids.py                    # 2. mint + insert ids into the family root(s)
python scripts/assign_filament_ids.py --update-snapshot  # 3. record the new claims in the ledger
python scripts/assign_filament_ids.py --check            # 4. verify — the same checks CI runs
# 5. Commit the profile edits together with scripts/filament_id_snapshot.json.

--mint "filament_vendor/filament_type/family_name" prints the id a triple would mint without touching anything. The default run is idempotent and never rewrites a valid existing id. Maintenance modes (normally only used by id migrations): --remint VENDOR re-derives a vendor's declared ids from their triples (a declaration already equal to a salt iteration of its own triple is conformant and left alone — deliberate salt splits keeping two presets of one product apart for per-printer AMS matching survive), --drop-redundant-ids VENDOR deletes declarations that merely re-declare an inherited OFL id, --add-hint "OLD=NEW" records a cross-island succession hint, and --retire "OLD=NEW" records succession for a shipped non-island id that vanished while another declarer kept it alive (lineage the automatic claim vote can no longer see).

If you skip the tooling, CI fails and prints the remedy: the expected id for your family, and the instruction to run python scripts/assign_filament_ids.py --update-snapshot and commit the resulting diff.

Reserved namespaces — never mint or hand-write into

Space Owner Rule
GF* Bambu AMS/RFID catalog BBL vendor only; byte-copies elsewhere only where the snapshot already sanctions them
QD_* Qidi device protocol frozen device contract; Qidi vendor only
P + 7 hex chars (case-insensitive), "null" user-created custom filaments (CreatePresetsDialog.cpp) never appears in system profiles
every already-shipped id grandfather snapshot frozen as-is; new claims need maintainer sign-off
every retired id resources/profiles/retired_filament_ids.json never used again, for anything

The succession ledger

resources/profiles/retired_filament_ids.json ships with the app. Each retired id maps to {"claims": [...], "successor": <id|null>} — successor chains are followed to the live end — and a hints map carries the same forwarding for ids Orca cannot retire because another island owns them (e.g. a GF* id whose material also exists as an OFL family). The client consults the ledger only on resolution miss (AMS tray sync, tray-id type lookup, calibration history, filament-id preset lookup): a live preset always wins first, so BBL installs resolve GF* natively and behavior is unchanged wherever the raw id still exists. This is what makes identity-driven re-mints (structure rule 5) safe: the old id keeps resolving to the family's current preset instead of degrading to a Generic <type> fallback. The file is append-only and maintained exclusively by --update-snapshot / --add-hint / --retire.

How CI enforces this

Profile CI (check_profiles.ymlscripts/orca_extra_profile_check.py) runs check_filament_ids() tree-wide. Its ground truth is scripts/filament_id_snapshot.json — the sanctioned state: the id state derived from the tree must equal the snapshot exactly, in both directions. Any change to the id landscape therefore surfaces as a diff to that file, and that snapshot diff is what maintainers review and gate in a PR. Never edit the snapshot by hand — --update-snapshot regenerates it deterministically (running it twice changes nothing).

The checks, in brief:

  • Format — every id is either in the snapshot, OF + 6 base62 chars, BBL's, or Qidi QD_*.
  • Snapshot equality — tree claims == snapshot claims and tree triples == snapshot triples, both directions: any filament_vendor/filament_type/family-name change surfaces as a snapshot diff.
  • Mint conformance — a non-grandfathered OF* id must equal the mint (or a salt iteration) of its declarer's product triple; the error prints the expected id.
  • Retired reuse — any tree id present in resources/profiles/retired_filament_ids.json is an error. Ids that fully vanish from the tree are appended there by --update-snapshot; the file is append-only.
  • Alias hygiene — any vendor preset riding an OFL family id must keep the library preset's base name, a non-empty compatible_printers, and no own id key (structure rule 4); the error names the rename as the cause.
  • Triple integrity — every declarer outside the BBL/QD_* islands must resolve a non-empty filament_vendor and filament_type (generics use "Generic"), and all declarers of one family within a bundle must agree on the triple.
  • Succession integrity — retired successor chains terminate at a live id (or null) with no cycles; hints keys are live, island-owned ids.
  • Reserved namespacesGF* outside BBL, QD_* outside Qidi, P<7-hex> or null anywhere, unless that exact claim is grandfathered in the snapshot.
  • Structure — no filament_id key on instantiated presets; no declared-vs-inherited id drift; every instantiated system filament must resolve an effective id through its inherits chain (an id-less one is a hard load error in C++ that discards the whole vendor bundle).

Sharing a reserved-catalog id with a new family or vendor (e.g. shipping a Bambu-cataloged product under another vendor with its authentic GF* id) is refused by --update-snapshot unless you pass --allow-shared-catalog — and it still lands in the snapshot diff for maintainer review. Any other new sharing of an existing id is caught by the mint-conformance check instead.

FAQ

  • A new color of an existing product? Never a new id — colors are not families.
  • A second diameter (1.75 mm and 2.85 mm) of the same product? A sibling family with its own id: two diameters are separately selectable spool products.
  • A high-speed tune of an existing material for another printer model? Same family: inherit the family's root, write no id key.
  • A tuned generic ("our profile for Generic PLA")? Inherit Generic PLA @System, keep the Generic PLA base name, set compatible_printers, write no id key.
  • I need to rename a family (or fix its filament_vendor/filament_type). Add renamed_from for the name, run --remint <Vendor> then --update-snapshot: the id re-derives from the corrected identity and the old id lands in the succession ledger pointing at the new one. Commit the profile, snapshot, and ledger diffs together.
  • CI says my family needs an id. Run python scripts/assign_filament_ids.py, then --update-snapshot, and commit both diffs. Do not type an id by hand.

For general profile authoring, see the profile development guide on the OrcaSlicer wiki.