* Add opt-in printer overrides for filament tool-change settings
Allow printer presets to define uniform ramming, loading, unloading,
cooling, purge, filament scripts and pressure-advance enable settings
without duplicating material presets. Apply overrides during preset
composition and FDM normalization, and expose the switch in Multimaterial.
Keep the feature disabled by default. Omitted or empty override vectors
preserve material settings; a single value applies to every filament,
including an explicitly empty script. Reject multi-value overrides.
Preserve empty float vectors across project serialization and initialize
empty nullable filament overrides before resizing them, preventing preset
cache generation from accessing an empty vector.
Include focused override tests and document the configuration semantics,
Prusa MMU3 integration and INDX tool-change behavior.
Co-authored-by: Codex <codex@openai.com>
* Add Prusa MMU3 and CORE One INDX profiles with shared material tuning
Add MK4 MMU3 and four-tool/eight-tool CORE One INDX printer definitions,
process presets and printer resources. Reuse ordinary MK4 and CORE One
printer/process inheritance while retaining device-specific startup,
shutdown, tool-change and wipe-tower behavior.
Move uniform MMU3 tip forming and INDX handling into machine filament
overrides. Keep MMU3 pressure advance and purge material-specific, retain
INDX material tuning, and share surviving materials with migration aliases
for retired MMU3 and XL tool-change copies.
Preserve unrelated Prusa filament identities, scalar value formats and
inheritance rather than applying broad profile cleanup.
Validation: Prusa profile checks and all 69 printer smoke slices passed.
The final cleanup preserved emitted commands with identical filament
selections.
Co-authored-by: Codex <codex@openai.com>
* Refresh filament controls after loading printer presets
Synchronize the plater filament controls after preset loading, even when the internal filament list already matches the nozzle count.
Co-authored-by: Codex <codex@openai.com>
* Fix nullable Z-hop overrides in Prusa filament variants
Represent empty overrides as nil for each inherited extruder variant so
the native profile loader preserves machine Z-hop settings.
Validation: full profile checks, native loading, and 1,115-printer slicing
sweep passed.
Co-authored-by: Codex <codex@openai.com>
* Separate Prusa profiles from machine-owned filament overrides
Retain profile tuning without unsupported machine override keys. Move supporting code, tests and override documentation into a separate feature change.
Co-authored-by: Codex <codex@openai.com>
* Default INDX tools to hardened high-flow nozzles
Use the High Flow variant for every INDX tool and its dedicated filament presets. Raise Generic PLA throughput to 28 mm3/s.
Co-authored-by: codex <codex@openai.com>
* Use normal filament-change lifts for INDX and MMU3
Avoid duplicate INDX retraction and account for its 12.5-second dock swap in print estimates.
Co-authored-by: codex <codex@openai.com>
* Set z_hop_types for the machine too
* Fix profile check failures in the Prusa CORE One filament presets
---------
Co-authored-by: Codex <codex@openai.com>
Co-authored-by: SoftFever <103989404+SoftFever@users.noreply.github.com>
Co-authored-by: SoftFever <softfeverever@gmail.com>
* Add Prusa CORE One MMU3 profiles
Dedicated MMU3 CoreOne profiles (like those used on prusaslicer 3).
Tested with latest coreone and mmu3 firmware, and works as well as prusaslicer.
Correct model default materials to reference compatible MMU3 filaments.
Co-authored-by: Codex <noreply@openai.com>
* Consolidate the CORE One MMU3 generic filaments
The bundle shipped two families covering the same four MMU3 variants for
each generic material: a standalone `Generic X @MMU3` and a
`Prusa Generic X @CORE One MMU3`. The `Prusa Generic` spelling was renamed
away from the rest of the tree, so re-name the CORE One-tuned family to
`Generic X @Prusa CORE One MMU3` (they inherit the CORE One tune and now the
shared generic product id) and drop the standalone files, which only carried
raw material-base values. Repoint the model default_materials and re-register
the index.
* Fix the CORE One MMU3 0.4 default process
default_print_profile named `0.20mm Speed @COREONE0.4 + MMU3`, but the
preset is `0.20mm SPEED @COREONE0.4 + MMU3`. Preset lookup is case-sensitive,
so the intended default never resolved and compatibility selection silently
picked another tier.
* Normalise the CORE One MMU3 process names
Match the bundle's all-caps quality ladder: `Fast Detail` -> `FAST DETAIL`,
`Speed` -> `SPEED`, `Structural` -> `STRUCTURAL`, `Balanced` -> `BALANCED`.
Filenames now equal their preset name, as every pre-existing Prusa process
file does, and the index is rebuilt for the renamed entries.
---------
Co-authored-by: Codex <noreply@openai.com>
Co-authored-by: SoftFever <103989404+SoftFever@users.noreply.github.com>
Co-authored-by: SoftFever <softfeverever@gmail.com>
* profiles: enforce globally-unique, per-vendor-namespaced setting_id
Many non-Bambu vendors copied Bambu's generic setting_ids (GFSA04 alone
appeared in 1557 files), so setting_id was not globally unique. This
namespaces every vendor's ids and reserves Bambu/OrcaFilamentLibrary space.
- Reserve "G*" (Bambu) and "O*" (OrcaFilamentLibrary) id spaces.
- Assign each other vendor a 2-char prefix (first+last letter, collision
resolved) and renumber every instantiated preset to <PREFIX><NNNN>.
- Strip setting_id from base profiles (instantiation:false) per Bambu's
convention; assign one to instantiated presets that lacked it.
- Remove the pre-existing misspelled "settings_id" key (91 files).
- filament_id is left untouched (it is a per-material id).
- Add one-time migration script scripts/assign_vendor_setting_ids.py with a
persisted registry resources/profiles/vendor_prefixes.json. Re-runs freeze
existing ids; only new vendors/profiles get new ids.
- Bump version in each changed vendor index file.
- Extend scripts/orca_extra_profile_check.py with a CI guard: global
uniqueness, in-namespace, no base setting_id, no gaps, no settings_id typo.
7425 profile files changed across 61 vendors; 0 cross-vendor collisions;
validator clean; migration idempotent. BBL and OrcaFilamentLibrary id spaces
untouched.
* profiles: add setting_id authoring guide for new vendors / profiles
* profiles: drop in-repo README; setting_id guide now lives in the wiki
* profiles: derive setting_id deterministically from vendor/type/name
* bump profile version
* Support 'Default' filament option (index 0)
Treat filament index 0 as the new "Default" (use active object/part filament) instead of using 1. Update config defaults and tooltips for wall/sparse/solid infill filament options (min/default -> 0, tooltip explains "Default"). Adjust normalization and propagation logic to respect explicit feature overrides and only apply base extruder when feature values are zero; only copy sparse->solid infill when sparse > 0. Introduce FeatureFilamentOverrideMask and clamp_feature_filament_to_valid to resolve and clamp feature filaments. Update UI lists and selection behavior to expose a "Default" entry and handle zero-based indices in PartPlate and Plater.
* enable_filament_for_features option
Co-Authored-By: LixNix <105106115+lixnix@users.noreply.github.com>
* \n
* Allow wipe_tower_filament to equal nozzle count
Relax the assertion in Print::extruders to permit wipe_tower_filament == config().nozzle_diameter.size(). The configuration value is 1-based and the code subtracts 1 when pushing the extruder index, so equality should be valid and selecting the last nozzle should not trigger an assertion.
* Revert "Allow wipe_tower_filament to equal nozzle count"
This reverts commit 2c976574327a8bcdc74a1b296bf1aaff7752a94e.
* Revert "enable_filament_for_features option"
This reverts commit 01c13baeddb8e26793f752deab788ee4d086975b.
* Migrate legacy feature filament defaults
Add migration logic to convert legacy feature filament selections from 1 to 0 for older 3mf files. Introduces a local migrate_legacy_feature_filament_defaults lambda in src/OrcaSlicer.cpp and src/slic3r/GUI/Plater.cpp that scans keys (wall_filament, sparse_infill_filament, solid_infill_filament, support_filament, support_interface_filament) on configs/objects/volumes, updates values, counts conversions and logs the result. Also adds a Semver check for "2.4.0-dev" in OrcaSlicer to trigger the migration for files older than that version. This preserves expected default filament selections when loading older project files.
* Update OrcaSlicer.cpp
* Extract migration helper to ConfigMigrations
Centralize legacy feature-filament default migration by moving the duplicated lambda into ConfigMigrations::migrate_legacy_feature_filament_defaults (src/libslic3r/Config.cpp) and declaring it in Config.hpp. Update OrcaSlicer.cpp and slic3r/GUI/Plater.cpp to call the new function instead of inline lambdas. The helper converts specific feature filament keys (wall_filament, sparse_infill_filament, solid_infill_filament, support_filament, support_interface_filament) from int 1 to 0 and returns the count of conversions to avoid duplicated migration logic.
* Remove DynamicFilamentList1Based and consolidate lists
Delete the specialized DynamicFilamentList1Based struct and its global instance. Update Choice registrations to use the single dynamic_filament_list for wall, sparse_infill and solid_infill filaments, and remove the extra update call for the removed instance. This consolidates filament choice handling and removes duplicated logic in Plater.cpp.
* move it
* fix objects
* Update Config.hpp
* Update profiles
Reduce the size of current and new JSONs by standardising them with 1 tab indentation instead of 4 spaces.
This effectively reduces the size by almost 20 MB.
| Current | New |
|---|---|
| 85.2 Mib | 67 Mib |
Used [JQ](https://jqlang.org/) `--tab` to automatically format every current JSON.
> [!NOTE]
> Some profiles had the arrays on the same line, but those created by Orca were in the standard format (each object below the previous one). In some cases, this increases the number of tabs due to the new lines, but the increase is negligible, and this way both the base profiles and those created by Orca maintain the same style.
* explicitly set the machine_max_junction_deviation
* reworked the support settings for all profiles
* forgot the bottom interface spacing. set more accurate values
* set the wrong value, meant support_bottom_z_distance
* bugfix for TPU filament overrides
* higher voluemetric flow
* bugfix for to high speed at internal solid infill
* Update Prusa.json
* updated firmware check and nozzle settings
* bugfix speed and standard for 0,15mm profiles of the 0.4mm nozzle
* variables not defined in orcaslicer
* bug fix volumetric speed, wrong value
* added high flow base process
* added highflow base process
* added first full draft of high flow profiles, further tests are necessary
* changed 0.35mm to 0.32mm for 0.6mm nozzle
* minor changes to initial layer speeds
* changed 0.35mm to 0.32mm for 0.6mm nozzle
* furcer changes on accelartion and speed
* added 0.35mm Standard @MK3.5 again for not breaking anythin for current users
* Update 0.35mm Standard @MK3.5.json
forgot to set the layer_height after creation of the 0.35mm profile
* minor fixes in filament overrides
* added profiles for high flow nozzles on the Prusa MINIIS
* added fan_speedup_time for MINIIS and MK3.5
* changes to support interface, pattern and distance
---------
Co-authored-by: Noisyfox <timemanager.rick@gmail.com>
* bugfix for TPU filament overrides
* higher voluemetric flow
* bugfix for to high speed at internal solid infill
* Update Prusa.json
* updated firmware check and nozzle settings
* bugfix speed and standard for 0,15mm profiles of the 0.4mm nozzle
* variables not defined in orcaslicer
* bug fix volumetric speed, wrong value
* added high flow base process
* added highflow base process
* added first full draft of high flow profiles, further tests are necessary
* changed 0.35mm to 0.32mm for 0.6mm nozzle
* minor changes to initial layer speeds
* changed 0.35mm to 0.32mm for 0.6mm nozzle
* furcer changes on accelartion and speed
* added 0.35mm Standard @MK3.5 again for not breaking anythin for current users
* Update 0.35mm Standard @MK3.5.json
forgot to set the layer_height after creation of the 0.35mm profile
* bugfix for TPU filament overrides
* higher voluemetric flow
* bugfix for to high speed at internal solid infill
* Update Prusa.json
* updated firmware check and nozzle settings
* bugfix speed and standard for 0,15mm profiles of the 0.4mm nozzle
* variables not defined in orcaslicer
* Whitespace cleanup in Prusa profile
```
$ diff -u Prusa.json <(jq --indent 4 < Prusa.json) | wc -l
0
```
* Add Prusa MK4S profiles
There were generated from the PrusaSlicer profiles[0] using some scripts
which try to faithfully convert the profiles[1]. The high flow nozzle
settings have been modeled as a separate printer model.
A few things I'm aware of that haven't been converted:
- Filament multi-material settings (eg loading speeds)
- High-flow and abrasive nozzle check in gcode, which, as far as I
know, isn't available in the current firmware anyways
I've also found that disabling z-hop on layer change in OrcaSlicer seems
more similar to the behavior in PrusaSlicer (which allows travel
distance limitations to override that setting), so I've disabled that.
Fixes#7391
[0]: https://github.com/prusa3d/PrusaSlicer/blob/0bca90da1338f0bf31e3a820a9e6e69f3a4dc2c9/resources/profiles/PrusaResearch.ini
[1]: https://github.com/rcloran/SuperSlicer_to_Orca_scripts/tree/20d2881
Fix issue `Preset name "0.20mm Speed @MK3S 0.4" was marked as renamed from "0.20mm Standard @MK3S", though preset name "0.20mm Detail @MK3S 0.6" was marked as renamed from "0.20mm Standard @MK3S" as well.`
* added Prusa Mini with Input Shaper to profiles
* refactoring to more reusable settings
* added more processes, changed settings
* Update 0.15mm Speed @MINIIS.json
* Update 0.10mm Speed @MINIIS.json
* changed to cubic because of speed
* further changes after reviewing prusa slicer settings
* simplified machine settings
* retraction speeds according to prusa slicer
* changed max flow according to prusa slicer
* after clearification at the prusaslicer repository M900 got removed
* precise wall per default
* enable reverse overhang on odd by default
* added settings from prusa slicer
* changed cooling setings
* changed default to inner-outer-inner wall
inner-outer-inner gives pretty good overhangs with better surface
* new profiles for bigger nozzles, changed some cooling settings according to prusaslicer
* profiles for different nozzles sizes, better speed settings
* initial layer height was wrong
* wrong initial layer height
* set the correct accelerations
* changed firmware version number
* using pressure advance UI setting instead of custom filament g-code
* Update Prusa Generic PC.json
* Update Prusa Generic PC.json
* changed max flow for PC
* added PVA filament profiles
* bug fix in filament loading
* changed line width according to prusa slicer
* changed heatbed temperature for Minis capabilities
* set default support to snug
* changed default filament setting to the correct value
* changed line with to the correct values according to prusaslicer profiles
* Update Prusa MINIIS 0.4 nozzle.json
updated firmware version
* updated firmware version
* changed first layer height according to optimal value of the respective nozzle size
* changed wall loops to 2 for bigger nozzles
1. Change default ensure_vertical_shell_thickness value back to ensure_all as suggested by @igiannakas
2. Change default sparse_infill_pattern vaule to ipCrossHatch
* added Prusa Mini with Input Shaper to profiles
* refactoring to more reusable settings
* added more processes, changed settings
* Update 0.15mm Speed @MINIIS.json
* Update 0.10mm Speed @MINIIS.json
* changed to cubic because of speed
* further changes after reviewing prusa slicer settings
* simplified machine settings
* retraction speeds according to prusa slicer
* changed max flow according to prusa slicer
* after clearification at the prusaslicer repository M900 got removed
* precise wall per default
* enable reverse overhang on odd by default
* added settings from prusa slicer
* changed cooling setings
* changed default to inner-outer-inner wall
inner-outer-inner gives pretty good overhangs with better surface
* new profiles for bigger nozzles, changed some cooling settings according to prusaslicer
* profiles for different nozzles sizes, better speed settings
* initial layer height was wrong
* wrong initial layer height
* set the correct accelerations
* changed firmware version number
* using pressure advance UI setting instead of custom filament g-code
* Update Prusa Generic PC.json
* Update Prusa Generic PC.json
* changed max flow for PC
* added PVA filament profiles
* bug fix in filament loading
* changed line width according to prusa slicer
* changed heatbed temperature for Minis capabilities
* added Prusa Mini with Input Shaper to profiles
* refactoring to more reusable settings
* added more processes, changed settings
* Update 0.15mm Speed @MINIIS.json
* Update 0.10mm Speed @MINIIS.json
* changed to cubic because of speed
* further changes after reviewing prusa slicer settings
* simplified machine settings
* retraction speeds according to prusa slicer
* changed max flow according to prusa slicer
* after clearification at the prusaslicer repository M900 got removed
* precise wall per default
* enable reverse overhang on odd by default
* added settings from prusa slicer
* changed cooling setings