* ENH: config: add logic to apply params to object/region config with multi-extruder
JIRA: no-jira
Change-Id: Ieab98cd8d031e5ca82a3aad2d0b89d8ae4a794f1
(cherry picked from commit 3179fd416e68ca8bc2d746f859508d07db18fe5b)
* FIX: X1C switch to H2D lose Highflow parameter
Jira: STUDIO-15272
Change-Id: Id8cf5d93a49d5542ac82f9554974b458e15c1193
(cherry picked from commit 15d9f072ff658a3beb4f916d978dfea12c2d9f16)
* Fix mishandling of `stride` param and add unit test for it
* Fix modified multi-variant per-obj option highlight
* Fix issue that per-obj FloatsOrPercents options are marked as dirty incorrectly when lost focus
---------
Co-authored-by: lane.wei <lane.wei@bambulab.com>
Co-authored-by: weiting.ji <weiting.ji@bambulab.com>
- Print::update_filament_maps_to_config takes filament/volume/nozzle
maps, backfills an empty volume map from extruder types, rebuilds
filament_map_2, re-expands the per-filament variant arrays, and
recomputes retract overrides keyed by resolved slots
- grouping writes its result back in every non-sequential mode;
manual multi-nozzle grouping validates the user mapping and raises a
translatable error on deviation; the engine's concrete volume
assignment is deliberately not merged yet (per-filament arrays are
already consumed by filament id, so materializing High Flow now
would change motion before the layer-aware resolvers land)
- Print::apply treats the three map keys as engine outputs in auto
modes (erased from the diff and adopted), compares them against used
filaments in manual mode, and keeps the pre-expansion snapshot in
sync with the late normalization pass so rebuilt headers reflect the
sliced state instead of resurrecting stale values
- volume/nozzle maps and extruder_nozzle_stats join the invalidation
group of filament_map (wipe tower + skirt/brim)
- PresetBundle composes full configs with an optional per-filament
volume map (plate map, else defaults derived from each extruder's
flow type); project config keeps the map sized across filament
count changes
- PartPlate stores per-plate volume/nozzle maps; Plater injects them
at every slice-composition site (incl. g-code reload and wipe-tower
estimation); BackgroundSlicingProcess reads engine results back to
the plate in auto modes
- per-filament map trust guards relaxed to size-match everywhere now
that every producer sizes the map; single-filament explicit flow
assignments are honored
- tests: grouping volume maps stay concrete, merge semantics of
update_used_filament_values, single-filament override honoring
Motion g-code is byte-identical fleet-wide including Hybrid projects
(19-fixture gate + repro determinism double-slice). Header deltas:
the map keys now dump real values, and stale pre-normalization values
(e.g. enable_prime_tower on single-used-filament prints) no longer
leak into the config block.
- Print::get_nozzle_config_index / get_filament_config_indx resolve a
filament's variant slot per layer from the nozzle group result, with
hashed index caches; when no group result is published (sequential
prints), they fall back to the static filament->extruder mapping so
behavior is unchanged
- filament_map_2 caches each filament's resolved print-variant slot;
rebuilt in Print::apply after the filament_map diff handling and in
the filament-map write-back
- filament retract overrides now key by slot indices: apply_override
fallback indexing flips to 0-based, Print::apply passes
filament_map/extruder indices, the write-back passes filament_map_2
(identical resolution while slots equal extruders)
- filament_volume_map/filament_nozzle_map/filament_map_2/
filament_self_index become PrintConfig static members (required for
member access); grouping input guards tightened so their registered
1-element defaults are never mistaken for real per-filament maps
(single-filament manual mode keeps the mix-marker fallback)
- update_filament_self_index_cache refreshed at every full-config
assignment
- tests: 0-based apply_override fallback, get_config_index_base
hit/miss/mixed-type cases
The resolvers are not consumed by the g-code writer yet. Non-Hybrid
g-code is unchanged except the config header, which now serializes the
three new static keys (defaults until the per-filament producer lands);
verified by the 19-fixture byte gate: 3 added header lines per fixture,
zero motion changes.
- get_extruder_nozzle_volume_count derives per-extruder volume-type slot
lists from extruder_nozzle_stats (absent stats = one slot per extruder)
- update_values_to_printer_extruders learns the slot layout: when any
extruder mixes volume types, option arrays keep one slot per
(extruder x volume type), extruder-ascending then volume-ascending;
single-slot resolution takes the filament's volume type on mixed
extruders
- update_values_to_printer_extruders_for_multiple_filaments applies a
per-filament nozzle_volume_type override from filament_volume_map
(when sized to the filament count) and remaps filament_self_index
through the same pipeline as every other filament key
- get_config_index_base + is_auto_filament_map_mode helpers (consumers
land with the per-filament config-index resolvers)
- callers updated: PresetBundle composition paths, PrintApply (counts
hoisted above the extruder_applied guard), Print write-back
- new tests: slot counting, Hybrid slot expansion incl. stride 2,
per-filament override, non-Hybrid degeneracy
Non-Hybrid printers keep their variant layout and values (proven by a
19-fixture byte gate; the only header delta is filament_self_index now
flowing through the same variant pipeline as its sibling filament
keys). Hybrid slices grow the config-block variant arrays to one entry
per sub-nozzle volume type; motion g-code is unchanged until the
g-code writer consumes the new slots.
An extruder with more than one physical sub-nozzle can hold a mix of
Standard and High Flow nozzles. The Flow dropdown now offers Hybrid for
such extruders (extruder_max_nozzle_count > 1, nil-guarded); grouping
already expands a Hybrid extruder into per-volume nozzle groups from
extruder_nozzle_stats.
- sidebar Flow combo offers Hybrid only for multi-sub-nozzle extruders
- preset lookup treats Hybrid as Standard (presets define no Hybrid
variant); variant strings are never fabricated for it
- printer tab splits a Hybrid extruder into Standard + High Flow rows,
with matching selection-index arithmetic and sync-enable rules
- syncing from a printer whose extruder holds mixed nozzle flows now
selects Hybrid instead of collapsing to the dominant flow type
- send-to-printer flow check: a nozzle-rack extruder validates its
nozzle inventory (mounted + rack) against every needed flow instead
of comparing only the mounted nozzle; mounted-flow lookup is now
per-extruder, fixing an index shift when a nozzle reports no flow
- Hybrid is session-only in app config (stored as Standard), so a
fresh session starts from concrete flow types
Printers whose extruders have a single sub-nozzle (including all
dual-extruder machines without a rack) see no new option and identical
check behavior.
cooling_filter_enabled existed as a config option but was shown nowhere,
and there was no capability flag to gate it. The cooling filter and air
filtration are alternative accessories sharing the same duct, so a
printer declares one or the other.
- new hidden printer capability flag support_cooling_filter
- "Use cooling filter" toggle in the Accessory group, shown only when
the printer supports it; the air-filtration toggle hides in that case
(no vendor restriction: third-party printers keep air filtration)
- explicit defaults (0) in the common machine base
- H2C declares support_cooling_filter=1 instead of support_air_filtration;
its start-gcode already carries the cooling-filter conditional, so the
toggle is functional. On H2C this drops the two exhaust-fan lines that
air filtration emitted for ABS-class filaments, matching the printer's
actual duct accessory; H2C is new on this branch so no existing user
output changes.
Printers without the flag keep exactly the previous accessory UI and
g-code.
New printer option fan_direction (undefine/left/right/both, default
undefine) declares which side the auxiliary part-cooling airflow comes
from. When set and the printer has an auxiliary fan, auto-orient adds a
yaw rotation so the dominant overhang area faces the airflow, and newly
added primitive shapes are pre-oriented the same way (except the Cube,
whose axis-aligned bounding box the pressure-advance pattern calibration
depends on).
- FanDirection enum + fan_direction printer option (Accessory group,
enabled only with auxiliary_fan)
- orient engine: weighted overhang areas per candidate, yaw-direction
search, vertical rotation applied on top of the primary orientation;
the cooling weights are taken from the candidate actually chosen,
including the flat-bottom tie-break
- orient_for_cooling() for primitive placement
- set fan_direction=left on H2C/H2D/H2D Pro/X1/X1E/P1S 0.4 profiles
(X1C/H2S/P2S/X2D/Qidi X-Max 4 already carried the key, which now
takes effect)
With fan_direction unset or no auxiliary fan the vertical rotation stays
identity and auto-orient results are unchanged; slicing and g-code are
never affected.
The engine already implements prime_volume_mode (Default/Saving/Fast)
but nothing in the UI could set it, leaving prime-saving unreachable on
multi-sub-nozzle extruders and fast purge unreachable on printers that
support it.
- new PurgeModeDialog with selectable Standard/Fast or
Standard/Prime Saving cards depending on printer capability
- "Purge mode" sidebar button next to Flushing volumes; opens the
dialog and stores the choice in the project config
- printer preset-load gating: button shown only when the printer has
multiple sub-nozzles per extruder or sets support_fast_purge_mode;
stale project values the printer cannot honor reset to Default
- enable fast purge on A2L 0.4 (support_fast_purge_mode), explicit
default 0 in the common machine base
- new dialog strings added to OrcaSlicer.pot
Printers without these capabilities never show the button and their
projects keep prime_volume_mode at Default, so slicing output is
unchanged.
Filament grouping already consumed per-filament forbidden nozzle volume
types, but every call site passed an empty map, so a variant-restricted
filament (e.g. one limited to "Direct Drive TPU High Flow") could be
auto-grouped onto an incompatible nozzle flow type on multi-variant
printers.
- add convert_to_nvt_type() to parse extruder variant strings
- add Print::get_filament_unprintable_flow(): forbidden volume types =
printer extruder variants minus the filament's declared variants;
filaments declaring no variants stay unrestricted
- feed the map into grouping at the by-object path (Print.cpp) and all
six mapping/planning sites in reorder_extruders_for_minimum_flush_volume
- unit-test the string parser
Non-restricted configurations produce an empty map, so existing
printers' grouping and g-code are unchanged.
* APA for overhangs - Prusa incompatibility warning
Added a sentence explicitly stating that APA for overhangs is not compatible with prusa printers
* whitespace
* Degrees symbol don't need localization
* The Z when referring to the axis should be uppercase
* Fix the spelling of "GitHub" to camelcase
* Unify the casing of mouse button shortcuts
* Always use G-code with an hyphen
* Fix the spelling of "restricted"
* More grammar fixes
* add missing modifications
---------
Co-authored-by: SoftFever <softfeverever@gmail.com>
* feat: add support for 3MF file format in printer configurations and export options
* fix file extension
* enable 3mf for X Max 4
* disable use_3mf for X Plus 4
* Fixed an issue where `label_object_enabled` was not properly propagated to 3mf
* enable exclude object for Max 4
* remove hardcoded use 3mf for flashforge, move them to the new printer profiles config
OrcaSlicer currently ships an "Octo/Klipper" host type that maps to the
OctoPrint REST endpoints (api/version, api/files/local). It works for
Klipper setups that run Moonraker with the OctoPrint-emulation plugin,
but native Moonraker — and Moonraker-compatible firmwares like the
Prusa-Firmware-Buddy buddy-klipper fork — speak a different shape:
distinct paths, JSON body for /printer/print/start, {"result":...}
envelope. There's no host type for that today.
Add a new Moonraker class deriving from PrintHost. Endpoints used,
matching the Moonraker spec:
- GET /server/info — connection test, reads
result.klippy_state
- GET /server/files/roots — storage-picker dropdown
(returns roots with 'w'
permission); gracefully
degrades if absent
- POST /server/files/upload (multipart) — upload (form fields:
file, root)
- POST /printer/print/start (json) — {"filename":"<path>"}; the
filename is whatever the
upload response returned
in result.item.path, so any
server-side rename
(collision suffix etc.) is
respected. JSON body is
built via property_tree
write_json so exotic
characters in the path are
properly escaped.
Auth: X-Api-Key header, only when printhost_apikey is non-empty
(Moonraker can be configured to require it but doesn't by default).
HTTP Basic / Digest are not part of the Moonraker spec and are not
sent.
Storage root is read from upload_data.storage with "gcodes" as the
fallback default, so the existing storage-picker plumbing in
PrintHostDialogs lights up automatically once enumerable roots are
returned.
UI: registers as the "Moonraker (Klipper)" entry under host_type;
selectable via the existing Physical Printer dialog (sidebar's
connection button on the printer card).
Verified against a Prusa-Firmware-Buddy buddy-klipper fork (firmware
identifies as moonraker_version "0.8.0-prusalink-shim"): /server/info
test, multipart upload to /server/files/upload, and JSON
/printer/print/start all work end-to-end. The existing "Octo/Klipper"
entry is left untouched so users currently relying on Moonraker's
OctoPrint-emulation plugin keep working.
* 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
* Add Flashforge AD5X local send dialog, IFS mapping, and LAN discovery
* Refine Flashforge AD5X IFS dialog behavior
* Refine Flashforge IFS slot selection dialog
* Fix Flashforge printer selection and print mapping
* Use 3MF for Flashforge local uploads
* Generalize Flashforge local API handling
* Handle Flashforge local API IFS support more robustly
* Use selected plate filament info for Flashforge IFS mapping
* Fix Flashforge current-plate mapping and widget sizing
* Improve Flashforge IFS contrast and color matching
* Fix Flashforge legacy plate export and upload naming
Resolve PLATE_CURRENT_IDX before the legacy send-to-printhost path calls send_gcode so single-plate Flashforge 3MF exports target the selected plate instead of leaking the sentinel into export_3mf.
Sanitize Flashforge upload names in one shared utility reused by both the dialog and the backend client. This keeps the UI-visible filename and the actual uploaded filename consistent and replaces printer-problematic characters such as '=' without scattering Flashforge-specific logic through the generic Plater flow.
* Keep Flashforge upload filename sanitization in the backend only
Drop the PrintHostSendDialog API changes and keep filename sanitization inside the Flashforge backend paths that actually talk to the printer. This keeps the generic send dialog flow untouched while still normalizing problematic upload names for both serial and local API uploads.
* Only use the Flashforge IFS dialog for local API uploads
* Use reported Flashforge IFS support without model fallback
* Remove unused Flashforge slot uniqueness tracking
* Include <array> for Flashforge discovery message