A valid mixed filament already slices the same on the CLI as in the GUI;
these are the places where the CLI still skipped a rule the GUI applies.
- Keep the prime tower when a mixed filament is used, even if every
--load-filaments preset is the same. A mixed filament swaps between its
components every layer, so turning the tower off left the swaps with
nothing to purge on.
- Leave a mixed slot's row and column of the flush matrix at zero when
--filament-colour triggers a recompute, as the GUI does; a mixed slot
never reaches a nozzle.
- Refuse a mixed slot that has no filament of its own. Feature filament
ids aimed at it were past the filament count, got reset to filament 1
and the model silently printed in one colour.
- Refuse a plate that uses a mixed filament whose components are
different filament types, the type half of the GUI's
Sidebar::has_broken_mixed_filament. Missing or out-of-range components
are already rejected for the whole project by validate().
get_extruders_under_cli gains an expand_mixed_slots flag so the gate
can see mixed slots rather than their components; existing callers
keep the expanded list.
Both refusals exit with the new CLI_MIXED_FILAMENT_INVALID (-69).
# Description
Each plate keeps a registry of the instances it holds
(`PartPlate::obj_to_instance_set`). The plate's filament list
(`get_extruders`), its wipe tower preview and position clamp, the object
list grouping and the saved project's per-plate instance list all read
it. Two paths left it stale:
* `Plater::increase_instances` (the `+` key / toolbar) adds the copy to
the model but never registers it with any plate.
* `GLCanvas3D::do_move` (drag release and arrow keys) ended with
`notify_instance_update(-1, 0)`, so only instance 0 of each selected
object was re-registered. Rotate, scale and mirror already notify every
instance.
So a copy created with `+` and dragged onto another plate stayed unknown
to that plate: the project saved afterwards listed it on no plate, and a
multi-filament copy moved onto a single-filament plate drew no wipe
tower there and never got its tower position clamped. The Print side
selects instances by geometry, so the plate still sliced, which is why
this went unnoticed.
This PR
* registers new copies with their plate at creation;
* has `do_move` notify exactly the instances it moved (every instance of
the object when a part was moved in Volume mode), rather than instance 0
or all instances - notifying an instance that stayed put invalidates its
plate's slice result, so `(-1, -1)` as used by rotate would have
un-sliced every plate holding a sibling copy;
* drops the registry entry again when `decrease_instances` removes a
copy.
A second commit finishes the switch #15532 started with
`contain_any_instance_totally()`: `get_extruders_without_support()`,
`check_single_extruder_mixed_filament_risk()` and
`check_compatible_of_nozzle_and_filament()` still tested instance 0
only, so an object whose copy - not its original - sits on the plate was
skipped by all three.
No new options, no format change. The `is_new` flag is deliberately not
passed for the copies: a copy landing on a spiral-vase plate gets the
same "apply spiral mode settings?" prompt a dragged instance gets,
instead of a silent rewrite of the object's settings.
# Screenshots/Recordings/Graphs
Before:
<img width="1920" height="1080" alt="05-moved"
src="https://github.com/user-attachments/assets/3cf9f5a9-1a4e-41e8-8c57-578f849d8c29"
/>
After:
<img width="1920" height="1080" alt="05-moved"
src="https://github.com/user-attachments/assets/1b801a7e-b7cd-4ffb-bd1d-b701f90dade6"
/>
## Tests
Re-run after the rebase, both binaries driven through the same headless
harness (Xvfb 1920x1080, llvmpipe) on the same fixture: `cubeA`
(filament 1) alone on plate 1, `cubeB` (a two-part object, filaments 2
and 1) alone on plate 2, so plate 1 shows no wipe tower at load. Select
the plate-2 object, press `+`, walk the copy onto plate 1 with 36 x Left
(10 mm per press, one `do_move` each), save, slice plate 1.
Before is main `8af92214d0` - i.e. with #15532's
`contain_any_instance_totally()` already in place, so the only
difference is this PR.
* **Before:** the saved `model_settings.config` lists plate 1 with
`cubeA` only and plate 2 with `cubeB` instance 0. The copy (instance 1)
is listed **on no plate at all**, and plate 1 draws no wipe tower even
though a two-filament object is sitting on it.
* **After:** plate 1 lists `cubeA` **and** `cubeB` instance 1; plate 2
still lists instance 0. The plate-1 tower preview appears, and slicing
plate 1 succeeds with the tower actually generated - the filament panel
reports 1.10 m / 0.48 m in its Tower column over 51 filament changes,
and the G-code carries `EXCLUDE_OBJECT_END NAME=cubeB.stl_id_1_copy_0`.
Same camera and fixture on both runs, so the screenshots above are
directly comparable.
* build: clear 2 warnings - cast the NSTextField the class check already proved
mainframe_text_field is NSTextField* and was assigned a bare NSView*, which
Clang reports as -Wincompatible-pointer-types. Both assignments sit inside
if ([viewObject class] == [NSTextField self]), so the runtime type is already
guaranteed, and the line above the second one casts the same variable the same
way to call setTextColor. macOS only, since nothing else compiles this file.
* build: clear 6 warning categories from the clang-cl inventory
-Wmissing-braces (9). Aggregates whose first member is itself an aggregate.
GUID's fourth member is BYTE[8], so the trailing eight bytes take their own
braces. The others were reaching for zero-initialization with {0} and say {}
now. bbs_3mf's backup Task ends in an anonymous union, which needs braces of
its own; those braces initialize the union's first member rather than the one
named at the call site, so the RemoveBackup site says so in a comment.
-Wmacro-redefined (11). SendMultiMachinePage.hpp defines five names that
Preferences.hpp, PresetBundleDialog.hpp, ExportPresetBundleDialog.hpp and
TroubleshootDialog.hpp also define with different values, so the value in
force depended on include order. All nine of this file's DESIGN_ macros take
the SEND_ prefix it already uses for its own macros, values unchanged, so a
DESIGN_ name added elsewhere later cannot collide with it again. They read as
one page-local palette, a 900 to 400 gray ramp plus sizes, so the four with
no current readers stay: dropping them would leave gaps in a named scale. test_marchingsquares.cpp defines NOMINMAX,
which libslic3r already passes as a PUBLIC compile definition, so it takes
the #ifndef guard the other suites use.
-Wbraced-scalar-init (3). Two PushStyleVar calls resolve to the float
overload, so the braces were initializing a scalar. ConfigOptionFloatsNullable
already takes an initializer_list, so the inner braces did the same thing.
-Wmicrosoft-goto (2). Both gotos in copy_file_gui jump forward over the
initialization of size, dwRead and dwWrite, which only MSVC accepts. Those
declarations move up to join the others at the top of the function.
-Wunused-private-field (3). Every use of ColourPicker's m_clrData and
m_picker_widget is behind !defined(__linux__), so on Linux they are written
and never read; the members now carry the same guard. ParamsPanel's
m_size_move is read nowhere. Tab has its own, which is the one Tab.cpp uses.
-Wnonportable-include-path (2). BaseException.h asked for "stackwalker.h"
and the file on disk is StackWalker.h.
get_extruders() and estimate_wipe_tower_size() already ask whether any
instance of an object sits on the plate; the support-less extruder scan, the
mixed-filament risk check and the nozzle/filament compatibility check still
tested instance 0 only, so an object whose copy - not its original - was
placed on the plate was skipped by all three.
The preview brim, the placement margin and the pre-generation validation
warning each decided on their own whether the tower has a Type2 cone
base, reading the wall type and cone angle three different ways. The
preview's read cast the preset's enum to ConfigOptionEnum<T>, which a
preset-shaped config never holds, so the cone base was never previewed.
estimate_wipe_tower_first_layer_outline now answers that question once,
beside the footprint estimate, from the config and the resolved planner;
all three sites take the outline from it. The libslic3r case reads the
outline off a preset-shaped config, where the old cast came back empty.
Smooth timelapse no longer charges a prime volume it does not purge. A
tower printed with no tool change is exactly the idle depth: the
stability minimum for Type2, the wrapping detection depth for Type1.
Charging a full prime_volume on top made the previewed and arranged
tower deeper than the one that is printed.
The Type2 half of "a tool change reserves a tower whatever the purge
volumes resolve to" arrives with the base commit; here it only has to
survive the planner split, since Type1 already reserves per filament.
The wipe tower filament only joins the tool ordering when there is a
tower to join, which is the has_wipe_tower() half of the guard
Print::extruders applies.
The shared estimate reserved every tower with one volume-per-purge rule
and the stability floor. Both planners do more: WipeTower (Type1) wipes
each filament's own prime volume in whole lines, one block per
adhesiveness category sized by its worst layer, rams the leaving
filament at every nozzle change, and squares a rib tower from the
planned depth; WipeTower2 (Type2) spaces its lines by
wipe_tower_extra_spacing, not the Type1-only infill gap, and its extra
flow cancels out of the depth. Both extend the ribs rather than the body
below the stability minimum, size every layer including a thinner first
one, and lay the brim in whole loops, WipeTower reporting half a spacing
of line width on top.
All of that now lives in estimate_wipe_tower_footprint, fed the planner
(resolve_wipe_tower_type mirrors Print::wipe_tower_type and the CLI's
Bambu Lab detection) and the filament ids rather than a count. Print
passes its own tool set; the PartPlate adapter derives the plate's ids
from the passed config and treats an explicit count as a floor, so the
CLI's count-only callers size per filament too. The placement clamp also
reserves a Type2 cone's base bulge, which the body box does not cover.
The planner-mirroring helpers sit beside the planners in WipeTower and
WipeTower2 so the two stay in sync; the libslic3r cases pin them to
footprints measured from generated G-code.
A raft is not a reason to reserve a tower. Print::apply runs
normalize_fdm_2, which clears enable_prime_tower for a plate that purges
one filament unless smooth timelapse or wrapping detection is on, so a
single-filament plate with a raft prints no tower at all and the estimate
was reserving bed area for one. Drop the input; need_wipe_tower is now
exactly the two exceptions normalize_fdm_2 honours, named there so the
next reason added has to be checked against it.
The GUI preview and the validation containment check each re-derived
"is a tower printed here" from the filament count instead of reading the
estimate, so both missed the towers printed with no tool change to purge
for. They now take the answer from the footprint, which is the drift this
shared estimate exists to remove. A tower that is not printed estimates to
zero, so its hull is degenerate and every check on it passes trivially -
the containment check needs no gate of its own.
WipeTowerData::width was written only by the pre-generation estimate and
left at zero for the whole post-generation life of the Print, while its
neighbour depth held the real value. Set it from the generator in both
branches.
The plate's height scan transformed every model part's full mesh per
instance on each scene reload, discarding all but the z extent. The
cached convex hull has the same z extent.
A plate loaded from a sliced .gcode.3mf holds no objects and its filaments
live in slice_filaments_info; the config-taking get_extruders overload
returned an empty list for it, which sized the tower for a placeholder two
filaments. It now answers the way the wx overload does, without reaching
the plater.
Also drop estimate_wipe_tower_size, which has no callers.
* Fix incorrect early exit for CLI mode no-support preventing parameters from being read
* Use PartPlate's m_height to allow CLI to perform proper BuildVolume check
* Add safeguard against extruder_pintable_heights and extruder_areas vector size mismatch
* Preserve printable_height precision in PartPlate/PartPlateList
* Fixed multiple BuildVolume warning issue, and keep check_outside diff minimal
PartPlate::store_to_3mf_structure read first_layer_time from the indirect cali_bboxes_data struct,
which the GUI populates at Plater.cpp:10600 but the CLI never writes to. The result was uninitialized
memory leaking into slice_info.config
Read directly from get_slice_result()->initial_layer_time, which is populated by
GCodeProcessor::finalize() in both code paths and matches the pattern already used a few lines
above for gcode_prediction.
Also default-initialize PlateBBoxData::first_layer_time to 0.0f as a defense against any other consumer
reading it without an explicit write.
# Description
This PR ports the color mixing feature from BambuStudio.
The port is based on the previous work by @ianalexis in #15231.
This PR completes the port and fixes various bugs.
Several improvements were also made during the porting process.
WIP
# Screenshots/Recordings/Graphs
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## Tests
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Prime towers reserved depth from the prime volume alone, ignoring the flush
matrix: rib-wall towers in both the engine and the preview, and rectangle and
cone towers in the preview, which never carried the flush-aware estimate the
engine already used. The preview also read the print preset, which does not
carry the printer- and filament-scope keys the estimate needs and so silently
fell back to defaults. On multi-nozzle printers the flush matrix, which holds
one block per nozzle, was additionally read as a single block. The tower could
come out too small for the purge it has to hold.
The flush-based estimate also skipped the height-based minimum depth that the
prime-volume one applies, so low-flush prints could estimate a tower shallower
than the one that actually gets built.
The placement clamps and the tower-approach router both stood in the bed's
bounding box for the bed itself, so on a delta or hexagonal bed the prime tower
could be parked in a corner that does not exist and the nozzle could be routed
across it. Both now test the real printable outline, slicing reports a tower
that does not fit instead of printing it off the bed, and a tower parked near an
edge is routed along the clamped side rather than falling back to a straight
line across the tower.
Also fixes the placement validation rotating the tower hull by degrees read as
radians about the plate origin, and never rotating the generated tower footprint
at all.
estimate_wipe_tower_polygon reserved the arrange footprint and clamped the
tower X position with the raw prime_tower_width, under-reserving space
whenever the rib wall squares the tower to a different width.
Catches the fork up from 449a4cf9fc (2026-06-28) to d6cb667b89 (2026-07-24).
Upstream touched 2326 files; 17 of them overlap the 164 this branch touches.
16 of the 17 auto-merged, including all three CMakeLists.txt, the build_all.yml
CI workflow, and every GUI file. The CAD core never conflicts: CadDocument,
SketchEngine, SketchSolver, McpControl and test_caddocument are files this fork
adds, so upstream does not touch them.
The one conflict, tests/libslic3r/test_3mf.cpp, was purely additive in all three
hunks and is resolved as a union: our test pinning that store_bbs_3mf embeds the
CAD recipe as Metadata/SnapOrca_cad.bin, upstream's multi-nozzle plate-metadata
round-trip tests, and both sets of includes. All three were verified present
after resolution rather than assumed.
NOT BUILD-VERIFIED, for a reason that predates this merge and is not caused by
it: this fork cannot be configured on nativedev at all. Its CMakeLists has
required Eigen3 5.0.1 since before the merge (line 592 pre-merge), while the
only deps image on the machine is snaporca-deps, built for snaporca's
find_package(Eigen3 3.3). CMake fails at configure, so nothing compiles.
That means this fork's Catch2 suite has never run. Every "suite green" figure
recorded for M1-M8 was snaporca's suite; the ports were verified by patch-apply
plus the CAD sources being byte-identical to snaporca's. Building an orca_cad
deps image with Eigen 5.0.1 is what would finally close that gap.
Pre-merge state is preserved at branch cad-mainline-pre-upstream-2026-07-25
(30d54f0074).
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
A print sliced for a nozzle that sits in the hotend rack (but is not
mounted) was blocked by the send dialog's mounted-nozzle diameter check,
even though the printer fetches the required nozzle itself (#14685).
Consolidate the three mounted-nozzle gates (_is_nozzle_data_valid,
is_nozzle_type_match, _is_same_nozzle_diameters) into a single
CheckErrorExtruderNozzleWithSlicing fed by s_get_slicing_extuder_nozzles,
which collects the plate's per-extruder nozzle requirements (hybrid
extruders contribute one entry per used sub-nozzle flow). The rack
extruder validates against its whole inventory (mounted + rack) with
guidance to calibrate the rack, refresh nozzle info, or re-slice, and
blocks when toolhead + rack are full (no free slot to stow a nozzle).
Other extruders keep the validity/flow/diameter checks against the
mounted nozzle.
Also add CheckErrorRackStatus, which holds Send while the printer is
still reading the rack hotend information, and judge material hardness
for the rack extruder per dispatch-mapped nozzle as a non-blocking
caution (mounted nozzles keep the blocking gate).
Deleting an object's instance leaves a stale (obj_id, instance_id) pair in
PartPlate::obj_to_instance_set until it is pruned. object_list_changed() runs
during the delete path and calls has_printable_instances(), which guarded only
obj_id and then indexed object->instances[instance_id] on the now-shorter
vector, dereferencing a garbage ModelInstance* and crashing with SIGSEGV. The
reported fault address (0x12a) matches a member read on that bad pointer.
Reuse the existing valid_instance() helper, which bounds-checks both obj_id and
instance_id, at every obj_to_instance_set scan that was missing the instance-id
check: has_printable_instances(), printable_instance_size(),
is_all_instances_unprintable(), get_extruders_under_cli(),
duplicate_all_instance() and set_pos_and_size() (the last had no bounds check at
all). valid_instance() is made const so the const CLI scan can call it.
Fixes#14159
- FilamentMapDialog's manual page understands volume types: a mixed
(Hybrid) extruder shows separate Standard / High Flow drop zones
with live sub-nozzle counts, a validation timer with an inline
error + "set nozzle count" suggestion, and composes a per-filament
volume map on OK (persisted to the plate or globally)
- switching an extruder's Flow type rewrites the affected plate map
entries; plate maps stay sized across filament add/delete/count
changes (values keep their filament, no index shift)
- CLI: manual mapping on multi-nozzle printers synthesizes the volume
map from extruder flow types when absent; nozzle-manual mode
requires explicit maps; computed maps land on the plate so exported
projects carry filament_volume_maps
- filament_nozzle_map joins the project options (selection seeding +
filament-count resizing)
- pot entries for the new dialog strings
All 19 reference fixtures byte-identical; slicing an exported Hybrid
project reproduces its g-code byte-for-byte with the volume map
round-tripped through model_settings.config.
- 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.
Multi-nozzle sync widget, AMS rack-nozzle mapping popup, calibration rework, send-dialog nozzle mapping and extruder-count UI. Includes the fix to persist the AMS sync badge on filament cards (H2C/A2L and direct-sync printers).
Switching to a printer with fewer filaments (e.g. H2D -> X2D) threw
std::out_of_range in check_filament_printable. Clear stale per-volume
extruder config on count shrink and bound-check filament indices at the
read sites.