Commit Graph
4371 Commits
Author SHA1 Message Date
6922edfc20 Fix Anycubic Vyper start G-code hotend wait (#16216)
* Fix Anycubic Vyper start gcode hotend wait

* Bump Anycubic profile version

---------

Co-authored-by: 陈诗健 <chenshijian@chenshijiandeMacBook-Air.local>
Co-authored-by: SoftFever <softfeverever@gmail.com>
Co-authored-by: SoftFever <103989404+SoftFever@users.noreply.github.com>
2026-10-11 07:34:11 +08:00
Javad Shafique 7ec147603f Default Bambu profiles to 3MF output (#14767) 2026-10-11 06:55:50 +08:00
jorymorrison 8ee9e5915a Fix Prusa CORE One pressure advance condition in filament profiles (#16093) 2026-10-11 06:39:53 +08:00
SoftFever cd5b786704 Add AnkerMake PLA+ filament profiles (Basic, Matte, Metallic, Silk, Glitter) (#16293)
# Description

Adds Anker's own AnkerMake PLA+ filament line to the Anker vendor
bundle: **Basic, Matte, Metallic, Silk, Glitter**. Until now the bundle
only had `Generic PLA+ @Anker`.

Each filament follows the existing Anker layout. A `@Anker base` profile
(`instantiation: false`, inherits `Generic PLA+ @Anker base`,
`filament_vendor: AnkerMake`) holds the settings. An instantiated
`@Anker` profile holds only `compatible_printers`. `filament_id` and
`setting_id` were minted with `scripts/orca_profile_tool.py
generate-id`, and `Anker.json` was re-indexed with `update-index`. The
Anker vendor version goes from `02.04.00.05` to `02.04.00.06`.

## Source of the values

The values come from the AnkerMake filament profiles bundled with
**eufyMake Studio** (Anker's PrusaSlicer 2.6 fork, AGPL-3.0, source at
https://github.com/eufymake/eufyMake-PrusaSlicer-Release), in
`profiles/Anker-ini/AnkerMake base/base.ini`. OrcaSlicer is also
AGPL-3.0.

Conversion notes:
- PrusaSlicer keys are mapped to their Orca equivalents. For example,
`bed_temperature`/`first_layer_bed_temperature` go to `hot_plate_temp*`
and `textured_plate_temp*`, `fan_below_layer_time` goes to
`fan_cooling_layer_time`, `slowdown_below_layer_time` goes to
`slow_down_layer_time`, and `extrusion_multiplier` goes to
`filament_flow_ratio`. Only keys that differ from the inherited `Generic
PLA+ @Anker base` chain are written.
- Where Studio sets retraction but leaves deretraction unset (Metallic,
Silk), `filament_deretraction_speed` is set equal to the retraction
speed. That matches Prusa's "0 = same as retract" meaning.
- **Max volumetric speed is new.** Studio ships
`filament_max_volumetric_speed = 0` (uncapped) for these filaments, and
Orca has no equivalent. The caps were derived from the peak flow that
Studio's own M5C "Fast" process pushes: Basic/Matte/Glitter 22 mm³/s,
Metallic 20, Silk 13. Please treat these as the least-validated numbers
in the PR.
- Studio has pressure advance disabled for these filaments, so no PA
values are carried over.
- Colour variants are not included because they differ only in colour.
`default_filament_colour` uses each family's base colour.
- `compatible_printers` follows Studio's `compatible_printers_condition`
for each family, limited to the 0.4/0.6 printers that `Generic PLA+
@Anker` covers:
  - Basic, Glitter: M5, M5 All-Metal, M5C at 0.4 and 0.6
- Silk: 0.4 on all three, plus M5C 0.6 and M5 All-Metal 0.6 (Studio
excludes M5 0.6)
  - Matte, Metallic: 0.4 only (Studio restricts these to 0.4)
- Studio also allows Basic on 0.2 nozzles. That variant is not added,
because the 0.2 Generic profiles use a separate low-flow cap.

# Screenshots/Recordings/Graphs

N/A (profile-only change).

## Tests

- `scripts/check_profile.sh` (local twin of the CI job, run against the
full profile tree with the nightly macOS validator) passes all five
checks: `profile_tool`, `validate_system`, `validate_slice`,
`validate_filament_subtypes`, `validate_custom` (fixtures v1.9.0 to
v2.4.2).
- `python3 -m unittest discover -s scripts/tests -t scripts`: OK.
- The submitter printed with these filament settings in eufyMake Studio
on the M5C's stock brass 0.4 nozzle without issues. This Orca conversion
has been loaded and sliced in Orca 2.4.2 (as user presets inheriting the
Anker generic PLA+) but not yet printed on brass. The printer now has a
different nozzle fitted.

[How to Download Pull Requests Artifacts for
Testing](https://www.orcaslicer.com/wiki/how_to_download_pr_artifacts)

🤖 Generated with [Claude Code](https://claude.com/claude-code)
2026-10-11 06:26:26 +08:00
SoftFever e5d5fb47ca Fix BBL infill retraction reduction default (#16201)
# Description

Restore `"reduce_infill_retraction": "1"` in the shared Bambu Lab
process profile. The BambuStudio profile sync (#15851) replaced it with
`reduce_infill_retraction_mode`, which OrcaSlicer does not support,
causing the setting to fall back to disabled.

This restores the pre-sync behavior and bumps the BBL bundle version to
02.08.00.13.

# Validation

- All 233 selectable BBL process presets inherit the restored setting
with no other resolved settings change.
- Static profile validation, system loading, filament validation, and
all 1,263 slice cases pass.

 Fixes #16194
<!--
> A guide for users on how to download the artifacts from this PR.
-->

[How to Download Pull Requests Artifacts for
Testing](https://www.orcaslicer.com/wiki/how_to_download_pr_artifacts)
2026-10-10 22:44:44 +08:00
SoftFever 63918b44a8 Merge branch 'main' into anker-ankermake-pla-plus-filaments 2026-10-10 22:41:16 +08:00
SoftFever aa14598e32 iXex: Parallel Printing Support for IDEX and IQEX Printers (#13086)
## Summary

This PR adds first-class parallel printing support to OrcaSlicer for
printers with multiple independent X-axis carriages — the **IDEX** and
**IQEX** hardware families. The feature is named **IMEX** (independent
multi-extruder) internally, which captures the supported topology space
more accurately than either acronym alone, and is exposed in the UI
under the user-facing label **IDEX/IQEX Configuration**. It is designed
to be printer-agnostic and firmware-flexible, with Klipper,
RepRapFirmware, and Marlin all supported for per-tool Pressure Advance
and per-layer temperature management. MMU/AFC setups where multiple
logical filament slots share one physical extruder are supported via a
`physical_extruder_map` profile option. Printers whose firmware handles
copy/mirror placement internally — RepRapFirmware IDEX duplication mode
on Flashforge Creator Pro 2 / Creator 3 Pro is the canonical example —
are supported through a firmware-managed-zones flag that emits a
centered single-half slice for the firmware to fan out.

The implementation spans printer configuration, process settings UI, bed
visualization, per-plate mode selection, ghost-object rendering with
per-plate filament overrides, placement validation, pre-slice conflict
warnings, G-code generation (with per-tool PA, per-layer temperature
management, and optional center-origin slice frame), and layer preview
animation. It supports five distinct topology paradigms:

- **1 gantry × 2–4 tools** — classic IDEX with 2 tools (BCN3D Sigma,
Snapmaker J1, Tenlog Hands-2 style — two independent X carriages on a
shared Y gantry); multi-extruder on a shared rail when extended to 3 or
4.
- **2 gantries × 1 tool each** — two fully-independent XY systems
sharing a bed (Vivedino Xplorer style). Both Y rails independent —
effectively "half an IQEX."
- **2×2 grid, independent quadrants** — IQEX running four separate
prints in parallel.
- **2×2 grid, paired-gantry multicolor** — IQEX where cross-gantry tools
share color responsibilities via the **Span** tile state.
- **Firmware-managed center-origin** — slicer emits a centered
single-half slice; firmware decides where to physically fan it out.
Overlays on any of the above hardware topologies; canonical example is
Flashforge IDEX with RepRapFirmware.

---

## Feature Walkthrough

### Printer Configuration

Printer preset options that declare IMEX capability and geometry:

| Option | Type | Description |
|--------|------|-------------|
| `is_imex` | bool | Marks this printer as IMEX-capable |
| `imex_firmware_managed_zones` | bool | Emit centered single-half
slice; firmware handles copy/mirror placement (default `false`) |
| `imex_gantry_count` | int | Number of independent Y-axis gantries
(rows) |
| `imex_tools_per_gantry` | int (1–4) | Toolheads per gantry along X
(columns) |
| `imex_nozzle_clearance_x` / `imex_nozzle_clearance_y` | float |
Nozzle-to-collision-edge distance in mm (literal, not halved) |
| `imex_tool_layout` | string | Physical orientation: front-left /
front-right / rear-left / rear-right |
| `imex_mode_names` | string[] | Names of user-defined parallel modes;
first entry is the reserved `primary` sentinel |
| `imex_mode_active_tools` | string[] | Tool role assignments per mode
(e.g. `0:P,1:C,2:M,3:M`, or `0:P,1:S,2:M,3:M` with Span) |
| `imex_mode_gcodes` | string[] | Firmware macro to activate per mode |
| `physical_extruder_map` | string[] | 0-indexed map from logical
filament slots to physical extruders (for MMU/AFC — see below) |

Tool roles per mode: **Primary** (P), **Copy** (C), **Mirror** (M),
**Span** (S), **Inactive**.

### Parallel Mode Editor

[Kooha-2026-05-14-13-45-35.webm](https://github.com/user-attachments/assets/af7650e6-d636-478b-9398-3f02ec662f03)

The **IDEX/IQEX Configuration** and **IDEX/IQEX Parallel Modes**
sections live in the printer preset's **Multimaterial** page (visible
only when `is_imex = true`). The mode editor is a visual grid:

- Each row defines one named parallel mode. The first row is a reserved,
non-deletable **Primary** row stored as the sentinel `primary` in
`imex_mode_names`.
- The Primary tool is always T0; **Tool 0 Position** chooses which
physical corner it occupies, and its tile is read-only. The other tool
buttons cycle Inactive → Copy → Mirror → Span → Inactive, color-coded,
with Span offered only where it applies.
- **Span** is only offered when `imex_gantry_count >= 2` AND the tile is
on the primary's gantry row — it declares "this tool is the multi-color
partner of Primary on the same gantry," distinct from a Copy/Mirror role
on a non-primary gantry.
- A G-code field per mode holds the firmware macro to activate that mode
(e.g. `IMEX_COPY` for Klipper). A placeholder-browser button per row
opens the `EditGCodeDialog` for quick insertion.
- Modes can be added and removed (removed via a dedicated
`imex_remove.svg` ScalableButton).
- Deleting the active mode resets affected plates to Primary.
- Tool assignments are preserved across `imex_gantry_count` changes:
going from IQEX (4 carriages) → IDEX (2 carriages) → IQEX restores all
previously assigned roles, and the visible grid anchors to the gantry
row containing the Primary assignment.

<!-- TODO: replace this placeholder with a re-recorded
parallel-mode-editor video
showing the Span tile state, the remove button, and the
placeholder-browser button.
Old URL (out of date):
https://github.com/user-attachments/assets/cabf1f70-206d-4f84-9c2e-594b38b83951
-->

### Span Tile State — Paired-Gantry Multicolor
<img width="2833" height="1300" alt="2026-05-14-135412_grim"
src="https://github.com/user-attachments/assets/52203133-7380-459a-973f-0502a1edc3c2"
/>

For IQEX printers (`imex_gantry_count >= 2`), the **Span (S)** tile role
enables paired-gantry multicolor mirror mode. The same active-tools
string `0:P,1:C,2:M,3:M` is ambiguous between two distinct hardware jobs
— four independent quadrants vs. paired-gantry multicolor mirror — so
the topology has to be declared explicitly rather than inferred. Span on
the primary's gantry row is the declaration.

Behavior driven by Span presence:

- **Multicolor block rule**: requires Span on primary's gantry to allow
multi-color slicing in a parallel mode. Without Span, multi-color
slicing in a parallel mode is blocked with an actionable error message.
- **Ghost aggregation**: one aggregated ghost per non-primary gantry
when Span is present, using the column-paired representative tool.
Mixed-role gantries fall back to per-tool.
- **Zone aggregation**: one row-strip zone per non-primary gantry when
Span is present (cell at primary's column collapses col-sep;
`make_boxes` expands to full-X strip).
- **Aggregated mirror drag**: ghost translates 1:1 with primary in X
(copy-style), with X-flip baked into the mesh-local frame so geometry
still reads as mirrored. Gantries don't share an X rail, so reflecting
motion serves no collision purpose.
- **Carriage collision strip audit**: X-boundary checks require `zr ==
pri_row_k` (matching the existing Y-boundary `c == pri_col` constraint).
Prevents spurious strips on primary's right edge in paired-gantry
mc-mirror, where T3 sits diagonally and can't actually collide with
primary's carriage.

Single source of truth:
`IMEXHelpers::group_imex_active_tools_by_gantry(active_tools_str,
tools_per_gantry)`. Ghost factory and zone calculator both consume it,
so pairing logic lives in one place.

### Per-Plate Mode Selection

Each build plate has an IMEX mode icon in its toolbar (normal, hover,
dark, and dark-hover SVG variants). The mode can be set independently
per plate:

- **Left-click** cycles through all non-sentinel modes in order.
- **Right-click** opens a popup menu listing all modes as radio items
for direct selection.
- Mode changes are recorded in the undo/redo snapshot system.
- The selected mode is persisted in the 3MF project file per plate
(`imex_parallel_mode` key).


https://github.com/user-attachments/assets/5ab497e3-9c2f-476a-ac67-ef34a592395b

When a parallel mode is active alongside multi-material objects on the
same plate, a warning badge (`obj_warning.svg`) overlays the plate icon
— see **Pre-Slice Warning System** below.

### Bed Visualization + Auto-Arrange Constraints

When an IMEX mode is active, the build plate renders the carriage grid:

<img width="2761" height="1447" alt="IMEX bed visualization with active
primary zone and dimmed secondary zones"
src="https://github.com/user-attachments/assets/3ee64b7b-a3ed-40aa-ad07-fa2f1cb74edf"
/>

- The **active (primary) zone** is full brightness.
- **Inactive zones** are dimmed with a color-coded overlay (blue for
copy, orange for mirror).
- **Zone dividers** are rendered as lines across the bed.
- The grid is a full 2D layout: `imex_tools_per_gantry` columns ×
`imex_gantry_count` rows. Zone sizing is based on the **active** tool
count only — inactive tools donate their bed share to active neighbors.
- Span-present configs render as a single row-strip zone per non-primary
gantry rather than per-tool quadrants, reflecting that the firmware will
paint the multi-color across the entire strip.
- Colors are drawn from the Okabe-Ito palette for colorblind
accessibility, with a deuteranopia/protanopia-safe alternate theme.
- **Auto-arrange** is constrained to the primary zone when a parallel
mode is active — `ArrangeJob::process()` replaces full-bed `bedpts` with
the primary zone corners via `PartPlate::imex_primary_zone()`. Collision
strips are additionally registered as hard obstacles through
`m_unselected` (the working NFP placer input, not the dead
`excluded_regions` field), so placement cannot drop parts into the
danger strips.

### Placement Validation


https://github.com/user-attachments/assets/5cb5a94a-981e-4fe9-898e-7e2f891b4f40

Objects placed outside the primary zone block slicing:

- `has_imex_placement_violations()` in `PartPlate` checks each object's
convex hull against the primary zone boundaries and collision strips.
- Violations inject into the existing `update_background_process`
validation pathway — the Slice button is disabled and an error
notification is shown.
- Mirror tools additionally generate X-axis collision strips (copy tools
move in the same direction and cannot collide). Y-direction strips are
scoped to same-column tools to avoid false positives from diagonal
mirror pairs.
- Strip width is taken **literally** from `imex_nozzle_clearance_x` (the
measurement is nozzle-to-collision-edge distance, not carriage
half-width).
- Multi-color block path: a pre-slice rule blocks multi-color slicing in
parallel modes that can't physically support it (e.g. a "fake IMEX" mode
where all tools sit on a single gantry without a Span partner). The rule
is centralized in `imex_multicolor_block_reason()` with unit-test
coverage of every gating case.

### Ghost Object Rendering + Per-Plate Filament Picker

When a parallel mode is active, the slicer renders colored, transparent
**ghost copies** of primary-head instances on the plate — one per
secondary active head, transformed under its Copy/Mirror role (or
aggregated per gantry when Span is present).

- Ghosts track the primary through drag/rotate/scale/mirror and
invalidate on mode, filament-map, or `physical_extruder_map` changes.
- **Left-click** on a ghost opens the `IMEXFilamentPickerPopover` for
that ghost's head — a compact `BitmapComboBox` that writes directly to
the per-plate `imex_head_filament_map` (MMU lane override).
- Mirror ghost geometry is a **true reflection about the zone-boundary
plane** (`x = primary_zone_center.x + gantry_offset.x/2`), so the ghost
stays anchored in the target zone as the primary moves and drag reflects
correctly (primary +X → ghost −X, Y tracks 1:1).
- Hover tooltip: `"Tn → filament N"` with a color swatch. When no
filament resolves to a head, the tooltip surfaces an actionable message
directing the user to extend the extruder count in the Machine tab.
- Ghost rendering + picking are scoped to the active plate — non-active
plates don't draw stale ghosts during arrange/preview transitions, and
click-picking never falls through to a non-current plate's ghost
geometry.
- Per-plate `imex_head_filament_map` round-trips through the 3MF project
file.

### Pre-Slice Warning System
<img width="1786" height="911" alt="2026-05-14-135714_grim"
src="https://github.com/user-attachments/assets/16532d47-2da5-4472-ab9c-4b8b00303bae"
/>

Before a plate slices, IMEX parallel-mode plates are checked for three
classes of conflict:

1. **Multi-material on secondary tools** — when the mode has Copy/Mirror
tools and the plate has multiple filaments active; plate icon gets a
warning badge.
2. **Bed temperature mismatch** — any two carriages configured >5 °C
apart.
3. **Filament type incompatibility** — filaments from different type
families on active carriages.

A dismissible Yes/No `RichMessageDialog` fires once per user action from
both `on_action_slice_plate` and `on_action_slice_all`. The dialog has a
**"Don't show again"** checkbox that persists to `app_config` as
`imex_pre_slice_warnings=false`. A re-enable toggle lives in **Printer
Settings → Multimaterial → IDEX/IQEX Configuration** so suppressed
warnings can be restored.

### Firmware-Managed Zones — Center-Origin Slice
<img width="701" height="197" alt="2026-05-14-135842_grim"
src="https://github.com/user-attachments/assets/3e2dfaab-fb4f-42b1-bf9d-c88dc0c95110"
/>

The `imex_firmware_managed_zones` printer-config option (default
`false`) supports IDEX/IQEX printers whose firmware applies its own
copy/mirror offsets in non-primary modes. Canonical examples:
**RepRapFirmware IDEX duplication mode** on **Flashforge Creator Pro 2 /
Creator 3 Pro**. These printers expect a centered single-half slice at
bed origin and fan toolheads out from there — the slicer-managed
paradigm of placing toolpaths at zone-relative positions produces gcode
the firmware can't reconcile, since it'd double-apply offsets.

When the flag is on and the active mode is non-primary, the slicer
subtracts the primary zone's plate-local center from the gcode emission
frame:

- **Writer offset** is augmented by the primary zone center so emitted
gcode is centered at bed origin.
- **Processor offset** stays at plate_origin only, so the gcode-preview
visualizer renders the centered toolpath at bed center rather than at
the prepare-view zone placement. The user sees what'll physically print
after firmware fan-out.
- **`translate_to_print_space()`** is augmented for frame coherence so
`first_layer_print_min/max` placeholders consumed by user start_gcode
(e.g. Flashforge's M118 "max delta from zero" header) reflect the
centered frame.

Slice-handoff runs per-slice: `PartPlate::refresh_imex_slice_offset()`
is called from `Plater::priv::update_background_process` after
`Print::apply()`, so reslicing with mode toggled but no plate change
picks up the updated offset.

When the flag is off, all related code paths reduce to no-ops
byte-identical to standard slicer-managed behavior. The two stock-code
touches at `Print.cpp:2553-2554` (gcode_offset composition) and
`Print.cpp:2823-2829` (translate_to_print_space) are explicit additive
shifts that collapse to identity when the offset is `Vec2d::Zero()`.

### G-code Injection

The selected parallel mode's G-code is written into the output file
immediately before `machine_start_gcode`:

- Looks up the plate's active mode name in `imex_mode_names` and writes
the corresponding `imex_mode_gcodes` entry.
- Processed through `placeholder_parser_process()` first, so
Klipper-style variable substitution works **and** any `{global}`
declarations flow forward into `machine_start_gcode`.
- Primary mode's G-code field is emitted too.
- Guarded against headless CLI slicing — `ensure_imex_zones()`
short-circuits when `m_plater` is null so the CLI path (used by
upstream's regression-test CI step) doesn't segfault on
`wxGetApp().preset_bundle` dereference.

### Placeholder Parser Integration
<img width="535" height="393" alt="2026-05-14-140227_grim"
src="https://github.com/user-attachments/assets/6d059c77-38f6-4418-bfe9-3bf963e8c836"
/>

Three placeholders register under **Slicing State** and are settable
from anywhere downstream:

| Placeholder | Type | Description |
|---|---|---|
| `imex_mode` | string | The active mode name |
| `imex_mode_index` | int | Index into `imex_mode_names` |
| `imex_mode_gcode` | string | The resolved mode G-code (post-parser) |

### Per-Tool Pressure Advance — Firmware-Agnostic

`set_pressure_advance()` takes an optional tool index (default `-1`,
preserving existing behavior for all non-IMEX call sites). Per firmware:

- **Klipper**: `EXTRUDER=extruder[N]` when `tool >= 0`, bare command
otherwise
- **RepRapFirmware**: `M572 D<N>` when `tool >= 0`, `M572 D0` otherwise
(preserves the pre-IMEX output; a bare `M572` applies to whatever tool
is selected and errors when there is none)
- **Marlin 2**: `M900 K<X> T<N>` when `tool >= 0`, bare `M900` otherwise
- **Marlin Legacy / fallback**: `M900 K<X>` always
- **Repetier**: `M233 X<X> Y<X>` (X is quadratic, Y is linear; same
value applied to both)

`m_imex_parallel_mode` is set once per export from the active plate
mode. PA tool-qualification is gated on this being a **non-primary**
parallel mode — primary-mode prints emit ordinary tool-change PA exactly
like any non-IMEX printer. Secondary active tools in parallel modes
receive explicit per-tool PA at print start since they never go through
a tool-change sequence.

### Per-Layer Temperature Management

In IMEX parallel modes, all active tools (primary + secondaries) get
temperature commands in `layer_change_gcode`:

- Layer 1 temperatures only emit on the first layer; subsequent layers
use normal layer-change temperatures.
- IMEX temperature handling is consolidated into the second-layer
transition.
- Layer-change temperature commands use `M104 T<N>` with
`physical_extruder_map` translation when applicable.

### MMU / AFC Support via `physical_extruder_map`

For printers where multiple logical filament slots share one physical
extruder (MMU, AFC, toolchangers), the `physical_extruder_map` profile
option translates tool slot indices to physical extruder qualifiers
before G-code emission.

- **Fallback**: on IMEX printers, `Print::apply()` uses the profile's
map only when it has one entry per extruder (the `nozzle_diameter`
count). Anything else, including the single-entry default, is replaced
by the identity map `0..n-1`.
- **Used by**: IMEX PA emission, layer-change temperature commands
(`M104 T`, `EXTRUDER=`, `M572 D`), ghost color resolution, ghost cache
key, tooltip lookup, click gate.
- **Profile authoring example** for a 7-slot printer with a 4-lane MMU
on extruder 0 and three independent direct drives on extruders 1/2/3:
  ```json
  "physical_extruder_map": ["0","0","0","0","1","2","3"]
  ```
  Non-MMU printers need no action — the identity fallback handles them.
- A centralized helper in `IMEXHelpers`,
`effective_physical_extruder_map(explicit_pem, nozzle_count)` (with a
`PresetBundle` overload that prefers the project's map over the
printer's), routes all PA/temp/ghost-color lookups through a single code
path.
- **No UI for editing the map** in this PR — non-trivial MMU/AFC layouts
require profile-authoring (hand-edit the printer JSON) or an updated
printer profile shipped by a vendor. A future enhancement would expose a
per-slot extruder picker in the Multimaterial section.

### Layer Preview Multi-Carriage Animation

The sequential preview (scrubber) animates all active carriages
simultaneously:

- One toolhead marker (colored cube) per active carriage, in addition to
the primary.
- Secondary marker colors: cyan (T1), yellow (T2), magenta (T3).
- **Copy** tools: marker placed at the same relative position within
their bed zone as the primary is in the primary zone.
- **Mirror** tools: reflect across the target zone's facing edge
(left-of-copy reflects across copy zone's left edge; right-of-copy
across the right edge). Y position is always zone-relative copy (all
tools on a row share a physical Y rail).
- Carriage footprint boxes use per-carriage `box_offset_x/y` so the
nozzle marker sits at the physically correct edge of the footprint —
zone-based X by default, collision-side edge for Mirror; gantry-behind Y
for back-row primaries, flipped for front-row primaries with a back-row
secondary.
- The filament usage legend notes the active carriage count and mode
name (e.g. `IMEX: ×2 (copy_mode)`).
- **View menu toggle**: `View → Show IDEX/IQEX Toolhead` (visible only
on the Preview tab, only when the active printer is IDEX/IQEX)
hides/shows the per-carriage toolhead representation during preview
playback. State persists to `app_config` as `show_imex_toolhead_boxes`.
Useful when scrubbing through dense toolpaths and the boxes get in the
way of seeing the underlying geometry:


[Kooha-2026-05-14-14-04-09.webm](https://github.com/user-attachments/assets/9869cd4d-3b60-4a6b-8dca-7ee1fc573ac1)

Copy mode:


https://github.com/user-attachments/assets/0774d285-ba36-4b86-a594-fb6572c3aede

Mirror mode:


https://github.com/user-attachments/assets/51528926-94dc-4d90-9b1a-1b42d9044be7

---

## Known Limitations

**Per-layer G-code collision detection**
The placement-time zone check catches gross violations (object placed in
wrong zone) but does not verify that toolpaths on any given layer
maintain adequate X separation between adjacent carriages. A per-layer
check via `ConflictChecker` was designed but deferred. Without it, a
print that passes placement validation could still crash carriages if
the primary object's toolpaths reach too close to a zone boundary.

**Brim avoidance of IMEX zones**
Standard `bed_exclude_area` exclusion zones are already respected by
brim generation. IMEX collision strips are not — the brim generator has
no visibility into them. The correct fix (feeding computed strip
polygons from `PartPlate` through the `Print` object to `Brim.cpp`) was
designed but deferred. In practice, users should leave adequate
clearance between printed objects and zone boundaries to account for
brim width.

**`extruder_printable_area` integration**
IMEX zones are not clipped against per-extruder printable polygons, and
there is no violation check for placing an object outside the
intersection of its active extruder's printable area and the IMEX
primary zone. Deferred pending clarification on the tool→extruder index
mapping.

**Ghost rendering in firmware-managed mode**
When `imex_firmware_managed_zones` is on, ghost rendering is suppressed
entirely. The existing `imex_head_transform` math is slicer-managed
semantics (places ghosts at `primary_zone_center + gantry_offset`) and
produces wrong positions when the toolpath is being emitted in a
centered frame. Proper firmware-managed ghost rendering — showing where
copies/mirrors will physically print after firmware fan-out — needs new
transforms designed around firmware-frame positions rather than a
coordinate-flip of the slicer-managed ones. Deferred to a follow-up.

**Filament-accurate multi-region ghost color**
For paired-gantry multicolor mirror (Span mode), the aggregated ghost
currently uses the representative tool's filament color as a single
solid swatch. A future enhancement would render the ghost split into
per-source-tool regions, each colored by the secondary tool that mirrors
it. Slicer-side correctness is already shipped — the G-code emits the
right T-codes; the ghost is a visual aid only.

**Ghost path overlays**
Secondary carriage toolpaths are not rendered in the layer preview. The
secondary markers animate correctly, but the paths they would trace are
not drawn. Adding ghost path rendering would require duplicating and
offsetting the toolpath geometry per secondary carriage, which is a
significant addition to the libvgcode rendering pipeline.

**No per-mode slicing**
All carriages in a mode execute the same sliced toolpaths (transformed
per zone). There is no support for slicing different objects for each
carriage independently within one mode.

**Global default IMEX mode**
There is no job-level IMEX default mode. Each plate's mode must be set
individually (default is always Primary). A future improvement would add
a global default in the sidebar (following the same pattern as bed type
and nozzle diameter), with per-plate overrides.

**Dynamic GL-rendered mode icons**
The per-plate icon currently uses static SVGs. A GL-rendered
carriage-grid icon that visually represents the mode's tool layout would
be a nicer UX but is deferred.

**Slice-all thumbnail icon refresh**
On the "Slice All" path, plates flagged as IMEX-violated do not refresh
their toolbar icon. Root cause and fix identified, not yet applied.

**Start-G-code filament placeholder**
The resolved per-head filament map is not yet exposed as a
`PlaceholderParser` vector. Exposing it would let MMU firmware macros
pre-load lanes before print start.

**No UI for `physical_extruder_map` authoring**
The MMU/AFC slot-to-physical-extruder map is currently profile-only —
there's no in-app dropdown or editor for it. Users with non-trivial
MMU/AFC setups must hand-edit the printer-preset JSON (or rely on a
vendor-supplied profile). A future enhancement would expose a per-slot
extruder picker in the Multimaterial section so users can declare the
mapping without touching JSON.

**Bundled IQEX printer profile**
A full IQEX printer profile with cover image, bed mesh, and matched
process/filament profiles is not bundled with this PR. Users must
currently author their own printer preset. Deferred to a follow-up
profile-only PR.

**Mode lifecycle gap**
Per-plate mode is stored as a string (the mode name). If a mode is
renamed or deleted from the printer preset after a project is saved, the
plate's saved mode name will not resolve and will silently fall back to
Primary on next load. A warning on load would be a useful addition.

**Firmware-managed prepare→preview frame jump**
In firmware-managed-zones mode, the prepare view shows the part at its
placed-in-zone position while the preview view shows the centered slice.
This is intentional — the views truthfully represent the prepare frame
vs. the post-firmware-fan-out frame — but the visual jump can be
confusing on first use.

---

## Firmware Assumptions

- The implementation assumes the firmware handles all carriage
synchronization and offset math. OrcaSlicer only injects the
mode-activation macro before machine start and is entirely dependent on
user configuration.
- Per-tool Pressure Advance is firmware-aware (Klipper / RRF / Marlin 2
/ Marlin Legacy / Repetier). Layer-change temperature commands use `M104
T<N>` with `physical_extruder_map` translation.
- Tested against Klipper on a real IQEX printer. RepRapFirmware gcode
emission is exercised via profile-driven slice tests (Flashforge Creator
Pro 2 profile); Marlin and RRF paths have not been validated on real
hardware print runs.
- Mid-print mode switching is explicitly not supported. The mode is
locked at print start.
- Firmware-managed-zones mode requires the printer's firmware to
translate centered slice coordinates into physical toolhead positions;
the slicer does not attempt to model the firmware's offset logic.

---

## Files Changed (High-Level)

| File | Change |
|------|--------|
| `src/libslic3r/PrintConfig.{cpp,hpp}` | IMEX config option definitions
+ declarations, `IMEXMode` enum, `physical_extruder_map`,
`imex_head_filament_map` (plate option), `imex_firmware_managed_zones` |
| `src/libslic3r/Preset.cpp` | IMEX keys registered in printer and
process preset option lists |
| `src/libslic3r/PrintApply.cpp` | `physical_extruder_map` identity
fallback on IMEX printers |
| `src/libslic3r/Print.{cpp,hpp}` | IMEX slice-offset field + accessors;
`translate_to_print_space` augmentation for frame coherence |
| `src/libslic3r/GCode.{cpp,hpp}` | Mode G-code injection, per-tool PA
emission (firmware-agnostic), per-layer temperatures for all active
tools, `m_imex_parallel_mode` state, `set_gcode_offset_with_imex_shift`
writer/processor split |
| `src/libslic3r/GCodeWriter.{cpp,hpp}` |
`set_pressure_advance(tool_index = -1)` per-firmware implementation |
| `src/libslic3r/IMEXHelpers.{cpp,hpp}` | `imex_head_transform`
(Primary/Copy/Mirror), `parse_imex_active_tools`,
`imex_primary_tool_for_mode`, `effective_physical_extruder_map`,
per-head filament resolution, `group_imex_active_tools_by_gantry` (Span
pairing), `compute_imex_slice_offset` (firmware-managed) |
| `src/libslic3r/Format/bbs_3mf.cpp` | Per-plate IMEX mode and
`imex_head_filament_map` serialization |
| `src/slic3r/GUI/Tab.{cpp,hpp}` | `IMEXModesCtrl` in Multimaterial
page, tool assignment persistence across gantry count changes, `primary`
sentinel handling, Span tile state, firmware-managed-zones checkbox,
null guard in `clear_pages()` |
| `src/slic3r/GUI/PartPlate.{cpp,hpp}` | Zone visualization (Span
row-strip aggregation), placement violation detection, per-plate mode
icon, ghost volume rebuild on mode/map/object mutation, warning-badge
overlay, pre-slice warning collection, `refresh_imex_slice_offset()`,
ghost suppression in firmware-managed mode, headless-CLI guard |
| `src/slic3r/GUI/Plater.cpp` | Validation pathway injection, per-plate
mode popup, ghost click handling, pre-slice warning dialog with "Don't
show again", IMEX multimaterial conflict routing, per-slice IMEX offset
refresh in `update_background_process` |
| `src/slic3r/GUI/GLCanvas3D.cpp` | Ghost rendering with per-head
filament color and translucent blending, picking via volume composite
id, active-plate scoping |
| `src/slic3r/GUI/GCodeViewer.cpp` | Multi-carriage marker animation,
Mirror math fix, carriage footprint box offsets, legend annotation |
| `src/slic3r/GUI/IMEXFilamentPickerPopover.{cpp,hpp}` | Ghost-click
filament picker |
| `src/slic3r/GUI/Jobs/ArrangeJob.cpp` | Auto-arrange constrained to
IMEX primary zone + collision strip exclusion via `m_unselected` |
| `src/slic3r/GUI/OG_CustomCtrl.cpp` | Empty `option_set` guard for
widget-only lines |
| `resources/images/plate_imex_mode*.svg`, `imex_remove.svg` | Per-plate
mode icons (light/dark/hover variants), remove button |
| `tests/libslic3r/test_imex_helpers.cpp` | Coverage for IMEX head
transforms, `effective_physical_extruder_map`,
`imex_multicolor_block_reason` gating,
`group_imex_active_tools_by_gantry` Span pairing,
`compute_imex_slice_offset` |

---

## Testing Notes

Validated on an IQEX printer (4 carriages, 2×2 grid, Klipper firmware)
and against the Flashforge Creator Pro 2 profile (2-tool IDEX, RRF
flavor, center-origin bed) with the following configurations:

- **Primary only** — baseline, no regression vs. standard
single-extruder workflow
- **Copy mode** (T0 Primary, T1 Copy, same row) — carriage markers
animate in sync offset by strip width; ghost tracks drag/rotate/scale
- **Mirror mode** (T0 Primary, T1 Mirror, same row) — T1 marker reflects
T0 across zone-boundary plane; ghost drag reflects X correctly while Y
tracks 1:1
- **Cross-row copy + mirror** (T0 Primary row 0, T2 Copy row 1, T3
Mirror row 1) — T2 follows T0's zone-relative position; T3 mirrors T2's
X; Y shared per row
- **4-tool copy mode** (T0 Primary, T1/T2/T3 Copy) — zone sizing
correct, all four markers + ghosts render in sync
- **Paired-gantry multicolor (mc-mirror, Span)** — `0:P,1:S,2:M,3:M`:
ghost aggregates to one per non-primary gantry, X-flipped, drag tracks
1:1 with primary; collision strip audit doesn't fire spurious strips on
primary's right edge
- **Firmware-managed copy mode** (Flashforge Creator Pro 2) — emitted
gcode coordinates are centered at bed origin (X = −cube_half_width …
+cube_half_width), `first_layer_print_min/max` placeholders evaluate
symmetrically, M118 header produces correct "max delta from zero" values
for Flashforge's existing template, ghosts suppressed
- **Firmware-managed flag toggle** — flipping the checkbox off restores
slicer-managed iMEX behavior (toolpath at zone position)
byte-identically; flipping on restores center-origin slice
- **Delete active mode** — no crash; plate resets to Primary
- **Placement outside primary zone** — slicing blocked with error
notification
- **Multi-material conflict warning** — plate icon gets warning badge;
Yes/No dialog fires on slice; "Don't show again" checkbox persists
- **Multi-color block rule** — `0:P,1:C` on a single gantry blocks at
slice time with actionable error message
- **Ghost filament picker** — left-click on ghost opens picker;
selection writes to `imex_head_filament_map` and round-trips through 3MF
save/load
- **Per-plate mode selection** — left-click cycles modes, right-click
shows popup, undo/redo correctly reverts mode changes, mode persists
through project save/load
- **Gantry count change round-trip** — reducing from IQEX (4 carriages)
to IDEX (2 carriages) and back restores all previously assigned tool
roles
- **MMU/AFC `physical_extruder_map`** — explicit map routes PA and
temperature commands to correct physical extruder qualifiers;
auto-derive fallback preserves 1:1 behavior for non-MMU printers
- **Headless CLI slicing** — `orca-slicer --slice project.3mf` does not
segfault on IMEX-enabled printers
- **Dark mode** — all four plate-icon variants render correctly
- **Pre-slice warnings suppress + restore** — `app_config` flag flips on
checkbox; re-enable toggle in Multimaterial config restores dialog
- **Stock non-IMEX printer regression check** — slicing a single-head
Voron Trident 350 profile produces byte-identical gcode vs. baseline;
the firmware-managed flag and Span tile state both no-op when not
applicable
- **Full unit test suite** — 247/247 passing, including Layer 1 coverage
for `compute_imex_slice_offset`, `group_imex_active_tools_by_gantry`
Span pairing, and `imex_multicolor_block_reason` gating
2026-10-10 20:34:56 +08:00
SoftFever b14ed3e0c1 Multi nozzle UI Fixes / Improvements (#16075)
# New multi nozzle icon for guidance

new icon has tooltip for guidance
<img width="407" height="77" alt="Screenshot-20261005181353"
src="https://github.com/user-attachments/assets/f27bbf79-7570-4f30-ab3c-52fa972c9fa3"
/>

**Before**
<img width="414" height="228" alt="Screenshot-20261002144627"
src="https://github.com/user-attachments/assets/7941891a-5a27-478b-a63f-49cf386e430f"
/>

**After - Moved icon to pre label position**
• reduces possibility of wrapping of labels
• Aligns labels and improves readability

<img width="399" height="239" alt="Screenshot-20261005181511"
src="https://github.com/user-attachments/assets/93f6b555-bbec-496a-b708-8c12c3b3185b"
/>

# Fix > Modified state not applied on tabs
**Before - modified colors not applied to control**
<img width="751" height="157" alt="Screenshot-20261001004828"
src="https://github.com/user-attachments/assets/0c149fce-45e8-498f-8daa-7b54803399e9"
/>

**After**
<img width="752" height="150" alt="Screenshot-20261005181614"
src="https://github.com/user-attachments/assets/5a930bb2-6487-4987-b58d-850de6ae6779"
/>

Applied color as border because changing text color was not readable
<img width="159" height="71" alt="Screenshot-20261002152522"
src="https://github.com/user-attachments/assets/f694fc8d-c9f6-46d7-9e06-7762003c9f20"
/>

and applying as background color was too eye catchy
<img width="184" height="80" alt="Screenshot-20261002152533"
src="https://github.com/user-attachments/assets/2b67c1dd-8977-46ea-88fc-ce57bfad55bd"
/>

# Usable tabs on Printer settings
• Fix > Using long string makes "Motion ability" and "Notes" tab
unreachable
• Matches T1,T2.. terminology with nozzle section
• Makes https://github.com/OrcaSlicer/OrcaSlicer/pull/14737 available to
use now
 
**Before**
<img width="751" height="126" alt="Screenshot-20261002152643"
src="https://github.com/user-attachments/assets/0241d3c4-acc1-491e-ab85-fa60385c5e85"
/>

**After**
<img width="748" height="129" alt="Screenshot-20261002152628"
src="https://github.com/user-attachments/assets/c475d6c8-4f0f-47df-aa04-9d894b1c358d"
/>

No issue with 8 items
<img width="748" height="124" alt="Screenshot-20261002153018"
src="https://github.com/user-attachments/assets/9a8c4e12-2cdc-4508-b82b-134476589d80"
/>

# Dynamic Padding
• buttons uses dynamic horizontal padding now depends on item count.
reduces padding size to reduce scrolling

**Before**
<img width="416" height="91" alt="Screenshot-20261002153309"
src="https://github.com/user-attachments/assets/977b22db-e686-4967-95be-13772d77cefd"
/>

**After** 
<img width="403" height="79" alt="Screenshot-20261005181728"
src="https://github.com/user-attachments/assets/9aac0d17-0729-408f-9237-62b17236488f"
/>

**Before**
<img width="745" height="153" alt="Screenshot-20261002153659"
src="https://github.com/user-attachments/assets/06951759-419a-40fb-8fc2-d93f5b04d6ea"
/>

**After** 
<img width="748" height="149" alt="Screenshot-20261005181833"
src="https://github.com/user-attachments/assets/9ccec344-1dd0-4b03-ac12-20d298f413c8"
/>

**After** 
<img width="756" height="178" alt="Screenshot-20261009144637"
src="https://github.com/user-attachments/assets/1343c39e-5cbd-4f9e-b501-df3797579961"
/>
<img width="761" height="198" alt="Screenshot-20261009144459"
src="https://github.com/user-attachments/assets/efb1ef75-a602-4d3a-a17f-9354ed633357"
/>
<img width="758" height="196" alt="Screenshot-20261009144510"
src="https://github.com/user-attachments/assets/df1d88c5-1b6f-4748-a6bd-a96659a83fe0"
/>
<img width="764" height="190" alt="Screenshot-20261009154210"
src="https://github.com/user-attachments/assets/b876ed71-5fa0-47e4-83c8-a33100e0a229"
/>

# Keeping compact look & Making it more readable
• Removed ":" from labels to gain space as much as possible and
increased font size a bit but UI didnt allowed bigger font

• Matched font sizes of nozzle section while keeping height of items.
Previous font was too small. removed "mm" text to gain more space but
added it in tooltip
**Before-After** 
<img width="800" height="240" alt="Screenshot-20261002154132"
src="https://github.com/user-attachments/assets/bc4ddcb1-2248-4fc7-9492-ab4fb68cb659"
/>

• Matched font sizes for BBL nozzle selectors
**Before-After** 
<img width="806" height="200" alt="Screenshot-20261002154513"
src="https://github.com/user-attachments/assets/b3d38317-8e4d-4c1e-a490-ce4959ed700a"
/>

<img width="794" height="156" alt="Screenshot-20261002154649"
src="https://github.com/user-attachments/assets/00917584-8e1a-44b0-8c0b-79cec30059bf"
/>

# Layout and Styling fixes
• Matched background color of non active buttons with (Global/Objects)
switch
**Before**
<img width="405" height="159" alt="Screenshot-20261002154947"
src="https://github.com/user-attachments/assets/8a8adcc8-431a-48be-aabd-a981335b6ab9"
/>

**After** 
<img width="407" height="159" alt="Screenshot-20261005182106"
src="https://github.com/user-attachments/assets/7f837be3-ce85-49e6-909a-05350b3d8b30"
/>

# Other effected dialogs
<img width="541" height="195" alt="Screenshot-20261002165003"
src="https://github.com/user-attachments/assets/109abbc3-d7c0-4384-9b85-d943e2027963"
/>
<img width="547" height="308" alt="Screenshot-20261002165307"
src="https://github.com/user-attachments/assets/951d9a8d-56f9-4659-aebe-77f236e8c838"
/>


<!--
> A guide for users on how to download the artifacts from this PR.
-->

[How to Download Pull Requests Artifacts for
Testing](https://www.orcaslicer.com/wiki/how_to_download_pr_artifacts)
2026-10-10 20:27:37 +08:00
Clifford GarwoodandClaude Opus 5.5 8b5280098f Merge upstream main: center of mass markers, adaptive TPMS, texture bake color mixing, post-processing preview fix, GLEW/OpenCSG removal
Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
2026-10-10 01:44:42 -04:00
TheLegendTubaGuy 93c6ab93dc Merge branch 'main' into fix/16194-bbl-infill-retraction 2026-10-09 13:57:18 -05:00
SoftFever 901b14a723 Merge branch 'main' into feature/texture-color-number 2026-10-10 02:46:28 +08:00
SoftFever ebaff19754 Merge branch 'main' into extruder-variants-ui-2 2026-10-10 00:42:48 +08:00
Misterff1 b5ef24e7ff Fix regression: Arc Fitting setting for BBL P2S (#16319)
Disable Arc Fitting for BBL P2S
2026-10-10 00:32:46 +08:00
SoftFever 0473da4ef8 Let texture bakes create a chosen number of mixed colours
The new Mixed colors setting caps how many mixed filaments a bake adds. They are picked from the
texture's colours, and only the ones the bake paints with are created. Previewing no longer creates
filament slots, both previews show a mix in its slot's colour, and the bake paints each mix with the
slot it actually got.
2026-10-09 22:23:07 +08:00
Clifford GarwoodandClaude Opus 5.5 f970a607ae Merge upstream main: belt printing, texture displacement color mixing, 3MF component cycle checks, undo blocked during background jobs
Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
2026-10-09 07:44:12 -04:00
ExPikaPaka 62b829d1cb Texture displacement: mix filament colours in the slicer (#16242) 2026-10-09 17:52:35 +08:00
TheLegendTubaGuy a3005a96ac Merge branch 'main' into fix/16194-bbl-infill-retraction 2026-10-09 02:33:14 -05:00
SoftFever a5d21b9922 Merge branch 'main' into belt-printer 2026-10-09 13:28:39 +08:00
yw4z 25ec403156 Unify wiki & video guide buttons (#16159)
* init

* fix build

* Update PrintOptionsDialog.cpp

* Update TroubleshootDialog.cpp
2026-10-09 12:13:00 +08:00
Misterff1 627ae12dd3 Fix regression: bring back some machine specific BBL P2S start gcode (#15967)
Fix removal of custom code for machine_start_gcode for Bambu Lab P2S
2026-10-09 11:21:35 +08:00
mateuszandClaude Opus 5.5 64d09c9bca Add AnkerMake PLA+ filament profiles for Anker printers
Adds AnkerMake PLA+ Basic, Matte, Metallic, Silk and Glitter, converted from eufyMake Studio's bundled AnkerMake profiles (AGPL-3.0). Bumps the Anker vendor version to 02.04.00.06.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
2026-10-08 14:13:00 -05:00
SoftFever 5072f6b614 Merge branch 'main' into belt-printer 2026-10-08 23:03:56 +08:00
Rodrigo Faselli d09850c528 Merge branch 'main' into main 2026-10-08 10:45:49 -03:00
SoftFever bf59db1053 Merge branch 'main' into extruder-variants-ui-2 2026-10-08 20:31:57 +08:00
Ian Chua d401d4f837 revert: profile changes made for OTA testing (#16280) 2026-10-08 16:13:12 +08:00
yw4z 33f886406e Profile folder optimizations (#16259)
* anycubic kobra 3 v2

* bbl

* rh3d

* melting point

* Pragostroj

* prusa

* ultimaker

* creality

* kingroon

* m3d

* wondermaker

* bbl fix plate origins

* update some of creality plates

* Update Creality.json
2026-10-08 01:24:57 +03:00
Joseph Robertson e39d6cc089 Merge branch 'main' into belt-printer 2026-10-07 14:14:20 -05:00
SoftFever e027f8b225 Remove the CAD Primitive and Sketch gizmos from Prepare 2026-10-07 21:20:05 +08:00
SoftFever 27418cea0f Merge branch 'main' into extruder-variants-ui-2
# Conflicts:
#	src/slic3r/GUI/Tab.cpp
2026-10-07 19:40:01 +08:00
SoftFever 7fdfea6efa Merge branch 'main' into main 2026-10-07 19:31:24 +08:00
yw4z a38e6c61f2 Show dummy image for printers without cover on printer selectiondialog (#16235)
init
2026-10-07 12:57:28 +03:00
Joseph Robertson ef3c47135f Belt printer: retire the redundant and unused options (#16236)
Follow-up to #16195 and the review discussion on #14394 (yw4z's note
about the third column on the *Belt tilt* row). Removes the belt options
that are redundant or unused before the branch ships, so they never need
compatibility handling after a release, and fixes supports under a
leading overhang. Every removed key is on `handle_legacy()`'s ignore
list, so existing profiles and 3MFs load silently.

## Removed

- **`belt_slice_rotation_global`**, **`preslice_remap_global`**,
**`belt_preslice_global`** (*Global mesh transforms*) and
**`gcode_back_transform`** — the global mode and the back-transform are
what belt printing is; they are presumed on wherever the flags were
consulted (`PrintObjectSlice`, `BeltBackTransform`, `BeltGCode`,
`Print::process`, `PrintApply`, `GCodeViewer`). The *Belt tilt* row is
axis + angle only; the three `fdm_belt_common.json` drop the keys.
- **`preslice_remap_x/y/z`** — no profile used the pre-slice axis remap;
the belt tilt axis plus the G-code axis remap cover the machines that
exist, and its implementation only agreed with itself for a plain swap.
The forward transform is the rotation.
- **`belt_support_z_offset_mode`** and **`belt_support_floor_mode`** —
the first was never read by a generator; the second's only shipped value
(*Generator only*) is now the behaviour.
- **`first_layer_plane`**, **`first_layer_plane_offset`**,
**`first_layer_plane_thickness`** and `FirstLayerPlane.{cpp,hpp}` — the
first-layer band is measured from the belt surface and is one first
layer height thick.
- `belt_brim_instances_compatible()` and its validation warning:
instances along the belt get their brim.

## Supports under a leading overhang (the clipping at the object's local
Z = 0)

The slicing frame of a belt object started at its lowest vertex, but the
belt under the leading end of an overhang lies below that, so no
generator could reach it: normal supports stopped at the object's lowest
layer, and both tree generators carried extension hacks sized from the
pre-rotation bbox and capped at global Z = 0 (right only for the
trailing half of the belt). The frame now starts at the lowest
belt-floor point under the footprint, less a 10 mm margin along the belt
for the base of a support column, and the extensions are gone:

- **Normal supports** run in the object frame and get the global belt Z
offset shifted onto the result (as organic already did). With the offset
on the object layers, a top contact at negative Z turned the
intermediate-layer count negative and the generator allocated layers
until the kernel killed it — any overhang in the leading half of the
belt did this. The first-layer flange expansion is skipped on a belt
(the first support layer is the leading tip, not a flange).
- **Classic tree** nodes keep dropping until their whole circle is in
the belt, so a branch tapers to a tip on the belt instead of stopping a
radius above it.
- **Organic**: the belt is no longer a support blocker. A blocker is a
collision, and a branch descending onto one slides off it, down the belt
and ahead of the part; the belt is where branches end, which the
per-layer floor clipping already does.

Regression test *Belt supports reach the belt under a leading overhang*:
a cube with a fin whose underside is parallel to the layers, 20 mm ahead
of the cube and up to 41 mm of slicing Z above the belt, for normal,
organic and classic tree supports; the lowest support layer must sit on
the belt beneath its own lines.

The belt object height (the layer range) is now estimated from the box
of the mesh as placed on the bed. `raw_bounding_box()` has the
instance's Z offset removed, which was harmless for the old
rotated-extent estimate but not for one anchored at the belt floor (a
point's rotated z and the floor under it move in opposite directions
under a Z shift): with the first version of this change every part came
out as a wedge, sliced only up to its diagonal, in the GUI and CLI
alike. Caught by a GUI test pass; the leading-overhang test now also
checks that the whole part is sliced.

## Belt brim after the parallel support step

`belt_brim_obstacles()` reads every object's layers and support layers,
which another object's support step rebuilds (and now shifts) at the
same time. The brim is generated sequentially once the parallel step is
over (`PrintObject::generate_belt_brim()`). This is the race behind the
Windows arm64 segfault in *Belt brim of each object precedes its
perimeters on its own filament*.

## UI

- *Belt tilt* is two rows: the angle (Advanced) and the axis (Developer;
a profile-level kinematics choice). A shared line is shown by its first
option's mode, so they cannot share one.
- *Machine frame transforms* is five single-option rows (G-code remap X
/ Y / Z, Decouple machine-frame tilt, Machine-frame tilt angle — the
angle row only appears when decoupled) instead of two multi-column
lines; the remap fields got full labels since they stand alone now.
- The gravity indicator on the bed is a plain line along the up
direction (no cone, 60 % of the axes' length), per yw4z.
- The *Show raw G-code (belt only)* legend/canvas toggle and its `B`
shortcut are gone; the preview is the designed view.

Also carries the two-line `phong.fs` fix from #16226 (merges as a
no-op).

## Verification

- `libslic3r_tests` 1116 passed (92 648 assertions); `fff_print_tests`
351 passed (561 696 assertions).
- `scripts/clang_tidy_diff.py --base upstream/belt-printer`: no
findings.
- `scripts/orca_profile_tool.py check`: no profile references a removed
key.
- GUI target builds; a scripted GUI pass (xdotool) checked the settings
groups in every mode, slicing, export, instances, the purge tower,
calibration dialogs, the wizard, printer switching and 3MF round-trip.

The wiki pages (OrcaSlicer/OrcaSlicer_WIKI#374) get a follow-up dropping
the removed sections once this is in.
2026-10-07 00:44:41 -05:00
Joseph Robertson 7f749ee02b Merge branch 'main' into belt-printer 2026-10-06 18:27:21 -05:00
harrierpigeonandClaude Fable 5.1 8039d4d2ac Belt printer: retire the redundant and unused options
Removed, with the keys added to handle_legacy()'s ignore list so saved
profiles and 3MFs keep loading:

- belt_slice_rotation_global and preslice_remap_global. Both were only
  consulted when belt_preslice_global ("Global mesh transforms") was off,
  which no profile does; belt_preslice_global is now the single global
  mode and is presumed on everywhere the old flags were ORed in
  (PrintObjectSlice, BeltBackTransform, BeltGCode, Print::process,
  PrintApply). The Belt tilt row is axis + angle only.
- preslice_remap_x/y/z. No profile used the pre-slice axis remap; the belt
  tilt axis plus the G-code axis remap cover the machines that exist, and
  its implementation only agreed with itself for a plain swap (matrix
  columns vs remap_bbox rows). BeltTransformPipeline::build_preslice_remap,
  remap_bbox and has_preslice_remap are gone, the forward transform is the
  rotation, and the G-code header no longer carries the remap.
- belt_support_z_offset_mode. Saved and invalidated steps, but no support
  generator read it.
- first_layer_plane and first_layer_plane_offset, with FirstLayerPlane.cpp.
  On every shipped configuration the band is measured from the belt
  surface (GCode::belt_height_above_floor) and the evaluator was only
  reached for an explicit XY/YZ/XZ choice or a non-zero offset, which
  nobody set. first_layer_plane_thickness stays as the band unit,
  relabelled "First layer band thickness".

UI: the Machine frame transforms group is five single-option rows (G-code
remap X / Y / Z, Decouple machine-frame tilt, Machine-frame tilt angle;
the angle row is shown only when decoupled) instead of two multi-column
lines, and the remap fields carry full labels.

Also carries the phong.fs struct fix from #16226 so the worktree build
links its shaders.

libslic3r_tests and fff_print_tests pass; clang-tidy diff check clean;
orca_profile_tool.py check clean.

Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
2026-10-06 18:14:34 -05:00
harrierpigeonandClaude Fable 5.1 2867a701af Belt printer: declare up_direction in both phong fragment shaders
#16195 added slope.up_direction to the SlopeDetection uniform struct of
phong.vs (110 and 140) but not to phong.fs, so the two stages declared the
uniform with different types and the program failed to link: "unable to
load shaders: phong" at startup, and studio lighting / realistic phong
rendering fell back. gouraud.fs already carries the member.

Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
2026-10-06 13:59:28 -05:00
SoftFever 3f36a86f39 Use PrusaSlicer's filament-change settings on Prusa MMU3 and INDX printers (#16209)
# Description

Filament changes on the Prusa CORE One MMU3, MK4 MMU3 and CORE One INDX
now use the settings PrusaSlicer 3.0 ships for them. On the MMU3
printers these are Prusa's per-material ramming, load and unload speeds,
cooling moves and stamping. On the INDX they are Prusa's multi-tool
ramming and 10 mm³ minimal purge, plus a filament start G-code that
restores pressure advance after the purge station disables it and then
sends `M573 R`, as PrusaSlicer does.

This supersedes #16008. Thanks to @nuclearmistake for that work, which
identified what these printers need for reliable filament changes. This
PR reaches the same goal with the existing `include` mechanism rather
than new printer-level overrides. The values live in shared templates in
the Prusa bundle (PLA and PETG families with High Flow ramming variants,
and one for the INDX), and the filament presets include them, so each
material keeps its own values as in PrusaSlicer. For the MK4 MMU3, ten
small presets inherit the MK4 filament tunes and include the templates;
they cover the materials PrusaSlicer offers with the MMU3 and replace
the library generics as that printer's defaults. The CORE One MMU3 0.6
nozzle now uses the 0.6 Generic PLA and Prusament rPLA profiles, as in
PrusaSlicer. Unlike #16008, filaments from Orca's shared library keep
Orca's defaults on these printers.

No engine change, and printers without an MMU3 or INDX are unaffected.
MK4 MMU3 users also get the MK4's material tuning, such as temperatures
and cooling, from the new presets.

# Screenshots/Recordings/Graphs

<!--
> Please attach relevant screenshots to showcase the UI changes.
> Please attach images that can help explain the changes.
-->

## Tests

<!--
> Please describe the tests that you have conducted to verify the
changes made in this PR.
-->

<!--
> A guide for users on how to download the artifacts from this PR.
-->

[How to Download Pull Requests Artifacts for
Testing](https://www.orcaslicer.com/wiki/how_to_download_pr_artifacts)
2026-10-07 01:35:47 +08:00
SoftFever 95a168a376 Merge branch 'main' into feature/CAD-improvements 2026-10-07 01:32:42 +08:00
SoftFever 505a712f86 Replace the Design tab's FEATURES label with a Sketch button 2026-10-07 00:30:25 +08:00
SoftFever e4b0828644 Add Zoom to selection to the Design tab's rows and right-click menu 2026-10-07 00:01:07 +08:00
SoftFever 6d8a13c33b Move the Design tab's Bed toggle into the Feature tree, under the Origin row
The bed's show/hide state is now remembered across sessions like the Origin
row's, shown by default. The GUI ladder's ribbon x-coordinates are shifted by
the removed checkbox's derived width and still need re-measuring on the rig.
2026-10-06 20:44:43 +08:00
SoftFever 206a7461ea Give the Design tab's import icons an arrow and size its document icons consistently 2026-10-06 19:03:30 +08:00
SoftFever db33aaa4dc Extend Prusa's tip forming to the MK4 MMU3 and CORE One INDX 2026-10-06 18:25:06 +08:00
SoftFever cd959d5d87 Match PrusaSlicer's tip forming on CORE One filaments
Ramming, load/unload, cooling-move and stamping values follow the
PrusaSlicer 3.0 presets, which retune several of them relative to
2.9.6. The CORE One MMU3 0.6 nozzle now uses the 0.6 Generic PLA and
Prusament rPLA profiles, as in PrusaSlicer.
2026-10-06 18:02:32 +08:00
TheLegendTubaGuy ff3c151417 Fix BBL infill retraction reduction default 2026-10-06 03:26:24 -05:00
Ioannis Giannakas 6561c4d35b Merge branch 'main' into main 2026-10-06 08:01:59 +01:00
harrierpigeonandClaude Fable 5.1 61a0db4a87 Belt printer: address the review on #14394
Code review items (raistlin7447):

1. PrintObject::slice() zeroes m_belt_min_z, m_belt_global_z_offset and
   m_belt_global_xy_correction before slicing. They were only written in belt
   mode, so a project switched to a normal printer, or whose tilt axis was set
   to None, kept the old offsets and shifted the adaptive infill octree and the
   organic support layers by them.
2. TreeModelVolumes shifts the support blockers into the raft-offset index
   space; a test now pins the index the blocker lands on.
3. The final-alignment clamp in libnest2d is opt-in (NfpPConfig::clamp_to_bin)
   and arrange sets it for belt printers only. Printers with an off-centre
   best_object_pos keep their alignment; a flat-bed test pins that.
4. The preview's belt view follows the loaded G-code, not the selected printer:
   GCodeProcessor carries the file's belt keys (and, for a belt file, its bed)
   into export_config_for_render(), and GCodeViewer enables the belt view from
   the header tilt.
5. belt_shift_layer_grid() also shifts the cached belt floor and the global Z
   offset, so a support-only or brim-only change after the purge-prism snap
   matches a fresh slice.
6. update_print_fff_config() resets raft_layers and draft_shield on a belt
   printer instead of only greying out the fields Print::validate() rejects.
7. GCodeWriter takes a first-layer point test instead of the FirstLayerPlane;
   GCode installs one that measures from the belt surface, like its
   extrusions, so the first-layer travel speed and the second-layer
   temperature change no longer depend on the gcode_remap_* convention.
8. belt_brim_clip_leading_edge() is exported and called by both the generator
   and the test.
9. Both phong.vs shaders use slope.up_direction for the overhang highlight.

The pre-slice and G-code axis remaps are gated on belt_printer through
BeltTransformPipeline::axis_remap_enabled(), so belt keys left in a profile
cannot change a non-belt print.

Tests requested in the review: belt-only keys at non-default values leave
non-belt G-code unchanged; switching a sliced project from belt to non-belt
(and tilt axis None) matches a fresh slice; a support-only change on a belt
purge print matches a fresh slice; non-belt start G-code moves keep the
first-layer Z in the processor; the belt brim's segment count catches a band
emitted twice.

The belt-to-non-belt test exposed an unrelated gap: invalidate_step(posSlice)
re-invalidated posSupportMaterial but not posSimplifySupportPath, so after
any re-slice the regenerated support paths were exported unsimplified.
posSimplifySupportPath is now in that list.

Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
2026-10-05 23:06:01 -05:00
harrierpigeon a7c1595738 Merge upstream/main into belt-printer
Brings belt-printer up to main eb5b9a77b9. One conflict: main translates
the pressure advance test name (#16142) on the line after belt's guard that
keeps PA Line and PA Pattern off belt printers; both are kept.
2026-10-05 13:40:41 -05:00
Ian BassiandAlexandre Folle de Menezes eb5b9a77b9 Update Translations + String improvements (#16142)
Co-authored-by: Alexandre Folle de Menezes <afmenez@gmail.com>
2026-10-05 14:43:19 -03:00
yw4zandNoisyfox 1496906939 UI Fixes / Improvements (#15074)
* plates-toolbar-scrollbar-size

* update

* filament grouping dialog

* mixed filament list

* Update StepMeshDialog.cpp

* moves plot scrollbar

* fix position of popups

* printer agent combo box width

* match multiline text control background

* add dots to configure button

* also correct label color for multiline input

* side tools connecting text color

* recenter dialog text color

* preferences experimental features

* upgrade panel hyperlink color + right margin

* fix position of + sign on printer selector

* speed control popup

* bbl fan control window

* AMS materials setting

* monitor > ams section

* match background color of multiline text editor on project page

* Fix SwitchButton colors

* bbl camera popup

* BBL > Send print dialog

* Revert "BBL > Send print dialog"

This reverts commit 128e145897.

* Revert "bbl fan control window"

This reverts commit 4a0db62790.

* Revert "bbl camera popup"

This reverts commit e2301e3237.

* Revert "monitor > ams section"

This reverts commit 66e6894eb1.

* Revert "fix position of + sign on printer selector"

This reverts commit 1523ba24c0.

* Revert "upgrade panel hyperlink color + right margin"

This reverts commit 541f2514c5.

* Revert "side tools connecting text color"

This reverts commit a9ab074247.

* Revert "recenter dialog text color"

This reverts commit f4670d32b2.

* Revert "AMS materials setting"

This reverts commit b12827f9b5.

* Revert "Fix SwitchButton colors"

This reverts commit 2d4f1d1fe9.

* match object list background color

* match compare dialog wxDataViewCtrl background color

* fix centering of iconized buttons on linux

* fix compare dialog background color not applied on linux

* edit gcode dialog components background color

* Update Plater.cpp

* fix dev button font size

* Fix scaling issue on SwitchButton while using 150%

* transfer or discard changes dialog wiki label

* "Transfer or Discard changes" / "Unsaved Changes" dialog header color

* object table colors & header spacing

* progress dialog

* fix progressbar look on linux

* fix build

* fix build

* fix centering of iconized icon again

* fix header background color

* revert bbl fan control

* add includes

---------

Co-authored-by: Noisyfox <timemanager.rick@gmail.com>
2026-10-05 19:06:24 +03:00
Rodrigo Faselli 881f2e0c12 Merge branch 'main' into main 2026-10-05 12:17:33 -03:00