Completes the Split-type IMEX mode plumbing started in 0bb1cef. Phase 1
landed the config option, helper, validator, and plater badge updates;
this commit lands the visualization side and the editor surface so users
can actually create and use Split modes.
Zone aggregation (PartPlate::calc_imex_zones)
- When mode_type == "split" and there's row separation between primary
and secondaries, collapse copy_cells and mirror_cells per-gantry
(each cell gets primary's column) and force has_col_sep = false.
make_boxes then takes its full-X-row branch and renders one zone
covering each non-primary gantry's full Y band, instead of per-tool
quadrants.
Ghost aggregation (PartPlate::calc_imex_ghosts)
- Pre-scan the active mode's tool list to pick a canonical head per
non-primary gantry (the tool whose physical column matches primary's;
fallback to first-seen). For Split modes, the per-head emission loop
skips non-canonical tools so each non-primary gantry gets exactly one
aggregate ghost rendered at the canonical's mirrored position.
- update_imex_ghost_transforms unaffected — it iterates the already-
filtered ghost set.
Modes editor Type column (IMEXModesCtrl in Tab.cpp)
- Each non-primary mode row gains a wxChoice dropdown selecting Copy /
Mirror / Split. Primary row gets a static "Primary" label.
- Header row picks up a "Type" column header with sized spacer that
aligns with the dropdown.
- get_mode_data() now returns a fourth tuple element (types vector).
load_from_config() reads imex_mode_types via imex_mode_type_for so
legacy presets without the new option still infer types from mode
names. on_change writes imex_mode_types back to config.
- matches_config(), snapshot_row(), row_differs_from_parent(), and
reset_row_to_parent() all extended to track type alongside name/
tools/gcode — per-row reset arrows reflect type-only changes, and
reset restores the parent's type via imex_mode_type_for fallback.
- Type-choice dropdown fires notify() on change so the dirty/save flow
catches it like any other row edit.
End-to-end: switching a row to Split type in the modes editor, then
selecting that mode on a plate, allows multicolor slicing (the gantry-
pair check is bypassed in imex_multicolor_block_reason) and the bed
visualization shows a single aggregate zone + one ghost per non-primary
gantry instead of per-tool clutter.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
Felix14-v2 PR review feedback (https://github.com/OrcaSlicer/OrcaSlicer/pull/13086#issuecomment-4323696312)
plus the slice-time validation work that follows from his bug list.
UI polish:
- Capitalize "Primary" in display (right-click mode menu, plate tooltip).
Sentinel stays lowercase for wire compatibility.
- Pre-slice-warnings checkbox now uses Orca's ::CheckBox so it matches the
green toggle style of the rest of the IDEX/IQEX configuration page.
- DPI-scaled the IMEXModesCtrl (modes editor) sub-panels, button grid,
text wraps, gcode textarea, and the ghost-tooltip swatch (imgui.scaled).
Legend swatches sized to body-text height for visual balance.
- Primary mode tool buttons in the modes editor are now disabled (read-
only): cycling roles on the IMEX-off mode is a no-op and confusing.
- Modes editor sub-panels now explicitly inherit the app's window-default
dark colour so chromeless ScalableButtons don't render with a visible
light box around their icons on GTK dark themes.
- Per-mode-line reset arrows in the modes editor: each row gets a small
reset bitmap that snaps that row's name+tools+gcode triplet back to the
saved preset's value. matches_config() guard on the page-level reload
prevents the textbox-being-typed-into from being destroyed mid-keystroke.
- New View menu item "Show IDEX/IQEX Toolhead" — toggles the per-carriage
footprint boxes during G-code preview playback. Gated to Preview tab +
IMEX printer; backed by app_config so it persists.
Coordinated config migrations:
- imex_tool_layout and imex_viz_theme migrate from coString to coEnum
(ImexToolLayout / ImexVizTheme). Existing wire format preserved so
saved presets and 3MFs deserialize unchanged. Side-benefit: both now
pick up standard Field rendering and so finally show reset arrows.
Slice-time safeguards (the validation half):
- imex_suppresses_bare_toolchange(parallel_mode, count): suppresses the
slicer's bare T<n> at print-start in any IMEX parallel mode (the user's
imex_mode_gcode + machine_start_gcode owns tool activation there). Mid-
print T<n> emits normally — Print::validate blocks the configurations
where mid-print T<n> wouldn't make sense. Applied to both code paths
inside GCode::set_extruder (the long multi-extruder path AND the
single-extruder path that fires when multiple_extruders=false).
- imex_multicolor_block_reason(): hard-stop validator returning a user-
facing reason string when the active IMEX configuration can't physically
support multi-color. Catches IDEX (1 tool/gantry), 2-tool-active IQEX
(no within-gantry swap topology), and any MMU/AFC lane sharing among
used filaments. Wired into Print::validate as a slice blocker, and into
PartPlate::has_imex_multimaterial_conflict so the plater badge agrees
with the slice block (no more false positives where the badge warns but
the slice goes through).
- New imex_mode_types config option (parallel array to imex_mode_names)
and imex_mode_type_for() helper. Mode-type tag drives behaviour: zones,
ghosts, and validation interpret modes differently per type. Initial
types: "primary", "copy", "mirror", "split". Split modes are explicitly
designed for paired-gantry IQEX multi-color and bypass the gantry-pair
check in imex_multicolor_block_reason (MMU sharing still blocks them).
Test coverage:
- New unit tests cover imex_suppresses_bare_toolchange (4 cases),
imex_multicolor_block_reason (8 cases including IDEX, IQEX 2-/4-tool-
active, MMU sharing, missing primary, Split type), and imex_mode_type_for
(3 cases including legacy fallback). Total: 186 IMEX assertions across
71 test cases, all passing.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
The IMEX zone cache key drives ghost rebuild and zone-overlay
invalidation. Adding a printer config option that affects zone geometry,
ghost transforms, or collision strips without extending the key produces
a silent staleness bug: the cache thinks the zones are still valid and
ghost meshes / overlays don't refresh after the new option changes.
Document what currently feeds the key and pin the precision convention
(*10 scale on float values for 0.1 mm resolution) so future contributors
know the contract and where to extend it.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
Across 6 files the literal "primary" string was the sentinel for "no IMEX
parallel mode active" — used for short-circuiting in serialization, ghost
visualization, zone calc, popup-menu list construction, the IMEXModesCtrl
non-deletable first row, and several layer-of-export checks. A typo in
any one would silently bypass the guard.
Define kImexPrimaryMode in IMEXHelpers.hpp with a docstring describing
what equality with it means semantically, and route every call site
through it. No behavior change.
Touched: bbs_3mf.cpp, GCode.cpp, PartPlate.cpp, Plater.cpp, Tab.cpp.
The bbs_3mf and Tab files now include IMEXHelpers.hpp; the other three
already did.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
Four quick-fix items surfaced by pre-PR self-review.
GCodeViewer.cpp:1607
Null-check get_curr_plate() before dereferencing. Other call sites in
the file already guard; this was the only unguarded one in the IMEX
layer-preview path. In practice m_plate_list always has a plate, but
the inconsistency is easy to fix and removes the only ungated deref.
PartPlate.cpp:build_imex_cache_key
Cache key for IMEX zone geometry truncated nozzle_clearance_x/y to int
before stringifying — a config change from 30.0 to 30.5 would not
invalidate the cache. Match the *10 precision pattern already used for
imex_carriage_margin so 0.1 mm steps invalidate correctly.
Plater.cpp:select_plate_by_hover_id (right-click popup)
Two issues:
1. Lambda captured `modes` by reference. PopupMenu() is synchronous
today so the reference outlived the menu's event handling, but the
pattern is fragile — anyone refactoring to async Popup() would
silently dangle. Capture by value.
2. Used wxID_HIGHEST + i for menu item IDs — standard wx anti-pattern
because it can collide with other handlers listening in that range.
Allocate per-item IDs via wxNewId() and look up the chosen mode by
finding the event ID in a parallel vector. The lookup becomes O(N)
instead of O(1) but N is small (mode count) and this is clicker
latency, not a hot path.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
Replace imex_head_transform's fifth argument (Vec3d primary_origin) with a
Vec2d primary_zone_center and rewrite the Mirror branch as a true reflection
about the plane x = primary_zone_center.x + gantry_offset.x/2. Previous math
flipped about the primary's current origin, which:
* let the ghost drift out of the target zone as the primary moved, and
* made mirrored drag motion track 1:1 with the primary instead of reflecting.
The new transform places the ghost at the mirrored position within the target
zone (matching where the mirror tool actually prints) and reflects drag so
primary +X → ghost -X while Y tracks 1:1 — i.e. the ghost stays a true
mirror while the user drags. Off-row Mirror targets (e.g. T3 on a 2x2) still
reflect across the same X-plane as on-row peers.
PartPlate::calc_imex_ghosts and update_imex_ghost_transforms now feed primary_off
(the primary head's zone center) instead of an instance-space Vec3d.
Mirror tests rewritten against the new geometric contract: ghost origin at the
reflected position, primary drag deltas reflected across the zone-boundary plane.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
Centralize the project→printer→printer_extruder_id fallback for the physical
extruder map. PrintApply, PartPlate (ghost color + cache key), Plater (tooltip
+ click gate) all previously open-coded the three-step lookup, and each handled
the "pem unset, derive from pei" case slightly differently — an IDEX printer
without an explicit pem could paint an UNPRINTABLE_COLOR ghost even though the
slicer would have derived a valid mapping.
- IMEXHelpers: add effective_physical_extruder_map(explicit_pem, pei) and a
PresetBundle overload that wraps the project→printer precedence.
- PrintApply: use the helper in place of the inline pei→pem normalization.
- PartPlate / Plater: call the PresetBundle overload at every ghost-color,
ghost-cache-key, tooltip, and click-gate site.
- Plater::format_imex_ghost_tooltip: when no filament resolves to a head,
surface an actionable message directing the user to extend the extruder
count in the Machine tab, instead of the generic "(no filament routed)".
- IMEXFilamentPickerPopover: hold m_pem by value so callers can pass a
stack-local derived pem without lifetime worries.
- Tests: 5 new cases covering explicit-wins, default-pem fallback, null
inputs, and the IDEX ghost-color regression that motivated this.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
PartPlate::calc_imex_zones, GCodeViewer::render, and Plater::collect_imex_warnings
each hand-rolled their own "phys:P/C/M" tokenizer with subtly different error
handling. Replace the three inline loops with parse_imex_active_tools +
imex_primary_tool_for_mode so the Primary/Copy/Mirror classification agrees
across zones, the G-code viewer legend, and slice warnings.
No behavior change: the shared helpers preserve the 1=Primary / 2=Copy /
3=Mirror encoding already consumed downstream and continue to accept the
legacy bare-index form as Primary.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
Replaces the plater-icon popover with colored transparent ghost copies
of primary-head instances on the plate, one per secondary active head
under its Copy/Mirror role transform. Left-click on a ghost opens a
compact filament picker popover for the ghost's head (MMU lane override).
Ghosts track the primary through drag/rotate/scale/mirror and invalidate
on mode or pem changes.
Key pieces:
IMEXHelpers -- imex_head_transform (Primary/Copy/Mirror), shared role
parser, per-head filament resolution with X-axis Mirror anchor.
PartPlate -- ghost state, volume rebuild on mode/map/object mutation,
primary_origin plumbed for Mirror reflection across the primary-row
gantry plane.
GLCanvas3D -- ghost rendering with per-head filament color and
translucent blending; picking routed via volume composite id.
Plater -- ghost click + tooltip; plater icon left-click always cycles.
IMEXFilamentPickerPopover -- BitmapComboBox row for one secondary head,
writes imex_head_filament_map on selection.
bbs_3mf -- round-trip the per-plate imex_head_filament_map option.
PrintConfig -- add imex_head_filament_map as a plate option.
MMU/AFC routing for parallel modes relies on the printer profile's
physical_extruder_map (see prior commit for authoring format). Primary-
row heads and their per-plate filament overrides are resolved through
that map, so PA and temperature emission address the correct physical
extruder when multiple logical slots share one carriage.
Tests: IMEXHelpers coverage for Primary/Copy/Mirror transforms
including a 2x2 off-row regression guard for the X-axis reflection fix.
Temperature emission (GCode.cpp, PrintConfig.cpp, ConfigManipulation.cpp):
- Set temperatures for all active tools in layer_change_gcode for iMEX
parallel modes (primary + secondary carriages)
- Fix filament temperature commands so Layer 1 temperatures only emit on
the first layer; subsequent layers use normal layer-change temperatures
- Remove stray temperature commands that fired outside the intended context
- Consolidate iMEX temperature handling into the second-layer transition;
clean up emission logic and naming throughout
Pre-slice warning dialogs (PartPlate.cpp/hpp, Plater.cpp):
- Collect per-plate IMEX warnings before slicing: multi-material conflict,
bed temperature mismatch between carriages (>5 °C delta), and filament
type incompatibility
- Show a dismissible Yes/No dialog from both "Slice Plate" and "Slice All"
actions; No returns to 3D view, Yes proceeds to slice
- Refresh plate thumbnails after the panel switch so previously-generated
thumbnails are not left black
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
* Add runtime display backend detection for Wayland support
Add LinuxDisplayBackend utility to detect X11 vs Wayland at runtime
using GDK_IS_X11_DISPLAY / GDK_IS_WAYLAND_DISPLAY macros. This is
the foundation for removing the forced GDK_BACKEND=x11 and enabling
native Wayland support.
- New files: LinuxDisplayBackend.hpp/.cpp with get_linux_display_backend(),
is_running_on_wayland(), and is_running_on_x11()
- Propagate wxHAVE_GDK_X11 / wxHAVE_GDK_WAYLAND from FindGTK3.cmake
as compile definitions to libslic3r_gui
- No-op on non-Linux platforms (returns Unknown / false)
* Fix Phase 1 code quality: pragma once, source ordering, static cache
* Make X11 initialization conditional for Wayland support
Remove the unconditional GDK_BACKEND=x11 force that blocked native
Wayland. Replace with conditional logic:
- EGL safety fallback: re-force X11 only when wxUSE_GLCANVAS_EGL is
off and WAYLAND_DISPLAY is set, with a warning log
- XInitThreads() only called when DISPLAY is set (X11 in use)
- __GLX_VENDOR_LIBRARY_NAME only set when DISPLAY is present (GLX-specific)
- WEBKIT_DISABLE_COMPOSITING_MODE only set under XWayland (both
DISPLAY and WAYLAND_DISPLAY present)
- Guard X11/Xlib.h include with __has_include for robustness
- Restore display validation to accept either DISPLAY or WAYLAND_DISPLAY
This is Phase 2 of the Wayland support plan.
* Fix Phase 2: safer EGL macro check, add clarifying comments
* Add GLAD2 library and replace GLEW linkage in build system
Set up GLAD2 as a static library to replace GLEW for OpenGL loading.
GLAD2 supports both GLX and EGL, which is required for Wayland support.
- Create src/glad/ with pre-generated GLAD2 sources (GL 4.6 compat)
- Add src/glad/CMakeLists.txt building glad as a static library
- Wire glad into src/CMakeLists.txt before libvgcode
- Modify libvgcode to use shared glad for GL path (keeps local copy
only for GLES2/Emscripten) to avoid duplicate symbol conflicts
- Replace GLEW::GLEW with glad in libslic3r_gui link libraries
Note: GLEW is kept in deps for OpenCSG. Code migration from GL/glew.h
to glad/gl.h headers will follow in Phase 3B+3C.
* Fix Phase 3A+3D: libvgcode GLAD include, dead files, dlopen dep, OpenGL link var
* Migrate from GLEW to GLAD: replace headers and API calls across codebase
Replace all #include <GL/glew.h> with <glad/gl.h> across 49 source files.
Migrate GLEW API calls to GLAD equivalents:
- glewInit/glewExperimental -> gladLoaderLoadGL()
- GLEW_EXT_* / GLEW_ARB_* extension checks -> GLAD_GL_EXT_* / GLAD_GL_ARB_*
- Remove GLEW-specific EGL/GLX mismatch #error guards (not needed with GLAD)
- Replace unavailable EXT symbols with core GL equivalents in
GLCanvas3D.cpp (GL_MAX_SAMPLES, glRenderbufferStorageMultisample,
glBlitFramebuffer, GL_READ/DRAW_FRAMEBUFFER)
- Update log messages from glewInit to gladLoadGL
* Fix Phase 3B+3C: remove GLEW find, clean EXT symbols, update attribution
- Remove find_package(GLEW) block from root CMakeLists.txt since GLEW
is no longer linked by any main application code
- Remove "glew" from SLIC3R_STATIC option description
- Replace all remaining EXT framebuffer symbols with core equivalents
in render_thumbnail_framebuffer_ext and _rectangular_selection_picking_pass
- Update AboutDialog credits from GLEW to GLAD
* Enable EGL in wxWidgets and add runtime GLX/EGL selection for Wayland
- Set wxUSE_GLCANVAS_EGL=ON in wxWidgets build and Flatpak manifest
- Add PreferGLX() call on X11 sessions for driver compatibility
- Remove Phase 2 safety fallback (EGL is now always compiled in)
- Guard SwapBuffers against hidden canvases to prevent Wayland stalls
* Fix Phase 4: move PreferGLX to app startup, fix FPS counter guard
Move wxGLCanvas::PreferGLX() from OpenGLManager::create_wxglcanvas()
(static initializer) to GUI_App::on_init_inner() before any wxGLCanvas
is constructed. This prevents a race where SkipPartCanvas could trigger
wxGLBackend::Init() before the GLX preference is set. The new location
also adds explicit is_running_on_wayland() detection with a warning for
unknown backends.
Move increment_fps_counter() inside the IsShownOnScreen() guard so FPS
is only counted when a frame is actually swapped.
* Update GLFW from 3.3.7 to 3.4 for runtime Wayland/X11 backend selection
Replace the compile-time GLFW_USE_WAYLAND flag (which locked to a single
backend) with GLFW 3.4's GLFW_BUILD_WAYLAND + GLFW_BUILD_X11 flags that
build both backends and auto-select at runtime based on the available
display server. This enables the CLI thumbnail renderer to work on both
Wayland and X11 sessions without separate builds.
* wayland: Fix UI call sites that rely on global screen coordinates
On Wayland, wxGetMousePosition() returns (0,0) and SetPosition() is a
no-op for top-level windows. Fix the highest-impact call sites:
- GLCanvas3D: Use cached m_mouse.position from event handlers instead
of wxGetMousePosition() + ScreenToClient() in get_local_mouse_position()
- Plater: Use event-relative coords via ClientToScreen(e.GetPosition())
instead of wxGetMousePosition() in 3 leave-window handlers
- BBLTopbar: Use event.GetPosition() and FindToolByPosition() directly
in mouse handlers instead of wxGetMousePosition()/FindToolByCurrentPosition()
- Search: Use focus-based dismiss logic on Wayland instead of
wxGetMousePosition()-based rect checks in SearchDialog and
SearchObjectDialog
- GUI_App: Skip SetPosition() in window_pos_restore() on Wayland where
it is a no-op; still restore size and maximize state
- Button: Position tooltip relative to button widget via ClientToScreen
instead of wxGetMousePosition()
* Fix SearchDialog Wayland dismiss: guard against search_line focus
* flatpak: Add Wayland socket permission for native Wayland support
* spec
* Fix crash on Wayland when wxWidgets lacks EGL support
Restore the safety fallback that forces GDK_BACKEND=x11 when wxWidgets
was not built with wxUSE_GLCANVAS_EGL=ON. Without this, the GLX backend
tries to access a non-existent X11 display on native Wayland, crashing
in wxGLCanvas::IsDisplaySupported() with SIGSEGV at offset 0xe4.
Also add a defense-in-depth guard in detect_multisample() that skips
the IsDisplaySupported call entirely on Wayland without EGL.
Root cause: deps/wxWidgets must be rebuilt after enabling EGL. The
compile-time check in OrcaSlicer.cpp detects the mismatch and falls
back safely.
* Fix EGL detection: use wxHAS_EGL instead of wxUSE_GLCANVAS_EGL
wxUSE_GLCANVAS_EGL is a CMake build option, NOT a C++ preprocessor
macro. The actual macro defined in wxWidgets setup.h is wxHAS_EGL.
All compile-time EGL checks were using the wrong macro, causing
the safety fallback to always trigger even with a properly built
EGL-enabled wxWidgets.
* Fix GL function pointers invalidated on Wayland/EGL
gladLoaderLoadGL() dlopen's libGL.so.1 to resolve GL function pointers
via dlsym, then immediately dlclose's the handle. On X11/GLX this is
fine because the GLX context keeps libGL.so mapped. On Wayland/EGL,
nothing else holds libGL.so open, so dlclose unmaps it and all function
pointers become dangling — causing SIGSEGV on the first GL call.
Fix: on Wayland, use gladLoadGL(eglGetProcAddress) which resolves
function pointers through the EGL loader without opening/closing
libGL.so.
* fix crash on start and various rendering issues
* fix crash on close
* small refactor
* move GPU selection to desktop file
* clean up a bit
* clean up more
* fix appimage error
- Add warning badge (obj_warning.svg overlay) to the iMEX plate icon when
a parallel mode is active alongside multi-material objects on the same plate
- Add has_imex_multimaterial_conflict() using get_extruders(true) so only
filaments actually used on the plate are checked
- Move multi-material caution dialog from reslice() into on_action_slice_plate /
on_action_slice_all so it fires exactly once per user action and does not
disrupt GL thumbnail generation during Slice All
- Fix is_imex missing from p->config init key list so on_config_change()
diff detection correctly triggers refresh_imex_icons()
- Defer imex_changed handling until after set_bed_shape() so m_shape is current
- Replace plain remove button with ScalableButton (imex_remove.svg) in mode rows
- Add EditGCodeDialog launch button per mode row for placeholder browsing
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
IMEXModesCtrl:
- Primary mode is now a non-deletable first row stored as sentinel
"primary" in imex_mode_names; older configs load cleanly
- New rows default T0 → Primary when no tool assignment is stored
- Filter "primary" from plater popup/cycle list to prevent double entry
- imex_tools_per_gantry cap raised 2 → 4
Zone sizing:
- Zone width/height now based on active tool count only; inactive tools
donate their bed share to active neighbors (fixes 4-tool layout)
- Active col/row maps (col_to_zone/row_to_zone) applied consistently
across zone fills, collision strips, and primary zone box
GCodeViewer animation:
- Mirror position formula fixed: left-of-copy reflects across copy
zone's left edge; right-of-copy reflects across right edge
(T3 was rendering on top of T1)
- strip_width/row_strip_height use active counts, matching PartPlate
Stability:
- Early return in calc_imex_zones() when tool_states is empty; prevents
OOB crash on new printer with stale process-preset mode name
- is_imex toggle in on_config_change calls refresh_imex_icons() so the
plate mode icon appears without requiring a new project
GCode:
- Remove "primary" guard so Primary mode gcode field is emitted at
start of print
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
- Add per-plate iXex mode icon to the plate toolbar (normal, hover, dark, dark-hover SVG variants)
- Left-click cycles through available modes; right-click shows a popup menu with all modes as radio items
- Mode changes are recorded in the undo/redo snapshot system
- Fix double context menu: suppress EVT_GLCANVAS_PLATE_RIGHT_CLICK and EVT_GLCANVAS_RIGHT_CLICK when the iXex icon popup was already shown
- Remove ixex_parallel_mode combo from Print Settings > Other > Special mode (superseded by per-plate icon)
- Remove dead code: refresh_ixex_mode_combo(), m_ixex_mode_combo member, related Tab reload hook
- iXex mode persisted in 3MF project files via existing plate metadata serialization
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
Config key rename (breaking for saved profiles — call out in PR):
ixex_carriage_width_x/y → ixex_nozzle_clearance_x/y
Labels updated to "Nozzle Clearance X/Y" with consistent tooltips
describing the measurement as nozzle-to-collision-side-edge distance.
Strip math fix:
Previously halved the clearance value (× 0.5) under the assumption
the nozzle was centered in the carriage. The measurement is now the
literal nozzle-to-edge distance, so the × 0.5 factor is removed.
The collision strip width now equals the configured value directly.
Carriage box visualization (GCodeViewer):
- Add per-carriage box_offset_x/y so the nozzle marker sits at the
physically correct edge of the footprint box rather than centered.
- X: zone-based by default (nozzle at inner edge facing bed center).
Copy secondaries inherit the primary's X orientation (same movement
direction). Mirror secondaries use the collision-side edge.
- Y: always row-based regardless of copy/mirror mode. Gantry is always
behind the nozzle (high-Y); front-row primaries with a back-row
secondary override to place nozzle at the low-Y edge.
- Fix stale mesh bug: GLModel::init_from() is a no-op when already
initialized. Call reset() before init_from() so mesh rebuilds
correctly when nozzle clearance values change in config.
- Remove m_ixex_toolhead_box_dims (was the now-unnecessary cache key).
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
Adds std::optional<BoundingBoxf> m_ixex_primary_zone_box to PartPlate,
populated by calc_ixex_zones() alongside the existing secondary/collision
zone geometry. The new ixex_primary_zone() getter calls ensure_ixex_zones()
so callers always get fresh data. ArrangeJob::process() replaces the
full-bed bedpts with the primary zone corners when the getter returns a
value, so auto-arrange no longer drops objects into the bed center.
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
The thin rectangular outlines around copy/mirror zones caused visible
aliasing and appeared to flash during interaction. Removed the border
GLModel, its build code in calc_ixex_zones(), the render block, and
the unused border field from IXexTheme.
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
Introduces first-class parallel printing (copy/mirror modes) for printers
with multiple independent X-axis carriages. Branded iXex (independent X
extruder), targeting Klipper firmware with a firmware-agnostic design.
- PrintConfig: new printer options declaring iXex capability and geometry
(is_ixex, ixex_gantry_count, ixex_tools_per_gantry, carriage dims,
tool layout, and per-mode name/role/gcode arrays)
- Preset: iXex keys registered in printer and process preset option lists
- Tab: IXexModesCtrl visual grid editor in Printer preset tab; mode
dropdown in Process → Others tab; clear_pages() nulls iXex pointers to
prevent dangling-pointer crash on preset save
- PartPlate: 2D zone visualization (active/dimmed/dividers) and
placement-violation detection (has_ixex_placement_violations) that
blocks slicing when objects fall outside the primary zone
- Plater: violation detection wired into update_background_process so
the Slice button is disabled with an error notification on violation
- GCode: mode-activation G-code injected before machine_start_gcode
- GCodeViewer: multi-carriage toolhead markers in sequential preview,
filament legend annotated with active carriage count and mode name
The wipe tower config position (wipe_tower_x/y) could be outside the
plate boundary (e.g. default y=250 on a 200mm printer). No constraint
was applied at slice time, so the tower was generated out-of-bounds.
In CLI mode, PartPlateList is constructed with a NULL plater pointer
(OrcaSlicer.cpp:3612). When set_shapes() calls PartPlate::set_shape(),
it unconditionally executes render data preparation code that
dereferences the null plater through calls like generate_print_polygon()
→ wxGetApp().plater(), causing a segmentation fault (exit code 139).
This adds a null check on m_plater in PartPlate::set_shape() to skip
the render-only code block that generates logo triangles, print/exclude
polygons, gridlines, icon vertices, and plate name textures.
These rendering operations are not needed in CLI mode and this change
has no impact on GUI mode where m_plater is always valid.
# Description
When using the Bambu H2D, users can use Filament Grouping, a button found next to the bed preview. When not on a H2D profile, the button is hidden. However, it remained usable, and clicking an empty space below all the buttons causes the dialog to appear.
This PR fixes that by adding a check before the button is registered.
Addresses point 9 (focusing on the 2nd bullet) in #12684
## Tests
Tried to click on the empty area right below the column of buttons (see the below images)
Made sure to have the H2D profile loaded as well, and checked that the dialog still opens for that printer.
H2D active
<img width="1635" height="949" alt="image" src="https://github.com/user-attachments/assets/da6fb03b-e3c8-4504-ac60-b96ecc6347dc" />
Area to click for the invisible button
<img width="935" height="788" alt="image" src="https://github.com/user-attachments/assets/1f001bcf-0224-4922-b5bf-47a95820e536" />