Merge branch 'main' into main

This commit is contained in:
Rodrigo Faselli
2026-10-05 12:17:33 -03:00
committed by GitHub
2014 changed files with 2325948 additions and 2416819 deletions
+7 -3
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@@ -1,7 +1,11 @@
# clang-tidy configuration. Only missing includes are reported for now: a file
# should include the header for every symbol it uses, not rely on the
# precompiled header or another header's includes. Run with --fix to add them.
# clang-tidy configuration, enforced by the clang-tidy CI job on the lines a pull
# request changes (scripts/clang_tidy_diff.py). Only missing includes are reported
# for now: a file should include the header for every symbol it uses, not rely on
# the precompiled header or another header's includes. Run with --fix to add them.
# Every check listed here gates pull requests, so enable a new one only once the
# code it flags on touched lines is reasonable to fix in passing.
Checks: '-*,misc-include-cleaner'
WarningsAsErrors: '*'
CheckOptions:
# Missing includes only. Builds without the precompiled header break on these.
misc-include-cleaner.UnusedIncludes: false
@@ -405,9 +405,13 @@ page object to insert and remove by pointer). `LazyPage(parent, name, order, fac
factory is `new Panel(parent)`. Its `Show(true)` builds the panel the first time (only once the
top-level frame is shown — `MainFrame::Show` completes the start page on the frame's first show) and
forwards later shows/hides to the panel, so the panel's own `Show()` override stays its activation
hook. A panel built while its page is hidden stays hidden, and `when_built` gives it the dark-UI pass
the frame ran before it existed (`apply_dark_ui_to_lazy_panel`). `pending()` is true only while the page
is in the book.
hook. The build runs before the placeholder's own `wxPanel::Show(true)`, so an on-demand build creates
its controls in a hidden window as a prebuild does: on MSW each control created or moved inside a
shown window re-clips and repaints its shown siblings, which made a large panel's first show take
seconds. A lazy panel's constructor therefore runs off screen (except the start page's) and must not
rely on `IsShownOnScreen()`. A panel built while its page is hidden stays hidden, and `when_built`
gives it the dark-UI pass the frame ran before it existed (`apply_dark_ui_to_lazy_panel`).
`pending()` is true only while the page is in the book.
### Staged construction: StagedBuild
@@ -641,8 +645,10 @@ Spacing constants come from `SidebarProps` (`Plater.hpp`): `TitlebarMargin()`, `
### Docking
`Plater::priv` owns `AuiMgr m_aui_mgr` (a `wxAuiManager` subclass whose `CreateFloatingFrame` returns a
themed `FloatFrame : wxAuiFloatingFrame`), managing the plater. Panes: `"sidebar"` (left, no close
Docks are `AuiMgr`s (`AuiMgr.hpp`), a `wxAuiManager` subclass carrying Orca's dock art, theme and
Wayland rule (`references/webview-gl-aui-media.md`). `Plater::priv` owns `m_aui_mgr`, managing the
plater; the Design tab owns its own for its sidebar (`DesignPanel::m_aui`, layout in
`design_window_layout`). Plater panes: `"sidebar"` (left, no close
button, not top/bottom dockable), `"main"` (`CenterPane()`, the `panel_3d`), `"uv_editor"` (right,
hidden until the texture-displacement gizmo shows it), plus dynamic dock panes. The default perspective
is saved right after `AddPane`; the app-config `window_layout` is applied with
@@ -271,6 +271,14 @@ Each bullet names the mechanism and the file that owns it.
- **Painting:** in 3.3.2 windows are not double-buffered by default (the 3.3.0 global
`WS_EX_COMPOSITED` was reverted, `docs/changes.txt:308`). Custom widgets buffer by hand →
`references/painting-custom-widgets.md`.
- **Building large panels:** every control is a native child window, and outside a sizer pass a move
or resize is immediate, repainting when the window is shown [source: `src/msw/window.cpp:2036`
`DoMoveSibling` → `MSWMoveWindowToAnyPosition(..., IsShown())`]; `wxStaticText::SetLabel`/`SetFont`
resize the control that way (`src/common/stattextcmn.cpp:334` `AutoResizeIfNecessary`). Created
inside a shown parent, each control re-clips and erases its shown, overlapping siblings, so the
cost grows with the number already built and hundreds of controls take seconds. Build a large
panel while its parent is hidden and show it once complete — `LazyPage::Show` builds its panel
before showing the page for this reason → `references/orca-architecture.md` §Deferred construction.
- **Modal loops:** idle events do not run inside the Windows sizing/moving modal loop, so the 3D
canvas renders from `on_paint` on MSW (c06a0223a7) → `references/webview-gl-aui-media.md` §GLCanvas3D rendering.
- **Mouse capture:** `wxEVT_MOUSE_CAPTURE_LOST` and `wxEVT_MOUSE_CAPTURE_CHANGED` are delivered →
@@ -474,7 +482,7 @@ start there when looking for prior art. The sites below are exemplars, cited by
data-view cell editors an explicit top-level transient parent.
`DropDown::ShouldDismissOnTopWindowDeactivate` handles Wayland chains.
- `CheckBox::CheckBox`, `SwitchButton`, `RadioBox`, `ScalableButton` (`wxExtensions.cpp`),
`ObjColorDialog`, `PresetComboBoxes` call `RemoveButtonBorder`; `TextInput` and `SpinInput` call
`PresetComboBoxes` call `RemoveButtonBorder`; `TextInput` and `SpinInput` call
`RemoveInputBorder` on their inner `wxTextCtrl`.
- `Plater::priv::priv` together with `sanitize_window_layout_for_wayland`: AUI floating is disabled on
Wayland.
@@ -812,7 +820,7 @@ widgets do it in their constructors.
(`"*.GtkBitmapToggleButton"`, class `"GtkEntry"`). The first call changes every matching widget in
the process, not just the one passed in.
**Callers:** `CheckBox::CheckBox`, `SwitchButton`, `RadioBox`, `ScalableButton`, `ObjColorDialog` and
**Callers:** `CheckBox::CheckBox`, `SwitchButton`, `RadioBox`, `ScalableButton` and
`PresetComboBoxes` (`RemoveButtonBorder`); the inner `wxTextCtrl` of `TextInput` and `SpinInput`
(`RemoveInputBorder`). A new owner-drawn control built on a native GTK widget needs the same call.
@@ -88,6 +88,7 @@ available; GTK2/WebKit1 is an opt-out configuration the GUI does not support.
24. ImGui text uses `_u8L`; ImGui sizes are physical pixels (scale by `GLCanvas3D::get_scale()`);
a font atlas must fit `GL_MAX_TEXTURE_SIZE`. §[ImGui boundary](#the-imgui-layer-boundary)
25. After `AddPane` or any `wxAuiPaneInfo` change, call `wxAuiManager::Update()` once for the batch.
Keep a docked pane hidden until the managed window has been laid out.
§[AUI](#wxauimanager-and-orcas-docking)
26. Give every pane a unique, stable `Name()` free of layout delimiters (`|`, `;`, `=`, `\`).
§[AUI](#wxauimanager-and-orcas-docking)
@@ -920,6 +921,16 @@ widgets beside the canvas (a sibling, not a child over it), or in a popup.
- **Update.** "Update() must be invoked after AddPane() or InsertPane() … any number of changes may be
made to wxAuiPaneInfo structures (retrieved with wxAuiManager::GetPane), but to realize the changes,
Update() must be called" (`interface/wx/aui/framemanager.h:747-756`). Batch, then `Update()` once.
- **Dock size** [source]. The docs limit "any new dock" to a `SetDockSizeConstraint` fraction of the
window (`interface/wx/aui/framemanager.h:660-672`). The source applies it to the managed window's client
size at the `Update()` that creates the dock, sizing the dock from its panes' `best_size` and then
raising it to their `min_size` (`src/aui/framemanager.cpp:2748-2848`); a dock with a resizable pane
keeps that size (`2674-2677`), and resizing the managed window only re-lays the docks out
(`4542-4546`). A pane first shown before its managed window is laid out — a `wxDefaultSize` window is
20×20 until its first sizer layout (`references/sizers-layout.md`) — docks at that width or its
`min_size` and stays there. Hiding a dock's last shown pane empties it, and the next `Update()`
removes it (`2733-2738`) with any `dock_size` a `LoadPerspective` restored, so the pane comes back
at its `best_size`.
- **Names** [source]. A duplicate `Name()` hits `wxFAIL` (silent in Orca); duplicate and empty names
get a random identifier (`src/aui/framemanager.cpp:949-1010`), which `LoadPerspective` can never
match. `AddPane` rejects a null window, but its "already managed" check looks up `paneInfo.window`
@@ -953,11 +964,12 @@ widgets beside the canvas (a sibling, not a child over it), or in a popup.
- `wxAuiNotebook` (not used by Orca): page indices are logical; use `GetPagePosition()` for on-screen
order (`docs/changes.txt:121-126`); the default tab art changed (`35-37`).
**OrcaSlicer.** `Plater::priv` owns `AuiMgr m_aui_mgr`, a `wxAuiManager` whose `CreateFloatingFrame`
returns `FloatFrame : wxAuiFloatingFrame` (applies `UpdateFrameDarkUI`).
- Setup: `SetManagedWindow(q)` (the Plater), `SetDockSizeConstraint(1, 1)`; on Wayland clears
`wxAUI_MGR_ALLOW_FLOATING` (`disable_wayland_floating`); dock-art metrics set here, colours in the
dark-mode update (`Plater::priv::apply_color_mode`).
**OrcaSlicer.** Orca's docks use `AuiMgr` (`AuiMgr.hpp`), a `wxAuiManager` whose `CreateFloatingFrame`
returns a `wxAuiFloatingFrame` that applies `UpdateFrameDarkUI`. `init(window)` calls
`SetManagedWindow(window)` and `SetDockSizeConstraint(1, 1)`, clears `wxAUI_MGR_ALLOW_FLOATING` on
Wayland and sets the dock-art metrics and colours; `apply_color_mode()` re-colours captions, sashes and
borders and is called from the owner's theme-switch handler. `Plater::priv::m_aui_mgr` manages the
Plater (Prepare and Preview); `DesignPanel::m_aui` manages the Design tab's body below its toolbar.
- Panes: `"sidebar"` (left, no close button, not top/bottom dockable, `BestSize` in em units),
`"uv_editor"` (right, hidden; forced hidden again after a layout load), `"main"`
(`CenterPane().PaneBorder(false)`, holding `panel_3d` with View3D, Preview and AssembleView in one
@@ -966,8 +978,8 @@ returns `FloatFrame : wxAuiFloatingFrame` (applies `UpdateFrameDarkUI`).
`window_layout` app-config string goes through `sanitize_window_layout_for_wayland` (strips
floating/floatable bits on Wayland) and `LoadPerspective(layout, false)`, falling back to the default
on failure; then one `Update()`. `Plater::priv::reset` saves `SavePerspective()` back to
`window_layout`. An idle handler copies the docked sidebar width into `BestSize` (wxAUI does not record
a dragged sash there), so the width persists. `Plater::priv::reset_window_layout` is the model for
`window_layout`. `AuiMgr::track_docked_size` copies a docked pane's size into `BestSize` on idle
(wxAUI does not record a dragged sash there), so the width persists. `Plater::priv::reset_window_layout` is the model for
re-establishing panes after a load: it loads the default perspective, then re-shows each plugin pane
the perspective does not list.
- Plugin panes: `Plater::add_dock_pane(window, name, caption, dock, size, on_close)` (window must be a
@@ -977,13 +989,29 @@ returns `FloatFrame : wxAuiFloatingFrame` (applies `UpdateFrameDarkUI`).
`Destroy()`s without running `on_close`; `show_dock_pane` toggles and updates. Pane names come from
`plugin_pane_name` (`DockPanel.cpp`), which replaces `|`, `;`, `=`, `\` — the perspective-string
delimiters.
- Other pages: a page outside the Plater docks through its own `AuiMgr` member, since the Plater's
manages only the Plater. Its managed window is a body panel below the page's toolbar; a sidebar
takes `AuiMgr::sidebar_pane_info()`; the layout has its own app-config key, is reset from
`Plater::reset_window_layout`, and is saved by a `shutdown()` called from `MainFrame::shutdown`,
which also detaches a floating pane (Lifetime below). Where floating is disabled it forces
`Dock().Floatable(false)` after loading, as plugin panes do. A `LazyPage` builds its panel at 20×20
and lays it out only as the tab shows, so the sidebar stays hidden until the tab is first shown (Dock
size above). `DesignPanel` is the model
(`docs/HLSD/design-tab.md`). A `GLCanvas3D` beside such a sidebar gets that sidebar's collapse
button with `set_collapse_toolbar`; without it the canvas falls back to the Plater's button, which
collapses Prepare's sidebar.
- Lifetime: no explicit `UnInit`. `m_aui_mgr` is a `Plater::priv` member, so it is destroyed in
`~Plater`, before `~wxWindow` destroys the Plater's children (`wxWindowBase::DestroyChildren`,
`src/common/wincmn.cpp:586-609`); a floating frame is such a child (`CreateFloatingFrame(m_frame, …)`,
`src/aui/framemanager.cpp:3151`), so a pane still floating at that point outlives the manager [source].
Plugin panes are removed earlier (`MainFrame::shutdown` → `Plater::remove_dock_panes`). The sidebar
`GetPane()` reference captured by the idle lambda is safe across `AddPane`; never `DetachPane` a pane
whose reference is captured.
Plugin panes are removed earlier (`MainFrame::shutdown` → `Plater::remove_dock_panes`). A handler
that can outlive its pane looks the pane up when it runs, as `track_docked_size` does: an idle
handler bound on the pane's window outlives the `DetachPane` in `DesignPanel::shutdown`. Never detach
a pane whose `GetPane()` reference is captured (Pane references above). `DesignPanel::shutdown` is
the model for a member manager: it detaches a
floating sidebar, which `Destroy()`s the frame into the pending-delete list, and the main frame's
deletion deletes pending top-level children before its own children (`~wxTopLevelWindowBase`,
`src/common/toplvcmn.cpp:67-93`), while the panel and its manager are still alive [source].
**Pitfalls.**
- **Rule:** Call `Update()` once after a batch of `AddPane`/`wxAuiPaneInfo` changes.
@@ -198,7 +198,7 @@ change, its line, and what it means for Orca.
| `wxAuiGenericTabArt` subclasses (also via `wxAuiMSWTabArt`) override `DrawPageTab()`/`GetPageTabSize()` instead of `DrawTab()`/`GetTabSize()`; direct `wxAuiTabArt` subclasses still work | :115-120 | none: no Orca tab art |
| `wxAuiNotebook` page index is logical (reorder-independent); `GetPagePosition()` gives the screen position | :122-126 | none; index math under `wxAUI_NB_TAB_MOVE` is what breaks |
| `wxListbook`/`wxChoicebook` interpret mnemonics in page titles "just as the other wx*book classes already did" | :128-130 | Orca uses neither (`BedShapeDialog` uses `wxSimplebook` + a combo); every book interprets `&` (`interface/wx/bookctrl.h:141-147`) → rule 11 |
| `wxAUI_MGR_HINT_FADE` is not in the default `wxAuiManager` style | :132-133 | Plater's `AuiMgr` keeps the default flags (minus `wxAUI_MGR_ALLOW_FLOATING` on Wayland, `Plater::priv::priv`), so the docking hint no longer fades; add the flag if wanted |
| `wxAUI_MGR_HINT_FADE` is not in the default `wxAuiManager` style | :132-133 | Orca's `AuiMgr` keeps the default flags (minus `wxAUI_MGR_ALLOW_FLOATING` on Wayland, `AuiMgr::init`), so the docking hint no longer fades; add the flag if wanted |
| `wxPrintDialogData::SetAllPages(false)`/`SetSelection(false)` changed meaning | :135-137 | none |
| `wxGetTranslation()` returns `wxString` by value | :139-142 | pitfall below |
| `wxWindow::Raise()` no longer shows a hidden window on any port | :144-146 | pitfall below; ba867cc534 |
+3
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@@ -10,3 +10,6 @@
# resume after `call :label`. With LF endings that offset can land wrong and the
# label lookup fails, so keep these CRLF whatever the platform.
*.bat text eol=crlf
# OCCT BRep fixtures, kept byte for byte as OCCT wrote them.
*.brep -text
+3 -3
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@@ -127,7 +127,7 @@ jobs:
if: ${{ !cancelled() && (github.event_name != 'schedule' || github.repository == 'OrcaSlicer/OrcaSlicer') }}
uses: ./.github/workflows/build_check_cache.yml
with:
os: ${{ vars.SELF_HOSTED && 'orca-macos-arm64' || 'macos-14' }}
os: ${{ vars.SELF_HOSTED && 'orca-macos-arm64' || 'macos-15' }}
arch: ${{ matrix.arch }}
build-deps-only: ${{ inputs.build-deps-only || false }}
force-build: ${{ github.event_name == 'schedule' }}
@@ -138,7 +138,7 @@ jobs:
if: ${{ !cancelled() && needs.build_macos_arch.result == 'success' && !inputs.build-deps-only && (github.event_name != 'schedule' || github.repository == 'OrcaSlicer/OrcaSlicer') }}
uses: ./.github/workflows/build_orca.yml
with:
os: ${{ vars.SELF_HOSTED && 'orca-macos-arm64' || 'macos-14' }}
os: ${{ vars.SELF_HOSTED && 'orca-macos-arm64' || 'macos-15' }}
arch: universal
macos-combine-only: true
secrets: inherit
@@ -182,7 +182,7 @@ jobs:
if: ${{ !cancelled() && success() }}
uses: ./.github/workflows/unit_tests.yml
with:
os: ${{ vars.SELF_HOSTED && 'orca-macos-arm64' || 'macos-14' }}
os: ${{ vars.SELF_HOSTED && 'orca-macos-arm64' || 'macos-15' }}
artifact: ${{ github.sha }}-tests-macos-arm64
test-dir: build/arm64/tests
# Slice a two-colour cube through every shipped printer, and through every
+1 -1
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@@ -40,7 +40,7 @@ jobs:
# Anything that changes how the tree is built belongs in the key, or a job
# restores one it cannot use. Linux amd64 passes no arch deliberately, so
# 'linux-clang' keeps the cache it already has.
cache-os: ${{ runner.os == 'macOS' && format('macos-{0}', inputs.arch) || (runner.os == 'Windows' && format('windows-{0}-{1}', inputs.arch, inputs.compiler) || format('linux-clang{0}', inputs.arch && format('-{0}', inputs.arch) || '')) }}
cache-os: ${{ runner.os == 'macOS' && format('{0}-{1}', inputs.os, inputs.arch) || (runner.os == 'Windows' && format('windows-{0}-{1}', inputs.arch, inputs.compiler) || format('linux-clang{0}', inputs.arch && format('-{0}', inputs.arch) || '')) }}
# The Windows ARM64 deps build in build-arm64, all others under build;
# build_deps.yml and build_orca.yml pass the Windows directory to build_win.bat.
dep-folder-name: ${{ runner.os == 'macOS' && format('/{0}', inputs.arch) || (runner.os == 'Windows' && inputs.arch == 'arm64') && '-arm64/OrcaSlicer_dep' || '/OrcaSlicer_dep' }}
+5 -3
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@@ -183,10 +183,12 @@ jobs:
- name: Free disk space
if: runner.os == 'macOS' && !inputs.macos-combine-only && !vars.SELF_HOSTED
run: |
df -hI /dev/disk3s1s1
sudo find /Applications -maxdepth 1 -type d -name "Xcode_*.app" ! -name "Xcode_15.4.app" -exec rm -rf {} +
df -hI /
# Keep only the selected Xcode
xcode=$(basename "$(cd "$(xcode-select -p)/../.." && pwd -P)")
sudo find /Applications -maxdepth 1 -type d -name "Xcode_*.app" ! -name "$xcode" -exec rm -rf {} +
sudo rm -rf ~/Library/Developer/CoreSimulator/Caches/*
df -hI /dev/disk3s1s1
df -hI /
- name: Build slicer mac
if: runner.os == 'macOS' && !inputs.macos-combine-only
+89
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@@ -0,0 +1,89 @@
name: clang-tidy
# Runs clang-tidy, with the checks in .clang-tidy, over the C++ lines a pull
# request changes (scripts/clang_tidy_diff.py). The compile database is
# configured without the precompiled header, so code that only builds because
# the PCH supplied an include fails here.
#
# No paths filter: the job is a required check, and a workflow skipped by a
# paths filter leaves a required check pending forever. A PR with no C++
# changes finishes after the first step.
on:
pull_request:
branches:
- main
- release/*
permissions:
contents: read
concurrency:
group: ${{ github.workflow }}-${{ github.event.pull_request.number }}
cancel-in-progress: true
jobs:
clang_tidy:
# Branch protection requires this check by name. Renaming the job disables
# that gate.
name: clang-tidy
runs-on: ${{ vars.SELF_HOSTED && 'orca-lnx-server' || 'ubuntu-24.04' }}
steps:
- name: Checkout
uses: actions/checkout@v7
with:
lfs: 'false'
# The PR merge commit plus its first parent, the base it is diffed against.
fetch-depth: 2
- name: Look for changed C++ files
id: changes
run: |
if git diff --name-only HEAD^1 -- src tests | grep -qE '\.(cpp|cc|cxx|hpp|h|hxx)$'; then
echo "cpp=true" >> "$GITHUB_OUTPUT"
else
echo "No C++ changes under src/ or tests/."
fi
# Parsing needs the dependency headers, not a build of this PR's deps/, so
# a PR that changes deps/ falls back to the newest cache main has.
- name: Restore cached deps
if: steps.changes.outputs.cpp == 'true'
uses: actions/cache/restore@v6
with:
path: ${{ github.workspace }}/deps/build/OrcaSlicer_dep
key: linux-clang-cache-orcaslicer_deps-build-${{ hashFiles('deps/**') }}
restore-keys: linux-clang-cache-orcaslicer_deps-build-
fail-on-cache-miss: true
- name: Apt-Install Dependencies
if: steps.changes.outputs.cpp == 'true' && !vars.SELF_HOSTED
uses: ./.github/actions/apt-install-deps
- name: Install clang-tidy
if: steps.changes.outputs.cpp == 'true'
run: |
python3 -m venv "$RUNNER_TEMP/clang-tidy"
"$RUNNER_TEMP/clang-tidy/bin/pip" install --quiet -r scripts/clang_tidy_requirements.txt
# DEP_BUILD_DIR is named outright: CMake would otherwise derive it from the build
# directory's name and look for the dependencies in deps/build-tidy.
- name: Configure without the precompiled header
if: steps.changes.outputs.cpp == 'true'
run: >
cmake -S . -B build-tidy -G Ninja
-DCMAKE_BUILD_TYPE=Release
-DCMAKE_C_COMPILER=clang -DCMAKE_CXX_COMPILER=clang++
-DCMAKE_EXPORT_COMPILE_COMMANDS=ON
-DSLIC3R_PCH=OFF -DORCA_TOOLS=ON -DBUILD_TESTS=ON
-DDEP_BUILD_DIR=${{ github.workspace }}/deps/build
# The one header the build generates rather than the configure.
- name: Generate git_commit_hash.h
if: steps.changes.outputs.cpp == 'true'
run: cmake --build build-tidy --target git_commit_hash_header
- name: Run clang-tidy on the changed lines
if: steps.changes.outputs.cpp == 'true'
run: >
python3 scripts/clang_tidy_diff.py -p build-tidy --base HEAD^1
--clang-tidy "$RUNNER_TEMP/clang-tidy/bin/clang-tidy" -j "$(nproc)"
+1
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@@ -36,6 +36,7 @@ ctest --test-dir ./tests/fff_print -C Release
- C++17, selective C++20. PascalCase classes, snake_case functions/variables
- `#pragma once` for headers. Smart pointers and RAII preferred
- Include what you use: include the header for every symbol a file uses, and keep headers compilable on their own. Never rely on the precompiled header or a transitive include. The `clang-tidy` CI job enforces this on changed lines; run the same check locally with `scripts/run_clang_tidy.sh` (`scripts\run_clang_tidy.ps1` on Windows), which sets up everything it needs
- Parallelization via TBB — be mindful of shared state
- Always use `SetSizerAndFit(sizer)` instead of `SetSizer(sizer)` on top level window. Unless `SetSizer` must be called before the full layout is built, call `sizer->SetSizeHints(window)` afterwards in this case.
+2 -1
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@@ -1131,7 +1131,8 @@ function(orcaslicer_copy_dlls target config postfix output_dlls)
if (NOT OCCT_LIBS)
message(FATAL_ERROR "OCCT_LIBS is not set; libslic3r must be configured first.")
endif ()
set(_occt_bin "${CMAKE_PREFIX_PATH}/bin/occt")
string(TOUPPER "${config}" _config_upper)
set(_occt_bin "${OCCT_BIN_DIR_${_config_upper}}")
set(_occt_dlls "")
set(_occt_staged "")
set(_missing_occt "")
-264
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@@ -1,264 +0,0 @@
diff --git a/adm/cmake/occt_defs_flags.cmake b/adm/cmake/occt_defs_flags.cmake
index 00000000..00000001 100644
--- a/adm/cmake/occt_defs_flags.cmake
+++ b/adm/cmake/occt_defs_flags.cmake
@@ -134,7 +134,11 @@
set (CMAKE_CXX_FLAGS "-std=c++0x ${CMAKE_CXX_FLAGS}")
endif()
# Optimize size of binaries
- set (CMAKE_SHARED_LINKER_FLAGS "-Wl,-s ${CMAKE_SHARED_LINKER_FLAGS}")
+ # clang-cl reports the Clang compiler ID, and OCCT builds shared on Windows,
+ # where the MSVC-style linker gets this flag as an argument it does not know.
+ if (NOT WIN32)
+ set (CMAKE_SHARED_LINKER_FLAGS "-Wl,-s ${CMAKE_SHARED_LINKER_FLAGS}")
+ endif()
elseif(MINGW)
add_definitions(-D_WIN32_WINNT=0x0601)
# _WIN32_WINNT=0x0601 (use Windows 7 SDK)
diff --git a/CMakeLists.txt b/CMakeLists.txt
index d98acc0f..28eb8eb4 100644
--- a/CMakeLists.txt
+++ b/CMakeLists.txt
@@ -225,7 +225,7 @@ if (NOT DEFINED INSTALL_DIR_BIN)
if ("${INSTALL_DIR_LAYOUT}" STREQUAL "Unix")
set (INSTALL_DIR_BIN "bin" CACHE PATH "${INSTALL_DIR_BIN_DESCR}")
else()
- set (INSTALL_DIR_BIN "${OS_WITH_BIT}/${COMPILER}/bin" CACHE PATH "${INSTALL_DIR_BIN_DESCR}")
+ set (INSTALL_DIR_BIN "bin/occt" CACHE PATH "${INSTALL_DIR_BIN_DESCR}")
endif()
endif()
@@ -243,11 +243,11 @@ if (NOT DEFINED INSTALL_DIR_LIB)
if ("${INSTALL_DIR_LAYOUT}" STREQUAL "Unix")
set (INSTALL_DIR_LIB "lib" CACHE PATH "${INSTALL_DIR_LIB_DESCR}")
else()
- set (INSTALL_DIR_LIB "${OS_WITH_BIT}/${COMPILER}/lib" CACHE PATH "${INSTALL_DIR_LIB_DESCR}")
+ set (INSTALL_DIR_LIB "lib/occt" CACHE PATH "${INSTALL_DIR_LIB_DESCR}")
endif()
endif()
-# OCCT headers: <prefix>/inc for windows,
+# OCCT headers: <prefix>/include for windows,
# <prefix>/include/opencascade-7.0.0 for unix
if (NOT DEFINED INSTALL_DIR_INCLUDE)
if ("${INSTALL_DIR_LAYOUT}" STREQUAL "Unix")
@@ -256,7 +256,7 @@ if (NOT DEFINED INSTALL_DIR_INCLUDE)
set (INSTALL_DIR_INCLUDE "include/opencascade-${OCC_VERSION_STRING_EXT}" CACHE PATH "${INSTALL_DIR_INCLUDE_DESCR}" FORCE)
endif()
else()
- set (INSTALL_DIR_INCLUDE "inc" CACHE PATH "${INSTALL_DIR_INCLUDE_DESCR}")
+ set (INSTALL_DIR_INCLUDE "include/occt" CACHE PATH "${INSTALL_DIR_INCLUDE_DESCR}")
endif()
endif()
@@ -330,7 +330,7 @@ if (NOT DEFINED INSTALL_DIR_CMAKE)
set (INSTALL_DIR_CMAKE "lib/cmake/opencascade" CACHE PATH "${INSTALL_DIR_CMAKE_DESCR}")
endif()
else()
- set (INSTALL_DIR_CMAKE "cmake" CACHE PATH "${INSTALL_DIR_CMAKE_DESCR}")
+ set (INSTALL_DIR_CMAKE "lib/cmake/occt" CACHE PATH "${INSTALL_DIR_CMAKE_DESCR}")
endif()
endif()
@@ -338,13 +338,13 @@ endif()
OCCT_INCLUDE_CMAKE_FILE ("adm/cmake/occt_resources")
# install LICENSE_LGPL_21.txt and OCCT_LGPL_EXCEPTION.txt files
-if ("${INSTALL_DIR_LAYOUT}" STREQUAL "Unix")
- OCCT_INSTALL_FILE_OR_DIR ("LICENSE_LGPL_21.txt" "${INSTALL_DIR_DOC}")
- OCCT_INSTALL_FILE_OR_DIR ("OCCT_LGPL_EXCEPTION.txt" "${INSTALL_DIR_DOC}")
-else()
- OCCT_INSTALL_FILE_OR_DIR ("LICENSE_LGPL_21.txt" ".")
- OCCT_INSTALL_FILE_OR_DIR ("OCCT_LGPL_EXCEPTION.txt" ".")
-endif()
+#if ("${INSTALL_DIR_LAYOUT}" STREQUAL "Unix")
+# OCCT_INSTALL_FILE_OR_DIR ("LICENSE_LGPL_21.txt" "${INSTALL_DIR_DOC}")
+# OCCT_INSTALL_FILE_OR_DIR ("OCCT_LGPL_EXCEPTION.txt" "${INSTALL_DIR_DOC}")
+#else()
+# OCCT_INSTALL_FILE_OR_DIR ("LICENSE_LGPL_21.txt" ".")
+# OCCT_INSTALL_FILE_OR_DIR ("OCCT_LGPL_EXCEPTION.txt" ".")
+#endif()
if(APPLE)
set (INSTALL_NAME_DIR "" CACHE STRING "install_name library suffix on OS X (e.g. @executable_path/../Frameworks)")
@@ -850,34 +850,34 @@ endif()
# build directories
if (SINGLE_GENERATOR)
- set (CMAKE_ARCHIVE_OUTPUT_DIRECTORY "${CMAKE_BINARY_DIR}/${OS_WITH_BIT}/${COMPILER}/lib${BIN_LETTER}")
- set (CMAKE_RUNTIME_OUTPUT_DIRECTORY "${CMAKE_BINARY_DIR}/${OS_WITH_BIT}/${COMPILER}/bin${BIN_LETTER}")
- set (CMAKE_LIBRARY_OUTPUT_DIRECTORY "${CMAKE_BINARY_DIR}/${OS_WITH_BIT}/${COMPILER}/lib${BIN_LETTER}")
+ set (CMAKE_ARCHIVE_OUTPUT_DIRECTORY "${CMAKE_BINARY_DIR}/lib/occt")
+ set (CMAKE_RUNTIME_OUTPUT_DIRECTORY "${CMAKE_BINARY_DIR}/bin/occt")
+ set (CMAKE_LIBRARY_OUTPUT_DIRECTORY "${CMAKE_BINARY_DIR}/lib/occt")
if (WIN32)
- set (CMAKE_LIBRARY_OUTPUT_DIRECTORY "${CMAKE_BINARY_DIR}/${OS_WITH_BIT}/${COMPILER}/bin${BIN_LETTER}")
+ set (CMAKE_LIBRARY_OUTPUT_DIRECTORY "${CMAKE_BINARY_DIR}/bin/occt")
endif()
endif()
-set (CMAKE_ARCHIVE_OUTPUT_DIRECTORY_RELEASE "${CMAKE_BINARY_DIR}/${OS_WITH_BIT}/${COMPILER}/lib")
-set (CMAKE_RUNTIME_OUTPUT_DIRECTORY_RELEASE "${CMAKE_BINARY_DIR}/${OS_WITH_BIT}/${COMPILER}/bin")
-set (CMAKE_LIBRARY_OUTPUT_DIRECTORY_RELEASE "${CMAKE_BINARY_DIR}/${OS_WITH_BIT}/${COMPILER}/lib")
+set (CMAKE_ARCHIVE_OUTPUT_DIRECTORY_RELEASE "${CMAKE_BINARY_DIR}/lib/occt")
+set (CMAKE_RUNTIME_OUTPUT_DIRECTORY_RELEASE "${CMAKE_BINARY_DIR}/bin/occt")
+set (CMAKE_LIBRARY_OUTPUT_DIRECTORY_RELEASE "${CMAKE_BINARY_DIR}/lib/occt")
-set (CMAKE_ARCHIVE_OUTPUT_DIRECTORY_RELWITHDEBINFO "${CMAKE_BINARY_DIR}/${OS_WITH_BIT}/${COMPILER}/libi")
-set (CMAKE_RUNTIME_OUTPUT_DIRECTORY_RELWITHDEBINFO "${CMAKE_BINARY_DIR}/${OS_WITH_BIT}/${COMPILER}/bini")
-set (CMAKE_LIBRARY_OUTPUT_DIRECTORY_RELWITHDEBINFO "${CMAKE_BINARY_DIR}/${OS_WITH_BIT}/${COMPILER}/libi")
+set (CMAKE_ARCHIVE_OUTPUT_DIRECTORY_RELWITHDEBINFO "${CMAKE_BINARY_DIR}/lib/occt/RelWithDebInfo")
+set (CMAKE_RUNTIME_OUTPUT_DIRECTORY_RELWITHDEBINFO "${CMAKE_BINARY_DIR}/bin/occt/RelWithDebInfo")
+set (CMAKE_LIBRARY_OUTPUT_DIRECTORY_RELWITHDEBINFO "${CMAKE_BINARY_DIR}/lib/occt/RelWithDebInfo")
-set (CMAKE_ARCHIVE_OUTPUT_DIRECTORY_DEBUG "${CMAKE_BINARY_DIR}/${OS_WITH_BIT}/${COMPILER}/libd")
-set (CMAKE_RUNTIME_OUTPUT_DIRECTORY_DEBUG "${CMAKE_BINARY_DIR}/${OS_WITH_BIT}/${COMPILER}/bind")
-set (CMAKE_LIBRARY_OUTPUT_DIRECTORY_DEBUG "${CMAKE_BINARY_DIR}/${OS_WITH_BIT}/${COMPILER}/libd")
+set (CMAKE_ARCHIVE_OUTPUT_DIRECTORY_DEBUG "${CMAKE_BINARY_DIR}/lib/occt/Debug")
+set (CMAKE_RUNTIME_OUTPUT_DIRECTORY_DEBUG "${CMAKE_BINARY_DIR}/bin/occt/Debug")
+set (CMAKE_LIBRARY_OUTPUT_DIRECTORY_DEBUG "${CMAKE_BINARY_DIR}/lib/occt/Debug")
if (WIN32)
- set (CMAKE_LIBRARY_OUTPUT_DIRECTORY_RELEASE "${CMAKE_BINARY_DIR}/${OS_WITH_BIT}/${COMPILER}/bin")
- set (CMAKE_LIBRARY_OUTPUT_DIRECTORY_RELWITHDEBINFO "${CMAKE_BINARY_DIR}/${OS_WITH_BIT}/${COMPILER}/bini")
- set (CMAKE_LIBRARY_OUTPUT_DIRECTORY_DEBUG "${CMAKE_BINARY_DIR}/${OS_WITH_BIT}/${COMPILER}/bind")
+ set (CMAKE_LIBRARY_OUTPUT_DIRECTORY_RELEASE "${CMAKE_BINARY_DIR}/bin/occt")
+ set (CMAKE_LIBRARY_OUTPUT_DIRECTORY_RELWITHDEBINFO "${CMAKE_BINARY_DIR}/bin/occt/RelWithDebInfo")
+ set (CMAKE_LIBRARY_OUTPUT_DIRECTORY_DEBUG "${CMAKE_BINARY_DIR}/bin/occt/Debug")
endif()
string(TIMESTAMP CURRENT_TIME "%H:%M:%S")
-message (STATUS "\nInfo: \(${CURRENT_TIME}\) Start collecting all OCCT header files into ${CMAKE_BINARY_DIR}/inc ...")
+message (STATUS "\nInfo: \(${CURRENT_TIME}\) Start collecting all OCCT header files into ${CMAKE_BINARY_DIR}/include/occt ...")
# collect all the headers to <binary dir>/inc folder
COLLECT_AND_INSTALL_OCCT_HEADER_FILES ("${CMAKE_BINARY_DIR}" "${BUILD_TOOLKITS}" "${CMAKE_SOURCE_DIR}/src" "${INSTALL_DIR_INCLUDE}")
@@ -984,9 +984,9 @@ if (EXISTS "${INSTALL_DIR}/${INSTALL_DIR_SCRIPT}/custom.${SCRIPT_EXT}")
set (CUSTOM_CONTENT "${CUSTOM_CONTENT} ${ADDITIONAL_CUSTOM_CONTENT}")
- file (WRITE "${INSTALL_DIR}/${INSTALL_DIR_SCRIPT}/custom.${SCRIPT_EXT}" "${CUSTOM_CONTENT}")
+ #file (WRITE "${INSTALL_DIR}/${INSTALL_DIR_SCRIPT}/custom.${SCRIPT_EXT}" "${CUSTOM_CONTENT}")
else()
- OCCT_CONFIGURE_AND_INSTALL ("adm/templates/custom.${SCRIPT_EXT}.main" "custom.${SCRIPT_EXT}" "custom.${SCRIPT_EXT}" "${INSTALL_DIR_SCRIPT}")
+ #OCCT_CONFIGURE_AND_INSTALL ("adm/templates/custom.${SCRIPT_EXT}.main" "custom.${SCRIPT_EXT}" "custom.${SCRIPT_EXT}" "${INSTALL_DIR_SCRIPT}")
endif()
if (WIN32)
@@ -1007,7 +1007,7 @@ endforeach()
# write current custom.bat/sh (for install directory)
set (SUB_CUSTOM_BUILD_NAME "custom_${COMPILER}_${COMPILER_BITNESS}.install.${SCRIPT_EXT}")
-OCCT_CONFIGURE_AND_INSTALL ("adm/templates/custom.install.${SCRIPT_EXT}.in" "${SUB_CUSTOM_BUILD_NAME}" "${SUB_CUSTOM_NAME}" "${INSTALL_DIR_SCRIPT}")
+#OCCT_CONFIGURE_AND_INSTALL ("adm/templates/custom.install.${SCRIPT_EXT}.in" "${SUB_CUSTOM_BUILD_NAME}" "${SUB_CUSTOM_NAME}" "${INSTALL_DIR_SCRIPT}")
# write current custom.bat/sh (for build directory)
OCCT_CONFIGURE ("adm/templates/custom.build.${SCRIPT_EXT}.in" "${SUB_CUSTOM_NAME}")
@@ -1019,9 +1019,9 @@ endif()
if (WIN32)
# env script for draw in building environment
- OCCT_CONFIGURE ("adm/templates/env.${SCRIPT_EXT}.in" "env.${SCRIPT_EXT}")
+ #OCCT_CONFIGURE ("adm/templates/env.${SCRIPT_EXT}.in" "env.${SCRIPT_EXT}")
# install env script
- install (FILES "${CMAKE_BINARY_DIR}/env.${SCRIPT_EXT}" DESTINATION "${INSTALL_DIR_SCRIPT}")
+ #install (FILES "${CMAKE_BINARY_DIR}/env.${SCRIPT_EXT}" DESTINATION "${INSTALL_DIR_SCRIPT}")
# copy build.bat and install.bat scripts to CMake binary folder
OCCT_COPY_FILE_OR_DIR ("adm/templates/build.bat" "${CMAKE_BINARY_DIR}")
OCCT_COPY_FILE_OR_DIR ("adm/templates/install.bat" "${CMAKE_BINARY_DIR}")
@@ -1043,12 +1043,12 @@ endif()
FILE_TO_LIST ("adm/RESOURCES" RESOURCES)
foreach(RESOURCE ${RESOURCES})
get_filename_component(RESOURCE_FOLDER ${RESOURCE} DIRECTORY)
- if(NOT "${RESOURCE_FOLDER}" STREQUAL "")
- get_filename_component(RESOURCE_FOLDER ${RESOURCE_FOLDER} NAME)
- OCCT_INSTALL_FILE_OR_DIR ("src/${RESOURCE}" "${INSTALL_DIR_RESOURCE}/${RESOURCE_FOLDER}")
- else()
- OCCT_INSTALL_FILE_OR_DIR ("src/${RESOURCE}" "${INSTALL_DIR_RESOURCE}")
- endif()
+ #if(NOT "${RESOURCE_FOLDER}" STREQUAL "")
+ # get_filename_component(RESOURCE_FOLDER ${RESOURCE_FOLDER} NAME)
+ # OCCT_INSTALL_FILE_OR_DIR ("src/${RESOURCE}" "${INSTALL_DIR_RESOURCE}/${RESOURCE_FOLDER}")
+ #else()
+ # OCCT_INSTALL_FILE_OR_DIR ("src/${RESOURCE}" "${INSTALL_DIR_RESOURCE}")
+ #endif()
endforeach()
if (BUILD_SAMPLES_QT)
diff --git a/adm/cmake/occt_macros.cmake b/adm/cmake/occt_macros.cmake
index 224c96b1..8c94a1c5 100644
--- a/adm/cmake/occt_macros.cmake
+++ b/adm/cmake/occt_macros.cmake
@@ -608,7 +608,7 @@ macro (OCCT_INSERT_CODE_FOR_TARGET)
install(CODE "if (\"\${CMAKE_INSTALL_CONFIG_NAME}\" MATCHES \"^([Rr][Ee][Ll][Ee][Aa][Ss][Ee])$\")
set (OCCT_INSTALL_BIN_LETTER \"\")
elseif (\"\${CMAKE_INSTALL_CONFIG_NAME}\" MATCHES \"^([Rr][Ee][Ll][Ww][Ii][Tt][Hh][Dd][Ee][Bb][Ii][Nn][Ff][Oo])$\")
- set (OCCT_INSTALL_BIN_LETTER \"i\")
+ set (OCCT_INSTALL_BIN_LETTER \"\")
elseif (\"\${CMAKE_INSTALL_CONFIG_NAME}\" MATCHES \"^([Dd][Ee][Bb][Uu][Gg])$\")
set (OCCT_INSTALL_BIN_LETTER \"d\")
endif()")
diff --git a/adm/cmake/occt_toolkit.cmake b/adm/cmake/occt_toolkit.cmake
index 550e0e2f..7ac1a3b8 100644
--- a/adm/cmake/occt_toolkit.cmake
+++ b/adm/cmake/occt_toolkit.cmake
@@ -241,7 +241,7 @@
else()
set (aReleasePdbConf)
endif()
- install (FILES ${CMAKE_BINARY_DIR}/${OS_WITH_BIT}/${COMPILER}/bin\${OCCT_INSTALL_BIN_LETTER}/${PROJECT_NAME}.pdb
+ install (FILES $<TARGET_PDB_FILE:${PROJECT_NAME}>
CONFIGURATIONS Debug ${aReleasePdbConf} RelWithDebInfo
DESTINATION "${INSTALL_DIR_BIN}\${OCCT_INSTALL_BIN_LETTER}")
endif()
diff --git a/src/Font/Font_FTFont.cxx b/src/Font/Font_FTFont.cxx
index 5ae9899f..0a17372b 100644
--- a/src/Font/Font_FTFont.cxx
+++ b/src/Font/Font_FTFont.cxx
@@ -103,9 +103,11 @@ bool Font_FTFont::Init (const Handle(NCollection_Buffer)& theData,
{
throw Standard_ProgramError ("Font_FTFont, Light and Normal hinting styles are mutually exclusive");
}
+#ifdef HAVE_FREETYPE
setLoadFlag (FT_LOAD_TARGET_LIGHT, (theParams.FontHinting & Font_Hinting_Light) != 0);
setLoadFlag (FT_LOAD_NO_HINTING, (theParams.FontHinting & Font_Hinting_Normal) == 0
&& (theParams.FontHinting & Font_Hinting_Light) == 0);
+#endif
// manage native / autohinting
if ((theParams.FontHinting & Font_Hinting_ForceAutohint) != 0
@@ -113,8 +115,10 @@ bool Font_FTFont::Init (const Handle(NCollection_Buffer)& theData,
{
throw Standard_ProgramError ("Font_FTFont, ForceAutohint and NoAutohint are mutually exclusive");
}
+#ifdef HAVE_FREETYPE
setLoadFlag (FT_LOAD_FORCE_AUTOHINT, (theParams.FontHinting & Font_Hinting_ForceAutohint) != 0);
setLoadFlag (FT_LOAD_NO_AUTOHINT, (theParams.FontHinting & Font_Hinting_NoAutohint) != 0);
+#endif
if (!myFTLib->IsValid())
{
From 7236e83dcc1e7284e66dc61e612154617ef715d6 Mon Sep 17 00:00:00 2001
From: dpasukhi <dpasukhi@opencascade.com>
Date: Tue, 27 Aug 2024 11:33:29 +0100
Subject: [PATCH] 0033808: Coding - FreeType Use unsigned point and contour
indexing in `FT_Outline`
Changes to auto instead of specific type
---
src/StdPrs/StdPrs_BRepFont.cxx | 2 +-
1 file changed, 1 insertion(+), 1 deletion(-)
diff --git a/src/StdPrs/StdPrs_BRepFont.cxx b/src/StdPrs/StdPrs_BRepFont.cxx
index ab2d9b3c9f..cd701879b1 100644
--- a/src/StdPrs/StdPrs_BRepFont.cxx
+++ b/src/StdPrs/StdPrs_BRepFont.cxx
@@ -457,7 +457,7 @@ Standard_Boolean StdPrs_BRepFont::renderGlyph (const Standard_Utf32Char theChar,
for (short aContour = 0, aStartIndex = 0; aContour < anOutline->n_contours; ++aContour)
{
const FT_Vector* aPntList = &anOutline->points[aStartIndex];
- const char* aTags = &anOutline->tags[aStartIndex];
+ const auto* aTags = &anOutline->tags[aStartIndex];
const short anEndIndex = anOutline->contours[aContour];
const short aPntsNb = (anEndIndex - aStartIndex) + 1;
aStartIndex = anEndIndex + 1;
+18 -18
View File
@@ -1,5 +1,5 @@
# clang-cl cannot emit IGESAppli_GeneralModule.cxx on ARM64
# (llvm/llvm-project#62081). cl and clang-cl share an ABI.
# clang-cl cannot emit some OCCT sources for ARM64 (llvm/llvm-project#62081).
# cl and clang-cl share an ABI.
set(_occt_compiler_args "")
if ("${DEPS_ARCH}" STREQUAL "arm64" AND CMAKE_CXX_COMPILER_ID STREQUAL Clang)
set(_occt_compiler_args -DCMAKE_C_COMPILER:STRING=cl -DCMAKE_CXX_COMPILER:STRING=cl)
@@ -15,31 +15,31 @@ endif()
# (fillet/offset/loft), whose only consumer is the parametric Design/CAD tab. With it OFF
# the deps prefix matches upstream exactly.
#
# With it ON the delta is THREE toolkits, not two: TKFillet (7.40 MiB archive, used via
# BRepFilletAPI), TKOffset (5.38 MiB, used via BRepOffsetAPI) and TKFeat (4.42 MiB), which
# nothing here references but which the module flag builds anyway -- it is all-or-nothing
# per module. The module's other nine toolkits are built either way, because DataExchange
# (the STEP path upstream already ships) depends on them.
# With it ON OCCT also builds TKFillet (used via BRepFilletAPI), TKOffset (used via
# BRepOffsetAPI), and TKFeat, TKHelix, TKXMesh and TKExpress, which nothing here references
# but which the module flag builds anyway, since module flags are all-or-nothing. The
# module's other toolkits are built either way, because DataExchange (the STEP path)
# depends on them.
#
# On macOS/Linux OCCT links statically, so an unreferenced toolkit costs build time and no
# shipped bytes. The Windows figure is a real DLL cost and has NOT been measured -- an
# earlier "3.77 MiB, Windows only" note here covered only two of the three toolkits and is
# not a number to quote. See docs/HLSD/design-tab.md.
if (IN_GIT_REPO)
set(OCCT_DIRECTORY_FLAG --directory ${BINARY_DIR_REL}/dep_OCCT-prefix/src/dep_OCCT)
endif ()
# shipped bytes. Windows ships only the DLLs libslic3r links, so the tab adds the TKFillet,
# TKOffset and TKBool DLLs. See docs/HLSD/design-tab.md.
orcaslicer_add_cmake_project(OCCT
URL https://github.com/Open-Cascade-SAS/OCCT/archive/refs/tags/V7_6_0.zip
URL_HASH SHA256=28334f0e98f1b1629799783e9b4d21e05349d89e695809d7e6dfa45ea43e1dbc
#PATCH_COMMAND ${PATCH_CMD} ${CMAKE_CURRENT_LIST_DIR}/0001-OCCT-fix.patch
PATCH_COMMAND git apply ${OCCT_DIRECTORY_FLAG} --verbose --ignore-space-change --whitespace=fix ${CMAKE_CURRENT_LIST_DIR}/0001-OCCT-fix.patch
URL https://github.com/Open-Cascade-SAS/OCCT/archive/refs/tags/V8_0_1.zip
URL_HASH SHA256=7c033d917ee8f040c0512d289dcc5f02c148889d5bac17c3e25639accb44f0da
#DEPENDS dep_Boost
DEPENDS ${FREETYPE_PKG}
CMAKE_ARGS
-DCMAKE_CXX_STANDARD=17
-DBUILD_LIBRARY_TYPE=${library_build_type}
# With the Unix layout, OCCT's resources and licenses go under share/ and its scripts
# into bin/occt on Windows too. libslic3r finds the CMake package in lib/cmake/occt.
-DINSTALL_DIR_LAYOUT=Unix
-DINSTALL_DIR_BIN=bin/occt
-DINSTALL_DIR_LIB=lib/occt
-DINSTALL_DIR_INCLUDE=include/occt
-DINSTALL_DIR_CMAKE=lib/cmake/occt
-DUSE_TK=OFF
-DUSE_TBB=OFF
#-DUSE_FREETYPE=OFF
+13
View File
@@ -75,6 +75,19 @@ static FILE *stl_open_count_facets(stl_file *stl, const char *file, unsigned int
break;
}
}
// Zero normals and coordinates like 10 or 15 have no byte above 127, so the test above can miss a binary file.
// Its size still matches its facet count; text read as that count would need a file of gigabytes.
if (stl->stats.type == ascii) {
uint32_t header_num_facets;
fseek(fp, custom_header_length, SEEK_SET);
if (fread(&header_num_facets, sizeof(uint32_t), 1, fp) == 1) {
#if BOOST_ENDIAN_BIG_BYTE
stl_internal_reverse_quads((char*)&header_num_facets, 4);
#endif /* BOOST_ENDIAN_BIG_BYTE */
if (header_size + uint64_t(header_num_facets) * SIZEOF_STL_FACET == file_size)
stl->stats.type = binary;
}
}
rewind(fp);
uint32_t num_facets = 0;
File diff suppressed because it is too large Load Diff
+5 -1
View File
@@ -38,7 +38,11 @@ no wx dependency and is unit-tested.
The notebook needs a page object for a tab to exist and for tabs to be inserted and
removed by pointer, and the placeholder is that object. It builds the real panel inside
itself the first time it is shown and forwards showing and hiding afterwards, so a panel's
own show handling stays its activation hook. Nothing builds while the main window is
own show handling stays its activation hook. The build runs before the placeholder shows
itself, so a panel built on demand is created in a hidden window as a prebuilt one is: on
Windows every control created or moved inside a shown window re-clips and repaints its
shown siblings, which makes building a large panel into a shown page many times slower.
Nothing builds while the main window is
hidden; the window's first show builds the start page. A page that is out of the book is
not prebuilt. A panel built while its page is hidden stays hidden, and gets the theming
the window applied before the panel existed.
+112 -15
View File
@@ -13,8 +13,9 @@ known.
Its coupling to the rest of the application is deliberately narrow. It adds no stage to the
slicing pipeline and touches neither the preset system nor `Tab`. It reaches the rest of Orca
in two places: **Commit to Plate**, which hands finished solids to Prepare as ordinary model
objects, and one optional 3MF archive entry that carries the recipe. Everything else is
contained in `src/libslic3r/CAD/` and `src/slic3r/GUI/CAD/`.
objects (by default one assembly object with a part per body, which keeps the bodies' relative
placement, or one object per body), and one optional 3MF archive entry that carries the recipe.
Everything else is contained in `src/libslic3r/CAD/` and `src/slic3r/GUI/CAD/`.
The user-facing manual lives in the wiki
([Design Tab](https://www.orcaslicer.com/wiki/design_tab)), not here. This document covers the
@@ -51,14 +52,13 @@ widens the existing OCCT build by one module flag in `deps/OCCT/OCCT.cmake`:
-DBUILD_MODULE_ModelingAlgorithms=${SLIC3R_CAD}
```
Most of that module's twelve toolkits were already being built, because `DataExchange` — the
STEP path upstream ships — depends on them. The delta is `TKFillet` (used through
`BRepFilletAPI`), `TKOffset` (`BRepOffsetAPI`) and `TKFeat`, which nothing here references but
which the module flag builds anyway, because OCCT's module flags are all-or-nothing. On macOS
and Linux OCCT links statically, so an unreferenced toolkit costs build time and no shipped
bytes; on Windows OCCT builds shared, so the cost there is real DLL bytes. That Windows figure
has not been measured, and `OCCT.cmake` says so rather than carrying a number that was derived
from an incomplete toolkit list.
Most of that module's toolkits are built either way, because `DataExchange`, which the STEP
importer uses, depends on them. With the flag on, OCCT also builds `TKFillet` (used through
`BRepFilletAPI`), `TKOffset` (`BRepOffsetAPI`), and `TKFeat`, `TKHelix`, `TKXMesh` and
`TKExpress`, which nothing here references but which the module flag builds anyway, because
OCCT's module flags are all-or-nothing. On macOS and Linux OCCT links statically, so an
unreferenced toolkit costs build time and no shipped bytes. On Windows OCCT builds shared and
only the linked toolkits ship, so the tab adds the `TKFillet`, `TKOffset` and `TKBool` DLLs.
On Windows the packaging step asserts that every linked OCCT toolkit has a shipped DLL and
fails the configure with the name of any that is missing, because the alternative failure — a
@@ -117,6 +117,11 @@ that keep it survivable are:
`Import` features embed the imported solid as an OCCT BRep string inside the recipe rather than
referencing the source file, so a project opens without the STEP or mesh it was built from.
The cost is that saved projects are coupled to an OCCT BRep revision.
`tests/data/cad_brep_occt76.brep` holds a solid written by OCCT 7.6, and its test fails if the
bundled OCCT can no longer read it.
A Text feature follows the same rule: it stores the outlines it was vectorised into alongside
its string, font and height, so the project opens identically on a machine that lacks the font;
the three parameters are only what an edit reopens the dialog with.
## The interaction contract
@@ -131,7 +136,7 @@ contract between them is stated in code rather than spread across handlers.
| `Transient` | a value field or a popup menu | closes it; the tool stays armed |
| `Gesture` | an uncommitted delta — an entity being drawn, a body being dragged | reverts it; committed work is untouched |
| `Tool` | a feature card, an armed sketch tool, a constrain session | exits it; drawn entities survive |
| `Idle` | nothing transient | clears the selection; leaves a sketch session only if it is empty |
| `Idle` | nothing transient | clears the selection, a Feature tree or Bodies row included; leaves a sketch session only if it is empty |
`cad_escape_level()` is a `constexpr` free function over a POD of four booleans rather than a
method on the panel, so the ordering that is the entire contract is checkable without a window,
@@ -144,26 +149,117 @@ explicit selection, the sketch ribbon's Cancel, which asks first, or `Ctrl+Z`. A
*session* is deliberately not a `Tool` level; it is the environment the `Idle` level lives in,
which makes the destructive path unrepresentable rather than merely unlikely.
Right-click is read at button-up against two independent budgets — 3 px of drift and 200 ms —
because drift alone still popped a menu at the end of a slow, careful orbit. The raycast uses
the press position, not the release. An armed sketch tool that already consumed the right
Right-click is read at button-up against one budget, 3 px of drift, applied to the whole press
rather than to its end points: a press that wandered past the budget at any moment is
navigation, even if it comes back to where it started, which is what stops a slow, careful
orbit from ending in a menu. There is no time budget — a gesture that means something different
when it is slow is exactly what the interaction charter rules out. The raycast uses the press
position, not the release. An armed sketch tool that already consumed the right
button (to terminate a chain, say) declines to also open a menu, through a read-and-clear flag.
Past either budget the event is navigation, and navigation does not transition the state
machine.
Navigation itself is Prepare's: the camera reads the drag actions set in Preferences > Control
for each button. The left button is shared with picking, so a whole body is swept with a
rectangle on plain left-drag only while no camera action is assigned to it, and with
Shift+left-drag otherwise — Prepare's own rectangle selection.
Entering a sketch changes three things at once so the mode is legible: a banner above the
canvas (a sibling of the canvas, not a child over it — on GTK a child window over a
`wxGLCanvas` is a native window and does not reliably stack over GL), the printer bed muted so
a plate grid is never read as a sketch grid, and `N` to look normal to the plane. Code that
changes any of the three belongs with a change to this section.
## Rendering the bodies
The tab draws its bodies through the same `GLCanvas3D` object path as Prepare, so how they look
is decided in the shared object shader, not in the tab. The slicer's two lights both sit near
the camera, which leaves the sides of a part in nearly one tone; the Design canvas asks for a
studio model instead — a world-space sky/ground hemisphere, a key and a fill light, a
plastic-like highlight and a darker silhouette — through `GLCanvas3D::set_studio_lighting()`
and the phong shader's `lighting_model` uniform. The program is shared by every canvas, so each
use sets the uniform (0 for the slicer's canvases) rather than relying on a default: a canvas
that left it alone would inherit whatever the last canvas chose.
The B-rep edges of every body are drawn over it by the sketch overlay as thin view-facing
ribbons, depth tested and pulled a few pixels toward the eye so they win against the faces that
meet at them and still hide behind faces in front; lines are not used because they do not
rasterise under the software GL context the tab also supports. Seams of closed surfaces and
degenerate edges are left out (`GeometryEngine::display_edges`), and the polylines are sampled
once per shape, keyed by its `TShape`, because a recompute that leaves a body unchanged is the
common case.
## Showing what is selected
A selection is drawn on the faces it names, never as a tint over the body: a translucent
selection colour blended into the body's own colour turns a different hue on every body and
vanishes on one close to it. Selected faces are split out of their body into a volume of their
own, which the canvas draws opaque in the selection colour through the same shader and lighting
as the body (`DesignCanvas::rebuild_bodies`); the sketch overlay outlines them with a cased line
— a dark band under a selection-coloured one — so the outline still reads on a body that wears
the selection colour itself. A body picked whole, a face picked in the viewport and the faces of
the Feature tree's selected feature all draw this way. The hover pre-highlight is the outline
alone, uncased: it promises a click, it is not one. The automatic body colours keep clear of the
selection colour's blues and teals, so no body looks selected before anything is picked; a colour
the user sets on a body is theirs, and the cased outline keeps its selection readable.
Selecting a feature row lights the faces that feature made, not the whole body it sits on, so a
fillet row shows its round and the extrude under it keeps the faces the fillet trimmed.
`CadDocument::faces_made_by` answers it without per-feature history: it replays the recipe to
just before the feature and then the feature alone, and a face of the finished model belongs to
the feature when an interior point of it lies on the boundary afterwards and not before, facing
the same way — the facing keeps a block stacked on a base the owner of its bottom face. A feature
that makes no face of its own, such as a Boolean union, answers with the bodies it changed. The
replay costs up to a recompute, so the panel finds the faces once per row and topology
generation, off the UI thread, and only while no feature card is open. One selection is live at
a time: a viewport pick clears the feature row and a feature row clears the viewport pick, as the
Feature tree and Bodies list do between themselves. `Esc`, a click on empty space and an
empty rubber band all let go of it, whichever list or pick made it.
## Following the app
The tab is a page of Orca's main window and answers to the same settings as Prepare.
- **Theme.** Its chrome is coloured from a table of light/dark token pairs. A theme switch
reaches `DesignPanel::on_sys_color_changed` from `MainFrame`, which moves every colour that is
one theme's token onto the other theme's and then runs the app's own dark pass; the icons are
Orca's sidebar grey, which the icon cache maps per theme, so they are re-rasterised rather
than re-tinted.
- **Scale.** Sizes are in DIP, and a DPI change reaches `DesignPanel::msw_rescale`, which
re-rasterises every icon (button faces, flyout rows, card headers, the feature and body lists'
row icons).
- **Sidebar icons.** Every clickable icon in the sidebar shows a hover chip. The card-header and
constraint-row buttons are Orca's self-painted `Button`, because a native button cannot take a
hover background on macOS. The Feature tree and Bodies lists are a custom-drawn
`DesignRowList` rather than a `wxTreeCtrl`, so each row carries its own actions — Edit,
Show/hide and Delete on a feature, Move, Show/hide and Delete on a body — and the eye shows
whether that row is hidden.
- **Viewport text.** The status line and the active tool's values are drawn by the canvas in
its ImGui pass, so they go with the canvas: a top-level window over GL does not follow its
frame and was left floating over other applications.
- **Undo.** The tab keeps its own history (the recipe is not part of Prepare's snapshots), but
it has no Undo/Redo of its own: the top bar, `Ctrl+Z` and Edit drive it while the tab is
shown, greyed to what an undo would actually do.
- **Docking.** The sidebar docks like Prepare's — either side, floating, resized, or collapsed
with the canvas's collapse button or `Shift+Tab` — through its own AUI manager under the
toolbar, because Prepare's manages the Plater and the Plater is not on this page. The button is
the canvas's own toolbar rather than Prepare's, which collapses Prepare's sidebar. The layout,
collapse included, is kept apart from Prepare's (`design_window_layout`) and starts where
Prepare's sidebar is, at its width, so the canvas edge holds still across the tab switch until
the user moves one of them. A floating sidebar is a top-level window, so it is hidden with the
tab rather than left over the other pages, and View > Reset Window Layout resets both tabs.
## The offer is generated, not hand-written
Right-clicking geometry opens the *offer*: eight families in a fixed order, each verb at a
permanent row index, verbs that do not apply shown disabled **in place with their reason**
rather than removed. The invariant is that a verb's row index is identical in every selection
where it appears and that adding a verb never moves an existing one — the hand learns the
position, so the menu is never re-sorted, compacted or adaptively ordered.
position, so the menu is never re-sorted, compacted or adaptively ordered. Above the families
sits one *flat* row, holding Rename and Color — what a selection is opened for most: its verbs are
items of their own at the top of the menu rather than a family's submenu. It is appended after
the eight, so it moved no existing index, and it reads the same from the viewport and from a row
of the Bodies list.
An invariant across 92 verbs and 20 selection kinds does not survive by review, so the map
exists once, as data: `scripts/CAD/tool_atlas.json` carries every verb with its row, key, icon,
@@ -194,6 +290,7 @@ scripted action and a clicked one cannot diverge. It is off unless the variable
| `src/libslic3r/CAD/SketchSolver.*` | constraint solving, over the vendored solver |
| `src/libslic3r/slvs/` | vendored 2D constraint solver (GPLv3) |
| `src/slic3r/GUI/CAD/DesignPanel.*` | the tab: toolbar, feature cards, tree, key maps |
| `src/slic3r/GUI/CAD/DesignRowList.*` | the Feature tree and Bodies lists, with per-row actions |
| `src/slic3r/GUI/CAD/DesignCanvas.*` | viewport integration |
| `src/slic3r/GUI/CAD/DesignSketchTool.*` | in-canvas sketching |
| `src/slic3r/GUI/CAD/DesignInteraction.hpp` | the Esc level contract |
+529 -183
View File
@@ -2,238 +2,584 @@
## Purpose and scope
Precise Seam places the seam where a helper volume intersects the external
wall. The user attaches a mesh to an object as a Precise Seam modifier, and on
every layer the seam placer reads the modifier's slice to decide where the seam
of each external perimeter may, must or must not go. The same mesh keeps
working after the model changes, so the seam does not have to be repainted
after every design revision, and a swept helper body can guide the seam along
any path.
Precise Seam lets a helper volume decide where the seam of an object goes. The
user attaches a mesh to an object as a Precise Seam modifier. On every layer,
the part of the external perimeter that lies inside the modifier's slice
determines where the seam must, may or must not be placed. The helper is a
persistent model object rather than paint on the surface, so it keeps working
when the design changes. A body swept along a path on the surface can guide the
seam along any trajectory.
The modifier is non-printing geometry. It does not take part in slicing, region
assignment, filament selection or brim adhesion. It affects only seam
placement, which runs during G-code export.
The modifier is non-printing geometry. It takes no part in object slicing,
region assignment, filament selection or brim adhesion, and it affects only seam
placement during G-code export. Objects without Precise Seam volumes follow the
regular seam placement unchanged.
## Volume types and priority
Precise Seam does not replace the seam placer. It feeds it: a modifier inserts
the points it needs into the perimeter and changes the enforced/blocked type of
seam candidates, the same typing mechanism as seam painting, and the configured
seam position then chooses among them.
Precise Seam adds six `ModelVolumeType` values after `SUPPORT_ENFORCER`. The
strong types come first and the weak types follow. `is_precise_seam()`,
## Modifier types
Precise Seam adds six `ModelVolumeType` values after `SUPPORT_ENFORCER`, strong
types first and weak types after them. `is_precise_seam()`,
`is_precise_seam_strong()` and `is_precise_seam_weak()` are range checks that
depend on this order.
| Type | Group | Effect on the perimeter |
| Type | Group | Effect on an intersected perimeter |
| --- | --- | --- |
| `PRECISE_SEAM_CENTER` | strong | seam at the arc-length midpoint of the intersection |
| `PRECISE_SEAM_CENTER` | strong | seam at the midpoint, by arc length, of the intersection |
| `PRECISE_SEAM_LEFT` | strong | seam at the first point of the intersection |
| `PRECISE_SEAM_RIGHT` | strong | seam at the last point of the intersection |
| `PRECISE_SEAM_ENFORCED` | weak | intersection marked as enforced |
| `PRECISE_SEAM_BLOCKED` | weak | intersection marked as blocked |
| `PRECISE_SEAM_NEUTRAL` | weak | intersection reset to neutral |
A strong modifier fixes one point. A weak modifier only changes the
enforced/blocked type of seam candidates, and the configured seam position then
chooses among them. First and last are taken along the perimeter made
counter-clockwise seen from above. On an outer wall seen from outside, Left is
the left end of the intersection. On the wall of a hole seen from inside the
hole, the two ends are swapped.
A strong modifier fixes a single point. The perimeter gets exactly one enforced
seam candidate there, and every other candidate is blocked. A weak modifier
retypes, and where needed adds, the candidates inside its intersection, like
painting does.
An **intersection** is a continuous part of the external perimeter's centerline
that lies inside the modifier's slice on that layer. It is a portion of the
perimeter, never a chord through the object. The centerline lies half an
extrusion width inside the model surface and depends on print settings, so a
modifier must reach clearly past the surface to cross it unambiguously.
### Terms
- **Segment:** an intersection as the code represents it (`PerimeterSegment`).
User-facing texts call it an intersection.
- **Fragment:** a piece of the perimeter returned by clipping, before it is tied
to the source contour.
- **Interval:** the bound part of one source edge, given by the edge index and a
parameter range on that edge.
- **Zone:** a weak segment with its type (Enforced, Blocked or Neutral).
- **Boundary:** an end of a zone, inserted into the perimeter polygon.
- **Candidate:** a seam candidate of the seam placer, built from the points of
the processed perimeter polygon (painted enforcers may add more).
First and last are taken along the perimeter oriented counter-clockwise as seen
from above. On an outer wall seen from outside, Left is therefore the left end
of the intersection. On the wall of a hole seen from inside the hole, the two
ends are swapped. Mirroring an object does not mirror the mode: perimeters stay
counter-clockwise, so Left remains the left end seen from outside, and the seam
moves to the other end of the modifier instead of following the mirrored model.
## Priority
The order of volumes in the object is the priority order, highest first.
`ModelObject::sort_volumes()` keeps every strong modifier before every weak one
and preserves the user's order within each group. The object list lets the user
drag a modifier only within its own group. A type change that crosses a group
boundary moves the volume to the end of its new group, where it has the lowest
priority. Strong modifiers are tried in this order, and the first one that
yields a seam on a perimeter wins. Weak modifiers are applied from the lowest
priority to the highest, so the highest one overwrites any overlapping zone.
drag a modifier only within its own group. A type change that crosses the group
boundary moves the volume to the end of its new group, with the lowest priority
there.
## Model storage and 3MF compatibility
- **Strong:** modifiers are tried in priority order on each perimeter. The first
one that yields a usable segment decides the seam. Within that modifier the
longest segment wins; lengths are never compared across modifiers. Once a
strong point is placed, no later strong modifier and no weak modifier is
processed for that perimeter.
- **Weak:** every weak modifier applies. They are applied from the lowest
priority to the highest, so the highest one overwrites overlapping zones. A
Blocked modifier that fully contains a perimeter is the exception: it is
skipped there (see [Full containment](#full-containment)).
Projects must stay readable by earlier releases, and the modifier must not
change a print there. Both 3MF writers therefore store a Precise Seam volume as
an ordinary parameter modifier: `modifier_part` in the Bambu-format part
subtype, and `ParameterModifier` together with the legacy `modifier` flag in
the Prusa-format volume metadata. The seam mode is written separately under
A strong modifier without a usable segment, even one whose fragments were all
discarded, passes the turn to the next one.
## Data flow
1. **Invalidation.** `Print::apply()` treats a change of Precise Seam volumes as
a change of seam placement and invalidates G-code export; the object is not
resliced (see [Print invalidation](#print-invalidation)).
2. **Modifier slices.** `SeamPlacer::init()` collects each object's Precise Seam
volumes once, slices every volume separately and caches its regions with
their bounding boxes.
3. **Perimeters.** Seam candidates are gathered in parallel over the layers.
For objects with Precise Seam volumes, each external perimeter polygon is
normalized and prepared once for all modifiers.
4. **Extraction.** For each modifier, the perimeter is clipped against the
modifier's regions on that layer. The clipped fragments are bound back to the
source edges of the perimeter and assembled into segments.
5. **Strong, then weak.** Strong modifiers try to insert one seam point into the
perimeter polygon. If none succeeds, weak modifiers insert their zone
boundaries and subdivide enforced edges.
6. **Candidates.** The seam placer builds candidates from the modified polygon.
Painting assigns types first, weak zones overwrite them, and a strong point
makes its candidate the only enforced one.
7. **Selection and restoration.** The configured seam position chooses the
seams and aligns them. Afterwards the exact strong points are restored.
8. **Warnings.** After all objects are processed, `SeamPlacer::init()` prepares
one combined warning text if any problem was found; G-code export issues it.
## Modifier slices
`init_precise_seam_data()` collects the Precise Seam volumes of each object:
strong ones in priority order and weak ones in reverse, so that weak zones can
be applied with last-write-wins. Each volume is sliced separately with
`PrintObject::slice_single_volume_regions()`, at the object's layer heights and
with the same centered transformation as the object. The slices keep every
region's outer contour together with its holes as an `ExPolygon`. Volumes are
not merged, so each keeps its own priority, and a modifier may have several
regions on one layer.
`prepare_modifier_slices()` moves the slices into `ModifierRegionsCache`,
pairing each region with the bounding box of its exterior. Empty layers keep
their slots, so the cache is indexed by object layer; `Layer::id()` includes raft
layers, which are subtracted. The cache is filled before candidates are gathered
and is only read afterwards, shared by both modifier kinds and all worker
threads without locking.
## Perimeter preparation
The seam placer works on external perimeter loops, including the walls of
holes. For objects with Precise Seam volumes, consecutive duplicate points and
the repeated closing point of each extrusion loop are removed: adjacent
extrusion paths share endpoints, and the resulting zero-length edges would
prevent point insertion at their junctions. Distinct visits to one point of a
self-touching contour are kept. Objects without Precise Seam volumes keep their
original points, so ordinary seam candidates are unaffected.
Each polygon is made counter-clockwise. A single `PreparedPerimeter` is then
built for all modifiers of that perimeter. It holds a validity check (at least
three points, no consecutive or closing duplicates), the bounding box, and the
clipping line: the polygon as an open polyline with its first point repeated at
the end. The preparation borrows the polygon and is used only while the polygon
is unchanged: strong processing returns immediately after inserting its point,
and weak processing collects all segments before it inserts anything. An
invalid perimeter receives no Precise Seam processing.
## Segment extraction
`extract_perimeter_segments()` turns one modifier's regions on one layer into
segments of the perimeter, each with its geometry and its position on the
source contour. Both modifier kinds consume these segments; the extractor is
told the modifier type so that it prepares only the data that type needs.
### Clipping
Regions whose bounding box does not overlap the perimeter's are skipped. The
clipping line is intersected with each remaining region by `intersection_pl()`,
which clips an open path against an `ExPolygon` with its holes attached, using
the nonzero rule. Clipping an open line yields only pieces of the perimeter, so
a modifier crossing the whole object produces two separate pieces rather than a
chord through the body. Holes in a modifier and several regions of one modifier
simply produce more pieces. The line is cut at vertex zero, so a piece crossing
that vertex arrives as two fragments. A border that only touches the line can
come back as a single point; such fragments carry no coverage and are dropped
before binding.
### Binding fragments to source edges
Clipper returns coordinates only. Insertion needs the source edge of every
point, and coordinates alone are ambiguous where a contour visits the same
point twice. Each fragment is therefore bound to the source edges it covers,
producing intervals: an edge index with a parameter range on that edge.
- **Exact path.** For fragments with interior points, the second point is used
as an anchor that must equal a source vertex exactly. Clipping keeps the
vertices of an open path unchanged, including collinear ones. The following
points must match successive source vertices in either direction; later
occurrences of the anchor are tried if a sequence does not match. Only the two
end cuts are projected onto their edges.
- **Projection path.** Two-point fragments, and fragments the exact path cannot
match, are bound by projection. The first source edge that holds both points
of the first pair, with distinct parameters, establishes the edge and
direction. Every following pair must continue on the same edge or cross to the
neighboring edge at their actual shared vertex, in the same direction. A pair
continuing on the same edge reuses the previous pair's parameter for their
shared point, so the two projections of one point cannot differ.
- **Failure.** A fragment that cannot be bound continuously is rolled back and
discarded. Earlier fragments and other fragments are unaffected. The failure
is counted, logged and reported to the user (see
[Diagnostics](#diagnostics-and-warnings)).
Two rare rounding cases are handled only after both paths have failed, so the
normal path never pays for them:
- **Cut beside a vertex.** When a modifier boundary crosses within about one
coordinate unit of a source vertex, Clipper can place the cut at the vertex's
height but a few units beside it. The end pair then collapses to the vertex's
parameter or misses both neighboring edges. An end cut closer than the
snapping radius to a vertex of the fragment's own chain is snapped to that
vertex: either its neighbor in the fragment (the cut is a rounded copy of it
and is dropped) or a vertex that shares a source edge with that neighbor. The
neighbor wins whenever it is within the radius. Ends that are themselves source
vertices and ambiguous choices are left unchanged. Binding is then retried
once with the same strict rules, so a wrong candidate can only fail again.
- **Contact.** A fragment that still fails but is shorter than the snapping
radius is accepted as a contact and binds nothing. Insertion would collapse it
onto one point anyway.
Both outcomes are recoveries, not failures: they show no user warning but leave
a log marker.
### Assembling segments
The intervals are sorted by edge and parameter. Intervals on the same occurrence
of an edge are united when they overlap or meet, by parameter or at the same
integer point; equal coordinates on different edges are never united. A
parameter of 1 is stored as parameter 0 of the next edge, so intervals on
adjacent edges meet exactly at their shared vertex. Consecutive intervals that
meet form one `PerimeterSegment`, and the last segment is joined with the first
when they meet at vertex zero, undoing the artificial cut of the clipping line.
Each segment keeps its polyline, the source edge of every polyline edge, and its
begin and end positions on the source contour.
### Full containment
A modifier that covers the whole perimeter has no boundaries on it. The policy
follows seam painting, where painting a whole perimeter green is a meaningful
choice and forbidding the seam all round is not:
- **Seam Enforced** types the whole perimeter, like a perimeter painted green all
round, with subdivision applied as described under [Weak modifiers](#weak-modifiers).
- **Seam Neutral** types the whole perimeter Neutral, like an unmarked perimeter,
clearing painting and lower zones.
- **Seam Blocked** is skipped for the perimeter, with the full-containment
warning. The seam cannot avoid the whole perimeter, so the modifier does not
override anything below it: lower zones and painting stay in effect.
- **Seam Center, Left and Right** are skipped with the same warning: there is no
intersection to place the point on.
Enforced and Neutral take part in the usual priority order (see
[Weak modifiers](#weak-modifiers)).
The perimeter is fully contained when the united intervals cover every source
edge from parameter 0 to 1. A modifier boundary that merely touches the
perimeter counts as well:
- At a vertex or on an axis-aligned edge, clipping splits the line exactly at the
touch, the pieces meet at one point, and the coverage is complete.
- On an inclined edge the touching point is usually not representable on the
integer grid. The boundary pokes a few units across and leaves a real gap, so
a single segment covers everything except that gap.
Weak insertion would collapse such a segment's boundaries onto one vertex and
turn the intended zone into a single candidate, and strong would put the seam at
the touch. A single segment is therefore also full containment in the cases
where insertion collapses it, exactly up to edges shorter than 2 µm:
- the uncovered length from its end to its begin is below 1 µm, or
- the gap spans one vertex, or starts at a vertex and ends on the next edge, and
both ends lie within 1 µm of the vertex that ends the first gap edge, since
each end then snaps onto it from its own edge.
A cheap filter runs first: both cases bring the segment's ends within 2 µm of
each other.
## Strong modifiers
For a strong modifier, the extractor prepares each segment's target point
before anything is inserted, together with the source edge it lies on:
- **Left:** the segment's first point.
- **Right:** the segment's last point.
- **Center:** the point at half the segment's arc length.
Arc length is the sum of Euclidean edge lengths, not the chord or a vertex count.
`insert_strong_seam_point()` selects the longest segment of the first modifier
that has one. Exactly equal lengths are resolved by the prepared target points:
greater bed Y first, then smaller X; a complete tie keeps the first segment.
Slice coordinates already include instance rotation and have the bed axes;
centering and XY translation do not change this order. Nearly equal lengths are
not treated as equal, so exact ties occur mainly on axis-aligned geometry.
Geometrically equal segments, such as a symmetric modifier crossing both faces
of a thin wall, differ only by rounding noise that varies between layers, so
the chosen face may alternate. This is accepted deliberately: such a modifier is
ambiguous by itself: more than one segment raises the "multiple intersections"
warning. The user should make the modifier cross the perimeter once.
The selected point is inserted on its source edge. A point within 1 µm of an
existing vertex is snapped to that vertex. Helper points are added 1 µm on both
sides of it, except on an adjacent edge shorter than 2 µm, which already bounds
the distance.
When the candidates are built, the candidate at the inserted point is the only
enforced one and becomes the central enforcer; every other candidate is blocked.
Every seam position mode therefore selects it. Alignment and random placement
can still move the final position, so after alignment
`restore_precise_seam_positions()` writes the exact point and its index back
into every perimeter that has a strong seam.
## Weak modifiers
`collect_weak_modifier_segments()` extracts the segments of every weak modifier
before the polygon is modified, so all positions refer to the same contour. Each
segment becomes a zone with a type and two boundaries, kept in application
order, lowest priority first. Full containment of an Enforced or Neutral
modifier becomes a whole-perimeter zone at its place in that order: it has no
boundaries and takes part in no insertion or helper step below. The boundaries
carry their positions on the source contour; these remain as provenance after
insertion and are not indices into the modified polygon.
`prepare_weak_modifier_segments()` then changes the polygon:
1. **Boundary insertion.** Insertion events are sorted by decreasing source edge
and parameter, and the polygon is modified from its end towards its start. A
pending boundary's source index therefore stays valid. Vertex zero has the
canonical position `(0, 0)` and is
processed last, and a point on the closing edge is appended rather than
inserted at index zero. A boundary within 1 µm of either endpoint of its
current edge, an original vertex or a boundary inserted earlier, is snapped to
that point, so coincident boundaries share a vertex. A zone narrower than
1 µm collapses into a single vertex.
2. **Helper points.** A helper point is added 1 µm outside every boundary,
unless the edge there is shorter than 2 µm, which already bounds it. The
helpers keep the edges at a boundary short, so a seam placed along such an
edge stays close to the boundary. Coincident boundaries share their helpers.
3. **Enforced subdivision.** Zone types are resolved for the polygon's edges in
priority order. The edges of a zone are those from its left boundary up to,
but not including, its right boundary; a whole-perimeter zone types every
edge. Enforced edges longer than `SeamPlacer::enforcer_oversampling_distance`
(0.2 mm) are subdivided into steps of at most that length; shorter edges and
existing vertices are kept.
The regular seam placer then chooses the seam as for painted seams.
When candidates are built, painting assigns their types first.
`apply_weak_modifiers_to_perimeter()` then overwrites the types of the
candidates between the boundaries of each zone, both boundaries included,
lowest priority first; a whole-perimeter zone types every candidate. Blocked
and Enforced zones therefore take precedence over painting, and Neutral clears
painting inside its zone.
## Numeric tolerances
Coordinates are integers in scaled units: 1 nm by default, and 10 nm when a bed
larger than 2147 mm switches `SCALING_FACTOR`. Both Precise Seam tolerances are
deliberately defined in units rather than physical distances. Clipper truncates
cuts to whole units at any scale, so the on-edge tolerance must follow the unit; the
snapping radius scales with it to keep its margin over single-precision
candidate coordinates, which are coarser on large beds. Distances quoted in
this document in nanometers and
micrometers assume the default unit; on large printers they are ten times
larger. The enforced subdivision step is a physical distance and stays 0.2 mm.
| Value | Role |
| --- | --- |
| `MACHINE_PRECISION_SQUARED` (2.5 units², about 1.6 nm) | A point lies on an edge if it is this close. It absorbs Clipper's truncation of cuts to whole units (under √2 units from the edge) and never bridges a real gap: a one-unit uncovered gap stays a gap. |
| `TOLERANCE_LINEAR` (1000 units, 1 µm) | Insertion snaps points this close to an existing vertex, and helper points are placed this far from boundaries. The same radius bounds the rounding fallback, contacts and the sub-micron full-containment rule, so those decisions match what insertion would produce anyway. |
| `enforcer_oversampling_distance` (0.2 mm) | Maximum step of enforced subdivision. |
Raising the on-edge tolerance would not help with cuts beside a vertex: more
points past a vertex would be clamped to its parameter and collapse. Lowering it
would reject ordinary rounded cuts. The snapping radius is kept far above
clipping precision for robustness: seam candidates hold single-precision
coordinates, whose step is about 8 to 15 nm at typical object coordinates
(about 0.25 µm 3 m from the object's centre, on large beds only), and
weak boundaries and the strong point are located among the candidates by those
coordinates, so distinct points must stay clearly distinct. 1 µm is also far
below printing precision.
## Diagnostics and warnings
One `PreciseSeamWarnings` instance is shared by all objects and layers of a
`SeamPlacer::init()` call. After all objects are processed, `SeamPlacer::init()`
prepares at most one warning text, available through `precise_seam_warning()`.
G-code export issues it as one non-critical warning with the ID
`SlicingPreciseSeamWarning`. It is a single line, "Precise Seam: <causes>. Seam
placement may differ from expected.", because the export warnings dialog shows
only the first line of each warning. Repeated warning events replace the
notification instead of appending to it. Except for the "had no effect" cause,
the causes name the modifier types involved, as the menu names them, in menu
order and each type once, for example "(Seam Left, Seam Enforced)".
The causes are:
- **failed to process some intersections (types):** at least one fragment was
discarded by binding. Other segments remain usable.
- **multiple intersections with a perimeter, only one was used (types):**
a Seam Center, Left or Right modifier had more than one segment on a
perimeter (see [Strong modifiers](#strong-modifiers)).
- **a perimeter is fully inside a modifier, the modifier was not applied to it
(types):** a Seam Center, Left, Right or Blocked modifier was skipped for a
perimeter (see [Full containment](#full-containment)).
- **modifier "<name>" of "<object>" had no effect on the seam (it might not reach
the centerline of the printed perimeter):** a modifier was evaluated on at
least one perimeter and never gave a segment, full containment or a discarded
fragment. Only the first such modifier in print and volume order is named,
followed by "(N in total)" when there are several.
Only the effect is certain, so the cause is given as a hint. A modifier is
evaluated only when its turn comes: on a perimeter where a higher strong
modifier placed the seam, lower strong and all weak modifiers are not
evaluated. A modifier that was never evaluated is not reported, since nothing
is known about it. A point contact gives no segment and does not count as
reaching the perimeter.
The log records the following diagnostic markers:
- `[PreciseSeamIntersectionFailed]` for a discarded fragment, with object,
modifier, layer, height, fragment and failing pair, the failure reason and
point counts.
- `[PreciseSeamFragmentRecovered]` for a recovery, with `outcome=bound` or
`outcome=contact`, the same location fields and the original failure reason.
- `[PreciseSeamNoEffect]` for every modifier of the "had no effect" cause, with
the object and modifier names. Unlike the user warning, the log lists all of
them.
Failures and recoveries are counted separately. The first 10 of each per
`init()` call are logged in detail, in parallel processing order; if a limit is
exceeded, one summary marker reports the total and the number omitted.
## Known limitations
- **The modifier must reach the perimeter centerline.** Contacts are taken as
clipping returns them, without offsets or tangency rules, so boundaries that
only graze the centerline are the user's responsibility. Several near-touches
on inclined edges can leave several segments separated by gaps of a few units;
their zones then cover nearly the whole perimeter instead of being treated as
full containment.
- **Self-touching perimeters.** Extraction keeps distinct visits of one
coordinate apart through its source-edge bindings, but the consumers locate
inserted points by coordinates. A weak zone is typed and subdivided from the
first vertex with its boundary coordinate, while boundary helpers are added at
every such vertex. A strong point marks every candidate at its coordinate as
enforced, and the last one is restored after alignment. If a boundary or a
strong point falls exactly on a repeated coordinate, a zone may therefore start
from another visit, or the seam may start at another visit of the same point.
Carrying visit identity through insertion, refinement, candidates and
restoration would touch the whole pipeline, so it is not done for this rare
geometry. Overlapping source visits are likewise outside the binding contract.
## Integration with the application
### Other seam settings
- Precise Seam takes part only in outer and hole perimeter seam placement. In
spiral vase mode the seam placer is not used for perimeters, so the modifiers
have no effect.
- Scarf seams, the seam gap and wiping start from the chosen point exactly as
they would from an ordinary seam.
- Seam painting acts only from model parts, the volumes the seam gizmo shows and
edits, and from negative volumes. Painting retained on a volume after a change
from part to a Precise Seam, ordinary or support modifier is ignored. A type
change back to a model part reactivates any retained painting.
Negative volumes keep it on purpose: painting a
part and turning it into a negative volume is the only way to paint the wall
of the hole it cuts. That painting still affects the seam but is invisible in
the gizmo and cannot be edited there; this is known technical debt.
If painting them is ever made editable, G-code invalidation must track it too:
`model_custom_seam_data_changed()` checks model parts only.
### Model storage and 3MF compatibility
Projects must stay readable by earlier releases, and a Precise Seam volume must
not change a print there. Both 3MF writers therefore store it as an ordinary
parameter modifier: `modifier_part` in the Bambu-format part subtype, and
`ParameterModifier` together with the legacy `modifier` flag in the
Prusa-format volume metadata. The seam mode is written separately under
`precise_seam_type`, using the names from `ModelVolume::type_to_string()`
(`precise_seam_center` and so on).
On load, the mode applies after all other volume metadata, regardless of XML
key order, and only when the base type is a modifier. Missing or unknown modes
leave an ordinary modifier. Seam metadata on any other base type is ignored.
Files that stored the seam mode directly as the volume type still load.
On load, the mode is applied after all other volume metadata, regardless of XML
key order, and only when the base type is a modifier. A missing or unknown mode
leaves an ordinary modifier, and seam metadata on any other base type is
ignored. Files that stored the seam mode directly as the volume type still load.
A project saved again by an earlier release loses the seam mode for good: the
volumes stay ordinary modifiers without settings.
A Precise Seam volume keeps any per-volume settings it had as a part or
modifier, but they are inactive and the object list shows no settings item for
it. The writers prefix these keys with `precise_seam_config:`, so an earlier
reader drops them as unknown options. The volume therefore loads there as a
modifier without settings and has no effect on the print. The current reader
restores the keys only when the volume ends up as a Precise Seam type, so the
settings return when the user changes the type back. Configuration values are
XML-escaped in both writers, for every volume type.
reader drops them as unknown options and loads a modifier without settings,
which has no effect on the print. The current reader restores the keys only when
the volume ends up as a Precise Seam type, so the settings return when the user
changes the type back.
## Print invalidation
### Print invalidation
`Print::apply()` compares the Precise Seam volumes of each object by type, ID
and transformation. Adding, removing, moving, reordering or retyping one
cancels background processing and invalidates only `psGCodeExport`; the sliced
layers are kept. `model_volume_list_update_supports_and_seams()` then brings
the support and Precise Seam volumes of the print's model copy in line with the
new model in one pass. A volume may switch between the two families, since
neither affects slicing. A conversion to or from a part or ordinary modifier
changes the solid and modifier volume lists and reslices as before.
and transformation. Adding, removing, moving, reordering or retyping one cancels
background processing and invalidates only `psGCodeExport`; the sliced layers
are kept. `model_volume_list_update_supports_and_seams()` then brings the
support and Precise Seam volumes of the print's model copy in line with the new
model in one pass. A volume may switch between these two families, since neither
affects object slicing; such a switch also changes the support volumes, so the
support step is invalidated as well.
## Modifier slices
A conversion to or from a part or an ordinary modifier changes the solid and
modifier volume lists and reslices the object as before. The volume keeps its
ID across the type change, so the region cache treats a former support or
Precise Seam volume that became a part or modifier as new, since it was never
cached.
`SeamPlacer::init()` collects the Precise Seam volumes of each object once:
strong ones in priority order and weak ones reversed. It slices each volume
separately with `PrintObject::slice_single_volume()`, which shares
`slice_modifier_volumes()` with support blockers and enforcers but does not
merge volumes, so each keeps its own priority. The result is cached per volume
and indexed by object layer; `Layer::id()` includes raft layers, which are
subtracted. Seam candidates are then gathered in parallel over the layers and
read the cache without locking.
Removing the last helper of a single-part object reslices it, as removing any
last modifier would.
Objects without Precise Seam volumes follow the unchanged seam placement path.
For objects that have them, perimeter extraction also removes consecutive
duplicate points and the repeated closing point of each extrusion loop.
Zero-length edges at path junctions would otherwise prevent point insertion
there. Distinct visits to one point of a self-touching contour are kept.
## Finding the wall segment
The seam placer works on the external perimeter loops of each layer, both
outer contours and holes, each made counter-clockwise. For every modifier
polygon on the layer that overlaps the perimeter's bounding box, the region
enclosed by the perimeter is clipped against the modifier polygon. The boundary
of each intersection polygon alternates between runs that follow the perimeter
and runs that follow the modifier outline. The wall segment is the longest
continuous run of intersection vertices that lie on the perimeter, measured in
vertices.
The fast path first finds an intersection vertex that exactly matches a
perimeter vertex. It then walks forward and backward, expecting the adjacent
perimeter vertex and falling back to projection when Clipper has merged or
split collinear edges. A vertex counts as on the perimeter when its projection
is within about 1.6 nm, which covers Clipper's rounding. If no vertex matches
exactly, or every vertex lies on the perimeter, the general path projects all
vertices. When every vertex is on the perimeter, the edge midpoints are checked
instead: a modifier chord can join two perimeter vertices directly, and the
chords split the vertex ring into runs. If no edge leaves the perimeter, the
perimeter lies entirely inside the modifier.
`Polygon::point_projection()` optionally reports the edge that holds the
projection, and every point of the segment keeps the index of its perimeter
edge. New points are inserted on that edge. A point within 1 µm of an existing
vertex snaps to that vertex instead.
## Strong modifiers
For a strong modifier, the target is the first point, the last point or the
arc-length midpoint of the segment. The midpoint is projected back onto the
original perimeter, because Clipper may have merged several perimeter edges
into one segment edge. The target is inserted into the perimeter, and a helper
point is inserted 1 µm before and after it. Strong modifiers are tried in
priority order, the first valid intersection decides the seam, and weak
modifiers are not processed for that perimeter.
When candidates are built, the inserted point is the only enforced candidate
and becomes the central enforcer; every other candidate is blocked. The seam
position modes then pick that point: Aligned and Aligned Back prefer the central
enforcer, while Back, Random and Nearest rank enforced candidates above blocked
ones. Alignment and random placement can still move the final position along an
edge. After alignment, `restore_precise_seam_positions()` writes the exact point
and its index back into every perimeter that has a strong seam. Inner walls take
their seam from the external seam as usual, including staggering.
## Weak modifiers
Weak modifiers produce one segment per intersection polygon, so one modifier can
mark several zones on one perimeter. All segment boundaries are inserted into
the perimeter in order of decreasing arc length. Each insertion then leaves the
indices of the pending, shorter ones unchanged; a point on the closing edge is
appended rather than inserted at index zero. A helper point is added 1 µm
outside each boundary. Random placement picks a position along the edge that
follows a candidate. These helpers keep that edge 1 µm long at each boundary, so
a zone cannot extend or intrude further than that. Boundaries that coincide
share their helper points.
The zone types are then resolved in priority order, and the edges of enforced
zones are subdivided into steps of at most
`SeamPlacer::enforcer_oversampling_distance` (0.2 mm). The middle candidate of
the longest enforced patch is therefore close to the geometric middle of the
zone. That patch is measured in candidates, across the closing edge, regardless
of where the contour starts; the same rule applies to painted seams.
Candidates first receive their type from seam painting. The weak zones then
overwrite it, lowest priority first. Blocked and Enforced zones therefore take
precedence over painting, and Neutral clears painting inside its zone.
## Unsupported geometry and warnings
Some modifier shapes cannot be resolved to one seam or one zone per crossing.
They are detected cheaply and reported rather than guessed:
- A strong modifier that crosses a perimeter in more than one place uses only
its first valid segment. The other crossings are ignored.
- A modifier that crosses the whole region enclosed by the perimeter is
detected when the modifier outline minus that region leaves more than one
piece, none of them a hole. Its intersection holds two wall runs, and only
one of them is used.
- A modifier whose slice has a hole on a layer, found as a clockwise polygon in
the flattened slice, is skipped on that layer. The flattened slice no longer
records which hole belongs to which contour.
- A perimeter that lies entirely inside a modifier is ignored by that modifier.
The conditions are atomic flags shared by all layers and objects. After all
objects are processed, `SeamPlacer::init()` issues at most one non-critical
warning with the ID `SlicingPreciseSeamWarning`. The warning is a single line
that lists every cause found, because the export warnings dialog shows only the
first line of each warning. Repeated warning events replace this notification
instead of appending text to it.
## User interface
### User interface
- *Add Precise Seam* in the object menu creates a Center modifier from a
primitive or a loaded mesh. Text and SVG volumes cannot become Precise Seam
modifiers: the menu does not offer them, and `ObjectList::set_volume_type()`
modifiers: the menu does not offer it, and `ObjectList::set_volume_type()`
refuses the change.
- *Change Type* has a single *Precise Seam* entry. It converts other volumes to
Center and keeps the mode of volumes that are already Precise Seam. The
*Precise Seam Type* submenu appears only when every selected item is a
Precise Seam volume, including settings rows that resolve to one. It sets the
chosen mode on all selected volumes.
*Precise Seam Type* submenu appears only when every selected item is a Precise
Seam volume, including settings rows that resolve to one, and sets the chosen
mode on all of them.
- Each mode has its own icon in the object list and its own color in the 3D
view, at 60% opacity: warm oranges for the strong modes, and green, red and
gray for Enforced, Blocked and Neutral.
- Object list drops map visible rows to volume indices while skipping hidden
cut connectors, and they refresh the row-to-volume map of the object.
- Precise Seam volumes have no filament, block pasting into SLA, and are exposed
to Python plugins as `ModelVolumeType` values plus the `is_precise_seam*()`
methods.
view, at 60% opacity: warm orange, gold and dark orange for Center, Left and
Right; green, red and gray for Enforced, Blocked and Neutral. The three strong
colors are close shades of one orange because all three mark strong
modifiers; the object list icons tell the modes apart.
- Precise Seam volumes have no filament and cannot be pasted into SLA objects.
Python plugins see them as `ModelVolumeType` values and through the
`is_precise_seam*()` methods.
## Implementation and verification
- [PreciseSeam.cpp](../../src/libslic3r/GCode/PreciseSeam.cpp) implements segment
detection, point insertion, weak-zone resolution and position restoration.
[SeamPlacer.cpp](../../src/libslic3r/GCode/SeamPlacer.cpp) integrates it into
candidate gathering and issues the warning.
- [PreciseSeam.cpp](../../src/libslic3r/GCode/PreciseSeam.cpp) implements the
modifier cache, perimeter preparation, segment extraction and binding, strong
selection and insertion, weak-zone preparation and application, and position
restoration. [PreciseSeam.hpp](../../src/libslic3r/GCode/PreciseSeam.hpp)
declares the contracts; [PreciseSeamInternal.hpp](../../src/libslic3r/GCode/PreciseSeamInternal.hpp)
exposes the binding internals to tests.
- [SeamPlacer.cpp](../../src/libslic3r/GCode/SeamPlacer.cpp) fills the cache,
normalizes perimeters, calls both consumers while gathering candidates,
restores strong positions after alignment and prepares the warning text, which
[GCode.cpp](../../src/libslic3r/GCode.cpp) issues during G-code export.
- [Model.hpp](../../src/libslic3r/Model.hpp) defines the types and their order,
[PrintApply.cpp](../../src/libslic3r/PrintApply.cpp) handles invalidation, and
[PrintObjectSlice.cpp](../../src/libslic3r/PrintObjectSlice.cpp) slices the
modifiers. [bbs_3mf.cpp](../../src/libslic3r/Format/bbs_3mf.cpp) and
[3mf.cpp](../../src/libslic3r/Format/3mf.cpp) store them.
[PrintObjectSlice.cpp](../../src/libslic3r/PrintObjectSlice.cpp) slices single
volumes into structured regions. [bbs_3mf.cpp](../../src/libslic3r/Format/bbs_3mf.cpp)
and [3mf.cpp](../../src/libslic3r/Format/3mf.cpp) store them.
- [GUI_Factories.cpp](../../src/slic3r/GUI/GUI_Factories.cpp) and
[GUI_ObjectList.cpp](../../src/slic3r/GUI/GUI_ObjectList.cpp) provide the menus,
type changes and ordering.
type changes and ordering; [3DScene.cpp](../../src/slic3r/GUI/3DScene.cpp)
defines the colors.
- [Segment extraction tests](../../tests/libslic3r/test_precise_seam.cpp) cover
clipping and binding: holes and components, contour origin and reversal,
repeated coordinates, collinear vertices and rounding, rollback and the
diagnostic limits, the rounding fallback on synthetic and real Clipper
fragments, contacts, and full containment including touches and sub-micron
gaps on inclined edges and around vertices.
- [Precise Seam tests](../../tests/fff_print/test_precise_seam.cpp) cover the
strong positions, including a midpoint on an existing vertex or the closing
edge. They also cover shared and coincident weak boundaries, every warning,
and the priority order.
consumers: strong targets in every mode, including a midpoint on an existing
vertex or the closing edge, longest-arc selection and tie order in bed axes,
priorities, weak boundaries that coincide or share an edge, enforced
subdivision, whole-perimeter weak zones with painting and priorities, weak
zones over painting's oversampled candidates, the warning type masks, usage
tracking for the "had no effect" warning, volume sorting of strong and weak
groups, restoration of strong points after alignment, raft layer indexing and
structured slices. End-to-end tests slice a real object with Precise Seam
volumes and check the outer wall starts in the exported G-code: every strong
mode under several seam positions and with a raft, Enforced and Blocked zones,
a modifier with a hole, and the user warning.
- [Seam placer tests](../../tests/fff_print/test_seam_placer.cpp) cover
enforced-patch selection independent of the contour start, fully painted
contours, duplicate removal, and `Print::apply()` synchronization through
type changes and restored model snapshots.
contours, duplicate removal, and `Print::apply()` synchronization through type
changes and restored model snapshots. The duplicate-removal test also checks
the "had no effect" warning text prepared by `init()` for a helper that never
reaches the loop. Further tests check that adding, moving, retyping or
removing a Precise Seam volume invalidates only G-code export, and that seam
painting acts only from model parts and negative volumes, including after a
type change back to part.
- [3MF tests](../../tests/libslic3r/test_precise_seam_3mf.cpp) cover the round
trip of every mode and of inactive settings, attribute escaping, and which
metadata combinations restore a seam mode.
trip of every mode and of inactive settings, attribute escaping, and the
metadata combinations that restore a seam mode.
[Plugin tests](../../tests/slic3rutils/test_precise_seam_plugin.cpp) cover the
Python bindings.
+54
View File
@@ -0,0 +1,54 @@
# Prusa CORE One INDX profiles
The Prusa bundle provides separate four-tool and eight-tool CORE One INDX models
with 0.4 mm high-flow nozzles and a 248 x 205 x 270 mm printable volume. These are
independent-tool printers, not single-extruder MMU3 machines. Both inherit
`fdm_machine_common_coreone_indx`, which inherits the ordinary CORE One HF
printer; the concrete printer presets supply their tool-count-dependent arrays. The bed and wizard resources come from Prusa.
The source configuration is PrusaResearch 2.5.10 from
[Prusa's profile repository](https://github.com/prusa3d/PrusaSlicer-settings-prusa-fff/blob/65c5c8f1e1c3836f306119c49d717759cbc368db/PrusaResearch/2.5.10.ini).
Its printer, process and filament settings are translated to Orca option names.
The supplied process presets cover 0.10, 0.15, 0.20 and 0.25 mm layers. Their
shared `fdm_process_coreone_indx` base inherits the ordinary CORE One HF SPEED
process, with explicit INDX differences and layer-specific child settings.
Material presets are shared with the ordinary CORE One family.
## Tool changes and extrusion state
The start script initializes a persistent `tool_init` vector, counts the tools
used by the job, homes and probes using a loaded tool, calibrates the used tools,
and primes the initial tool at the cleaning station. The change script preserves
Prusa's `G27`, `P0`, `T`, `G12`, `G750` and `M906` sequences. It updates
`e_retracted` so Orca's subsequent unretraction agrees with the script's extrusion.
Per-tool temperature commands are guarded by `is_extruder_used`.
The off-bed purge station is the default. With a prime tower enabled, a newly
used tool still receives its initial station purge, while an initialized tool
uses the source's wipe-tower preparation path. `tool_init` persists across these
changes; treating every tool selection as first use would change the purge and
deretraction sequence.
Purge volume uses the filament's minimal purge setting. Orca's optional flush
volumetric speed is divided by filament cross-sectional area before it is used
as a linear extrusion-speed override. Prusa's separate `filament_flush_volume`
override is not available in these profiles. The source's `EXCLUDE_E_START` and
`EXCLUDE_E_END` internal markers become comments rather than printer commands.
Pressure-advance restoration and automatic pressure-advance emission use the
selected filament preset's settings. These profiles do not impose machine-owned
filament overrides. Dock-fan control retains the source's material and layer
conditions; shutdown parks the tool and turns off the used heaters and dock fan.
## Configuration boundaries
The scripts use Orca's temperature, retraction, fan and speed option names. The
nozzle-check high-flow flag is fixed because these presets describe HF nozzles;
the abrasive-material flag is derived from the filament's required nozzle HRC.
An unset idle temperature uses Orca's zero sentinel. ABS's source XY shrinkage
compensation is represented using Orca's retained-size percentage.
Prusa's consistent-surface cooling strategy and filament-specific infill crossing
speed limits have no direct Orca profile equivalent. These presets use Orca's
native layer-time cooling and material volumetric limits. They do not add slicer
features or change existing Prusa printer profiles.
+27 -2
View File
@@ -20108,11 +20108,11 @@ msgid "Drying-Dehumidifying"
msgstr ""
#, possible-c-format, possible-boost-format
msgid "%s maximum drying temperature is %d°C."
msgid "%s maximum drying temperature is %d℃."
msgstr ""
#, possible-c-format, possible-boost-format
msgid "%s minimum drying temperature is %d°C."
msgid "%s minimum drying temperature is %d℃."
msgstr ""
msgid "This filament may not be completely dried."
@@ -22855,3 +22855,28 @@ msgstr ""
#: resources/data/hints.ini: [hint:Avoid warping]
msgid "Avoid warping\nDid you know that when printing materials that are prone to warping such as ABS, appropriately increasing the heatbed temperature can reduce the probability of warping?"
msgstr ""
#: src/libslic3r/GCode/SeamPlacer.cpp
#, possible-boost-format
msgid "failed to process some intersections (%1%)"
msgstr ""
#: src/libslic3r/GCode/SeamPlacer.cpp
#, possible-boost-format
msgid "multiple intersections with a perimeter, only one was used (%1%)"
msgstr ""
#: src/libslic3r/GCode/SeamPlacer.cpp
#, possible-boost-format
msgid "a perimeter is fully inside a modifier, the modifier was not applied to it (%1%)"
msgstr ""
#: src/libslic3r/GCode/SeamPlacer.cpp
#, possible-boost-format
msgid "modifier \"%1%\" of \"%2%\" had no effect on the seam (it might not reach the centerline of the printed perimeter)"
msgstr ""
#: src/libslic3r/GCode/SeamPlacer.cpp
#, possible-boost-format
msgid "modifier \"%1%\" of \"%2%\" (%3% in total) had no effect on the seam (it might not reach the centerline of the printed perimeter)"
msgstr ""
+11 -17
View File
@@ -4366,7 +4366,7 @@ msgid "Max volumetric speed"
msgstr "Velocitat volumètrica màxima"
msgid "℃"
msgstr "°C"
msgstr "℃"
msgid "Bed temperature"
msgstr "Temperatura del llit"
@@ -5249,7 +5249,7 @@ msgid "Low temperature filament(PLA/PETG/TPU) is loaded in the extruder. In orde
msgstr "Hi ha filament de baixa temperatura (PLA/PETG/TPU) carregat a l'extrusor. Per evitar l'obstrucció de l'extrusor, no es permet establir la temperatura de la cambra."
msgid "When you set the chamber temperature below 40℃, the chamber temperature control will not be activated, and the target chamber temperature will automatically be set to 0℃."
msgstr "Quan establiu la temperatura de la cambra per sota dels 40 °C, el control de temperatura de la cambra no s'activarà. I la temperatura de la cambra objectiu s'establirà automàticament a 0 °C."
msgstr "Quan establiu la temperatura de la cambra per sota dels 40 ℃, el control de temperatura de la cambra no s'activarà. I la temperatura de la cambra objectiu s'establirà automàticament a 0 ℃."
msgid "Failed to start print job"
msgstr "No s'ha pogut començar a imprimir"
@@ -7337,7 +7337,7 @@ msgid "Layer: %d/%d"
msgstr "Capa: %d/%d"
msgid "Please heat the nozzle to above 170℃ before loading or unloading filament."
msgstr "Escalfeu el broquet per sobre dels 170 °C abans de carregar o descarregar el filament."
msgstr "Escalfeu el broquet per sobre dels 170 ℃ abans de carregar o descarregar el filament."
msgid "Chamber temperature cannot be changed in cooling mode while printing."
msgstr "La temperatura de la cambra no es pot canviar en mode de refredament durant la impressió."
@@ -19655,7 +19655,7 @@ msgid "Printing Parameters"
msgstr "Paràmetres d'impressió"
msgid "- ℃"
msgstr "- °C"
msgstr "- ℃"
msgid "Synchronize nozzle and AMS information"
msgstr "Sincronitza la informació del broquet i l'AMS"
@@ -22277,13 +22277,13 @@ msgstr "Assecatge - Deshumidificació"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "La temperatura màxima d'assecatge de %s és %d°C."
msgid "%s maximum drying temperature is %d℃."
msgstr "La temperatura màxima d'assecatge de %s és %d℃."
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "La temperatura mínima d'assecatge de %s és %d°C."
msgid "%s minimum drying temperature is %d℃."
msgstr "La temperatura mínima d'assecatge de %s és %d℃."
# AI Translated
msgid "This filament may not be completely dried."
@@ -25498,9 +25498,6 @@ msgstr ""
#~ msgid "Invalid spacing supplied to Flow::with_spacing(), check your layer height and extrusion width."
#~ msgstr "Espaiat no vàlid subministrat a Flow::with_spacing( ), comproveu l'alçada de la capa i l'amplada d'extrusió"
#~ msgid "°C"
#~ msgstr "°C"
#~ msgid "Continue to sync filaments"
#~ msgstr "Continua sincronitzant filaments"
@@ -26168,7 +26165,7 @@ msgstr ""
#~ msgstr "L'AMS estimarà la capacitat restant del filament de Bambu després d'actualitzar la informació del filament. Durant la impressió, la capacitat restant s'actualitzarà automàticament."
#~ msgid "The recommended minimum temperature is less than 190℃ or the recommended maximum temperature is greater than 300℃.\n"
#~ msgstr "La temperatura mínima recomanada és inferior a 190 °C o la màxima recomanada és superior a 300 °C.\n"
#~ msgstr "La temperatura mínima recomanada és inferior a 190 ℃ o la màxima recomanada és superior a 300 ℃.\n"
#~ msgid "Spiral mode only works when wall loops is 1, support is disabled, top shell layers is 0, sparse infill density is 0 and timelapse type is traditional."
#~ msgstr "El mode espiral només funciona quan els bucles de perímetre és 1, el suport està desactivat, les capes superiors de l'intèrpret d'ordres són 0, la densitat de farciment escassa és 0 i el tipus timelapse és tradicional."
@@ -26240,10 +26237,10 @@ msgstr ""
#~ msgstr "Comú"
#~ msgid "The current chamber temperature or the target chamber temperature exceeds 45℃. In order to avoid extruder clogging, low temperature filament (PLA/PETG/TPU) is not allowed to be loaded."
#~ msgstr "La temperatura actual de la cambra o la temperatura de la cambra objectiu supera els 45 °C. Per evitar l'obstrucció de l'extrusora, no es permet carregar filaments de baixa temperatura ( PLA / PETG / TPU )."
#~ msgstr "La temperatura actual de la cambra o la temperatura de la cambra objectiu supera els 45 ℃. Per evitar l'obstrucció de l'extrusora, no es permet carregar filaments de baixa temperatura ( PLA / PETG / TPU )."
#~ msgid "Low temperature filament (PLA/PETG/TPU) is loaded in the extruder. In order to avoid extruder clogging, it is not allowed to set the chamber temperature above 45℃."
#~ msgstr "El filament de baixa temperatura ( PLA/PETG/TPU ) está carregat a l'extrusor. Per evitar l'obstrucció de l'extrusora, no es permet establir la temperatura de la cambra per sobre dels 45 °C."
#~ msgstr "El filament de baixa temperatura ( PLA/PETG/TPU ) está carregat a l'extrusor. Per evitar l'obstrucció de l'extrusora, no es permet establir la temperatura de la cambra per sobre dels 45 ℃."
#~ msgid "Bambu PET-CF/PA6-CF is not supported by AMS."
#~ msgstr "Bambu PET-CF/PA6-CF no és compatible amb AMS."
@@ -27212,9 +27209,6 @@ msgstr ""
#~ "Heu canviat alguns paràmetres del perfil \"%1%\".\n"
#~ "Voleu mantenir aquests paràmetres modificats després de canviar el perfil?"
#~ msgid " ℃"
#~ msgstr " °C"
#~ msgid ""
#~ "The speed setting exceeds the printer's maximum speed (machine_max_speed_x/machine_max_speed_y).\n"
#~ "Orca will automatically cap the print speed to ensure it doesn't surpass the printer's capabilities.\n"
+4 -7
View File
@@ -22252,13 +22252,13 @@ msgstr "Sušení – odvlhčování"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "Maximální teplota sušení pro %s je %d°C."
msgid "%s maximum drying temperature is %d℃."
msgstr "Maximální teplota sušení pro %s je %d℃."
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "Minimální teplota sušení pro %s je %d°C."
msgid "%s minimum drying temperature is %d℃."
msgstr "Minimální teplota sušení pro %s je %d℃."
# AI Translated
msgid "This filament may not be completely dried."
@@ -25469,9 +25469,6 @@ msgstr ""
#~ msgid "Invalid spacing supplied to Flow::with_spacing(), check your layer height and extrusion width."
#~ msgstr "Byly zadány neplatné rozestupy pro Flow::with_spacing(), zkontrolujte svou výšku vrstvy a šířku extruze"
#~ msgid "°C"
#~ msgstr "°C"
#~ msgid "Align infill direction to model"
#~ msgstr "Zarovnat směr výplně podle modelu"
+6 -9
View File
@@ -4710,7 +4710,7 @@ msgstr ""
#, c-format, boost-format
msgid "The recommended nozzle temperature for this filament type is [%d, %d] degrees Celsius."
msgstr "Die empfohlene Düsentemperatur für diesen Filamenttyp beträgt [%d, %d] °C."
msgstr "Die empfohlene Düsentemperatur für diesen Filamenttyp beträgt [%d, %d] ℃."
# AI Translated
msgid "Adaptive Pressure Advance model validation failed:\n"
@@ -17615,7 +17615,7 @@ msgid ""
"\n"
"Unlike the \"Target\" chamber temperature, this option does not emit any M141/M191 commands; it only exposes the value to your custom G-code. It should not exceed the \"Target\" chamber temperature."
msgstr ""
"Dies ist die Druckraumtemperatur, bei der der Druckvorgang beginnen soll, während der Druckraum weiterhin auf die \"Ziel\"-Druckraumtemperatur erhitzt wird. Zum Beispiel: Setzen Sie das Ziel auf 60 und das Minimum auf 50, um mit dem Drucken zu beginnen, sobald der Druckraum 50°C erreicht hat, ohne auf die vollen 60°C zu warten.\n"
"Dies ist die Druckraumtemperatur, bei der der Druckvorgang beginnen soll, während der Druckraum weiterhin auf die \"Ziel\"-Druckraumtemperatur erhitzt wird. Zum Beispiel: Setzen Sie das Ziel auf 60 und das Minimum auf 50, um mit dem Drucken zu beginnen, sobald der Druckraum 50℃ erreicht hat, ohne auf die vollen 60℃ zu warten.\n"
"\n"
"Es wird eine G-Code-Variable namens chamber_minimal_temperature gesetzt, die an Ihr Druckstart-Makro oder ein Wärmespeicher-Makro übergeben werden kann, wie z.B.: PRINT_START (andere Variablen) CHAMBER_MIN_TEMP=[chamber_minimal_temperature].\n"
"\n"
@@ -21685,13 +21685,13 @@ msgstr "Trocknung – Entfeuchten"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "Die maximale Trocknungstemperatur von %s beträgt %d°C."
msgid "%s maximum drying temperature is %d℃."
msgstr "Die maximale Trocknungstemperatur von %s beträgt %d℃."
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "Die minimale Trocknungstemperatur von %s beträgt %d°C."
msgid "%s minimum drying temperature is %d℃."
msgstr "Die minimale Trocknungstemperatur von %s beträgt %d℃."
# AI Translated
msgid "This filament may not be completely dried."
@@ -24903,9 +24903,6 @@ msgstr ""
#~ msgid "Invalid spacing supplied to Flow::with_spacing(), check your layer height and extrusion width."
#~ msgstr "Ungültiger Abstand für Flow::with_spacing() übergeben, überprüfen Sie Ihre Schichthöhe und Extrusionsbreite"
#~ msgid "°C"
#~ msgstr "°C"
#~ msgid "Renders cast shadows on the plate in realistic view."
#~ msgstr "Zeigt geworfene Schatten auf der Platte in der realistischen Ansicht an."
+2 -2
View File
@@ -20104,11 +20104,11 @@ msgid "Drying-Dehumidifying"
msgstr ""
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgid "%s maximum drying temperature is %d℃."
msgstr ""
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgid "%s minimum drying temperature is %d℃."
msgstr ""
msgid "This filament may not be completely dried."
+5 -8
View File
@@ -17244,7 +17244,7 @@ msgid ""
"\n"
"Unlike the \"Target\" chamber temperature, this option does not emit any M141/M191 commands; it only exposes the value to your custom G-code. It should not exceed the \"Target\" chamber temperature."
msgstr ""
"Esta es la temperatura de la recámara a la que debe comenzar la impresión, mientras la recámara continúa calentándose hacia la temperatura objetivo (\"Objetivo\") de la recámara. Por ejemplo, ajuste «Objetivo» a 60 y «Mínima» a 50 para empezar a imprimir cuando la recámara alcance los 50 °C, sin esperar a los 60 °C completos.\n"
"Esta es la temperatura de la recámara a la que debe comenzar la impresión, mientras la recámara continúa calentándose hacia la temperatura objetivo (\"Objetivo\") de la recámara. Por ejemplo, ajuste «Objetivo» a 60 y «Mínima» a 50 para empezar a imprimir cuando la recámara alcance los 50 ℃, sin esperar a los 60 ℃ completos.\n"
"\n"
"Crea una variable de G-code llamada chamber_minimal_temperature, que puede pasarse a su macro de inicio de impresión o a una macro de precalentamiento, de esta forma: PRINT_START (otras variables) CHAMBER_MIN_TEMP=[chamber_minimal_temperature].\n"
"\n"
@@ -21273,13 +21273,13 @@ msgstr "Secado - Deshumidificación"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "La temperatura máxima de secado de %s es %d°C."
msgid "%s maximum drying temperature is %d℃."
msgstr "La temperatura máxima de secado de %s es %d℃."
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "La temperatura mínima de secado de %s es %d°C."
msgid "%s minimum drying temperature is %d℃."
msgstr "La temperatura mínima de secado de %s es %d℃."
msgid "This filament may not be completely dried."
msgstr "Es posible que este filamento no esté completamente seco."
@@ -24444,9 +24444,6 @@ msgstr ""
#~ msgid "Invalid spacing supplied to Flow::with_spacing(), check your layer height and extrusion width."
#~ msgstr "Espaciado no válido suministrado a Flow::with_spacing(), comprueba la altura de su capa y el ancho de extrusión."
#~ msgid "°C"
#~ msgstr "°C"
#~ msgid "Anisotropic surfaces"
#~ msgstr "Superficies anisótropas"
+5 -14
View File
@@ -5568,7 +5568,7 @@ msgid "Fan speed (%)"
msgstr "Haizagailuaren abiadura (%)"
msgid "Temperature (℃)"
msgstr "Tenperatura (°C)"
msgstr "Tenperatura (℃)"
msgid "Volumetric flow rate (mm³/s)"
msgstr "Fluxu-tasa bolumetrikoa (mm³/s)"
@@ -21454,13 +21454,13 @@ msgstr "Lehortzen-Hezetasuna kentzen"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "%s: gehieneko lehortze-tenperatura %d°C da."
msgid "%s maximum drying temperature is %d℃."
msgstr "%s: gehieneko lehortze-tenperatura %d℃ da."
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "%s: gutxieneko lehortze-tenperatura %d°C da."
msgid "%s minimum drying temperature is %d℃."
msgstr "%s: gutxieneko lehortze-tenperatura %d℃ da."
msgid "This filament may not be completely dried."
msgstr "Baliteke filamentu hau erabat lehortuta ez egotea."
@@ -25121,9 +25121,6 @@ msgstr ""
#~ msgid "The selected file contains several disjoint areas. This is not supported."
#~ msgstr "Hautatutako fitxategiak hainbat eremu disjuntu ditu. Hori ez da bateragarria."
#~ msgid "The recommended minimum temperature is less than 190°C or the recommended maximum temperature is greater than 300°C.\n"
#~ msgstr "Gomendatutako gutxieneko tenperatura 190 ºC baino txikiagoa da edo gomendatutako gehieneko tenperatura 300 ºC baino handiagoa.\n"
#~ msgid ""
#~ "Nozzle may be blocked when the temperature is out of recommended range.\n"
#~ "Please make sure whether to use the temperature to print.\n"
@@ -25301,9 +25298,6 @@ msgstr ""
#~ msgid "Fan Speed (%)"
#~ msgstr "Haizagailuaren abiadura (%)"
#~ msgid "Temperature (°C)"
#~ msgstr "Tenperatura (°C)"
#~ msgid "Filament Changes"
#~ msgstr "Filamentu aldaketak"
@@ -25526,9 +25520,6 @@ msgstr ""
#~ msgid "In Cloud Slicing Queue, there are %s tasks ahead."
#~ msgstr "Hodeiko xerratze-ilaran, %s zeregin daude aurretik."
#~ msgid "Please heat the nozzle to above 170°C before loading or unloading filament."
#~ msgstr "Berotu pita 170 °C-tik gora filamentua kargatu edo deskargatu aurretik."
#~ msgid "Still unload"
#~ msgstr "Oraindik deskargatu gabe"
File diff suppressed because it is too large Load Diff
+4 -7
View File
@@ -22002,13 +22002,13 @@ msgstr "Szárítás – páramentesítés"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "%s maximális szárítási hőmérséklete %d°C."
msgid "%s maximum drying temperature is %d℃."
msgstr "%s maximális szárítási hőmérséklete %d℃."
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "%s minimális szárítási hőmérséklete %d°C."
msgid "%s minimum drying temperature is %d℃."
msgstr "%s minimális szárítási hőmérséklete %d℃."
# AI Translated
msgid "This filament may not be completely dried."
@@ -25218,9 +25218,6 @@ msgstr ""
#~ msgid "Invalid spacing supplied to Flow::with_spacing(), check your layer height and extrusion width."
#~ msgstr "Érvénytelen térköz lett megadva a Flow::with_spacing() függvényhez, ellenőrizd a rétegmagasságot és az extrudálási szélességet"
#~ msgid "°C"
#~ msgstr "°C"
#~ msgid "Continue to sync filaments"
#~ msgstr "Filamentek szinkronizálásának folytatása"
+4 -7
View File
@@ -22025,13 +22025,13 @@ msgstr "Essiccazione - Deumidificazione"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "La temperatura massima di essiccazione di %s è %d°C."
msgid "%s maximum drying temperature is %d℃."
msgstr "La temperatura massima di essiccazione di %s è %d℃."
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "La temperatura minima di essiccazione di %s è %d°C."
msgid "%s minimum drying temperature is %d℃."
msgstr "La temperatura minima di essiccazione di %s è %d℃."
# AI Translated
msgid "This filament may not be completely dried."
@@ -25242,9 +25242,6 @@ msgstr ""
#~ msgid "Invalid spacing supplied to Flow::with_spacing(), check your layer height and extrusion width."
#~ msgstr "Spaziatura non valida fornita a Flow::with_spacing(), controlla l'altezza dello strato e la larghezza di estrusione"
#~ msgid "°C"
#~ msgstr "°C"
#~ msgid "Continue to sync filaments"
#~ msgstr "Continua la sincronizzazione dei filamenti"
+4 -7
View File
@@ -22566,13 +22566,13 @@ msgstr "乾燥 - 除湿"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "%s の最高乾燥温度は %d°C です。"
msgid "%s maximum drying temperature is %d℃."
msgstr "%s の最高乾燥温度は %d℃ です。"
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "%s の最低乾燥温度は %d°C です。"
msgid "%s minimum drying temperature is %d℃."
msgstr "%s の最低乾燥温度は %d℃ です。"
# AI Translated
msgid "This filament may not be completely dried."
@@ -25801,9 +25801,6 @@ msgstr ""
#~ msgid "Invalid spacing supplied to Flow::with_spacing(), check your layer height and extrusion width."
#~ msgstr "Flow::with_spacing()に無効な間隔が指定されました。レイヤー高さと押出幅を確認してください"
#~ msgid "°C"
#~ msgstr "°C"
#~ msgid "Continue to sync filaments"
#~ msgstr "フィラメントの同期を続行"
+6 -9
View File
@@ -4781,7 +4781,7 @@ msgstr ""
#, c-format, boost-format
msgid "The recommended nozzle temperature for this filament type is [%d, %d] degrees Celsius."
msgstr "이 필라멘트 유형의 권장 노즐 온도는 [%d, %d]°C입니다"
msgstr "이 필라멘트 유형의 권장 노즐 온도는 [%d, %d]℃입니다"
# AI Translated
msgid "Adaptive Pressure Advance model validation failed:\n"
@@ -22442,13 +22442,13 @@ msgstr "건조-제습"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "%s의 최대 건조 온도는 %d°C입니다."
msgid "%s maximum drying temperature is %d℃."
msgstr "%s의 최대 건조 온도는 %d℃입니다."
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "%s의 최소 건조 온도는 %d°C입니다."
msgid "%s minimum drying temperature is %d℃."
msgstr "%s의 최소 건조 온도는 %d℃입니다."
# AI Translated
msgid "This filament may not be completely dried."
@@ -25652,9 +25652,6 @@ msgstr ""
#~ msgid "Invalid spacing supplied to Flow::with_spacing(), check your layer height and extrusion width."
#~ msgstr "Flow::with_spacing()에 잘못된 간격이 제공되었습니다. 레이어 높이와 돌출 너비를 확인하세요"
#~ msgid "°C"
#~ msgstr "°C"
#~ msgid "Continue to sync filaments"
#~ msgstr "필라멘트 동기화 계속하기"
@@ -27911,7 +27908,7 @@ msgstr ""
#~ "Bed temperature of other layer is lower than bed temperature of initial layer for more than %d degrees Celsius.\n"
#~ "This may cause model broken free from build plate during printing."
#~ msgstr ""
#~ "다른 레이어의 베드 온도가 초기 레이어의 베드 온도보다 %d°C 이상 낮습니다.\n"
#~ "다른 레이어의 베드 온도가 초기 레이어의 베드 온도보다 %d℃ 이상 낮습니다.\n"
#~ "이로 인해 출력 중에 모델이 빌드 플레이트에서 탈출할 수 있습니다"
#~ msgid ""
+3 -6
View File
@@ -74,11 +74,8 @@ src/slic3r/GUI/Gizmos/GizmoObjectManipulation.cpp
src/slic3r/GUI/Gizmos/GLGizmoCut.cpp
src/slic3r/GUI/Gizmos/GLGizmoCut.hpp
src/slic3r/GUI/Gizmos/GLGizmoSimplify.cpp
src/slic3r/GUI/Gizmos/GLGizmoFaceDetector.cpp
src/slic3r/GUI/Gizmos/GLGizmoSeam.cpp
src/slic3r/GUI/Gizmos/GLGizmoSeam.hpp
src/slic3r/GUI/Gizmos/GLGizmoText.cpp
src/slic3r/GUI/Gizmos/GLGizmoText.hpp
src/slic3r/GUI/Gizmos/GLGizmoEmboss.cpp
src/slic3r/GUI/Gizmos/GLGizmoSVG.cpp
src/slic3r/GUI/Gizmos/GLGizmoMeasure.cpp
@@ -178,7 +175,6 @@ src/slic3r/GUI/PresetHints.cpp
src/slic3r/GUI/ProgressStatusBar.cpp
src/slic3r/GUI/PlateSettingsDialog.cpp
src/slic3r/GUI/PrivacyUpdateDialog.cpp
src/slic3r/GUI/PublishDialog.cpp
src/slic3r/GUI/PublishSettingsDialog.cpp
src/slic3r/GUI/SavePresetDialog.cpp
src/slic3r/GUI/SceneBenchmark.cpp
@@ -197,7 +193,6 @@ src/slic3r/GUI/Tab.hpp
src/slic3r/GUI/UnsavedChangesDialog.cpp
src/slic3r/GUI/Auxiliary.cpp
src/slic3r/GUI/UpdateDialogs.cpp
src/slic3r/GUI/ObjColorDialog.cpp
src/slic3r/GUI/SyncAmsInfoDialog.cpp
src/slic3r/GUI/WipeTowerDialog.cpp
src/slic3r/GUI/wxExtensions.cpp
@@ -260,7 +255,6 @@ src/slic3r/Utils/MKS.cpp
src/slic3r/Utils/Moonraker.cpp
src/slic3r/Utils/OctoPrint.cpp
src/slic3r/Utils/Repetier.cpp
src/slic3r/Utils/ProfileDescription.hpp
src/slic3r/GUI/SendMultiMachinePage.cpp
src/slic3r/GUI/MultiMachinePage.cpp
src/slic3r/GUI/MultiMachineManagerPage.cpp
@@ -301,7 +295,10 @@ src/slic3r/GUI/AMSDryControl.cpp
src/slic3r/GUI/AMSDryControl.hpp
src/libslic3r/PresetBundle.cpp
src/slic3r/GUI/CAD/DesignPanel.cpp
src/slic3r/GUI/CAD/DesignSketchTool.cpp
src/slic3r/GUI/CAD/SketchInlineEditor.cpp
src/slic3r/GUI/CAD/DesignOffer.hpp
src/slic3r/GUI/CAD/DesignTextDialog.cpp
src/slic3r/GUI/Gizmos/GLGizmoPrimitive.cpp
src/slic3r/GUI/Gizmos/GLGizmoSketch.cpp
src/slic3r/GUI/KeyChord.cpp
+7 -10
View File
@@ -7220,13 +7220,13 @@ msgid "Layer: %d/%d"
msgstr "Sluoksnis: %d/%d"
msgid "Please heat the nozzle to above 170℃ before loading or unloading filament."
msgstr "Prieš įverdami arba išverdami giją, įkaitinkite purkštuką virš 170°C."
msgstr "Prieš įverdami arba išverdami giją, įkaitinkite purkštuką virš 170℃."
msgid "Chamber temperature cannot be changed in cooling mode while printing."
msgstr "Spausdinimo metu vėsinimo režimu negalima keisti kameros temperatūros."
msgid "If the chamber temperature exceeds 40℃, the system will automatically switch to heating mode. Please confirm whether to switch."
msgstr "Jei kameros temperatūra viršys 40°C, sistema automatiškai persijungs į šildymo režimą. Patvirtinkite, ar norite perjungti."
msgstr "Jei kameros temperatūra viršys 40℃, sistema automatiškai persijungs į šildymo režimą. Patvirtinkite, ar norite perjungti."
msgid "Please select an AMS slot before calibration"
msgstr "Prieš kalibruodami pasirinkite AMS lizdą"
@@ -15734,7 +15734,7 @@ msgid "Infill overhang angle"
msgstr "Užpildo iškyšos kampas"
msgid "The angle of the infill angled lines. 60° will result in a pure honeycomb."
msgstr "Užpildo kampinių linijų kampas. Esant 180°C, 60° kampas sukurs gryną korį."
msgstr "Užpildo kampinių linijų kampas. Esant 180℃, 60° kampas sukurs gryną korį."
msgid "Lightning overhang angle"
msgstr "Žaibo (Lightning) užpildo iškyšos kampas"
@@ -21733,13 +21733,13 @@ msgstr "Džiovinimas – sausinimas"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "Didžiausia %s džiovinimo temperatūra yra %d°C."
msgid "%s maximum drying temperature is %d℃."
msgstr "Didžiausia %s džiovinimo temperatūra yra %d℃."
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "Mažiausia %s džiovinimo temperatūra yra %d°C."
msgid "%s minimum drying temperature is %d℃."
msgstr "Mažiausia %s džiovinimo temperatūra yra %d℃."
# AI Translated
msgid "This filament may not be completely dried."
@@ -24947,9 +24947,6 @@ msgstr ""
#~ msgid "Invalid spacing supplied to Flow::with_spacing(), check your layer height and extrusion width."
#~ msgstr "Srautui Flow::with_spacing() pateiktas neteisingas tarpas, patikrinkite sluoksnio aukštį ir išspaudimo plotį"
#~ msgid "°C"
#~ msgstr "°C"
#~ msgid "Renders cast shadows on the plate in realistic view."
#~ msgstr "Realistiniame vaizde atvaizduoja krentančius šešėlius ant spausdinimo pagrindo."
+4 -7
View File
@@ -24143,13 +24143,13 @@ msgstr "Drogen - ontvochtigen"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "De maximale droogtemperatuur van %s is %d°C."
msgid "%s maximum drying temperature is %d℃."
msgstr "De maximale droogtemperatuur van %s is %d℃."
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "De minimale droogtemperatuur van %s is %d°C."
msgid "%s minimum drying temperature is %d℃."
msgstr "De minimale droogtemperatuur van %s is %d℃."
# AI Translated
msgid "This filament may not be completely dried."
@@ -27350,9 +27350,6 @@ msgstr ""
#~ msgid "Failed to calculate line width of %1%. Cannot get value of “%2%”."
#~ msgstr "Kan de lijndikte van %1% niet berekenen omdat de waarde van \"%2%\" niet opgehaald kan worden"
#~ msgid "°C"
#~ msgstr "°C"
#~ msgctxt "Sync_Nozzle_AMS"
#~ msgid "Cancel"
#~ msgstr "Annuleren"
+4 -7
View File
@@ -22622,13 +22622,13 @@ msgstr "Suszenie — osuszanie"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "Maksymalna temperatura suszenia dla %s to %d°C."
msgid "%s maximum drying temperature is %d℃."
msgstr "Maksymalna temperatura suszenia dla %s to %d℃."
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "Minimalna temperatura suszenia dla %s to %d°C."
msgid "%s minimum drying temperature is %d℃."
msgstr "Minimalna temperatura suszenia dla %s to %d℃."
# AI Translated
msgid "This filament may not be completely dried."
@@ -25835,9 +25835,6 @@ msgstr ""
#~ msgid "Invalid spacing supplied to Flow::with_spacing(), check your layer height and extrusion width."
#~ msgstr "Nieprawidłowy odstęp podany do Flow::with_spacing(), sprawdź wysokość warstwy i szerokość ekstruzji."
#~ msgid "°C"
#~ msgstr "°C"
#~ msgid "Continue to sync filaments"
#~ msgstr "Kontynuuj aby zsynchronizować filamenty"
File diff suppressed because it is too large Load Diff
+25 -18
View File
@@ -22406,13 +22406,13 @@ msgstr "Сушка — вывод влаги"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "Максимальная температура сушки для %s — %d°C."
msgid "%s maximum drying temperature is %d℃."
msgstr "Максимальная температура сушки для %s — %d℃."
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "Минимальная температура сушки для %s — %d°C."
msgid "%s minimum drying temperature is %d℃."
msgstr "Минимальная температура сушки для %s — %d℃."
msgid "This filament may not be completely dried."
msgstr "Сушка этого материала может не быть эффективной."
@@ -25583,9 +25583,6 @@ msgstr ""
#~ msgid "Invalid spacing supplied to Flow::with_spacing(), check your layer height and extrusion width."
#~ msgstr "Для Flow::with_spacing() был указан недопустимый интервал. Проверьте высоту слоя и ширину линии."
#~ msgid "°C"
#~ msgstr "°C"
#~ msgid "Renders cast shadows on the plate in realistic view."
#~ msgstr "Отрисовывать тени в режиме продвинутой графики."
@@ -26431,9 +26428,6 @@ msgstr ""
#~ msgid "The AMS will estimate Bambu filament's remaining capacity after the filament info is updated. During printing, remaining capacity will be updated automatically."
#~ msgstr "AMS считывает информацию о материале Bambu и рассчитывает его остаточную ёмкость на катушке. Остаточная ёмкость обновляется автоматически в процессе печати."
#~ msgid "The recommended minimum temperature is less than 190℃ or the recommended maximum temperature is greater than 300°C.\n"
#~ msgstr "Минимально рекомендуемая температура меньше 190℃ или максимально рекомендуемая температура выше 300℃.\n"
#~ msgid "Spiral mode only works when wall loops is 1, support is disabled, top shell layers is 0, sparse infill density is 0 and timelapse type is traditional."
#~ msgstr "Режим «Спиральной вазы» работает только в том случае, если количество петель стен равно 1, поддержка отключена, количество верхних слоев оболочки равно 0, плотность разреженного заполнения равна 0, а тип покадровой съемки — традиционный."
@@ -27362,17 +27356,30 @@ msgstr ""
msgid "Precise Seam"
msgstr "Точный шов"
msgid "multiple intersections with a perimeter detected"
msgstr "обнаружены множественные пересечения с периметром"
#: src/libslic3r/GCode/SeamPlacer.cpp
#, possible-boost-format
msgid "failed to process some intersections (%1%)"
msgstr "не удалось обработать некоторые пересечения (%1%)"
msgid "modifier fully crosses the printable perimeter"
msgstr "модификатор пересекает печатаемый периметр насквозь"
#: src/libslic3r/GCode/SeamPlacer.cpp
#, possible-boost-format
msgid "multiple intersections with a perimeter, only one was used (%1%)"
msgstr "несколько пересечений с периметром, использовано только одно (%1%)"
msgid "modifier shape is not solid (has holes inside) and was ignored"
msgstr "форма модификатора не сплошная (имеет отверстия) и была проигнорирована"
#: src/libslic3r/GCode/SeamPlacer.cpp
#, possible-boost-format
msgid "a perimeter is fully inside a modifier, the modifier was not applied to it (%1%)"
msgstr "периметр целиком внутри модификатора, модификатор для него не применён (%1%)"
msgid "perimeter is fully contained inside modifier and was ignored"
msgstr "периметр полностью содержится внутри модификатора и был проигнорирован"
#: src/libslic3r/GCode/SeamPlacer.cpp
#, possible-boost-format
msgid "modifier \"%1%\" of \"%2%\" had no effect on the seam (it might not reach the centerline of the printed perimeter)"
msgstr "модификатор «%1%» модели «%2%» не повлиял на шов (возможно, он не достигает осевой линии печатаемого периметра)"
#: src/libslic3r/GCode/SeamPlacer.cpp
#, possible-boost-format
msgid "modifier \"%1%\" of \"%2%\" (%3% in total) had no effect on the seam (it might not reach the centerline of the printed perimeter)"
msgstr "модификатор «%1%» модели «%2%» (всего: %3%) не повлиял на шов (возможно, он не достигает осевой линии печатаемого периметра)"
msgid "Seam placement may differ from expected."
msgstr "Размещение шва может отличаться от ожидаемого."
+4 -7
View File
@@ -24419,13 +24419,13 @@ msgstr "Torkning – avfuktning"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "Maximal torktemperatur för %s är %d°C."
msgid "%s maximum drying temperature is %d℃."
msgstr "Maximal torktemperatur för %s är %d℃."
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "Minimal torktemperatur för %s är %d°C."
msgid "%s minimum drying temperature is %d℃."
msgstr "Minimal torktemperatur för %s är %d℃."
# AI Translated
msgid "This filament may not be completely dried."
@@ -27643,9 +27643,6 @@ msgstr ""
#~ msgid "Failed to calculate line width of %1%. Cannot get value of “%2%”."
#~ msgstr "Misslyckades att kalkylera linjebredden av %1%. Kan inte få värdet av “%2%” "
#~ msgid "°C"
#~ msgstr "° C"
#~ msgctxt "Sync_Nozzle_AMS"
#~ msgid "Cancel"
#~ msgstr "Avbryt"
+32 -35
View File
@@ -5135,13 +5135,13 @@ msgid "AMS temperature is too high, which may cause the filament to soften. Plea
msgstr "อุณหภูมิ AMS สูงเกินไป ซึ่งอาจทำให้เส้นพลาสติกอ่อนตัวลง โปรดรอจนกว่าอุณหภูมิ AMS จะลดลงต่ำกว่า %d℃"
msgid "The current chamber temperature or the target chamber temperature exceeds 45℃. In order to avoid extruder clogging, low temperature filament(PLA/PETG/TPU) is not allowed to be loaded."
msgstr "อุณหภูมิห้องปัจจุบันหรืออุณหภูมิห้องเป้าหมายเกิน 45°C เพื่อหลีกเลี่ยงการอุดตันของชุดดันเส้น ไม่อนุญาตให้โหลดเส้นพลาสติกที่มีอุณหภูมิต่ำ (PLA/PETG/TPU)"
msgstr "อุณหภูมิห้องปัจจุบันหรืออุณหภูมิห้องเป้าหมายเกิน 45℃ เพื่อหลีกเลี่ยงการอุดตันของชุดดันเส้น ไม่อนุญาตให้โหลดเส้นพลาสติกที่มีอุณหภูมิต่ำ (PLA/PETG/TPU)"
msgid "Low temperature filament(PLA/PETG/TPU) is loaded in the extruder. In order to avoid extruder clogging, it is not allowed to set the chamber temperature."
msgstr "โหลดเส้นพลาสติกอุณหภูมิต่ำ (PLA/PETG/TPU) ลงในชุดดันเส้น เพื่อหลีกเลี่ยงการอุดตันของชุดดันเส้น ไม่อนุญาตให้ตั้งอุณหภูมิห้องเพาะเลี้ยง"
msgid "When you set the chamber temperature below 40℃, the chamber temperature control will not be activated, and the target chamber temperature will automatically be set to 0℃."
msgstr "เมื่อคุณตั้งอุณหภูมิห้องเพาะเลี้ยงให้ต่ำกว่า 40°C การควบคุมอุณหภูมิห้องเพาะเลี้ยงจะไม่ทำงาน และอุณหภูมิห้องเพาะเลี้ยงเป้าหมายจะถูกตั้งค่าเป็น 0°C โดยอัตโนมัติ"
msgstr "เมื่อคุณตั้งอุณหภูมิห้องเพาะเลี้ยงให้ต่ำกว่า 40℃ การควบคุมอุณหภูมิห้องเพาะเลี้ยงจะไม่ทำงาน และอุณหภูมิห้องเพาะเลี้ยงเป้าหมายจะถูกตั้งค่าเป็น 0℃ โดยอัตโนมัติ"
msgid "Failed to start print job"
msgstr "ไม่สามารถเริ่มงานพิมพ์ได้"
@@ -6025,7 +6025,7 @@ msgstr "ขนาด:"
#, boost-format
msgid "Conflicts of G-code paths have been found at layer %d, Z = %.2lfmm. Please separate the conflicted objects farther (%s <-> %s)."
msgstr "พบความขัดแย้งของเส้นทางรหัส G ที่เลเยอร์ %d, Z = %.2lfmm โปรดแยกวัตถุที่ขัดแย้งกันให้ไกลออกไป (%s <-> %s)"
msgstr "พบความขัดแย้งของเส้นทาง G-code ที่เลเยอร์ %d, Z = %.2lfmm โปรดแยกวัตถุที่ขัดแย้งกันให้ไกลออกไป (%s <-> %s)"
msgid "An object is laid over the plate boundaries."
msgstr "มีวัตถุวางอยู่เหนือขอบเขตของแผ่น"
@@ -6344,7 +6344,7 @@ msgstr "เผยแพร่ 3MF"
# AI Translated
msgid "Export a 3MF file with the selected settings embedded"
msgstr "ส่งออกไฟล์ 3MF ที่ฝังการตั้งค่าที่เลือกไว้"
msgstr "ส่งออกไฟล์ 3MF โดยฝังการตั้งค่าที่เลือกไว้"
msgid "Import 3MF/STL/STEP/SVG/OBJ/AMF"
msgstr "นำเข้า 3MF/STL/STEP/SVG/OBJ/AMF"
@@ -7206,13 +7206,13 @@ msgid "Layer: %d/%d"
msgstr "เลเยอร์: %d/%d"
msgid "Please heat the nozzle to above 170℃ before loading or unloading filament."
msgstr "กรุณาตั้งอุณหภูมิหัวฉีดให้สูงกว่า 170°C ก่อนที่จะบรรจุหรือขนถ่ายเส้นพลาสติก"
msgstr "กรุณาตั้งอุณหภูมิหัวฉีดให้สูงกว่า 170℃ ก่อนที่จะบรรจุหรือขนถ่ายเส้นพลาสติก"
msgid "Chamber temperature cannot be changed in cooling mode while printing."
msgstr "อุณหภูมิห้องเพาะเลี้ยงไม่สามารถเปลี่ยนแปลงได้ในโหมดทำความเย็นขณะพิมพ์"
msgid "If the chamber temperature exceeds 40℃, the system will automatically switch to heating mode. Please confirm whether to switch."
msgstr "หากอุณหภูมิห้องเพาะเกิน 40°C ระบบจะเปลี่ยนเป็นโหมดทำความร้อนโดยอัตโนมัติ โปรดยืนยันว่าจะสลับหรือไม่"
msgstr "หากอุณหภูมิห้องเพาะเกิน 40℃ ระบบจะเปลี่ยนเป็นโหมดทำความร้อนโดยอัตโนมัติ โปรดยืนยันว่าจะสลับหรือไม่"
msgid "Please select an AMS slot before calibration"
msgstr "โปรดเลือกช่อง AMS ก่อนการสอบเทียบ"
@@ -7832,11 +7832,11 @@ msgstr "ล่าง"
# AI Translated
msgid "This setting does not specify a plugin capability type."
msgstr "การตั้งค่านี้ไม่ได้ระบุชนิดความสามารถของปลั๊กอิน"
msgstr "การตั้งค่านี้ไม่ได้ระบุประเภทความสามารถของปลั๊กอิน"
# AI Translated
msgid "This setting specifies an unrecognized plugin capability type: "
msgstr "การตั้งค่านี้ระบุชนิดความสามารถของปลั๊กอินที่ไม่รู้จัก: "
msgstr "การตั้งค่านี้ระบุประเภทความสามารถของปลั๊กอินที่ไม่รู้จัก: "
# AI Translated
msgid "Plugin Selection"
@@ -8397,11 +8397,11 @@ msgstr "ค่าที่ตั้งไว้ล่วงหน้าที่
# AI Translated
msgid "Some published settings could not be applied:"
msgstr "ไม่สามารถใช้การตั้งค่าที่เผยแพร่บางรายการได้:"
msgstr "การตั้งค่าที่เผยแพร่บางส่วนไม่สามารถนำไปใช้ได้:"
# AI Translated
msgid "Some filament slots were changed:"
msgstr "ช่องเส้นพลาสติกบางช่องถูกเปลี่ยนแปลง:"
msgstr "ช่องเส้นพลาสติกบางช่องมีการเปลี่ยนแปลง:"
msgid "Component name(s) inside step file not in UTF-8 format!"
msgstr "ชื่อของส่วนประกอบภายในไฟล์ STEP ไม่ใช่รูปแบบ UTF-8!"
@@ -8811,8 +8811,8 @@ msgid ""
"Failed to export the published 3MF file.\n"
"Please check whether the folder exists online or if other programs have the file open."
msgstr ""
"ส่งออกไฟล์ 3MF ที่เผยแพร่ล้มเหลว\n"
"โปรดตรวจสอบว่าโฟลเดอร์นั้นมีอยู่บนออนไลน์หรือมีโปรแกรมอื่นเปิดไฟล์นี้ค้างไว้หรือไม่"
"ไม่สามารถส่งออกไฟล์ 3MF ที่เผยแพร่ได้\n"
"โปรดตรวจสอบว่ามีโฟลเดอร์นี้ออนไลน์อยู่หรือไม่ หรือมีโปรแกรมอื่นเปิดไฟล์นี้อยู่หรือไม่"
msgid "Publish"
msgstr "เผยแพร่"
@@ -10051,7 +10051,7 @@ msgstr "เส้นพลาสติกผสม"
# AI Translated
msgid "Some mixed filaments rely on filaments that will not be published:"
msgstr "เส้นพลาสติกผสมบางรายการต้องอาศัยเส้นพลาสติกที่จะไม่ถูกเผยแพร่:"
msgstr "เส้นพลาสติกผสมบางส่วนขึ้นอยู่กับเส้นพลาสติกที่จะไม่ได้รับการเผยแพร่:"
# AI Translated
#, c-format, boost-format
@@ -10070,7 +10070,7 @@ msgstr "%1% ต้องใช้ %2% แต่วัสดุของมัน
# AI Translated
msgid "To publish a mixed filament, enable every filament it uses and choose Full Publish or check its Type requirement."
msgstr "หากต้องการเผยแพร่เส้นพลาสติกผสม ให้เปิดใช้เส้นพลาสติกทุกเส้นที่ใช้ แล้วเลือกการเผยแพร่แบบเต็ม หรือทำตามข้อกำหนดชนิดของมัน"
msgstr "หากต้องการเผยแพร่เส้นพลาสติกผสม ให้เลือก \"เปิดใช้\" สำหรับเส้นพลาสติกทุกเส้นที่เป็นส่วนประกอบ แล้วเลือก \"เผยแพร่ทั้งหมด (Full Publish)\" หรือทำเครื่องหมายที่ข้อกำหนด \"ชนิด\" ของแต่ละเส้น"
# AI Translated
msgid "Publish anyway"
@@ -10082,18 +10082,18 @@ msgstr "เผยแพร่ 3MF..."
# AI Translated
msgid "Select which settings to be published in the 3MF file"
msgstr "เลือกว่าจะเผยแพร่การตั้งค่าใดในไฟล์ 3MF"
msgstr "เลือกการตั้งค่าที่จะเผยแพร่ในไฟล์ 3MF"
msgid "Video Guide"
msgstr ""
# AI Translated
msgid "Mixed filament - published as a whole when \"Enable\" above is selected"
msgstr "เส้นพลาสติกผสม - เผยแพร่ทั้งชุดเมื่อเลือก \"เปิดใช้\" ด้านบน"
msgstr "เส้นพลาสติกผสม - จะได้รับการเผยแพร่ทั้งชุดเมื่อเลือก \"เปิดใช้\" ด้านบน"
# AI Translated
msgid "Publish this mixed filament and enable + Full Publish its component filaments"
msgstr "เผยแพร่เส้นพลาสติกผสมนี้ และเปิดใช้ + เผยแพร่แบบเต็มสำหรับเส้นพลาสติกที่เป็นส่วนประกอบ"
msgstr "เผยแพร่เส้นพลาสติกผสมนี้ พร้อมเลือก \"เปิดใช้\" และ \"เผยแพร่ทั้งหมด (Full Publish)\" ให้เส้นพลาสติกที่เป็นส่วนประกอบ"
# AI Translated
msgid "Publish this filament slot in the 3MF file"
@@ -10101,11 +10101,11 @@ msgstr "เผยแพร่ช่องเส้นพลาสติกนี
# AI Translated
msgid "Full Publish"
msgstr "การเผยแพร่แบบเต็ม"
msgstr "เผยแพร่ทั้งหมด (Full Publish)"
# AI Translated
msgid "Embed the entire filament of this slot in the 3MF file"
msgstr "ฝังเส้นพลาสติกทั้งหมดของช่องนี้ลงในไฟล์ 3MF"
msgstr "ฝังการตั้งค่าเส้นพลาสติกทั้งหมดของช่องนี้ลงในไฟล์ 3MF"
# AI Translated
msgid "Filter non-selected"
@@ -14059,7 +14059,7 @@ msgstr "ศูนย์กลาง"
# AI Translated
msgid "Spiral Inset"
msgstr "เกลียวเข้าใน"
msgstr "เกลียวร่นเข้า (Spiral Inset)"
msgid "Hilbert Curve"
msgstr "ฮิลเบิร์ต เคิร์ฟ"
@@ -14156,9 +14156,9 @@ msgid ""
"Outward starts at the center of the surface, so any excess material is pushed towards the edge where it is least visible. Inward starts at the edge and ends with the tight curves at the center.\n"
"Default uses shortest-path ordering, which may run in either direction."
msgstr ""
"ทิศทางการเติมผิวด้านบนเมื่อใช้รูปแบบที่เริ่มจากศูนย์กลาง (ศูนย์กลาง, เกลียวเข้าใน, คอร์ดอาร์คิมีดีน, เกลียวแปดเหลี่ยม)\n"
"ออกด้านนอกจะเริ่มที่กึ่งกลางของผิว วัสดุส่วนเกินจึงถูกดันไปทางขอบซึ่งมองเห็นได้น้อยที่สุด เข้าด้านในจะเริ่มที่ขอบและจบด้วยเส้นโค้งแคบตรงกึ่งกลาง\n"
"ค่าเริ่มต้นใช้การเรียงตามเส้นทางที่สั้นที่สุด ซึ่งอาจเดินไปทางใดก็ได้"
"ทิศทางที่พื้นผิวด้านบนถูกเติมเมื่อใช้รูปแบบที่อิงจุดศูนย์กลาง (ศูนย์กลาง, เกลียวร่นเข้า (Spiral Inset), คอร์ดอาร์คิมีดีน, เกลียวแปดเหลี่ยม)\n"
"ออกด้านนอกเริ่มที่กึ่งกลางของพื้นผิว ดังนั้นวัสดุส่วนเกินจะถูกดันไปทางขอบซึ่งมองเห็นได้น้อยที่สุด เข้าด้านในเริ่มที่ขอบและจบด้วยเส้นโค้งแคบที่กึ่งกลาง\n"
"ค่าเริ่มต้นใช้การเรียงลำดับเส้นทางสั้นที่สุด ซึ่งอาจทำงานในทิศทางใดก็ได้"
# AI Translated
msgid "Bottom surface fill order"
@@ -14170,9 +14170,9 @@ msgid ""
"Inward starts each surface with the wider outer curves, which improves first layer adhesion on build plates where the tight curves at the center may not stick. Outward starts at the center, pushing any excess material towards the edge.\n"
"Default uses shortest-path ordering, which may run in either direction."
msgstr ""
"ทิศทางการเติมผิวด้านล่างเมื่อใช้รูปแบบที่เริ่มจากศูนย์กลาง (ศูนย์กลาง, เกลียวเข้าใน, คอร์ดอาร์คิมีดีน, เกลียวแปดเหลี่ยม)\n"
"เข้าด้านในจะเริ่มแต่ละผิวด้วยเส้นโค้งด้านนอกที่กว้างกว่า ซึ่งช่วยให้ชั้นแรกยึดเกาะดีขึ้นบนฐานพิมพ์ที่เส้นโค้งแคบตรงกึ่งกลางอาจไม่ติด ออกด้านนอกจะเริ่มที่กึ่งกลางและดันวัสดุส่วนเกินไปทางขอบ\n"
"ค่าเริ่มต้นใช้การเรียงตามเส้นทางที่สั้นที่สุด ซึ่งอาจเดินไปทางใดก็ได้"
"ทิศทางที่พื้นผิวด้านล่างถูกเติมเมื่อใช้รูปแบบที่อิงจุดศูนย์กลาง (ศูนย์กลาง, เกลียวร่นเข้า (Spiral Inset), คอร์ดอาร์คิมีดีน, เกลียวแปดเหลี่ยม)\n"
"เข้าด้านในเริ่มแต่ละพื้นผิวด้วยเส้นโค้งด้านนอกที่กว้างกว่า ซึ่งช่วยเพิ่มการยึดเกาะเลเยอร์แรกบนฐานพิมพ์ที่เส้นโค้งแคบตรงกลางอาจไม่ติด ออกด้านนอกเริ่มที่กึ่งกลาง โดยดันวัสดุส่วนเกินไปทางขอบ\n"
"ค่าเริ่มต้นใช้การเรียงลำดับเส้นทางสั้นที่สุด ซึ่งอาจทำงานในทิศทางใดก็ได้"
msgid "Internal solid infill pattern"
msgstr "รูปแบบไส้ในของแข็งภายใน"
@@ -21499,7 +21499,7 @@ msgstr "ข้ามวัตถุ"
# AI Translated
msgid "Material Ratio"
msgstr "สัดส่วนวัสดุ"
msgstr "อัตราส่วนวัสดุ"
# AI Translated
msgid "Model Height"
@@ -21507,7 +21507,7 @@ msgstr "ความสูงโมเดล"
# AI Translated
msgid "Ratio"
msgstr "สัดส่วน"
msgstr "อัตราส่วน"
msgid "Select Filament"
msgstr "เลือกเส้นพลาสติก"
@@ -21759,13 +21759,13 @@ msgstr "อบแห้ง-ลดความชื้น"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "อุณหภูมิอบแห้งสูงสุดของ %s คือ %d°C"
msgid "%s maximum drying temperature is %d℃."
msgstr "อุณหภูมิอบแห้งสูงสุดของ %s คือ %d℃"
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "อุณหภูมิอบแห้งต่ำสุดของ %s คือ %d°C"
msgid "%s minimum drying temperature is %d℃."
msgstr "อุณหภูมิอบแห้งต่ำสุดของ %s คือ %d℃"
# AI Translated
msgid "This filament may not be completely dried."
@@ -24973,9 +24973,6 @@ msgstr ""
#~ msgid "Invalid spacing supplied to Flow::with_spacing(), check your layer height and extrusion width."
#~ msgstr "การเว้นวรรคที่ให้กับ Flow::with_spacing() ไม่ถูกต้อง โปรดตรวจสอบความสูงของเลเยอร์และความกว้างของการอัดขึ้นรูป"
#~ msgid "°C"
#~ msgstr "°C"
#~ msgid "Renders cast shadows on the plate in realistic view."
#~ msgstr "แสดงเงาแบบทอดบนเพลตในมุมมองแบบสมจริง"
+12 -15
View File
@@ -4319,7 +4319,7 @@ msgid "Max volumetric speed"
msgstr "Maksimum hacimsel hız"
msgid "℃"
msgstr "°C"
msgstr "℃"
msgid "Bed temperature"
msgstr "Yatak Sıcaklığı"
@@ -5191,20 +5191,20 @@ msgstr "Güvenliğinizi sağlamak için belirli işleme görevleri (lazer gibi)
#, c-format, boost-format
msgid "The chamber temperature is too high, which may cause the filament to soften. Please wait until the chamber temperature drops below %d℃. You may open the front door or enable fans to cool down."
msgstr "Oda sıcaklığı çok yüksek, bu da filamentin yumuşamasına neden olabilir. Lütfen hazne sıcaklığı %d°C'nin altına düşene kadar bekleyin. Ön kapıyı açabilir veya fanların soğumasını sağlayabilirsiniz."
msgstr "Oda sıcaklığı çok yüksek, bu da filamentin yumuşamasına neden olabilir. Lütfen hazne sıcaklığı %d℃'nin altına düşene kadar bekleyin. Ön kapıyı açabilir veya fanların soğumasını sağlayabilirsiniz."
#, c-format, boost-format
msgid "AMS temperature is too high, which may cause the filament to soften. Please wait until the AMS temperature drops below %d℃."
msgstr "AMS sıcaklığı çok yüksek, bu da filamentin yumuşamasına neden olabilir. Lütfen AMS sıcaklığı %d°C'nin altına düşene kadar bekleyin."
msgstr "AMS sıcaklığı çok yüksek, bu da filamentin yumuşamasına neden olabilir. Lütfen AMS sıcaklığı %d℃'nin altına düşene kadar bekleyin."
msgid "The current chamber temperature or the target chamber temperature exceeds 45℃. In order to avoid extruder clogging, low temperature filament(PLA/PETG/TPU) is not allowed to be loaded."
msgstr "Mevcut hazne sıcaklığı veya hedef hazne sıcaklığı 45°C'yi aşıyor. Ekstruderin tıkanmasını önlemek için düşük sıcaklık filamentinin (PLA/PETG/TPU) yüklenmesine izin verilmez."
msgstr "Mevcut hazne sıcaklığı veya hedef hazne sıcaklığı 45℃'yi aşıyor. Ekstruderin tıkanmasını önlemek için düşük sıcaklık filamentinin (PLA/PETG/TPU) yüklenmesine izin verilmez."
msgid "Low temperature filament(PLA/PETG/TPU) is loaded in the extruder. In order to avoid extruder clogging, it is not allowed to set the chamber temperature."
msgstr "Ekstrudere düşük sıcaklık filamenti (PLA/PETG/TPU) yüklenir. Ekstruderin tıkanmasını önlemek için hazne sıcaklığının ayarlanmasına izin verilmez."
msgid "When you set the chamber temperature below 40℃, the chamber temperature control will not be activated, and the target chamber temperature will automatically be set to 0℃."
msgstr "Hazne sıcaklığını 40°C'nin altına ayarladığınızda, hazne sıcaklık kontrolü etkinleştirilmeyecektir. Ve hedef hazne sıcaklığı otomatik olarak 0°C'ye ayarlanacaktır."
msgstr "Hazne sıcaklığını 40℃'nin altına ayarladığınızda, hazne sıcaklık kontrolü etkinleştirilmeyecektir. Ve hedef hazne sıcaklığı otomatik olarak 0℃'ye ayarlanacaktır."
msgid "Failed to start print job"
msgstr "Yazdırma işi başlatılamadı"
@@ -7291,7 +7291,7 @@ msgid "Chamber temperature cannot be changed in cooling mode while printing."
msgstr "Yazdırma sırasında soğutma modunda hazne sıcaklığı değiştirilemez."
msgid "If the chamber temperature exceeds 40℃, the system will automatically switch to heating mode. Please confirm whether to switch."
msgstr "Oda sıcaklığı 40°C'yi aşarsa sistem otomatik olarak ısıtma moduna geçecektir. Lütfen geçiş yapıp yapmayacağınızı onaylayın."
msgstr "Oda sıcaklığı 40℃'yi aşarsa sistem otomatik olarak ısıtma moduna geçecektir. Lütfen geçiş yapıp yapmayacağınızı onaylayın."
msgid "Please select an AMS slot before calibration"
msgstr "Lütfen kalibrasyondan önce bir AMS yuvası seçin"
@@ -17431,7 +17431,7 @@ msgid "Temperature difference to be applied when an extruder is not active. The
msgstr "Ekstruder aktif olmadığında uygulanacak sıcaklık farkı. Filament ayarlarında ‘rölanti sıcaklığı’ sıfır olmayan bir değere ayarlandığında bu değer kullanılmaz."
msgid "∆℃"
msgstr "∆°C"
msgstr "∆℃"
msgid "Preheat time"
msgstr "Ön ısıtma süresi"
@@ -19588,7 +19588,7 @@ msgid "Printing Parameters"
msgstr "Yazdırma Parametreleri"
msgid "- ℃"
msgstr "- °C"
msgstr "- ℃"
msgid "Synchronize nozzle and AMS information"
msgstr "Nozul ve AMS bilgilerini senkronize edin"
@@ -22207,13 +22207,13 @@ msgstr "Kurutma-Nem Alma"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "%s için maksimum kurutma sıcaklığı %d°C'dir."
msgid "%s maximum drying temperature is %d℃."
msgstr "%s için maksimum kurutma sıcaklığı %d℃'dir."
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "%s için minimum kurutma sıcaklığı %d°C'dir."
msgid "%s minimum drying temperature is %d℃."
msgstr "%s için minimum kurutma sıcaklığı %d℃'dir."
# AI Translated
msgid "This filament may not be completely dried."
@@ -25423,9 +25423,6 @@ msgstr ""
#~ msgid "Invalid spacing supplied to Flow::with_spacing(), check your layer height and extrusion width."
#~ msgstr "Flow::with_spacing()'e sağlanan geçersiz boşluk, kat yüksekliğinizi ve ekstrüzyon genişliğinizi kontrol edin"
#~ msgid "°C"
#~ msgstr "°C"
#~ msgid "Continue to sync filaments"
#~ msgstr "Filamentleri senkronize etmeye devam edin"
+4 -7
View File
@@ -22368,13 +22368,13 @@ msgstr "Сушіння — осушення"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "Максимальна температура сушіння для %s — %d°C."
msgid "%s maximum drying temperature is %d℃."
msgstr "Максимальна температура сушіння для %s — %d℃."
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "Мінімальна температура сушіння для %s — %d°C."
msgid "%s minimum drying temperature is %d℃."
msgstr "Мінімальна температура сушіння для %s — %d℃."
# AI Translated
msgid "This filament may not be completely dried."
@@ -25581,9 +25581,6 @@ msgstr ""
#~ msgid "Invalid spacing supplied to Flow::with_spacing(), check your layer height and extrusion width."
#~ msgstr "Неправильний інтервал, переданий до Flow::with_spacing(), перевірте висоту шару та ширину екструзії"
#~ msgid "°C"
#~ msgstr "℃"
#~ msgctxt "Sync_Nozzle_AMS"
#~ msgid "Cancel"
#~ msgstr "Скасувати"
+4 -7
View File
@@ -23080,13 +23080,13 @@ msgstr "Sấy - Hút ẩm"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "Nhiệt độ sấy tối đa của %s là %d°C."
msgid "%s maximum drying temperature is %d℃."
msgstr "Nhiệt độ sấy tối đa của %s là %d℃."
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "Nhiệt độ sấy tối thiểu của %s là %d°C."
msgid "%s minimum drying temperature is %d℃."
msgstr "Nhiệt độ sấy tối thiểu của %s là %d℃."
# AI Translated
msgid "This filament may not be completely dried."
@@ -26272,9 +26272,6 @@ msgstr ""
#~ msgid "Invalid spacing supplied to Flow::with_spacing(), check your layer height and extrusion width."
#~ msgstr "Khoảng cách không hợp lệ được cung cấp cho Flow::with_spacing(), kiểm tra chiều cao lớp và độ rộng đùn của bạn"
#~ msgid "°C"
#~ msgstr "°C"
#~ msgctxt "Sync_Nozzle_AMS"
#~ msgid "Cancel"
#~ msgstr "Hủy"
+4 -7
View File
@@ -21500,13 +21500,13 @@ msgstr "干燥-除湿"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "%s 的最高干燥温度为 %d°C。"
msgid "%s maximum drying temperature is %d℃."
msgstr "%s 的最高干燥温度为 %d℃。"
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "%s 的最低干燥温度为 %d°C。"
msgid "%s minimum drying temperature is %d℃."
msgstr "%s 的最低干燥温度为 %d℃。"
# AI Translated
msgid "This filament may not be completely dried."
@@ -24728,9 +24728,6 @@ msgstr ""
#~ msgid "Invalid spacing supplied to Flow::with_spacing(), check your layer height and extrusion width."
#~ msgstr "提供给 Flow::with_spacing() 的间距无效,请检查层高和挤出宽度"
#~ msgid "°C"
#~ msgstr "°C"
#~ msgid "Renders cast shadows on the plate in realistic view."
#~ msgstr "在写实渲染中渲染投射到打印板上的阴影。"
+4 -7
View File
@@ -21695,13 +21695,13 @@ msgstr "烘乾—除濕"
# AI Translated
#, c-format, boost-format
msgid "%s maximum drying temperature is %d°C."
msgstr "%s 的最高烘乾溫度為 %d°C。"
msgid "%s maximum drying temperature is %d℃."
msgstr "%s 的最高烘乾溫度為 %d℃。"
# AI Translated
#, c-format, boost-format
msgid "%s minimum drying temperature is %d°C."
msgstr "%s 的最低烘乾溫度為 %d°C。"
msgid "%s minimum drying temperature is %d℃."
msgstr "%s 的最低烘乾溫度為 %d℃。"
# AI Translated
msgid "This filament may not be completely dried."
@@ -24940,9 +24940,6 @@ msgstr ""
#~ msgid "Invalid spacing supplied to Flow::with_spacing(), check your layer height and extrusion width."
#~ msgstr "提供給 Flow::with_spacing()的間距無效,請檢查層高和擠出寬度"
#~ msgid "°C"
#~ msgstr "°C"
#~ msgid "Renders cast shadows on the plate in realistic view."
#~ msgstr "在擬真檢視中於列印板上算繪投射陰影。"
File diff suppressed because it is too large Load Diff
File diff suppressed because it is too large Load Diff
File diff suppressed because it is too large Load Diff
File diff suppressed because it is too large Load Diff
File diff suppressed because it is too large Load Diff
+321 -321
View File
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