--- name: gcode description: Slice 3D models into printer-ready G-code with OrcaSlicer, the open-source slicer with built-in profiles for most FDM printers (Prusa, Bambu Lab, Creality, Voron and more). Use when the user wants an `.stl`, `.3mf` or `.obj` model sliced for their printer, as a sliced `.gcode.3mf` or plain `.gcode`, headless with OrcaSlicer's command line or by opening the model in OrcaSlicer. Never contacts a printer. license: MIT --- # G-code Provenance: maintained in [earthtojake/text-to-cad](https://github.com/earthtojake/text-to-cad). Use the installed local skill files as the runtime source of truth; the repository link is only for provenance and release review. Slice with OrcaSlicer, headless (below) or by opening the model in the OrcaSlicer app for the user. The agent never contacts a printer: for a Bambu Lab printer, hand the result to `$bambu-labs`; for any other printer, give the user the `.gcode`. ## Install OrcaSlicer - macOS: `brew install --cask orcaslicer`. The command line is `/Applications/OrcaSlicer.app/Contents/MacOS/OrcaSlicer`. - Windows and Linux: install a release from https://github.com/OrcaSlicer/OrcaSlicer/releases. The command is `orca-slicer`; on Linux, run it from the AppImage or Flatpak. Below, `` is that command. ## Slice headless OrcaSlicer's command line (https://www.orcaslicer.com/wiki/cli/cli_mode) needs complete presets: it doesn't fill in a preset's parent settings, and it slices only with a process whose compatible printers name the printer. `scripts/orca_presets.py` (Python 3, no dependencies) writes them from OrcaSlicer's presets, searching the user's own first, then OrcaSlicer's built-in profiles. 1. Find the user's printer, process and filament presets. Prefer the presets the user prints with; never invent one, since a wrong bed size or temperature can damage the printer. ```bash python scripts/orca_presets.py --list machine --match "MK4S" python scripts/orca_presets.py --list process --match "@MK4S 0.4" python scripts/orca_presets.py --list filament --match "PLA @MK4S" ``` 2. Write the complete presets: ```bash python scripts/orca_presets.py --printer "Prusa MK4S 0.4 nozzle" \ --process "0.20mm SPEED @MK4S 0.4" --filament "Prusa Generic PLA @MK4S" \ --out presets ``` 3. Slice. Give `--outputdir` an absolute path: ```bash model.stl \ --load-settings "presets/process.json;presets/printer.json" \ --load-filaments presets/filament-1.json \ --arrange 1 --slice 0 \ --outputdir /absolute/path/to/out --export-3mf model.gcode.3mf ``` This writes `plate_1.gcode`, the plain G-code, and `model.gcode.3mf`, the sliced 3MF, into that folder. The command line reads `.stl`, `.3mf`, `.obj` and `.amf`; export STEP to STL or 3MF with `$cad` first. Override one setting with `--=`, using the setting's key with hyphens for underscores, such as `--layer-height=0.16`. ## Open in OrcaSlicer When the user would rather pick presets and slice themselves, or no preset can be found, open the model in the app: `open -a OrcaSlicer model.stl` on macOS, `Start-Process model.stl` on Windows when OrcaSlicer opens that file type, or `orca-slicer model.stl` on Linux. The app also reads STEP. ## Check before printing - ` model.stl --info` prints the model's size; it has to fit the bed. - Check the slice's settings, which OrcaSlicer writes at the end of the G-code: ```bash grep -E '^; (printer_model|nozzle_diameter|filament_type|nozzle_temperature|hot_plate_temp|bed_temperature) =|printing time' out/plate_1.gcode ``` Confirm they match the user's printer and material before anyone prints it. ## Hand off - A Bambu Lab printer: `$bambu-labs`, with the `.gcode.3mf`. - Any other printer: the user prints the `.gcode` from their printer's app, its web interface (PrusaLink, OctoPrint, Mainsail, Fluidd) or an SD card.