gcode
GitHub用于从3D网格文件生成、检查、试运行和静态验证FDM G代码的技能。通过编排切片器CLI,支持多种格式转换及打印机配置文件管理。
Trigger Scenarios
Install
npx skills add earthtojake/text-to-cad --skill gcode -g -y
SKILL.md
Frontmatter
{
"name": "gcode",
"description": "Generate, inspect, dry-run, and statically validate plain FDM `.gcode` from 3D mesh files by orchestrating real slicer CLIs. Use when Codex needs to slice `.stl`, `.obj`, unsliced `.3mf`, `.ply`, `.glb`, or `.gltf` into printer-profiled G-code, discover local slicer backends, inspect whether a mesh is slice-ready, or validate generated G-code before any printer-specific handoff."
}
G-code
Provenance: maintained in 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.
Use this skill for plain .gcode generation from mesh files. It is printer-agnostic and never uploads, starts, or packages print jobs.
Workflow
- Confirm the input is a supported mesh:
.stl,.obj, unsliced.3mf,.ply,.glb, or.gltf. - Require an explicit printer/profile wrapper JSON. Do not invent real-printer profiles.
- Discover slicer backends when the backend is unknown:
python scripts/gcode_tool.py discover
- Inspect the input:
python scripts/gcode_tool.py inspect --input path/to/model.stl --json
- Dry-run the slicer command before executing:
python scripts/gcode_tool.py slice \
--input path/to/model.stl \
--output /tmp/model.gcode \
--profile path/to/profile.json \
--backend auto \
--dry-run
- Execute only after the dry-run command and profile are appropriate:
python scripts/gcode_tool.py slice \
--input path/to/model.stl \
--output /tmp/model.gcode \
--profile path/to/profile.json \
--backend auto \
--execute
- Validate the generated G-code:
python scripts/gcode_tool.py validate \
--gcode /tmp/model.gcode \
--profile path/to/profile.json \
--json
Profile Contract
Every slice requires a wrapper profile JSON with an absolute native slicer profile path:
{
"backend": "orcaslicer",
"native_config": "/absolute/path/to/native-slicer-profile",
"machine": {
"name": "Example Printer",
"bed_size_mm": [180, 180],
"z_height_mm": 180,
"motion_bounds_mm": {
"x": [0, 180],
"y": [0, 180],
"z": [0, 180]
}
},
"filament": {
"type": "PLA",
"nozzle_temp_c": 220,
"bed_temp_c": 65
}
}
The wrapper supplies validation bounds and backend selection. machine.motion_bounds_mm is optional; omit it for the default 0..bed_size and 0..z_height bounds, or set it from a native printer profile when start/end G-code intentionally uses safe wipe/purge positions outside the printable area. The native slicer profile remains the source of detailed process, printer, and filament behavior.
For OrcaSlicer, use native_settings and native_filaments when the real profile is split across machine, process, and filament JSON files. Keep native_config as an absolute path to the primary native profile for compatibility:
{
"backend": "orcaslicer",
"native_config": "/absolute/path/to/machine-or-process.json",
"native_settings": [
"/absolute/path/to/machine.json",
"/absolute/path/to/process.json"
],
"native_filaments": [
"/absolute/path/to/filament.json"
],
"machine": {
"name": "Example Printer",
"bed_size_mm": [180, 180],
"z_height_mm": 180
},
"filament": {
"type": "PLA",
"nozzle_temp_c": 220,
"bed_temp_c": 65
}
}
Backends And Inputs
Preferred slicer backend order is orcaslicer, prusa-slicer, then curaengine. Prefer installing OrcaSlicer when no preferred backend is available; on macOS use brew install --cask orcaslicer and then rerun discover. The helper checks both PATH and the usual /Applications/OrcaSlicer.app cask location. Bambu Studio may be reported by discovery as available but is not preferred because its CLI export path has shown macOS instability.
Pass .stl, .obj, and unsliced .3mf directly to the slicer. Convert .ply, .glb, and .gltf to temporary STL at execution time with optional trimesh; if trimesh is unavailable, ask the user to install it or provide .stl, .obj, or unsliced .3mf.
Reject .step, .stp, .dxf, .svg, .urdf, and .sdf in v1. inspect and slice fail with a structured remediation object naming the skill and command that produce a sliceable mesh; use it instead of inferring a conversion workflow:
.step,.stp: boundary-representation CAD, not a mesh. Export an STL sidecar with$cad(python scripts/step --kind part <input> --stl <output>.stl, or target the generator withpython scripts/step <model>.step.py --stl <output>.stl), then slice the exported.stlhere..dxf,.svg: 2D drawings with no 2D-to-mesh conversion in this toolchain. Model the 3D solid in$cadwithgen_step()and export an STL sidecar, then slice that. If the part is a flat cut rather than a print, use$sendcutsendinstead of this skill..urdf,.sdf: robot descriptions that reference per-link mesh files. Slice the referenced.stl/.objmeshes one at a time; regenerate stale or missing ones from the owning CAD source with$cadfirst. Use$urdfor$sdffor the robot description itself.
Read references/slicer-backends.md when backend behavior, profile expectations, or source links matter.
Validation
Always validate generated G-code before handing it to printer-specific workflows. The validator checks for non-empty content, temperature commands, movement commands, extrusion moves, XYZ bounds, and unknown command warnings.
Read references/gcode-validation.md when interpreting validation output or deciding whether a warning is acceptable.
Bambu Boundary
This skill generates plain .gcode only. It does not create Bambu .gcode.3mf archives and does not contact printers. For Bambu upload/start workflows, hand off the validated plain .gcode to $bambu-labs. Let $bambu-labs choose the printer-specific LAN handoff, such as an A1 Mini template project or an explicitly enabled bambox project package.
Version History
- 0.4.12 Current 2026-08-16 02:06
-
0.3.13
2026-08-02 21:21
修复了拒绝非网格输入时的错误处理:使用结构化修复映射替代扁平扩展名集合,明确命名转换技能并提供具体的下一步建议,优化了inspect和slice入口点的错误反馈。
- 0.3.9 2026-07-24 11:54


