urdf
URDF robot description authoring and validation. Use when creating, editing, inspecting, validating, or debugging `.urdf` files, robot links, joints, limits, inertials, visual/collision geometry, mesh references, frame conventions, or robot-description artifacts. Use the SRDF skill for MoveIt2 semantic groups and IK/path-planning semantics; use the CAD skill for STEP/STL/3MF/DXF/GLB outputs.
Install
npx skills add https://github.com/earthtojake/text-to-cad --skill urdfURDF
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 URDF robot-description outputs. Treat URDF work as constrained kinematic modeling, not just XML writing. The main correctness risks are frame placement, joint-axis semantics, unit consistency, mesh scale, and inertial data.
Setup
This skill's commands are thin entrypoints over the cadgen distribution, which
carries the Python build runtime and the JavaScript it executes. Install it once:
python -m pip install -r requirements.txt
Snapshots additionally need a browser, which pip cannot supply:
python -m playwright install chromium
Core Rules
- The
.urdffile is the source of truth. Author and edit URDF XML directly; do not build a Python generation pipeline for it. There is nogen_urdf()contract. - Before writing or changing URDF XML, establish the robot's frame, joint, geometry, unit, and assumption ledger and embed it as a comment block at the top of the
.urdffile. Seereferences/design-ledger.md. - Use URDF frame semantics exactly. Joint origins, link frames, joint axes, and visual/collision/inertial origins use different reference frames. See
references/frame-semantics.md. - Do not infer spatial transforms, mesh units, handedness, axes, or joint signs from vague prose. Use CAD transforms, dimensioned drawings, measured values, existing source data, or explicit documented assumptions.
- Never freehand numeric values that are the result of computation — inertia tensors, centers of mass, unit conversions across many links, mirrored transforms. Compute them: closed-form formulas for primitives, or a throwaway helper script for mesh-derived values. See
references/inertials.md. - For physical links, model
inertial,visual, andcollisionseparately when the target consumer needs them. Frame-only links may intentionally omit mass and geometry. - Validate every created or modified
.urdfwithcadgen urdf validatebefore reporting completion. Seereferences/validation.md. - Helper scripts are allowed and encouraged for computation, but they are scaffolding, not the artifact's source of truth. For complex or genuinely parametric models it is reasonable to keep a model-local helper script on disk next to related source code (for example STEP generator sources) and note it in the ledger; this is optional, and the checked-in
.urdfremains canonical.
CAD Viewer
After creating or updating URDF files, always run the command below and return live links, even if a viewer is already running. Snapshots and validation do not replace this step. Use it also to open existing files.
Run from the directory containing the project’s models, usually models/.
The viewer lists files recursively beneath this directory, so choose it rather
than an individual artifact’s output folder.
cd /absolute/path/to/model-workspace && cadgen viewer --host 127.0.0.1 --json
The launcher starts or reuses the correct instance. Read url from its final
JSON line; never guess the port. Verify each artifact exists under the root,
then append ?file=<URL-encoded path relative to that root> to return one link
per file. For directory review, return the origin alone.
If launching fails, report the failure explicitly.
Review mesh scale and placement, then sweep every movable joint against the design ledger. A link alone does not complete the viewer sweep; report any checks you could not perform.
Workflow
- Identify the target
.urdffile and its consumers: RViz, robot_state_publisher, Gazebo/Ignition, MoveIt, a real robot driver, or another simulator. - Read or create the design ledger before editing frames, origins, axes, mesh scale, limits, or inertials. Keep the ledger as a comment block in the
.urdfitself. - Prepare mesh assets first when links reference meshes: one mesh per link, exported in that link's frame by the owning CAD/mesh workflow. See
references/meshes.md. - Author or edit the URDF XML directly, following
references/authoring-contract.mdfor structure, ordering, and naming. - Compute — never guess — inertials and other derived numbers. See
references/inertials.md. - Validate with
cadgen urdf validate; fix findings and re-validate until clean. - Run the verification recipe in
references/validation.md: external tools when available (check_urdf), then a viewer review sweeping every joint. - Report remaining assumptions, unchecked spatial data, and validation gaps.
Commands
Run cadgen from the Python environment this skill's requirements.txt was installed into (python -m cadgen.cli <verb> with that interpreter is the PATH-independent equivalent). cadgen doctor <skill-dir> verifies the installed cadgen matches this skill's pin — docs drift silently on a mismatched install. Validation itself needs nothing beyond the Python standard library; only snapshots need the browser. Use cadgen <verb> --help for the complete current interface.
The validator shape is:
cadgen urdf validate path/to/robot.urdf
cadgen urdf validate path/to/robot.urdf --strict
cadgen urdf validate path/to/robot.urdf --json
cadgen urdf validate path/to/robot.urdf --packages robot_description=/path/to/pkg
cadgen urdf snapshot path/to/robot.urdf review.png
The validator collects all findings in one pass (severity, code, XML path) across XML structure, tree topology, joint semantics (limits, mimic, dynamics), geometry, mesh references, materials, inertial physics, and misspelled elements, and prints a summary. One run validates ONE file: --strict treats warnings as failures; --json prints one line of {"ok", "path", "issues": [{"severity", "code", "message", "element", "hint"}], "summary"}, where element is the XML path; --packages NAME=PATH resolves package:// mesh URIs and repeats for several roots. It exits nonzero if the target fails. Relative targets resolve from the current working directory; run from the workspace that owns the files.
Validation is a guardrail, not spatial proof: a URDF can pass every structural check while placing a joint in the wrong spot. The ledger and viewer sweep exist for that reason.
Snapshot Tool
cadgen urdf snapshot renders the robot to a PNG still, using the same shared
CLI and headless browser runtime every rendering skill uses — so a snapshot matches what
the CAD Viewer shows.
cadgen urdf snapshot path/to/robot.urdf review.png
It accepts .urdf only. Pose the robot with --joint-values — {joint: degrees} JSON,
joints you do not name staying at their defaults, where the CAD Viewer opens the robot (the
"jointValues" job field is the same thing in a packet). The snapshot draws the robot with the
viewer's own scene, so it shows what the viewer shows, and a link mesh that cannot be loaded
fails it rather than leaving the link out. Robots are authored in metres and are framed on the
robot scene scale automatically.
A normal snapshot uses the Solid preset and Light appearance; omitted groups inherit preset defaults.
Pass --display render for the shared photographic scene. Inline display JSON and
JSON files use grouped settings such as lighting, background, and floor;
appearance is light (default) or dark. Projection and focal length belong
in display.camera. Top-level --camera and --joint-values remain active in every display
mode. The display modes are solid and render: edges, clip, exploded, the
xray, hidden-line and wireframe modes and the hidden/off surface styles
describe a STEP model's CAD edges, parts and solids, and are refused by name here.
Link meshes are resolved relative to the description, so they must be present: an
unhydrated Git LFS pointer fails as "No link mesh loaded for robot". Run
git lfs checkout <mesh dir> first.
The grammar is cadgen urdf snapshot TARGET [OUT] [flags], the same one every
format door uses. Use cadgen urdf snapshot --help for the complete current
interface — the flags a robot cannot act on are absent from it, not refused by it.
References
- Authoring contract (structure, ordering, golden skeleton):
references/authoring-contract.md - Design ledger:
references/design-ledger.md - Frame semantics:
references/frame-semantics.md - Mesh preparation and references:
references/meshes.md - Inertials (formulas, scripts, sanity gates):
references/inertials.md - URDF edit workflow:
references/urdf-workflow.md - Validation and verification recipe:
references/validation.md