MoveIt2 SRDF authoring, validation, and planning-semantics workflow. Use when creating, editing, inspecting, or validating `.srdf` files, MoveIt planning groups, virtual joints, passive joints, end effectors, group states, disabled collisions, URDF-paired planning semantics, or SRDF handoff for live review. Use the URDF skill for robot structure, the SDF skill for simulator descriptions, and the cad-viewer skill for rendering, live review links, and optional MoveIt2 controls.
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 MoveIt semantic robot descriptions on top of an existing valid URDF. SRDF defines planning semantics; it does not define physical robot structure. The .srdf file is the source of truth: author and edit the XML directly. There is no gen_srdf() contract.
SRDF correctness is a planning semantics problem. The common failure is not invalid XML; it is a plausible SRDF that gives MoveIt the wrong planning group, wrong tool link, wrong default state, unsafe disabled-collision matrix, or wrong joint units. Because language models are weak at spatial and kinematic reasoning, derive planning groups, end effectors, group states, and disabled collisions from the URDF topology, MoveIt Setup Assistant output, sampled collision analysis, or explicit user data. Do not infer them from visual theme alone — and do not type any link or joint name from memory: extract the URDF's link/joint table first and copy names from it.
Do not place geometry, inertials, joint origins, link poses, mesh references, physical joint limits, transmissions, or ros2_control interfaces in SRDF.
After completing SRDF work that creates or modifies a .srdf, you must ALWAYS hand the explicit file path to $cad-viewer when that skill is installed. $cad-viewer must start CAD Viewer if it is not already running and return link(s) to the relevant created or updated file(s); include optional MoveIt2 controls in the handoff only when the user needs interactive IK or path-planning review. If $cad-viewer is unavailable or startup fails, report that instead of silently omitting the handoff.
$urdf and validate it. The SRDF pairs with that URDF by colocation and robot name, and every name in the SRDF must exist in it.references/srdf-workflow.md.references/planning-ledger.md before writing XML; keep a compact copy as a comment block in the .srdf..srdf in the same folder as its .urdf, with the same <robot name> — that is the only linking mechanism. The validator, the viewer, and the MoveIt2 server all resolve the pairing by scanning the folder for the URDF whose robot name matches; exactly one URDF per robot name per folder. No metadata element links the files. See references/authoring-contract.md.references/disabled-collisions.md..srdf with scripts/validate; it cross-validates all names, chains, states, and pairs against the paired URDF. Fix findings and re-validate until clean.Run with the Python environment for the project or workspace. Treat python in examples as an interpreter placeholder; if bare python is unavailable, substitute python3, a project virtualenv interpreter, or the configured interpreter path. The validator uses only the Python standard library.
From this skill directory, the validator shape is:
python scripts/validate path/to/robot.srdf
python scripts/validate path/to/a.srdf path/to/b.srdf
python scripts/validate path/to/robot.srdf --strict
python scripts/validate path/to/robot.srdf --format jsonThe validator collects all findings in one pass (severity, code, XML path). It parses the SRDF, resolves the paired URDF (the same-folder .urdf whose robot name matches; none or several is an error), and cross-validates: group/joint/link/subgroup name existence, chain path resolvability, subgroup cycles, virtual/passive joints, end-effector topology, group-state membership/limits/completeness, disabled-collision pairs (including Adjacent-reason truthfulness), and misspelled elements. --strict treats warnings as failures; --format json emits a machine-readable findings document. It exits nonzero if any target fails. Relative targets resolve from the current working directory.
<robot name>; that colocation-plus-name match is the only pairing mechanism, and exactly one URDF per robot name may exist in the folder.$cad-viewer owns optional local moveit2_server guidance for interactive planning review.scripts/snapshot renders the robot to a PNG still or an orbit GIF, using the same shared CLI and headless browser runtime every rendering skill uses — so a snapshot matches what the CAD Viewer shows.
python scripts/snapshot --input path/to/robot.srdf --output review.png
python scripts/snapshot --input path/to/robot.srdf --output turntable.gif --mode orbitIt accepts .srdf only. Pose the robot with the job field "jointValues" (joint name to degrees, defaulting to the rest pose) rather than --params, which is STEP-only; robots are authored in metres and are framed on the robot scene scale automatically.
Theme settings live under one --theme, mirroring the viewer's Theme tab. The default theme is snapshot — Workbench Light with the ground grid, origin axis and shadows removed, because in a still image those read as geometry. There is no --display: display settings (mode, clip, exploded, edges) are CAD topology settings, and a robot carries none.
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.
Use python scripts/snapshot --help for the complete current command interface.
references/authoring-contract.mdreferences/srdf-workflow.mdreferences/planning-ledger.mdreferences/validation.mdreferences/end-effectors.mdreferences/disabled-collisions.mdFor local MoveIt2 controls, use $cad-viewer; in that skill, read references/moveit2-server.md.