Files

JSON to CDSL

This program converts SolidWorks export JSON into parameterized Learning IR (*.cdsl.json).

Conversion responsibilities:

  • normalize SolidWorks JSON into an intermediate representation;
  • classify sketches into named parameterized profiles;
  • reuse equivalent profiles through semantic references;
  • derive deterministic geometry through the sketch solver;
  • remove avoidable floating-point noise;
  • report unsupported or non-self-sufficient shapes.

The converter must not hide missing geometry behind an external context file when producing a training-ready CDSL artifact.

Evidence v2 batch converter

evidence_v2_to_cdsl.py converts the newer solidworks.cad_evidence.v2 extraction format into semantic CDSL v1.1. It does not modify the current rebuild engine: features without a runtime implementation are emitted with execution_status: "deferred" instead.

PYTHONPATH=backend/engine python json_to_cdsl/evidence_v2_to_cdsl.py \
  json_to_cdsl/input/evidence_v2 \
  --truth-dir json_to_cdsl/input/evidence_v2/truth \
  --out json_to_cdsl/output \
  --workers 1

For every *.solidworks_evidence_v2.json input it writes:

  • <part_id>.cdsl.json: self-contained semantic CDSL in millimetres;
  • <part_id>.diagnostic.json: source blockers, deferred features, optional inferred_from_step selectors, semantic validation, and STEP-versus-source bounding-box/volume/area/topology metrics;
  • manifest.json: batch-level counts and paths.

The optional STEP directory is used only to infer a host face when exactly one candidate is compatible with a Hole Wizard's captured locations. Ambiguous geometry stays in unresolved; the converter never invents a selector.

Source records are discovered recursively. Output remains flat and is named by the normalized full source filename. Files that normalize to the same part ID receive a deterministic relative-path hash suffix, so every input record maps to a distinct output. When a matching STEP file exists, it is resolved through the same relative subdirectory as its source record.

Onshape API samples

download_onshape_samples.py downloads raw Onshape v9 feature-list responses for a small set of public ABC Part Studios. Create a personal API key in the Onshape developer settings, then keep the credentials out of the repository:

export ONSHAPE_ACCESS_KEY='...'
export ONSHAPE_SECRET_KEY='...'
python json_to_cdsl/download_onshape_samples.py --count 3

If the environment variables are absent, the program prompts without echoing the values. Output is written under json_to_cdsl/input/onshape_api_samples/<abc_id>/features.json; this input directory is ignored by Git. Use --url ID=URL for another Part Studio or --url-file to read ABC objects_*.yml mappings.

Complete Onshape sample

download_onshape_complete.py saves the complete public-API representation of one Part Studio. It is the appropriate input for building a CDSL converter: the directory includes the feature tree, sketch definitions and constraints, FeatureScript representation, parts, body/topology data, mass properties, tessellations, previews, native Parasolid, STL, and an independently exported AP242 STEP reference model.

export ONSHAPE_ACCESS_KEY='...'
export ONSHAPE_SECRET_KEY='...'
python json_to_cdsl/download_onshape_complete.py --id 00000352

The result is written to json_to_cdsl/input/onshape_complete/00000352/manifest.json. Every successful artifact has a byte count and SHA-256 in that manifest. Failed endpoints are also recorded, rather than silently omitted. This is all data exposed by the public API for the selected Part Studio; it is not an internal .onshape document backup, which Onshape does not expose as a download format.