OpticalModeler

作者 k-telux已验证

Evidence-gated Agent Skill for reconstructing 2D photonics schematics as physically auditable Blender optical tables with CAD, beam-path, mechanics, and render proof.

213
Stars
2
Forks
Python
语言
2026/8/23
添加时间

⚠️ 第三方软件声明

本 Skill 为第三方开源软件,独立托管于 GitHub。SkillTip 仅为信息目录,不控制或维护底层仓库。所显示的安全检查为自动化且范围有限,安装前请自行审查源码。

阅读服务条款

安装

添加到你的 Claude Code skills 目录:

# Add to your Claude Code skills
git clone https://github.com/k-telux/OpticalModeler

快速入门

使用 OpticalModeler 等 Skills 的指南。

安全报告

已验证

上次扫描:—

{
  "status": "PASSED",
  "issues": []
}

README.md

OpticalModeler

From 2D photonics schematics to physically auditable Blender optical tables.

Validation Agent Skills Blender License: MIT

OpticalModeler is an evidence-first Agent Skill for reconstructing laboratory optical paths in Blender. It treats optical topology, real apertures, manufacturer CAD, fasteners, load paths, fiber routing, and artifact lineage as hard acceptance gates—not decorative details.

Independent community project. Not affiliated with or endorsed by Thorlabs, Inc. Product names identify compatible hardware only. A rendered CAD assembly is not a mechanical, spectral, laser-safety, or experimental certification.

Why OpticalModeler

Physical assembly Optical truth Fail-closed evidence

Post-first placement, real table holes, fasteners, load paths, and supported hardware. Centered apertures, splitter planes, branch continuity, internal fine beams, and fiber bend constraints. Reopened-scene audits, ray/BVH checks, hashes, manifests, annotated renders, and explicit PASS / BLOCKED / UNVERIFIED states.

2D input → verified 3D output

Original schematic Annotated 3D reconstruction

The sanitized G1/G2 case study includes the original 2D input, editorial 3D renders, and a machine-readable acceptance record. Vendor STEP/CAD files and the large laboratory .blend are intentionally excluded.

Unified whole-system workflow

The primary workflow is now one ordered run with one run ID, one revision, one writer, one generator lineage, one Blender-scene lineage, and one append-only evidence ledger. Source locking, topology, CAD provenance, representative smoke, full-scene propagation, saved-scene reopen, optomechanical audit, rendering, and sanitization are gates in that same run—not independently authored modules that can be stitched together later.

Start with the end-to-end workflow contract, the single-run N04 deterministic replay, and its fresh whole-system runbook. The static replay intentionally stops at UNVERIFIED because the repository excludes vendor CAD and the saved representative .blend; downstream gates remain pending instead of inheriting a partial PASS. A fresh private revision can execute the included fetch, build, reopen, audit, and sanitization scripts end to end.

Public-only forward tests

Four isolated tests started from the published v1.0.0 tag and used no private Optical Path guidance. They cover a 32-node light-sheet path, a 40-node multi-state interferometer, an OCT representative smoke, and a Thorlabs CAD conversion benchmark.

Track Accepted verdict Reproduced failure

Light-sheet / N04 Propagation PASS, model PARTIAL_SCOPED, release BLOCKED Public lock replay drifted from the saved scene until semantic replay and explicit overrides were added.

Interferometer PARTIAL_SCOPED, release BLOCKED README/GATE duplicated stale ray and port counts instead of deriving them from reopen evidence.

OCT UNVERIFIED, propagation blocked Package integrity passed while first-hit and load-path evidence remained incomplete.

CAD conversion BLOCKED PNG metadata leaked local paths; after sanitization, a separate CAD meshing blocker correctly remained.

The forward-test matrix remains a historical defect-discovery record. Its four packages are not inputs that may be combined into one whole-system result.

Install

With a compatible Agent Skills installer:

npx skills add k-telux/OpticalModeler

Or copy skills/thorlabs-blender-optical-path into your agent's skills directory.

Quick start

Send message below to your agent:

Use $thorlabs-blender-optical-path to reconstruct this 2D schematic in Blender.
Audit this optical table for real post/load paths, centered apertures, beam clearance, fiber bend radius, and stale evidence.

The skill guides the agent to:

  • map schematic nodes to experimental roles, real assets, ports, and support paths;

  • freeze exact directed topology and official-CAD provenance;

  • replay public lock scripts to the same normalized semantic parameters;

  • solve optical centers, surfaces, splitter planes, and branch continuity;

  • assemble hardware post-first from verified table holes;

  • prove one representative instance before propagation;

  • reopen the saved scene and run mesh, ray, BVH, and load-path checks;

  • derive public claims from evidence and scan binary/container metadata before packaging.

Validation and limits

  • Manufacturer CAD is an asset source, never proof of correct assembly.

  • Free-space rays, guided fiber, and electrical cables remain semantically distinct.

  • Whole-project success requires an active-rule compliance matrix; scoped evidence stays PARTIAL/SCOPED.

  • The repository excludes third-party CAD, private paths, oversized Blend files, and unsupported real-world performance claims.

  • Public scripts must replay the published semantic locks; prose counts must match saved-reopen evidence.

  • Every release is checked for skill metadata, links, file size, ASCII/UTF-16 privacy leaks, forbidden CAD binaries, PNG metadata/CRC/decompression, manifest hashes, and acceptance-state consistency.

See CONTRIBUTING.md for rule proposals and case-study submissions, THIRD_PARTY_NOTICES.md for retained literature licensing, and SECURITY.md for responsible disclosure.

Maintained by telux. Released under the MIT License.

常见问题

What is OpticalModeler?

OpticalModeler is an open-source ai agents skill for AI coding assistants such as Claude Code, Codex CLI, and ChatGPT, built by k-telux. Evidence-gated Agent Skill for reconstructing 2D photonics schematics as physically auditable Blender optical tables with CAD, beam-path, mechanics, and render proof. It has 213 GitHub stars.

Is OpticalModeler safe to use?

Yes. OpticalModeler passed SkillsLLM's automated security scan — a dependency vulnerability audit plus prompt-injection heuristics — with no high-severity issues. You can read the full report in the Security Report section on this page.

How do I install OpticalModeler?

Clone the repository with "git clone https://github.com/k-telux/OpticalModeler" and add it to your Claude Code skills directory (see the Installation section above).

What programming language is OpticalModeler written in?

OpticalModeler is primarily written in Python. It is open-source under k-telux on GitHub, so you can review or fork the full source.

Are there alternatives to OpticalModeler?

Yes. SkillsLLM lists many other AI Agents skills you can browse and compare side by side. Open the AI Agents category from the badge at the top of this page, or use the Related Skills and comparison links further down to weigh OpticalModeler against similar tools.

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