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building-simulink-models

Builds and edits Simulink, System Composer, Stateflow, and Simscape models

Install / Use

npx skills add matlab/simulink-agentic-toolkit --skill building-simulink-models

Installs into whichever agent you are using.

About this skill
📄

SKILL.md

Installable skill definition

Quality Score

87/100

Supported Platforms

Universal

Tags

Our assessment of building-simulink-models

building-simulink-models scores 87/100 on our quality scale, 2089th of 4,644 Development & Engineering skills we index (top 45%).

Its SKILL.md is 9.1 KB long, well organised into 11 sections with 3 code examples: a thorough specification that gives an agent plenty to work with.

With 1,148 GitHub stars, it is one of the more widely adopted skills in the catalogue.

Substance
29/30
Structure
18/20
Description
12/15
Adoption
13/20
Freshness
15/15

Maintenance, license and trust

  • The repository was last updated 18 days ago, so building-simulink-models is actively maintained.
  • No license is declared. By default that means all rights are reserved: you can read it, but reusing or redistributing it is not clearly permitted. Ask the author before building on it commercially.
  • Its trust signals score 88/100, with 1 caution from licensing, adoption, age or documentation. These come from repository metadata, not a code audit — read the skill file before letting an agent act on it.

building-simulink-models compared with similar skills

All 4 of these similar skills score higher than building-simulink-models; compare them before choosing.

SkillScoreStarsUpdatedFormat
building-simulink-models (this skill)by matlab871.1k18d agoSKILL.md
ai-job-searchby MadsLorentzen10045.0k1d agoCLAUDE.md
claude-howtoby luongnv8910041.7k5d agoCLAUDE.md
algorithmic-artby anthropics100177.9k12d agoSKILL.md
pptxby anthropics100177.9k12d agoSKILL.md

Frequently asked questions

How do I install building-simulink-models?
Run npx skills add matlab/simulink-agentic-toolkit --skill building-simulink-models. The install tabs above show the steps for each supported agent.
Which AI agents does building-simulink-models work with?
It is written for Universal, as a SKILL.md file. Other agents that read the same format can often use it too.
Is building-simulink-models safe to use?
It declares no license and scores 88/100 on trust signals. Skills are instructions an agent will follow, so read the file before installing it and do not approve commands you do not understand.
Is building-simulink-models still maintained?
The repository was last updated 18 days ago, so building-simulink-models is actively maintained.

name: building-simulink-models description: Builds and edits Simulink, System Composer, Stateflow, and Simscape models. Use when modifying model structure, parameters, ports, connections, or Stateflow chart internals. license: https://www.mathworks.com/content/dam/mathworks/license/pmrl/license.md metadata: author: MathWorks version: "1.5"

Building Models

Use model_edit for all structural changes — Simulink, System Composer, Simscape, and Stateflow chart internals

When to Use

  • Adding, connecting, deleting, or replacing blocks in a model
  • Configuring block parameters, signal properties, or model settings
  • Creating or editing Stateflow chart internals (states, transitions, junctions, data, events, messages, functions)
  • Building System Composer architecture models
  • Wiring Simscape physical connections

When NOT to Use

  • Querying parameter values → use model_query_params
  • Resolving variable references to numeric values → use model_resolve_params

Library & Policy Prerequisites — BLOCKING GATE

Do this FIRST — evaluate the result before any other tool call. Do not narrate the gate check to the user; proceed silently based on the result.

Call library.settingsLookup() to check for custom library configuration. It returns a struct with resolved absolute paths:

  • found — whether a libraries file was located (satk-libraries.json or legacy reuse-libraries.json)
  • enabled — whether custom libraries are configured
  • gatePass — whether the gate is satisfied (can proceed to build)
  • kgIndexPath — absolute path to library-kg/index.md
  • librariesPath — absolute path to the libraries file
  • policyPath — absolute path to block-policy.json
  • dataRoot — absolute path to the directory containing .satk/

Interpret the result:

  • found: false → no custom libraries configured. Proceed with standard Simulink blocks.
  • gatePass: true, found: true → read kgIndexPath for block lookup, then plan and edit.
  • gatePass: false → invoke setup-custom-libraries to populate the Knowledge Index.

Display meaningful description of each check and result instead of stating gate Pass/fail.

No model reading, planning, or editing begins until the gate passes.

Workflow

  1. Ensure Library & Policy Prerequisites: See BLOCKING GATE above. Do not proceed until gates pass.
  2. Library block lookup: List every block type you plan to use, search .satk/library-kg/index.md and the relevant category pages to find each of the library blocks that match.
  3. Read first: Use model_read on the target scope to get block IDs and understand existing topology.
  4. Plan the data flow: For complex edits, sketch inputs → operations → outputs, then map to blocks identified in Step 1 & 2.
  5. Edit: Use model_edit with operations scoped to one subsystem level at a time.
  6. Verify: Use model_read on the scope to confirm the structure matches your intent.
  7. Check connectivity: After all edits in a scope are complete, run model_check to catch unconnected ports or dangling lines. Fix any error-severity issues.

If model_edit returns status: partial: Run both model_read and model_check immediately — don't wait until all edits are complete.

Operation Chaining with ref

Use ref to name a block and #ref to reference it in later operations within the same call:

[{"op": "add_block", "type": "Gain", "name": "MyGain", "ref": "g1"},
 {"op": "connect", "target": "blk_5.y1 -> #g1.u1"}]

In SF scope, #ref references are portless — no .y1/.u1 suffixes (see references/stateflow.md).

The response created map shows ref → blk_id (or ref → sf_X in SF scope). In subsequent calls, use the returned ID — #ref only works within a single call.

Guardrails

  • Never manually construct block path strings from names shown in model_overview or model_read. Block names can contain invisible newlines and trailing whitespace that cause hilite_system, open_system, and get_param to fail. Instead, resolve paths from blk_X IDs:
    % blk_42 → use the number after "blk_" as the SID
    blockPath = Simulink.ID.getFullName('<ModelName>:42');
    hilite_system(blockPath)
    open_system(blockPath)
    get_param(blockPath, 'BlockType')
    
  • Do not call Simulink.BlockDiagram.arrangeSystem or use set_param for block positioning unless the user explicitly requests it. model_edit has a built-in autolayout engine that runs automatically after each call.
  • Always pass layout_mode to model_edit. Use "full" when populating an empty scope (new model root, or a newly-created subsystem) for optimal block arrangement. Use "incremental" when adding blocks to a scope that already has existing blocks (preserves existing positions).
  • Each model_edit call operates in exactly one domain (Simulink, System Composer, or Stateflow) determined by the scope. To add a Chart block and then populate it, use two calls: SL scope for the Chart block, then SF scope for internals. Use model_read between calls to discover the chart's sf_X scope ID.
  • Use meaningfully named variables (e.g., Kp_SpeedController) instead of hardcoded numeric values. Define variables in model workspace or a .m init script.
  • Don't use evaluate_matlab_code with set_param/add_block to bypass model_edit — it skips autolayout, undo tracking, and error recovery
  • Use open_system rather than load_system to open models that are not already open, or when creating new models, unless the user explicitly asks otherwise or the model is a library. This ensures the user can see live edits as they happen.

Naming Conventions

Prefer code-generation-safe names for blocks, signals, and variables:

  • Use only: a-z, A-Z, 0-9, underscore (_)
  • Don't start with a number
  • Don't use leading/trailing or consecutive underscores
  • Prefer names under 32 characters (required for some code generation targets)

Block Types

Use the block's display name in the type field. Do not construct or guess library paths.

  • Custom library blocks (from satk-libraries.json): pass both type AND ReferenceBlock fields. Set type to the block's display name and ReferenceBlock to the full library path from the library KG.

  • Toolbox KB blocks (from activeToolboxes): Use them exactly like custom library blocks — reference the type and ReferenceBlock fields from the toolbox category page in the library KG.

  • Built-in Simulink blocks: Use the BlockType directly: Gain, Sum, Constant, Integrator, SubSystem, Scope

  • Library blocks (Simscape, Aerospace, DSP, Communications, etc.): Use the display name as it appears in the Simulink Library Browser: Voltage Source, Resistor, DC Motor, Solver Configuration, 6DOF (Euler Angles)

  • If model_edit returns INVALID_TYPE: Fall back to the full library path from MATLAB documentation (e.g., ee_lib/Sources/Voltage Source)

[{"op": "add_block", "type": "In", "ReferenceBlock": "customLib_Portsandsubsystems/In", "name": "Voltage", "ref": "v1"},
 {"op": "add_block", "type": "Gain", "ReferenceBlock": "customLib_Mathoperations/Gain", "name": "Kp", "ref": "g1"},
 {"op": "add_block", "type": "Add", "ReferenceBlock": "customLib_Mathoperations/Add", "name": "SumErr", "ref": "s1"},
 {"op": "add_block", "type": "Out", "ReferenceBlock": "customLib_Portsandsubsystems/Out", "name": "Output", "ref": "o1"}]
[{"op": "add_block", "type": "Voltage Source", "name": "V1", "ref": "v1"},
 {"op": "add_block", "type": "Resistor", "name": "R1", "ref": "r1"},
 {"op": "add_block", "type": "Electrical Reference", "name": "Gnd", "ref": "gnd"},
 {"op": "add_block", "type": "Solver Configuration", "name": "Solver", "ref": "sc"}]

Review Gate

After completing all edits for a scope, verify:

  • No error-severity issues from model_check (unconnected ports, dangling lines)
  • All ref names resolved to blk_id in the created map — no dangling #ref references in subsequent calls
  • Stateflow charts pass lint (model_check with checks='["stateflow_lint"]') before layout is applied
  • If model_edit returned status: partial at any point, confirm the scope is now structurally complete via model_read

Domain-Specific Rules

When working with these domains, read the corresponding reference file before editing:

  • Stateflow charts -> references/stateflow.md — model_edit edits chart internals natively. Scope to a chart (sf_X or chart blk_X) and use the same operations: add_block for SF elements, portless connect for transitions, configure for properties. The reference covers SF-specific syntax, scoping, LabelString patterns, and the two-call SL+SF workflow.
  • System Composer architecture models -> references/system-composer.md — Create models with systemcomposer.createModel, then use model_edit. Components use type: "SubSystem", ports use Bus Element blocks. The reference covers component creation, port wiring, and behavior model generation.
  • Simscape physical models -> references/simscape.md — Physical connections use bidirectional <-> syntax. The reference covers connection semantics, port patterns, and initial target variables.

Copyright 2026 The MathWorks, Inc.


Related Skills

View on GitHub
GitHub Stars1.1k
CategoryDevelopment
Updated18d ago
Forks106

Languages

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Trust signals

88/100

From repository metadata: license, adoption, age and documentation. Not a code audit — see the Safety scan above for what the skill file itself contains.

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