ix-understand
Build a mental model of a system, subsystem, or the whole repo. Graph-first, no code reads unless necessary.
التثبيت باستخدام Codex أو Claude انسخ هذا Prompt والصقه في Codex أو Claude أو مساعد آخر ليراجع صفحة Skill ويثبّتها لك.
القائمة
Build a mental model of a system, subsystem, or the whole repo. Graph-first, no code reads unless necessary.
التثبيت باستخدام Codex أو Claude انسخ هذا Prompt والصقه في Codex أو Claude أو مساعد آخر ليراجع صفحة Skill ويثبّتها لك.
استنادا إلى تصنيف SOC المهني
Route to the right Ix skill or command for your task
Analyze system design — structure, coupling, code smells, and high-risk hotspots. Purely graph-based, no code reads.
Root cause analysis — trace execution path to a failure, narrow candidates, read minimal source only at suspected failure points.
Generate narrative-first, importance-weighted documentation for a repo, system, or subsystem with a selective reference layer. Use --full for deeper module/class/method coverage.
Change risk analysis — blast radius, affected systems, and what to test. Depth scales with risk level; low-risk targets stop early.
Deep dive into a symbol, feature, or bug. Graph-first, minimal code reads, early stopping when sufficient evidence found.
| name | ix-understand |
| description | Build a mental model of a system, subsystem, or the whole repo. Graph-first, no code reads unless necessary. |
Build an accurate mental model of the target's structure, purpose, and key components. Stop as soon as you can answer: what does this do, what are its key parts, and where should someone explore next?
If the Ix runtime is unavailable, ix_status will report this; proceed with best-effort analysis.
For most cases, call ix_query once and use the preview_markdown result as the primary answer:
ix_query({ mode: "understand", targets: [$ARGUMENTS], depth: "medium" })
Supplement with specific tools below if the response needs more detail.
Call in parallel:
ix_subsystems() — architectural regions, file counts, cohesionix_rank({ by: "dependents", kind: "class", top: 10 }) — most central classesix_rank({ by: "callers", kind: "function", top: 10 }) — most called functionsIf $ARGUMENTS is non-empty, also call:
ix_locate({ symbol: $ARGUMENTS }) — resolve the target in the graphExtract: region names, file counts, cohesion scores; top 3-5 structurally central components.
Stop here if: $ARGUMENTS is empty and rank + subsystems give a clear picture.
Pick the 2-4 most central or unclear components from Phase 1. Call in parallel:
ix_overview({ target: <component> }) for eachDo NOT call ix_explain yet — ix_overview is cheaper and sufficient for most components.
Stop here if: you can describe what each component does and how they relate.
For at most 2 components still unclear after Phase 2:
ix_explain({ symbol: <component> })Hard limits: No source code reads. No ix_map. No ix_trace. This skill never reads source code.
# [Target] — System Overview
## What it does
[One paragraph. Purpose, primary job, who uses it.]
## Key Components
- **X** (<kind>) — [role in one line, evidence: rank position / cohesion score]
- **Y** (<kind>) — [role in one line]
[3-5 max. Omit if fully explained by parent.]
## Structure
[Subsystem breakdown: name -> file count -> cohesion score -> what it owns]
## Where to explore next
- `ix-investigate <X>` — understand the most central component
- `ix-architecture` — analyze coupling and design health
- `ix-debug <X>` — if investigating a suspected bug
Evidence labels: Mark every claim as [graph] (direct tool data) or [inferred] (structural reasoning). Never state facts without one of these labels.