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name: gstack-openclaw-investigate description: Use when asked to debug, fix a bug, investigate an error, or do root cause analysis, and when users report errors, stack traces, unexpected behavior, or say something stopped working.

Systematic Debugging

Iron Law

NO FIXES WITHOUT ROOT CAUSE INVESTIGATION FIRST.

Fixing symptoms creates whack-a-mole debugging. Every fix that doesn't address root cause makes the next bug harder to find. Find the root cause, then fix it.


Phase 1: Root Cause Investigation

Gather context before forming any hypothesis.

  1. Collect symptoms: Read the error messages, stack traces, and reproduction steps. If the user hasn't provided enough context, ask ONE question at a time. Don't ask five questions at once.

  2. Read the code: Trace the code path from the symptom back to potential causes. Search for all references, read the logic around the failure point.

  3. Check recent changes:

    git log --oneline -20 -- <affected-files>
    

    Was this working before? What changed? A regression means the root cause is in the diff.

  4. Reproduce: Can you trigger the bug deterministically? If not, gather more evidence before proceeding.

  5. Check memory for prior debugging sessions on the same area. Recurring bugs in the same files are an architectural smell.

Output: "Root cause hypothesis: ..." ... a specific, testable claim about what is wrong and why.


Phase 2: Pattern Analysis

Check if this bug matches a known pattern:

Race condition ... Intermittent, timing-dependent. Look at concurrent access to shared state.

Nil/null propagation ... NoMethodError, TypeError. Missing guards on optional values.

State corruption ... Inconsistent data, partial updates. Check transactions, callbacks, hooks.

Integration failure ... Timeout, unexpected response. External API calls, service boundaries.

Configuration drift ... Works locally, fails in staging/prod. Env vars, feature flags, DB state.

Stale cache ... Shows old data, fixes on cache clear. Redis, CDN, browser cache.

Also check:

  • Known issues in the project for related problems
  • Git log for prior fixes in the same area. Recurring bugs in the same files are an architectural smell, not a coincidence.

External search: If the bug doesn't match a known pattern, search for the error type online. Sanitize first: strip hostnames, IPs, file paths, SQL, customer data. Search the error category, not the raw message.


Phase 3: Hypothesis Testing

Before writing ANY fix, verify your hypothesis.

  1. Confirm the hypothesis: Add a temporary log statement, assertion, or debug output at the suspected root cause. Run the reproduction. Does the evidence match?

  2. If the hypothesis is wrong: Search for the error (sanitize sensitive data first). Return to Phase 1. Gather more evidence. Do not guess.

  3. 3-strike rule: If 3 hypotheses fail, STOP. Tell the user:

    "3 hypotheses tested, none match. This may be an architectural issue rather than a simple bug."

    Options:

    • Continue investigating with a new hypothesis (describe it)
    • Escalate for human review (needs someone who knows the system)
    • Add logging and wait (instrument the area and catch it next time)

Red flags ... if you see any of these, slow down:

  • "Quick fix for now" ... there is no "for now." Fix it right or escalate.
  • Proposing a fix before tracing data flow ... you're guessing.
  • Each fix reveals a new problem elsewhere ... wrong layer, not wrong code.

Phase 4: Implementation

Once root cause is confirmed:

  1. Fix the root cause, not the symptom. The smallest change that eliminates the actual problem.

  2. Minimal diff: Fewest files touched, fewest lines changed. Resist the urge to refactor adjacent code.

  3. Write a regression test that:

    • Fails without the fix (proves the test is meaningful)
    • Passes with the fix (proves the fix works)
  4. Run the full test suite. No regressions allowed.

  5. If the fix touches >5 files: Flag the blast radius to the user before proceeding. That's large for a bug fix.


Phase 5: Verification & Report

Fresh verification: Reproduce the original bug scenario and confirm it's fixed. This is not optional.

Run the test suite.

Output a structured debug report:

DEBUG REPORT

  • Symptom: what the user observed
  • Root cause: what was actually wrong
  • Fix: what was changed, with file references
  • Evidence: test output, reproduction showing fix works
  • Regression test: location of the new test
  • Related: prior bugs in same area, architectural notes
  • Status: DONE | DONE_WITH_CONCERNS | BLOCKED

Save the report to memory/ with today's date so future sessions can reference it.


Important Rules

  • 3+ failed fix attempts: STOP and question the architecture. Wrong architecture, not failed hypothesis.
  • Never apply a fix you cannot verify. If you can't reproduce and confirm, don't ship it.
  • Never say "this should fix it." Verify and prove it. Run the tests.
  • If fix touches >5 files: Flag to user before proceeding.
  • Completion status:
    • DONE ... root cause found, fix applied, regression test written, all tests pass
    • DONE_WITH_CONCERNS ... fixed but cannot fully verify (e.g., intermittent bug, requires staging)
    • BLOCKED ... root cause unclear after investigation, escalated

Overview

gstack-openclaw-investigate is a free skill on OpenRuna. Use when asked to debug, fix a bug, investigate an error, or do root cause analysis, and when users report errors, stack traces, unexpected behavior, or say something stopped worki

What this skill does

"gstack-openclaw-investigate" packages a proven skill so you can skip the trial-and-error of writing one from scratch. Use when asked to debug, fix a bug, investigate an error, or do root cause analysis, and when users report errors, stack traces, unexpected behavior, or say something stopped working. It is catalogued next to similar resources on OpenRuna, so the rest of the toolkit you need is close by. Paste it straight into a chat, drop it into a system prompt, or store it as a reusable skill.

Use cases

  • Reach for it during planning or review sessions when you want consistent, AI-assisted structure.
  • Combine it with related tools and prompts in the same OpenRuna category to build an end-to-end workflow.
  • Hand "gstack-openclaw-investigate" to a new teammate so their skill output matches your team's quality bar from day one.
  • Use "gstack-openclaw-investigate" when you need a repeatable skill for professional work without rewriting instructions every time.

Example output

Running this skill produces output shaped like the source material below:

# Systematic Debugging

## Iron Law

**NO FIXES WITHOUT ROOT CAUSE INVESTIGATION FIRST.**

Fixing symptoms creates whack-a-mole debugging. Every fix that doesn't address root cause makes the next bug harder to find. Find the root cause, then fix it.

---

## Phase 1: Root Cause Investigation

Gather context before forming any hypothesis.

1. **Collect symptoms:** Read the error messages, stack traces, and reproduction steps. If the user hasn't provided enough context, ask ONE question at a time. Don't ask five questions at once.

2. **Read the code:** Trace the code path from the symptom back …

Results vary by model and temperature; treat the first response as a draft and refine it with follow-up prompts.

Tips by platform

Claude

With Claude, drop this skill into Project knowledge so every chat in the project inherits it. Ask Claude to restate the goal first, then run — it catches edge cases early.

ChatGPT

For ChatGPT, save this skill as a Custom Instruction or a saved prompt so it is one click away. Add your specifics in a follow-up rather than editing the original.

Cursor

Cursor users can store this skill as a project rule so Agent mode applies it automatically. Mention it with @ when you want it scoped to a single task.

Frequently asked questions

What is "gstack-openclaw-investigate"?
It is a skill listed on OpenRuna — Use when asked to debug, fix a bug, investigate an error, or do root cause analysis, and when users report errors, stack traces, unexpected behavior, or say something stopped working. You can copy and adapt it for ChatGPT, Claude, Cursor, or any other AI assistant.
Is "gstack-openclaw-investigate" free to use?
Most OpenRuna resources are open or CC0-licensed. Check the license shown on this page before commercial use; premium collections are clearly marked as such.
How do I get the best results from this skill?
Replace any placeholders, add your project context, and ask the model to confirm its assumptions first. Iterate over 2–3 follow-up turns rather than expecting a perfect first response.
Does "gstack-openclaw-investigate" work with both Claude and ChatGPT?
Yes — it is model-agnostic text, so it runs on Claude, ChatGPT, Gemini, and Cursor. The tips on this page cover each of those assistants specifically.
Where can I find resources related to "gstack-openclaw-investigate"?
Scroll to the Related resources section on this page, or open the matching category hub on OpenRuna to find connected prompts, tools, agents, and datasets in the same topic area.

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