一键导入
systematic-debugging
Diagnose hard bugs, regressions, and test failures via feedback-loop discipline and root-cause first. Trigger: diagnose, debug, broken.
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Diagnose hard bugs, regressions, and test failures via feedback-loop discipline and root-cause first. Trigger: diagnose, debug, broken.
用 Codex 或 Claude 帮你安装 复制这段 Prompt,粘贴到 Codex、Claude 或其他助手里,让它检查 Skill 页面并帮你完成安装。
基于 SOC 职业分类
| name | systematic-debugging |
| description | Diagnose hard bugs, regressions, and test failures via feedback-loop discipline and root-cause first. Trigger: diagnose, debug, broken. |
A discipline for hard bugs. Skip phases only when explicitly justified.
When exploring the codebase, use the project's domain glossary to get a clear mental model of the relevant modules, and check ADRs in the area you're touching.
NO FIXES WITHOUT ROOT CAUSE INVESTIGATION FIRST
Symptom fixes are failure. If you haven't built a feedback loop and reproduced the bug, you cannot propose fixes. Violating the letter of this process is violating the spirit of debugging.
For ANY technical issue: test failures, production bugs, unexpected behavior, performance problems, build failures, integration issues.
Use this ESPECIALLY when:
Don't skip when:
This is the skill. Everything else is mechanical. If you have a fast, deterministic, agent-runnable pass/fail signal for the bug, you will find the cause — bisection, hypothesis-testing, and instrumentation all just consume that signal. If you don't have one, no amount of staring at code will save you.
Spend disproportionate effort here. Be aggressive. Be creative. Refuse to give up.
git bisect run it.scripts/hitl-loop.template.sh so the loop is still structured. Captured output feeds back to you.Build the right feedback loop, and the bug is 90% fixed.
Treat the loop as a product. Once you have a loop, ask:
A 30-second flaky loop is barely better than no loop. A 2-second deterministic loop is a debugging superpower.
The goal is not a clean repro but a higher reproduction rate. Loop the trigger 100×, parallelise, add stress, narrow timing windows, inject sleeps. A 50%-flake bug is debuggable; 1% is not — keep raising the rate until it's debuggable.
When the system has multiple components (CI → build → signing, API → service → database), instrument every boundary before guessing:
For EACH component boundary:
- Log what data enters component
- Log what data exits component
- Verify environment/config propagation
- Check state at each layer
Run once to gather evidence showing WHERE it breaks
THEN analyze evidence to identify failing component
THEN investigate that specific component
This reveals which layer fails — secrets → workflow ✓, workflow → build ✗ — instead of letting you guess.
Stop and say so explicitly. List what you tried. Ask the user for: (a) access to whatever environment reproduces it, (b) a captured artifact (HAR file, log dump, core dump, screen recording with timestamps), or (c) permission to add temporary production instrumentation. Do not proceed to hypothesise without a loop.
Do not proceed to Phase 2 until you have a loop you believe in.
Run the loop. Watch the bug appear.
Confirm:
Also at this stage:
Do not proceed until you reproduce the bug.
Generate 3–5 ranked hypotheses before testing any of them. Single-hypothesis generation anchors on the first plausible idea.
Each hypothesis must be falsifiable: state the prediction it makes.
Format: "If is the cause, then will make the bug disappear / will make it worse."
If you cannot state the prediction, the hypothesis is a vibe — discard or sharpen it.
Show the ranked list to the user before testing. They often have domain knowledge that re-ranks instantly ("we just deployed a change to #3"), or know hypotheses they've already ruled out. Cheap checkpoint, big time saver. Don't block on it — proceed with your ranking if the user is AFK.
If you're implementing or reproducing a known pattern, find a working example first:
When the error is deep in a call stack, work backward from the symptom:
See root-cause-tracing.md for the full backward-tracing technique.
Each probe must map to a specific prediction from Phase 3. Change one variable at a time.
Tool preference:
Tag every debug log with a unique prefix, e.g. [DEBUG-a4f2]. Cleanup at the end becomes a single grep. Untagged logs survive; tagged logs die.
Perf branch. For performance regressions, logs are usually wrong. Instead: establish a baseline measurement (timing harness, performance.now(), profiler, query plan), then bisect. Measure first, fix second.
Write the regression test before the fix — but only if there is a correct seam for it.
A correct seam is one where the test exercises the real bug pattern as it occurs at the call site. If the only available seam is too shallow (single-caller test when the bug needs multiple callers, unit test that can't replicate the chain that triggered the bug), a regression test there gives false confidence.
If no correct seam exists, that itself is the finding. Note it. The codebase architecture is preventing the bug from being locked down. Flag this for the next phase.
If a correct seam exists:
Pattern indicating architectural problem:
This is NOT a failed hypothesis — this is a wrong architecture. Discuss with the user before attempting more fixes. Hand off to /improve-codebase-architecture with the specifics.
Required before declaring done:
[DEBUG-...] instrumentation removed (grep the prefix)Then ask: what would have prevented this bug? If the answer involves architectural change (no good test seam, tangled callers, hidden coupling) hand off to the /improve-codebase-architecture skill with the specifics. Make the recommendation after the fix is in, not before — you have more information now than when you started.
If you catch yourself thinking:
ALL of these mean: STOP. Return to Phase 1.
Watch for these redirections:
When you see these: STOP. Return to Phase 1.
| Excuse | Reality |
|---|---|
| "Issue is simple, don't need process" | Simple issues have root causes too. Process is fast for simple bugs. |
| "Emergency, no time for process" | Systematic debugging is FASTER than guess-and-check thrashing. |
| "Just try this first, then investigate" | First fix sets the pattern. Do it right from the start. |
| "I'll write test after confirming fix works" | Untested fixes don't stick. Test first proves it. |
| "Multiple fixes at once saves time" | Can't isolate what worked. Causes new bugs. |
| "Reference too long, I'll adapt the pattern" | Partial understanding guarantees bugs. Read it completely. |
| "I see the problem, let me fix it" | Seeing symptoms ≠ understanding root cause. |
| "One more fix attempt" (after 2+ failures) | 3+ failures = architectural problem. Question pattern, don't fix again. |
If systematic investigation reveals the issue is truly environmental, timing-dependent, or external:
But: 95% of "no root cause" cases are incomplete investigation.
These techniques live in this directory:
root-cause-tracing.md — Trace bugs backward through the call stack to find the original trigger.defense-in-depth.md — Add validation at multiple layers after finding the root cause.condition-based-waiting.md — Replace arbitrary timeouts with condition polling.scripts/hitl-loop.template.sh — Template for human-in-the-loop reproduction loops when a click is unavoidable.Run the announcement round for a finished project: attribution check, directory submissions, launch-post drafts in Mike's voice. Drafts only — never posts. Trigger: /announce <project>, 'announce', 'launch round', 'tell people about'.
Novel ignition ritual for story-bible: 3-line 'previously on' + one pulling question. Body-double for getting into writing state, zero obligation. Trigger: /ignite, 'ignite', 'novel time', 'story time'.
Read/post Twitter/X via `bird` CLI: tweets, threads, search, timelines, bookmarks, follows, lists, media.
Drive VISIBLE Chrome with real profile/logins (CDP :9222). Screenshots, JS eval, interactive element picking, cookies. Frontend testing, authed flows, anything user should see. Headless text-only reading → Browser* tools. Linux + macOS.
Read before git commits.
Compact current conversation into handoff doc for another agent.