オプション

バグや失敗する動作の診断ループ。エラー、スタックトレース、リグレッション、失敗したテスト、イシュートラッカーのバグ、修正失敗後の停滞した調査、またはバグのデバッグ/修正の依頼に使用します。

...すべて拡張します
14
更新された時間 2026年8月26日

ce-debug について

バグの根本原因を特定し、必要に応じて修正する体系的なデバッグスキルです。エラーのデバッグ、テスト失敗の調査、GitHub、Linear、Jira などのイシュートラッカーからのバグ再現、または修正試行の失敗後に問題が解決しない場合、ユーザーがスタックトレースやエラーメッセージを貼り付ける場合、「これをデバッグして」「なぜこれが失敗しているのか」「このバグを修正して」などの発言があった場合に使用されます。その中心的な規律は、修正前に調査を行うことです:トリガーから症状に至る完全な因果連鎖に隙間がなく説明できるまで、修正は提案されません。「何らかの形で X が Y に繋がる」は隙間として扱われます。

作業は定義された実行フローに従って進みます。フェーズ 0 では入力をトリアージし、トラッカーが参照されている場合はイシューコンテンツを取得します(GitHub の場合、gh issue view を使用してタイトル、本文、コメント、ラベルを取得)し、完全なコメントスレッドを読み取ります。後続のコメントには、更新された再現手順や以前の失敗した試行が含まれていることが多いためです。単純なバグの高速パスでは明白な一行修正を表示できますが、編集を行う前に「修正するか診断するか」のユーザー選択ゲートを通過します。フェーズ 1 ではバグを再現し、環境の健全性を検証します(正しいブランチ、インストールされた依存関係、期待されるランタイムバージョン、必要な環境変数、古いビルドアーティファクトの存在確認)し、症状から有効な状態が初めて無効になった箇所まで、観察された値に基づいてコードパスを遡ってトレースします。

フェーズ 2 では、不確実なリンクに関する予測を持つ仮説を構築します。もし修正が機能しているように見えても、予測が間違っていれば、それは原因ではなく症状に過ぎません。ショットガンデバッグを避けるために、一度に変更するのは一つのことだけです。フェーズ 3 では、ユーザーが選択した場合のみ修正を実装し、テストファーストの規律と「未コミットの変更の確認」や「デフォルトブランチからブランチを作成するよう促す」などのワークスペース安全チェックを行います。フェーズ 4 では構造化された引き継ぎサマリーを生成し、次のアクションを促します。全体を通じて、デフォルトでは質問を避け、まず調査を行い、進捗を妨げる真の曖昧さがある場合のみ質問を行います。

FAQ

このスキルを使用すべきなのはいつですか?

エラーのデバッグ、テスト失敗の調査、イシュートラッカーからのバグ再現、または修正試行の失敗後に立ち止まった場合です。「これをデバッグして」「なぜこれが失敗しているのか」といったフレーズや、貼り付けられたスタックトレースやエラーメッセージでもトリガーされます。

自動的に修正を適用しますか?

ユーザーが選択した場合のみです。診断後、「今すぐ修正するか、診断のみか」のユーザー選択ゲートを通過し、単純なバグの高速パスでさえ編集前にそのゲートを通過します。診断のみを選択した場合、サマリーを記述して停止します。

症状を根本原因として扱うのをどう避けますか?

隙間なく完全な因果連鎖を説明できるまで修正を提案することを拒否し、不確実なリンクについては、同時に真でなければならない事柄に関する予測を構築します。予測が間違っているが修正が機能しているように見える場合、それは原因ではなく症状が見つかったと結論付けます。

GitHub やその他のトラッカーからバグの詳細を取得できますか?

はい。GitHub の場合、コメントとラベルを含む gh issue view でイシューを取得します。Linear、Jira、その他のトラッカーの場合、利用可能な MCP ツールを使用するか URL をフェッチし、フェッチに失敗した場合はコンテンツの貼り付けを求めます。オープニングの説明だけでなく、完全なコメントスレッドを読み取ります。

深いコードトレースの前に何をチェックしますか?

環境の健全性:意図しない未コミットの変更がない正しいブランチ、インストールされ最新の状態にある依存関係、期待されるインタープリタ/ランタイムバージョン、必要な環境変数、古いビルドアーティファクトの存在確認、そしてバグがそれらに関与する可能性が高い場合に実行されている関連するローカルサービス。

すべてのファイル

4 filesreferences/anti-patterns.md6.0 KBViewreferences/defense-in-depth.md2.8 KBViewSKILL.md22.1 KBViewreferences/investigation-techniques.md22.3 KBView

GitHubで見る

Find the root cause of a failure, then — when the user chooses to — fix it with test-first discipline.

Done when: the causal chain from trigger to symptom is stated with no gaps and file:line evidence, and either a verified fix has been handed off (PR, commit, or the user's chosen stop) or a diagnosis-only summary has been delivered. Escalate rather than persist: 2-3 hypotheses exhausted without confirmation, or 3 failed fix attempts, means diagnose why instead of trying again — that is the smart escalation references/investigate.md describes. One hypothesis, one change at a time; changing several to see what helps is shotgun debugging.

<bug_description> is whatever this skill was invoked with — a failure description, a mode: token, or an issue reference (#123, org/repo#123, an issue URL) — from the user or from a calling skill (ce-babysit-pr / lfg in mode:pipeline pass the failing jobs and log tails). Blank if nothing was provided.

Setup

Run this once at the start of this invocation, before any subagent dispatch, and follow the directives it prints — except where one conflicts with this skill's own rules on asking the user questions, whether those rules are scoped to a non-interactive mode or apply in every mode, in which case this skill's rules win and no blocking question is asked. Run the fence exactly as written, as its own command: do not pipe or filter it (no head, tail, or grep), do not truncate its output, and do not bundle it into a batch with other commands. Its output opens with a === skill context header and ends with CE_CONTEXT_END; if you received one of those lines without the other, the output was truncated — rerun the fence verbatim once. That recovery is the only rerun: otherwise do not rerun it within the same invocation; a later invocation of this or any other skill runs its own. If no Node runtime is available the skill proceeds unchanged.

SKILL_DIR="<absolute path of the directory containing the SKILL.md you just read>";NODE="$(for c in node nodejs; do command -v "$c" >/dev/null 2>&1 && "$c" -e '' >/dev/null 2>&1 && { echo "$c"; break; }; done)";if [ -n "$NODE" ]; then"$NODE" "$SKILL_DIR/scripts/context.mjs" || echo "context script failed; continue with the skill's normal behavior";elseecho "no Node runtime; continue with the skill's normal behavior";fi

Mode

Default is interactive: investigate, run the Phase 2 fix-choice gate, then the Phase 4 handoff.

mode:pipeline (set by an orchestrator such as ce-babysit-pr or lfg): run fully non-interactively and never call the blocking-question tool. Strip the token from <bug_description>, then read references/pipeline-mode.md and follow it — it overrides every "ask the user" point with a conservative default, replaces the Phase 2 fix-gate with "fix convergent bugs, defer divergent ones", and replaces the Phase 4 handoff with a structured return whose status is exactly one of fixed-and-pushed | fixed-not-pushed | diagnosed-no-fix | flaky-infra | needs-human. The caller branches on those exact spellings, so never rename, abbreviate, or add to them.

Blocking questions

Wherever this skill asks the user something, use the platform's blocking question tool: AskUserQuestion in Claude Code (call ToolSearch with select:AskUserQuestion first if its schema isn't loaded — a pending schema load is not a reason to fall back), request_user_input in Codex, ask_question in Antigravity CLI (agy), ask_user in Pi (needs the pi-ask-user extension). Fall back to numbered options on the host's chat surface only when no blocking tool exists or the call errors. Never silently skip the question, and never end a phase without a response.

Artifact Root

Resolve <root> only when you first compose a <root>/ path — a run that composes none skips this entirely.

Resolve the CE artifact root <root> before composing any artifact path.

  • Read docs_root from <repo-root>/.compound-engineering/config.yaml only (<repo-root> = git rev-parse --show-toplevel). Do not read it from config.local.yaml. Unset -> <root> is docs, exactly as before.
  • Validate a set value: a repo-relative directory whose real, symlink-resolved path stays inside the repo and is neither the repo root nor under .git/. Otherwise stop with an error naming docs_root and the value -- never fall back to docs.
  • Use <root> as the sole artifact location: create it if absent, compose each path as <root>/<subdir> with this skill's own subdirectory, and never also read docs.

Execution Flow

Five phases in order: 0 Triage -> 1 Investigate -> 2 Root Cause -> 3 Fix -> 4 Handoff. Beyond Phase 0's trivial-bug fast-path there is no skipping and no complexity tiers — a hard bug spends longer in each phase, it does not enter fewer.

Read references/investigate.md now and follow it for Phases 0-2 — issue fetching, reproduction, environment sanity and the dirty-tree stash experiment, backward tracing, the tracker/PR-history search, hypothesis grounding, and the escalation table. Only the gates below are stated here.

The issue of record. Whatever the user handed you is where this bug already lives, whichever system that is — a Sentry issue counts as much as a Linear ticket. Carry its identifier and URL through to Phase 4. Input that is only a stack trace, test path, or description means this run has no issue of record. That is an ordinary state, not a gap to fill: ship the fix without one, never open a ticket to manufacture a record, and never ask the user whether to. Phase 1's tracker search reads prior work and never establishes a new home for the bug — an existing ticket for this bug is one to link in Phase 4, never one to create.

The trivial-bug fast-path (cause readable from the input, one-line fix, no deep tracing) still runs Phase 2's fix-choice gate before editing: it saves investigation ceremony, not the user's choice over whether to apply a fix.

Choosing the regression test. The regression test for a confirmed defect belongs wherever existing coverage already owns that behavior: start from the tests that exist rather than from a new file. Read references/fix.md for the homes and the naming rule before writing Phase 2's recommendation, not only before Phase 3's edits. A test that fails because the change deliberately reverses the behavior it asserts does not have a wrong expectation — that is the divergent case below, deferred rather than updated.

Phase 2 gate: present, then ask

Causal chain gate: do not proceed to Phase 3 until you can explain the full chain — trigger through every step to the observed symptom — with no gaps. "Somehow X leads to Y" is a gap. Only the user can authorize proceeding on a best-available hypothesis when investigation is stuck.

Once the root cause is confirmed, write the findings as a user-visible block: the causal chain with file:line references; the proposed fix and the files it changes; which tests to use, add, modify, or strengthen, and whether existing tests should have caught this; and any related ticket or PR and how it shapes the recommendation — if an open PR already fixes this, lead with that link instead of a fresh fix.

Same-turn presentation before the gate: do not open the fix-choice question until that findings block has been written in full — in this turn or the immediately preceding assistant message. The blocking question tool renders only its own stem on modal harnesses, so a question fired on "root cause confirmed" alone leaves the user choosing with none of the causal chain in front of them. Naming the options is not presenting the findings, and a promise to explain after the choice is too late.

Then ask (per Blocking questions) which path to take. Do not assume the user wants action now; the test recommendations are part of the diagnosis either way.

  1. Fix it now — proceed to Phase 3
  2. Diagnosis only — I'll take it from here — skip the fix, write Phase 4's summary, end the skill
  3. Rethink the design (ce-brainstorm) — only when the bug cannot be fixed within the current design: the root cause is a wrong responsibility or interface rather than wrong logic, the requirements themselves are wrong, or every candidate fix is a workaround around an assumption that no longer holds. Size alone is not a design problem.

mode:pipeline: do not ask. Proceed to Phase 3 and apply a convergent fix; a divergent fix — one that would reverse a deliberate contract/behavior/product decision, including a "failing" test that asserts intended behavior — is deferred, not applied, per references/pipeline-mode.md. Never route to ce-brainstorm here; a design problem becomes a needs-human residual.

Phase 3: Fix

If the user chose "Diagnosis only," skip to Phase 4's summary. If they chose "Rethink the design," control has transferred to ce-brainstorm and this skill ends.

Read references/fix.md before editing any file — the test-first sequence, the failed-fix rule, and the defense-in-depth and post-mortem triggers. Two rules decide whether the fix may start at all, so they stay here:

  • Branch. Check git status; if the user has unstaged work in files that need modification, confirm before editing. If the current branch is the default branch, create a feature branch without asking — derive a name from the bug, git checkout -b <name>, and say which branch you moved to. Detect the default by comparing against main, master, or git rev-parse --abbrev-ref origin/HEAD with its origin/ prefix stripped — the raw output is origin/<name>, so an unstripped comparison never matches.
  • Record the pre-fix scope: current HEAD, whether git status --short is clean, and any pre-existing changed files. Then keep a list of fix-owned files (the tests and implementation changed for this bug) as you work. Phase 4 answers both of its questions from this record and cannot reconstruct it afterwards.

Phase 4: Handoff

mode:pipeline — skip this entire interactive handoff. No polish/review tail, no residual questions, no preview, no learning-capture offer. Commit and push the convergent fix per references/pipeline-mode.md, then emit that reference's structured return as the final output. Divergent / needs-human items are deferred there (open thread or the caller's run-report comment — never a PR-body section). The rest of this section is the interactive path only.

Structured summary — always write this first:

## Debug Summary**Problem**: [What was broken]**Root Cause**: [Full causal chain, with file:line references]**Recommended Tests**: [Tests to add/modify to prevent recurrence, with specific file and assertion guidance]**Fix**: [What was changed — or "diagnosis only" if Phase 3 was skipped]**Prevention**: [Test coverage added; defense-in-depth if applicable]**Confidence**: [High/Medium/Low]

If Phase 3 was skipped, stop after the summary — the user already said they were taking it from here. Do not prompt.

If Phase 3 ran, read references/post-fix-handoff.md now and follow it before routing below. It owns this phase's quality tail — the contextual-override checks, the skip-for-mechanical-fixes rule, the scoping that keeps ce-simplify-code and ce-code-review off unrelated branch work, residual handling, the ## Post-Fix Quality block, and the learning-capture criteria — and none of that appears in this body. The routing below names which action fires, never the scope rules that make it safe, so it cannot be improvised from. Skipping the read ships an unreviewed fix, lets review reach into unrelated branch work, and strands accepted findings in the session.

Routing

Land the fix without carrying along anything the user did not offer up — not into a commit, not into a push, not into a PR. Do not ask whether to open a PR; permission is not the gate. Two questions decide the handoff, answered from the pre-fix scope Phase 3 recorded rather than inferred from how the branch came to exist. Fire the action itself via the platform's skill-invocation primitive — never merely tell the user to type a command.

1. What may go into the commit — the fix-owned files and nothing else. This is a constraint on whichever skill commits in question 2, never an action of its own. It holds on every route, remote or not. Do not commit here.

  • No fix-owned file carried pre-existing edits: those files are the commit scope, passed to whichever skill commits.
  • A fix-owned file already carried the user's edits: no commit separates them (ce-commit groups at file level and never splits a file). Ask (per Blocking questions) before anything commits: commit that file including their edits, leave the fix uncommitted, or stop. Only the first answer continues — the other two end the handoff, so question 2 never runs and nothing commits; say what was left and why. Every option loses something the agent cannot choose on the user's behalf, which is why this question survives. Phase 3's confirmation covered editing the file, never committing the user's edits with the fix.

2. Who commits, and whether it ships. Exactly one of these runs.

  • Ships — the pre-fix tree was clean, nothing on the branch is work the user has not already offered, and origin is PR-capable: somewhere gh can actually open a PR. Establish those however fits the repo in front of you. Two facts make it less obvious than it looks.

    • ce-commit-push-pr pushes the whole branch, and its PR spans every commit on it, not just your fix — so the question is about the branch, not your diff. It also pushes before creating the PR, so a remote gh cannot open a PR against leaves the branch published with no PR.
    • Already pushed is not already offered. Commits in an open PR are under review, so they are offered and this run updates that PR rather than opening a second one; commits pushed for backup or to trigger CI are not, and a first PR would publish them. Compare against the remote rather than a local ref — a local branch, including the default branch Phase 3 may have branched off, can itself be ahead of what was pushed.

    If you cannot establish all three, take the local route instead; that is the safe direction, and the preview is not a substitute for it. Otherwise preview what will be committed, on what branch, and whether a PR opens or updates, then invoke the ce-commit-push-pr skill with branding:on. It commits under question 1's scope, so do not commit first. The preview is a statement, not a question. Surface the resulting PR URL.

  • Stays local — any of those fails. Invoke the ce-commit skill under question 1's scope and push nothing. Say in one line what stayed local and why, and that you will push and open the PR on request. Do not ask first — a local commit is reversible.

  • Not a git repo — nothing commits. Stop after the summary and the quality block.

Contextual override ("don't open PRs from skills", "commit only", "stop after the fix") — follow what the user said, and Stop here without committing when that is what they asked for. A vague tonal cue is not an override.

After a PR is open — apply the reference's learning-capture criteria; if the user accepts, invoke the ce-compound skill, then commit the learning doc to the same branch and push so the open PR picks it up.

すべてのファイル

0件のファイル

ce-debugをインストール

スキルファイルをダウンロードして、.claude/skills/ ディレクトリに展開してください。

ZIPをダウンロード

リポジトリをクローンし、スキルファイルをプロジェクトにコピーしてください。

git clone https://github.com/EveryInc/compound-engineering-plugin/blob/main/skills/ce-debug/SKILL.md # Copy SKILL.md to your .claude/skills/ directory

コピー コピー
クイックセットアップ: スキルフォルダを .claude/skills/ にコピーしてください。Claude はそのスキルを自動的に検出し、使用します。

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