本文へ移動
cccskills
無料GitHub で公開

context-engineering

Master the four operations of context engineering — Write, Select, Compress, Isolate. Manage token budgets, compaction strategies, and context partitioning to keep AI sessions sharp and efficient.

インストール方法を見る

含まれるファイル(1)

  • SKILL.md6.3 KB

SKILL.md(原文)

インストールする前に、エージェントに与えられる指示の中身を確認できます。

Context Engineering

Four operations control everything about how context flows through an AI coding session. Master them and you control the quality of every response.

The Four Operations

1. Write — Persist Info Outside Context

Move information out of the context window into durable storage so it survives compaction and session boundaries.

Where to write:

TargetWhenExample
CLAUDE.mdPermanent project rules"Always use pnpm, never npm"
NOTES.md / scratchpadWorking state for current taskArchitecture decisions, open questions
.claude/memory/Learnings and patterns[LEARN] rules from corrections
External filesData too large for contextTest plans, migration checklists

Pattern — Scratchpad workflow:

1. Start complex task → create NOTES.md with goals and constraints
2. After research → write findings to NOTES.md
3. After compaction → NOTES.md survives, context does not
4. Resume → read NOTES.md to recover full state

2. Select — Retrieve Relevant Info

Pull the right information into context at the right time. Precision matters more than volume.

Methods ranked by precision:

  1. @file references — exact file injection
  2. grep / Glob — targeted pattern search
  3. Subagent exploration — delegated deep search
  4. RAG / embeddings — semantic retrieval for large codebases

Key principle: Focused 300 tokens > unfocused 113K tokens.

A surgical grep result that returns the exact function signature beats dumping an entire module into context. Every irrelevant token dilutes attention.

Pattern — Progressive retrieval:

1. Start with file names (Glob)
2. Narrow to specific functions (Grep)
3. Read only the relevant lines (Read with offset+limit)
4. Never read entire large files when you need one function

3. Compress — Reduce Tokens, Preserve Signal

Shrink context without losing the information that matters.

Compaction strategies:

StrategyHowWhen
/compact with focus/compact focus: auth module changesTask boundaries
MicrocompactAsk Claude to summarize tool output inlineAfter large reads/searches
Head+tailRead first 20 + last 20 lines of large outputLog analysis, test results
Tool result clearingSubagent results auto-clear after reportingHeavy exploration
Semantic selectionSummarize findings, discard raw dataResearch phases

Compaction triggers:

  • After planning, before implementation
  • After completing a feature or milestone
  • When context exceeds 50% (set CLAUDE_AUTOCOMPACT_PCT_OVERRIDE=50)
  • Before switching task domains
  • After heavy search/read operations

PostCompact hook — Re-inject critical context:

{
  "type": "PostCompact",
  "command": "cat .claude/critical-context.md"
}

Use this to ensure project rules, current task state, or architecture constraints survive every compaction.

4. Isolate — Partition Across Execution Spaces

Don't load everything into one context. Split work across independent execution spaces.

MethodIsolation LevelUse When
SubagentsForked contextHeavy exploration, test runs, doc generation
Worktrees (claude -w)Full repo copyParallel features, competing approaches
/btw (built-in Claude Code)Temporary overlayQuick questions without entering conversation history
Agent teamsIndependent sessionsCross-layer changes, parallel reviews
Fresh session (/resume)Clean slateUnrelated work, degraded context

Pattern — Subagent delegation:

Main session: planning, coordination, commits
Subagent 1: explore auth module, report findings
Subagent 2: run test suite, report failures
Subagent 3: generate migration script

Main context stays clean. Subagents handle the volume.

Context Budget Planning

Example baseline (calibrate with /context): a 200K window (Haiku 4.5; Fable 5.1, Opus 5.5, and Sonnet 5 carry 1M) with ~20K overhead (CLAUDE.md, tool definitions, MCP schemas) leaves ~180K usable. Quality still drops as context fills, so keep the same discipline on 1M tiers. Actual budgets vary by model and configuration.

AllocationBudgetWhat Goes Here
Static context20-30KCLAUDE.md, tool schemas, MCP definitions
Dynamic context150-180KCode, conversation, tool results

Put static context first. CLAUDE.md and tool definitions load before conversation. Keeping them stable maximizes prompt cache hits — saves cost and latency.

PhaseTarget UsageAction If Over
Planning< 20%Keep plans concise, write to scratchpad
Implementation< 50%Compact between files, delegate reads
Testing< 70%Delegate test runs to subagents
Review< 85%Start fresh session if degraded

When to /clear vs /compact vs Subagent

SituationAction
Task boundary, want to keep learnings/compact with focus
Context degraded, Claude repeating itself/compact, then /resume if still bad
Starting unrelated work/clear or new session
Heavy read/search operationDelegate to subagent
Quick side question/btw (doesn't pollute main context)
Exploring multiple approachesWorktrees or agent teams

Anti-Patterns

  • Loading entire files when you need one function
  • Keeping MCP tool results in context after extracting what you need
  • Running 15+ MCPs (each adds tool schema overhead to every request)
  • Vague prompts that force Claude to search broadly ("fix the code")
  • Never compacting until auto-compact triggers at 95%

Add to CLAUDE.md

## Context Engineering

Write to NOTES.md for working state that must survive compaction.
Select with precision — grep first, read specific lines, never dump whole files.
Compact at 50% or task boundaries. Set CLAUDE_AUTOCOMPACT_PCT_OVERRIDE=50.
Isolate heavy work to subagents. Main session stays for coordination and commits.

レビュー

まだレビューはありません。使ってみた感想をお寄せください。

同じリポジトリのスキル

概要と使いどころ

Coordinate multiple Claude Code sessions as a team — lead + teammates with shared task lists, mailbox messaging, and file-lock claiming. Patterns for team sizing, task decomposition, and when to use teams vs sub-agents vs worktrees.

日本語の概要は準備中です。原文の説明を表示しています。

rohitg00/pro-workflow2,9102026年9月29日 更新

Auto-configure quality gates, hooks, and settings for a new project. Detects project type and sets up appropriate tooling. Use when onboarding a new codebase.

日本語の概要は準備中です。原文の説明を表示しています。

rohitg00/pro-workflow2,9102026年9月29日 更新

Decompose large-scale changes into independent units and spawn parallel agents in isolated worktrees. Use for migrations, refactors, codemods, and any change touching 10+ files with the same pattern.

日本語の概要は準備中です。原文の説明を表示しています。

rohitg00/pro-workflow2,9102026年9月29日 更新

Capture a user-reported defect as a durable GitHub issue written in the project's own domain language. Explores the codebase in parallel for context but never leaks file paths or line numbers into the issue. Use when the user reports a bug conversationally, runs a QA pass, or says "file an issue", "log this as a bug", "capture this".

日本語の概要は準備中です。原文の説明を表示しています。

rohitg00/pro-workflow2,9102026年9月29日 更新

Smart context compaction with state preservation. Saves critical files, task progress, and working state before compaction, restores after. Use before manual compact or when auto-compact triggers.

日本語の概要は準備中です。原文の説明を表示しています。

rohitg00/pro-workflow2,9102026年9月29日 更新

Optimize token usage and context management. Use when sessions feel slow, context is degraded, or you're running out of budget.

日本語の概要は準備中です。原文の説明を表示しています。

rohitg00/pro-workflow2,9102026年9月29日 更新

rohitg00 のスキルをすべて見る

このスキルの問題を報告する