claude-compaction-restore · diff
git:20260513.35ac9f2 to git:20260802.4c6d888
9 added, 6 removed. Audit A to A.
---
name: claude-compaction-restore
description: Use when a Claude Code session has just compacted, is about to compact, reached context limit, resumed after /compact, or needs to rebuild its working mental model from Claude JSONL transcripts and touched files.
metadata:
openrig:
stage: factory-approved
- last_verified: "2026-05-04"
- distribution_scope: product-bound
- source_evidence: |
- Load-bearing for any OpenRig seat that may compact. PreCompact hook
- is wired into Claude Code's settings (e.g. ~/.claude/settings.json)
- so the restore packet is generated automatically before compaction.
sibling_skills:
+ - mental-model-ha
+ - scope-recovery
+ - session-compaction-and-restore
- agent-startup-and-context-ingestion
+ - agent-starters
+ - composable-priming-packs
+ - session-source-fork
- seat-continuity-and-handover
+ - claude-compact-in-place
+ - pre-maintenance-agent-preservation
---
# Claude Compaction Restore
Use this skill to preserve continuity before Claude Code compacts and to
restore continuity after compaction. Do the work described here; do not merely
explain the protocol.
## If You Are About To Compact
Prepare durable continuity before the context boundary.
1. Identify the active task, queue item, mission/slice, branch or commit, and
current working directory.
2. Record the current state: decisions made, files changed, commands/tests run,
evidence produced, blockers, caveats, and the next concrete step.
3. Create or update a durable mental-model restore map. This map is the main
artifact future-you will use to rebuild context after compaction.
4. In the restore map, write an ASCII file/folder tree of every path that
mattered to your working mental model during this session. Include:
- the active queue item or mission packet;
- mission notes, progress, decisions, and evidence files;
- Claude memory/project notes you used or wrote, especially when the memory
folder is shared by many agents;
- files with active edits or recently inspected source;
- root instructions such as `AGENTS.md`, `CLAUDE.md`, or `README.md`;
- as-built docs, codemaps, conventions, skills, and product docs needed
before code/review work;
- source files, tests, scripts, UI evidence, screenshots, logs, or reports
that shaped your current state.
5. For every file or folder in the tree, add a short note explaining why it
matters and whether it is required reading after compaction.
6. Write any important glue context that is not already on disk into the
handoff/restore map. This includes assumptions, partial conclusions, failed
paths, and why the listed files fit together.
7. In the compaction summary, include the restore map path and the top required
reading paths from that map.
## If You Just Compacted
Treat your memory as unreliable until you restore from durable evidence.
Restoration is your current task. Do not wait for a future user request or a
new task assignment before reading the required files.
1. Read any restore prompt, marker path, packet path, transcript path, restore
map, or extra instruction file named by the operator or OpenRig.
2. Run the restore script from this skill:
```bash
node ~/.claude/skills/claude-compaction-restore/scripts/restore-from-jsonl.mjs --out /tmp/claude-compaction-restore
```
If the prompt names a specific Claude JSONL transcript, pass it explicitly:
```bash
node ~/.claude/skills/claude-compaction-restore/scripts/restore-from-jsonl.mjs /path/to/session.jsonl --out /tmp/claude-compaction-restore
```
3. Read the generated `restore-instructions.md`.
4. Read the generated `touched-files.md`.
5. Find and read the mental-model restore map if one exists. Treat it as the
highest-value guide to which memory files, mission files, source files, and
docs mattered before compaction.
6. Identify the important files for the active task. The touched-file list is
a triage aid, not a complete inventory.
7. Read every important file in full. Prioritize the restore map, Claude memory
files named in the map, Markdown state/planning files, queue/mission packets,
source files with active edits, root instruction files, and as-built or
codemap docs.
8. After the required reads are complete, state:
```text
restored from packet at <path>; resumed at step <X>
```
Include the main files you read in full when you make that statement.
## Required Read-Depth Audit
After the first restore pass, audit yourself before continuing.
1. List every file, packet, marker, restore map, instruction file, and source
document you were asked to read during restore.
2. Mark each item as `FULL`, `PARTIAL`, or `NOT_READ`.
3. You will be given a task where all of these files are required reading in
order to understand the task.
4. Do not optimize for token conservation.
5. Read every `PARTIAL` or `NOT_READ` item in full now.
6. Report the final read-depth table before doing any substantive task work.
## Guardrails
+ - Compaction is survival, not housekeeping — never compact to free space, "lean" a seat, or capture/prepare an agent starter (the `rig agent-image` library). It is lossy (a compacted Claude is confident-but-hollow); compact only when a seat is genuinely near its context limit, with a before/after plan. A starter's value is being *functional*, not small — see the `agent-starters` skill.
- Do not silently launch fresh after compaction.
- Do not continue from memory when restore evidence exists.
- Do not defer required restore reading until a later user task. The restore is
the current task.
- Do not skip root instructions, as-built docs, or codemaps before product
code/review work.
- Do not treat the generated touched-file list as exhaustive.
- Do not mark a file `FULL` unless you actually read the full file content
after compaction.
- Do not resume task work until the restore sentinel and read-depth audit are
complete.
## Failure Modes To Avoid
1. **Confidently-wrong restoration**: claiming restoration after reading only
the touched-file list or summary.
2. **Partial restore**: reading the first few files, then continuing before the
full reading list is complete.
3. **Skipping project instructions**: missing `AGENTS.md`, `CLAUDE.md`,
`README.md`, as-built docs, or codemaps that govern the task.
4. **Treating the packet as exhaustive**: ignoring mission or workspace files
that are important but were not discovered by the script.
5. **Waiting for the next task**: treating restore reading as conditional on a
future user assignment instead of completing it immediately.