| name | legreffier-explore |
| description | Systematic diary exploration: discover tags, entry distribution, coverage gaps, agent mistakes, and compile recipes. Use when onboarding to a new diary or journal, before consolidation, to analyze or review diary log entries, or when asked to "explore the diary", "diary overview", or "what's in the diary". |
LeGreffier Explore Skill
Systematically explore a diary to understand what's in it, find patterns and
gaps, and recommend compile recipes. This is the discovery step — run it
before consolidation, before designing compile recipes, or when onboarding
to a diary you haven't worked with before.
Agent name resolution
Follow the same resolution order as the main legreffier skill (env var →
argument → gitconfig → single .moltnet/ subdirectory → ask user).
Store as AGENT_NAME. All MCP calls use mcp__<AGENT_NAME>__*.
Prerequisites
- LeGreffier MCP tools available (
entries_list, entries_search,
diaries_list, diaries_get)
- Agent identity active (
mcp__<AGENT_NAME>__moltnet_whoami)
- Diary resolved (match repo name via
diaries_list, or use
MOLTNET_DIARY_ID env var)
Transport detection
After resolving AGENT_NAME and DIARY_ID, detect available transport:
- If MCP tools are available (
moltnet_whoami responds): use MCP for all operations.
- If MCP unavailable or errors with "Auth required" / connection failures: use CLI via
$MOLTNET_CLI for all operations.
- Do not mix transports within a session. Pick one at activation and stick with it.
CLI credentials: .moltnet/<AGENT_NAME>/moltnet.json
CLI global flags: --credentials ".moltnet/<AGENT_NAME>/moltnet.json"
CLI equivalents
| MCP Tool | CLI Command |
|---|
entries_list | moltnet entry list --diary-id <uuid> [--tags "..." --entry-type <type> --limit <n>] |
entries_search | moltnet entry search --query "..." |
diary_tags | moltnet diary tags <diary-id> |
diaries_compile | moltnet diary compile <diary-id> --token-budget <n> [--task-prompt "..."] |
packs_create | moltnet pack create --diary-id <uuid> --entries '<json>' |
packs_render_preview | moltnet pack render --preview <pack-uuid> [--out context-pack.md] |
packs_render | moltnet pack render <pack-uuid> [--out rendered-pack.md] |
When to trigger
- First time working with a diary or journal (onboarding)
- Before designing compile recipes for a new task domain
- After a batch of work (50+ new entries) to check diary health
- When compile packs feel noisy or incomplete
- When asked to "explore the diary", "diary analysis", "review diary", or "what's in the diary"
Operator preflight
Before creating any scratch artifact, propose a few exploration directions
to the operator and let them steer the search space.
The first output should be a short operator-facing preflight, not a scratch
file. Offer 2-4 concrete directions such as:
- incident-first: focus on mistakes, fixes, and preventive context
- decision-first: focus on architectural constraints and stable rules
- subsystem-first: focus on one tag namespace or subsystem
- retrieval-first: focus on what should go into a manual context pack
Then ask the operator to control the search scope. Prefer explicit operator
input over inference when the interface allows it. Capture at least:
- target objective
- chosen direction
- preferred tags or tag namespaces
- excluded tags
- entry types to emphasize
- search terms or recurring questions to chase
- optional time window
If the operator does not care or does not answer, proceed with a broad
exploration and record that the defaults were inferred. If they do answer,
the scratch output must record their choices so later packs_create work stays
traceable.
Exploration phases
Run phases in order. Each phase builds on the previous one's findings.
Use subagents for phases 2-4 to keep the primary context clean.
Phase 1: Inventory
Map what's in the diary using diary_tags (fast) and a single
entries_list pass (for importance distribution and temporal range).
See references/discovery-to-pack-method.md Phase A for the full
tag landscape mapping procedure with prefix filters.
Step 1a — Tag landscape (use diary_tags):
diary_tags({ diary_id }) → full tag list
diary_tags({ diary_id, min_count: 3 }) → filter noise
diary_tags({ diary_id, prefix: "scope:" }) → domain scopes
diary_tags({ diary_id, prefix: "source:" }) → content origin
// repeat for each discovered prefix
Step 1b — Tag x entry type cross-referencing (see references/discovery-to-pack-method.md Phase B):
diary_tags({ diary_id, entry_types: ["semantic"], min_count: 2 })
diary_tags({ diary_id, entry_types: ["episodic"], min_count: 2 })
diary_tags({ diary_id, entry_types: ["procedural"], prefix: "scope:", min_count: 5 })
diary_tags({ diary_id, entry_types: ["reflection"] })
Build an intersection matrix to identify pack-worthy combinations.
Rule of thumb: 5+ entries to be useful, 10+ to be robust.
Step 1c — Entry-level stats (use entries_list):
entries_list({ diary_id, limit: 50, offset: 0 })
// paginate to cover all entries
Compute from entries:
- Entry type counts: count per
entryType value
- Importance distribution: histogram of importance values (1-10)
- Temporal range: earliest and most recent entry dates
Output: inventory table + tag namespace tree + intersection matrix
(see Output format).
Phase 2: Agent mistakes (episodic analysis)
Find incidents that document mistakes agents made — candidates for Task Harvest
eval tasks and entry relations.
entries_list({ diary_id, tags: ["incident"], limit: 20 })
entries_search({ diary_id, query: "bug fix workaround error failed",
entry_types: ["episodic"], limit: 15 })
If no incident-tagged entries exist, fall back to:
entries_search({ diary_id, query: "what happened root cause fix applied",
entry_types: ["episodic"], limit: 20 })
For each episodic entry, extract:
| Field | What to capture |
|---|
| What went wrong | The mistake or failure |
| Root cause | Why it happened |
| Fix applied | What resolved it |
| Preventive context | What knowledge would have prevented it |
| Subsystem | Infer from tags or content |
| Severity | Critical / High / Medium / Low |
Group by subsystem. Highest-severity incidents with clear preventive context
are the best Task Harvest candidates.
Phase 3: Commit patterns (procedural analysis)
Understand how agents commit — scope distribution, risk levels, branch patterns.
entries_list({ diary_id, limit: 30,
tags: [<most common procedural tag from Phase 1>] })
If no obvious procedural tag exists, use:
entries_search({ diary_id, query: "commit",
entry_types: ["procedural"], limit: 30 })
Analyze:
- Tag frequency within procedural entries — which tags appear most
- Branch groupings — which branches have the most entries
- Anti-patterns: double-prefix tags (e.g.
scope:scope:*), catch-all
tags, entries without branch or scope tags, unusually broad entries
Phase 4: Coverage gaps
Find topics the diary should cover but doesn't.
Compare the codebase structure against diary topics. Read the top-level
project layout and check if each major subsystem has at least one semantic
entry covering it. Cross-reference against the tag landscape from Phase 1 —
subsystems with code but no scope: tag are coverage gaps.
Phase 5: Pack recipe recommendations
Based on phases 1-4, recommend pack recipes tailored to this specific diary.
There are two paths to creating packs from recipes — see
references/discovery-to-pack-method.md for the full explanation:
-
Agent-curated packs (recommended): the agent reads entries, selects
the best ones, and calls packs_create with explicit entry IDs and
ranking. Recipes guide curation decisions (which tags to filter, which
entry types to emphasize, target token budget).
-
Server-side compile (optional): diaries_compile delegates entry
selection to the server's MMR algorithm. Useful for quick drafts or
very large diaries (500+ entries). Recipes become compile parameters.
For each recipe, specify:
name: '<descriptive name>'
intent: '<what task this context supports>'
task_prompt: '<specific question an agent would ask>'
token_budget: <number>
include_tags: [<tags>]
exclude_tags: [<tags>]
entry_types: [<types>]
rationale: '<why these parameters for this diary>'
lambda: <0.0-1.0>
w_importance: <0.0-1.0>
w_recency: <0.0-1.0>
See references/discovery-to-pack-method.md Phase C for compile
tuning parameters and Phase D for the tier system (Tier 1 always-useful,
Tier 2 on-demand, Tier 3 per-session).
Base recommendations strictly on what the diary actually contains — don't
recommend filtering by tags that don't exist in the diary.
Phase 6: Pack-to-docs transformation
Goal: transform a deterministic rendered-pack preview into structured
documentation. This phase runs after creating a pack and previewing it via
packs_render_preview / moltnet pack render --preview.
Step 1 — Strip entry scaffolding, keep provenance:
Remove <metadata> blocks, <moltnet-signed> wrappers, and signature
tags. Strip the per-entry header format (- Compression: ...,
- Tokens: ...) but keep Entry ID and CID lines — move them to
a provenance footnote or appendix per entry so traceability is preserved.
Step 2 — Group by topic:
Entries about the same subsystem or pattern become sections. Use scope:
tags from the pack entries to guide grouping. One H2 per major topic,
H3 per individual pattern or incident.
Step 3 — Deduplicate and merge:
Multiple entries about the same issue (e.g., 4 migration timestamp
incidents) become one section with the consolidated pattern + root cause
- rule. Preserve the most detailed entry's content, fold others in.
Reference all source entry IDs.
Step 4 — Extract rules as callouts:
"Watch for:", "Rule:", "MUST", "NEVER" statements from incidents and
decisions become bold rules. These are the actionable items agents
will use.
Step 5 — Add per-section source attribution:
Each section (H2 or H3) must end with a Sources: line linking back
to the diary entries that contributed to it. Use the format:
*Sources: [`e:<8-char-id>`](@<handle> · agent:<4-char-fingerprint>)*
Where <8-char-id> is the first 8 characters of the entry UUID,
<handle> is the MoltNet handle (e.g., @getlarge), and
<4-char-fingerprint> is the first 4 characters of the agent
fingerprint (e.g., 1671). When multiple entries contributed to a
section, list them comma-separated:
*Sources: [`e:da4135cf`](@getlarge · agent:1671), [`e:ad53dfac`](@getlarge · agent:1671)*
This is per-section (option B), not per-claim or appendix-only.
It preserves prose quality while keeping attribution visible enough
for the fidelity judge to verify. The full signature chain stays in
the provenance graph — the surface has enough to point at the right
principal.
Step 6 — Add keyword anchors for retrieval:
Think about what queries agents will use to find this documentation.
Add terms they would naturally search for that may not appear verbatim
in the original entries — command names, tool names, error messages,
file paths, and concept synonyms. Place keywords near the relevant
section in natural prose. Don't create keyword dump lists.
Step 7 — Add pack provenance header:
At the top or bottom of the doc, include the source pack metadata:
## Source
| Pack UUID | Pack CID | Entries | Tokens |
| --------- | -------- | ------- | ------- |
| `<uuid>` | `<cid>` | <count> | <total> |
This lets readers trace any claim back to the original diary entries.
Step 8 — Structure for scanning:
- H2 for major topics/subsystems
- H3 for individual patterns or incidents
- Bold Severity and Subsystem labels on incidents
- Quick reference tables for commands or checklists
- Keep total doc under ~3k tokens per file for optimal retrieval
Output format
Primary output is a scratch artifact for manual pack planning, not a diary
entry. Exploration is often noisy and provisional; do not persist it to the
diary by default.
Sequence the output in this order:
- operator preflight with suggested directions
- confirmed or inferred search controls
- scratch artifact using the template below
Write a local YAML or Markdown note that will drive manual entry selection
for packs_create.
Canonical template file:
references/exploration-pack-plan.yaml
If that reference file is missing, stop and report that the skill bundle is
incomplete.
Use that reference file as the single source of truth for the scratch artifact
shape. Copy or adapt it rather than re-specifying the full YAML structure here.
Only promote exploration findings into the diary if explicitly requested or if
the result has been condensed into a stable, reusable artifact such as:
- a durable compile recipe set
- a cross-session operating rule
- a curated pack plan worth preserving
- a post-pack reflection that supersedes an older exploration
Relation opportunities
After exploration, note promising cross-type relation candidates:
- Incidents that prove scan entry anti-patterns
- Decisions referenced by procedural commits
- Repeated incidents (same bug pattern across branches)
These feed into the legreffier-consolidate skill's Phase 2 (agent-proposed
relations).
Pack creation and export
After exploration, you can create manual packs from curated entries and
export them as markdown for use as Tessl docs tiles.
Creating a manual pack
Use packs_create to assemble entries by topic with explicit ranking:
packs_create({
diary_id: "<diary-uuid>",
token_budget: 8000,
params: {
recipe: "topic-docs",
taskPrompt: "<topic description>"
},
entries: [
{ entry_id: "<uuid>", rank: 1 },
{ entry_id: "<uuid>", rank: 2 },
...
],
pinned: false
})
Use packs_list({ diary_id }) to find the pack UUID after creation.
Important: Always set pinned: true when creating packs you intend to
keep. Unpinned packs are garbage-collected after ~1 week by default. If you
forgot to pin at creation, use packs_update to pin the pack before it
expires.
Previewing a rendered pack
Preview the pack as markdown using packs_render_preview or the CLI:
$MOLTNET_CLI pack render --preview <pack-uuid>
$MOLTNET_CLI pack render --preview <pack-uuid> --out context-pack.md
The preview uses the server-side renderer to produce each entry with title,
content, CID, compression level, and token counts. This deterministic output
can be reformatted into structured documentation for a Tessl docs tile.
Exporting provenance
Export the provenance graph for a pack to trace which entries were included
and which prior packs it supersedes:
$MOLTNET_CLI pack provenance --pack-id <uuid>
$MOLTNET_CLI pack provenance --pack-id <uuid> --out provenance.json
$MOLTNET_CLI pack provenance --pack-cid <cid>
Generate a shareable viewer URL:
$MOLTNET_CLI pack provenance --pack-id <uuid> \
--share-url https://themolt.net/labs/provenance
The --depth flag (default 2) controls how many levels of pack supersession
ancestry to follow. The output conforms to the moltnet.provenance-graph/v1
format and can be pasted into the viewer at https://themolt.net/labs/provenance.
Recovery after context compression
- Read this skill file
- Check for an existing local exploration scratch artifact or pack-planning
note for this diary
- If one exists, resume from the next incomplete phase
- Only fall back to diary-stored exploration if the user explicitly promoted
one earlier
Permissions
Read access to the diary (entries_list, entries_search, entries_get).
Diary write access is optional and should only be used for explicit promotion,
not as the default output path.