/m0 — Cross-Tool Agent Memory
M0 keeps one local operational thread per project: what was done, what was verified, what is next. Any tool can write to it and read it back, so a session that starts cold can continue work another tool began.
Two operations, one SQLite table, standard library only. The wire contract is in
systems/m0/SPEC.md; the write path is /m0-remember, the read path is
/m0-recall, and the session handoff flow is /m0-handoff.
Quick Reference
M0S="$HOME/.claude/skills/m0/scripts" # installed location
M0="${M0_BASE_URL:-http://127.0.0.1:8787}" # server base URL
# Is it up, and where does it store?
curl -s "$M0/api/health" | python3 -m json.tool
# Start it (foreground)
python3 "$M0S/m0_server.py" serve
# Start it in the background, logging to the store directory
nohup python3 "$M0S/m0_server.py" serve > "$HOME/.local/share/coco-m0/server.log" 2>&1 &
# Write and read without any server at all
python3 "$M0S/m0_server.py" write --project my-project --text "Did the thing."
python3 "$M0S/m0_server.py" read --project my-project --limit 5
# Land any writes that were deferred while the store was busy
python3 "$M0S/m0_server.py" drain
If the scripts are not at $HOME/.claude/skills/m0/scripts, the bundle was
installed elsewhere: run bash install.sh --systems m0 from the Coco checkout,
or use the in-repo path systems/m0/skills/m0/scripts.
Sub-commands
/m0 status — is memory working, and where does it live
M0="${M0_BASE_URL:-http://127.0.0.1:8787}"
if curl -fsS "$M0/api/health" >/dev/null 2>&1; then
curl -s "$M0/api/health" | python3 -m json.tool
else
echo "No M0 server at $M0."
echo "Direct store access still works:"
python3 "$HOME/.claude/skills/m0/scripts/m0_server.py" health
fi
Report to the user, in this order:
- Server — running at
<url>, or not running (and that this is fine; the CLI and the MCP tools both fall back to the store directly). - Store — the
dbpath and therowscount. This is the whole dataset. - Pending — if
pending_sidecarsis above zero, some writes are spooled but not yet landed. Rundrain. - Degraded — if
degradedis set, another process holds the write lock. Reads still work; writes will defer rather than fail.
/m0 start — run the server
Ask which the user wants:
- Foreground for a quick session:
python3 "$M0S/m0_server.py" serve - Background for daily use: the
nohupline above. - Nothing — the CLI and MCP tools work against the store directly. A server is only needed when several tools should share one process, or when something can only speak HTTP.
Useful flags and variables:
| Setting | Effect |
|---|---|
--port / M0_PORT |
Listen port (default 8787) |
--host / M0_HOST |
Bind address (default 127.0.0.1; anything else warns, there is no auth) |
--db / M0_DB |
Store path (default $XDG_DATA_HOME/coco-m0/thread.db) |
--busy-timeout-ms / M0_BUSY_TIMEOUT_MS |
Per-call SQLite busy timeout (default 10000) |
M0_PROJECT |
Default project when a caller omits one |
M0_SOURCE_TOOL |
Stamped on writes, so you can tell which tool wrote what |
Never set M0_BUSY_TIMEOUT_MS to a large value. A long wait inside a shutdown
hook is indistinguishable from a hang; the deferred-write path exists so waiting
is never necessary.
/m0 mcp — wire the two tools
claude mcp add coco-m0 -- python3 "$HOME/.claude/skills/m0/scripts/m0_mcp.py"
claude mcp list # confirm it is registered
That exposes m0_remember and m0_recall as tools the agent can call directly,
which is the lowest-friction way to make memory habitual. For editors that read a
project .mcp.json, the equivalent entry is:
{
"mcpServers": {
"coco-m0": {
"command": "python3",
"args": ["<absolute path>/skills/m0/scripts/m0_mcp.py"],
"env": { "M0_PROJECT": "<this project>" }
}
}
}
The MCP server prefers the HTTP server and falls back to the store directly when
nothing is listening, so either mode works. Each result reports which path served
it under via.
/m0 hooks — capture without being asked
Automatic capture is opt-in. These are recipes for the user to install; do not edit the user's settings files without asking first. Show the snippet, explain what it does, and let them decide.
Session end, so a closing session always leaves a trace:
python3 "$HOME/.claude/skills/m0/scripts/m0_server.py" write \
--project "$(basename "$PWD")" --kind session_end \
--source-tool claude-code \
--branch "$(git rev-parse --abbrev-ref HEAD 2>/dev/null)" \
--head-sha "$(git rev-parse --short HEAD 2>/dev/null)" \
--text "Session ended."
This is exactly the case the deferred-write path was built for: if the store is locked at that moment, the entry is spooled to a sidecar file and lands on the next start rather than being lost.
Session start, to inject the thread into a fresh session:
python3 "$HOME/.claude/skills/m0/scripts/m0_server.py" read \
--project "$(basename "$PWD")" --limit 10
/m0 drain — land deferred writes
python3 "$HOME/.claude/skills/m0/scripts/m0_server.py" drain
# {"drained": 1, "skipped": 0, "quarantined": 0}
drained— entries moved from the spool into the store.skipped— the store was still busy; they stay spooled for next time.quarantined— files that were not valid entries, renamed*.json.badso they stop blocking the queue. Inspect them; they are plain JSON.
A server drains automatically on start, so this is only needed when running serverless or after an unusual amount of write contention.
/m0 verify — prove it works
bash systems/m0/tests/m0-smoke.sh
27 assertions in a throwaway directory on an ephemeral port: the round trip, idempotency, a deferred write under a genuinely locked store, the drain on restart, and the MCP tools over stdio. It touches no existing store. Run it before trusting a change to this bundle, and quote the output rather than summarising it.
/m0 privacy — what leaves the machine
Nothing. The store is a SQLite file on local disk, the server binds to loopback, there are no outbound calls in the request path and no telemetry. To inspect, back up or forget:
DB="$(python3 "$HOME/.claude/skills/m0/scripts/m0_server.py" health | python3 -c 'import json,sys;print(json.load(sys.stdin)["db"])')"
sqlite3 "$DB" "SELECT ts, kind, substr(text,1,60) FROM operational_thread ORDER BY ts DESC LIMIT 10;"
cp "$DB" ~/m0-backup.db # back up
rm "$DB" # forget everything
When to reach for this
- Use
/m0-recallat the start of a session, or when picking up work started elsewhere, before asking the user to repeat context. - Use
/m0-rememberafter a step lands, a decision is made, or something is verified. - Use
/m0-handoffbefore context is compacted or a session ends. - Use
/m0(this skill) for the plumbing: server, store, spool, wiring.
M0 answers "where were we and what is next". It does not do semantic search,
entity extraction or summarisation — see the comparison with the cognee bundle in
systems/m0/README.md before choosing.