Reef
reef
Shared, living memory for you and the people you share your life with — and for the AI assistants you both already use.
Your assistant forgets you between conversations. reef gives it a memory that lasts — and one your partner, your household, or your project can share.
Ask once. Tell your assistant the boiler is a Vaillant. Next month, in a different conversation, it still knows.
Share on purpose. Your private notes stay private. A shared space holds only what you deliberately put there.
Bring your own assistant. Claude, ChatGPT desktop, or Codex. reef is a remote MCP connector, not another chat app.
Try it
You need an invitation — reef is invite-only. Once you have one:
uv tool install reef-cli # or: npm install -g @haai/reef-cli
reef login
reef load-indexTo use it from an assistant instead, add https://reefwith.me/mcp as a remote
MCP connector and sign in with the address you were invited on.
In Claude Code, the plugin carries that connector and three commands with it:
claude plugin marketplace add diepzee/reef
claude plugin install reef@haai/reef:recall answers from memory rather than from guesswork,
/reef:remember files something away, and /reef:whats-new reports what the
other people's assistants have been writing.
There is a browser app too, at reefwith.me/app. Use it to read and edit pages without an assistant.
Related MCP server: hive-memory
How memory is organised
Memory lives in spaces. You get one private space the first time you sign in. You can create any number of shared ones — a household, a school circle, an accountant, a small project.
Private space | Shared space | |
Who can read it | Only you | Everyone invited |
Created | At first sign-in | By whoever needs it |
Named | Always | By you, for you |
People join | Never | By email invitation from the owner |
You name shared spaces for yourself. Your name for a space is yours alone.
Two households can each have a family without either knowing the other
exists, and nobody can take a name from anybody else.
Sharing is deliberate and permanent. Moving something out of your private space takes two steps. First your assistant shows you the exact text and names everyone who will be able to read it. Only then does it move.
Writing private content into a shared space any other way is refused — not discouraged, refused. And there is no un-sharing.
How your assistant reads it
reef loads an index first, then pages — the LLM Wiki pattern, adapted for shared, permissioned memory.
The assistant calls
load_indexand gets a map of every page it may see: path, title, tags, and a one-line description. No page bodies.It reads the map, decides what this conversation needs, and fetches only that with
read_pages.It fetches again as the topic moves. When the map alone cannot settle what to read,
search_pagesmatches words inside page bodies — and because it runs under the same row-level security as every read, a search can never surface a page its caller could not open.
The index is rebuilt from the database on every call, so it cannot fall out of date.
How your assistant writes it
Nothing is recorded silently. Mid-conversation, a fact worth keeping goes
through remember, which stages it as a dated line in that space's inbox —
and before the conversation ends, the assistant says what it is keeping so
you can strike anything first.
An inbox entry is not memory yet. A tidy-up — ask for one any time — compiles inboxes onto real pages, flags pages that have gone stale, and surfaces contradictions between your pages and shared ones instead of silently picking a winner. Deliberate capture, reviewed by you, is the design: reef will not transcribe your conversations behind your back.
How your privacy is protected
The database enforces it, not the application code.
Every page, file, and membership is guarded by PostgreSQL Row-Level Security. A query with a forgotten filter returns nothing rather than somebody else's data. Getting it wrong fails closed.
This works only because the app connects as an ordinary database role. A
superuser ignores every policy, so reef runs as rif_app — which can read and
write rows but cannot change the schema. Migrations and backups use a separate,
more privileged credential. See
scripts/provision_app_role.py.
Your data stays yours
Pages are Markdown from the moment you write them. The web app exports:
current content, as a Markdown archive or JSON, and
everything, as one download with full revision history and your stored file bytes.
Both are plain files that outlive this deployment. Export is one-way, out of reef — nothing here locks your memory in.
Using the CLI
Two packages, both installing a reef command:
Install | What you get | |
Python |
| Every MCP tool as a named command |
npm |
|
|
Named commands use hyphens: load_index becomes load-index. Every result is
JSON, and an error such as not_found also exits non-zero.
reef read-pages personal profile.md preferences.md
reef write-page personal plans.md --body-file ./plans.md \
--message "Add the summer plan" --title Plans
reef add-file personal ./lease.pdf --description "Signed rental agreement"
reef call read_pages '{"space":"personal","paths":["plans.md"]}'reef call takes any MCP tool name and a JSON object, so it reaches everything
the named commands do. Large inputs can come from a file or stdin; uploads are
encoded for you.
Both packages sign in through the same browser flow. Each caches its own token, so logging in with one does not log in the other. Tokens live in a user-private config file.
Set REEF_MCP_URL to point at another server, or REEF_ACCESS_TOKEN for a
headless run.
Run reef tools for the live schemas, and reef <command> --help for
arguments.
Agent skill: skills/reef/SKILL.md teaches an
assistant the retrieval protocol, private-by-default writing, optimistic
locking, and when it must ask you before acting.
Status
Live since 6 August 2026 at reefwith.me, deployed on Railway behind WorkOS AuthKit, and in daily use.
Complete and reviewed: the schema and access control, index and page reads, versioned writes, and section-level sharing. Also multi-user spaces with owner-managed invitations, file storage, the browser app, import, backup, and export.
Tests run against a real PostgreSQL, not a mock.
Known gaps, honestly:
Backups run by hand. One real dump exists and a restore drill passed against it, but the daily job is not set up yet.
Few people are on it. Growth is one invitation at a time, by design.
The context ceiling has not been measured on a phone.
Everything outstanding is tracked in the "Open items" list at the top of
docs/runbook.md.
Development
You need Docker and uv. just is optional but does the setup for you.
just setup # dependencies, database, and the roles the tests need
just test # lint, Python suite, frontend suite
just dev # serve the app locallyjust on its own lists every task. Without it:
docker compose up -d # PostgreSQL on port 5433
uv sync && (cd frontend && bun install)
uv run pytest # builds its own schema in rif_testA cluster created before the test roles existed is missing them, and the suite
says so loudly rather than testing a weaker shape. just db-roles repairs it.
Two things about the local database are deliberate, not accidental:
It does not run the app as a superuser. A superuser ignores Row-Level Security, so the security tests would pass without proving anything. See the comment in
docker-compose.yml.It creates a separate non-owner role for tests. A table's owner is not bound by column grants. Without that role, a test asserting "a member cannot rename a space" would pass for the wrong reason.
Migrations seed one person and their spaces. Nobody else is seeded, on purpose. An email address is the key a first sign-in binds against, and a migration does not re-run to correct a wrong guess. Everyone else arrives by invitation.
Write your PR title as a Conventional Commit (PRs are squash-merged, so the
title is what decides the release version), and add a one-sentence fragment
under changes/ if a person using reef would notice the change — see
docs/releasing.md.
Documentation
Document | What it covers |
The design and why it is shaped this way | |
Deploying, and what is still open | |
Backup and restore | |
The market around it |
Licence
The server — everything at the repository root — is AGPL-3.0-or-later. Read it, run it for yourself, fork it. The one condition that bites is the network one: if you run a modified reef as a service other people use, you owe them your changes. That matches what reef asks of itself. If somebody else is holding your memory, you should be able to see the code that holds it.
The parts you install rather than host are MIT, because a licence should not be a reason to hesitate over a client:
Part | Licence |
The server ( | AGPL-3.0-or-later |
| MIT |
| MIT |
| MIT |
Copyright is held by Haai BV.
A note on the name
The product is reef, and so is the Python module. rif was the working
name, and it survived far longer than intended.
What is still called rif is everything a running system remembers, because
those are not names anybody reads — they are keys something already wrote
down:
Still | What it is | Why it stays |
| Piccolo's key in the | Renaming it makes Piccolo find zero applied migrations and replay the whole chain against a populated database |
| SQL helper functions | They are the row-level-security boundary; renaming them is live DDL on the part of the system that must not be got wrong |
| database roles | RLS is only enforced against the right roles, and the suite asserts privileges as |
| environment variables | Twelve are set on Railway, including the signing key and the open door; a renamed variable that nobody set reads as absent |
| the repository | A plugin submission under review points at this URL |
The rule, if you are adding something: if the database or the deployment
will remember the name, it is rif. If a person will read it, it is reef.
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