The identity provider is settled as not-substrate: the mesh does not require one, tier 2 authenticates natively, and it is a hosted service like any other. Four substrate services, not five. The tier test's second step gains the verb that matters — can the control plane START without it, not function fully without it. That verb answers the forge and the registries. They are not substrate and they are not duplicated: the control plane starts and manages nodes without a forge, it just cannot change itself. One gitea module, tier 4, and the mesh's own instance is distinguished by what it is bound to rather than by being a different module — the same answer as postgres, from the same test. It also buys a property worth having: if the forge dies the mesh keeps running. Delivery needing them is not an upward dependency, resolved the way the constitution already says to: tier 2 declares requirements, tier 4 provides implementations, the binding is data. The mechanism is provisioning, and the new idea is that the control plane is itself a consumer. Self-hosting therefore becomes a state the mesh REACHES, not a precondition. A first node comes up from pinned external artifacts and re-binds to internal providers once they exist. Today's mesh assumes the second state from the first moment, which is why the first-node path needs a script that papers over an impossibility and is the least-exercised code in the system. Made explicit, the transition is also reversible. Research 007 and 008 opened for the two areas flagged as important and complex, scoped from the weaknesses the as-is layer already documents rather than started blank. And the origin: this began as a dotfiles repository. The first two days adopt dotfiles, add per-node overrides, and introduce service symlinking with an ignore file. The flat one-directory-per-tool catalogue, linking over copying, adoption of already-configured machines, per-node overrides and the desktop modules are all inherited rather than chosen for a mesh. That is the single most useful fact for anyone changing the catalogue, it strengthens ADR 0018 — the case for links was never made for a mesh — and it explains research 005's silent fifty: dotfiles-era entries for one tool never shared a domain because they never had one.
HAL — HQ
The single source of truth for what the HAL mesh is, what it is becoming, and
why. Implementation lives in modules/; the reasoning behind it lives here.
Structure
| Folder | Purpose |
|---|---|
00-META |
Mission, foundational context, the rules that hold across the mesh, the repository map, and the process playbooks. The northern star for every decision. |
01-RESEARCH |
Active and historical investigations, before they harden into design. |
02-DECISIONS |
Numbered decision records, in the order the decisions were taken — what was chosen, and what was rejected. |
03-DESIGN |
The authoritative specification, in two layers: 00-as-is — the mesh that exists — and 01-to-be — the one being built toward. |
04-ISSUES |
The front door for "something is wrong" at the level of design or governance. |
The numbering is the flow. Research produces a decision; the decision authorises a design.
That is why decisions are 02 and design is 03 — a reader following the numbers walks the
process in the order it happens.
The flow
idea ──► 01-RESEARCH ──► decision (02-DECISIONS/) ──► 03-DESIGN/01-to-be ──► built (code repo)
│ │ │
│ │ └─► 03-DESIGN/00-as-is once shipped
│ └────► abandoned (recorded, kept)
└─(small/obvious, still recorded in 02-DECISIONS)──────────► 03-DESIGN directly
symptom ──► 04-ISSUES ──► diagnosis ──► code-repo fix and/or design amendment
00-META/how-we-build.md ──► sync ──► the constitution the mesh injects into design sessions
Implementation lives in the code repositories — see
00-META/repos.md. Every workflow is a playbook in
00-META/process/; agents operate through them and not outside them.
Rules
- Markdown only.
- No new top-level folders without explicit confirmation.
- Knowledge flows
GENESIS → RESEARCH → DESIGN. Research graduates into design only after analysis against GENESIS confirms alignment, and only through a recorded decision. - Status lives in frontmatter, never in a central status file. Cross-cutting views are generated on demand, never hand-maintained.
- GENESIS and DESIGN are instance-agnostic. They describe the mesh as a concept — no machine names, no counts, no topology. A reader must not be able to tell how many nodes the author happened to have.
- RESEARCH describes real observations, but never identifies the mesh it observed. Evidence is what makes research worth reading, and the shape of a finding survives anonymisation intact — a node publicly named but behind a household NAT carries the whole lesson without naming anything.
- The as-is layer records what is, not what should be — including behaviour nobody would choose again. A layer that keeps only the good decisions is a brochure.
- A document that states a rule about the mesh should say how that rule is checked. This repository has a rule requiring every capability-exposing module to declare the core runtime as a dependency; zero modules do. An unenforced rule is indistinguishable from a wrong one.
This repository is public
Written for a reader who is not its author and has no access to the mesh it describes. Concretely, nothing here may contain:
- routable addresses, real domain names, hosting providers, or node names — use the
documentation ranges (RFC 5737
203.0.113.0/24, RFC 1918) and role names such asanchor,home-server,workstation,laptop - absolute paths from anyone's machine, usernames, home directories, or email addresses
- credentials in any form, including lengths or hashes of live secrets
- operational detail that is only useful to an attacker — which host is the VPN hub, on which port, which node is reachable only through a forwarded port
Private-range addresses and the overlay plan are fine: they describe a pattern, not a target.
The test is whether a paragraph would still teach something to a stranger running an entirely different mesh. If it would, it belongs. If it only makes sense to someone who knows this particular installation, it is either a note in the wrong place or a disclosure.
Why this is its own repository
It began inside the code repository, on the reasoning that HAL already has a mesh-native knowledge store and that adding a fourth knowledge system would repeat the mistake this folder was created to fix.
That objection was about a fourth knowledge system, and the answer offered was indexing rather than location — that these documents would be indexed into the knowledge base, so a symptom search returns them beside everything else. One source, many surfaces. Where the source is authored is then a separate question.
That indexing does not exist. It was checked on 2026-08-23 and returns nothing; it appears
never to have existed. Until it does, the objection stands unanswered and this repository is
the fourth knowledge system it was argued not to be. Recorded as
04-ISSUES/006, and
left standing here rather than quietly reworded, because a claim that held up a decision and
was never checked is precisely the failure this repository exists to name.
Answered separately, a repository of its own is the better home:
- The cadence is different. A decision changes when thinking changes, not when code changes. Tying documents to a code branch means they merge on the code's schedule.
- The reviewers are different. A design argument is not reviewed the way an implementation is, and it should not queue behind a build.
- The scope is wider than one repository. ADR 0015 sends most modules out of the monorepo entirely. Documentation that governs several repositories cannot live inside one of them.
The trade is real and worth naming: a change to a document and the change to the code it
describes can no longer land in one commit. Keeping them honest is a discipline now rather
than a mechanism — which is why every decision is recorded in
02-DECISIONS as it is taken, and why a document that states a rule should
say how the rule is checked.
Recorded as ADR 0019.