--- status: accepted date: 2026-08-22 deciders: jochen reconstructed: false --- # 15. The mesh brokers capabilities; nodes host; agents think ## Context HAL has 124 modules. The count is not the problem — it is the symptom. Modules are split because splitting is the only granularity the platform offers, and domains are merged because a shared database is the only integration it offers. Both pressures push in the same direction: boundaries end up drawn by deployment accident rather than by domain. Three observations establish the state. **The word "agent" means two different things.** The original design treated a node as an agent with thinking abilities. Later, noxflow implemented agents as employees with skills, workspaces and tasks. Both survive. The collision is visible in the data — there are **two agent rows per node**: | agent | skills | |---|---| | one named after the node | `{deploy,verify,operate}` | | one named `hal-` | `{}` | One carries the work; the other carries only identity, existing to hold a licence for HAL's own sessions. The same split appears in the schema: `nodes.hal_claude_account` and `agents.claude_account` are one fact in two tables in two databases, and what was documented as "three licence touchpoints" is one concept modelled three times. **Domains integrate by sharing a schema.** `noxflow` is 45 tables spanning five domains — tasks (7), agents (13), knowledge (8), meetings (7), scheduling (2). Its original purpose is 7 of 45. Because agent identity lives in noxflow's database, work that belongs elsewhere must be implemented there: per-agent Claude credentials had to be written by the noxflow runtime, even though node identity — the same kind of fact — lives in the mesh registry. **The core domain has no context to live in.** The mesh's distinguishing feature is that a module declares `requires: postgres/database` and never learns where the database lives, who owns the credential, or how it rotates. That is capability brokering, and it is what makes this a mesh rather than four machines with a configuration manager. Yet the logic implementing it sits in `modules/postgres/tools/index.ts` — a provider module, where "the mesh brokers credentials" cannot be expressed. On 2026-08-22 three of its invariants were found violated simultaneously (see Consequences). ## Considered Options 1. **Keep the current layout; fix bugs as they surface.** Rejected. The faults are not independent. Every incident on 2026-08-22 — credentials written by the wrong module, a dependency question answered wrongly twice, an invariant enforced nowhere — traced to a boundary that was never stated. Fixing them individually leaves the generator intact. 2. **Merge aggressively into few large modules.** Fewer names, same problem: a shared schema across domains is what produced noxflow, and doing it deliberately would produce it again at larger scale. 3. **Decompose by bounded context, with the mesh as a broker.** Name contexts after their aggregates, integrate through a published record rather than a shared schema, and let deployment granularity be a feature-level concern rather than a reason to create a module. **Adopted.** ## Decision ### The domain, in one sentence **The mesh brokers capabilities. Nodes are places where work runs. Agents are personas that think and act.** Everything else supports one of those three. ### Nodes and agents are decoupled A node is a place where an agent can run — that is the entire relationship. There is no resident agent, no node-owned identity, no ownership in either direction. Agents named after a node remain, as **ordinary agents** that happen to hold infra skills. Consequently `nodes.node_license` and `nodes.hal_claude_account` cease to exist: a node does not authenticate to a model provider, agents do. The two agent rows per node merge. ### There is one kind of participant, and some are human Human and non-human participants are both **agents**. Both hold identity and credentials; both act, remember and coordinate. What differs is **modality** — how an agent acts: | modality | credential is delivered to | |---|---| | spawned session | that agent's own config directory | | shell or desktop | that agent's home on the node it acts from | A node holds no licence. **An agent holds credentials, and delivery follows that agent's node bindings and modality.** A human agent's grant arrives in the home directory of the user it acts as, on the nodes it is bound to — the same rule that puts a spawned agent's grant in its config directory, with a different target. This requires one fact the mesh does not record today: which user, on which node, a given human agent acts as. Adding it is what removes the node licence — the node is currently standing in for an identity the mesh cannot name. It is also what makes a second human agent require no new mechanism. ### Contexts | context | aggregate | subdomain | |---|---|---| | `hal/mesh` | **Provision**, Node, Module — brokering and its bookkeeping | core | | `hal/agents` | **Agent** — identity, licence, runs, memory, thoughts | core | | `hal/work` | **Task** — workflows, bindings | core | | `hal/stream` | **Thread** — mentions, messages, meetings, notifications | core | | `hal/delivery` | **Pipeline** — jobs, artifacts, features | supporting | | `hal/knowledge` | **Document** — spaces, revisions, review | supporting | | `hal/ai` | **Licence** — provider grants and rotation | supporting | | `hal/observability` | **Check** | supporting | | `hal/config` | **Setting** — env, secrets, PKI | generic | A *brain* — memory, thoughts, cognition — is a concept the Agent aggregate owns. It is not a module. Anatomy makes attractive names and poor boundaries; today `hal/brain` names infrastructure and `hal/cortex` describes itself as messaging while running nowhere. ### Provisioning is the core domain, not plumbing `hal/mesh` is a broker; the registry is its bookkeeping. Its invariants are explicit and owned: - one rotation source per resource - a credential change fans out to every consumer - a consumer never holds a credential the provider does not know about ### Contexts integrate through the record, never a shared schema `hal/stream` is the published language. A context publishes; it does not join across a boundary. This is what dissolves "meetings" as a domain — a meeting is a thread, and a notification is a mention not yet read. ### Third-party software leaves the repository `plex`, `sonarr`, `postgres`, `verdaccio`, `docker-registry` and 88 others run **on** the mesh; they are not **of** it. The pipeline and provisioning are deliberately module-agnostic, so HAL's own modules dogfood exactly what external modules use — which is what makes the separation safe rather than merely tidy. ## Consequences **The invariants now have an owner, and were measurably unowned before.** On 2026-08-22, `provision_ensure` — documented as "NEVER rotates an existing secret" — was found to mint a new password on every adoption and update only the provider's row. `hal_notifications` consumers on three nodes held dead credentials for two days; `hal_transcripts` had two rows written 216 ms apart, so at most one could match the live role. **noxflow dissolves.** `hal/work` inherits tasks and workflows — the concept it was built for. Agents, knowledge, meetings and scheduling return to their contexts. The name goes away. **`hal/sdk` shrinks.** 155 files, 34,636 lines, containing code from every context — including `workflow-engine.ts` and `task-commands.ts`, work-domain logic in the kernel every module imports. Each landed there to avoid a cycle between modules that both needed it; a domain module can only own its shared code once the domain has a module. Extraction is therefore downstream of this decision, not independent of it. **Two mechanisms are prerequisites, not follow-ups.** - *Named features with per-node opt-in.* Without it, every independently deployable unit inside a context becomes a module again and the count returns. `hal/claude-licences` exists solely because one daemon must run on one node. - *A local mesh in containers.* `dev_up` starts providers "via systemctl (same as production)" — it borrows the host, and no mesh can be stood up locally. Everything that manifests **between** nodes is therefore discoverable only in production, which is where every fault of 2026-08-22 was found. A refactor of this size is otherwise unverifiable. **Credential delivery becomes uniform.** Per-agent credential directories, built for spawned sessions, extend to human agents unchanged. A file previously scoped to a node becomes scoped to an agent — which would have prevented the class of failure where a rotation reached one node of four while the mesh reported success. **Migration is incremental and long.** Contexts can be extracted one at a time behind the existing pipeline. Nothing here requires a flag day, and nothing here is cheap. ## References - [`01-RESEARCH/001-module-domain-decomposition`](../01-RESEARCH/001-module-domain-decomposition/analysis.md) — current-state evidence, table counts, open questions - [`00-META/how-we-build.md`](../00-META/how-we-build.md) — naming and integration rules - `modules/hal/sdk/src/feature-handlers/index.ts` — `FEATURE_HANDLERS`, the fixed handler array that makes a feature a singleton per module - `modules/postgres/tools/index.ts` — the adoption path that rotates a shared credential - Mediahuis `papa-hq`, ADR 0009 *Composable, independently-shippable modules* — the constraints that make a unit independently shippable, applicable unchanged to features - impire.io / soulstream — *the record* as integration substrate, personas over services, and "cheap awareness and expensive thinking"