hyperhive/docs/forge.md
atlas 0db83c40a0 feat(#2642): a github.com notification poller alongside the forge one
hive-forge-notify grows a second binary, hive-github-notify. The two
share the notification half of the job — tolerant parse, classification,
formatting, dedupe, todo delivery — and nothing else: each binary owns
its host's protocol outright.

Two binaries rather than one multi-source daemon, and rather than a
cargo feature. A feature would unify across the workspace and cost every
crate its build cache. Two binaries keep the decision in nix: forge.nix
installs the forge unit, github.nix installs the github one under
hyperhive.github.enable, so a hive built without that module has no
github poller in its closure at all — GitHub access is separable (a
tier, a policy boundary), not merely switched off. Both binaries ship
from the existing derivation, so packages.nix is untouched.

The split is real at the code level too, not just at the unit level.
source.rs is a trait; the impls live in the binaries that use them, so
neither binary links the other's protocol code and the library names no
host at all. The forge-only assigned-issue rollup moves into the forge
binary for the same reason: it asks the forge what is assigned to this
agent, which is not a notification-protocol concern.

At runtime the github unit needs a PAT at <state>/github-token, the same
dashboard-provisioned token the gh wrapper and the git credential helper
already use. No PAT: it logs why and exits 0, which is why the unit is
Restart=on-failure and not always.

Forgejo's notifications API is modelled on GitHub's, so one tolerant
parse serves both — the differences (string thread ids, PullRequest vs
Pull) are absorbed by lenient deserializers rather than a second parse
path. Thread ids normalise to String at the parse boundary; they are
only ever opaque keys. Todo keys gain a per-source prefix so the two
hosts cannot collide, and the forge's is deliberately empty to keep
existing forge todo keys stable across the deploy that lands this.

The github loop honours the server's X-Poll-Interval, re-arming only
when the server asks for a slower cadence than ours; the hint is read
before the status check, because it arrives on error and empty pages too
and that is exactly when it matters. Reading the notification stream
needs the notifications scope on the PAT, which a token minted for push
access typically lacks; the failure mode is silence, so docs/github.md
says so explicitly.
2026-07-31 17:23:18 +02:00

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Markdown

# hive-forge
Private Forgejo instance running in a nixos-container, used as the
swarm's persistent code-collaboration surface (issues, PRs, reviews,
attachments). Configured via `services.hyperhive.forge.*`. Container
shape, ROOT_URL / sub-domain routing, and operator-vs-in-cluster URL
handling live in [`docs/gateway.md`](gateway.md); this file owns the
per-agent integration story and the notification pump that wakes
each agent on relevant activity.
## Token scopes
Two scope sets live in `hive-c0re::forge`:
**`TOKEN_SCOPES`** (per-agent tokens):
| Scope | Why |
| -------------------- | ------------------------------------------------------------------------------------------------------- |
| `write:repository` | Create, clone, push, delete repos; merge PRs. |
| `write:issue` | Open / comment / review issues **and** pull requests (Forgejo namespaces PR conversation under issues). |
| `write:user` | Edit own profile, create repos under own user. |
| `write:organization` | Create + manage orgs (lets agents share a forge namespace). |
| `read:user` | Token-owner endpoint used for self-identification at harness startup. |
| `write:misc` | Hooks, attachments, the rest of the long tail. |
| `read:notification` | Poll `GET /notifications` for unread events. |
| `write:notification` | Mark notifications read via `PATCH /notifications/threads/{id}`. |
**`CORE_TOKEN_SCOPES`** (hive-c0re's own `core` user): everything in
`TOKEN_SCOPES` plus `read:admin` and `write:admin`. Site-admin
membership alone isn't sufficient — Forgejo's token scope gate runs
before the user-permission check, so `/api/v1/admin/*` returns
`403 Forbidden` for any token without the admin scope bits, even when
the bearer is a site admin.
**Migration note**: if `PATCH /api/v1/admin/users/{name}` returns 403
on an existing deploy, the core token predates the admin-scope
addition. Delete `/var/lib/hyperhive/forge-core-token` and restart
hive-c0re to re-mint with the new scopes.
---
## Per-agent forge accounts
Each agent gets its own Forgejo user + access token, provisioned at
boot by `hive-c0re::forge`. The provisioning flow is idempotent:
existing accounts + tokens are reused, so container destroy/recreate
doesn't lose forge identity. The token is written to
`<state>/forge-token` (one line, no trailing newline) inside the
agent container so `hive-forge` CLI + `forge_notify` poller can
read it without touching c0re's host-side credential store.
Two things live in the `agent-configs` Forgejo organization:
- A config repo per agent (`agent-configs/<name>`). As of #1787 the
agent is a **write collaborator on its own** repo — it can push
config-change branches and (once #1838 P2 lands) open config PRs — but
`main` is branch-protected core-only: only hive-c0re's verify-and-ff-push
merge handler lands on `main`, an operator-team approval is required, and
the agent can neither push `main` directly nor self-merge. `main` is
fast-forward-only — hive-c0re never force-pushes (the merge handler's ff
push lands fine; the `push_config` mirror pushes `main` + the add-only
status tags without force, and treats a non-fast-forward rejection of
`main` after a rolled-back deploy as expected — the forge keeps the
approved history, the `failed/<id>` tag records the divergence).
Repos stay private, so an agent can't read another
agent's config. (Agents remain read-only collaborators on `core/meta`.)
hive-c0re also references this repo as the agent's **persistent meta
flake input** (`agent-<n>.url = git+http://<forge>/agent-configs/<n>.git`;
see [approvals.md § Meta flake](approvals.md)), fetching it as the `core`
user via a git credential helper that reads the live forge-core token —
so the config lives on the forge, not a hand-synced local checkout.
- The dashboard links each container's "config" anchor to this
config repo, so operators can click straight from the SW4RM tab into
the rendered repo without an extra `git` step.
The `hive-forge` CLI (separate workspace crate, see
[`README.md`](../README.md) file map) wraps the Forgejo REST API
with the per-agent token; agents call it for issue / PR / comment
ops as if it were a peer. All REST calls across the workspace
(`hive-forge` verbs, hive-c0re provisioning, this poller) go through
the typed `forgejo-api` crate; only non-`/api/v1` web-router routes
(attachment / artifact downloads, log streaming) and the poller's
enrichment fetches of server-provided subject URLs stay on raw
reqwest.
## Notification poller (`hive-forge-notify/src/notify.rs`)
Its own long-running per-agent daemon (`hive-forge-notify`, a sibling of
`hive-bash-daemon` / `hive-matrix-daemon`) — it used
to be a background task inside the `hive-agent` serve loop. Polls
`GET /api/v1/notifications?all=false` every 30 seconds (Forgejo's
unread-only filter), formats each notification as a broker
`Wake { from: "forge" }` message, and delivers it to the agent's own
inbox so claude's normal turn loop picks it up.
The crate builds a second, independent binary for a different host — see
[github.md](github.md#notifications).
The host-specific calls — list unread, mark read, resolve own login —
live behind `Source` in `hive-forge-notify/src/source.rs`;
classification, formatting, dedupe and todo delivery are shared. Todo
keys here are the bare thread ids, and must stay that way: renaming them
would orphan every in-flight forge todo on the first restart after a
deploy.
### Mark-read on delivery
On a **successful** broker delivery, `forge_notify` marks the thread
read on forge straight away (`PATCH /notifications/threads/{id}`). The
broker inbox is the durable work queue now — each delivered wake is a
sqlite row with its own ack lifecycle — so the forge unread flag no
longer needs to track whether the agent has *processed* a
notification. Clearing it on delivery keeps forge's unread set **tiny
by construction**: at rest it holds only threads that failed to
deliver plus whatever arrived since the last 30s poll.
That size property is the whole point. A container rebuild starts the
poller with no memory of what it delivered, re-scans `?all=false`, and
finds nothing stale — the delivered threads are already read on forge.
Forge's own read-state is thus the durable, cross-rebuild record of
what's been delivered; there is **no persisted cursor**. (This
replaced an earlier design that left threads unread and leaned on a
persisted dedup cursor: a rebuild that lost the cursor re-delivered the
entire still-unread backlog as fresh wakes — the notification flood of
#2593 / #2106.)
**Read-before-comment coupling, dropped on purpose.** The old design
left threads unread so the hive-forge read-before-comment guard (which
keys off forge unread-state) would force the agent to view a thread
before commenting. That coupling is gone: the broker wake already
carries the notification body, so *delivery is the read*. An agent that
wants the full thread still runs `hive-forge comments` / `view`; the
guard no longer blocks a first comment on a freshly-delivered thread.
**In-process dedupe (tiny, ephemeral).** A single-process map (thread
id → last-delivered `updated_at`) guards the narrow window where a
mark-read call *transiently fails* and the thread reappears unread in
the next poll before its `updated_at` bumps — so a flaky PATCH doesn't
re-fire the wake. It is **not persisted** and resets on restart (forge
read-state covers the durable case). Each poll prunes it to the ids in
the single `limit=UNREAD_FETCH_LIMIT` (50) fetch page, so it can never
exceed that many entries (a debug assertion pins the invariant; the
fetch limit and the bound are the same constant). A failed *delivery*
is left unread and out of the map, so it resurfaces next tick.
Self-echo notifications (the agent's own writes, see below) are marked
read directly without a delivery — same `mark_read` call, no wake.
### Activation gates (graceful no-ops)
The poller starts disabled and stays that way for any of:
- `HIVE_FORGE_URL` not set (no forge configured for this hive), or
not parseable as a URL.
- `<state>/forge-token` missing or empty (agent has no forge
account — pre-provisioning or destroy-without-purge race).
- Initial client construction fails (the typed `forgejo-api` client
for the API calls, or the plain reqwest client kept for the
best-effort enrichment fetches of server-provided subject URLs;
both extremely unlikely; treated as fatal-to-the-task only).
Disabled = the spawned task returns immediately. All other failure
modes (HTTP errors, parse errors, mark-read failures) are
best-effort: logged at debug/warn and retried next tick.
### Self-notification filtering
Forgejo fires notifications for the agent's own actions (it opened a
PR, posted a comment, submitted a review). Surfacing those would
loop claude on its own writes. The comment/review case is dropped
silently (mark-read without delivery):
- **Self-authored comments / reviews** — comment payload's
`user.login` matches `own_login`.
- **Self-authored creations** (an agent opening its own PR/issue) — the
already-fetched subject payload's poster `user.login` matches
`own_login`. Only _creations_ are dropped; a later state change on the
agent's own subject is driven by someone else and still surfaces.
`own_login` is fetched at startup via `GET /api/v1/user`. On fetch
failure the filter degrades open (no filtering) rather than crashing
the task — a noisy inbox beats a silently-stuck poller — but the fetch
is **re-attempted on each poll tick** until it succeeds, so a boot-time
failure (the forge not yet reachable) self-heals instead of leaving
self-echo filtering off for the whole process lifetime.
### Body excerpt + truncation + heading escape
The wake message embeds the comment / review / new-item body so the
agent sees actual content without a follow-up fetch. Three pipeline
steps in order:
1. **Truncate** to `BODY_TRUNCATE = 500` chars at a char-boundary;
appends `…` when cut. Truncation happens BEFORE escape so the
mention-overflow diff (next step) compares like-for-like against
the raw body.
2. **Mention overflow extraction** — when truncation actually
trimmed content, walk the full body line-by-line and surface any
`@username` lines that fell outside the embed window. Rendered as
a trailing `mentions (truncated from body):\n > <line>` block.
Mention detection requires the `@` to be at line start or
following a non-username byte, so email-style `foo@bar.com` does
NOT count.
3. **ATX heading escape** — for each line that's a strict
`CommonMark` ATX heading (1-6 leading `#`s followed by a space,
tab, or end-of-line), prepend `\` so the embedded body doesn't
blow into a top-level h1/h2 inside the wrapper message when the
dashboard renders it. Lines like `#tag`, `#123`, `#!/bin/bash`
are NOT headings — no escape, no cosmetic noise. Indented
"headings" inside lists / nested quotes keep their leading
whitespace.
The strict ATX rule is deliberate: `\#tag` and `#tag` render
identically, so an over-eager escape just adds visual clutter
without changing behavior. Setext-style headings (`title\n====`)
are not handled — rarer in practice, would need multi-line
lookahead.
### Wrapper format
Five shapes, distinguished by the notification's classification:
| Trigger | Wrapper |
| ----------------------------------- | --------------------------------------------------------------------------------- |
| Comment on issue / PR | `[comment on PR #N owner/repo] title\nurl: ...\n\nauthor: body\nassignee: ...` |
| Review submission | `[PR approved #N owner/repo] title\nurl: ...\n\nauthor: body\nassignee: ...` |
| New issue / PR | `[new PR #N owner/repo] title\nurl: ...\n\n<body excerpt>\nassignee: ...` |
| Later activity (open, not creation) | `[activity on PR #N owner/repo] title\nurl: ...\n\n<body excerpt>\nassignee: ...` |
| State change | `[PR merged #N owner/repo] title\nurl: ...\nassignee: ...` |
Review labels come from the Forgejo `state` field: `APPROVED`
`approved`, `REQUEST_CHANGES``changes requested`, `COMMENT`
`review comment`. `PENDING` is dropped (review saved but not
submitted yet — no peer-visible event). Unknown states fall back to
the generic comment wrapper.
A review submitted with **no body** renders `reviewed by: <author>` in
place of the `<author>: <body>` line — deliberately worded to not collide
with the meta-suffix `reviewer:` line (requested reviewers, below).
### Merge/close vs a later comment
A notification carrying a `latest_comment_url` normally takes the comment
path. But a merged/closed subject **keeps** its `latest_comment_url` set,
so a just-merged PR that had any prior discussion would route to the
comment path and render `[comment on PR]` (with a stale pre-merge comment
body) instead of `[PR merged]` — the agent never learns its PR merged
(#2495). So when the notification IS the merge/close transition — its
event time (`updated_at`) is within `NEW_ITEM_TOLERANCE_SECS` of the
subject's `closed_at` (set for both `merged` and `closed`) — the
state-change path wins even with a comment url present
(`state_change_is_current`). A genuine **later** comment on an
already-closed subject bumps `updated_at` well past `closed_at`, so it
stays on the comment path and keeps its comment body. Missing/unparseable
timestamps default to the state-change path, so a merge is never silently
hidden behind a stale comment.
#### Merge racing a comment
The one gap the timestamp cut leaves: a genuine comment posted **within
`NEW_ITEM_TOLERANCE_SECS` of the merge** bumps `updated_at` close enough
to `closed_at` that `state_change_is_current` returns `true` — so it takes
the state-change path and its body would be dropped. Best of both worlds:
on the merge/close path we fetch the `latest_comment_url` comment and, when
its `created_at` is strictly **after** the subject's `closed_at`
(`comment_is_after_close`) — i.e. it raced the merge rather than being the
pre-merge last comment the subject keeps — append it as a
`comment by <author>: <excerpt>` block before the meta suffix
(`fresh_post_close_comment_tail`). So the wake carries **both** `[PR merged]`
and the racing comment. The kept pre-merge comment (created before
`closed_at`) is left off, a self-authored racing comment is dropped (don't
echo the agent's own write), and a missing/unparseable `created_at`/
`closed_at` appends nothing (conservative — only surface a comment we can
positively place after the close). Cost: one extra comment fetch on
merge/close notifications, acceptable given how rare they are.
### "new" vs "activity on"
A review submitted with **no body** carries no `latest_comment_url`,
so it misses the comment path and lands on the state-change path with
`state == "open"` — exactly like a freshly opened PR. Labeling that
`new PR` is misleading: agents dismiss it as a duplicate of the
original open notification and miss the review (#1637). So the `open`
state only earns the `new <kind>` label when the notification's event
time (`updated_at`) is within `NEW_ITEM_TOLERANCE_SECS` (120s) of the
subject's `created_at`. Anything later is labeled `activity on <kind>`
— neutral and non-misleading, since we can't cheaply say _what_ the
activity was without an extra reviews fetch. Missing/unparseable
timestamps default to `new` (preserve prior behavior rather than mask a
genuine new item). Timestamps are parsed by a small dependency-free
RFC 3339 → epoch-seconds helper (`parse_rfc3339_secs`).
Number is extracted from `subject.html_url`'s last path segment
(strips `#anchor` first); repo slug from `repository.full_name`.
Both degrade gracefully when absent (number → blank, repo → blank)
so unexpected Forgejo shapes don't crash the formatter.
### Meta suffix
Every wrapper ends with one or more of:
- `assignee: <list>` — always present; `unassigned` when empty so
the line shape is stable.
- `reviewer: <list>` — PR notifications only, present only when
`requested_reviewers` is non-empty.
### Review-request override
For new PRs, the kind label flips to `[review requested #N
owner/repo]` when `own_login` appears in `requested_reviewers`,
regardless of the Forgejo `reason` field. Forgejo doesn't reliably
set `reason == "review_requested"` (often null instead), so the
fallback checks the subject payload directly. Detection is gated on
`is_new` so the label only fires once on PR creation, not on every
subsequent comment.
### Subscription management
The poller does **not** auto-unsubscribe from repo watches — it
delivers every unread notification it's handed. Bounding the
firehose (dropping broad repo watches an agent doesn't need) is done
explicitly via a hive-forge CLI subscription verb, not by the poller
guessing which watches to drop. See the `subscription` verb in
[`docs/tools/forge.md`](tools/forge.md).