Archipelago — open-source initial import

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Archipelago
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# Release 1.7.121 — task list
Opened 2026-08-03, immediately after v1.7.120-alpha shipped. Everything the operator has
asked for since, plus the items v1.7.120 deliberately left open. Ordered by severity.
Status key: **DONE** (committed) · **READY** (written, not yet committed/tested) ·
**OPEN** (not started) · **BLOCKED** (needs an operator decision)
---
## P0 — Security
### 1. App ports are reachable with no login, on every transport — **OPEN**
> "if I'm logged out I can reach every app port on tailscale and LAN, this can not be
> allowed… it must present the login to access the app with an app icon of what you're
> accessing to confirm, and 2FA if present" — operator, 2026-08-03
- Applies to **Tailscale, LAN, Tor, FIPS** alike, and to "ssh access to that port or whatever".
- Required behaviour: an unauthenticated request to any app port serves a **login page
naming and showing the icon of the app being accessed**, then honours **2FA when set**.
- **Research first:** how umbrelOS and StartOS gate app access (operator asked explicitly).
Both are open source — `getumbrel/umbrel` and `Start9Labs/start-os`. Do not guess at
their model; read it.
- This is the same class as the v1.7.120 `/lnd-connect-info` + `/bitcoin-rpc/` leaks, but
**fleet-wide across every app port** rather than two endpoints. Those two were closed by
moving authorisation to the resource; this needs a general gate.
- Scope note: `fips/app_ports.rs` holds the mesh allowlist; `is_peer_allowed_path` in
`server.rs` holds the peer HTTP allowlist. Neither currently authenticates app ports.
#### Research — umbrelOS (verified from their docs/source, 2026-08-03)
umbrelOS solves this **architecturally, not per-app**: the app's own port is never
published. Each app gets a sidecar `app_proxy` container that owns the published port and
forwards to the app on the internal network.
- `containers/app-proxy` is described as *"a transparent HTTP proxy to add authentication
to Umbrel apps"* — **every** HTTP request and WebSocket upgrade passes through it and
has its session token checked.
- Tokens come from a separate `app-auth` service; the proxy talks to it over a local port
(default 2000) with a shared secret (`UMBREL_AUTH_SECRET`). Two JWTs exist: an **API
token** in localStorage (`{loggedIn: true}`) for the dashboard's own API, and a
**proxy token** in an **HttpOnly cookie** (`{proxyToken: true}`) for app access. Both
HS256, 7-day expiry.
- Unauthenticated requests are redirected to the login screen.
- Per-app escape hatches, all env vars on the proxy: `PROXY_AUTH_ADD` (bool, **default
true** — so apps are protected unless opted out), `PROXY_AUTH_WHITELIST` (paths exempt,
e.g. `/public/*`), `PROXY_AUTH_BLACKLIST` (paths that must be authed, e.g. `/admin/*`).
- Known friction worth designing around: apps with their own login (Frigate, and the
`PROXY_AUTH_ADD=false` tracker issue) end up double-authenticating, and non-browser API
clients (Home Assistant hitting an app's API) break because they have no cookie. Any
gate we build needs a story for machine clients, not just browsers.
**The lesson for us:** the reason umbrel doesn't have this bug class is that there is no
unauthenticated path to bind to in the first place. Our apps publish their own ports
directly, so a gate bolted onto one transport leaves the others open — which is exactly
the shape of the `/lnd-connect-info` + `/bitcoin-rpc/` leaks. The fix likely has to move
the port binding, not just add a check.
#### Reproduced ON archi-dev-box, 2026-08-03 — baseline before the fix
No session cookie, over the Tailscale IP `100.69.68.39`:
```
port 18083 HTTP 200 LND - Archipelago
port 8334 HTTP 200
port 8175 HTTP 200 Fedimint Guardian - Archipelago
port 8336 HTTP 200 FIPS Mesh
port 8090 HTTP 200
port 7777 HTTP 200
```
`ss -tlnp` confirms these are bound `0.0.0.0`, so the same responses are served on the LAN
IP and every other host address. Re-run this exact loop after the fix: every one must
become the login page, and the ports listed as protocol exemptions (item 1b) must be the
*only* ones still answering.
#### Exposure map — how app ports are reachable TODAY (verified in source, 2026-08-03)
All four transports converge on `127.0.0.1:<app_port>`. This is the whole reason the fix
is tractable: it is **one gate, not four**.
| Transport | Path to the app | Code |
|---|---|---|
| LAN / Tailscale | container publishes the port on the host (`--network host`, so `0.0.0.0:<port>`) — reachable on *every* host IP | `scripts/container-specs.sh`, `first-boot-containers.sh` |
| FIPS mesh | daemon binds `[fips0-ULA]:<port>` and raw-TCP-forwards to `127.0.0.1:<port>` | `server.rs:1130` `app_port_v6_relay_loop` |
| FIPS firewall | `tcp dport { …APP_LAUNCH_PORTS… } accept` drop-in opens them all | `fips/config.rs:274`, `fips/app_ports.rs` |
| Tor | `HiddenServicePort 80 127.0.0.1:<local_port>` per service | `api/rpc/tor/mod.rs:243` |
#### Design decision (operator, 2026-08-03)
**Gate app UIs + bearer tokens; protocol ports exempt.** HTTP app UIs get the login gate
(app name + icon, 2FA honoured). Protocol ports (LND gRPC 10009 + REST, electrum 50002,
bitcoin p2p 8333) stay open but MUST be declared `auth: none` with a rationale in the
manifest, so the exceptions are a grep rather than a discovery — see item 1b. Per-app
long-lived bearer tokens cover machine clients that speak HTTP (Home Assistant). **Zeus
and electrum wallets keep working untouched** — that was the deciding constraint.
The gate lives in the **daemon**, not a per-app sidecar container (umbrel's `app_proxy`
model): rootless, no extra containers per app, one place to update, and it can reuse the
existing `app_port_v6_relay_loop` rather than fight it.
#### ⚠️ Trap found while designing — an nft-only gate FAILS OPEN
The obvious implementation is an nft redirect of inbound app-port traffic to the gate.
But `/etc/fips/fips.nft` is **provisioned out-of-band** and `fips/config.rs:290` treats its
absence as a no-op (`if try_exists("/etc/fips/fips.nft")`). A gate shipped as a `fips.d`
drop-in would therefore be **silently absent on every node without the hardening
baseline** — i.e. it fails open, which is exactly the failure class this item exists to
close.
Two viable shapes, both fail-closed:
- **(a) Apps bind loopback only**, daemon owns every external bind. Airtight, the true
umbrel model, but requires touching each app's own listen config (nginx.conf etc.).
Note you *cannot* half-do this: while an app holds `0.0.0.0:<port>`, the daemon cannot
bind `<lan-ip>:<port>` at all.
- **(b) Daemon owns a dedicated `archipelago-appgate` nft table** with its own
default-deny + redirect, independent of whether `fips.nft` exists, and refuses to start
/ alarms loudly if it cannot install it. Non-invasive to apps.
#### Enabler found — `PortMapping.bind` already does half of (a)
`core/container/src/manifest.rs:518``PortMapping` has a `bind` field, documented as
*"Host address to bind the publish to. Empty = all interfaces (0.0.0.0). Set `127.0.0.1`
to keep a port host-local"*. So for **bridge apps that declare `ports:`**, going
loopback-only is a **manifest edit, not app surgery**, and the daemon can then own the
external bind. That is most of the catalog.
The exception is **host-networked apps** (`security.network_policy: host``lnd-ui`,
`bitcoin-ui`, `electrs-ui`): host networking bypasses port mapping entirely, so `bind` has
no effect and `ports:` is deliberately empty. Those bind whatever their internal nginx
binds. We build those images ourselves, so the fix is a `listen 127.0.0.1:<port>;` change
in each `docker/*-ui/nginx.conf` — still no third-party surgery.
Watch the rootless trap documented at `manifest.rs:532`: a publish bound to an address the
host cannot actually bind crash-loops the whole unit (took bitcoin down fleet-wide on .228,
2026-07-09). Loopback binds are explicitly always accepted without probing, so this
direction is safe.
**Tor needs separate handling either way**: the onion connects *from* localhost, so a
redirect that exempts loopback will not catch it. `HiddenServicePort` must be repointed at
the gate, and since that mapping loses the original destination port, each app needs its
own gate port (or an HTTP-level Host mapping).
#### Primitives that already exist — do NOT build these from scratch
The gate is mostly assembly, not invention:
| Need | Existing API |
|---|---|
| Read the session cookie off a request | `session::extract_session_cookie(&HeaderMap) -> Option<String>` (`session.rs:479`) |
| Validate a session | `SessionStore::validate(&token) -> bool` (`session.rs:194`) |
| **Honour 2FA** | Already modelled: `create_pending(totp_secret)` (`:176`) + `upgrade_to_full` (`:247`). A session still pending 2FA **fails `validate()`**, so the gate gets 2FA for free by calling `validate` — no TOTP code in the gate itself |
| **Machine-client bearer tokens** | `device_tokens::create/verify` (`device_tokens.rs:63/:90`) — long-lived, minted from an authenticated session, only the SHA-256 persisted, plaintext returned once. Built for the companion pairing QR; needs **per-app scoping** added for this use |
| Rate limiting | `device_tokens` verification already rides `auth.login`'s limiter |
So the new code is: the listener/redirect, the app-identification step (which app is this port?),
the login page render (app name + icon), and per-app scoping on `device_tokens`.
#### Research — StartOS: **DROPPED** (operator, 2026-08-03)
"don't need the startOS research we decided on a approach already." The umbrelOS read
plus the design decision above settled it; no further prior-art work.
### 1b. Manifest declaration of unauthenticated ports — **DONE** (`0c4826f8`, pushed)
`PortMapping` grew `auth` (`session` | `none`, defaulting to **`session`**) and
`auth_rationale`. The default is the protected one, so exposure is now something a
manifest has to ask for rather than something it gets by saying nothing.
Validation is two-sided: `auth: none` without a rationale is rejected, **and** a
rationale without `auth: none` is rejected — that combination means the author wrote an
exemption and did not get one, and shipping it silently would leave them believing
otherwise.
**17 ports across 12 apps are exempt**, each with its reason: Lightning p2p (BOLT-8
noise), LND gRPC 10009 / REST 18080 and CLN gRPC 9835 (macaroon / mutual TLS — this is
what keeps Zeus and remote wallets working), Bitcoin p2p 8333, electrum 50001, the three
Wyoming voice ports, git-over-SSH 2222, and the UDP discovery protocols (mDNS 5353,
SSDP 1900, STUN 3478). **The other 39 published ports now default to gated.**
Bitcoin RPC 8332 is deliberately *not* exempted: it is already `bind: 127.0.0.1`, so the
gate never sees it, and claiming an exemption it does not need would put a meaningless
line in the audit list. If that bind is ever dropped it fails closed.
Two corpus tests pin this: every shipped manifest must parse, and the exempt set is
frozen at 17 so the node's unauthenticated surface cannot grow by accident.
### 1c. The gate itself — **IN PROGRESS**
`core/archipelago/src/appgate/``identity.rs` (port → app id/name/icon, gated vs
exempt, re-read from manifests so a catalog refresh applies without a restart),
`mod.rs` (authorize + login page + TOTP step + reverse proxy), `listener.rs` (binds the
external addresses, sweeps every 60s).
Design points worth not re-deriving:
- **It invents no auth policy.** `verify_password`, `totp::decrypt_secret`,
`verify_code` + used-step replay protection, `SessionStore::create/create_pending/
upgrade_to_full`, and the *same* `LoginRateLimiter` instance as the JSON-RPC path.
Only the transport differs (HTML form vs JSON-RPC), because a browser being redirected
to an app cannot speak JSON-RPC. Sharing the limiter matters: otherwise an attacker
gets a fresh budget of password guesses by moving to an app port.
- **2FA is free.** A session still pending its TOTP step fails `validate()`, so the gate
rejects it without knowing anything about second factors.
- **Cookies ignore port.** The session cookie is host-only with no `Domain`, so one
sign-in covers the dashboard and every app port on the same host. The corollary is
that an app reached on a *different* host — its own onion — is a separate sign-in.
- **401, not a redirect.** A redirect to a login page is indistinguishable from the app
itself redirecting, and machine clients would follow it and parse HTML as their API
response.
- **The gate strips `Cookie` and `Authorization` before proxying.** The app has no use
for the node session and must never be in a position to log or forward it.
- **Machine clients**: `device_tokens` grew `apps: Option<Vec<String>>` and
`verify_for_app`. `None` = node-wide (what every existing companion token is —
migrating them by guessing a scope would silently revoke access nobody asked to
revoke); `Some(list)` restricts to those apps. An empty list is rejected rather than
minted, since it would read as "unrestricted" while authorising nothing.
#### ⚠️ The ordering constraint that shapes the rollout
A published container port is bound `0.0.0.0:<port>`, which claims **every** host
address. While the app holds that, the gate **cannot** bind `<lan-ip>:<port>` at all.
So the gate can only stand in front of an app whose publish has been pinned to loopback
(`bind: 127.0.0.1`) and whose container has been recreated. Gate-first is not possible;
all-apps-at-once would recreate every container on the node simultaneously.
Therefore the rollout is **per app**, and the gate is built to be honest about being
partially deployed: a port it cannot claim is logged at **warn** every sweep and recorded
in `GateStatus::unprotected`. The failure mode this exists to prevent is a gate that
binds nothing, logs at debug, and reports success while every app stays exactly as open
as before — worse than no gate, because it stops anyone looking. (Same reasoning that
killed the nft drop-in: `/etc/fips/fips.nft` is provisioned out-of-band and its absence
is a silent no-op.)
**Still open on this item:** pin the 39 gated ports to loopback app-by-app, repoint
`HiddenServicePort` at the gate (Tor connects *from* loopback, so a loopback-exempt
redirect will not catch it, and the mapping loses the original destination port), gate
the FIPS relay path, surface `GateStatus` in the UI, and verify on a real node.
### 2. Filebrowser ships an insecure default login — **OPEN**
- Change the default credential **without breaking the dashboard's Cloud view**, which
authenticates to filebrowser on the user's behalf.
- Related prior art: FED-07 rotated the shipped Fedimint gateway credential and had to
recreate the running container for it to take effect (`06e0e695`) — the same trap
applies here.
### 3. Federation trust escalation — **DONE** (`c0cfc72a`, pushed)
Two independent fail-open paths granted `Trusted` without any operator decision:
- `federation.peer-joined` is **unauthenticated** (middleware no-session list) and
peer-reachable on `/rpc/v1`. Its ed25519 check verifies the caller against **the pubkey
the caller supplied**, so it proves key possession, never authorisation. A join with no
`invite_token` fell through to `TrustLevel::Trusted.min(claimed_trust)`, and
`claimed_trust` defaults to `Trusted` — so anyone able to reach the node could
self-grant Trusted. **Now capped at `Observer`.**
- `merge_transitive_peers` added every peer advertised by a Trusted source as `Trusted`,
making trust viral across the whole federation graph. **Now `Observer`** — which is what
`NodeStateSnapshot.federated_peers`' own doc comment always said it should be
("adds them as Observers on her side… doesn't auto-promote to Trusted"). The code
contradicted its own spec.
- Added `FederatedNode.trust_source` (`invite` | `uninvited-join` | `transitive-merge` |
`manual`, `None` = pre-existing/unknown) so existing grants are **auditable**. Per
operator decision: existing peers are **left alone, not auto-demoted**.
- `trust_source` is now **surfaced** in `federation.list-nodes` (as an explicit `null`
when unknown, not omitted — "recorded before this was tracked" is the population that
needs review, so the UI must be able to tell it apart from a field it didn't read) and
rendered under the trust dropdown in the node detail modal as "Granted via:".
### 3b. Granting Trusted must require the node password — **DONE** (uncommitted at time of writing)
> "to make someone trusted must require the node password to generate the code or change
> in the modal dropdown when you click a node" — operator, 2026-08-03
Re-authentication on privilege escalation. Both entry points are covered:
- **Minting a Trusted invite** (`federation.invite`) — gated on the **resolved** level,
which matters because "Link Your Nodes" sends no `trust_level` at all and falls through
to the `Trusted` default. The invite is a bearer grant of Trusted to whoever redeems
it, so minting it *is* the escalation. Observer invites are untouched.
- **Changing a node's level in the UI dropdown** (`federation.set-trust`) — gated only
when the peer is **not already** Trusted, so the dropdown re-emitting its own value
doesn't demand a password for a no-op.
Demotion is NOT gated: making something less privileged must never be harder than leaving
it, or the safe action becomes the inconvenient one. The operator path stamps
`TrustSource::Manual`; `set_trust_level` grew an `Option<TrustSource>` so automatic
adjustments (the discovery-handshake demotion safety net) pass `None` and leave the
recorded provenance alone rather than laundering an `uninvited-join` peer into looking
operator-approved.
Wiring: the backend is the sole authority on what counts as an escalation — it returns a
`PASSWORD_REQUIRED:` prefixed error, and the UI prompts and retries only on that. The
frontend never pre-judges, so the rule lives in exactly one place.
`TrustPasswordModal.vue` (modelled on `RotateDidModal.vue`) serves both flows.
`NodeDetailModal`'s select now snaps back to the node's real level on change, because a
cancelled or failed promotion would otherwise leave the dropdown displaying a level the
node never accepted.
**Follow-up, deliberately not done here:** `federation.join` also grants Trusted (when
redeeming someone else's Trusted invite) with no re-auth. It is an explicit operator
paste rather than a UI toggle, and was outside the two entry points specified — but it is
the third way a node reaches Trusted and should be reviewed.
---
## P1 — Correctness the operator hit directly
### 4. LND UI never updates over OTA — **DONE** (`5088aef5`, pushed)
- `LND_UI_IMAGE` was `lnd-ui:latest` while `BITCOIN_UI_IMAGE` was pinned to
`1.7.119-alpha`. Podman will not re-pull a tag it already holds locally, so nodes kept a
stale lnd-ui forever. **Now pinned to `1.7.119-alpha`.**
- `scripts/first-boot-containers.sh` declared lnd-ui as bridge `-p 18083:80`. That is the
**third copy** of the declaration the UI agent already corrected in
`scripts/container-specs.sh` and `apps/lnd-ui/manifest.yml` — so **fresh installs** still
produced the reproduced `HTTP 000`. **Now `--network host`, ports empty.**
- Root cause worth fixing separately: the same container spec is declared in three places.
### 5. Federated/peered nodes must message without a LoRa hop first — **OPEN**
> "make it so federated/peered nodes can message without needing to connect on Lora first
> once connected"
- Investigate the split contact model (radio contact vs federation peer) — there is prior
art in memory: `project_archy_lora_e2e_rootcause` ("split contact model; don't touch
federation") and `mesh::seed_federation_peers_into_mesh` /
`upsert_federation_peer`, which already mirror federation peers into the mesh table.
- Likely the gap is addressing/route selection rather than transport availability.
### 6. In-app app updates, independent of OTA — **OPEN**
> "we need app update to see updates in the registry, whether UI or not… show the update
> mechanism in the app… a modal and update now / cancel… same in the detail page… the
> update button should show 'see update' and a different graphic for just ui, app, or both
> together. All pushed through the signed-catalog flow." … "This has to show independent of
> OTA updates as a separate pipeline, I think we've done a lot of work on it."
- **Operator says much of this already exists — research the codebase before building.**
Known groundwork: the signed catalog (`releases/app-catalog.json`, `sign-catalog.sh`),
catalog→manifest runtime reload, `package.update` RPC, `check-app-catalog-drift.py`,
and `scripts/image-versions.sh` pinning.
#### What already exists (verified in source, 2026-08-03) — the operator was right
The whole update *pipeline* is built and is already independent of OTA:
- `package.check-updates` (`api/rpc/package/update.rs:180`) refreshes the signed catalog
and hot-reloads manifests when it changed — no daemon restart, no OTA involved.
- `package.update` (`spawn_package_update`), `package.versions`, `package.set-config`
version pinning, and `execute_update` (stop → pull → remove → recreate → verify).
- Version awareness: `app_catalog::catalog_versions(app_id)` vs `installed_version()`
(`api/rpc/package/set_config.rs:46`).
- Frontend: `AppCard.vue` already renders an Update button off `pkg['available-update']`
(`:48`, `:128`) and emits `update`.
#### What is actually MISSING (this is the real scope of item 6)
1. **The UI-vs-app-vs-both distinction does not exist.** `available-update` is a single
version string — nothing classifies whether the change is the app image, its `*-ui`
image, or both. This is the core of the operator's ask ("a different graphic for just
ui, app, or both together") and needs a backend change, not just an icon.
⚠️ Compounding factor: per `reference_app_ui_delivery_model`, `*-ui` apps are **not in
the signed catalog** at all — so "is there a UI update" cannot be answered from the
catalog today. That gap has to be closed first or the UI half is unanswerable.
2. **The modal** (Update now / Cancel) — the card currently updates on click, no confirm.
3. **The detail-page affordance** — same treatment as the card.
4. **Button copy**: "See update" rather than "Update".
### 6b. Multiversion for ALL apps + upstream release discovery — **OPEN** (operator, 2026-08-03)
> "we also need a way to provide multiversion support for all apps and it automatically
> pulls the latest versions from the source app repository, safely, and the user can
> choose to update so we aren't always updating manually"
#### Verified 2026-08-03: the schema and runtime already exist
This is much less work than it sounds, because the multiversion machinery built for
Bitcoin generalises as data rather than code:
- `releases/app-catalog.json` entries already support a `versions[]` array of
`{version, image, default?, deprecated?}`.
- Runtime is complete: `catalog_versions(app_id)`, `catalog_default_version`,
`catalog_image_for_version`, `package.versions`, version pinning through
`package.set-config`, and `available_update_for_app` falling back to the
`image-versions.sh` baseline pin.
**It is populated for 2 of 66 apps**`bitcoin-core` (9 versions) and `bitcoin-knots`
(5). Every other app carries a single `version`. So "multiversion for all apps" is
primarily a **catalog-generation and image-mirroring job**, not new runtime plumbing.
#### What has to be built
1. **Populate `versions[]` fleet-wide.** Extend `scripts/generate-app-catalog.py` to emit
a version list per app instead of a single pin. Needs a per-app policy for how many
historical versions to carry and which is `default` (Bitcoin's list shows the shape,
including `deprecated: true` for old-but-installable).
2. **Mirror the images.** A version in the catalog that is not in our registry is a
broken promise — `package.update` would pull and fail. Use the existing skopeo path
(`feedback_skopeo_source_selection`: prefer `.160`, concurrency ≤ 6).
3. **An upstream release-watcher.** 48 manifests already carry a `repo:` URL under
`metadata`, so there is something to poll (GitHub releases / registry tags). It runs
**off-node**, as part of catalog generation.
4. **Keep the signed catalog as the trust boundary.** This is the whole of "safely":
the watcher **proposes** versions, the offline signing ceremony **admits** them, and
nodes only ever install what the signed catalog carries. A node must never pull
straight from an upstream repo — that would put an unsigned third party inside the
supply chain, which is exactly what the signed-registry model exists to prevent.
5. **The user chooses.** Discovery must never auto-apply. `package.check-updates` already
refreshes and hot-reloads without touching the running containers, so "a new version
exists" and "install it" stay separate — which is also what item 6's modal is for.
**Sequencing note:** 6b's step 1 and item 6's UI-vs-app classification want the same
thing — `*-ui` images represented in the catalog. Doing that once unblocks both.
---
## P2 — Carried over from v1.7.120
### 7. `create-release.sh` commits the manifest BEFORE signing — **OPEN**
Release commit always carries an **unsigned** manifest; nodes fetch it from branch `main`
and refuse to auto-apply. Caught manually this cycle. Fix the ordering so it cannot ship.
### 8. `gitea-vps2` remote is dead, and is the same server as `gitea-ai` — **OPEN**
Stored token fails auth. `source.archipelago-foundation.org` == `146.59.87.168`, so
`git push gitea-ai` already publishes to the "primary" OTA host. Ties into the existing
"migrate VPS2 IP to domain" todo.
### 9. Fleet SSH host-key rotation — **BLOCKED** (operator decision)
`archipelago-1`, `archy-x250-beta`, `archipelago` share all three SSH host keys; two also
share a TLS private key. Detection shipped; rotation deliberately not performed.
### 10. 5× lifecycle gate — **OPEN**
Not run for v1.7.120 (disclosed in its changelog). Needs repeated reboots of a live node.
### 11. `prod_orchestrator.rs:3181` unreachable code — **OPEN**
`bitcoin_host()` returns unconditionally at :3171, so the podman container-name lookup
below is dead on every path. Pre-existing; spotted in the v1.7.120 build warnings.
---
## Notes for whoever picks this up
- A separate agent is doing **AIUI planning with GSD** — do not touch AIUI.
- AIUI must always be built `VITE_BASE_PATH=/aiui/` (see the memory note); a hand-built
bundle renders a black page.
- Verify security claims on the node, not from the source. v1.7.120's headline bug was a
fix that shipped in the binary and silently never reached the running container.
---
## STATUS 2026-08-04 — what shipped in 1.7.121 and what did not
### Shipped (committed + pushed)
| Item | Commit | Verified |
|---|---|---|
| 3. Federation trust escalation | `c0cfc72a` | 42/42 federation tests |
| 3b. Trusted requires node password | `24ce8b39` | 44/44 + 79/79 + vue-tsc |
| 4. lnd-ui OTA pin + host networking | `5088aef5` | — |
| 1b. Manifest `auth:` declarations | `0c4826f8` | 73/73, all 56 manifests parse |
| 1c. App gate (engine + audit) | `0de67ca6` | 23/23 appgate |
| Dashboard backdrop-filter seam | `63d0183d` | 3/3, **live on archi-dev-box** |
| 7. Release refuses unsigned manifest | `cc9e1958` | dry-run: signed/stripped/wrong-signer |
| Gate safety model (`Option<PortAuth>`) | `ab2c8b6e` | 75/75 incl. LND wallet-port case |
| Companion rebuild-loop | `719446c0` | podman behaviour proven first |
| 5. Federated peers messageable | `edc9a172` | predicate pinned across device types |
### The two gate incidents — read before touching the gate again
Both were ONE mistake: a safety decision read an ABSENT manifest field as a
value. A node's installed manifests always lag the binary, so "absent" is the
normal state, and the daemon acted on instructions no manifest ever gave.
1. Gating any `session` port regardless of `bind` **published Bitcoin's
loopback-only RPC 8332 on the LAN/Tailscale/IPv6** within seconds of deploy.
2. The `bind`-keyed replacement looked safe (it protected `bind: 127.0.0.1`)
but LND's gRPC 10009 / REST 18080 carry an EMPTY bind — one container
recreate from pinning them to loopback and **breaking Zeus and every remote
wallet**.
Now structural: `auth_policy()` classifies (undeclared → reported as
unprotected, always safe), `auth_is_declared()` gates action (undeclared →
never acted on). **Silence is not consent.**
### Proven on the node, empirically, not by reasoning
- Gate challenge → login → proxy works end to end over LAN and Tailscale.
- **Daemon-side publish rewriting was removed.** Publishes are built in several
places (`podman_client`, `package::install`, `stacks`); patching one covered
one — the strfry recreate went through another and the pin never fired.
- **Disk manifest edits do not apply to catalog-covered apps.** Even
`bind: 127.0.0.1` written into the node's strfry manifest was overridden by
the signed catalog. The catalog re-sign is REQUIRED; there is no shortcut.
- A loopback-bound host port is **unreachable** from a pasta container, so
loopback-pinning the Wyoming ports would break Home Assistant voice.
### Open for 1.7.122
1. **Catalog re-sign**`bind: 127.0.0.1` + `auth: session` on the ~39 gated
UI ports. This is what turns the gate from auditing into enforcing. Nothing
in code can substitute for it.
2. **Release-root rotation** — branch `rotate-release-root`, key
`did:key:z6Mkfu5LT…DLWT` / `1578adcc…4418`, validated as a real curve point.
**Sign the rotation release with the OLD key**; only the release after it
uses the new one. Re-sign the catalog too.
3. **Wyoming voice ports** (10200/10300/10400) — unauthenticated, and by the
operator's policy they should not be. Correct fix is co-locating Home
Assistant with the pine services on one container network so nothing is
published; needs a node running both.
4. **Item 2** filebrowser default login. **Items 6/6b** app updates +
multiversion (`versions[]` already exists, populated for 2 of 66 apps).
5. **`cargo-test-weekly` times out** at its 1500s cap on a loaded box — raise
the cap or split the stage; it is not a code failure.
## RESUME HERE — next session
**Landed this session (both pushed):**
- `c0cfc72a` federation trust escalation (items 3) — 42/42 federation tests green
- `5088aef5` lnd-ui OTA pin + host networking (item 4), and this task file
**v1.7.120-alpha is SHIPPED** — signed, published, assets verified live. Do not re-cut it.
### Start with item 3b (password gate) — groundwork already located
Everything needed to implement it, so the next session does not re-search:
- **The helper to use:** `self.auth_manager.verify_password(password).await?` — returns
`bool`. Existing callers to copy the shape from: `api/rpc/node.rs:176`,
`api/rpc/totp.rs:18` / `:66` / `:121`.
- **Entry point A — minting a Trusted invite:** `handle_federation_invite`,
`api/rpc/federation/handlers.rs:58`. It reads `trust_level` from params and
**defaults to `TrustLevel::Trusted` at :72**. Gate only when the resolved level is
`Trusted`; leave Observer invites unchanged.
- **Entry point B — the UI dropdown:** `handle_federation_set_trust`,
`api/rpc/federation/handlers.rs:326`, dispatched as `"federation.set-trust"`
(`api/rpc/dispatcher.rs:353`). Its parse is at `:342`.
- **Rule:** gate PROMOTION to Trusted only. Demotion must stay ungated — making something
less privileged must never be harder than leaving it.
- Set `TrustSource::Manual` on the operator path so the audit trail distinguishes a
deliberate grant from the capped automatic ones.
- Frontend will need the password prompt in both places (invite modal, node dropdown).
### Then item 1 (app ports unauthenticated) — the big one
Start with the research the operator explicitly asked for: how **umbrelOS**
(`getumbrel/umbrel`) and **StartOS** (`Start9Labs/start-os`) gate app access. Read their
model rather than inventing one. Only then design the gate.
Give this a fresh session with real context — it is the largest item here and is the same
bug class as the `/lnd-connect-info` + `/bitcoin-rpc/` leaks fixed in v1.7.120, but across
every app port and every transport.
### Working notes
- A separate agent is doing **AIUI planning with GSD** — do not touch AIUI.
- The shared tree has concurrent agents: stage by explicit path, never `git add -A`.
- Verify security claims **on the node**, not from source. v1.7.120's headline bug was a
fix that shipped in the binary and silently never reached the running container.
- A piped command's exit code is the pipe's, not the script's — redirect to a log file and
read the content.