Files
ai-app/AGENTS.md
T
irisandClaude Opus 5 87a0ef1a2a Put the formatter and the linter in the routine that people actually run
AGENTS.md's "Checking your work" listed a typecheck for the app and tests
plus clippy for the server. Neither half mentioned a formatter, and nothing
mentioned Android Lint at all -- which is how a linter that was in the
build the whole time went unrun long enough to accumulate a crash.

Both lines now say the whole thing, and the app's reads as the counterpart
of the server's rather than a shorter version of it. The note about lint is
there because it is the one step a build does not do for you: nothing fails
if you skip it, which is exactly why it needs writing down.

The command in the app bullet is the one I ran to verify this commit.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_017xn8nHw1tw1R6PtiY1eEtw
2026-08-28 04:03:48 -04:00

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# ai-app
A phone interface to AI coding sessions (Claude Code and llama.cpp via pi),
replacing the Claude app for daily use. Rust/Axum backend on the desktop,
Kotlin/Compose Android app, WireGuard + pinned self-signed TLS + bearer token
between them.
**`PLAN.md` is the design source of truth.** Read it before building or
changing anything structural. It records every decision with its date, its
rationale, and the alternatives that were rejected and why — keep that habit
when a decision changes: update the plan in place, don't let this file and
the plan drift into two versions of the truth. This file is the working notes
layer: conventions, commands, and things that have bitten.
The central design point, worth not undoing by accident: **a session is a
child process speaking JSONL over stdio, translated into one common event
model.** Claude Code (stream-json) and pi (RPC mode) are two translators
behind one `Driver` trait; the transcript, the SSE stream, the phone UI, and
SSH spawning (the same command wrapped in `ssh host …`) all work purely in
the common model. A new session type is a new driver — never a
session-type branch in shared code (routes, transcript, app screens).
## Layout
Mirrors `../dev-updater` deliberately — same stack (axum 0.8 +
axum-server/rustls, tokio, clap; Kotlin 2.4.x + Compose Multiplatform,
single `:androidApp` module), same cert scheme, same registry pattern (every
session mutation funnels through the manager so in-memory and on-disk state
can't come apart). Read dev-updater's `README.md` and `AGENTS.md` for the
conventions before diverging from them; module-by-module intent for this
repo is in PLAN.md's "Backend layout" section.
- `server/` — Rust backend (`ai-server`). `main.rs` bootstraps (TLS, the
auth layer, token/QR enrollment, wg0 binding), `routes.rs` has the HTTP
table in its module doc comment, `auth.rs` the bearer-token middleware,
`config.rs` the persisted schema and the RON its file is written in,
`session/` the manager (registry pattern), `Driver` trait + event model,
`EchoDriver`, and transcripts.
- `app/` — Compose Android app, single `:androidApp` module, package
`com.example.aiapp`, label "AI Sessions". `AppRoot.kt` is the navigation
`when`; `Api.kt`/`EventStream.kt` the REST + SSE clients; `Events.kt` the
event model mirror; `ServerConfig.kt` settings + Keystore-sealed token;
screens in `SessionListScreen/SessionScreen/SpawnScreen/SettingsScreen`.
- `.dev-updater.ron` — what Dev Updater is asked to do with this checkout:
the backend (built in `server/`, installed and controlled through
`server/service`) and then the APK (built in `app/`), in that order. The
project it serves is the repository, not either half of it, which is why
this sits at the root rather than in `app/`.
- `server/src/certs.rs` — the TLS certificates, generated in process on
first start into `$XDG_CONFIG_HOME/ai-app/certs`: idempotent CA, leaf
reissued every start covering every local IPv4 plus 127.0.0.1 and
10.0.2.2 (emulator → host). Regenerating the CA strands the installed
app — the one-way door.
## Status
Phases 13 done 2026-08-24 (see PLAN.md's phase list for what each
verified): the skeleton pipe, the full Claude driver (streaming, tools,
permission + AskUserQuestion cards, steering, interrupt, `--resume`
crash recovery, images both ways), and the usage screen. Phase 4
(pi/llama.cpp) is deferred — not testable in this VM. Next: phase 5
(SSH; needs a decision on how to test — no keys in `~/.ssh` here) and
real-phone/WireGuard bring-up, which is operational rather than code.
## Checking your work
- Server: from `server/`, `./run-tests.sh` (or `cargo test`) +
`cargo clippy --all-targets` + `cargo fmt`. The build stays
warning-clean and rustfmt-clean at the defaults — there is no
`rustfmt.toml` and there should not be one.
- App: from `app/`, `. ./android-env.sh && ./gradlew :androidApp:ktfmtFormat
:androidApp:compileDebugKotlin :androidApp:lintDebug` — format, typecheck
and lint, the app-side equivalent of the line above. Then `./build-apk.sh`
to produce the APK to install on a phone (through Dev Updater), or
`./run-android.sh` to build, install, and launch on the emulator.
- **Android Lint is not optional and is not run by a build.** It found a
crash that had been shipping: `java.time` on a minSdk-24 app with
desugaring off. It is clean now apart from Compose 1.11.1 having a 1.12.0
available; keep it that way, and suppress with `tools:ignore` plus a
written reason rather than by lowering the bar.
- **The APK pins the CA of the machine that builds it**, read at build time
from `$XDG_CONFIG_HOME/ai-app/certs/ca.pem` (`AI_APP_CA` overrides) and
generated into a constant. So the server must have started once on that
machine first — the build stops with that instruction otherwise — and an
APK built in this VM only works against a server in this VM.
- Run the server for development with `--bind 127.0.0.1`. Without it the
server binds wg0, which exists here but is unreachable from the emulator
(it dials 10.0.2.2). First run prints the enrollment QR/URI with the
token — capture it from the log.
- Prefer exercising the server directly over going through the UI:
`curl --cacert ~/.config/ai-app/certs/ca.pem -H "Authorization: Bearer …" https://127.0.0.1:8443/sessions`.
The CA is wherever `--certs` put it — by default under
`$XDG_CONFIG_HOME` (`~/.config` when that is unset), never in the
checkout, so a relative `certs/ca.pem` finds nothing.
The emulator app reaches it at `https://10.0.2.2:8443`; enroll it with
`adb shell "am start -a android.intent.action.VIEW -d 'aiapp://enroll?host=10.0.2.2&port=8443&token=…'"`
(quote so the device shell doesn't eat the `&`s).
## Where things run (host vs this VM)
Established 2026-08-25, and it decides more than it looks like. The machine
itself — the two boxes, the shared `~/repos` mount, gitea, and why the VM is
treated as untrusted — is described once in `~/.claude/MACHINE.md`; what
follows is only what that means for **this** project.
- **`ai-server` belongs on the host in production.** That is where the LAN
address the phone can reach is, and where WireGuard terminates.
`wg-setup-host.sh` sets that up (keys, `wg0.conf`, the phone's QR); run
it there with `sudo WG_ENDPOINT=<ddns name>`.
- **The tunnel and the real phone can never terminate in the VM**, because
nothing outside can open a connection into it. Phone bring-up is host
work.
- `wg0` (10.66.0.1) now exists in this VM too, so the production path —
`ai-server` with no `--bind` — is exercisable during development. It has
no reachable peer and doesn't need one; the interface existing is what
the server requires. Consequence: **with no `--bind`, the emulator can't
reach the server** (it dials 10.0.2.2), so keep using
`--bind 127.0.0.1` for app work.
- `./test-wg-tunnel.sh up|test|down` builds a real tunnel between two
network namespaces inside one machine and drives the server through it
— a genuine handshake against 10.66.0.1 with pinned TLS, no router or
phone involved. That's the way to verify the wg0-only posture.
- **The `claude` CLI is only in the VM, so from the host it is a remote.**
The backend reaches it the way it would any other machine: a configured
host, and a session that names it. For the host to ssh in, the VM needs
an inbound port forward it does not have by default.
- **Nothing secret goes in the repo**, which is shared with the host and
attacker-writable under this project's threat model (PLAN.md's security
section). So state lives outside it: `$XDG_CONFIG_HOME/ai-app/config.ron`
and `certs/`, `$XDG_DATA_HOME/ai-app/sessions/`, owner-only.
- Certificates are generated **by the server, on first start**, into
`$XDG_CONFIG_HOME/ai-app/certs` (`--certs` overrides). The CA is created
once and then left alone; the leaf is reissued every start, so covering a
new address is a restart. Starting the server in the VM therefore makes a
separate throwaway dev CA for emulator work — never install a build
pinning that on the real phone.
- Point development at a scratch state directory rather than the real one:
`--config /tmp/…/config.ron --data-dir /tmp/…/sessions --port 8444`, or
`XDG_CONFIG_HOME=… XDG_DATA_HOME=…`.
## Things that have bitten
Project-specific only — a lesson that would bite any project on this
machine belongs in `~/.claude/TOOLCHAIN.md` (toolchain versions) or
`~/.claude/MACHINE.md` (the machine itself) instead.
- **tracing caches callsite interest process-wide.** A test that hits a
`tracing::warn!` with no subscriber installed can poison the interest
cache for a concurrent test that captures logs (flaky "nothing was
logged" failures). Keep every exercise of a logging code path under the
one capturing subscriber — that's why the auth middleware has a single
combined gating+logging test.
- **The keyboard pans the window unless the activity opts into resize.**
Without `android:windowSoftInputMode="adjustResize"`, opening the IME
slides the whole window up (top bar off screen) instead of resizing —
`imePadding()` alone doesn't fix it and the transcript looks empty.
- **A PEM constant must start at the opening quotes.** A generated
`"""\n-----BEGIN CERTIFICATE-----` costs Android's `CertificateFactory`
its preamble sniff, so it tries DER instead and fails at runtime with
`ASN.1 ... DECODE_ERROR` — nowhere near the code that produced it.
- **ZXing only looks for a dark code on a light ground.** The enrollment
QR is block characters in the terminal's foreground colour, so a
dark-themed terminal renders it as a negative and the in-app scanner
silently never matches — while the phone's own camera app, which tries
both, does. The scanner asks for `Intents.Scan.MIXED_SCAN`, which
alternates normal and inverted frames; keep it that way rather than
making the server dictate the colours. `EnrollmentScanActivity` also
turns off the library's 10% framing-rect inset (it decodes only what is
inside it) and its laser/result-point decorations.