Files
ai-app/server/src/routes.rs
T
irisandClaude Opus 5 19de699bfa Follow dev-updater's own config to RON
The same move, for the same reason: this file is written and read by hand,
and JSON has no comments to say why a host is configured the way it is.
Both house rules come across with it, in config.rs's `format` module and
nowhere else -- a file is the *body* of the config, so no outer parentheses
and nothing indented for them, and `Some` is implicit, which is what makes
`skip_serializing_if` on every optional field load-bearing rather than
tidiness.

The switch is outright: there is no reader for the old format. That is
invisible everywhere except here, because this file holds the enrolled
token hashes -- starting empty leaves the phone unable to talk to the
server and looks, from the phone, like the config having been lost. So a
config.json left beside the new file is named in the log and left alone,
rather than read or deleted.

One wart, documented at DriverKind: the kebab-case spelling is the string
the phone compares against, so it stays, and the file pays for it with
`kind: r#claude-cli` -- a hyphen is not a RON identifier. Renaming the
variant would change what an already-installed build is talking to.

Verified: cargo test, cargo clippy --all-targets, and a real start against
a scratch state directory -- a hand-typed config with comments and a bare
`port: 2222` loads, and what the server writes back sits at column 0 with
no Some(...) in it.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_017xn8nHw1tw1R6PtiY1eEtw
2026-08-28 02:25:50 -04:00

438 lines
16 KiB
Rust

//! The HTTP surface -- REST for actions, one SSE stream per open session
//! screen for events, all behind the bearer-token middleware `main.rs`
//! wraps the whole router in.
//!
//! ```text
//! GET /providers what can be spawned
//! GET /hosts machines a session can be run on
//! GET /sessions list (id, provider, title, model, status, last activity)
//! POST /sessions spawn {provider, title?, model?, cwd?, permissionMode?}
//! GET /sessions/{id}/events?after=N SSE: transcript replay from N, then live
//! POST /sessions/{id}/message {text, attachmentIds?}
//! POST /sessions/{id}/answer {questionId, answer} (questions and permissions)
//! POST /sessions/{id}/interrupt
//! POST /sessions/{id}/model {model}
//! POST /sessions/{id}/compact
//! POST /sessions/{id}/attachments multipart image upload -> {id}, referenced by /message
//! GET /sessions/{id}/files/{name} images the session produced or was sent
//! DELETE /sessions/{id} kill process, delete transcript + files
//! GET /usage cached usage windows per provider
//! ```
//!
//! Later phases add: `GET|PUT /hosts` and `/models` -- see PLAN.md's table.
//!
//! Everything here works purely in the common event model; nothing may
//! branch on the session kind (that's what drivers are for).
use std::convert::Infallible;
use std::path::PathBuf;
use std::sync::Arc;
use anyhow::Context;
use axum::Router;
use axum::extract::{Path as UrlPath, Query, State};
use axum::http::{HeaderMap, StatusCode};
use axum::response::sse::{Event as SseEvent, KeepAlive, Sse};
use axum::response::{IntoResponse, Response};
use axum::routing::{delete, get, post};
use serde::Deserialize;
use tokio::sync::{broadcast, mpsc};
use tokio_stream::StreamExt;
use tokio_stream::wrappers::ReceiverStream;
use crate::session::transcript::{SeqEvent, read_after};
use crate::session::{LiveSession, SessionInfo, SessionManager, SpawnSpec};
pub fn router(manager: Arc<SessionManager>) -> Router {
Router::new()
.route("/providers", get(list_providers))
.route("/hosts", get(list_hosts))
.route("/sessions", get(list_sessions).post(spawn_session))
.route("/sessions/{id}", delete(delete_session))
.route("/sessions/{id}/events", get(events))
.route("/sessions/{id}/message", post(message))
.route("/sessions/{id}/answer", post(answer))
.route("/sessions/{id}/interrupt", post(interrupt))
.route("/sessions/{id}/model", post(set_model))
.route("/sessions/{id}/compact", post(compact))
.route("/sessions/{id}/attachments", post(upload_attachment))
.route("/sessions/{id}/files/{name}", get(serve_file))
// Phone photos overflow axum's 2 MB default body cap.
.layer(axum::extract::DefaultBodyLimit::max(32 * 1024 * 1024))
// An explicit fallback so the auth middleware (layered around the
// whole router in main.rs) also covers unknown paths -- a scanner
// gets the same 401 everywhere, never a route map.
.fallback(|| async { ApiError::UnknownRoute })
.with_state(manager)
}
#[derive(Debug, thiserror::Error)]
enum ApiError {
#[error("{0}")]
NotFound(String),
#[error("no such route")]
UnknownRoute,
#[error("{0}")]
BadRequest(String),
#[error(transparent)]
Internal(#[from] anyhow::Error),
}
impl IntoResponse for ApiError {
fn into_response(self) -> Response {
let status = match self {
Self::NotFound(_) | Self::UnknownRoute => StatusCode::NOT_FOUND,
Self::BadRequest(_) => StatusCode::BAD_REQUEST,
Self::Internal(err) => {
// The only variant whose real cause isn't safe to hand
// back verbatim, and the only one worth a log line.
tracing::error!("{err:#}");
return StatusCode::INTERNAL_SERVER_ERROR.into_response();
}
};
(status, self.to_string()).into_response()
}
}
/// An `anyhow` error from a session mutation is a message written *for*
/// the phone ("no session abc123") -- not an internal fault, so it comes
/// back as a 400 with that message rather than a 500 and a log line.
fn bad_request(err: anyhow::Error) -> ApiError {
ApiError::BadRequest(format!("{err:#}"))
}
fn lookup(manager: &SessionManager, id: &str) -> Result<Arc<LiveSession>, ApiError> {
manager.session(id).ok_or_else(|| ApiError::NotFound(format!("no session {id}")))
}
async fn list_sessions(State(manager): State<Arc<SessionManager>>) -> axum::Json<Vec<SessionInfo>> {
axum::Json(manager.sessions())
}
/// What the spawn screen needs to render itself, so the phone holds no
/// hardcoded list: an entry added to `config.ron` shows up with no app
/// rebuild. Providers and hosts are listed separately because they are
/// independent choices -- any provider can be run on any host.
#[derive(serde::Serialize)]
#[serde(rename_all = "camelCase")]
struct ProviderInfo {
name: String,
kind: crate::config::DriverKind,
models: Vec<String>,
}
async fn list_providers(
State(manager): State<Arc<SessionManager>>,
) -> axum::Json<Vec<ProviderInfo>> {
axum::Json(
manager
.providers()
.into_iter()
.map(|provider| ProviderInfo {
name: provider.name,
kind: provider.kind,
models: provider.models,
})
.collect(),
)
}
#[derive(serde::Serialize)]
#[serde(rename_all = "camelCase")]
struct HostInfo {
name: String,
/// Shown under the name so a host can be told apart from its label.
address: String,
}
/// Configured remote machines. Running on the backend itself is always
/// available and deliberately absent here -- it is the "no host" case, not
/// an entry that could be edited away.
async fn list_hosts(State(manager): State<Arc<SessionManager>>) -> axum::Json<Vec<HostInfo>> {
axum::Json(
manager
.hosts()
.into_iter()
.map(|host| HostInfo { name: host.name, address: host.address })
.collect(),
)
}
#[derive(Deserialize)]
#[serde(rename_all = "camelCase")]
struct SpawnRequest {
provider: String,
/// Name of a configured host; absent runs on the backend machine.
#[serde(default)]
host: Option<String>,
#[serde(default)]
title: Option<String>,
#[serde(default)]
model: Option<String>,
#[serde(default)]
cwd: Option<PathBuf>,
#[serde(default)]
permission_mode: Option<String>,
}
async fn spawn_session(
State(manager): State<Arc<SessionManager>>,
axum::Json(body): axum::Json<SpawnRequest>,
) -> Result<axum::Json<SessionInfo>, ApiError> {
let info = manager
.spawn_session(SpawnSpec {
provider: body.provider,
host: body.host,
title: body.title,
model: body.model,
cwd: body.cwd,
permission_mode: body.permission_mode,
})
.map_err(bad_request)?;
tracing::info!("spawned {} session {} ({})", info.provider, info.id, info.title);
Ok(axum::Json(info))
}
async fn delete_session(
State(manager): State<Arc<SessionManager>>,
UrlPath(id): UrlPath<String>,
) -> Result<StatusCode, ApiError> {
manager.delete_session(&id).map_err(bad_request)?;
tracing::info!("deleted session {id}");
Ok(StatusCode::NO_CONTENT)
}
#[derive(Deserialize)]
#[serde(rename_all = "camelCase")]
struct MessageRequest {
text: String,
/// Ids from `POST /attachments`, uploaded before the message that
/// references them.
#[serde(default)]
attachment_ids: Vec<String>,
}
async fn message(
State(manager): State<Arc<SessionManager>>,
UrlPath(id): UrlPath<String>,
axum::Json(body): axum::Json<MessageRequest>,
) -> Result<StatusCode, ApiError> {
let session = lookup(&manager, &id)?;
if body.text.trim().is_empty() && body.attachment_ids.is_empty() {
return Err(ApiError::BadRequest("message is empty".to_string()));
}
session.send_message(body.text, body.attachment_ids);
Ok(StatusCode::NO_CONTENT)
}
#[derive(Deserialize)]
#[serde(rename_all = "camelCase")]
struct AnswerRequest {
question_id: String,
answer: String,
}
async fn answer(
State(manager): State<Arc<SessionManager>>,
UrlPath(id): UrlPath<String>,
axum::Json(body): axum::Json<AnswerRequest>,
) -> Result<StatusCode, ApiError> {
lookup(&manager, &id)?.answer_question(&body.question_id, &body.answer);
Ok(StatusCode::NO_CONTENT)
}
async fn interrupt(
State(manager): State<Arc<SessionManager>>,
UrlPath(id): UrlPath<String>,
) -> Result<StatusCode, ApiError> {
lookup(&manager, &id)?.interrupt();
Ok(StatusCode::NO_CONTENT)
}
/// Separate router because its state is the usage monitor, not the
/// session manager; merged (and auth-wrapped) with the rest in `main`.
pub fn usage_router(monitor: Arc<crate::usage::UsageMonitor>) -> Router {
Router::new().route("/usage", get(usage)).with_state(monitor)
}
async fn usage(
State(monitor): State<Arc<crate::usage::UsageMonitor>>,
) -> Result<axum::Json<Vec<crate::usage::UsageSnapshot>>, ApiError> {
// The fetch is blocking by design (see `usage`); off the workers.
let snapshots = tokio::task::spawn_blocking(move || monitor.snapshots())
.await
.context("usage fetch panicked")?;
Ok(axum::Json(snapshots))
}
#[derive(Deserialize)]
struct ModelRequest {
model: String,
}
async fn set_model(
State(manager): State<Arc<SessionManager>>,
UrlPath(id): UrlPath<String>,
axum::Json(body): axum::Json<ModelRequest>,
) -> Result<StatusCode, ApiError> {
manager.set_session_model(&id, &body.model).map_err(bad_request)?;
Ok(StatusCode::NO_CONTENT)
}
async fn compact(
State(manager): State<Arc<SessionManager>>,
UrlPath(id): UrlPath<String>,
) -> Result<StatusCode, ApiError> {
lookup(&manager, &id)?.compact();
Ok(StatusCode::NO_CONTENT)
}
/// Accepts one image (any multipart field) and stores it under the
/// session; the returned id goes into a later `/message`'s attachmentIds.
async fn upload_attachment(
State(manager): State<Arc<SessionManager>>,
UrlPath(id): UrlPath<String>,
mut multipart: axum::extract::Multipart,
) -> Result<axum::Json<serde_json::Value>, ApiError> {
let session = lookup(&manager, &id)?;
let field = multipart
.next_field()
.await
.map_err(|err| ApiError::BadRequest(format!("bad upload: {err}")))?
.ok_or_else(|| ApiError::BadRequest("no file in the upload".to_string()))?;
let content_type = field.content_type().unwrap_or("image/jpeg").to_string();
let bytes = field
.bytes()
.await
.map_err(|err| ApiError::BadRequest(format!("upload read failed: {err}")))?;
let name = session.save_attachment(&bytes, &content_type).map_err(bad_request)?;
Ok(axum::Json(serde_json::json!({ "id": name })))
}
/// Serves a session's stored images -- both `files/` (produced by tools)
/// and `attachments/` (uploaded from the phone), by the id events and
/// uploads reference.
async fn serve_file(
State(manager): State<Arc<SessionManager>>,
UrlPath((id, name)): UrlPath<(String, String)>,
) -> Result<Response, ApiError> {
// Ids are server-generated hex + extension; anything else (and any
// path separator in particular) is refused, not resolved.
if !name.chars().all(|c| c.is_ascii_alphanumeric() || c == '.') || name.contains("..") {
return Err(ApiError::BadRequest("invalid file id".to_string()));
}
let session = lookup(&manager, &id)?;
let candidates =
[session.dir().join("files").join(&name), session.dir().join("attachments").join(&name)];
let Some(path) = candidates.iter().find(|path| path.is_file()) else {
return Err(ApiError::NotFound(format!("no file {name} in session {id}")));
};
// A file that is there but unreadable is this server's fault, not the
// request's -- Internal logs it and says nothing more to the caller.
let bytes = std::fs::read(path)
.with_context(|| format!("read {}", path.display()))
.map_err(ApiError::Internal)?;
// Names are server-generated, so an unrecognized extension can only
// mean a file this server didn't write.
let content_type = crate::media::media_type_for(&name).unwrap_or("image/jpeg");
Ok(([(axum::http::header::CONTENT_TYPE, content_type)], bytes).into_response())
}
#[derive(Deserialize)]
struct EventsQuery {
#[serde(default)]
after: u64,
}
/// The session screen's one data source: replay everything after the
/// cursor from the transcript, then live events as they happen. An SSE
/// auto-reconnect sends the last event id it saw as `Last-Event-ID`, which
/// takes precedence over `after` -- same cursor, native mechanism.
async fn events(
State(manager): State<Arc<SessionManager>>,
UrlPath(id): UrlPath<String>,
Query(query): Query<EventsQuery>,
headers: HeaderMap,
) -> Result<Sse<impl tokio_stream::Stream<Item = Result<SseEvent, Infallible>>>, ApiError> {
let session = lookup(&manager, &id)?;
let cursor = headers
.get("last-event-id")
.and_then(|value| value.to_str().ok())
.and_then(|value| value.parse().ok())
.unwrap_or(query.after);
// Subscribe before reading the file so nothing can land in the gap
// between replay and live; overlap is deduplicated by seq.
let live = session.subscribe();
let (tx, stream) = mpsc::channel(64);
tokio::spawn(stream_session(
session.transcript_path().to_path_buf(),
cursor,
live,
tx,
));
Ok(Sse::new(ReceiverStream::new(stream).map(Ok)).keep_alive(KeepAlive::default()))
}
/// Feeds one SSE subscriber: transcript replay after the cursor, then live
/// events, catching back up from the file whenever the broadcast channel
/// laps us. Ends when the client disconnects (send fails) or the session
/// is deleted (channel closed).
async fn stream_session(
transcript: PathBuf,
mut last: u64,
mut live: broadcast::Receiver<SeqEvent>,
tx: mpsc::Sender<SseEvent>,
) {
// Synchronous file reads from an async task: transcript lines are
// small and local; revisit if daily use produces transcripts where
// this shows (phase 6 territory).
let catch_up = |after: u64| match read_after(&transcript, after) {
Ok(entries) => Some(entries),
Err(err) => {
tracing::error!("transcript replay failed: {err:#}");
None
}
};
let Some(replay) = catch_up(last) else { return };
for entry in replay {
last = entry.seq;
if send_event(&tx, &entry).await.is_err() {
return;
}
}
loop {
match live.recv().await {
Ok(entry) => {
if entry.seq <= last {
continue;
}
last = entry.seq;
if send_event(&tx, &entry).await.is_err() {
return;
}
}
Err(broadcast::error::RecvError::Lagged(_)) => {
let Some(missed) = catch_up(last) else { return };
for entry in missed {
last = entry.seq;
if send_event(&tx, &entry).await.is_err() {
return;
}
}
}
Err(broadcast::error::RecvError::Closed) => return,
}
}
}
async fn send_event(
tx: &mpsc::Sender<SseEvent>,
entry: &SeqEvent,
) -> Result<(), mpsc::error::SendError<SseEvent>> {
let data = serde_json::to_string(entry).expect("events always serialize");
tx.send(SseEvent::default().id(entry.seq.to_string()).data(data)).await
}