store.rs (sqlx/sqlite) makes the data durable and queryable over time. Three
tables: events (the full live stream, append-only), links (account <-> website
user, mirrored from link.ok), profiles (last-known character sheet, cached from
char.profile). The event loop persists every live event before broadcasting it;
pong is dropped as ephemeral chatter.
New read endpoints served from the DB rather than the shard: GET /history
(optionally ?kind=), GET /economy (the money-supply series), GET /link/{account}.
GET /char/serial/{serial} now falls back to the cached profile when the shard is
unreachable, so an already-viewed character still renders during an outage;
link.confirm mirrors a successful link into the store.
Verified end to end: 10 economy.supply snapshots and the rest of the live stream
persisted and served via /history and /economy; the data survived a sidecar
restart (14 events still present, and the shard reconnected to the new sidecar);
and with the shard killed, a cached profile returned at HTTP 200 while an uncached
query failed cleanly at 503.
The sidecar is feature-complete: shard link, WebSocket feed, REST queries, and
persistence all work end-to-end against the live shard.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
rpc.rs bridges synchronous REST to the async shard stream. A call registers a
pending entry under a correlation id, sends the command, and awaits the reply
(10s timeout). The event loop routes any incoming line whose id is pending back
to the waiting caller; everything else stays a live event and is broadcast. Three
correlation fields are recognized, matching what the plugin echoes: reqId
(queries), code (link.confirm), id (towncrier).
web.rs adds the routes: GET /char/{account}/{slot}, /char/serial/{serial},
/roster/{account}, /vendors/{account}; POST /link/confirm, POST /towncrier,
DELETE /towncrier/{id}. A shard *.error reply maps to 404 or 400; no shard -> 503;
no reply in time -> 504.
Verified end to end against the live shard: roster and full char profile returned
as JSON (reqId correlation visible as r-1, r-2, ...), an unknown account returned
bridge.error as HTTP 404, vendor snapshot returned seed_000's two shops, towncrier
publish and remove returned towncrier.ok, and a bad link code returned link.error
as 404. The website can now query the game and push commands, all correlated over
the single loopback socket, all through the sidecar the game never directly
exposes.
Only SQLite persistence remains on the sidecar.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
web.rs adds the website-facing HTTP surface (axum): GET /health and GET /ws.
Every shard event is broadcast to all connected WebSocket clients as a JSON text
frame. main.rs's event loop now broadcast::sends each event after logging it.
A lagging client is warned and kept live (misses events) rather than stalling
the others; a dead-but-not-closed socket is caught by a 30s server ping. The feed
is live-only -- no replay -- since history belongs to REST + SQLite. This side may
be exposed beyond loopback (it is the gatekeeper); it defaults to 127.0.0.1:8080
and wants auth before going public.
Verified end to end: a WebSocket client connected to /ws, received ws.hello, then
live pong events relayed from the shard through the shard-link -> broadcast -> ws
path -- the same path a login, sale, or IDOC alert will take to a browser.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
First cut of the Rust sidecar, in sidecar/. It is the TCP listener the shard
dials out to; that asymmetry is what keeps the game unreachable from the website.
shard.rs: serve() binds 127.0.0.1:7788 and accepts shard connections in a loop,
re-accepting on disconnect. Each connection splits read/write: the reader parses
newline-JSON into ShardEvent { kind, value } and forwards over an mpsc; the writer
drains a command mpsc. ShardHandle::send posts to whichever shard is connected and
drops with a warning if none is -- a website query during an outage should fail
fast, not queue; live events that must survive an outage are buffered by the shard.
main.rs wires it up, logs events by kind, and runs a 15s heartbeat ping to
exercise the command path. Later phases fan events out to a WebSocket broadcaster
and SQLite, and turn REST calls into shard commands.
Verified against the live shard: the sidecar received the shard's server.hello
(parsed, fields intact), round-tripped its heartbeat ping -> pong, and after a
sidecar restart the shard reconnected on its own and re-sent hello. Tokio + serde;
axum/sqlx/tungstenite come with the WS and REST phases.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>