writeonce/docs/examples/writeonce-framework/app.wo
shoney.arickathil a32550d968 feat: iteration 35 — net seams + the serving slice (fiber-per-connection)
- runtime ids 91-95: net.read_dl/accept_dl/write_dl (per-call deadline,
  nil/false = the EXPECTED timeout; ms<=0 = old behavior bit for bit),
  net.listen_unix (unlink-before-bind, O_NONBLOCK on the listener —
  probe-found: accept4's flag covers accepted sockets only), net.peer
- plane: one-op-per-park stays law — deadlines ride one per-shard
  TIMEOUT tick (sentinel user_data) + post-CQE expiry sweep +
  POLL_REMOVE tombstone; epoll's deadline scan grew the fd-park case;
  fibers POOL instead of freeing mid-run (stale-CQE UAF); plain parks
  zero park_deadline (no stale sleep deadlines)
- probe: all five seams verified on BOTH WO_IO backends (timeout
  timing exact, peer round-trip, unix rebind)
- framework: parse_request grows first_ms/read_ms; serve_conn — the
  keep-alive loop with deadlines where parked idle conns are LEGAL
  (close-when-idle RETIRED); App.handle_conn exposes it; plain serve()
  unchanged for simple apps
- web-app: app-owned accept_dl loop + ConnWorker actor per connection
  (each builds its own App; cross-shard placement rides the DB actor);
  WA_IDLE_MS knob; gate grows to 41 checks — two slow requests served
  in PARALLEL, stalled client evicted at the idle deadline, slow-loris
  torn at the read deadline (400)
- docs: story 35 -> done with banner; SQE/CQE design spec LANDED (was
  the review doc); ledger rows (timeouts/unix/keep-alive/peer), graph
  (NETSEAM cleared, KEEPAL done), builtin-surface rows, runtime
  CODE-LOGIC section, board entry
- battery 13/13 fresh-built

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-08-23 08:04:32 +02:00

128 lines
No EOL
4.4 KiB
Text

-- app.wo — the assembly: an App holds the middleware chains and the route
-- table, satisfies internal's Dispatcher interface, and serves.
--
-- let app = App { middleware: [], gmw: [], afters: [], routes: [] };
-- app.use_mw(Mw { m: Auth { token: t } });
-- app.use_after(Aw { a: SecurityHeaders { pad: 0 } });
-- app.add(Route { method: "GET", pattern: "/products/:id", h: Show {} });
-- return app.serve("127.0.0.1", port);
--
-- Dispatch order: global middleware in registration order (a Resp
-- short-circuits), prefix-scoped group middleware next (framework v1
-- slice 2), then the first matching route (method + pattern), else the
-- framework 404/405 — and EVERY one of those responses passes the after
-- chain (security headers, CORS response headers) before it leaves.
-- The one exception is the WS hijack sentinel (status 101): that
-- response is never serialized, so afters skip it.
-- The serve loop wraps dispatch in `try`, so a trapping handler answers
-- 500 and the server survives.
use http
use router
-- iteration 17: the serve loop is library-internal now (internal/serve.wo).
-- Legal here: the `internal/` boundary refuses CONSUMERS, not the library.
use internal
pub class App {
middleware: multi Mw
-- v1 slice 2 additions carry defaults so the standing ctor literal
-- `App { middleware: [], routes: [] }` keeps compiling everywhere.
gmw: multi Gmw = []
afters: multi Aw = []
routes: multi Route
fn use_mw(take m: Mw) {
push(self.middleware, m);
}
fn use_after(take a: Aw) {
push(self.afters, a);
}
fn add(take r: Route) {
push(self.routes, r);
}
-- Mount a group: its (already prefixed) routes join the table in
-- order; its middleware becomes prefix-scoped entries.
fn mount(take g: Group) {
while len(g.routes) > 0 {
push(self.routes, shift(g.routes));
}
while len(g.middleware) > 0 {
let m = shift(g.middleware);
push(self.gmw, Gmw { prefix: g.prefix, m: m.m });
}
}
-- Registration helpers — the ctor-literal-into-take shape, per method.
fn get(pattern: Text, take h: Handler) {
push(self.routes, Route { method: "GET", pattern: pattern, h: h });
}
fn post(pattern: Text, take h: Handler) {
push(self.routes, Route { method: "POST", pattern: pattern, h: h });
}
fn put(pattern: Text, take h: Handler) {
push(self.routes, Route { method: "PUT", pattern: pattern, h: h });
}
fn delete_(pattern: Text, take h: Handler) {
push(self.routes, Route { method: "DELETE", pattern: pattern, h: h });
}
-- The pre-after half of dispatch: first Resp wins.
fn route_req(mut req: Req) -> Resp {
for mw in self.middleware {
let short = mw.m.before(req);
if short != nil { return short; }
}
for g in self.gmw {
if starts_with(req.path, g.prefix) {
let short = g.m.before(req);
if short != nil { return short; }
}
}
-- Path-first matching so a wrong-method hit on a known path answers
-- 405 with the Allow header (registration order) instead of a 404.
let allow = "";
for r in self.routes {
let params: map<Text, Text> = {};
if route_match(r.pattern, req.path, params) {
if r.method == req.method {
-- captures land on the borrowed request itself (mut) — a failed
-- match above never touched it, since captures collect locally
for k, v in params { req.params[k] = v; }
return r.h.handle(req);
}
if allow == "" { allow = "${r.method}"; } else { allow = "${allow}, ${r.method}"; }
}
}
if allow != "" { return method_not_allowed(allow); }
return not_found();
}
fn dispatch(mut req: Req) -> Resp {
let resp = self.route_req(req);
if resp.status != 101 {
for aw in self.afters {
aw.a.after(req, resp);
}
}
return resp;
}
fn serve(host: Text, port: Int) -> Int {
return internal.serve(host, port, self);
}
-- iteration 35, the serving slice: serve ONE accepted connection to
-- completion (the keep-alive loop with deadlines) — the body of an
-- app-spawned per-connection actor. The app owns the accept loop and
-- the spawn (a class literal, so the framework cannot spawn it);
-- each worker builds its own App and calls this. See web-app's
-- ConnWorker for the ten-line pattern.
fn handle_conn(c: net.Conn, read_ms: Int, idle_ms: Int) {
internal.serve_conn(c, self, read_ms, idle_ms);
}
}