feat(registry): named pid registry as a bimap
register/whereis/unregister plus the inverse lookup name_of. Erlang semantics: one name per pid, one pid per name, registering over a live binding errors; same-binding re-register is an idempotent Ok. Bimap = two HashMaps held in exact inverse under one Leaf RawMutex in RuntimeInner; the invariant is debug-asserted on every mutation. The inverse direction costs one extra String per binding and buys O(1) pid->name for supervisors/tracing/diagnostics. Cleanup is lazy: no finalize_actor hook, no Slot field (which would buy into the reset-in-three-places invariant). Liveness rides the generation-checked slot word - pids are never reused, so a stale binding is detectable, never misdirected - and bindings to dead actors behave as absent, pruned on contact by whereis/name_of/register/unregister. Liveness checks under the registry lock read only the atomic slot word, so the leaf rule holds trivially. send_by_name is deliberately absent: smarm has no per-pid mailbox, so there is nothing generic to send *to* - the registry yields a Pid, usable with monitor/link/request_stop and as routing for user channels. Tests: roundtrip both directions, idempotence, NameTaken on live holder, one-name-per-pid, NoProc, death-evaporates-binding (via lookup pruning and via register's own eviction path), unregister, cross-actor lookup wired into request_stop, and a 4-scheduler name-contention churn test.
This commit is contained in:
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//! Named registry tests. Run under the scheduler: registration requires a
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//! live runtime and live actors.
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use smarm::{channel, name_of, register, run, spawn, unregister, whereis, RegisterError};
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#[test]
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fn register_whereis_roundtrip() {
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run(|| {
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let (tx, rx) = channel::<()>();
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let h = spawn(move || {
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rx.recv().unwrap();
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});
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register("worker", h.pid()).unwrap();
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assert_eq!(whereis("worker"), Some(h.pid()));
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assert_eq!(name_of(h.pid()).as_deref(), Some("worker"));
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tx.send(()).unwrap();
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h.join().unwrap();
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});
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}
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#[test]
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fn register_is_idempotent_for_same_binding() {
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run(|| {
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let (tx, rx) = channel::<()>();
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let h = spawn(move || {
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rx.recv().unwrap();
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});
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register("svc", h.pid()).unwrap();
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// Same name, same pid: a no-op Ok, not NameTaken.
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register("svc", h.pid()).unwrap();
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tx.send(()).unwrap();
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h.join().unwrap();
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});
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}
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#[test]
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fn duplicate_name_on_live_holder_is_rejected() {
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run(|| {
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let (tx, rx) = channel::<()>();
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let (tx2, rx2) = channel::<()>();
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let a = spawn(move || {
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rx.recv().unwrap();
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});
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let b = spawn(move || {
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rx2.recv().unwrap();
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});
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register("svc", a.pid()).unwrap();
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assert_eq!(
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register("svc", b.pid()),
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Err(RegisterError::NameTaken { holder: a.pid() })
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);
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tx.send(()).unwrap();
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tx2.send(()).unwrap();
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a.join().unwrap();
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b.join().unwrap();
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});
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}
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#[test]
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fn one_name_per_pid() {
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run(|| {
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let (tx, rx) = channel::<()>();
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let h = spawn(move || {
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rx.recv().unwrap();
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});
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register("first", h.pid()).unwrap();
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assert_eq!(
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register("second", h.pid()),
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Err(RegisterError::PidAlreadyRegistered { name: "first".into() })
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);
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tx.send(()).unwrap();
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h.join().unwrap();
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});
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}
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#[test]
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fn registering_a_dead_pid_is_noproc() {
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run(|| {
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let h = spawn(|| {});
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let pid = h.pid();
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h.join().unwrap();
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assert_eq!(register("ghost", pid), Err(RegisterError::NoProc));
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});
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}
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#[test]
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fn binding_evaporates_on_death_and_name_is_reusable() {
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run(|| {
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let a = spawn(|| {});
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let pid_a = a.pid();
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register("svc", pid_a).unwrap();
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a.join().unwrap();
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// Dead holder: both lookup directions report unbound.
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assert_eq!(whereis("svc"), None);
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assert_eq!(name_of(pid_a), None);
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// And the name is free for a successor.
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let (tx, rx) = channel::<()>();
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let b = spawn(move || {
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rx.recv().unwrap();
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});
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register("svc", b.pid()).unwrap();
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assert_eq!(whereis("svc"), Some(b.pid()));
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tx.send(()).unwrap();
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b.join().unwrap();
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});
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}
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#[test]
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fn register_over_a_dead_holder_succeeds_without_lookup_in_between() {
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// The eviction path inside register() itself (not via whereis pruning).
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run(|| {
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let a = spawn(|| {});
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let pid_a = a.pid();
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register("svc", pid_a).unwrap();
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a.join().unwrap();
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let (tx, rx) = channel::<()>();
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let b = spawn(move || {
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rx.recv().unwrap();
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});
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register("svc", b.pid()).unwrap();
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assert_eq!(whereis("svc"), Some(b.pid()));
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assert_eq!(name_of(pid_a), None);
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tx.send(()).unwrap();
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b.join().unwrap();
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});
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}
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#[test]
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fn unregister_frees_both_directions() {
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run(|| {
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let (tx, rx) = channel::<()>();
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let h = spawn(move || {
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rx.recv().unwrap();
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});
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register("svc", h.pid()).unwrap();
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assert_eq!(unregister("svc"), Some(h.pid()));
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assert_eq!(whereis("svc"), None);
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assert_eq!(name_of(h.pid()), None);
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assert_eq!(unregister("svc"), None);
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// The pid may take a new name afterwards.
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register("svc2", h.pid()).unwrap();
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assert_eq!(name_of(h.pid()).as_deref(), Some("svc2"));
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tx.send(()).unwrap();
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h.join().unwrap();
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});
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}
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#[test]
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fn whereis_from_another_actor_and_usable_with_runtime_apis() {
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use std::sync::atomic::{AtomicBool, Ordering};
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use std::sync::Arc;
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let stopped = Arc::new(AtomicBool::new(false));
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let stopped2 = stopped.clone();
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run(move || {
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let (tx, rx) = channel::<()>();
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let svc = spawn(move || {
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// Parks forever; only a request_stop ends it.
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let _ = rx.recv();
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});
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register("stoppable", svc.pid()).unwrap();
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let stopped3 = stopped2.clone();
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let client = spawn(move || {
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let pid = whereis("stoppable").expect("name must resolve cross-actor");
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// The registry's pids plug into the rest of the runtime API.
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smarm::request_stop(pid);
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stopped3.store(true, Ordering::Relaxed);
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});
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client.join().unwrap();
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svc.join().unwrap(); // a stopped actor joins Ok
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drop(tx);
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});
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assert!(stopped.load(Ordering::Relaxed));
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}
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#[test]
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fn registry_under_concurrent_churn_multi_thread() {
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// Many actors racing to claim the same names while holders die: the
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// bimap invariant (debug-asserted internally) and Erlang semantics must
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// hold under real parallelism.
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use std::sync::atomic::{AtomicU32, Ordering};
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use std::sync::Arc;
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let wins = Arc::new(AtomicU32::new(0));
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let wins2 = wins.clone();
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smarm::init(smarm::Config::exact(4)).run(move || {
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let mut handles = Vec::new();
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for round in 0..8 {
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let name = format!("contested-{}", round % 2);
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for _ in 0..8 {
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let name = name.clone();
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let wins = wins2.clone();
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handles.push(spawn(move || {
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let me = smarm::self_pid();
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match register(&name, me) {
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Ok(()) => {
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wins.fetch_add(1, Ordering::Relaxed);
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smarm::yield_now();
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// May have been pruned-by-contact never; we are
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// alive, so our binding must still resolve to us.
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assert_eq!(whereis(&name), Some(me));
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assert_eq!(unregister(&name), Some(me));
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}
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Err(RegisterError::NameTaken { .. }) => {}
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Err(e) => panic!("unexpected register error: {e}"),
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}
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}));
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}
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}
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for h in handles {
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h.join().unwrap();
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}
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});
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// At least one registration per name must have succeeded.
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assert!(wins.load(Ordering::Relaxed) >= 2);
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}
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