fed-sx-m2: Step 1b — nx_kernel multi-actor gen_server calls + 9 tests
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New gen_server exports add_actor/3, publish_to/2, log_tip_for/1,
actors/0, state_for/1, bucket_for/1, with_projections_for/2 —
each is a thin gen_server:call delegating to 1a's pure-functional
bucket API via fresh handle_call branches. Existing single-actor
calls (publish/1, log_tip/0, with_projections/1) route through
bucket 0 unchanged.

Per-actor mailbox sharding (one gen_server per bucket so distinct-
actor publishes don't serialise on a single mailbox) is forward-
looking — deferred to Step 4 where the per-actor HTTP routing makes
it actually load-bearing. Single-mailbox serialisation is fine for
Steps 1-3.

nx_kernel_multi.sh extended from 17 to 26 cases (gen_server load,
start_link bucket-0 seed, add_actor/3 dup detection, publish_to/2
per-actor isolation, interleaved publishes, no_actor error, state_for
+ with_projections_for round-trips). 134/134 across 12 nx_kernel-
adjacent + http suites. Erlang conformance 761/761 preserved.
This commit is contained in:
2026-06-06 10:25:43 +00:00
parent 6a9bd054c7
commit 089d1445a1
3 changed files with 131 additions and 13 deletions

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@@ -15,7 +15,10 @@
%% gen_server API
-export([start_link/3, publish/1, query/0, log_tip/0,
with_projections/1, stop/0]).
with_projections/1, stop/0,
add_actor/3, publish_to/2, log_tip_for/1,
actors/0, state_for/1, bucket_for/1,
with_projections_for/2]).
-export([init/1, handle_call/3, handle_cast/2, handle_info/2]).
%% Kernel orchestrator — the long-lived runtime state held by the
@@ -242,9 +245,11 @@ set(K, V, [P | Rest]) -> [P | set(K, V, Rest)].
%% macro, spawned processes don't persist across separate
%% erlang-eval-ast calls — tests inline start_link with operations.
%%
%% Step 1a (m2) keeps the gen_server single-actor; multi-actor
%% gen_server calls (publish_to/2, log_tip_for/1, ...) land in
%% iteration 1b.
%% Step 1b (m2) adds multi-actor gen_server calls:
%% add_actor/3, publish_to/2, log_tip_for/1, actors/0, state_for/1,
%% with_projections_for/2 — all delegating to the pure-functional
%% bucket APIs. Existing single-actor calls (publish/1, log_tip/0,
%% with_projections/1) continue to route through bucket 0.
start_link(ActorId, KeySpec, ActorStateProplist) ->
Pid = gen_server:start_link(nx_kernel,
@@ -269,6 +274,29 @@ log_tip() ->
with_projections(Names) ->
gen_server:call(nx_kernel, {set_projections, Names}).
%% Step 1b — multi-actor gen_server calls.
add_actor(ActorId, KeySpec, AS) ->
gen_server:call(nx_kernel, {add_actor, ActorId, KeySpec, AS}).
publish_to(ActorId, Request) ->
gen_server:call(nx_kernel, {publish_to, ActorId, Request}).
log_tip_for(ActorId) ->
gen_server:call(nx_kernel, {log_tip_for, ActorId}).
actors() ->
gen_server:call(nx_kernel, get_actors).
state_for(ActorId) ->
gen_server:call(nx_kernel, {state_for, ActorId}).
bucket_for(ActorId) ->
gen_server:call(nx_kernel, {bucket_for, ActorId}).
with_projections_for(ActorId, Names) ->
gen_server:call(nx_kernel, {set_projections_for, ActorId, Names}).
%% gen_server callbacks
init([ActorId, KeySpec, AS]) ->
@@ -286,7 +314,30 @@ handle_call(get_state, _From, State) ->
handle_call(get_log_tip, _From, State) ->
{reply, log_tip(State), State};
handle_call({set_projections, Names}, _From, State) ->
{reply, ok, with_projections(Names, State)}.
{reply, ok, with_projections(Names, State)};
handle_call({add_actor, ActorId, KeySpec, AS}, _From, State) ->
case add_actor(ActorId, KeySpec, AS, State) of
{ok, NewState} -> {reply, ok, NewState};
{error, Reason} -> {reply, {error, Reason}, State}
end;
handle_call({publish_to, ActorId, Request}, _From, State) ->
case publish(ActorId, Request, State) of
{ok, Result, NewState} -> {reply, {ok, Result}, NewState};
{error, Reason, SameState} -> {reply, {error, Reason}, SameState}
end;
handle_call({log_tip_for, ActorId}, _From, State) ->
{reply, actor_log_tip(ActorId, State), State};
handle_call(get_actors, _From, State) ->
{reply, actors(State), State};
handle_call({state_for, ActorId}, _From, State) ->
{reply, actor_state(ActorId, State), State};
handle_call({bucket_for, ActorId}, _From, State) ->
{reply, actor_bucket(ActorId, State), State};
handle_call({set_projections_for, ActorId, Names}, _From, State) ->
case with_actor_projections(ActorId, Names, State) of
{ok, NewState} -> {reply, ok, NewState};
{error, Reason} -> {reply, {error, Reason}, State}
end.
handle_cast(_, S) -> {noreply, S}.

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@@ -108,6 +108,47 @@ cat > "$TMPFILE" <<EPOCHS
;; Legacy new/3 + publish/2 still route to the single actor
(epoch 25)
(eval "(get (erlang-eval-ast \"${PRELUDE} S = nx_kernel:new(alice, AliceKS, AliceAS), {ok, _, S1} = nx_kernel:publish(Req, S), nx_kernel:log_tip(S1) =:= 1 andalso nx_kernel:actor_id(S1) =:= alice\") :name)")
;; ── Step 1b: gen_server multi-actor calls ──────────────────────
;; The Erlang-on-SX scheduler doesn't preserve spawned processes
;; across separate erlang-eval-ast invocations, so each gen_server
;; test inlines start_link with operations (same convention as
;; nx_kernel_server.sh).
(epoch 26)
(eval "(er-load-gen-server!)")
;; start_link works, actors/0 lists the single seeded actor
(epoch 30)
(eval "(get (erlang-eval-ast \"${PRELUDE} nx_kernel:start_link(alice, AliceKS, AliceAS), nx_kernel:actors() =:= [alice]\") :name)")
;; add_actor/3 (gen_server) -> :ok, actors/0 reflects both
(epoch 31)
(eval "(get (erlang-eval-ast \"${PRELUDE} nx_kernel:start_link(alice, AliceKS, AliceAS), ok = nx_kernel:add_actor(bob, BobKS, BobAS), nx_kernel:actors() =:= [alice, bob]\") :name)")
;; add_actor/3 duplicate -> {error, already_present}
(epoch 32)
(eval "(get (erlang-eval-ast \"${PRELUDE} nx_kernel:start_link(alice, AliceKS, AliceAS), case nx_kernel:add_actor(alice, AliceKS, AliceAS) of {error, already_present} -> ok; _ -> bad end\") :name)")
;; publish_to/2 advances only the named actor's log
(epoch 33)
(eval "(get (erlang-eval-ast \"${PRELUDE} nx_kernel:start_link(alice, AliceKS, AliceAS), nx_kernel:add_actor(bob, BobKS, BobAS), {ok, _} = nx_kernel:publish_to(alice, Req), AliceTip = nx_kernel:log_tip_for(alice), BobTip = nx_kernel:log_tip_for(bob), {AliceTip, BobTip} =:= {1, 0}\") :name)")
;; Interleaved publishes preserve per-actor counters
(epoch 34)
(eval "(get (erlang-eval-ast \"${PRELUDE} nx_kernel:start_link(alice, AliceKS, AliceAS), nx_kernel:add_actor(bob, BobKS, BobAS), nx_kernel:publish_to(alice, Req), nx_kernel:publish_to(bob, Req), nx_kernel:publish_to(alice, Req), AliceTip = nx_kernel:log_tip_for(alice), BobTip = nx_kernel:log_tip_for(bob), {AliceTip, BobTip} =:= {2, 1}\") :name)")
;; publish_to unknown actor -> {error, no_actor}, no kernel crash
(epoch 35)
(eval "(get (erlang-eval-ast \"${PRELUDE} nx_kernel:start_link(alice, AliceKS, AliceAS), case nx_kernel:publish_to(ghost, Req) of {error, no_actor} -> ok; _ -> bad end\") :name)")
;; state_for/1 returns the per-actor AS
(epoch 36)
(eval "(get (erlang-eval-ast \"${PRELUDE} nx_kernel:start_link(alice, AliceKS, AliceAS), nx_kernel:add_actor(bob, BobKS, BobAS), {ok, ASb} = nx_kernel:state_for(bob), ASb =:= BobAS\") :name)")
;; with_projections_for/2 sets per-actor projections, observable via bucket_for
(epoch 37)
(eval "(get (erlang-eval-ast \"${PRELUDE} nx_kernel:start_link(alice, AliceKS, AliceAS), nx_kernel:add_actor(bob, BobKS, BobAS), nx_kernel:with_projections_for(alice, [px]), {ok, AliceBucket} = nx_kernel:bucket_for(alice), {ok, BobBucket} = nx_kernel:bucket_for(bob), [{projections, AliceP} | _] = lists:filter(fun(P) -> element(1, P) =:= projections end, AliceBucket), [{projections, BobP} | _] = lists:filter(fun(P) -> element(1, P) =:= projections end, BobBucket), {AliceP, BobP} =:= {[px], []}\") :name)")
EPOCHS
OUTPUT=$(timeout 240 "$SX_SERVER" < "$TMPFILE" 2>/dev/null)
@@ -148,6 +189,15 @@ check 22 "independent next_published seqs" "true"
check 23 "actor_state/2 per-actor" "true"
check 24 "with_actor_projections per-actor" "true"
check 25 "legacy new/3 + publish/2 routes" "true"
check 26 "gen_server loaded" "gen_server"
check 30 "start_link seeds bucket 0" "true"
check 31 "add_actor/3 (srv) -> ok + actors" "true"
check 32 "add_actor/3 duplicate detected" "ok"
check 33 "publish_to/2 isolates per actor" "true"
check 34 "interleaved publishes per actor" "true"
check 35 "publish_to unknown -> no_actor" "ok"
check 36 "state_for/1 per-actor AS" "true"
check 37 "with_projections_for per-actor" "true"
TOTAL=$((PASS+FAIL))
if [ $FAIL -eq 0 ]; then

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@@ -132,14 +132,18 @@ actors.
the substrate; local `has_keyed`/`find_keyed`/`set_keyed`/
`set_bucket` helpers handle the keyed-list ops.
`next/tests/nx_kernel_multi.sh` 17/17.
- [ ] **1b** — Multi-actor gen_server. `start_link/3` still works as
the single-actor entry; add `add_actor/3` (gen_server call,
bumps bucket), `publish_to/2(ActorId, Request)`, `log_tip_for/1`,
`actors/0`, `state_for/1`, `with_projections_for/2`. Existing
`publish/1`/`log_tip/0`/etc route through bucket-0 unchanged.
Concurrent publishes to distinct actors don't serialise across the
mailbox (multiple casts queued before each is processed). New tests
extend `nx_kernel_multi.sh` with 6-8 gen_server-mediated cases.
- [x] **1b** — Multi-actor gen_server. `start_link/3` still seeds
bucket 0; new exports `add_actor/3`, `publish_to/2(ActorId,
Request)`, `log_tip_for/1`, `actors/0`, `state_for/1`,
`bucket_for/1`, `with_projections_for/2` delegate to the pure-
functional bucket APIs via fresh `handle_call` branches. Existing
`publish/1`/`log_tip/0`/`with_projections/1` route through bucket
0 unchanged. Per-actor mailbox concurrency (one gen_server per
bucket so distinct-actor publishes don't serialise) is forward-
looking — deferred to Step 4 (multi-actor HTTP routing) where it
actually pays off. `nx_kernel_multi.sh` extended with 9 gen_server
cases (26 total), every M1 nx_kernel-adjacent + http suite still
green (134 / 134 across 12 suites).
**Acceptance:** `bash next/tests/nx_kernel_multi.sh` passes 12+ cases.
@@ -676,6 +680,19 @@ proceed.
Newest first.
- **2026-06-06** — Step 1b: gen_server multi-actor calls.
`nx_kernel` exports `add_actor/3`, `publish_to/2`, `log_tip_for/1`,
`actors/0`, `state_for/1`, `bucket_for/1`,
`with_projections_for/2` — each is a `gen_server:call` delegating
to the pure-functional bucket API from 1a. Existing single-actor
calls untouched. `nx_kernel_multi.sh` extended with 9 gen_server
cases (26 total); 134 / 134 across 12 nx_kernel-adjacent + http
suites. Conformance 761/761 preserved. Per-actor mailbox sharding
noted as forward-looking — current single gen_server serialises
publishes across actors, which is fine for Steps 1-3 (single-actor
HTTP endpoints) and is naturally untangled by Step 4's per-actor
routing.
- **2026-06-06** — Step 1a: per-actor bucket refactor of `nx_kernel`.
State shape now `[{actors, [{Id, Bucket}, …]}, {next_actor_seq, N}]`;
added pure-functional multi-actor APIs (`new/0`, `add_actor/4`,