e2e: assigned plex + redis prove the module runtime (ADR 0052)

build-module-runtime.sh generalises the audit-logger runtime image to any module
(mesh-tools + sdk + the module's dist, entrypoints for tools/events/provisioner).
Two scenarios and two tests: assigned-plex proves a tools+events module serves its
tools over a mesh-issued scoped account; assigned-redis proves a provider's runtime
serves tools AND runs its provisioner in the same broker-bound process, provisioning
a grant and emitting its lifecycle event. Both green.

Claude-Session: https://claude.ai/code/session_01LrgweAeERJYBg88c5cKDzF
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2026-09-04 22:29:53 +02:00
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/**
* The mesh assigns plex's tool runtime, and it serves plex's tools over an account the mesh
* delivered — the whole of novox/hq ADR 0052.
*
* assigned-audit proves an assigned *consumer* (ADR 0048). This proves an assigned module that runs
* its OWN code as its OWN process under its OWN scoped account and *serves tools*: the module is
* assigned through the control plane, the mesh issues it an account scoped to serve.plex.* (and its
* events), seals it to the machine, and the host runs it as a container that binds amqps with that
* account. A caller then invokes plex.plex_reachable over the mesh and gets the tool's own answer —
* proof the invocation routed to the assigned runtime, ran plex's real code, and replied, all under
* the scoped account and never the broker's own.
*
* It needs the host binary, the substrate bundle, and the runtime image stocked by the scenario:
*
* MESH_LAB_HOST_BINARY=.../mesh-host
* MESH_LAB_BUNDLE=.../examples/substrate-first-node.lock
* scripts/build-module-runtime.sh plex builds mesh-runtime-plex:development into the local daemon,
* which scenarios/plex-node.yml stocks — so no MESH_LAB_RUNTIME here; the host pulls it.
*/
import { test, before, after } from "node:test";
import assert from "node:assert/strict";
import { existsSync, readFileSync } from "node:fs";
import { loadScenario } from "../../src/declaration/parse.ts";
import { raise } from "../../src/lifecycle/raise.ts";
import { destroy, exec } from "../../src/lifecycle/operate.ts";
import { hostBinaryPath, HOST_PATH } from "../../src/lifecycle/place.ts";
import { labIsUsable, destroyAll } from "./harness.ts";
const capability = await labIsUsable();
const binary = hostBinaryPath();
const bundle = process.env["MESH_LAB_BUNDLE"] ?? "";
const skip = !capability.usable
? `lab not usable: ${capability.why}`
: !binary || !existsSync(binary)
? "MESH_LAB_HOST_BINARY is not set to a built mesh-host"
: !bundle || !existsSync(bundle)
? "MESH_LAB_BUNDLE is not set to a substrate bundle (mesh-host examples/)"
: false;
const SCENARIO = "plex-node";
const MACHINE = "anchor";
let instanceId = "";
/** What the scenario's registry serves, by digest. */
let stocked: string[] = [];
function quote(s: string): string {
return `'${s.replaceAll("'", `'\\''`)}'`;
}
async function on(command: string, timeoutMs?: number): Promise<{ out: string; ok: boolean }> {
const { stdout } = await exec(instanceId, MACHINE, [
"sh", "-c", `exec 2>&1\n${command}\necho "__exit=$?"`,
], timeoutMs);
const marker = stdout.lastIndexOf("__exit=");
if (marker < 0) return { out: stdout, ok: false };
return { out: stdout.slice(0, marker), ok: stdout.slice(marker + 7).trim() === "0" };
}
async function must(command: string, timeoutMs?: number): Promise<string> {
const { out, ok } = await on(command, timeoutMs);
if (!ok) throw new Error(`${MACHINE}: ${command}\n${out}`);
return out;
}
/** The control plane, a container on the node. */
async function mesh(command: string, timeoutMs?: number): Promise<string> {
return must(`docker exec mesh-control /mesh-control ${command}`, timeoutMs);
}
/** The pinned reference for one of the scenario's images, by repository. */
function pinned(repository: string): string {
const found = stocked.find((r) => r.slice(r.indexOf("/") + 1, r.indexOf("@")) === repository);
assert.ok(found, `the scenario stocks no ${repository}; it serves ${stocked.join(", ")}`);
return found;
}
/** The substrate bundle, its image references pointed at this scenario's own registry. */
function bundleFor(images: string[]): string {
let text = readFileSync(bundle, "utf8");
for (const ref of images) {
const repository = ref.slice(ref.indexOf("/") + 1, ref.indexOf("@"));
const escaped = repository.replaceAll("/", "\\/").replaceAll(".", "\\.");
text = text.replaceAll(new RegExp(`[A-Za-z0-9_.:-]+\\/${escaped}@sha256:[0-9a-f]+`, "g"), ref);
}
return text;
}
function tokenFrom(said: string): string {
const found = said.split("\n").map((l) => l.trim()).find((l) => l.length > 100 && !l.includes(" "));
assert.ok(found, `no token in:\n${said}`);
return found;
}
async function settled(withinMs = 480_000): Promise<void> {
const until = Date.now() + withinMs;
let last = "";
while (Date.now() < until) {
const asked = await on(`docker exec mesh-control /mesh-control status --json`);
if (asked.ok) {
try {
const state = JSON.parse(asked.out) as {
wrong: { node: string; outcome: string }[];
waiting: { node: string }[];
reported: { node: string; outcome: string; current: boolean }[];
};
const bad = state.wrong.find((w) => w.node === MACHINE);
if (bad) throw new Error(`${MACHINE} did not apply what it was sent: ${bad.outcome}\n${asked.out}`);
const word = state.reported.find((r) => r.node === MACHINE);
if (!state.waiting.some((w) => w.node === MACHINE) && word?.outcome === "applied" && word.current) return;
last = asked.out;
} catch (err) {
if (err instanceof Error && err.message.includes("did not apply")) throw err;
last = asked.out;
}
}
await new Promise((r) => setTimeout(r, 5000));
}
throw new Error(`${MACHINE} never caught up within ${Math.round(withinMs / 1000)}s. Last:\n${last}`);
}
before(async () => {
if (skip) return;
const raised = await raise(loadScenario(`scenarios/${SCENARIO}.yml`), {
onProgress: (m) => console.log(`raise: ${m}`),
});
instanceId = raised.instanceId;
stocked = raised.images;
// Raise the substrate — store, broker, control — from the bundle.
await must(`cat > /tmp/substrate.lock <<'MESHBUNDLE'\n${bundleFor(raised.images)}\nMESHBUNDLE`);
await must(`${HOST_PATH} apply /tmp/substrate.lock`, 600_000);
const up = await must(`docker ps --format '{{.Names}}'`);
for (const c of ["mesh-store", "mesh-broker", "mesh-control"]) {
assert.match(up, new RegExp(c), `the substrate did not raise ${c}:\n${up}`);
}
// The node joins its own mesh, so it is a node the mesh can assign to, and start the host so it
// applies what it is pushed.
await mesh(`node add ${MACHINE}`);
const token = tokenFrom(await mesh(`token issue --node ${MACHINE}`));
await must(`${HOST_PATH} enrol --token ${quote(token)}`);
await must(`nohup ${HOST_PATH} run > /var/log/mesh-host.log 2>&1 & sleep 3`);
}, { timeout: 1_800_000 });
after(async () => {
if (instanceId) await destroy(instanceId);
await destroyAll(`${SCENARIO}-`);
}, { timeout: 600_000 });
test("the mesh assigns plex's runtime, and it serves plex's tools over the account the mesh delivered", {
skip, timeout: 900_000,
}, async () => {
// A minimal plex manifest: its tools/events runtime (no Plex server or media mounts in the lab),
// its emits and consumes so the account is scoped to those too, and a token in the environment so
// the tools register without a running Plex to detect one from. The runtime image is the digest
// this scenario's registry serves.
const manifest = JSON.stringify({
module: "plex",
version: "1",
emits: [
"module.plex.playback.started",
"module.plex.playback.stopped",
"module.plex.item.added",
],
consumes: ["module.*.download.completed"],
"own-secrets": { broker: "/var/lib/mesh/plex/broker" },
resources: [
{ id: "mesh-state", type: "directory", path: "/var/lib/mesh/plex", mode: "0700" },
{
id: "runtime", type: "container", name: "mesh-plex", image: pinned("mesh-runtime-plex"),
network: "host",
volumes: ["/var/lib/mesh/plex/broker:/run/secrets/broker:ro"],
env: {
MESH_BROKER_FILE: "/run/secrets/broker",
MESH_PLEX_URL: "http://127.0.0.1:32400",
MESH_PLEX_TOKEN: "lab-token",
},
},
],
});
await must(`printf %s ${quote(manifest)} > /tmp/plex.json && docker cp /tmp/plex.json mesh-control:/plex.json`);
await mesh("module add /plex.json");
// The mesh issues plex's scoped account and seals it to this machine, then assigns and pushes it.
const issued = await mesh(`module issue plex --node ${MACHINE}`);
assert.match(issued, /scoped to what it emits and consumes/, issued);
await mesh(`assign ${MACHINE} plex`);
await mesh(`push ${MACHINE}`);
await settled();
// The runtime container the mesh started is running.
const running = await must(`docker ps --format '{{.Names}}'`);
assert.match(running, /mesh-plex/,
`plex's runtime was assigned and is not running:\n${(await on(`tail -30 /var/log/mesh-host.log`)).out}`);
// The credential on disk is the scoped account over amqps, sealed — not the broker's own.
const credential = await must(`cat /var/lib/mesh/plex/broker`);
assert.match(credential, /"url":"amqps:\/\/anchor-plex:/, `not the scoped account:\n${credential}`);
assert.doesNotMatch(credential, /guest:guest/, "plex's runtime holds the broker's own account");
assert.match(credential, /"fingerprint":"(sha256:)?[0-9a-f]{64}"/, "no fingerprint to pin the broker");
// The runtime registered and is serving its tools — the queue it declared is on the broker,
// named for the scope its account is granted (serve.plex.*).
let served = "";
const untilServing = Date.now() + 60_000;
while (Date.now() < untilServing) {
served = await must(`docker exec mesh-broker lavinmqctl list_queues name 2>&1 || true`);
if (/serve\.plex\.plex_reachable/.test(served)) break;
await new Promise((r) => setTimeout(r, 3000));
}
assert.match(served, /serve\.plex\.plex_reachable/,
`plex's runtime never bound its serve queue:\n${(await on(`docker logs mesh-plex 2>&1 | tail -20`)).out}\n---\n${served}`);
// A caller invokes plex.plex_reachable over the mesh, from the bootstrap account (a caller, like
// mesh-control's command API — plex's own account serves, it does not call). The reply is the
// tool's own answer: it ran in the assigned runtime and reported the Plex server is unreachable
// (there is none in the lab). A reply at all — not a timeout — is the proof the invocation routed
// to the assigned runtime and ran plex's real code under its scoped account.
const invoked = await must(
`docker run --rm --network host -e MESH_BROKER_URL=amqp://guest:guest@127.0.0.1:5672/ ` +
`${pinned("mesh-runtime-plex")} invoke plex plex_reachable`,
120_000,
);
const line = invoked.split("\n").map((l) => l.trim()).filter(Boolean).pop() ?? "";
const result = JSON.parse(line) as { reachable: boolean; url: string; error?: string };
assert.equal(result.reachable, false, `expected the lab's Plex to be unreachable:\n${invoked}`);
assert.match(result.url, /127\.0\.0\.1:32400/, `the tool ran but not against the configured server:\n${invoked}`);
// And the account the mesh made for it is a real one on the broker, scoped — proven above by the
// serve queue authenticating and the invocation round-tripping under it.
const users = await must(`docker exec mesh-broker lavinmqctl list_users 2>&1`);
assert.match(users, /anchor-plex/, `the scoped account is not on the broker:\n${users}`);
});
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/**
* The mesh assigns redis — a *provider* — and its runtime runs the provisioner AND the tools as one
* process under one account the mesh delivered (novox/hq ADR 0052).
*
* assigned-plex proves an assigned module that serves tools. This proves the provider half: redis's
* runtime binds its scoped account, serves redis's tools against the real server (redis_ping →
* PONG), and — the thing 0052 fixes — runs its provisioner in that same broker-bound process, so a
* grant is provisioned and its lifecycle event is emitted onto the mesh. Before 0052 the provisioner
* ran in a container with no broker and its emit could not fire at all.
*
* A caveat this test makes explicit: runProvisioner needs a seal key ($MESH_SEAL_KEY) and the mesh
* has no way yet to deliver one to a provider's runtime (04-ISSUES). The manifest here sets a
* lab-local key so the mechanism can be proven; the delivery is a separate, open design question.
*
* It needs the host binary, the substrate bundle, and the runtime image stocked by the scenario:
*
* MESH_LAB_HOST_BINARY=.../mesh-host MESH_LAB_BUNDLE=.../examples/substrate-first-node.lock
* scripts/build-module-runtime.sh redis builds mesh-runtime-redis:development into the local
* daemon, which scenarios/redis-node.yml stocks — so no MESH_LAB_RUNTIME here; the host pulls it.
*/
import { test, before, after } from "node:test";
import assert from "node:assert/strict";
import { existsSync, readFileSync } from "node:fs";
import { loadScenario } from "../../src/declaration/parse.ts";
import { raise } from "../../src/lifecycle/raise.ts";
import { destroy, exec } from "../../src/lifecycle/operate.ts";
import { hostBinaryPath, HOST_PATH } from "../../src/lifecycle/place.ts";
import { labIsUsable, destroyAll } from "./harness.ts";
const capability = await labIsUsable();
const binary = hostBinaryPath();
const bundle = process.env["MESH_LAB_BUNDLE"] ?? "";
const skip = !capability.usable
? `lab not usable: ${capability.why}`
: !binary || !existsSync(binary)
? "MESH_LAB_HOST_BINARY is not set to a built mesh-host"
: !bundle || !existsSync(bundle)
? "MESH_LAB_BUNDLE is not set to a substrate bundle (mesh-host examples/)"
: false;
const SCENARIO = "redis-node";
const MACHINE = "anchor";
let instanceId = "";
let stocked: string[] = [];
function quote(s: string): string {
return `'${s.replaceAll("'", `'\\''`)}'`;
}
async function on(command: string, timeoutMs?: number): Promise<{ out: string; ok: boolean }> {
const { stdout } = await exec(instanceId, MACHINE, [
"sh", "-c", `exec 2>&1\n${command}\necho "__exit=$?"`,
], timeoutMs);
const marker = stdout.lastIndexOf("__exit=");
if (marker < 0) return { out: stdout, ok: false };
return { out: stdout.slice(0, marker), ok: stdout.slice(marker + 7).trim() === "0" };
}
async function must(command: string, timeoutMs?: number): Promise<string> {
const { out, ok } = await on(command, timeoutMs);
if (!ok) throw new Error(`${MACHINE}: ${command}\n${out}`);
return out;
}
async function mesh(command: string, timeoutMs?: number): Promise<string> {
return must(`docker exec mesh-control /mesh-control ${command}`, timeoutMs);
}
function pinned(repository: string): string {
const found = stocked.find((r) => r.slice(r.indexOf("/") + 1, r.indexOf("@")) === repository);
assert.ok(found, `the scenario stocks no ${repository}; it serves ${stocked.join(", ")}`);
return found;
}
function bundleFor(images: string[]): string {
let text = readFileSync(bundle, "utf8");
for (const ref of images) {
const repository = ref.slice(ref.indexOf("/") + 1, ref.indexOf("@"));
const escaped = repository.replaceAll("/", "\\/").replaceAll(".", "\\.");
text = text.replaceAll(new RegExp(`[A-Za-z0-9_.:-]+\\/${escaped}@sha256:[0-9a-f]+`, "g"), ref);
}
return text;
}
function tokenFrom(said: string): string {
const found = said.split("\n").map((l) => l.trim()).find((l) => l.length > 100 && !l.includes(" "));
assert.ok(found, `no token in:\n${said}`);
return found;
}
async function settled(withinMs = 480_000): Promise<void> {
const until = Date.now() + withinMs;
let last = "";
while (Date.now() < until) {
const asked = await on(`docker exec mesh-control /mesh-control status --json`);
if (asked.ok) {
try {
const state = JSON.parse(asked.out) as {
wrong: { node: string; outcome: string }[];
waiting: { node: string }[];
reported: { node: string; outcome: string; current: boolean }[];
};
const bad = state.wrong.find((w) => w.node === MACHINE);
if (bad) throw new Error(`${MACHINE} did not apply what it was sent: ${bad.outcome}\n${asked.out}`);
const word = state.reported.find((r) => r.node === MACHINE);
if (!state.waiting.some((w) => w.node === MACHINE) && word?.outcome === "applied" && word.current) return;
last = asked.out;
} catch (err) {
if (err instanceof Error && err.message.includes("did not apply")) throw err;
last = asked.out;
}
}
await new Promise((r) => setTimeout(r, 5000));
}
throw new Error(`${MACHINE} never caught up within ${Math.round(withinMs / 1000)}s. Last:\n${last}`);
}
before(async () => {
if (skip) return;
const raised = await raise(loadScenario(`scenarios/${SCENARIO}.yml`), {
onProgress: (m) => console.log(`raise: ${m}`),
});
instanceId = raised.instanceId;
stocked = raised.images;
await must(`cat > /tmp/substrate.lock <<'MESHBUNDLE'\n${bundleFor(raised.images)}\nMESHBUNDLE`);
await must(`${HOST_PATH} apply /tmp/substrate.lock`, 600_000);
const up = await must(`docker ps --format '{{.Names}}'`);
for (const c of ["mesh-store", "mesh-broker", "mesh-control"]) {
assert.match(up, new RegExp(c), `the substrate did not raise ${c}:\n${up}`);
}
await mesh(`node add ${MACHINE}`);
const token = tokenFrom(await mesh(`token issue --node ${MACHINE}`));
await must(`${HOST_PATH} enrol --token ${quote(token)}`);
await must(`nohup ${HOST_PATH} run > /var/log/mesh-host.log 2>&1 & sleep 3`);
}, { timeout: 1_800_000 });
after(async () => {
if (instanceId) await destroy(instanceId);
await destroyAll(`${SCENARIO}-`);
}, { timeout: 600_000 });
test("the mesh assigns redis, and its runtime serves tools and provisions grants over the account the mesh delivered", {
skip, timeout: 900_000,
}, async () => {
// A redis manifest with both halves it needs on this node: the redis server, and one broker-bound
// runtime that serves redis's tools AND runs its provisioner. Both reach the server over the host
// (127.0.0.1:6379) with the same admin password the mesh generated. MESH_SEAL_KEY is lab-local —
// the mesh cannot yet deliver one to a provider's runtime (see the file header / 04-ISSUES).
const manifest = JSON.stringify({
module: "redis",
version: "1",
emits: ["module.redis.cache.provisioned", "module.redis.cache.deprovisioned"],
// redis's events entrypoint subscribes to its own lifecycle events (an audit-trail log), so it
// consumes them too — declared, or the substrate never makes the queue the runtime binds and it
// crashes on start with a 404 (novox/hq ADR 0046: a consume is declared).
consumes: ["module.redis.cache.provisioned", "module.redis.cache.deprovisioned"],
"own-secrets": { default: "/var/lib/redis-module/default.secret", broker: "/var/lib/mesh/redis/broker" },
resources: [
{ id: "mesh-state", type: "directory", path: "/var/lib/mesh/redis", mode: "0700" },
{ id: "state", type: "directory", path: "/var/lib/redis-module", mode: "0700" },
{ id: "grants-dir", type: "directory", path: "/var/lib/redis-module/grants", mode: "0700" },
{ id: "data", type: "directory", path: "/services/redis/data", mode: "0700", owner: "999:999" },
{
id: "server-conf", type: "file", path: "/var/lib/redis-module/redis.conf", mode: "0644",
content: "requirepass ${secret:default}\nappendonly no\ndir /data\n",
},
{
id: "server", type: "container", name: "redis", image: pinned("redis"), network: "host",
volumes: [
"/services/redis/data:/data",
"/var/lib/redis-module/redis.conf:/etc/redis/redis.conf:ro",
],
args: ["/etc/redis/redis.conf"],
},
{
id: "runtime", type: "container", name: "mesh-redis", image: pinned("mesh-runtime-redis"),
network: "host",
volumes: [
"/var/lib/mesh/redis/broker:/run/secrets/broker:ro",
"/var/lib/redis-module/grants:/var/lib/redis-module/grants",
"/var/lib/redis-module/default.secret:/run/secrets/default:ro",
],
env: {
MESH_BROKER_FILE: "/run/secrets/broker",
GRANTS: "/var/lib/redis-module/grants",
MESH_PROVISION_REDIS: "127.0.0.1:6379",
MESH_PROVISION_PASSWORD_FILE: "/run/secrets/default",
MESH_SEAL_KEY: "lab-only-seal-key",
},
},
],
});
await must(`printf %s ${quote(manifest)} > /tmp/redis.json && docker cp /tmp/redis.json mesh-control:/redis.json`);
await mesh("module add /redis.json");
const issued = await mesh(`module issue redis --node ${MACHINE}`);
assert.match(issued, /scoped to what it emits and consumes/, issued);
await mesh(`assign ${MACHINE} redis`);
await mesh(`push ${MACHINE}`);
await settled();
// The server and the runtime the mesh started are both running.
const running = await must(`docker ps --format '{{.Names}}'`);
assert.match(running, /\bredis\b/, `redis's server is not running:\n${(await on(`tail -30 /var/log/mesh-host.log`)).out}`);
assert.match(running, /mesh-redis/, `redis's runtime is not running:\n${(await on(`docker logs mesh-redis 2>&1 | tail -20`)).out}`);
// The credential on disk is the scoped account over amqps, sealed — not the broker's own.
const credential = await must(`cat /var/lib/mesh/redis/broker`);
assert.match(credential, /"url":"amqps:\/\/anchor-redis:/, `not the scoped account:\n${credential}`);
assert.doesNotMatch(credential, /guest:guest/, "redis's runtime holds the broker's own account");
assert.match(credential, /"fingerprint":"(sha256:)?[0-9a-f]{64}"/, "no fingerprint to pin the broker");
// The runtime registered and is serving its tools — the serve queue is on the broker.
let served = "";
const untilServing = Date.now() + 60_000;
while (Date.now() < untilServing) {
served = await must(`docker exec mesh-broker lavinmqctl list_queues name 2>&1 || true`);
if (/serve\.redis\.redis_ping/.test(served)) break;
await new Promise((r) => setTimeout(r, 3000));
}
assert.match(served, /serve\.redis\.redis_ping/,
`redis's runtime never bound its serve queue:\n${(await on(`docker logs mesh-redis 2>&1 | tail -30`)).out}\n---\n${served}`);
// A caller invokes redis.redis_ping over the mesh: the tool runs in the assigned runtime, reaches
// the real redis, and answers PONG. A positive round-trip against a real backend.
const pinged = await must(
`docker run --rm --network host -e MESH_BROKER_URL=amqp://guest:guest@127.0.0.1:5672/ ` +
`${pinned("mesh-runtime-redis")} invoke redis redis_ping`,
120_000,
);
const pingLine = pinged.split("\n").map((l) => l.trim()).filter(Boolean).pop() ?? "";
const ping = JSON.parse(pingLine) as { ok: unknown };
assert.ok(String(ping.ok).toUpperCase().includes("PONG") || ping.ok === true,
`redis_ping did not answer PONG through the mesh:\n${pinged}`);
// The provider path: a grant appears (as the control plane would write it), and the provisioner —
// running inside the same broker-bound runtime — creates the ACL user and emits the lifecycle
// event. The sealed credential the harness writes only after adapter.create() returns is the
// proof create() ran to completion; and because emit() awaits the broker's publish confirm
// (ADR 0047), a completed create() means the provisioned event was accepted onto the mesh.
const grant = JSON.stringify({ resource: "redis-cache", consumer: "app-one", node: MACHINE, values: {} });
await must(`printf %s ${quote(grant)} > /var/lib/redis-module/grants/app-one.grant.json`);
let credentialWritten = false;
const untilProvisioned = Date.now() + 60_000;
while (Date.now() < untilProvisioned) {
const ls = await on(`ls /var/lib/redis-module/grants/`);
if (ls.ok && /app-one\.redis-cache\.credential/.test(ls.out)) { credentialWritten = true; break; }
await new Promise((r) => setTimeout(r, 3000));
}
assert.ok(credentialWritten,
`the provisioner never provisioned the grant (no emit under a bound broker?):\n` +
`${(await on(`docker logs mesh-redis 2>&1 | tail -30`)).out}`);
// No emit failed: the provisioner's announce() logs "emit ... failed" only when the broker refused
// the publish. Its absence, with the credential written, is the provisioner emitting on the mesh.
const runtimeLog = (await on(`docker logs mesh-redis 2>&1`)).out;
assert.doesNotMatch(runtimeLog, /emit .*failed/,
`the provisioner's emit was refused — the account cannot publish its lifecycle event:\n${runtimeLog}`);
// And the ACL user the provisioner created is really on the redis server — the provisioning did
// its own half, not only the mesh bookkeeping. Asked through the same served tool surface.
const acl = await must(
`docker run --rm --network host -e MESH_BROKER_URL=amqp://guest:guest@127.0.0.1:5672/ ` +
`${pinned("mesh-runtime-redis")} invoke redis redis_command '{"command":"ACL LIST"}'`,
120_000,
);
assert.match(acl, /app-one/, `the provisioner did not create the consumer's ACL user on redis:\n${acl}`);
// The scoped account the mesh made for it is a real one on the broker.
const users = await must(`docker exec mesh-broker lavinmqctl list_users 2>&1`);
assert.match(users, /anchor-redis/, `the scoped account is not on the broker:\n${users}`);
});