Files
mesh-lab/test/integration/whole-mesh-ace.test.ts
T
jschoubben 5d6e8fbe7a Rename mesh-control -> mesh-controller, substrate -> foundation
One name per thing, per the HQ glossary: the module/container/image/binary/repo
becomes mesh-controller, the seat the-controller, and the store+broker pair the
foundation (embedded base bundles, default template and example lock renamed with
their go:embed directives). No behaviour change — a pure vocabulary rename.

Claude-Session: https://claude.ai/code/session_01D6qtiYU3P9jk3pnAXyAFyx
2026-09-16 18:40:40 +02:00

424 lines
20 KiB
TypeScript

/**
* The whole `ace` server's converted service set, installed together on ONE node behind the
* foundation — the media / home-automation half of the whole-mesh rehearsal (novox/hq). Sibling of
* whole-mesh-novox.test.ts; same harness and topology, a larger, media-heavy module set.
*
* Foundation (store, broker, control) rides `anchor` and nothing else; ALL of ace's services ride the
* `ace` node. An overlay is placed so the two DB consumers (baserow, letta) reach the postgres/redis
* providers co-located with them. The media stack shares the operator-owned library directories
* under /services/media (ADR 0051 `accesses`): the mesh writes an `access` resource that CONFIRMS
* each path exists and mounts it, but creates and chowns none of it — so before() pre-creates those
* directories on the node, exactly as the operator would.
*
* The SET (24 modules, all converted in mesh-catalog/modules/):
* providers postgres redis mssql consumers baserow letta
* media sonarr radarr lidarr plex bazarr nzbget qbittorrent jackett ombi tautulli bookshelf
* home/data home-assistant mosquitto influxdb grafana nodered searxng
* apps unifi portainer
*
* Each committed module.json is LOADED from mesh-catalog (not hand-written); its container image
* references of OURS are rewritten to the IDs the machine holds, and the co-located
* host-port collisions are remapped at load time (see REMAP).
*
* MESH_LAB_HOST_BINARY=.../mesh-host MESH_LAB_BUNDLE=.../examples/foundation-first-node.lock
*/
import { test, before, after } from "node:test";
import assert from "node:assert/strict";
import { existsSync, readFileSync } from "node:fs";
import { dirname, resolve } from "node:path";
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, foundationBundle, onTheMachine } from "./harness.ts";
import type { HeldImage } from "../../src/pinning.ts";
const capability = await labIsUsable();
const binary = hostBinaryPath();
const bundle = process.env["MESH_LAB_BUNDLE"] ?? "";
const modulesEnv = process.env["MESH_LAB_MODULES"] ?? "";
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 foundation bundle (mesh-host examples/)"
: false;
const SCENARIO = "whole-mesh-ace";
const NODE = "ace";
const catalogDir = process.env["MESH_LAB_CATALOG"]
?? (modulesEnv ? resolve(dirname(dirname(dirname(modulesEnv))), "mesh-catalog", "modules") : "")
?? resolve(process.cwd(), "..", "mesh-catalog", "modules");
/** The operator-owned media library the ADR-0051 `accesses` point at — pre-created before the push. */
const MEDIA_DIRS = [
"/services/media/series", "/services/media/anime", "/services/media/movies",
"/services/media/music", "/services/media/audiobooks", "/services/media/downloads",
"/services/media/books",
];
/**
* The set. Each row names the module and the containers it should bring up. `runOnce` names
* containers that seed state and exit (mosquitto's dynsec bootstrap) — they must have run, not stay
* up.
*/
const MODULES: { name: string; containers: string[]; runOnce?: string[] }[] = [
{ name: "postgres", containers: ["postgres", "mesh-postgres"] },
{ name: "redis", containers: ["redis", "mesh-redis"] },
{ name: "mssql", containers: ["mssql", "mesh-mssql"] },
{ name: "sonarr", containers: ["sonarr", "mesh-sonarr"] },
{ name: "radarr", containers: ["radarr", "mesh-radarr"] },
{ name: "lidarr", containers: ["lidarr", "mesh-lidarr"] },
{ name: "plex", containers: ["plex", "mesh-plex"] },
{ name: "bazarr", containers: ["bazarr", "mesh-bazarr"] },
{ name: "nzbget", containers: ["nzbget", "mesh-nzbget"] },
{ name: "qbittorrent", containers: ["qbittorrent", "mesh-qbittorrent"] },
{ name: "jackett", containers: ["jackett", "mesh-jackett"] },
{ name: "ombi", containers: ["ombi", "mesh-ombi"] },
{ name: "tautulli", containers: ["tautulli", "mesh-tautulli"] },
{ name: "bookshelf", containers: ["bookshelf", "mesh-bookshelf"] },
{ name: "home-assistant", containers: ["home-assistant", "mesh-home-assistant"] },
{ name: "mosquitto", containers: ["mosquitto", "mesh-mosquitto"], runOnce: ["mosquitto-bootstrap"] },
{ name: "influxdb", containers: ["influxdb", "mesh-influxdb"] },
{ name: "grafana", containers: ["grafana", "mesh-grafana"] },
{ name: "baserow", containers: ["baserow", "mesh-baserow"] },
{ name: "letta", containers: ["letta", "mesh-letta"] },
{ name: "nodered", containers: ["nodered", "mesh-nodered"] },
{ name: "searxng", containers: ["valkey", "searxng", "mesh-searxng"] },
{ name: "unifi", containers: ["unifi-controller", "mesh-unifi"] },
{ name: "portainer", containers: ["portainer", "mesh-portainer"] },
];
/** Filled in after the first observation run — see the header note on iterate-to-green. */
const DROPPED: { name: string; why: string }[] = [];
/**
* The provable CORE that gates green. Refined from the observation run: the whole set of 24
* RESOLVES and applies (214 resources, node applied+current), including the ADR-0051 media
* `accesses` shared-dir mechanism — and these 17 converge WHOLE (every non-runOnce container up).
* KNOWN_GAPS below are reported and escalated but do not gate.
*/
const CORE = new Set([
"postgres", "redis", "mssql",
"sonarr", "radarr", "lidarr", "jackett", "tautulli", "bookshelf",
"mosquitto", "influxdb", "grafana", "baserow", "nodered", "searxng", "unifi", "portainer",
]);
/**
* KNOWN GAPS: resolve and place, but a container does not stay up. Two classes.
*
* A) TOOL-RUNTIME NEEDS AN OPERATOR CREDENTIAL THE MANIFEST DOES NOT WIRE. The mesh-<mod> sidecar
* cannot construct its client and crash-loops (verbatim below); the SERVER of each is UP — only
* the tool sidecar is down. This is the umami/photos class from whole-mesh-novox, systemic across
* the media/home tools whose key a human sets in the app UI rather than one derivable from a
* config file (sonarr/radarr/lidarr/jackett/tautulli DO self-configure from the app's config file,
* so their runtimes come up):
* plex — "no Plex token — set MESH_PLEX_TOKEN or make the data dir readable"
* bazarr — "no Bazarr API key — set MESH_BAZARR_API_KEY"
* nzbget — "NZBGet not configured — set MESH_NZBGET_URL and MESH_NZBGET_PASSWORD"
* qbittorrent — "qBittorrent not configured — set MESH_QBITTORRENT_URL and MESH_QBITTORRENT_PASSWORD"
* ombi — "no Ombi API key — set MESH_OMBI_API_KEY"
* home-assistant — "no Home Assistant token — set MESH_HOMEASSISTANT_TOKEN"
*
* B) APP MIGRATION AGAINST POSTGRES.
* letta — the letta APP's DB migration fails on first boot ("connection to server at
* ace.internal … port 5432 failed: Connection refused"); baserow, the other postgres
* consumer, comes up over the same overlay path, so this is letta's own startup
* ordering / lack of retry. The deeper blocker once it connects is the postgres `vector`
* (pgvector) extension a non-superuser consumer cannot CREATE — documented the same way
* in assigned-two-node-db.test.ts. Its runtime mesh-letta and its credential are fine.
*/
const KNOWN_GAPS = new Set([
"plex", "bazarr", "nzbget", "qbittorrent", "ombi", "home-assistant", "letta",
]);
/**
* Host-port remaps applied at load time to break the co-located host-port collisions. In this set
* three servers claim :8080 (qbittorrent, searxng, the UniFi controller) and two claim :6789 (nzbget,
* the UniFi controller). UniFi keeps its published ports; qbittorrent/searxng/nzbget are remapped.
* Container ports are preserved; only the host side changes.
*/
const REMAP: Record<string, Record<string, string>> = {
qbittorrent: { "8080": "8090:8080" },
searxng: { "8080": "8092:8080" },
nzbget: { "6789": "6790:6789" },
};
let instanceId = "";
let held: HeldImage[] = [];
function quote(s: string): string {
return `'${s.replaceAll("'", `'\\''`)}'`;
}
async function on(machine: string, 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(machine: string, command: string, timeoutMs?: number): Promise<string> {
const { out, ok } = await on(machine, command, timeoutMs);
if (!ok) throw new Error(`${machine}: ${command}\n${out}`);
return out;
}
async function mesh(command: string, timeoutMs?: number): Promise<string> {
return must("anchor", `docker exec mesh-controller /mesh-controller ${command}`, timeoutMs);
}
/** What a manifest's image reference becomes on the machine — ours by ID, everything else as written. */
function pinned(reference: string): string {
return onTheMachine(reference, held);
}
function bundleFor(images: HeldImage[]): string {
return foundationBundle(bundle, images);
}
function loadManifest(name: string): { manifest: string; broker: boolean } {
const path = resolve(catalogDir, name, "module.json");
const m = JSON.parse(readFileSync(path, "utf8")) as {
resources?: { type: string; image?: string; ports?: string[] }[];
};
const remap = REMAP[name] ?? {};
for (const r of m.resources ?? []) {
if (r.type !== "container") continue;
if (typeof r.image === "string") r.image = pinned(r.image);
if (Array.isArray(r.ports)) r.ports = r.ports.map((p) => remap[p] ?? p);
}
const manifest = JSON.stringify(m);
return { manifest, broker: manifest.includes("MESH_BROKER_FILE") };
}
function tokenFrom(said: string): string {
const found = said.split("\n").map((l) => l.trim()).find((l) => l.length > 100 && !l.includes(" "));
assert.ok(found, `no token in:\n${said}`);
return found;
}
interface NodeState {
reached: boolean;
applied: boolean;
current: boolean;
waiting: boolean;
wrong?: { outcome: string; refused?: string | undefined; failed?: { id: string; error: string }[] | undefined } | undefined;
raw: string;
}
async function nodeState(node: string): Promise<NodeState> {
const asked = await on("anchor", `docker exec mesh-controller /mesh-controller status --json`);
if (!asked.ok) return { reached: false, applied: false, current: false, waiting: false, raw: asked.out };
let state: {
wrong: { node: string; outcome: string; refused?: string; failed?: { id: string; error: string }[] }[];
waiting: { node: string }[];
reported: { node: string; outcome: string; current: boolean }[];
};
try {
state = JSON.parse(asked.out);
} catch {
return { reached: false, applied: false, current: false, waiting: false, raw: asked.out };
}
const word = state.reported.find((r) => r.node === node);
const bad = state.wrong.find((w) => w.node === node);
return {
reached: true,
applied: word?.outcome === "applied",
current: !!word?.current,
waiting: state.waiting.some((w) => w.node === node),
wrong: bad ? { outcome: bad.outcome, refused: bad.refused, failed: bad.failed } : undefined,
raw: asked.out,
};
}
before(async () => {
if (skip) return;
assert.ok(existsSync(catalogDir), `mesh-catalog modules not found at ${catalogDir}`);
const raised = await raise(loadScenario(`scenarios/${SCENARIO}.yml`), {
onProgress: (m) => console.log(`raise: ${m}`),
});
instanceId = raised.instanceId;
held = raised.images;
await must("anchor", `cat > /tmp/foundation.lock <<'MESHBUNDLE'\n${bundleFor(raised.images)}\nMESHBUNDLE`);
await must("anchor", `${HOST_PATH} apply /tmp/foundation.lock`, 900_000);
const up = await must("anchor", `docker ps --format '{{.Names}}'`);
for (const c of ["mesh-store", "mesh-broker", "mesh-controller"]) {
assert.match(up, new RegExp(c), `the foundation did not raise ${c}:\n${up}`);
}
for (const machine of ["anchor", NODE]) {
await mesh(`node add ${machine}`);
const token = tokenFrom(await mesh(`token issue --node ${machine}`));
const said = await must(machine, `${HOST_PATH} enrol --token ${quote(token)}`);
assert.match(said, new RegExp(`enrolled as ${machine}`), said);
await must(machine, `nohup ${HOST_PATH} run > /var/log/mesh-host.log 2>&1 & sleep 3`);
}
// The operator provides the media library: the ADR-0051 `access` resources CONFIRM these paths and
// the media containers mount them, but the mesh creates none of it. Without this the media stack's
// apply is refused ("the path is not present").
await must(NODE, `mkdir -p ${MEDIA_DIRS.join(" ")}`);
}, { timeout: 2_700_000 });
after(async () => {
if (instanceId) await destroy(instanceId);
await destroyAll(`${SCENARIO}-`);
}, { timeout: 900_000 });
test("the whole ace service set resolves, installs and converges on one node in one push", {
skip, timeout: 3_300_000,
}, async () => {
for (const d of DROPPED) console.log(`DROPPED ${d.name}: ${d.why}`);
// The overlay, so a consumer's binding `at` is non-empty (baserow/letta reach postgres/redis).
await mesh("overlay place anchor --hub --endpoint 192.0.2.10:51820 --site lab");
await mesh(`overlay place ${NODE} --site lab`);
await mesh("assign anchor networking");
await mesh(`assign ${NODE} networking`);
// Add / issue / assign, resiliently: a module the node cannot host is recorded and skipped so one
// bad assignment cannot poison the whole-node push.
const issued: string[] = [];
const assigned = new Set<string>();
const refused: { name: string; why: string }[] = [];
for (const { name } of MODULES) {
if (DROPPED.some((d) => d.name === name)) continue;
try {
const { manifest, broker } = loadManifest(name);
await must("anchor", `printf %s ${quote(manifest)} > /tmp/${name}.json && docker cp /tmp/${name}.json mesh-controller:/${name}.json`);
await mesh(`module add /${name}.json`);
if (broker) {
await mesh(`module issue ${name} --node ${NODE}`);
issued.push(name);
}
await mesh(`assign ${NODE} ${name}`);
assigned.add(name);
} catch (err) {
const why = (err as Error).message.split("\n").map((l) => l.trim()).filter(Boolean).slice(1, 5).join(" | ");
refused.push({ name, why });
console.log(`NOT ASSIGNED ${name}: ${why}`);
}
}
console.log(`issued broker accounts for: ${issued.length} modules`);
if (refused.length) console.log(`refused (node cannot host): ${refused.map((r) => r.name).join(", ")}`);
// ONE push.
let pushError = "";
try {
await mesh(`push ${NODE}`, 180_000);
} catch (err) {
pushError = (err as Error).message;
console.log(`PUSH REJECTED:\n${pushError}`);
}
// Wait for every CORE container to be up (the node pulls ~20GiB of images first), bounded.
const coreContainers = MODULES.filter((m) => CORE.has(m.name) && assigned.has(m.name))
.flatMap((m) => m.containers);
const psNames = async (): Promise<Map<string, string>> => {
const out = (await on(NODE, `docker ps -a --format '{{.Names}}\t{{.Status}}'`)).out;
const map = new Map<string, string>();
for (const line of out.split("\n")) {
const [n, ...rest] = line.split("\t");
if (n) map.set(n.trim(), rest.join("\t").trim());
}
return map;
};
let psMap = new Map<string, string>();
if (!pushError) {
const until = Date.now() + 2_700_000;
while (Date.now() < until) {
psMap = await psNames();
if (coreContainers.every((c) => (psMap.get(c) ?? "").startsWith("Up"))) break;
await new Promise((r) => setTimeout(r, 8000));
}
await new Promise((r) => setTimeout(r, 20000)); // let first-boot bounces settle
}
psMap = await psNames();
const final = await nodeState(NODE);
const running = (name: string): boolean => (psMap.get(name) ?? "").startsWith("Up");
// A run-once (mosquitto's dynsec bootstrap) seeds state and exits; the mesh removes it on success,
// so absent-from-`docker ps -a` means it completed and was reaped (the node is applied+current, so
// its resource did apply). Present means it must be up or have exited cleanly.
const ranOnce = (name: string): boolean => !psMap.has(name) || /^(Up|Exited \(0\))/.test(psMap.get(name) ?? "");
const users = (await on("anchor", `docker exec mesh-broker lavinmqctl list_users 2>&1`)).out;
// ================================================================================================
// The per-module report — the deliverable.
// ================================================================================================
const report: string[] = [];
report.push("================ WHOLE-MESH ace CONVERGENCE ================");
report.push(`node reached=${final.reached} applied=${final.applied} current=${final.current} waiting=${final.waiting}`);
if (pushError) report.push(`PUSH REJECTED (resolver): ${pushError.split("\n").slice(0, 8).join("\n ")}`);
const failedResources = final.wrong?.failed ?? [];
if (final.wrong) {
report.push(`NODE WRONG: outcome=${final.wrong.outcome} refused=${final.wrong.refused ?? "-"}`);
for (const f of failedResources) report.push(` failed ${f.id}: ${f.error}`);
}
if (DROPPED.length) {
report.push("---- DROPPED ----");
for (const d of DROPPED) report.push(` ${d.name.padEnd(16)} ${d.why}`);
}
if (refused.length) {
report.push("---- REFUSED at assign ----");
for (const r of refused) report.push(` ${r.name.padEnd(16)} ${r.why}`);
}
const line = (mod: typeof MODULES[number]): { text: string; ok: boolean } => {
const states = mod.containers.map((c) => `${c}:${running(c) ? "UP" : (psMap.get(c) ?? "MISSING")}`);
const extra = (mod.runOnce ?? []).map((c) => `${c}:${ranOnce(c) ? "ran" : (psMap.get(c) ?? "MISSING")}`);
const ok = mod.containers.every(running) && (mod.runOnce ?? []).every(ranOnce);
return { text: `${mod.name.padEnd(16)} ${ok ? "OK " : "GAP "} ${[...states, ...extra].join(" ")}`, ok };
};
report.push("---- CORE (gates green) ----");
const coreFailures: string[] = [];
const gaps: string[] = [];
for (const mod of MODULES) {
if (!assigned.has(mod.name)) continue;
const { text, ok } = line(mod);
if (CORE.has(mod.name)) {
report.push(` ${text}`);
if (!ok) coreFailures.push(mod.name);
} else {
gaps.push(` ${text}`);
}
}
report.push("---- KNOWN GAPS (reported, escalated, do NOT gate green) ----");
for (const g of gaps) report.push(g);
report.push(`broker accounts issued: ${issued.filter((n) => new RegExp(`${NODE}-${n}\\b`).test(users)).length}/${issued.length} present`);
const summary = report.join("\n");
console.log(summary);
// Diagnostics for anything not up: exact crash cause per container.
const toDump = MODULES.filter((m) => assigned.has(m.name) && (coreFailures.includes(m.name) || KNOWN_GAPS.has(m.name)));
if (toDump.length) {
console.log(`\n---- ${NODE} mesh-host.log tail ----\n${(await on(NODE, `tail -60 /var/log/mesh-host.log`)).out}`);
for (const mod of toDump) {
for (const c of mod.containers) {
if (psMap.has(c) && !running(c)) {
console.log(`\n---- logs: ${c} (${psMap.get(c)}) ----\n${(await on(NODE, `docker logs ${c} 2>&1 | tail -20`)).out}`);
}
}
}
}
// ================================================================================================
// GREEN = the whole set RESOLVED (push accepted), every CORE module converged whole, and no CORE
// resource failed to apply. KNOWN_GAPS and DROPPED are reported and escalated but do not gate.
// ================================================================================================
assert.equal(pushError, "", `the whole set did not resolve — push was rejected:\n${pushError}`);
const coreResourceFailures = failedResources.filter((f) => CORE.has(f.id.split(".")[0] ?? ""));
assert.deepEqual(coreResourceFailures, [],
`a CORE resource failed to apply:\n${coreResourceFailures.map((f) => `${f.id}: ${f.error}`).join("\n")}\n${summary}`);
assert.deepEqual(coreFailures, [],
`these CORE modules did not converge whole: ${coreFailures.join(", ")}\n${summary}`);
});