Files
mesh-lab/test/integration/fresh-mesh.test.ts
T
jschoubben 09a22de78f The lab answers the installer's questions the unattended way
The installer asks where a human must choose, and this bed has no human — so
every choice arrives as a flag, and a required choice with no flag is the
installer refusing, which is the behaviour rather than a lab problem.

Both choices have one option today, so the flags are redundant on purpose: the
day a second filter exists this bed keeps working instead of refusing, and
choosing becomes a thing it visibly does.

Claude-Session: https://claude.ai/code/session_01D6qtiYU3P9jk3pnAXyAFyx
2026-09-15 21:57:26 +02:00

515 lines
26 KiB
TypeScript

/**
* FOUR FRESH MACHINES, AND NOTHING HANDED TO THEM.
*
* The four-machine bed (`whole-mesh-full`) proves the mesh converges. It does so by loading
* thirty-four of the mesh's own images onto its machines from the workstation, because it does not
* build them — something beside the bed built them and copied them in. No real installation looks
* like that, and the lab has been burned by exactly this shape before: it used to raise a registry
* inside the scenario, and a bootstrap that only worked against that registry went green here and
* would have failed on any bare machine.
*
* This bed hands over nothing. The scenario has no `images:` list at all. What the machines get is
* a container runtime and the host binary — prerequisites of a machine, not parts of a mesh — and
* from there:
*
* 1. novox is raised into a mesh of one by the installer, which BUILDS the control plane.
* 2. ace, shanks and g14 JOIN it, across a household NAT, with a token and nothing else.
* 3. The mesh builds the shared base from source, with its own builder.
* 4. The mesh builds a real module standing on that base.
* 5. The anchor runs it, pinned to a digest the mesh's own registry assigned.
* 6. A JOINED machine runs it — which means pulling from a registry that asks who it is.
*
* Steps 1 and 2 are proven elsewhere and are here because the later ones need them. **Steps 3
* through 6 are what this bed exists for**, and 6 is the one nothing has ever checked: genesis
* puts the builder, the registry and everything they produce on ONE machine, so every earlier
* proof of a mesh-built module running is a proof about the machine that built it. A second
* machine has to fetch, and fetching needs an account nothing yet grants (novox/hq issue 042).
*
* Each step is recorded separately rather than allowed to throw, so a gap at 6 reports as a gap at
* 6 instead of erasing the evidence for 3, 4 and 5.
*
* MESH_LAB_INCUS='sudo -n incus'
* MESH_LAB_HOST_BINARY=.../mesh-host/mesh-host
* MESH_LAB_BOOTSTRAP_BINARY=.../mesh-host/mesh-bootstrap
* MESH_LAB_BUNDLE=.../mesh-host/examples/substrate-first-node.lock
* MESH_LAB_CATALOG=.../mesh-catalog/modules
* MESH_LAB_SOURCE=<forge>/mesh-control.git MESH_LAB_SOURCE_REF=<commit>
* MESH_LAB_KEEP=1 to leave it standing afterwards
*/
import { test, before, after } from "node:test";
import assert from "node:assert/strict";
import { existsSync } from "node:fs";
import { resolve } from "node:path";
import { loadScenario } from "../../src/declaration/parse.ts";
import { raise } from "../../src/lifecycle/raise.ts";
import { destroy, exec, push } from "../../src/lifecycle/operate.ts";
import { bootstrapBinaryPath, hostBinaryPath, HOST_PATH } from "../../src/lifecycle/place.ts";
import { labIsUsable, destroyAll, substrateBundle } from "./harness.ts";
import { genesis, type GenesisResult } from "./genesis.ts";
const SCENARIO = "fresh-mesh";
const CONTROL = "anchor";
const HOME_NODES = ["home-server", "workstation", "laptop"];
/** The joined machine asked to run a mesh-built module. Any of the three would do. */
const SECOND = "home-server";
/** The anchor's public address — what every other machine dials, and what its own token must name. */
const ANCHOR = "192.0.2.20";
/** Where this mesh's registry answers, on the anchor's public address so a joined node can reach it. */
const REGISTRY = `${ANCHOR}:5000`;
/**
* The module built on top of the base, and the base it stands on.
*
* `amqp-ping` is deliberately small and deliberately REAL: its own TypeScript, compiled by the
* shared toolchain, running on the shared runtime, talking to the broker. A module whose artifact
* is a mirrored public image would pass every assertion below while skipping the whole of what is
* under test (novox/hq SELF-UPGRADE-PLAN, rule 1).
*/
const BASE = { module: "mesh-tools", repo: "mesh-tools", path: "" };
/**
* What `amqp-ping` requires, and what the substrate does not supply.
*
* The installer raises a broker, but as a bundle resource — plumbing, not a module the mesh has a
* record of, so it provides nothing to anything. A module asking for `amqp` is asking for a
* provider in the graph, and this is it. No build: its image is upstream.
*/
const PROVIDER = { module: "lavinmq", repo: "mesh-catalog", path: "modules/lavinmq", container: "mesh-lavinmq" };
/**
* The store, and the catalogue that cannot exist without it.
*
* Both were missing from this test entirely, and nothing complained, because nothing asked. A mesh
* with no catalogue holds no module graph — it cannot say what it has, what a module is made of,
* what a change reaches, or what must be rebuilt. It ran anyway, which is the point: "the mesh is
* up" was being read off genesis finishing.
*/
const STORE = { module: "postgres", repo: "mesh-catalog", path: "modules/postgres", container: "mesh-postgres" };
const CATALOGUE = { module: "mesh-catalog", repo: "mesh-catalog", path: "modules/mesh-catalog", container: "mesh-catalog" };
/** The control plane, rebuilt from its own repository — the step that ends the installer's tenure. */
const CONTROL_PLANE = { module: "mesh-control", repo: "mesh-control", path: "", container: "mesh-control" };
/** Named once, because the step title is also how later steps say what they waited on. */
const NEEDS = "the mesh runs a broker for that module to talk to";
const GENESIS = "a bare machine becomes a mesh of one, raised by the installer";
const BASE_BUILT = "the mesh builds the shared base from source";
const STORE_RUNS = "the mesh builds and runs a store of its own";
const CATALOGUE_RUNS = "the mesh builds and runs its own catalogue";
const CONTROL_REBUILT = "the mesh rebuilds its own control plane from source";
const MODULE_BUILT = "the mesh builds a module standing on that base";
const ANCHOR_RUNS = "the anchor runs the module the mesh built";
const JOINED = "three machines join the mesh, and reach it over its private network";
const SECOND_RUNS = "a joined machine runs the module the mesh built";
const MODULE = { module: "amqp-ping", repo: "mesh-catalog", path: "modules/amqp-ping" };
const capability = await labIsUsable();
const binary = hostBinaryPath();
const installer = bootstrapBinaryPath();
const bundle = process.env["MESH_LAB_BUNDLE"] ?? "";
const catalogDir = process.env["MESH_LAB_CATALOG"] ?? "";
const source = process.env["MESH_LAB_SOURCE"] ?? "";
const sourceRef = process.env["MESH_LAB_SOURCE_REF"] ?? "";
const KEEP = !!process.env["MESH_LAB_KEEP"];
const FIXED_ID = process.env["MESH_LAB_INSTANCE_ID"] ?? (KEEP ? "fresh-mesh-live" : undefined);
/**
* Where a repository other than the control plane's lives.
*
* Derived from `MESH_LAB_SOURCE` by swapping the last path segment, because every one of these
* repositories sits beside the others under the same owner on the same forge. Overridable, so a
* forge that is arranged differently does not need this bed edited.
*/
function forgeUrl(repo: string): string {
const override = process.env[`MESH_LAB_SOURCE_${repo.toUpperCase().replaceAll("-", "_")}`];
if (override) return override;
return source.replace(/[^/]+\.git$/, `${repo}.git`);
}
/**
* What to build, per repository.
*
* A branch is acceptable for an ordinary build; only genesis insists on a commit (ADR 0071). Per
* repository rather than one value for all of them, because a change under test usually lives in
* one repository and the rest should be built from what everyone else has — building them all from
* a feature branch would prove that branch against itself.
*
* MESH_LAB_BUILD_REF the default for every repository
* MESH_LAB_BUILD_REF_MESH_CATALOG ...overridden for one
*/
function refFor(repo: string): string {
const override = process.env[`MESH_LAB_BUILD_REF_${repo.toUpperCase().replaceAll("-", "_")}`];
return override ?? process.env["MESH_LAB_BUILD_REF"] ?? "main";
}
/**
* The shared base's manifest, on this workstation.
*
* The base is a repository with a manifest at its root (novox/hq ADR 0069), so unlike the
* catalogue's modules it is not under `MESH_LAB_CATALOG`. Derived from that path on the convention
* that the checkouts sit beside each other, and overridable for a layout where they do not.
*/
const baseManifest = process.env["MESH_LAB_BASE_MANIFEST"] ??
resolve(catalogDir, "..", "..", BASE.repo, "module.json");
const skip =
!capability.usable ? capability.why :
!binary ? "MESH_LAB_HOST_BINARY is not set to a built mesh-host" :
!installer ? "MESH_LAB_BOOTSTRAP_BINARY is not set to a built mesh-bootstrap" :
!source ? "MESH_LAB_SOURCE is not set to the repository the control plane is built from" :
!sourceRef ? "MESH_LAB_SOURCE_REF is not set to the commit to build" :
!bundle || !existsSync(bundle) ? "MESH_LAB_BUNDLE is not set to a substrate template" :
!catalogDir || !existsSync(catalogDir) ? "MESH_LAB_CATALOG is not set to mesh-catalog/modules" :
false;
let instanceId = "";
let raised: GenesisResult;
// ---- talking to the machines ------------------------------------------------------------------
function quote(s: string): string {
return `'${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(CONTROL, `docker exec mesh-control /mesh-control ${command}`, timeoutMs);
}
/** A module the mesh has to make for itself: where its source is, and what it runs when it works. */
interface CoreModule { module: string; repo: string; path: string; container: string }
/**
* Build a module from source, install it, and wait for it to actually run.
*
* The whole sequence a module goes through, in one place because the mesh has to do it for several
* before it is a mesh at all: register the manifest, build it from its repository and path, issue
* the broker account its runtime needs, assign it, send it, and then ask the machine whether the
* container is up.
*
* **The account is not optional and is not swallowed.** A module's runtime is a tool host: it
* connects to the mesh's broker before doing anything. Without an account the mesh still fills the
* secret the module declares it owns — with a generated value — so the container starts, fails to
* parse a password as a credential document, and loops on a JSON syntax error mentioning no
* missing account. That cost a step that reported PASS.
*/
async function bringUp(m: CoreModule): Promise<string> {
await registerModule(m.module, resolve(catalogDir, m.module, "module.json"));
const built = await mesh(
`build ${forgeUrl(m.repo)} --path ${m.path} --ref ${refFor(m.repo)} --wait 1200s`, 1_500_000);
assert.doesNotMatch(built, /failed/i, built);
await mesh(`module issue ${m.module} --node ${CONTROL}`);
await mesh(`assign ${CONTROL} ${m.module}`);
await mesh(`push ${CONTROL}`, 600_000);
return `${built}\n${await waitForContainer(CONTROL, m.container)}`;
}
/**
* Wait for one container, BY NAME, to be running.
*
* **Named exactly, because substring matching passed a step that had failed.** Waiting for "a
* container whose name contains lavinmq" was satisfied by the broker — `lavinmq`, up and healthy —
* while the thing actually under test, the module's own runtime `mesh-lavinmq`, was crash-looping
* beside it. The step went green and the fault was found by reading `docker ps` by hand.
*/
async function waitForContainer(node: string, container: string, seconds = 200): Promise<string> {
const deadline = Date.now() + seconds * 1_000;
let last = "";
while (Date.now() < deadline) {
const ps = (await on(node, `docker ps -a --format '{{.Names}}\t{{.Status}}'`)).out;
last = ps;
const line = ps.split("\n").find((l) => l.split("\t")[0]?.trim() === container);
if (line && /^Up /.test(line.split("\t")[1]?.trim() ?? "")) return ps;
await new Promise((r) => setTimeout(r, 5_000));
}
const logs = (await on(node, `docker logs --tail 15 ${container} 2>&1`)).out;
throw new Error(
`${container} is not running on ${node}.\n\ncontainers:\n${last}\n\nwhat it said:\n${logs}`);
}
/**
* Register a module from a manifest on this workstation.
*
* **The control plane runs in a container, so a file on the machine is not a file it can open.**
* Pushing the manifest to the machine and naming that path got `no such file or directory` from
* inside mesh-control, which is correct and was briefly mistaken for a missing manifest. It is
* copied the last step of the way with `docker cp`.
*
* **Into the root, not into /tmp.** The control plane's image is a minimal one and has no `/tmp`
* to copy into — `docker cp` says so in those words. `/` is the one directory every image has.
*/
async function registerModule(module: string, manifest: string): Promise<string> {
assert.ok(existsSync(manifest), `no manifest for ${module} at ${manifest}`);
const onMachine = `/tmp/${module}.json`;
const inContainer = `/${module}.json`;
await push(instanceId, CONTROL, manifest, onMachine);
await must(CONTROL, `docker cp ${onMachine} mesh-control:${inContainer}`);
return mesh(`module add ${inContainer}`);
}
function tokenFrom(said: string): string {
const found = said.split("\n").map((l) => l.trim()).find((l) => l.length > 100 && !l.includes(" "));
assert.ok(found, `no token in:\n${said}`);
return found;
}
// ---- steps, recorded rather than thrown --------------------------------------------------------
interface Step { ok: boolean; why: string; said: string }
const steps = new Map<string, Step>();
const order: string[] = [];
/** Run a step, remember what it said, and never throw. A step whose predecessor failed is skipped. */
async function step(name: string, after_: string | null, fn: () => Promise<string>): Promise<void> {
order.push(name);
if (after_ && !steps.get(after_)?.ok) {
steps.set(name, { ok: false, why: `not attempted — "${after_}" did not succeed`, said: "" });
console.log(`SKIPPED ${name}`);
return;
}
console.log(`\n======== ${name} ========`);
try {
const said = await fn();
steps.set(name, { ok: true, why: "", said });
console.log(`OK ${name}`);
} catch (err) {
const why = (err as Error).message;
steps.set(name, { ok: false, why, said: "" });
console.log(`FAILED ${name}\n${why.split("\n").slice(0, 25).join("\n")}`);
}
}
function report(name: string): string {
const s = steps.get(name);
if (!s) return `${name}: never ran`;
const lines = order.map((n) => {
const it = steps.get(n);
return ` ${it?.ok ? "PASS" : "FAIL"} ${n}`;
});
return `${s.why}\n\nWhere this bed got to:\n${lines.join("\n")}`;
}
before(async () => {
if (skip) return;
const bed = await raise(loadScenario(`scenarios/${SCENARIO}.yml`), {
onProgress: (m) => console.log(`raise: ${m}`),
...(FIXED_ID ? { instanceId: FIXED_ID } : {}),
});
instanceId = bed.instanceId;
console.log(`INSTANCE ${instanceId}${KEEP ? " (KEEP — will be left standing)" : ""}`);
console.log(`NOTHING WAS LOADED: this scenario names no images. Every image on every machine ` +
`below was pulled from the internet or built by the mesh.`);
// ---- 1. GENESIS -----------------------------------------------------------------------------
//
// The shared description, the same one `genesis-single` calls. The bundle is the TEMPLATE with
// nothing held: no image is pre-resolved, because none is here to resolve to.
await step("a bare machine becomes a mesh of one, raised by the installer", null, async () => {
try {
raised = await genesis({
instanceId,
node: CONTROL,
installer: installer as string,
catalogDir,
// The broker's advertised address, corrected.
//
// The template hardcodes 192.0.2.10:5671 — the address of the anchor in the single-machine
// bed. A token carries this verbatim as the endpoint an enrolling node dials, so on a mesh
// whose anchor is somewhere else every node, including this one, would enrol against an
// address nothing answers on. The installer refuses to guess it and says so, which is
// right: it does not know what this machine is called from outside.
bundleTemplate: substrateBundle(bundle, []).replaceAll("192.0.2.10:5671", `${ANCHOR}:5671`),
registry: REGISTRY,
source,
sourceRef,
toolsSource: forgeUrl(BASE.repo),
catalogSource: forgeUrl(MODULE.repo),
catalogRef: refFor(MODULE.repo),
log: (m) => console.log(m),
});
} catch (err) {
throw new Error(`the installer never ran: ${(err as Error).message}`);
}
if (!raised.ok) throw new Error(`${raised.step || "no step named"}: ${raised.why}\n\n${raised.report.join("\n")}`);
return raised.report.join("\n");
});
// ---- 2..6. THE MESH BECOMES ONE --------------------------------------------------------------
//
// **Joining used to be here, second, and that was the wrong order.** Three machines were enrolled
// into a mesh that could not yet produce a single module, and the step was reported as though
// something had been shown. They do join — reliably — but joining a mesh that can build nothing
// proves only that enrolment works, which was never the doubtful part.
//
// `17-raising-a-mesh` says it plainly: genesis ends with a mesh of one that RUNS, and that is not
// the same as a mesh that WORKS; what remains after the core modules are built is "adding
// machines, and deciding what they run". So everything a mesh needs to be a mesh happens first,
// and machines arrive at the end.
// The toolchain and runtime every module with code of its own stands on. It is a module, and it
// is built like one — cloned from the forge by the builder installing put here, compiled on the
// machine, published into the mesh's own registry.
await step(BASE_BUILT, GENESIS, async () => {
// Registered from the manifest the builder will also read, so what the mesh holds and what it
// builds are the same description of the same module.
//
// **Not swallowed.** This call used to end in `.catch(() => {})`, on the reasoning that the
// base might already be known. It hid a real failure — the manifest was being named at a path
// inside a container that had never seen it — and the step passed anyway, because a base with
// nothing to stand on builds whether or not the mesh has a record of it.
await registerModule(BASE.module, baseManifest);
const built = await mesh(
`build ${forgeUrl(BASE.repo)} --ref ${refFor(BASE.repo)} --wait 1200s`, 1_500_000);
assert.doesNotMatch(built, /failed/i, built);
return built;
});
// A store of its own. **Not the substrate's.** The installer raises a store for the control
// plane to keep its own records in, the way it raises a broker — plumbing, not a module the mesh
// has any record of, so it provides nothing to anything. A module that wants a database wants a
// provider in the graph, and the catalogue below is the first thing to want one.
await step(STORE_RUNS, BASE_BUILT, () => bringUp(STORE));
// And the catalogue, which was missing from this test altogether.
//
// Without it the mesh holds no module graph: it cannot say what it has, what a module is made
// of, what a change to one reaches, or what must be rebuilt. A mesh in that state still runs,
// which is exactly how its absence went unnoticed — "the mesh is up" was being read off the
// installer finishing rather than off the mesh being able to answer anything.
await step(CATALOGUE_RUNS, STORE_RUNS, () => bringUp(CATALOGUE));
// The control plane, rebuilt from its own repository and rolled out.
//
// The installer built it once, which is what got the mesh running. Building it again THROUGH THE
// MODULE PATH — build, notice the version moved, roll it out — is a different claim: it is the
// moment the mesh stops depending on the installer for anything, and the first time the thing
// that performs an upgrade performs one on itself.
await step(CONTROL_REBUILT, CATALOGUE_RUNS, async () => {
const built = await mesh(
`build ${forgeUrl(CONTROL_PLANE.repo)} --ref ${sourceRef} --wait 1200s`, 1_500_000);
assert.doesNotMatch(built, /failed/i, built);
const rolled = await mesh(`upgrade ${CONTROL_PLANE.module} roll-out`, 900_000);
// Asked of the machine rather than believed from the command: the control plane that answers
// afterwards is the one that has to be running for anything below this line to mean anything.
await waitForContainer(CONTROL, CONTROL_PLANE.container);
return `${built}\n${rolled}`;
});
// ---- 7..8. SOMETHING TO RUN ---------------------------------------------------------------
await step(MODULE_BUILT, CONTROL_REBUILT, async () => {
await registerModule(MODULE.module, resolve(catalogDir, MODULE.module, "module.json"));
const built = await mesh(
`build ${forgeUrl(MODULE.repo)} --path ${MODULE.path} --ref ${refFor(MODULE.repo)} --wait 1200s`,
1_500_000);
assert.doesNotMatch(built, /failed/i, built);
// The point of the whole step: what came out is named by a digest this mesh's registry
// assigned, not by a placeholder and not by a tag.
const builds = await mesh(`builds ${MODULE.module}`);
assert.match(builds, /sha256:[0-9a-f]{12}/,
`the build recorded no digest — the module is not pinned to anything this registry serves:\n${builds}`);
return `${built}\n${builds}`;
});
// `amqp-ping` requires the `amqp` provision, and the mesh refused to place it: "nothing provides
// amqp, wanted by amqp-ping". That refusal is correct and is the reason this step exists rather
// than the reason to pick an easier module.
//
// `lavinmq` is that module. It was first added here on the belief that it needed no building —
// its broker is an upstream image — and the mesh refused it again: two of its three containers
// named a placeholder digest, "which is never a real image". Also right. The broker is upstream,
// but the module is not only the broker: it carries a run-once bootstrap that writes the broker's
// configuration, a provisioner that grants each consumer its own vhost and user, tools and an
// event consumer, all of it its own code.
await step(NEEDS, MODULE_BUILT, () => bringUp(PROVIDER));
// The machine that built it. This is the case every earlier proof covered, and it is here as the
// control for the last step: if this fails, that one's failure says nothing about fetching.
await step(ANCHOR_RUNS, NEEDS, async () => {
await mesh(`module issue ${MODULE.module} --node ${CONTROL}`);
await mesh(`assign ${CONTROL} ${MODULE.module}`);
await mesh(`push ${CONTROL}`, 600_000);
return waitForContainer(CONTROL, MODULE.module);
});
// ---- 9. NOW MACHINES MAY ARRIVE ---------------------------------------------------------------
//
// Host binary and a token, and nothing else. The anchor is NOT in this loop — the installer
// enrolled it, and enrolling it again would offer the mesh a second identity for a node it
// already knows.
//
// And they are placed on the mesh's private network, which the earlier ordering never did. The
// mesh refuses to bind a consumer to a provider on another machine when either is missing from
// it — "they are not both on the private network" — so without this the last step fails for a
// reason that has nothing to do with what it is asking.
await step(JOINED, ANCHOR_RUNS, async () => {
const said: string[] = [];
await mesh(`overlay place ${CONTROL} --hub --endpoint ${ANCHOR}:51820 --site hosting`);
for (const machine of HOME_NODES) {
await mesh(`node add ${machine}`);
const token = tokenFrom(await mesh(`token issue --node ${machine}`));
const out = await must(machine, `${HOST_PATH} enrol --token ${quote(token)}`, 180_000);
assert.match(out, new RegExp(`enrolled as ${machine}`), out);
await must(machine, `nohup ${HOST_PATH} run > /var/log/mesh-host.log 2>&1 & sleep 3`);
await mesh(`overlay place ${machine} --site home`);
said.push(` ${machine} enrolled, running, and on the private network`);
}
said.push((await mesh("node list")).trim());
said.push((await mesh("overlay show")).trim());
return said.join("\n");
});
// ---- 10. AND A MACHINE THAT DID NOT BUILD IT --------------------------------------------------
//
// **The thing nothing has ever checked.** This machine did not build the image and has never seen
// it. To run it, it must fetch it from the mesh's registry — and a joined node has no account
// there (novox/hq issue 042), nor any reason to trust a registry serving plain HTTP over the
// network (issue 048). Both are open, and both are invisible on a mesh of one.
//
// Asked anyway, and asked LAST, so that when it fails everything above still stands as evidence
// of what does work.
await step(SECOND_RUNS, JOINED, async () => {
await mesh(`module issue ${MODULE.module} --node ${SECOND}`);
await mesh(`assign ${SECOND} ${MODULE.module}`);
await mesh(`push ${SECOND}`, 600_000);
try {
return await waitForContainer(SECOND, MODULE.module);
} catch (err) {
const log = (await on(SECOND, `tail -40 /var/log/mesh-host.log`)).out;
throw new Error(`${(err as Error).message}\n\nwhat the host said:\n${log}`);
}
});
console.log(`\n================ WHAT THIS MESH DID FOR ITSELF ================`);
for (const n of order) console.log(` ${steps.get(n)?.ok ? "PASS" : "FAIL"} ${n}`);
}, { timeout: 7_200_000 });
after(async () => {
if (KEEP) {
console.log(`\nLEFT STANDING: ${instanceId} — not destroyed (MESH_LAB_KEEP).`);
return;
}
if (instanceId) await destroy(instanceId);
await destroyAll(`${SCENARIO}-`);
}, { timeout: 900_000 });
for (const name of [
"a bare machine becomes a mesh of one, raised by the installer",
"three machines join it across the household gateway",
"the mesh builds the shared base from source",
"the mesh builds a module standing on that base",
NEEDS,
"the anchor runs the module the mesh built",
"a joined machine runs the module the mesh built",
]) {
test(name, { skip, timeout: 60_000 }, () => {
assert.ok(steps.get(name)?.ok, report(name));
});
}