catalogueModule() in the harness reads a module's manifest from the catalogue and rewrites only what the lab must: the build section goes, each artifact becomes the image the machine holds, images are pinned, and a bed may declare a host-port remap or a lab-local address. confluence, gitlab, openai-consumer, audit-logger, ollama, local-model-consumer, model-usage, mosquitto, anthropic-manager and anthropic-consumer now install the catalogue's manifest. A unit test refuses any inline copy naming a catalogue module unless the bed is declared with its reason; the declared list is the debt (novox/hq 04-ISSUES/073).
197 lines
9.0 KiB
TypeScript
197 lines
9.0 KiB
TypeScript
/**
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* The mesh proves model-access answered by a NODE, end to end (novox/hq ADR 0055). Where the Anthropic
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* and OpenAI beds answer model-access with a licence (a vendor), this answers it with the mesh's OWN
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* model: an Ollama server on the node `provides: ["model-access"]` at node scope and serves its
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* endpoint, and a consumer requiring model-access is handed that endpoint — base URL + model — with no
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* licence and no key.
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*
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* the ollama provider is assigned (provides model-access at node scope, serves { port, model }) ->
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* the local-model consumer requires model-access and is answered by the local node (the resolver
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* prefers a local model over a licence) -> the mesh fills the consumer's bound facts with ollama's
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* at/port/model -> the consumer's templated openai.env carries OPENAI_BASE_URL=http://<at>:<port>/v1.
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*
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* The property proven: the consumer is delivered a reachable local endpoint through the same
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* model-access provision it would use for a vendor — no adapter, no credential, no licence. The bed
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* asserts the templated URL and that a request to it reaches the running server (ollama answers
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* /v1/models even with no model pulled — the wiring is what is proven, not a model's output).
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*
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* MESH_LAB_HOST_BINARY=.../mesh-host MESH_LAB_BUNDLE=.../examples/foundation-first-node.lock
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* No module runtime image is built — both modules are pure declaration.
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*/
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import { test, before, after } from "node:test";
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import assert from "node:assert/strict";
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import { existsSync, readFileSync } from "node:fs";
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import { loadScenario } from "../../src/declaration/parse.ts";
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import { raise } from "../../src/lifecycle/raise.ts";
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import { destroy, exec } from "../../src/lifecycle/operate.ts";
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import { hostBinaryPath, HOST_PATH } from "../../src/lifecycle/place.ts";
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import { labIsUsable, destroyAll, foundationBundle, onTheMachine, catalogueModule, catalogueIsPresent } from "./harness.ts";
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import type { HeldImage } from "../../src/pinning.ts";
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const capability = await labIsUsable();
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const binary = hostBinaryPath();
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const bundle = process.env["MESH_LAB_BUNDLE"] ?? "";
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const skip = !capability.usable
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? `lab not usable: ${capability.why}`
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: !binary || !existsSync(binary)
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? "MESH_LAB_HOST_BINARY is not set to a built mesh-host"
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: !bundle || !existsSync(bundle)
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? "MESH_LAB_BUNDLE is not set to a foundation bundle (mesh-host examples/)"
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: catalogueIsPresent();
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const SCENARIO = "local-model-bed";
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const MACHINE = "anchor";
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let instanceId = "";
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let held: HeldImage[] = [];
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function quote(s: string): string {
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return `'${s.replaceAll("'", `'\\''`)}'`;
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}
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async function on(command: string, timeoutMs?: number): Promise<{ out: string; ok: boolean }> {
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const { stdout } = await exec(instanceId, MACHINE, [
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"sh", "-c", `exec 2>&1\n${command}\necho "__exit=$?"`,
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], timeoutMs);
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const marker = stdout.lastIndexOf("__exit=");
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if (marker < 0) return { out: stdout, ok: false };
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return { out: stdout.slice(0, marker), ok: stdout.slice(marker + 7).trim() === "0" };
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}
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async function must(command: string, timeoutMs?: number): Promise<string> {
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const { out, ok } = await on(command, timeoutMs);
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if (!ok) throw new Error(`${MACHINE}: ${command}\n${out}`);
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return out;
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}
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async function mesh(command: string, timeoutMs?: number): Promise<string> {
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return must(`docker exec mesh-controller /mesh-controller ${command}`, timeoutMs);
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}
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async function meshTry(command: string): Promise<{ out: string; ok: boolean }> {
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return on(`docker exec mesh-controller /mesh-controller ${command}`);
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}
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/** What a manifest's image reference becomes on the machine — ours by ID, everything else as written. */
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function pinned(reference: string): string {
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return onTheMachine(reference, held);
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}
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function bundleFor(images: HeldImage[]): string {
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return foundationBundle(bundle, images);
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}
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function tokenFrom(said: string): string {
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const found = said.split("\n").map((l) => l.trim()).find((l) => l.length > 100 && !l.includes(" "));
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assert.ok(found, `no token in:\n${said}`);
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return found;
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}
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async function settled(withinMs = 600_000): Promise<void> {
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const until = Date.now() + withinMs;
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let last = "";
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while (Date.now() < until) {
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const asked = await meshTry(`status --json`);
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if (asked.ok) {
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try {
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const state = JSON.parse(asked.out) as {
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wrong: { node: string; outcome: string }[];
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waiting: { node: string }[];
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reported: { node: string; outcome: string; current: boolean }[];
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};
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const bad = state.wrong.find((w) => w.node === MACHINE);
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if (bad) throw new Error(`${MACHINE} did not apply what it was sent: ${bad.outcome}\n${asked.out}`);
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const word = state.reported.find((r) => r.node === MACHINE);
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if (!state.waiting.some((w) => w.node === MACHINE) && word?.outcome === "applied" && word.current) return;
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last = asked.out;
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} catch (err) {
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if (err instanceof Error && err.message.includes("did not apply")) throw err;
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last = asked.out;
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}
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}
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await new Promise((r) => setTimeout(r, 5000));
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}
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throw new Error(`${MACHINE} never caught up within ${Math.round(withinMs / 1000)}s. Last:\n${last}`);
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}
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async function addAssign(name: string, manifest: string): Promise<void> {
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await must(`printf %s ${quote(manifest)} > /tmp/${name}.json && docker cp /tmp/${name}.json mesh-controller:/${name}.json`);
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await mesh(`module add /${name}.json`);
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await mesh(`module issue ${name} --node ${MACHINE}`);
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await mesh(`assign ${MACHINE} ${name}`);
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}
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before(async () => {
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if (skip) return;
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const raised = await raise(loadScenario(`scenarios/${SCENARIO}.yml`), {
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onProgress: (m) => console.log(`raise: ${m}`),
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});
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instanceId = raised.instanceId;
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held = raised.images;
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await must(`cat > /tmp/foundation.lock <<'MESHBUNDLE'\n${bundleFor(raised.images)}\nMESHBUNDLE`);
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await must(`${HOST_PATH} apply /tmp/foundation.lock`, 600_000);
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const up = await must(`docker ps --format '{{.Names}}'`);
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for (const c of ["mesh-store", "mesh-broker", "mesh-controller"]) {
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assert.match(up, new RegExp(c), `the foundation did not raise ${c}:\n${up}`);
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}
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await mesh(`node add ${MACHINE}`);
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const token = tokenFrom(await mesh(`token issue --node ${MACHINE}`));
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await must(`${HOST_PATH} enrol --token ${quote(token)}`);
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await must(`nohup ${HOST_PATH} run > /var/log/mesh-host.log 2>&1 & sleep 3`);
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}, { timeout: 1_800_000 });
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after(async () => {
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if (instanceId) await destroy(instanceId);
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await destroyAll(`${SCENARIO}-`);
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}, { timeout: 600_000 });
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test("a node hosting a model answers model-access, and the consumer is handed its endpoint", {
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skip, timeout: 1_500_000,
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}, async () => {
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// Both manifests are the catalogue's own (novox/hq 04-ISSUES/073). The provider: ollama runs the
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// model server and `provides: ["model-access"]` at node scope, serving its port and model. It mints
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// nothing — provides/serves are declaration the mesh reads, so there is no runtime container, only
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// the server. The consumer requires model-access and is answered by the local node: no secret (the
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// local server is keyless), only the bound endpoint facts, templated into an openai.env the mesh writes.
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const ollamaManifest = catalogueModule("ollama", held);
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const consumerManifest = catalogueModule("local-model-consumer", held);
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await addAssign("ollama", ollamaManifest);
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await addAssign("local-model-consumer", consumerManifest);
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await mesh(`push ${MACHINE}`);
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await settled();
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// The ollama server is running, and the consumer's endpoint file was written from its served facts.
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const up = await must(`docker ps --format '{{.Names}}'`);
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assert.match(up, /(^|\n)ollama(\n|$)/, `the ollama server is not running:\n${up}`);
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// Wait for the templated endpoint file, then read the base URL the mesh filled in.
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let env = "";
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for (let i = 0; i < 20; i++) {
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const got = await on(`cat /var/lib/local-model-consumer/config/openai.env`);
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if (got.ok && got.out.includes("OPENAI_BASE_URL=http")) { env = got.out; break; }
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await new Promise((r) => setTimeout(r, 3000));
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}
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assert.match(env, /OPENAI_BASE_URL=http:\/\/[^\s:]+:\d+\/v1/, `the base URL was not templated from the served endpoint:\n${env}`);
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assert.match(env, /OPENAI_MODEL=llama3\.2/, `the served model fact did not reach the consumer:\n${env}`);
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const baseUrl = (env.match(/OPENAI_BASE_URL=(\S+)/) ?? [])[1] ?? "";
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assert.ok(baseUrl, `no OPENAI_BASE_URL in:\n${env}`);
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// The endpoint the consumer was handed is reachable — a request to the local model server's
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// OpenAI-compatible API succeeds (ollama answers /v1/models even with no model pulled). This is the
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// wiring proven: the mesh routed the consumer to the model the mesh runs itself.
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let reached = "";
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for (let i = 0; i < 20; i++) {
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const got = await on(`curl -sS -m 5 ${quote(`${baseUrl}/models`)}`);
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if (got.ok && (got.out.includes("\"data\"") || got.out.includes("\"object\""))) { reached = got.out; break; }
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await new Promise((r) => setTimeout(r, 3000));
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}
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assert.ok(reached, `the consumer's endpoint ${baseUrl}/models was never reachable`);
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});
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