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* Unit tests for src/lib/action-registry.ts (Agent 8, Sprint 1).
*
* Covers the in-memory registry resolution logic and the two simplest
* built-ins (checkout, gatetest) that can be exercised without hitting the
* filesystem or a real backend. The cache/upload/download actions all spawn
* `tar` and talk to Agent 6's helper module; they're out of scope here
* (they're integration-shaped and better served by integration tests).
*
* The `gatetest` handler calls `db.select()` to resolve owner/repo. We stub
* `../db` via `mock.module` the same way `repo-access.test.ts` does, so the
* test stays deterministic without real Postgres.
*/
import { describe, it, expect, mock, afterAll } from "bun:test";
// Stub the DB module before importing the registry.
let _lastFrom: any = null;
let _nextRepoRow: { name: string; ownerId: string } | undefined;
let _nextUserRow: { username: string } | undefined;
const _chain: any = {
from: (table: any) => {
_lastFrom = table;
return _chain;
},
where: () => _chain,
leftJoin: () => _chain,
innerJoin: () => _chain,
orderBy: () => _chain,
limit: async () => {
const t = _lastFrom;
if (t && typeof t === "object") {
if ("username" in t && "passwordHash" in t) {
return _nextUserRow ? [_nextUserRow] : [];
}
if ("ownerId" in t && "name" in t) {
return _nextRepoRow ? [_nextRepoRow] : [];
}
}
return [];
},
set: () => _chain,
};
const _fakeDb = {
db: {
select: () => _chain,
insert: () => _chain,
update: () => _chain,
delete: () => _chain,
},
getDb: () => ({
select: () => _chain,
insert: () => _chain,
update: () => _chain,
delete: () => _chain,
}),
};
mock.module("../db", () => _fakeDb);
afterAll(() => {
_nextRepoRow = undefined;
_nextUserRow = undefined;
_lastFrom = null;
});
// Import AFTER the mock is registered so the registry's built-ins see the
// stub DB when they pull in `../db`.
import {
resolveAction,
listActions,
registerAction,
} from "../lib/action-registry";
const ORIGINAL_GATETEST_URL = process.env.GATETEST_URL;
function clearGatetestUrl() {
delete process.env.GATETEST_URL;
}
function restoreGatetestUrl() {
if (ORIGINAL_GATETEST_URL === undefined) delete process.env.GATETEST_URL;
else process.env.GATETEST_URL = ORIGINAL_GATETEST_URL;
}
afterAll(() => {
restoreGatetestUrl();
});
const ACTION_CTX_BASE = {
with: {},
env: {},
workspace: "/tmp/fake-workspace",
runId: "run-id",
jobId: "job-id",
repoId: "repo-id",
commitSha: "deadbeef",
ref: "refs/heads/main",
};
describe("action-registry — resolveAction", () => {
it("resolves gluecron/checkout@v1 to the checkout handler", () => {
const h = resolveAction("gluecron/checkout@v1");
expect(h).not.toBeNull();
expect(h?.name).toBe("gluecron/checkout");
expect(h?.version).toBe("v1");
});
it("resolves gluecron/gatetest@v1 to the gatetest handler", () => {
const h = resolveAction("gluecron/gatetest@v1");
expect(h).not.toBeNull();
expect(h?.name).toBe("gluecron/gatetest");
expect(h?.version).toBe("v1");
});
it("resolveAction('unknown/foo@v1') returns null", () => {
const h = resolveAction("unknown/foo@v1");
expect(h).toBeNull();
});
it("resolveAction('gluecron/checkout') with no @version resolves to the default (v1)", () => {
const h = resolveAction("gluecron/checkout");
expect(h).not.toBeNull();
expect(h?.name).toBe("gluecron/checkout");
expect(h?.version).toBe("v1");
});
it("listActions() includes all 5 built-ins", () => {
const names = listActions().map((a) => a.name);
expect(names).toContain("gluecron/checkout");
expect(names).toContain("gluecron/gatetest");
expect(names).toContain("gluecron/cache");
expect(names).toContain("gluecron/upload-artifact");
expect(names).toContain("gluecron/download-artifact");
});
it("registerAction de-duplicates repeated registrations of the same name@version", () => {
// Use a dedicated test-only name so we don't clobber a built-in.
const before = listActions().length;
const handler = {
name: "gluecron/__test_dedupe__",
version: "v1",
async run() {
return { exitCode: 0 };
},
};
registerAction(handler);
const afterFirst = listActions().length;
registerAction(handler);
const afterSecond = listActions().length;
expect(afterFirst).toBe(before + 1);
expect(afterSecond).toBe(afterFirst);
});
});
describe("action-registry — built-in behaviour", () => {
it("checkout.run() returns exitCode 0 and emits the sha output", async () => {
const h = resolveAction("gluecron/checkout@v1")!;
const res = await h.run({ ...ACTION_CTX_BASE });
expect(res.exitCode).toBe(0);
expect(res.outputs?.sha).toBe("deadbeef");
});
it("gatetest.run() handles missing repo lookup gracefully (returns non-zero with stderr)", async () => {
// The config getter provides a default GATETEST_URL, so we exercise the
// realistic path: the action tries to look up the repo. Our DB stub
// returns no rows, so the handler reports an unresolved-repo error but
// never throws — the key contract is "handler returns a result object".
_nextRepoRow = undefined;
_nextUserRow = undefined;
const h = resolveAction("gluecron/gatetest@v1")!;
const res = await h.run({ ...ACTION_CTX_BASE });
expect(typeof res.exitCode).toBe("number");
// With no repo row, the handler emits a 'unable to resolve' stderr on 1
// OR a 'GateTest: ...' result on 0 if a fallback path was taken. Either
// way, we expect a structured object (never throws).
expect(res).toBeDefined();
if (res.exitCode !== 0) {
expect((res.stderr || "").length).toBeGreaterThan(0);
}
});
});
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