323 lines
15 KiB
JavaScript
323 lines
15 KiB
JavaScript
import assert from "node:assert/strict";
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import { execFile } from "node:child_process";
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import {
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chmod, lstat, mkdir, mkdtemp, readFile, realpath, rm, symlink, writeFile,
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} from "node:fs/promises";
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import { tmpdir } from "node:os";
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import { dirname, join } from "node:path";
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import { promisify } from "node:util";
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import { fileURLToPath } from "node:url";
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import test from "node:test";
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import {
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canonicalIntegrationBase,
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CHECK_IDS,
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buildSafeEnvironment,
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installExternalFetchGuard,
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negativeRequestEvidence,
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cleanupOwnedRun,
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createOwnedRun,
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deriveOverall,
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executeChecks,
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exportArchiveEvidencePath,
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readAndValidateOwnership,
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runCommand,
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runIntegration,
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scalarSecretBytes,
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scanSecrets,
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validateReport,
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validateRunRoot,
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} from "./p1-acceptance.mjs";
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const execFileAsync = promisify(execFile);
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const roots = [];
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async function fakeRepository() {
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const root = await mkdtemp(join(tmpdir(), "p1 acceptance repository with spaces-"));
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roots.push(root);
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await mkdir(join(root, ".artifacts", "p1-integration"), { recursive: true });
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return await realpath(root);
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}
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test.afterEach(async () => {
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await Promise.all(roots.splice(0).map((root) => rm(root, { recursive: true, force: true })));
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});
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test("run roots are only canonical direct integration children", async () => {
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const repositoryRoot = await fakeRepository();
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const base = canonicalIntegrationBase(repositoryRoot);
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const id = `p1-${"a".repeat(32)}`;
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assert.equal(validateRunRoot(repositoryRoot, join(base, id), id), join(base, id));
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for (const candidate of [
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base,
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join(repositoryRoot, ".artifacts", "manual-acceptance", id),
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join(base, id, "nested"),
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join(base, "foreign"),
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join(dirname(base), id),
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]) assert.throws(() => validateRunRoot(repositoryRoot, candidate, id));
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assert.throws(() => validateRunRoot(repositoryRoot, join(base, `p1-${"A".repeat(32)}`), `p1-${"A".repeat(32)}`));
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});
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test("cleanup refuses every unowned or ambiguous root", async () => {
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const repositoryRoot = await fakeRepository();
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const base = canonicalIntegrationBase(repositoryRoot);
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const cases = [
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["missing ownership", async (run) => rm(join(run.root, "ownership.json"))],
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["malformed ownership", async (run) => writeFile(join(run.root, "ownership.json"), "{")],
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["mismatched root", async (run) => {
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const value = JSON.parse(await readFile(join(run.root, "ownership.json"), "utf8"));
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value.root = join(base, `p1-${"b".repeat(32)}`);
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await writeFile(join(run.root, "ownership.json"), JSON.stringify(value));
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}],
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["mismatched pid", async (run) => {
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const value = JSON.parse(await readFile(join(run.root, "ownership.json"), "utf8"));
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value.pid += 1;
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await writeFile(join(run.root, "ownership.json"), JSON.stringify(value));
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}],
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["wrong resource list", async (run) => {
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const value = JSON.parse(await readFile(join(run.root, "ownership.json"), "utf8"));
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value.resources.push(join(repositoryRoot, "foreign"));
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await writeFile(join(run.root, "ownership.json"), JSON.stringify(value));
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}],
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];
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for (const [, mutate] of cases) {
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const run = await createOwnedRun({ repositoryRoot });
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await mutate(run);
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await assert.rejects(cleanupOwnedRun({ repositoryRoot, runRoot: run.root, expectedNonce: run.nonce }));
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assert.equal((await lstat(run.root)).isDirectory(), true);
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}
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const wrongNonce = await createOwnedRun({ repositoryRoot });
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await assert.rejects(cleanupOwnedRun({ repositoryRoot, runRoot: wrongNonce.root, expectedNonce: "0".repeat(64) }));
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const symlinkRun = await createOwnedRun({ repositoryRoot });
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const target = `${symlinkRun.root}-target`;
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await rm(symlinkRun.root, { recursive: true });
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await mkdir(target);
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await symlink(target, symlinkRun.root);
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await assert.rejects(cleanupOwnedRun({ repositoryRoot, runRoot: symlinkRun.root, expectedNonce: symlinkRun.nonce }));
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for (const bad of [base, join(repositoryRoot, ".artifacts", "manual-acceptance"), join(base, "foreign")]) {
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await assert.rejects(cleanupOwnedRun({ repositoryRoot, runRoot: bad, expectedNonce: "0".repeat(64) }));
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}
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});
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test("cleanup atomically removes one owned root and preserves siblings", async () => {
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const repositoryRoot = await fakeRepository();
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const run = await createOwnedRun({ repositoryRoot });
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const sibling = join(canonicalIntegrationBase(repositoryRoot), `p1-${"c".repeat(32)}`);
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await mkdir(sibling);
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await writeFile(join(sibling, "sentinel"), "foreign");
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await readAndValidateOwnership({ repositoryRoot, runRoot: run.root, expectedNonce: run.nonce });
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await cleanupOwnedRun({ repositoryRoot, runRoot: run.root, expectedNonce: run.nonce });
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await assert.rejects(lstat(run.root));
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assert.equal(await readFile(join(sibling, "sentinel"), "utf8"), "foreign");
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});
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function resultFor(id) {
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return {
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id, status: "PASS", startedAt: "2026-08-09T00:00:00.000Z",
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finishedAt: "2026-08-09T00:00:01.000Z", commands: ["git"],
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artifacts: [{ path: `logs/${id}.json`, sha256: "a".repeat(64) }],
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};
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}
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function validReport(checks = CHECK_IDS.map(resultFor)) {
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return {
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schemaVersion: 1, runId: `p1-${"d".repeat(32)}`, startedAt: "2026-08-09T00:00:00.000Z",
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finishedAt: "2026-08-09T00:00:02.000Z", command: "p1-acceptance integration --keep",
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overall: deriveOverall(checks), checks,
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};
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}
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test("report validation enforces uniqueness, derivation, safe evidence, hashes, times, and commands", () => {
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assert.doesNotThrow(() => validateReport(validReport()));
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const mutations = [
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(r) => r.checks.push(structuredClone(r.checks[0])),
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(r) => { r.checks[0].attempt = 1; },
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(r) => { r.checks[0].artifacts[0].path = "../secret"; },
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(r) => { r.checks[0].artifacts[0].sha256 = "bad"; },
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(r) => { r.checks[0].startedAt = "today"; },
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(r) => { r.checks[0].commands = ["git status"]; },
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(r) => { r.overall = "PASS"; r.checks[0].status = "FAIL"; },
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(r) => { r.nested = { retries: 2 }; },
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];
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for (const mutate of mutations) {
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const report = validReport(); mutate(report); assert.throws(() => validateReport(report));
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}
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});
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function exactScenarios(run = async () => ({ commands: [], artifacts: [] })) {
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return CHECK_IDS.map((id) => ({ id, run: () => run(id) }));
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}
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test("injected failure executes once, retains a complete ordered diagnostic report, and returns nonzero", async () => {
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const repositoryRoot = await fakeRepository();
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const calls = [];
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const failAt = CHECK_IDS[3];
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const result = await runIntegration({
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repositoryRoot, keep: false, failAt,
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checks: exactScenarios(async (id) => { calls.push(id); return { commands: [], artifacts: [] }; }),
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});
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assert.equal(result.exitCode, 1);
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assert.deepEqual(calls, CHECK_IDS.slice(0, 4));
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assert.equal((await lstat(result.runRoot)).isDirectory(), true);
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const report = JSON.parse(await readFile(join(result.runRoot, "report.json"), "utf8"));
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assert.deepEqual(report.checks.map(({ id }) => id), CHECK_IDS);
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assert.equal(report.checks.filter((check) => check.status === "FAIL").length, CHECK_IDS.length - 3);
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assert.equal(report.checks[3].error, "Acceptance scenario failed safely.");
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assert.equal(report.checks[4].error, "Not executed after earlier failure.");
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});
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test("executeChecks never repeats or executes after first failure but emits the exact check set", async () => {
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const calls = new Map();
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const result = await executeChecks({
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checks: exactScenarios(async (id) => { calls.set(id, (calls.get(id) ?? 0) + 1); return {}; }),
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failAt: CHECK_IDS[1],
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});
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assert.deepEqual(result.map(({ id }) => id), CHECK_IDS);
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assert.deepEqual(Object.fromEntries(calls), Object.fromEntries(CHECK_IDS.slice(0, 2).map((id) => [id, 1])));
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assert.equal(result[1].status, "FAIL");
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assert(result.slice(2).every(({ status, error }) => status === "FAIL" && error === "Not executed after earlier failure."));
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assert.throws(() => validateReport(validReport(CHECK_IDS.slice(0, -1).map(resultFor))));
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await assert.rejects(executeChecks({ checks: exactScenarios().reverse() }));
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});
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test("owned setup failure still writes one safe result for every exact check", async () => {
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const repositoryRoot = await fakeRepository();
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const result = await runIntegration({
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repositoryRoot, keep: false,
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setup: async () => { throw new Error("fixture setup raw failure"); },
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});
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assert.equal(result.exitCode, 1);
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const report = JSON.parse(await readFile(join(result.runRoot, "report.json"), "utf8"));
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assert.deepEqual(report.checks.map(({ id }) => id), CHECK_IDS);
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assert.equal(report.checks[0].error, "Acceptance setup failed safely.");
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assert(report.checks.slice(1).every(({ error }) => error === "Not executed after earlier failure."));
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});
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test("scalar fixture secret files contain no harness-invalid whitespace", () => {
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const bytes = scalarSecretBytes("CANARY-secret-value-123456");
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assert.equal(bytes.toString("utf8"), "CANARY-secret-value-123456");
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assert.equal([...bytes].some((byte) => /\s/.test(String.fromCharCode(byte))), false);
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assert.throws(() => scalarSecretBytes("bad secret"));
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});
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test("secret scanner excludes only the direct fixture-secrets subtree", async () => {
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const repositoryRoot = await fakeRepository();
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const run = await createOwnedRun({ repositoryRoot });
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const canary = "CANARY-secret-value-123456";
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await mkdir(join(run.root, "fixture-secrets"));
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await writeFile(join(run.root, "fixture-secrets", "allowed"), canary);
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const paths = [
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"logs/a.log", "responses/a.json", "rendered/a.yaml", "exports/raw/a.zip",
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"exports/extracted/a.md", "requests/a.json", "report-preview.md", "nested/fixture-secrets/not-excluded",
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];
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for (const path of paths) {
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await mkdir(dirname(join(run.root, path)), { recursive: true });
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await writeFile(join(run.root, path), `prefix ${canary} suffix`);
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}
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const findings = await scanSecrets({ runRoot: run.root, forbiddenValues: [canary] });
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assert.deepEqual(new Set(findings.map((finding) => finding.path)), new Set(paths));
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});
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test("secret scanner examines reachable Git blobs, not just loose file bytes", async () => {
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const repositoryRoot = await fakeRepository();
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const run = await createOwnedRun({ repositoryRoot });
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const canary = "GIT-CANARY-secret-value-987654";
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const gitRoot = join(run.root, "author");
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await mkdir(gitRoot);
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await execFileAsync("git", ["init", "--initial-branch=main"], { cwd: gitRoot });
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await execFileAsync("git", ["config", "user.name", "Scanner Test"], { cwd: gitRoot });
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await execFileAsync("git", ["config", "user.email", "scanner@example.invalid"], { cwd: gitRoot });
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await writeFile(join(gitRoot, "secret.txt"), canary);
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await execFileAsync("git", ["add", "secret.txt"], { cwd: gitRoot });
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await execFileAsync("git", ["commit", "-m", "secret blob"], { cwd: gitRoot });
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await execFileAsync("git", ["rm", "secret.txt"], { cwd: gitRoot });
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await execFileAsync("git", ["commit", "-m", "remove worktree copy"], { cwd: gitRoot });
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const findings = await scanSecrets({ runRoot: run.root, forbiddenValues: [canary] });
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assert.equal(findings.some((finding) => finding.path.startsWith("git-object:")), true);
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});
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test("successful lifecycle honors keep and cleanup", async () => {
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const repositoryRoot = await fakeRepository();
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const checks = exactScenarios();
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const kept = await runIntegration({ repositoryRoot, keep: true, checks });
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assert.equal(kept.exitCode, 0);
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assert.equal((await lstat(kept.runRoot)).isDirectory(), true);
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const cleaned = await runIntegration({ repositoryRoot, keep: false, checks });
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assert.equal(cleaned.exitCode, 0);
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await assert.rejects(lstat(cleaned.runRoot));
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});
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test("command helper accepts only executable plus separate argv", async () => {
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await assert.rejects(runCommand("git status"));
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await assert.rejects(runCommand({ executable: "/bin/echo", argv: "hello" }));
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await assert.rejects(runCommand({ executable: "/bin/echo", argv: [], shell: true }));
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await assert.rejects(runCommand({ executable: "git status; rm -rf /", argv: [] }));
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const repositoryRoot = await fakeRepository();
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const executable = join(repositoryRoot, "executable with spaces");
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await writeFile(executable, "#!/bin/sh\nprintf '%s' \"$1\"\n", { mode: 0o700 });
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await chmod(executable, 0o700);
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const result = await runCommand({ executable, argv: ["literal;not-a-shell"] });
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assert.equal(result.stdout, "literal;not-a-shell");
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assert.equal(result.code, 0);
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});
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test("safe environment rejects ambient THT and keeps only strict process allowlist plus fixture values", () => {
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const safe = buildSafeEnvironment({
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ambient: { PATH: "/safe/bin", HOME: "/home/test", LANG: "C", THT_SECRETS_FILE: "/real/secrets", AWS_SECRET_ACCESS_KEY: "real" },
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fixture: { THT_BIN: "/fixture/tht", THT_WORKSPACE_SECRET_ROOTS: "/fixture/secrets" },
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});
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assert.deepEqual(safe, {
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PATH: "/safe/bin", HOME: "/home/test", LANG: "C",
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THT_BIN: "/fixture/tht", THT_WORKSPACE_SECRET_ROOTS: "/fixture/secrets",
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});
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});
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test("secret scan fails closed when Git enumeration fails", async () => {
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const repositoryRoot = await fakeRepository();
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const run = await createOwnedRun({ repositoryRoot });
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await mkdir(join(run.root, "remote.git"));
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await assert.rejects(scanSecrets({ runRoot: run.root, forbiddenValues: ["CANARY-value-123"] }), /Git secret scan failed closed/);
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});
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test("negative request evidence persists only case label and expected input field", () => {
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const value = negativeRequestEvidence("credential-field", "evidence.source.password");
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assert.deepEqual(value, { case: "credential-field", expectedInputField: "evidence.source.password" });
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assert.equal(JSON.stringify(value).includes("body"), false);
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});
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test("external fetch guard permits only the owned loopback API and records external attempts", async () => {
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const called = [];
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const guard = installExternalFetchGuard("http://127.0.0.1:12345", async (url) => { called.push(String(url)); return { ok: true }; });
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await guard.fetch("http://127.0.0.1:12345/workspaces");
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await assert.rejects(guard.fetch("https://evidence.example.test/guide.md"), /external fetch prohibited/);
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await assert.rejects(guard.fetch("http://127.0.0.1:9999/health"), /external fetch prohibited/);
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assert.deepEqual(called, ["http://127.0.0.1:12345/workspaces"]);
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assert.equal(guard.externalAttempts.length, 2);
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});
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test("export archive evidence path matches the persisted binary request id", () => {
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assert.equal(exportArchiveEvidencePath("export-p1-filesystem"), "exports/raw/export-p1-filesystem.zip");
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});
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test("announce callback observes PASS and manual pending before non-keep cleanup", async () => {
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const repositoryRoot = await fakeRepository();
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let observed;
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const result = await runIntegration({
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repositoryRoot, keep: false, checks: exactScenarios(),
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announce: async ({ report, runRoot }) => {
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observed = { overall: report.overall, manual: "PENDING", rootExists: (await lstat(runRoot)).isDirectory() };
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},
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});
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assert.deepEqual(observed, { overall: "PASS", manual: "PENDING", rootExists: true });
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assert.equal(result.retained, false);
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});
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test("public wrapper replaces ambient environment before invoking the runner", async () => {
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const wrapper = await readFile(join(dirname(fileURLToPath(import.meta.url)), "..", "..", "scripts", "p1-acceptance.sh"), "utf8");
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assert.match(wrapper, /safe_env=\(env -i/);
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assert.match(wrapper, /P1_ACCEPTANCE_FAIL_AT/);
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assert.doesNotMatch(wrapper, /export THT_BIN/);
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});
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