Mechanical rename produced by scripts/msd-rename.cjs: gsd/Gsd/GSD -> msd/Msd/MSD across contents and paths, upstream package/repo coordinates -> @golem15/msd-core and golem15com/msd-core. Deep links into upstream history, sibling upstream packages, the GSD-2 import feature, CHANGELOG.md and .changeset/ are kept as-is. Hand edits on top: MSD block-letter banner and logos, LICENSE copyright line, package/plugin identity, regenerated lockfile, install-tree fixtures, derived registries and benchmark baseline; migration checksum baseline re-locked (MSD keeps its own install state, so no install had applied the old sums); sort-order and regex-escaped expectations in tests adjusted.
262 lines
11 KiB
JavaScript
262 lines
11 KiB
JavaScript
/**
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* MSD Tools Test Helpers – cleanup() behavioral tests
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*
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* Three deterministic, cross-platform tests that verify cleanup()'s
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* observable contract at the seam rather than probing its internals.
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*/
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const { test } = require('node:test');
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const assert = require('node:assert/strict');
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const fs = require('fs');
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const path = require('path');
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const os = require('os');
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const { cleanup, createTempDir, tmpRootCandidates } = require('./helpers.cjs');
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// ─── Test 1: Real-FS happy path ──────────────────────────────────────────────
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test('cleanup removes a real temp dir with nested subdirs and files', () => {
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const dir = createTempDir('msd-cleanup-test-');
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const nested = path.join(dir, 'a', 'b', 'c');
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fs.mkdirSync(nested, { recursive: true });
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fs.writeFileSync(path.join(nested, 'file.txt'), 'hello');
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fs.writeFileSync(path.join(dir, 'root.txt'), 'world');
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cleanup(dir);
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assert.strictEqual(fs.existsSync(dir), false, 'temp dir should not exist after cleanup');
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});
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// ─── Test 2: Retry-budget contract ───────────────────────────────────────────
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test('cleanup passes recursive/force/maxRetries/retryDelay options to fs.rmSync', () => {
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// Use a real temp dir as the target so cleanup() has a valid path argument.
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// We chdir AWAY from it first so cleanup() does not try to chdir either.
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const dir = createTempDir('msd-cleanup-opts-test-');
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// Capture original cwd and shift away from the target.
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const originalCwd = process.cwd();
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// Chdir to the parent of the target so cleanup's cwd-guard is a no-op.
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process.chdir(path.dirname(dir));
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let capturedOptions = null;
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const realRmSync = fs.rmSync;
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try {
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// Replace fs.rmSync with a probe that captures options then does nothing.
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// This is an assignment expression (not a CallExpression) so it satisfies
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// the ESLint rule that bans raw fs.rmSync(...) call expressions in tests.
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fs.rmSync = (targetPath, opts) => {
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capturedOptions = opts;
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// Do NOT call through — we don't want the dir actually removed here;
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// we're only testing the options shape.
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};
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cleanup(dir);
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} finally {
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fs.rmSync = realRmSync;
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process.chdir(originalCwd);
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// Remove the dir with the real rmSync now that we restored it.
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cleanup(dir);
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}
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assert.ok(capturedOptions !== null, 'fs.rmSync should have been called');
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assert.strictEqual(capturedOptions.recursive, true, 'recursive must be true');
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assert.strictEqual(capturedOptions.force, true, 'force must be true');
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assert.ok(
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typeof capturedOptions.maxRetries === 'number' && capturedOptions.maxRetries > 0,
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'maxRetries must be a positive number'
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);
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assert.ok(
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typeof capturedOptions.retryDelay === 'number' && capturedOptions.retryDelay > 0,
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'retryDelay must be a positive number'
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);
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});
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// ─── Test 3: cwd-guard ───────────────────────────────────────────────────────
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test('cleanup does not throw when cwd is inside the target dir, and removes the dir', () => {
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const dir = createTempDir('msd-cleanup-cwd-test-');
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const nested = path.join(dir, 'deep', 'nested');
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fs.mkdirSync(nested, { recursive: true });
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const originalCwd = process.cwd();
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try {
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// Step INTO the nested subdir so cwd is inside the cleanup target.
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process.chdir(nested);
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assert.doesNotThrow(() => {
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cleanup(dir);
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}, 'cleanup should not throw even when cwd is inside the target');
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} finally {
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// Restore original cwd. cleanup() will have chdir'd to dirname(dir),
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// so we always restore explicitly regardless.
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if (process.cwd() !== originalCwd) {
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process.chdir(originalCwd);
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}
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}
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assert.strictEqual(fs.existsSync(dir), false, 'temp dir should not exist after cleanup');
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});
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// ─── Test 4: out-of-tmpdir refusal ───────────────────────────────────────────
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test('cleanup throws and does not chdir or delete when target is outside os.tmpdir()', () => {
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// __dirname (this repo's tests/ directory) must never be deleted. Whether
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// it is actually outside os.tmpdir() is environment-dependent: on Linux
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// os.tmpdir() is /tmp, and a CI container that checks the repo out under
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// /tmp would put __dirname INSIDE tmpdir, in which case a correctly-working
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// cleanup() would not refuse it -- it would delete this directory. The
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// precondition assertion below verifies the "outside tmpdir" assumption
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// before cleanup() is ever called, so that situation fails loudly and
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// safely instead of destructively. No scratch directory is created, so
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// there is nothing to tear down.
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const outsideDir = __dirname;
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const knownFile = path.join(outsideDir, 'helpers-cleanup.test.cjs');
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// Use cleanup()'s own tmpRootCandidates() as the single source of truth
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// for "is this path inside tmpdir" instead of a hand-mirrored predicate.
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// The old copy here checked only path.resolve(os.tmpdir()), one of
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// SEVERAL root spellings cleanup() actually accepts (it also accepts the
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// realpath'd and native-realpath'd forms) — a repo checked out under a
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// root this precondition didn't know about would compute "outside, safe"
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// while cleanup() computed "inside, delete", turning this refusal test
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// into the very destructive scenario it exists to prevent. Importing the
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// real function removes that drift class entirely.
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const resolvedOutsideDir = path.resolve(outsideDir);
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const roots = tmpRootCandidates();
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const isWindows = process.platform === 'win32';
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const outsideDirForCompare = isWindows ? resolvedOutsideDir.toLowerCase() : resolvedOutsideDir;
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const isInsideTmpdir = roots.some((root) => {
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const rootForCompare = isWindows ? root.toLowerCase() : root;
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return (
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outsideDirForCompare === rootForCompare ||
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outsideDirForCompare.startsWith(`${rootForCompare}${path.sep}`)
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);
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});
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assert.strictEqual(
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isInsideTmpdir,
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false,
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`this test cannot run safely when the repo lives under any tmpdir root ` +
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`cleanup() accepts: outsideDir (${resolvedOutsideDir}) is inside one of ${JSON.stringify(roots)}`
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);
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const cwdBefore = process.cwd();
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assert.throws(
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() => cleanup(outsideDir),
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(err) => err instanceof Error && err.message.includes(outsideDir),
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'cleanup must throw an Error whose message names the offending path'
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);
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assert.strictEqual(
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process.cwd(),
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cwdBefore,
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'cleanup must refuse before chdir, so cwd is unchanged'
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);
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assert.strictEqual(fs.existsSync(outsideDir), true, 'target directory must still exist after refusal');
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assert.strictEqual(
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fs.existsSync(knownFile),
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true,
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'a known file inside the target must still exist, proving the dir was not emptied'
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);
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});
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// ─── Test 5: control — a real os.tmpdir()-rooted path still cleans up ───────
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test('cleanup still removes a real os.tmpdir()-rooted directory (control)', () => {
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const dir = fs.mkdtempSync(path.join(os.tmpdir(), 'msd-cleanup-control-'));
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cleanup(dir);
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assert.strictEqual(fs.existsSync(dir), false, 'os.tmpdir()-rooted directory should be removed');
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});
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// ─── Test 6b: accepted-roots set always accepts a freshly-minted tmpdir ─────
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test('cleanup accepts a freshly-created os.tmpdir()-rooted dir on any platform (accepted-roots invariant)', (t) => {
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const dir = fs.mkdtempSync(path.join(os.tmpdir(), 'msd-cleanup-roots-'));
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t.after(() => {
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if (fs.existsSync(dir)) cleanup(dir);
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});
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assert.doesNotThrow(
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() => cleanup(dir),
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'cleanup must accept a directory created directly under os.tmpdir(), regardless of platform-specific canonical spelling (8.3 short/long names, /var symlink, drive-letter case)'
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);
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assert.strictEqual(fs.existsSync(dir), false, 'temp dir should be removed, not refused');
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});
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// ─── Test 6: realpath'd os.tmpdir() form is not refused (regression) ────────
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test('cleanup accepts a realpath()d temp dir even when it differs from the raw path (macOS /var -> /private/var)', (t) => {
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const dir = fs.mkdtempSync(path.join(os.tmpdir(), 'msd-cleanup-realpath-'));
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const realPath = fs.realpathSync(dir);
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if (realPath !== dir) {
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// macOS (and any other symlinked-tmpdir platform): the realpath'd form
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// diverges from the raw mkdtempSync() path. This is exactly the shape a
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// caller gets from fs.realpathSync() or from process.cwd() after
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// chdir-ing into a realpath'd dir — assert the guard does NOT refuse it.
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cleanup(realPath);
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assert.strictEqual(fs.existsSync(realPath), false, 'realpath()d form should be removed, not refused');
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assert.strictEqual(fs.existsSync(dir), false, 'raw path should also be gone (same directory)');
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} else {
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// Linux and any platform with no tmpdir symlink indirection: realpath()
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// equals the raw path, so this branch exercises the ordinary path and
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// keeps the test meaningful (non-vacuous) on both platforms.
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t.after(() => {
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if (fs.existsSync(dir)) cleanup(dir);
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});
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cleanup(dir);
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assert.strictEqual(fs.existsSync(dir), false, 'temp dir should be removed');
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}
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});
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// ─── Test 7: tmpRootCandidates() shape invariants (platform-independent) ────
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//
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// Test 6 above is coverage-identical to Test 5's control on any platform
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// where fs.realpathSync(tmpdir) does not diverge from the raw path (Linux,
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// notably — the platform the remote matrix actually runs on), so it cannot
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// verify the macOS-specific fix there. These assertions hold the exported
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// tmpRootCandidates() to a contract that is meaningful on every platform.
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test('tmpRootCandidates() returns a well-formed, deduplicated list of absolute paths', () => {
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const roots = tmpRootCandidates();
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assert.ok(Array.isArray(roots) && roots.length > 0, 'must return a non-empty array');
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for (const root of roots) {
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assert.strictEqual(path.isAbsolute(root), true, `root must be absolute: ${root}`);
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}
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const isWindows = process.platform === 'win32';
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const keys = roots.map((r) => (isWindows ? r.toLowerCase() : r));
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const uniqueKeys = new Set(keys);
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assert.strictEqual(uniqueKeys.size, keys.length, `roots must be deduplicated: ${JSON.stringify(roots)}`);
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const dir = fs.mkdtempSync(path.join(os.tmpdir(), 'msd-cleanup-roots-contract-'));
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try {
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const resolvedDir = path.resolve(dir);
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const dirForCompare = isWindows ? resolvedDir.toLowerCase() : resolvedDir;
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const isUnderSomeRoot = roots.some((root) => {
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const rootForCompare = isWindows ? root.toLowerCase() : root;
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return (
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dirForCompare === rootForCompare ||
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dirForCompare.startsWith(`${rootForCompare}${path.sep}`)
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);
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});
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assert.strictEqual(
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isUnderSomeRoot,
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true,
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`a freshly mkdtempSync'd dir under os.tmpdir() must be under at least one returned root: ` +
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`${resolvedDir} vs ${JSON.stringify(roots)}`
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);
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} finally {
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cleanup(dir);
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}
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});
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