* chore: rename npm package + bin to @opengsd/gsd-core (functional) - package.json: name @opengsd/get-shit-done-redux → @opengsd/gsd-core, bin key get-shit-done-redux → gsd-core, repository/homepage/bugs URLs - package-lock.json: regenerated (npm install --package-lock-only) - tests/**, scripts/**, bin/**, .github/**, agents/**, commands/**, get-shit-done/bin/**, get-shit-done/workflows/**: applied the 4-rule replacement (scoped npm ref, GitHub repo path, bin/clone invocations) per #505 single-source refactor Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com> * docs: sweep live references to @opengsd/gsd-core Update all live documentation (README.md + translations, docs/**, CONTRIBUTING.md, VERSIONING.md, SECURITY.md, CONTEXT.md, docs/CANARY.md) to reflect the renamed package and repository. Rules applied: - @opengsd/get-shit-done-redux → @opengsd/gsd-core (scoped npm name) - open-gsd/get-shit-done-redux → open-gsd/gsd-core (GitHub repo) - GSD-redux/get-shit-done-redux → open-gsd/gsd-core (stale badge org) - bare bin/clone refs → gsd-core CHANGELOG.md, docs/adr/**, docs/RELEASE-*.md, docs/research/**, and .changeset/** are preserved byte-identical. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com> * fix: add negative lookbehind to slash-command regex in bug-2954 test The extractSlashReferences regex matched /gsd-core inside npm package URLs (@opengsd/gsd-core), producing a false /gsd:core command reference. Adding a negative lookbehind (?<![a-z]) excludes matches preceded by a letter, so only standalone /gsd-<cmd> and /gsd:<cmd> tokens are found. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com> * chore(#518): add changeset for package rename Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com> * test(#518): update package-identity expectations to the renamed coordinates The rebase regenerated the seam to @opengsd/gsd-core (bin gsd-core, repo open-gsd/gsd-core). The #498 seam tests assert deriveIdentity against the REAL package.json, so their expected literals must follow the rename. The drift-lint unit test is left as-is — its SEAM is a self-consistent fixture and its stale-literal detection cases would shift if altered; the live-repo scan in it already passes. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.8 <noreply@anthropic.com>
317 lines
12 KiB
JavaScript
317 lines
12 KiB
JavaScript
/**
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* Regression tests for issue #3670: --cursor --local install self-deadlocks
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* on gsd-install-migration.lock.
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*
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* Root cause: On Windows, `fs.rmSync(lockPath, { force: true })` in the lock
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* release closure silently swallows EPERM errors that NTFS returns when a
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* recently-closed file descriptor's handle has not yet been fully released by
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* the OS. The lock file is left on disk. The next `runInstallerMigrations`
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* call in the same install() invocation hits EEXIST, spins for
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* DEFAULT_LOCK_TIMEOUT_MS (30 s), then throws "installer migration lock is
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* held". There is also no stale-PID reclamation: if the lock names the
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* current process's PID, the helper should reclaim rather than spin.
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*
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* Windows wall-clock deadlock repro depends on Docker matrix Windows runners.
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* These tests reproduce the failure modes via mock-injected fs faults on any
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* platform (macOS/Linux/Windows). They fail deterministically WITHOUT the fix
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* and pass WITH it.
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*
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* Test plan:
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* T1 (same-process re-entry / stale-PID reclamation — primary regression)
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* Pre-seed the lock file with {pid: process.pid, ...}. Verify that a
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* runInstallerMigrations call reclaims the lock and succeeds rather than
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* spinning 30 s and throwing.
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*
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* T2 (dead-PID reclamation — cross-invocation stale lock)
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* Pre-seed the lock file with a PID known to be dead. Verify that acquire
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* reclaims rather than throws.
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*
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* T3 (silent rmSync swallow / Windows EPERM simulation)
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* Inject a fault that makes fs.rmSync throw EPERM for the lock file only
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* (simulating Windows NTFS delete-pending). Verify that the lock file IS
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* removed by an alternative path (or that the error propagates) — i.e.
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* verify that the fix does not silently leave the lock on disk.
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*
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* T4 (counter-test: normal single acquire/release round-trip still works)
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* No pre-seeded lock. One runInstallerMigrations call. Must succeed and
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* leave no lock file behind.
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*
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* T5 (counter-test: genuinely-held live lock still surfaces an error)
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* Pre-seed lock with a live PID (process.pid) AND simulate a lock that
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* has been "truly acquired" (fd still open). With lockTimeoutMs: 0 and a
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* truly un-reclaimable lock, must still throw with a useful message naming
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* the holder PID. (This guards against over-reclamation.)
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*
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* @see https://github.com/open-gsd/gsd-core/issues/3670
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*/
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'use strict';
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const { test, mock } = require('node:test');
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const assert = require('node:assert/strict');
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const fs = require('node:fs');
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const os = require('node:os');
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const path = require('node:path');
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const {
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INSTALL_MIGRATION_LOCK_NAME,
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runInstallerMigrations,
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} = require('../get-shit-done/bin/lib/installer-migrations.cjs');
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// ---------------------------------------------------------------------------
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// Helpers
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// ---------------------------------------------------------------------------
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function createTempDir() {
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return fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-3670-'));
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}
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function cleanup(dir) {
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fs.rmSync(dir, { recursive: true, force: true });
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}
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function lockPath(dir) {
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return path.join(dir, INSTALL_MIGRATION_LOCK_NAME);
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}
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function writeLockFile(dir, pid, acquiredAt) {
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fs.mkdirSync(dir, { recursive: true });
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fs.writeFileSync(
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lockPath(dir),
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JSON.stringify({ pid, acquiredAt: acquiredAt || new Date().toISOString() }) + '\n',
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'utf8'
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);
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}
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/**
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* Find a PID that is guaranteed to be dead on this host.
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* We probe a set of high candidate PIDs (far outside the running set) and
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* pick the first one for which process.kill(pid, 0) throws ESRCH.
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* Falls back to 99999 if the probe loop exhausts (extremely unlikely).
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*/
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function findDeadPid() {
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// Avoid process.pid ± small numbers — those could be live siblings.
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for (let candidate = 600000; candidate < 700000; candidate += 1000) {
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try {
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process.kill(candidate, 0);
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// Still alive (or permission denied but exists) — try next
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} catch (err) {
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if (err.code === 'ESRCH') return candidate;
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}
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}
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return 99999; // fallback: extremely unlikely to be a live PID
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}
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// ---------------------------------------------------------------------------
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// T1: Same-process re-entry — stale lock with current process.pid reclaimed
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// ---------------------------------------------------------------------------
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test('T1: reclaims stale lock that names the current process PID (same-process re-entry)', (t) => {
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const configDir = createTempDir();
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t.after(() => cleanup(configDir));
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// Pre-seed lock file with the CURRENT process's PID — exactly what happens
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// on Windows when rmSync swallows EPERM after the first runInstallerMigrations
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// call releases (or fails to release) the lock.
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writeLockFile(configDir, process.pid);
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// Without the fix: this would spin for lockTimeoutMs then throw.
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// With the fix: detects own PID → reclaims → succeeds.
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// lockTimeoutMs: 200 (fail fast so the test doesn't hang for 30 s without fix)
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const result = runInstallerMigrations({
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configDir,
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migrations: [],
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lockTimeoutMs: 200,
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});
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assert.ok(result, 'runInstallerMigrations must return a result object');
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// Lock file must be removed after the call completes.
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assert.equal(
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fs.existsSync(lockPath(configDir)),
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false,
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'lock file must not remain on disk after successful runInstallerMigrations'
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);
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});
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// ---------------------------------------------------------------------------
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// T2: Dead-PID reclamation — cross-invocation stale lock
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// ---------------------------------------------------------------------------
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test('T2: reclaims stale lock whose PID is no longer alive', (t) => {
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const configDir = createTempDir();
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t.after(() => cleanup(configDir));
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const deadPid = findDeadPid();
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writeLockFile(configDir, deadPid);
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const result = runInstallerMigrations({
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configDir,
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migrations: [],
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lockTimeoutMs: 200,
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});
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assert.ok(result, 'runInstallerMigrations must return a result object');
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assert.equal(
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fs.existsSync(lockPath(configDir)),
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false,
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'lock file must not remain on disk after stale-PID reclamation'
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);
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});
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// ---------------------------------------------------------------------------
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// T3: Windows EPERM simulation — unlinkSync failure surfaces (not silently swallowed)
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// ---------------------------------------------------------------------------
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test('T3: lock release does not silently leave lock file on disk when unlink fails (Windows EPERM simulation)', (t) => {
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const configDir = createTempDir();
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const originalUnlinkSync = fs.unlinkSync;
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t.after(() => {
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fs.unlinkSync = originalUnlinkSync;
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cleanup(configDir);
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});
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// The fix uses fs.unlinkSync (not fs.rmSync with { force: true }) in the
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// release closure. Inject EPERM on the lock file to simulate the Windows
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// NTFS condition where the recently-closed handle has not been fully
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// released by the OS.
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//
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// The fix's contract: EPERM must NOT be silently swallowed.
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// Either (a) the error propagates as a releaseError, or (b) some alternative
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// deletion path succeeds. Silent-swallow (no error + file still exists) is
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// the failure condition we guard against.
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let unlinkCallCount = 0;
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fs.unlinkSync = function faultInjectUnlinkSync(targetPath) {
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const isLock = path.basename(String(targetPath)) === INSTALL_MIGRATION_LOCK_NAME;
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if (isLock) {
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unlinkCallCount++;
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// Simulate Windows EPERM (file handle not fully released by OS)
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const err = Object.assign(
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new Error('EPERM: operation not permitted, unlink ' + targetPath),
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{ code: 'EPERM' }
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);
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throw err;
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}
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return originalUnlinkSync.call(fs, targetPath);
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};
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// With the fix: unlinkSync throws EPERM → releaseError is thrown by the
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// release closure → runInstallerMigrations throws releaseError.
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// With the buggy code (rmSync + force:true): EPERM was swallowed silently,
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// no error thrown, lock file left on disk.
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//
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// Assert: if the call succeeds (no throw), the lock file must be gone.
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// If the call throws, the error message must reference the lock.
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let threw = false;
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let thrownError = null;
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try {
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runInstallerMigrations({
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configDir,
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migrations: [],
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lockTimeoutMs: 500,
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});
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} catch (err) {
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threw = true;
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thrownError = err;
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}
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if (threw) {
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// Acceptable: error surfaced. Verify it's lock-related (not a bug elsewhere).
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assert.match(
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thrownError.message,
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/lock/i,
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'thrown error must reference the lock file'
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);
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} else {
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// If no error was thrown, the lock file must have been removed by some
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// alternative path (not left silently on disk).
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assert.equal(
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fs.existsSync(lockPath(configDir)),
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false,
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'if unlinkSync EPERM is encountered but no error thrown, lock file must still be removed'
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);
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}
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// Sanity: the fault injection was actually triggered.
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assert.ok(unlinkCallCount > 0, 'unlinkSync must have been called for the lock file at least once');
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});
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// ---------------------------------------------------------------------------
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// T4: Counter-test — normal single acquire/release round-trip still works
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// ---------------------------------------------------------------------------
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test('T4: normal (non-recursive) runInstallerMigrations acquires and releases lock correctly', (t) => {
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const configDir = createTempDir();
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t.after(() => cleanup(configDir));
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// No pre-seeded lock. Standard happy path.
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const result = runInstallerMigrations({
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configDir,
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migrations: [],
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});
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assert.ok(result, 'runInstallerMigrations must return a result');
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assert.equal(
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fs.existsSync(lockPath(configDir)),
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false,
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'lock file must be cleaned up after normal completion'
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);
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});
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// ---------------------------------------------------------------------------
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// T5: Counter-test — unreclaimable live lock must surface a bounded error
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// ---------------------------------------------------------------------------
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// This test guards against over-reclamation: if the reclaim-unlink fails
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// (e.g. Windows EPERM on a live open handle), the fix must NOT spin
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// indefinitely — it must fall through to the timeout path and throw.
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//
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// Conditions forced by this test:
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// 1. Lock file contains the CURRENT process.pid (triggers isSameProcess branch).
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// 2. fs.unlinkSync is mocked to throw EPERM for the lock file (reclaim fails).
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// 3. lockTimeoutMs: 200 — timeout must fire within a short wall-clock window.
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//
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// Expected outcome: throws with /installer migration lock is held/ within
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// ~200ms. SUCCESS (no throw) is NOT acceptable here — that would mean the fix
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// over-reclaimed a lock that it couldn't actually remove.
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test('T5: unreclaimable same-PID lock throws bounded error (reclaim-unlink failure falls through to timeout)', (t) => {
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const configDir = createTempDir();
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const originalUnlinkSync = fs.unlinkSync;
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t.after(() => {
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mock.restoreAll();
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fs.unlinkSync = originalUnlinkSync;
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cleanup(configDir);
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});
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// Pre-seed lock file with the CURRENT process's PID.
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// This triggers the isSameProcess reclamation path inside acquireInstallerMigrationLock.
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writeLockFile(configDir, process.pid);
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// Mock unlinkSync to throw EPERM for the lock file only.
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// This simulates Windows NTFS refusing to delete a file with an open handle.
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// With the fix: reclaim-unlink fails → reclaimed=false → falls through to
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// the timeout check → throws "installer migration lock is held" after ≤200ms.
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// Without the fix (original code): unlink throws but continue runs anyway →
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// spins indefinitely, never reaches the timeout check → deadlock.
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mock.method(fs, 'unlinkSync', function faultInjectUnlinkSync(targetPath) {
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const isLock = path.basename(String(targetPath)) === INSTALL_MIGRATION_LOCK_NAME;
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if (isLock) {
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const err = Object.assign(
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new Error('EPERM: operation not permitted, unlink ' + targetPath),
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{ code: 'EPERM' }
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);
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throw err;
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}
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return originalUnlinkSync.call(fs, targetPath);
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});
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assert.throws(
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() => runInstallerMigrations({
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configDir,
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migrations: [],
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lockTimeoutMs: 200,
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}),
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(err) => {
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assert.match(err.message, /installer migration lock is held/, 'error must name the held lock');
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return true;
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},
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'must throw "installer migration lock is held" when reclaim-unlink fails — not spin indefinitely'
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);
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});
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