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- /**
- * WAL checkpoint deferral during bulk indexing (#1231).
- *
- * The default 1000-page wal_autocheckpoint re-writes hot pages into the main
- * DB over and over during a bulk index (~95% of all disk I/O on slow
- * storage). indexAll defers auto-checkpointing for the whole run, a
- * WalCheckpointValve bounds WAL growth via off-thread PASSIVE checkpoints,
- * and the interval is restored afterwards. These tests pin the DB helpers,
- * the valve's trigger/dedupe/backpressure logic, and the end-to-end indexAll
- * behavior (identical graph with and without deferral; interval restored).
- */
- import { describe, it, expect, beforeEach, afterEach } from 'vitest';
- import * as fs from 'fs';
- import * as os from 'os';
- import * as path from 'path';
- import { DatabaseConnection } from '../src/db';
- import { WalCheckpointValve, resolveWalValveMb } from '../src/db/wal-valve';
- import CodeGraph from '../src/index';
- let tmpDir: string;
- beforeEach(() => {
- tmpDir = fs.mkdtempSync(path.join(os.tmpdir(), 'cg-wal-deferral-'));
- });
- afterEach(() => {
- fs.rmSync(tmpDir, { recursive: true, force: true });
- });
- function openDb(): DatabaseConnection {
- return DatabaseConnection.initialize(path.join(tmpDir, 'test.db'));
- }
- /** Grow the WAL: with autocheckpoint off, every commit appends and nothing folds back. */
- function writeRows(db: DatabaseConnection, rows: number): void {
- const raw = db.getDb();
- raw.exec('CREATE TABLE IF NOT EXISTS t (id INTEGER PRIMARY KEY, blob TEXT)');
- const stmt = raw.prepare('INSERT INTO t (blob) VALUES (?)');
- for (let i = 0; i < rows; i++) stmt.run('x'.repeat(4096));
- }
- describe('resolveWalValveMb', () => {
- it('honors a positive numeric override and falls back otherwise', () => {
- expect(resolveWalValveMb('64')).toBe(64);
- expect(resolveWalValveMb('64.9')).toBe(64);
- expect(resolveWalValveMb(undefined)).toBe(256);
- expect(resolveWalValveMb('')).toBe(256);
- expect(resolveWalValveMb('abc')).toBe(256);
- expect(resolveWalValveMb('0')).toBe(256);
- expect(resolveWalValveMb('-5')).toBe(256);
- });
- });
- describe('DatabaseConnection WAL helpers', () => {
- it('reads and writes the wal_autocheckpoint interval', () => {
- const db = openDb();
- expect(db.getWalAutocheckpoint()).toBe(1000); // SQLite default
- db.setWalAutocheckpoint(0);
- expect(db.getWalAutocheckpoint()).toBe(0);
- db.setWalAutocheckpoint(1000);
- expect(db.getWalAutocheckpoint()).toBe(1000);
- db.close();
- });
- it('reports WAL size that grows with deferred commits', () => {
- const db = openDb();
- db.setWalAutocheckpoint(0);
- const before = db.getWalSizeBytes();
- writeRows(db, 200);
- expect(db.getWalSizeBytes()).toBeGreaterThan(before);
- db.close();
- });
- it('checkpointWalPassive backfills the WAL from a worker connection and reports the result', async () => {
- const db = openDb();
- db.setWalAutocheckpoint(0);
- writeRows(db, 500);
- const dbFile = path.join(tmpDir, 'test.db');
- const mainSizeBefore = fs.statSync(dbFile).size;
- const res = await db.checkpointWalPassive();
- // Backfill moves the committed pages into the main DB file…
- expect(fs.statSync(dbFile).size).toBeGreaterThan(mainSizeBefore);
- // …and reports a full backfill (idle DB: every WAL frame checkpointed).
- expect(res).not.toBeNull();
- expect(res!.busy).toBe(0);
- expect(res!.log).toBeGreaterThan(0);
- expect(res!.checkpointed).toBe(res!.log);
- db.close();
- });
- });
- describe('WalCheckpointValve', () => {
- it('check() fires an off-thread checkpoint once growth passes the soft threshold', async () => {
- const db = openDb();
- db.setWalAutocheckpoint(0);
- writeRows(db, 500); // WAL well past a ~10-byte threshold
- const valve = new WalCheckpointValve(db, 0.00001); // ~10 bytes soft
- const dbFile = path.join(tmpDir, 'test.db');
- const mainSizeBefore = fs.statSync(dbFile).size;
- valve.check();
- await valve.drain();
- expect(fs.statSync(dbFile).size).toBeGreaterThan(mainSizeBefore);
- db.close();
- });
- it('advances its baseline on a full backfill — no infinite retrigger (at most one truncate park)', async () => {
- // Pre-§7a.1 contract was "a wrapped WAL never retriggers"; the file-size
- // trigger deliberately weakens that to "retriggers AT MOST once more, to
- // truncate the file, then goes quiet" — the pre-fix bug this test pinned
- // (firing on raw size forever, serializing every store) stays dead: a
- // successful truncate zeroes the file, so the trigger cannot loop. At
- // this test's pathological 10-BYTE soft cap, byte-level residue can trip
- // the 4×-soft file cap once; product-scale caps are 256MB/1GB.
- const db = openDb();
- db.setWalAutocheckpoint(0);
- writeRows(db, 500);
- const valve = new WalCheckpointValve(db, 0.00001);
- valve.check();
- await valve.drain(); // full backfill (and possibly a timer truncate)
- const first = valve.backpressure();
- if (first) await first; // one truncate park allowed — file must be 0 after
- expect(db.getWalSizeBytes()).toBe(0);
- expect(valve.backpressure()).toBeNull(); // and now: quiet
- valve.check();
- await valve.drain();
- expect(valve.backpressure()).toBeNull();
- db.close();
- });
- it('does not fire below the soft threshold', async () => {
- const db = openDb();
- db.setWalAutocheckpoint(0);
- writeRows(db, 5);
- const valve = new WalCheckpointValve(db, 1024); // 1GB soft — never reached
- const dbFile = path.join(tmpDir, 'test.db');
- const mainSizeBefore = fs.statSync(dbFile).size;
- valve.check();
- await valve.drain();
- expect(fs.statSync(dbFile).size).toBe(mainSizeBefore);
- db.close();
- });
- it('backpressure() is null under the hard cap and a promise above it', async () => {
- const db = openDb();
- db.setWalAutocheckpoint(0);
- writeRows(db, 500);
- const relaxed = new WalCheckpointValve(db, 1024);
- expect(relaxed.backpressure()).toBeNull();
- const strict = new WalCheckpointValve(db, 0.0000001); // hard cap ~0.4 bytes
- const bp = strict.backpressure();
- expect(bp).toBeInstanceOf(Promise);
- await bp;
- await strict.drain();
- db.close();
- });
- it('foldNow() backfills everything at a phase boundary and resets growth', async () => {
- const db = openDb();
- db.setWalAutocheckpoint(0);
- writeRows(db, 500);
- const valve = new WalCheckpointValve(db, 1024); // thresholds never reached on their own
- const dbFile = path.join(tmpDir, 'test.db');
- const mainSizeBefore = fs.statSync(dbFile).size;
- await valve.foldNow();
- expect(fs.statSync(dbFile).size).toBeGreaterThan(mainSizeBefore); // pages backfilled
- expect(valve.backpressure()).toBeNull(); // baseline advanced — growth is zero
- await valve.foldNow(); // second fold is a no-op (growth 0), must not spin
- db.close();
- });
- it('dedupes concurrent fires into one in-flight checkpoint', () => {
- const db = openDb();
- db.setWalAutocheckpoint(0);
- writeRows(db, 500);
- const valve = new WalCheckpointValve(db, 0.00001);
- valve.check();
- const first = valve.backpressure();
- const second = valve.backpressure();
- expect(second).toBe(first); // same in-flight promise, not a second worker
- db.close();
- return first ?? undefined;
- });
- });
- function writeFixtureProject(): void {
- fs.mkdirSync(path.join(tmpDir, 'src'), { recursive: true });
- for (let i = 0; i < 8; i++) {
- fs.writeFileSync(
- path.join(tmpDir, 'src', `mod${i}.ts`),
- `export function fn${i}(x: number): number { return helper${i}(x) + ${i}; }\n` +
- `function helper${i}(x: number): number { return x * ${i}; }\n`
- );
- }
- }
- describe('indexAll WAL deferral end-to-end', () => {
- it('produces the same graph with and without deferral, and restores the interval', async () => {
- writeFixtureProject();
- const cg1 = CodeGraph.initSync(tmpDir);
- const r1 = await cg1.indexAll();
- expect(r1.success).toBe(true);
- // Deferral is scoped to the run: the connection is back on the default.
- const conn1 = (cg1 as unknown as { db: DatabaseConnection }).db;
- expect(conn1.getWalAutocheckpoint()).toBe(1000);
- const counts1 = { nodes: r1.nodesCreated, edges: r1.edgesCreated };
- await cg1.close();
- fs.rmSync(path.join(tmpDir, '.codegraph'), { recursive: true, force: true });
- process.env.CODEGRAPH_NO_WAL_DEFER = '1';
- try {
- const cg2 = CodeGraph.initSync(tmpDir);
- const r2 = await cg2.indexAll();
- expect(r2.success).toBe(true);
- expect({ nodes: r2.nodesCreated, edges: r2.edgesCreated }).toEqual(counts1);
- await cg2.close();
- } finally {
- delete process.env.CODEGRAPH_NO_WAL_DEFER;
- }
- });
- });
- describe('sync WAL deferral end-to-end (#1248)', () => {
- // The #1242 fix originally landed only on indexAll; sync stayed at the
- // default 1000-page autocheckpoint and reproduced the #1231 HDD thrash on
- // every incremental run (2 minutes for a 7-file sync). These pin that sync
- // defers during the run, restores after — success AND no-change paths —
- // and that a deferred sync produces the same graph as an undeferred one.
- it('defers the autocheckpoint interval DURING sync and restores it after', async () => {
- writeFixtureProject();
- const cg = CodeGraph.initSync(tmpDir);
- await cg.indexAll();
- const conn = (cg as unknown as { db: DatabaseConnection }).db;
- fs.writeFileSync(
- path.join(tmpDir, 'src', 'mod0.ts'),
- `export function fn0(x: number): number { return helper0(x) + 100; }\n` +
- `function helper0(x: number): number { return x * 100; }\n`
- );
- // Sample the interval mid-run from inside the progress callback — the
- // store loop is exactly where the #1248 thrash happened.
- const midRunIntervals: number[] = [];
- const result = await cg.sync({
- onProgress: () => {
- try { midRunIntervals.push(conn.getWalAutocheckpoint()); } catch { /* ignore */ }
- },
- });
- expect(result.filesModified).toBe(1);
- expect(midRunIntervals.length).toBeGreaterThan(0);
- expect(midRunIntervals.every((v) => v === 0)).toBe(true);
- // Scoped to the run: back on the default afterwards.
- expect(conn.getWalAutocheckpoint()).toBe(1000);
- await cg.close();
- });
- it('restores the interval on a no-change sync too', async () => {
- writeFixtureProject();
- const cg = CodeGraph.initSync(tmpDir);
- await cg.indexAll();
- const conn = (cg as unknown as { db: DatabaseConnection }).db;
- const result = await cg.sync();
- expect(result.filesAdded + result.filesModified + result.filesRemoved).toBe(0);
- expect(conn.getWalAutocheckpoint()).toBe(1000);
- await cg.close();
- });
- it('produces the same sync result with and without deferral', async () => {
- writeFixtureProject();
- const cg1 = CodeGraph.initSync(tmpDir);
- await cg1.indexAll();
- fs.writeFileSync(
- path.join(tmpDir, 'src', 'mod1.ts'),
- `export function fn1(x: number): number { return helper1(x) + 111; }\n` +
- `function helper1(x: number): number { return x * 111; }\n`
- );
- const r1 = await cg1.sync();
- const counts1 = { modified: r1.filesModified, nodes: r1.nodesUpdated };
- await cg1.close();
- fs.rmSync(path.join(tmpDir, '.codegraph'), { recursive: true, force: true });
- process.env.CODEGRAPH_NO_WAL_DEFER = '1';
- try {
- const cg2 = CodeGraph.initSync(tmpDir);
- await cg2.indexAll();
- fs.writeFileSync(
- path.join(tmpDir, 'src', 'mod1.ts'),
- `export function fn1(x: number): number { return helper1(x) + 222; }\n` +
- `function helper1(x: number): number { return x * 222; }\n`
- );
- const r2 = await cg2.sync();
- expect({ modified: r2.filesModified, nodes: r2.nodesUpdated }).toEqual(counts1);
- await cg2.close();
- } finally {
- delete process.env.CODEGRAPH_NO_WAL_DEFER;
- }
- });
- });
- describe('resolution-phase WAL backpressure plumbing (§7a.1)', () => {
- // The valve's timer-driven passive checkpoints stay perpetually partial
- // against the resolver pool's continuous reads, so during resolution the
- // writer-side backpressure() hook is the ONLY mechanism that can complete
- // a backfill and let the WAL wrap — a kernel-scale run without it grew a
- // 22GB WAL on a 4.6GB DB. These pin that the batch loop (a) calls the hook
- // at the pool-idle boundary and (b) actually parks on a returned promise.
- async function seedPendingRefs(cg: CodeGraph): Promise<void> {
- const raw = (cg as unknown as { db: DatabaseConnection }).db.getDb();
- const node = raw.prepare("SELECT id, file_path FROM nodes WHERE kind = 'function' LIMIT 1").get() as
- | { id: string; file_path: string }
- | undefined;
- expect(node).toBeDefined();
- const ins = raw.prepare(
- "INSERT INTO unresolved_refs (from_node_id, reference_name, reference_kind, line, col, file_path, language, status) VALUES (?, ?, 'calls', 1, 0, ?, 'typescript', 'pending')"
- );
- ins.run(node!.id, 'helper0', node!.file_path);
- ins.run(node!.id, 'helper1', node!.file_path);
- }
- it('calls the backpressure hook once per settled batch', async () => {
- writeFixtureProject();
- const cg = CodeGraph.initSync(tmpDir);
- await cg.indexAll();
- await seedPendingRefs(cg);
- let calls = 0;
- const result = await cg.resolveReferencesBatched(undefined, undefined, () => {
- calls++;
- return null; // under the hard cap — loop must proceed without waiting
- });
- expect(result.stats.total).toBeGreaterThan(0);
- expect(calls).toBeGreaterThanOrEqual(1);
- await cg.close();
- });
- it('parks the batch loop on a backpressure promise until it resolves', async () => {
- writeFixtureProject();
- const cg = CodeGraph.initSync(tmpDir);
- await cg.indexAll();
- await seedPendingRefs(cg);
- let release!: () => void;
- const gate = new Promise<void>((r) => { release = r; });
- let hookHit = false;
- const done = cg
- .resolveReferencesBatched(undefined, undefined, () => {
- if (hookHit) return null; // park only on the first boundary
- hookHit = true;
- return gate;
- })
- .then(() => true);
- // Give the loop ample turns: it must reach the hook and then be parked.
- for (let i = 0; i < 50; i++) await new Promise((r) => setImmediate(r));
- expect(hookHit).toBe(true);
- const settledEarly = await Promise.race([done, Promise.resolve(false)]);
- expect(settledEarly).toBe(false); // still parked on the gate
- release();
- expect(await done).toBe(true);
- await cg.close();
- });
- });
- describe('checkpointWalTruncate (§7a.1 file containment)', () => {
- it('chops a fully-backfilled WAL file to zero', async () => {
- const db = openDb();
- db.setWalAutocheckpoint(0);
- writeRows(db, 400);
- expect(db.getWalSizeBytes()).toBeGreaterThan(1024 * 1024);
- const res = await db.checkpointWalTruncate();
- expect(res).not.toBeNull();
- expect(res!.busy).toBe(0);
- expect(db.getWalSizeBytes()).toBe(0); // the file itself, not just the backlog
- db.close();
- });
- });
- describe('valve file-size trigger (§7a.1: backfilled WAL still grows the file)', () => {
- it('backpressure trips on file size alone once past the file cap, even with zero backlog', async () => {
- const db = openDb();
- db.setWalAutocheckpoint(0);
- // Grow the file well past a 0.5MB soft cap (file cap = 4× = 2MB), then
- // fold the backlog completely so growth-vs-baseline is ~zero.
- writeRows(db, 800);
- const valve = new WalCheckpointValve(db, 0.5);
- await valve.foldNow(); // baseline := file size; backlog now 0; file unchanged
- expect(db.getWalSizeBytes()).toBe(0); // foldNow's success path truncates at the barrier
- db.close();
- });
- it('a fully-backfilled but oversized file is chopped at the barrier', async () => {
- const db = openDb();
- db.setWalAutocheckpoint(0);
- writeRows(db, 800);
- const before = db.getWalSizeBytes();
- expect(before).toBeGreaterThan(2 * 1024 * 1024);
- const valve = new WalCheckpointValve(db, 0.5);
- const bp = valve.backpressure(); // growth past hard cap → parks
- expect(bp).not.toBeNull();
- await bp;
- expect(db.getWalSizeBytes()).toBe(0); // truncated at the parked barrier
- // And the file-size trigger alone re-arms it after regrowth:
- writeRows(db, 800);
- await valve.foldNow();
- writeRows(db, 100); // small backlog, file grows again but under hard cap
- const sizeTrigger = valve.backpressure();
- // 100 rows ≈ <1MB backlog (under 1MB hard cap) but file is past the 2MB cap
- expect(sizeTrigger).not.toBeNull();
- await sizeTrigger;
- expect(db.getWalSizeBytes()).toBe(0);
- db.close();
- });
- });
- describe('resolveWalValveMb DB-size scaling (§7a.2 fold-tax reduction)', () => {
- it('scales soft cap ~dbSize/4 within [256, 2048]MB; env always wins', () => {
- const GB = 1024 * 1024 * 1024;
- expect(resolveWalValveMb(undefined, 100 * 1024 * 1024)).toBe(256); // floor
- expect(resolveWalValveMb(undefined, 4.6 * GB)).toBe(1177); // ~dbSize/4
- expect(resolveWalValveMb(undefined, 40 * GB)).toBe(2048); // ceiling
- expect(resolveWalValveMb('64', 40 * GB)).toBe(64); // env override wins
- expect(resolveWalValveMb(undefined, 0)).toBe(256); // unknown size → default
- });
- });
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