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* feat(analyze): add incremental watch mode * fix(watch): harden control file reads * fix(watch): contain refresh errors and bound reads * fix(watch): stream strict control file reads * fix(watch): harden refresh recovery and lifecycle * fix(watch): report ignored repository defaults * fix(analyze): preserve signal exit semantics * style(analyze): format signal exit helper * test(config): exercise descriptor growth guard * test(watch): await source event before rename * fix(watch): keep live-index retries honest and ignore analyzer writes Hold retry backoff when events merge, stop only after a live-index mutation, skip .gitnexus self-writes, and reject the remaining one-shot watch flags. Export impact-risk scoring from gitnexus-shared so consumers can share the same scale. Co-authored-by: Cursor <cursoragent@cursor.com> * fix(watch): contain queue edge cases after review Preserve overflow-only refreshes, contain synchronous refresh failures, and mark successful atomic publication before later operations can fail. Co-authored-by: Cursor <cursoragent@cursor.com> --------- Co-authored-by: Gergo Magyar <gergomagyar0@gmail.com> Co-authored-by: Cursor <cursoragent@cursor.com> Co-authored-by: Gergő Magyar <gergomagyar@icloud.com>
133 lines
5.9 KiB
TypeScript
133 lines
5.9 KiB
TypeScript
/**
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* Pins the weight-aware split behind the cross-platform matrix (#2449).
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*
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* The regression this guards is specific and was expensive: three CHEAP files
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* were registered in `SPAWN_CLI`, vitest re-partitioned the list by file COUNT,
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* and the reshuffle clustered `cli-e2e` (now 621 s on Windows) with `cli-limit-e2e`
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* (75 s) and `analyze-heap-oom-e2e` (23 s) on one shard, which then blew the
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* 20-minute watchdog. The added files cost nothing; the COUNT-split did it.
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*
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* So the load-bearing case here is not "the split is even" — it is
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* "adding a cheap file does not move a heavy one". A partition that merely
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* balanced totals could still reshuffle everything on every insertion and would
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* reproduce the outage exactly.
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*/
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import { describe, it, expect } from 'vitest';
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import {
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shardFiles,
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shardWeight,
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weightOf,
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WINDOWS_WEIGHTS_SEC,
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} from '../../scripts/cross-platform-shard.js';
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import { ALL_CROSS_PLATFORM } from '../../scripts/cross-platform-tests.js';
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const SHARD_TOTAL = 3;
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/** Every shard of a split, as file lists. */
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const allShards = (files: readonly string[], total: number): readonly (readonly string[])[] =>
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Array.from({ length: total }, (_unused, i) => shardFiles(files, i + 1, total));
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describe('cross-platform shard partition', () => {
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it('covers every file exactly once, with no overlap between shards', () => {
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const shards = allShards(ALL_CROSS_PLATFORM, SHARD_TOTAL);
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const seen = shards.flatMap((s) => [...s]);
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expect(seen.slice().sort()).toEqual([...ALL_CROSS_PLATFORM].sort());
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expect(new Set(seen).size).toBe(ALL_CROSS_PLATFORM.length);
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});
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it('keeps each shard within a shard of the ideal weight', () => {
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const shards = allShards(ALL_CROSS_PLATFORM, SHARD_TOTAL);
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const weights = shards.map(shardWeight);
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const ideal = shardWeight(ALL_CROSS_PLATFORM) / SHARD_TOTAL;
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// LPT's guarantee is 4/3 of optimal, and optimal is at least the ideal
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// average. A hard 1.34x ceiling on the busiest shard is what keeps the
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// matrix inside its watchdog no matter how the list is edited.
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expect(Math.max(...weights)).toBeLessThanOrEqual(ideal * 1.34);
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});
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it('never puts the two heaviest suites on the same shard', () => {
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// The exact shape of the outage: cli-e2e and worker-pool are 621 s and
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// 222 s, so together they are most of a shard's budget before anything else
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// is scheduled.
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const shards = allShards(ALL_CROSS_PLATFORM, SHARD_TOTAL);
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const withBoth = shards.filter(
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(s) =>
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s.includes('test/integration/cli-e2e.test.ts') &&
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s.includes('test/integration/worker-pool.test.ts'),
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);
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expect(withBoth).toEqual([]);
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});
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it('does not move a heavy file when a cheap file is added — the #2449 regression', () => {
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const heavy = Object.keys(WINDOWS_WEIGHTS_SEC);
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const placementOf = (files: readonly string[]): ReadonlyMap<string, number> => {
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const shards = allShards(files, SHARD_TOTAL);
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return new Map(
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heavy
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.map((f) => [f, shards.findIndex((s) => s.includes(f))] as const)
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.filter(([, i]) => i >= 0),
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);
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};
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const before = placementOf(ALL_CROSS_PLATFORM);
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// The inserted names sort EARLY, and there is a case that is NOT a multiple
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// of the shard count. Both details are load-bearing, and getting them wrong
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// made earlier versions of this test vacuous:
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// - names that sort last cannot disturb anything under any scheme;
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// - adding exactly `total` files leaves an equal-weight round-robin in the
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// same rotation, so a count-split would pass too.
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// Under the real weighted split, heavy files are scheduled before every
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// light one, so no number of cheap insertions can move them.
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const afterOne = placementOf([...ALL_CROSS_PLATFORM, 'test/aaa-new-cheap-a.test.ts']);
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const afterTwo = placementOf([
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...ALL_CROSS_PLATFORM,
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'test/aaa-new-cheap-a.test.ts',
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'test/aaa-new-cheap-b.test.ts',
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]);
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expect(Object.fromEntries(afterOne)).toMatchObject(Object.fromEntries(before));
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expect(Object.fromEntries(afterTwo)).toMatchObject(Object.fromEntries(before));
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});
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it('is deterministic, so every runner computes the same split independently', () => {
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// Each matrix job resolves its own slice on its own machine with no shared
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// state, so an unstable sort would silently drop or duplicate files.
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const once = allShards(ALL_CROSS_PLATFORM, SHARD_TOTAL).map((s) => [...s]);
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const twice = allShards([...ALL_CROSS_PLATFORM].reverse(), SHARD_TOTAL).map((s) =>
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[...s].sort(),
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);
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expect(twice).toEqual(once.map((s) => [...s].sort()));
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});
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it('returns every file for a single-shard run, and rejects an out-of-range shard', () => {
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expect(shardFiles(ALL_CROSS_PLATFORM, 1, 1)).toEqual([...ALL_CROSS_PLATFORM]);
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expect(() => shardFiles(ALL_CROSS_PLATFORM, 0, 3)).toThrow(/shard index/);
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expect(() => shardFiles(ALL_CROSS_PLATFORM, 4, 3)).toThrow(/shard index/);
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expect(() => shardFiles(ALL_CROSS_PLATFORM, 1, 0)).toThrow(/shard total/);
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});
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it('charges every file the per-file floor, so light files are never free', () => {
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// Without this, the balancer isolates the monsters and then piles all the
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// light files onto the remaining shards — a count imbalance that costs just
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// as much wall clock as the runtime one it just fixed.
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expect(weightOf('test/unit/zzz-does-not-exist.test.ts')).toBeGreaterThan(0);
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expect(weightOf('test/integration/cli-e2e.test.ts')).toBeGreaterThan(
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WINDOWS_WEIGHTS_SEC['test/integration/cli-e2e.test.ts'] ?? 0,
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);
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});
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it('weights only files that are actually registered', () => {
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// A weight entry for a file no longer in the list is dead config that the
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// balancer silently ignores; catching it here keeps the table honest.
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const registered = new Set(ALL_CROSS_PLATFORM);
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const stale = Object.keys(WINDOWS_WEIGHTS_SEC).filter((f) => !registered.has(f));
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expect(stale).toEqual([]);
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});
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});
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