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* fix(browse): prepare reliable cookie import wave for validation * ci: sequence quality and behavior for validation branch * fix(browse): isolate Windows qualification and preserve native diagnostics * test(browse): cover cookie workflow quality and isolate Windows user paths * test(browse): trace native member startup and initialize fresh folders * fix(browse): keep Windows member stdin alive through EOF * fix(browse): latch native timeouts and compare contained Edge startup * test(browse): verify native version metadata and actual Windows argv * test(browse): qualify Dia import on isolated macOS CI * fix(browse): require picker origin for session mutations * fix(browse): bound credential reads through stream completion * test(browse): inspect owned Windows process arguments natively * test(evals): preserve passing coverage during cookie repair reruns * test(browse): isolate Dia qualification in a fresh macOS account * test(browse): pass bounded integer timeouts to native Mac probes * test(browse): distinguish Windows profile initialization from containment * test(browse): await descendant pipe readiness before parent exit * test(browse): initialize and restore isolated macOS Keychain state * test(browse): initialize Windows fixture folders before qualification * test(ci): pin the same Node runtime across Windows checks * test(browse): distinguish native macOS browser preflight stages * test(browse): isolate Windows descendant console lifetime * test(browse): preserve native receipts and identify fixture lock holders * test(browse): prepare dependency resolution before native Mac worker startup * test(ci): include lock and close checks in native diagnostics * test(browse): preserve native owner probe stages and subprocess deadlines * fix(browse): classify Chromium profile-in-use exit precisely * test(browse): retain Mac qualification evidence through cleanup failures * test(browse): bound Mac fixture paths and retire its owned user domain * test(browse): accept vanished fixture entries without weakening cleanup * test(browse): identify probe-created macOS user domains safely * test(browse): observe Mac user domains without targeting them first * test(browse): use passive fresh-user ownership throughout Mac qualification * test(browse): distinguish profile and registered-home Keychain lookups * test(browse): qualify Dia under one registered account home * test(browse): identify Dia startup and owned process-group failures * test(browse): classify bounded Dia startup diagnostics without leaking output * fix(test): preserve native Mac sandboxing and reap owned browser children * fix(browse): preserve Chromium sandboxing for native profile imports * test(browse): inspect signed Mach-O architecture without launching Xcode tools * test(browse): sample pending Dia startup and reap on all cleanup paths * test(browse): compare protected Dia launches in fresh Bun and Node accounts * test(browse): inspect isolated Mac GUI readiness without browser access * v1.90.0.0 fix: bind cookie picker actions to their document * test: validate cookie guards and fit nested launch fixtures * ci: configure the bundled Chromium sandbox helper * fix(browse): classify Playwright authentication timeouts * test: retain bounded Windows lifecycle diagnostics * test(cso): reuse bounded NTFS precision candidates * test(review): handle explicit preservation choices safely * test(browse): remove owned fixture directories with explicit primitives * test(review): distinguish descriptive reuse from edit commitments * test: admit only the approved unscored cookie workflow refusal * test: keep the Office Hours judge mock export-complete * fix: keep dependency-free CI planners independent of the model SDK * test: observe the exact holder after a native fixture unlink failure * fix: start seeded PTY observations at owned readiness * test: acquire identity-bound Windows deletion admission before profile resets * test: preserve qualified Git index bits without authorizing mutations
79 lines
3.4 KiB
TypeScript
79 lines
3.4 KiB
TypeScript
import { afterEach, expect, test } from 'bun:test';
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import * as fs from 'node:fs';
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import * as os from 'node:os';
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import * as path from 'node:path';
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import { createPrecisionLossCandidate } from './helpers/cso-ntfs-fixture';
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const roots: string[] = [];
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afterEach(() => {
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for (const root of roots.splice(0)) fs.rmSync(root, { recursive: true, force: true });
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});
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function fixture() {
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const root = fs.mkdtempSync(path.join(os.tmpdir(), 'ntfs-fixture-'));
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roots.push(root);
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return { root, target: path.join(root, 'candidate.json') };
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}
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test('the actual candidate builder reaches a precision-losing generation in a fresh allocator model', () => {
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const { root, target } = fixture();
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const generations = new Map<number, bigint>();
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let reads = 0;
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let selectedIdentity: bigint | undefined;
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const inode = createPrecisionLossCandidate(target, 'owned candidate', file => {
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reads++;
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const slot = Number(path.basename(file).split('-').at(-1));
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const generation = (generations.get(slot) ?? 0n) + 1n;
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generations.set(slot, generation);
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const result = (generation << 48n) + BigInt(101 + slot);
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if (result > BigInt(Number.MAX_SAFE_INTEGER) && String(Number(result)) !== String(result)) {
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selectedIdentity = fs.lstatSync(file, { bigint: true }).ino;
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}
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return result;
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});
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expect(inode).toBeGreaterThan(BigInt(Number.MAX_SAFE_INTEGER));
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expect(String(Number(inode))).not.toBe(String(inode));
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expect(reads).toBeLessThanOrEqual(1024);
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expect(fs.lstatSync(target, { bigint: true }).ino).toBe(selectedIdentity);
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expect(fs.readFileSync(target, 'utf8')).toBe('owned candidate');
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expect(fs.readdirSync(root)).toEqual(['candidate.json']);
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});
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test('an unavailable precision-losing ID fails at the original creation bound and leaves no candidate', () => {
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const { root, target } = fixture();
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for (const inode of [1n, 2n ** 54n]) {
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let reads = 0;
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expect(() => createPrecisionLossCandidate(target, 'owned candidate', () => { reads++; return inode; }))
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.toThrow('within 1024 file creations');
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expect(reads).toBe(1024);
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expect(fs.readdirSync(root)).toEqual([]);
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}
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});
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test('existing targets and candidate-inspection failures never overwrite unrelated fixture state', () => {
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const { root, target } = fixture();
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fs.writeFileSync(target, 'preserved');
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expect(() => createPrecisionLossCandidate(target, 'replacement')).toThrow('already exists');
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expect(fs.readFileSync(target, 'utf8')).toBe('preserved');
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const next = path.join(root, 'next.json');
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expect(() => createPrecisionLossCandidate(next, 'owned candidate', () => { throw new Error('inspection failed'); }))
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.toThrow('inspection failed');
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expect(fs.readdirSync(root)).toEqual(['candidate.json']);
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});
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test('a concurrent target and a linked parent are preserved rather than written through', () => {
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const { root, target } = fixture();
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expect(() => createPrecisionLossCandidate(target, 'replacement', () => {
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fs.writeFileSync(target, 'concurrent fixture');
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return (1n << 54n) + 1n;
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})).toThrow();
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expect(fs.readFileSync(target, 'utf8')).toBe('concurrent fixture');
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const owned = path.join(root, 'owned');
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const link = path.join(root, 'linked');
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fs.mkdirSync(owned);
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fs.symlinkSync(owned, link, process.platform === 'win32' ? 'junction' : 'dir');
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expect(() => createPrecisionLossCandidate(path.join(link, 'candidate.json'), 'replacement'))
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.toThrow('must not be linked');
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expect(fs.readdirSync(owned)).toEqual([]);
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});
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