* fix(prompt-hook): fire the structural gate for Latin-script, Cyrillic, and JA/KO prompts (#1126) The prompt-hook's keyword gate only knew English and simplified-Chinese keywords, so a structural question in French (or Spanish, German, Italian, Portuguese, Russian, Japanese, Korean, traditional Chinese) silently no-op'd unless it happened to contain an identifier-shaped code token — the #994 symptom, resurfaced for every other language. Root causes fixed: - JS \b is ASCII-only: a keyword whose first/last char is accented or non-Latin (où, qué, Cyrillic, kana) can never match \bkeyword\b — the same mechanism behind #994. Keyword matching now uses Unicode lookaround boundaries ((?<![\p{L}\p{N}_]) … (?![\p{L}\p{N}_])). - Bare-stem English entries never matched their own derived forms (\barchitect\b can't match "architecture", \bdepend\b can't match "dependencies"). Stems are now matched as word prefixes (leading boundary only), which also lets one shared stem cover the Romance/ Germanic spellings that coincide. - The "CJK" set was simplified-Chinese-only: Japanese (呼び出し, 仕組み, 実装 — and 追跡 ≠ 追踪), Korean, and traditional-Chinese terms are now in the unsegmented substring set. Code-token extraction and the graph-verification path are unchanged; non-structural prose stays a zero-cost no-op in every language. Fixes #1126 Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(prompt-hook): extend the gate to tier-2 languages (VI/TR/ID/PL/UA/NL/CS/RO/HU/EL/Nordics/FI/HI/AR/FA/HE/TH) The first pass covered the 10 largest languages; this closes the rest of the major-developer-population set (~29 total). Notable per-language mechanics the curation had to respect: - Agglutinative languages (Turkish, Finnish, Hungarian) need stems, not exact words — suffixes attach to everything (akışı, riippuu, működik). - Indonesian me-/di-/ber- prefixes block leading-boundary stems, so affixed forms are listed explicitly (memanggil, dipanggil, berfungsi). - Arabic/Farsi/Hebrew are spaced but proclitics attach to the word (وكيف = and-how), so they join the substring class with Thai. - Ukrainian і/и spellings diverge from Russian (архітектур ≠ архитектур). - Excluded terms that collide with English or code words: NL "pad", SV "var", CS "tok", Catalan "com" (matches every .com domain) — with regression tests pinning the exclusions. Vietnamese was the sharpest gap: spaced Latin with heavy diacritics — exactly the ASCII-\b failure class #1126 reports. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> --------- Co-authored-by: Claude Fable 5 <noreply@anthropic.com>
298 lines
17 KiB
TypeScript
298 lines
17 KiB
TypeScript
/**
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* Front-load hook project resolution (#964).
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*
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* The Claude `UserPromptSubmit` front-load hook must inject CodeGraph context
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* for the RIGHT project — including the monorepo case where the agent's cwd is
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* an un-indexed workspace root and the index lives in a sub-project. These test
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* `planFrontload` / `findIndexedSubprojectRoots` directly (the hook's decision
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* logic), since the end-to-end hook is validated by a live agent run, not a
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* unit test.
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*/
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import { describe, it, expect, beforeEach, afterEach } from 'vitest';
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import * as fs from 'fs';
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import * as os from 'os';
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import * as path from 'path';
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import { planFrontload, findIndexedSubprojectRoots, isStructuralPrompt, hasStructuralKeyword, extractCodeTokens } from '../src/directory';
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/** Make `dir` look indexed (isInitialized needs `.codegraph/codegraph.db`). */
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function mkIndexed(dir: string): string {
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fs.mkdirSync(path.join(dir, '.codegraph'), { recursive: true });
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fs.writeFileSync(path.join(dir, '.codegraph', 'codegraph.db'), '');
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return dir;
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}
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/** A workspace-root manifest so the down-scan gate (looksLikeProjectRoot) passes. */
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function mkWorkspaceRoot(dir: string): string {
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fs.mkdirSync(dir, { recursive: true });
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fs.writeFileSync(path.join(dir, 'package.json'), '{"private":true,"workspaces":["packages/*"]}');
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return dir;
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}
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describe('planFrontload — front-load hook project resolution (#964)', () => {
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let tmp: string;
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beforeEach(() => { tmp = fs.realpathSync(fs.mkdtempSync(path.join(os.tmpdir(), 'cg-frontload-'))); });
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afterEach(() => { fs.rmSync(tmp, { recursive: true, force: true }); });
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it('cwd is itself indexed → front-load cwd (the common single-project case)', () => {
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mkIndexed(tmp);
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const plan = planFrontload(tmp, 'how does login work');
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expect(plan.exploreRoot).toBe(tmp);
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expect(plan.viaSubScan).toBe(false);
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expect(plan.nudgeProjects).toEqual([]);
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});
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it('a nested file under an indexed project resolves up to that project', () => {
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mkIndexed(tmp);
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const nested = path.join(tmp, 'src', 'deep');
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fs.mkdirSync(nested, { recursive: true });
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expect(planFrontload(nested, 'trace the flow').exploreRoot).toBe(tmp);
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});
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it('un-indexed workspace root with ONE indexed sub-project → front-load it (the #964 case)', () => {
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mkWorkspaceRoot(tmp);
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const api = mkIndexed(path.join(tmp, 'packages', 'api'));
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const plan = planFrontload(tmp, 'how does the request get handled');
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expect(plan.exploreRoot).toBe(api);
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expect(plan.viaSubScan).toBe(true);
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expect(plan.nudgeProjects).toEqual([]);
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});
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it('multiple indexed sub-projects, prompt names one by path → front-load it, nudge the rest', () => {
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mkWorkspaceRoot(tmp);
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const api = mkIndexed(path.join(tmp, 'packages', 'api'));
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const web = mkIndexed(path.join(tmp, 'packages', 'web'));
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const plan = planFrontload(tmp, 'in packages/api, how does the handler validate the token?');
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expect(plan.exploreRoot).toBe(api);
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expect(plan.viaSubScan).toBe(true);
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expect(plan.nudgeProjects).toEqual([web]);
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});
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it('multiple indexed sub-projects, prompt names one by package name → front-load it', () => {
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mkWorkspaceRoot(tmp);
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mkIndexed(path.join(tmp, 'packages', 'api'));
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const web = mkIndexed(path.join(tmp, 'packages', 'web'));
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const plan = planFrontload(tmp, 'how does the web frontend render the dashboard?');
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expect(plan.exploreRoot).toBe(web);
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});
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it('multiple indexed sub-projects, NO clear match → nudge the full list, do not guess', () => {
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mkWorkspaceRoot(tmp);
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const api = mkIndexed(path.join(tmp, 'packages', 'api'));
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const web = mkIndexed(path.join(tmp, 'packages', 'web'));
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const plan = planFrontload(tmp, 'how does authentication work end to end?');
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expect(plan.exploreRoot).toBeNull();
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expect(plan.viaSubScan).toBe(true);
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expect(plan.nudgeProjects.sort()).toEqual([api, web].sort());
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});
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it('un-indexed dir that is NOT a workspace root → no-op (guards $HOME-style crawls)', () => {
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// Indexed project exists below, but cwd has no manifest, so the down-scan is skipped.
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mkIndexed(path.join(tmp, 'some', 'project'));
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const plan = planFrontload(tmp, 'how does it work');
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expect(plan.exploreRoot).toBeNull();
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expect(plan.nudgeProjects).toEqual([]);
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});
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it('nothing indexed anywhere → no-op', () => {
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mkWorkspaceRoot(tmp);
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fs.mkdirSync(path.join(tmp, 'packages', 'api'), { recursive: true });
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const plan = planFrontload(tmp, 'how does it work');
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expect(plan.exploreRoot).toBeNull();
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expect(plan.nudgeProjects).toEqual([]);
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});
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});
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describe('findIndexedSubprojectRoots', () => {
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let tmp: string;
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beforeEach(() => { tmp = fs.realpathSync(fs.mkdtempSync(path.join(os.tmpdir(), 'cg-subscan-'))); });
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afterEach(() => { fs.rmSync(tmp, { recursive: true, force: true }); });
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it('finds indexed projects a couple levels down and skips node_modules/.git', () => {
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mkIndexed(path.join(tmp, 'packages', 'api'));
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mkIndexed(path.join(tmp, 'services', 'auth'));
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// Decoys that must NOT be scanned into.
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mkIndexed(path.join(tmp, 'node_modules', 'dep'));
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mkIndexed(path.join(tmp, '.git', 'x'));
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const found = findIndexedSubprojectRoots(tmp).map((p) => path.relative(tmp, p)).sort();
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expect(found).toEqual([path.join('packages', 'api'), path.join('services', 'auth')].sort());
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});
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it('does not descend INTO an indexed project (a project\'s sub-dirs are not separate projects)', () => {
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const api = mkIndexed(path.join(tmp, 'packages', 'api'));
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mkIndexed(path.join(api, 'submodule')); // nested index under an already-indexed project
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const found = findIndexedSubprojectRoots(tmp);
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expect(found).toEqual([api]);
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});
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it('respects the depth bound', () => {
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mkIndexed(path.join(tmp, 'a', 'b', 'c', 'd', 'e', 'deep'));
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expect(findIndexedSubprojectRoots(tmp, { maxDepth: 2 })).toEqual([]);
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});
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});
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describe('hasStructuralKeyword — keyword signal fires the hook directly (#994)', () => {
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it('English keywords match with word boundaries so "flow" ≠ "flower"', () => {
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expect(hasStructuralKeyword('how does article publish work')).toBe(true);
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expect(hasStructuralKeyword('where is the token validated')).toBe(true);
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expect(hasStructuralKeyword('trace the request flow')).toBe(true);
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expect(hasStructuralKeyword('what calls parseToken')).toBe(true);
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expect(hasStructuralKeyword('water the flower')).toBe(false); // "flow" in "flower"
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});
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it('Chinese keywords match WITHOUT `\\b` — the #994 fix (were silently dropped)', () => {
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expect(hasStructuralKeyword('介绍文章发布流程')).toBe(true); // introduce / flow
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expect(hasStructuralKeyword('登录是如何实现的')).toBe(true); // how / implement
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expect(hasStructuralKeyword('这个函数的调用链')).toBe(true); // call (chain)
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expect(hasStructuralKeyword('支付模块依赖哪些服务')).toBe(true); // depend
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expect(hasStructuralKeyword('修复这个拼写错误')).toBe(false); // "fix this typo"
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});
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it('a bare code-token is NOT a keyword — it needs graph verification', () => {
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expect(hasStructuralKeyword('看看 get_user 这段逻辑')).toBe(false);
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expect(hasStructuralKeyword('I really love JavaScript')).toBe(false);
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});
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});
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describe('hasStructuralKeyword — Latin-script languages, Cyrillic, JA/KO (#1126)', () => {
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it('French structural prompts fire — including the prompts from the report', () => {
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expect(hasStructuralKeyword('comment marche la state machine des commandes ?')).toBe(true);
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expect(hasStructuralKeyword("explique l'architecture du module de stock")).toBe(true);
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expect(hasStructuralKeyword('qui appelle cette fonction de parsing ?')).toBe(true);
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expect(hasStructuralKeyword('de quoi dépend le module de paiement ?')).toBe(true);
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});
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it('accented keyword edges match — ASCII `\\b` could never bound "où"', () => {
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expect(hasStructuralKeyword('où est validé le token ?')).toBe(true);
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expect(hasStructuralKeyword("d'où vient cette valeur ?")).toBe(true);
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});
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it('Spanish / Portuguese / German / Italian fire', () => {
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expect(hasStructuralKeyword('¿cómo funciona la máquina de estados de pedidos?')).toBe(true);
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expect(hasStructuralKeyword('¿qué rompe este cambio?')).toBe(true);
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expect(hasStructuralKeyword('como funciona a máquina de estados dos pedidos?')).toBe(true);
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expect(hasStructuralKeyword('qual é a arquitetura do módulo de estoque?')).toBe(true);
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expect(hasStructuralKeyword('wie funktioniert die Zustandsmaschine für Bestellungen?')).toBe(true);
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expect(hasStructuralKeyword('wovon hängt das Zahlungsmodul ab?')).toBe(true);
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expect(hasStructuralKeyword('come funziona la macchina a stati degli ordini?')).toBe(true);
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expect(hasStructuralKeyword('spiegami la struttura del modulo ordini')).toBe(true);
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});
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it('Russian / Japanese / Korean / traditional Chinese fire', () => {
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expect(hasStructuralKeyword('как работает конечный автомат заказов?')).toBe(true);
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expect(hasStructuralKeyword('от чего зависит модуль оплаты?')).toBe(true);
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expect(hasStructuralKeyword('注文のステートマシンの仕組みを説明して')).toBe(true);
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expect(hasStructuralKeyword('この関数の呼び出しの流れは?')).toBe(true);
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expect(hasStructuralKeyword('주문 상태 머신은 어떻게 작동하나요?')).toBe(true);
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expect(hasStructuralKeyword('訂單狀態機的架構是怎麼實現的?')).toBe(true);
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});
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it('English derived forms fire — "architecture"/"dependencies" failed the old exact-word list', () => {
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expect(hasStructuralKeyword('explain the architecture of the stock module')).toBe(true);
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expect(hasStructuralKeyword('what are the dependencies of the parser?')).toBe(true);
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});
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it('second-tier languages fire — VI/TR/ID/PL/UA/NL/CS/RO/HU/EL/SV/NO/FI/HI', () => {
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expect(hasStructuralKeyword('state machine của đơn hàng hoạt động thế nào?')).toBe(true); // Vietnamese
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expect(hasStructuralKeyword('sipariş durum makinesi nasıl çalışıyor?')).toBe(true); // Turkish
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expect(hasStructuralKeyword('bu fonksiyonun bağımlılıkları neler?')).toBe(true); // Turkish (stem)
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expect(hasStructuralKeyword('bagaimana cara kerja mesin status pesanan?')).toBe(true); // Indonesian
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expect(hasStructuralKeyword('jak działa maszyna stanów zamówień?')).toBe(true); // Polish
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expect(hasStructuralKeyword('co wywołuje tę funkcję?')).toBe(true); // Polish (stem)
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expect(hasStructuralKeyword('як працює кінцевий автомат замовлень?')).toBe(true); // Ukrainian
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expect(hasStructuralKeyword('від чого залежить модуль оплати?')).toBe(true); // Ukrainian (stem)
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expect(hasStructuralKeyword('hoe werkt de state machine van bestellingen?')).toBe(true); // Dutch
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expect(hasStructuralKeyword('jak funguje stavový automat objednávek?')).toBe(true); // Czech
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expect(hasStructuralKeyword('cum funcționează mașina de stări a comenzilor?')).toBe(true); // Romanian
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expect(hasStructuralKeyword('hogyan működik a rendelések állapotgépe?')).toBe(true); // Hungarian
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expect(hasStructuralKeyword('πώς λειτουργεί η μηχανή καταστάσεων παραγγελιών;')).toBe(true); // Greek
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expect(hasStructuralKeyword('hur fungerar orderns tillståndsmaskin?')).toBe(true); // Swedish
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expect(hasStructuralKeyword('hvordan fungerer ordrenes tilstandsmaskin?')).toBe(true); // Norwegian/Danish
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expect(hasStructuralKeyword('miten tilausten tilakone toimii?')).toBe(true); // Finnish
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expect(hasStructuralKeyword('ऑर्डर स्टेट मशीन कैसे काम करती है?')).toBe(true); // Hindi
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});
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it('RTL scripts and Thai fire — proclitics/unsegmented text uses substring matching', () => {
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expect(hasStructuralKeyword('كيف تعمل آلة حالات الطلبات؟')).toBe(true); // Arabic
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expect(hasStructuralKeyword('وكيف يعتمد هذا على قاعدة البيانات؟')).toBe(true); // Arabic, proclitic و attached
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expect(hasStructuralKeyword('ماشین وضعیت سفارشها چگونه کار میکند؟')).toBe(true); // Farsi
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expect(hasStructuralKeyword('איך עובדת מכונת המצבים של ההזמנות?')).toBe(true); // Hebrew
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expect(hasStructuralKeyword('สถาปัตยกรรมของระบบทำงานอย่างไร')).toBe(true); // Thai
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});
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it('terms that collide with English or code words are deliberately excluded', () => {
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expect(hasStructuralKeyword('pad the buffer with zeros')).toBe(false); // NL pad=path skipped
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expect(hasStructuralKeyword('declare a var for the count')).toBe(false); // SV var=where skipped
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expect(hasStructuralKeyword('refresh the token')).toBe(false); // CS tok=flow skipped
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expect(hasStructuralKeyword('run the llama model locally')).toBe(false); // ES bare llama skipped
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expect(hasStructuralKeyword('come back to this later')).toBe(false); // IT bare come skipped
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});
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it('stems match only at word start — no mid-word false positives', () => {
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expect(hasStructuralKeyword('restructure this paragraph')).toBe(false); // "structur" mid-word
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expect(hasStructuralKeyword('an independent module')).toBe(false); // "depend" mid-word
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expect(hasStructuralKeyword('water the flower')).toBe(false); // unchanged guarantee
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});
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it('non-structural prose stays a no-op in every covered language', () => {
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expect(hasStructuralKeyword('corrige cette faute de frappe')).toBe(false); // FR "fix this typo"
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expect(hasStructuralKeyword('arregla este error tipográfico')).toBe(false); // ES
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expect(hasStructuralKeyword('behebe diesen Tippfehler')).toBe(false); // DE
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expect(hasStructuralKeyword('исправь эту опечатку')).toBe(false); // RU
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expect(hasStructuralKeyword('このタイプミスを直して')).toBe(false); // JA
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expect(hasStructuralKeyword('이 오타를 수정해줘')).toBe(false); // KO
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expect(hasStructuralKeyword('sửa lỗi chính tả này')).toBe(false); // VI
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expect(hasStructuralKeyword('bu yazım hatasını düzelt')).toBe(false); // TR
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expect(hasStructuralKeyword('popraw tę literówkę')).toBe(false); // PL
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expect(hasStructuralKeyword('صحح هذا الخطأ الإملائي')).toBe(false); // AR
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});
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});
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describe('extractCodeTokens — candidate symbols the hook verifies against the graph', () => {
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it('pulls camelCase / PascalCase / snake_case / call / member tokens', () => {
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expect(extractCodeTokens('prepareArticlePublish 的调用链')).toContain('prepareArticlePublish');
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expect(extractCodeTokens('看看 get_user 这段逻辑')).toContain('get_user'); // snake_case
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expect(extractCodeTokens('render() 在哪触发')).toContain('render'); // call form
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expect(extractCodeTokens('user.login 做了什么').sort()).toEqual(['login', 'user']); // member access
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expect(extractCodeTokens('看看 UserService')).toContain('UserService'); // PascalCase class kept
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});
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it('a tech brand is extracted as a CANDIDATE — the hook’s graph check is what rejects it', () => {
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// This is the #994 follow-up: "JavaScript" is identifier-shaped, so it surfaces
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// here as a candidate; the hook only fires if it's a real symbol in the index.
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expect(extractCodeTokens('I really love JavaScript')).toEqual(['JavaScript']);
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expect(extractCodeTokens('thoughts on GitHub vs GitLab').sort()).toEqual(['GitHub', 'GitLab']);
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});
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it('ordinary prose and doc/data filenames yield no tokens', () => {
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expect(extractCodeTokens('fix typo in readme')).toEqual([]);
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expect(extractCodeTokens('fix the typo in README.md')).toEqual([]); // doc filename excluded
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expect(extractCodeTokens('bump the version in package.json')).toEqual([]);
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expect(extractCodeTokens('water the flower')).toEqual([]);
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});
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});
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describe('isStructuralPrompt — cheap candidate gate (keyword OR code-token)', () => {
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it('fires on a keyword prompt in any language', () => {
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expect(isStructuralPrompt('how does article publish work')).toBe(true);
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expect(isStructuralPrompt('介绍文章发布流程')).toBe(true);
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});
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it('fires on a code-token prompt with no keyword', () => {
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expect(isStructuralPrompt('看看 get_user 这段逻辑')).toBe(true);
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expect(isStructuralPrompt('where is prepareArticlePublish 定义')).toBe(true);
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expect(isStructuralPrompt('user.login 做了什么')).toBe(true);
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});
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it('a tech brand passes the CHEAP gate as a candidate — the hook then graph-verifies it', () => {
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// Layering, not a bug: isStructuralPrompt is shape-only, so a token-shaped brand
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// is a candidate here; the hook rejects it as a non-symbol (proven by the CLI e2e).
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expect(isStructuralPrompt('I really love JavaScript')).toBe(true);
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});
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it('non-structural prose stays a no-op — in either language', () => {
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expect(isStructuralPrompt('fix typo in readme')).toBe(false);
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expect(isStructuralPrompt('修复这个拼写错误')).toBe(false);
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expect(isStructuralPrompt('water the flower')).toBe(false);
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expect(isStructuralPrompt('')).toBe(false);
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});
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});
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