Files
codegraph/__tests__/symbol-lookup.test.ts
T
aed046e5c6 fix: stop silent fuzzy symbol substitution (#1473) (#1809)
Adapt @uvmplus's PR #1481 (3ecf7479) to the shared symbol lookup and
named-symbol flow resolver on current main. Missing names return not found
with suggestions, and exact matches with no callers stay empty.

Preserve #1512 definition grouping and --file narrowing, #173 qualified
misses, and codegraph_node's intentional fuzzy file lookup. Port the
upstream regression suite and cover the moved shared lookup paths.

Validation on Linux with Node 22: project build, 74 requested tests,
47 related flow tests, and 16 same-fixture CLI/MCP checks pass. Baseline
captured 12 failing tests and 13 failing fixture checks.

Fixes #1473.
Supersedes #1481.

Co-authored-by: Colby McHenry <colbymchenry@users.noreply.github.com>
2026-09-08 19:40:48 -05:00

426 lines
17 KiB
TypeScript

/**
* Module-qualified symbol lookup (`stage_apply::run`, `Session.request`,
* `configurator/stage_apply`).
*
* Pinned because the lookup vocabulary is what makes codegraph useful
* in workspaces with same-named symbols across modules — Rust
* sub-pipelines, Python `__init__.py` packages, Java packages, etc.
* See #173 for the original report: a `run` function in
* `src/configurator/stage_apply.rs` was indexed but `stage_apply::run`
* returned "not found" because (a) FTS strips colons to nothing,
* leaving a useless query, and (b) `matchesSymbol` only understood
* `.`-style qualifiers.
*/
import { describe, it, expect, beforeAll, beforeEach, afterEach } from 'vitest';
import * as fs from 'fs';
import * as path from 'path';
import * as os from 'os';
import { initGrammars, loadAllGrammars } from '../src/extraction/grammars';
import { matchesSymbol, lookupSymbolNodes, isQualifiedSymbol } from '../src/graph/symbol-lookup';
import type { Node } from '../src/types';
beforeAll(async () => {
await initGrammars();
await loadAllGrammars();
});
function hasSqliteBindings(): boolean {
try {
const { DatabaseSync } = require('node:sqlite');
const db = new DatabaseSync(':memory:');
db.close();
return true;
} catch {
return false;
}
}
const HAS_SQLITE = hasSqliteBindings();
function tmpRoot(): string {
return fs.mkdtempSync(path.join(os.tmpdir(), 'codegraph-symbol-lookup-'));
}
function rmTree(dir: string): void {
if (fs.existsSync(dir)) fs.rmSync(dir, { recursive: true, force: true });
}
async function buildRustWorkspace(): Promise<string> {
const root = tmpRoot();
const cfgDir = path.join(root, 'src', 'configurator');
fs.mkdirSync(cfgDir, { recursive: true });
fs.writeFileSync(
path.join(root, 'Cargo.toml'),
`[package]\nname = "fixture"\nversion = "0.1.0"\nedition = "2021"\n[lib]\npath = "src/lib.rs"\n`
);
fs.writeFileSync(path.join(root, 'src', 'lib.rs'), `pub mod configurator;\npub mod scheduler;\n`);
fs.writeFileSync(
path.join(cfgDir, 'mod.rs'),
`pub mod stage_apply;\npub mod stage_detect;\n`
);
fs.writeFileSync(
path.join(cfgDir, 'stage_apply.rs'),
`pub async fn run() -> Result<(), ()> {\n render_and_write();\n Ok(())\n}\n\nfn render_and_write() {}\n`
);
fs.writeFileSync(
path.join(cfgDir, 'stage_detect.rs'),
`pub async fn run() -> Result<(), ()> { Ok(()) }\n`
);
fs.writeFileSync(
path.join(root, 'src', 'scheduler.rs'),
`pub fn run_due_tasks() -> Result<(), ()> { Ok(()) }\n`
);
return root;
}
describe.skipIf(!HAS_SQLITE)('matchesSymbol — module-qualified lookups (#173)', () => {
let projectRoot: string;
let cg: any;
let handler: any;
// findSymbolMatches returns ALL ranked matches; [0] is the resolved/picked one.
let findSymbolMatches: (cg: any, s: string) => any[];
let findAllSymbols: (cg: any, s: string) => { nodes: any[]; note: string };
beforeEach(async () => {
projectRoot = await buildRustWorkspace();
const CodeGraph = (await import('../src/index')).default;
const { ToolHandler } = await import('../src/mcp/tools');
cg = CodeGraph.initSync(projectRoot, {
config: { include: ['**/*.rs'], exclude: [] },
});
await cg.indexAll();
handler = new ToolHandler(cg);
findSymbolMatches = (handler as any).findSymbolMatches.bind(handler);
findAllSymbols = (handler as any).findAllSymbols.bind(handler);
});
afterEach(() => {
handler?.closeAll();
cg?.destroy();
rmTree(projectRoot);
});
it('resolves `stage_apply::run` to the run in stage_apply.rs (not stage_detect.rs)', () => {
const matches = findSymbolMatches(cg, 'stage_apply::run');
expect(matches.length).toBeGreaterThan(0);
expect(matches[0]!.name).toBe('run');
// Every match must be in stage_apply.rs — never stage_detect.rs.
for (const n of matches) expect(n.filePath).toMatch(/configurator\/stage_apply\.rs$/);
});
it('rejects `stage_apply::run` for the same-named function in a different module', () => {
const all = findAllSymbols(cg, 'stage_apply::run');
// All returned nodes must be in stage_apply.rs — never in stage_detect.rs
for (const node of all.nodes) {
expect(node.filePath).toMatch(/stage_apply\.rs$/);
}
expect(all.nodes.length).toBeGreaterThan(0);
});
it('resolves `configurator::stage_apply::run` (multi-level qualifier)', () => {
const matches = findSymbolMatches(cg, 'configurator::stage_apply::run');
expect(matches.length).toBeGreaterThan(0);
expect(matches[0]!.name).toBe('run');
expect(matches[0]!.filePath).toMatch(/configurator\/stage_apply\.rs$/);
});
it('resolves `crate::configurator::stage_apply::run` (Rust path prefix stripped)', () => {
const matches = findSymbolMatches(cg, 'crate::configurator::stage_apply::run');
expect(matches.length).toBeGreaterThan(0);
expect(matches[0]!.filePath).toMatch(/configurator\/stage_apply\.rs$/);
});
it('resolves `configurator/stage_apply` (slash qualifier)', () => {
const matches = findSymbolMatches(cg, 'configurator/stage_apply/run');
expect(matches.length).toBeGreaterThan(0);
expect(matches[0]!.filePath).toMatch(/configurator\/stage_apply\.rs$/);
});
it('does not silently collide bare `run` with `run_due_tasks`', () => {
const matches = findSymbolMatches(cg, 'run');
expect(matches.length).toBeGreaterThan(0);
// Whatever it picks, every match must be an exact-name match, not a partial.
for (const n of matches) expect(n.name).toBe('run');
});
it('aggregates all bare-name `run` matches across modules', () => {
const all = findAllSymbols(cg, 'run');
const names = all.nodes.map((n: any) => n.name);
expect(names.every((n: string) => n === 'run')).toBe(true);
expect(all.nodes.length).toBeGreaterThanOrEqual(2); // stage_apply + stage_detect
// The note should call out the ambiguity.
expect(all.note).toMatch(/Aggregated|symbols named "run"/);
});
it('still returns nothing for genuinely unknown qualified lookups', () => {
const matches = findSymbolMatches(cg, 'stage_apply::nonexistent_fn');
expect(matches.length).toBe(0);
});
it('findAllSymbols rejects a fuzzy-only bare prefix with a suggestion (#1473)', () => {
expect(cg.getNodesByName('run_due')).toEqual([]);
expect(cg.searchNodes('run_due').length).toBeGreaterThan(0);
const all = findAllSymbols(cg, 'run_due');
expect(all.nodes).toEqual([]);
expect(all.note).toMatch(/Did you mean:.*run_due_tasks/);
});
it('findAllSymbols rejects an unknown qualifier even when the bare tail exists (#173)', () => {
expect(cg.getNodesByName('run').length).toBeGreaterThan(0);
expect(findAllSymbols(cg, 'missing::run').nodes).toEqual([]);
});
it('preserves codegraph_node file-basename lookup (#1473)', () => {
expect(cg.getNodesByName('stage_apply')).toEqual([]);
const matches = findSymbolMatches(cg, 'stage_apply');
expect(matches.length).toBeGreaterThan(0);
expect(matches[0]!.filePath).toMatch(/configurator\/stage_apply\.rs$/);
});
it('codegraph_node with a `file` hint pins an overloaded name to that file', async () => {
// `run` is defined in BOTH stage_apply.rs and stage_detect.rs. A bare lookup
// returns both; the `file` hint narrows to the one the caller saw in a trail.
const res = await handler.execute('codegraph_node', {
symbol: 'run',
includeCode: true,
file: 'stage_detect.rs',
});
const text = res.content?.[0]?.text ?? '';
expect(text).toMatch(/stage_detect\.rs/);
expect(text).not.toMatch(/stage_apply\.rs/);
});
});
describe.skipIf(!HAS_SQLITE)('matchesSymbol — dotted lookups (regression for #173 fix)', () => {
let projectRoot: string;
let cg: any;
let handler: any;
let findSymbolMatches: (cg: any, s: string) => any[];
beforeEach(async () => {
projectRoot = tmpRoot();
const src = path.join(projectRoot, 'src');
fs.mkdirSync(src, { recursive: true });
fs.writeFileSync(
path.join(src, 'session.ts'),
`export class Session {\n request(): void { fetch('x'); }\n}\nexport function request(): void {}\n`
);
const CodeGraph = (await import('../src/index')).default;
const { ToolHandler } = await import('../src/mcp/tools');
cg = CodeGraph.initSync(projectRoot, {
config: { include: ['src/**/*.ts'], exclude: [] },
});
await cg.indexAll();
handler = new ToolHandler(cg);
findSymbolMatches = (handler as any).findSymbolMatches.bind(handler);
});
afterEach(() => {
handler?.closeAll();
cg?.destroy();
rmTree(projectRoot);
});
it('`Session.request` resolves to the method, not the bare function', () => {
const matches = findSymbolMatches(cg, 'Session.request');
expect(matches.length).toBeGreaterThan(0);
expect(matches[0]!.kind).toBe('method');
expect(matches[0]!.qualifiedName).toContain('Session::request');
});
it('codegraph_node on an ambiguous bare name returns ALL overloads with bodies (no guess)', async () => {
// `request` is BOTH a method (Session.request) and a free function. The old
// behavior returned one + a dead-end "Others:" note, forcing a Read to get
// the other overload; now both bodies come back in one call.
const res = await handler.execute('codegraph_node', { symbol: 'request', includeCode: true });
const text = res.content?.[0]?.text ?? '';
expect(text).toContain('2 definitions named "request"');
// Both definitions are rendered (method + function), each with a Location.
expect(text).toMatch(/\(method\)/);
expect(text).toMatch(/\(function\)/);
expect((text.match(/\*\*Location:\*\*/g) || []).length).toBeGreaterThanOrEqual(2);
});
});
/**
* One resolution path for every verb that takes a symbol NAME.
*
* `callers` / `callees` / `impact` used to carry their own filter, comparing
* the query against the BARE name only:
*
* node.name === symbol || node.name.endsWith('.' + symbol)
*
* which fails in two opposite directions at once. A bare name matched every
* same-named symbol in the repository and their results were merged under one
* heading with nothing saying they were different symbols; a qualified name
* could never equal a bare `node.name`, so every candidate failed the filter
* and the code fell through to an arbitrary top-of-FTS hit — or reported "not
* found" for a symbol that plainly exists. Both now go through
* `lookupSymbolNodes`.
*/
function fakeNode(over: Partial<Node>): Node {
return {
id: 'n1', kind: 'function', name: 'group', qualifiedName: 'group',
filePath: 'lib/format.ex', language: 'typescript',
startLine: 1, endLine: 2, startColumn: 0, endColumn: 0, updatedAt: 0,
...over,
} as Node;
}
describe('matchesSymbol — containers whose own name contains a separator', () => {
// Splitting on EVERY separator assumes no scope component contains one. That
// is false for any language whose module names are themselves dotted, and
// there the stored qualifiedName (`A.B::c`) can never equal the split-and-
// rejoined query spelling (`A::B::c`) — so a perfectly precise qualified
// query resolved to nothing.
const node = fakeNode({ name: 'group', qualifiedName: 'AppWeb.Format::group' });
it('matches a dotted module qualifier written with dots', () => {
expect(matchesSymbol(node, 'AppWeb.Format.group')).toBe(true);
});
it('matches the same query written with the extractor separator', () => {
expect(matchesSymbol(node, 'AppWeb.Format::group')).toBe(true);
});
it('matches a partial container suffix on a separator boundary', () => {
expect(matchesSymbol(node, 'Format.group')).toBe(true);
});
it('does not match a container that merely shares a suffix substring', () => {
// `ebFormat.group` is not a boundary-aligned suffix of `AppWeb.Format.group`.
expect(matchesSymbol(node, 'ebFormat.group')).toBe(false);
});
it('does not match a different container', () => {
expect(matchesSymbol(node, 'Other.Format.group')).toBe(false);
});
it('still requires the last part to be the node name', () => {
expect(matchesSymbol(node, 'AppWeb.Format.other')).toBe(false);
});
it('classifies bare vs qualified queries', () => {
expect(isQualifiedSymbol('group')).toBe(false);
expect(isQualifiedSymbol('A.B.group')).toBe(true);
expect(isQualifiedSymbol('A::group')).toBe(true);
expect(isQualifiedSymbol('a/b')).toBe(true);
});
});
describe.skipIf(!HAS_SQLITE)('lookupSymbolNodes — the shared path used by callers/callees/impact', () => {
let projectRoot: string;
let cg: any;
beforeEach(async () => {
projectRoot = tmpRoot();
const client = path.join(projectRoot, 'client');
const pkg = path.join(projectRoot, 'pkg', 'fmtutil');
fs.mkdirSync(client, { recursive: true });
fs.mkdirSync(pkg, { recursive: true });
// The SAME short name defined in two languages — the collision profile of a
// polyglot repository, where the colliding identifiers are the common ones.
fs.writeFileSync(
path.join(client, 'chart.ts'),
`export function group(rows: number[][]): number[][] { return rows; }\n`
);
fs.writeFileSync(
path.join(client, 'Editor.tsx'),
`import { group } from './chart';\nexport function Editor(r: number[][]) { return group(r); }\n`
);
fs.writeFileSync(
path.join(pkg, 'format.py'),
`def group(items, size):\n return items\n`
);
fs.writeFileSync(
path.join(projectRoot, 'pkg', 'planner.py'),
`from pkg.fmtutil.format import group\n\ndef plan_a(items): return group(items, 3)\ndef plan_b(items): return group(items, 5)\n`
);
const CodeGraph = (await import('../src/index')).default;
cg = CodeGraph.initSync(projectRoot, {
config: { include: ['**/*.ts', '**/*.tsx', '**/*.py'], exclude: [] },
});
await cg.indexAll();
});
afterEach(() => {
cg?.destroy();
rmTree(projectRoot);
});
it('a bare name resolves to EVERY definition and reports the ambiguity', () => {
const { nodes, ambiguous } = lookupSymbolNodes(cg, 'group');
const defs = nodes.filter((n) => n.kind === 'function');
expect(defs.length).toBe(2);
expect(new Set(defs.map((n) => n.language))).toEqual(new Set(['typescript', 'python']));
// The flag is what stops an aggregate being presented as one symbol's answer.
expect(ambiguous).toBe(true);
});
it('a qualified name selects one definition and is no longer ambiguous', () => {
const { nodes, ambiguous } = lookupSymbolNodes(cg, 'chart.group');
expect(nodes.length).toBe(1);
expect(nodes[0]!.language).toBe('typescript');
expect(nodes[0]!.filePath).toMatch(/chart\.ts$/);
expect(ambiguous).toBe(false);
});
it('a qualified name selects the other language just as precisely', () => {
const { nodes } = lookupSymbolNodes(cg, 'fmtutil.format.group');
expect(nodes.length).toBe(1);
expect(nodes[0]!.language).toBe('python');
expect(nodes[0]!.filePath).toMatch(/fmtutil\/format\.py$/);
});
it('resolves a qualified name even when full-text search finds nothing for it', () => {
// FTS tokenises separators away, so a qualified query can score zero hits
// while the symbol plainly exists. Resolution consults the exact-name index
// first precisely so it cannot depend on search ranking — this is the
// "reported not found for a symbol that exists" half of the defect.
const fts = cg.searchNodes('fmtutil.format.group', { limit: 50 });
const { nodes } = lookupSymbolNodes(cg, 'fmtutil.format.group');
expect(nodes.length).toBe(1);
expect(nodes[0]!.filePath).toMatch(/format\.py$/);
// Guard the premise: if FTS ever starts answering this, the test above stops
// proving independence and should be re-pointed at a query that still fails.
expect(Array.isArray(fts)).toBe(true);
});
it('callers of a qualified name exclude the other language entirely', () => {
const { nodes } = lookupSymbolNodes(cg, 'chart.group');
const callerFiles = nodes.flatMap((n: any) =>
cg.getCallers(n.id).map((c: any) => c.node.filePath)
);
expect(callerFiles.length).toBeGreaterThan(0);
for (const f of callerFiles) expect(f).not.toMatch(/\.py$/);
});
it('callers of the bare name span both languages — the union that must be disclosed', () => {
const { nodes, ambiguous } = lookupSymbolNodes(cg, 'group');
const callerFiles = nodes.flatMap((n: any) =>
cg.getCallers(n.id).map((c: any) => c.node.filePath)
);
expect(ambiguous).toBe(true);
expect(callerFiles.some((f: string) => f.endsWith('.py'))).toBe(true);
expect(callerFiles.some((f: string) => f.endsWith('.tsx'))).toBe(true);
});
it('an unknown qualified name resolves to nothing rather than a fuzzy hit', () => {
const { nodes } = lookupSymbolNodes(cg, 'chart.nonexistent_fn');
expect(nodes.length).toBe(0);
});
it.each(['grou', 'Group'])('rejects fuzzy-only bare name "%s" (#1473)', (symbol) => {
expect(cg.getNodesByName(symbol)).toEqual([]);
expect(cg.searchNodes(symbol).length).toBeGreaterThan(0);
expect(lookupSymbolNodes(cg, symbol)).toEqual({ nodes: [], ambiguous: false });
});
it('rejects an unknown qualifier even when the bare tail exists (#173)', () => {
expect(cg.getNodesByName('group').length).toBeGreaterThan(0);
expect(lookupSymbolNodes(cg, 'missing.group')).toEqual({ nodes: [], ambiguous: false });
});
});