The suite passed unchanged with `CODEGRAPH_NO_REBIND=1`, so the larger half of CG-33 — the rebind pass — had no coverage at all. The cause was the ground truth, not the cases: `rebuildEdgeSet` called `indexAll()` on the live handle. That is not a rebuild. Every file hashes identical, so the store writes nothing (`nodesCreated: 0`), no reference is re-created, and every edge survives — the comparison read the synced index against itself and could never fail. It now goes through `CodeGraph.recreate`, which deletes the database file the way the CLI's `index` command does. With a real rebuild, three existing cases fail under the kill switch. Adds two more for the rules that carry the risk: - an edge with no `refName` stamp (older engine) and a synthesized (`provenance='heuristic'`) edge are never deleted — both planted directly, and each verified load-bearing by mutation; - a name over the 500-edge ceiling is declined losslessly rather than rebound in part, with a rare name in the same sync as the control that proves the pass ran. The per-file-vs-batch-wide delta rule is likewise confirmed by mutation: a batch-wide name set fails its case. CODEGRAPH_NO_REBIND=1 now fails 4 cases; unset is green; full suite green. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
441 lines
20 KiB
TypeScript
441 lines
20 KiB
TypeScript
/**
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* Incremental sync must converge to a full rebuild (CG-33).
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*
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* A long-lived, auto-synced index silently diverged from a clean rebuild of the
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* identical tree: 4.3% of distinct edges wrong, in BOTH directions, on
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* codegraph's own repo. Two mechanisms, both exercised here:
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*
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* 1. Resolution binds a reference to one of the same-named definitions
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* PROJECT-WIDE, so adding or removing a definition changes the answer for
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* references in files the sync never touches. Those references resolved once
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* and their rows were deleted, so nothing revisited them — the index kept an
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* answer that was only correct against an older graph.
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* 2. When nothing disambiguated the candidates, the winner was whichever row
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* the index scan reached first — i.e. the order files were WRITTEN. A full
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* index writes in scan order; a sync appends each file as it changes, so the
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* same tree resolved differently depending on how the index was built.
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*
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* The assertions here compare the whole edge SET, never counts: the divergence
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* is bidirectional and nets out of a total (raw rows differed by 0.7% while
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* 4.3% of edges were wrong), so a count check passes on a broken index.
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*
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* ---
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*
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* THIS SUITE MUST FAIL WITH `CODEGRAPH_NO_REBIND=1` (CG-35).
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*
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* That environment variable is the kill switch on the rebind half of the fix
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* (`src/index.ts`, guarding `resurrectStaleResolutionEdges`). The convergence
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* cases below are the only coverage that half has, so the check is the suite's
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* own regression test:
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*
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* CODEGRAPH_NO_REBIND=1 npx vitest run __tests__/sync-rebuild-convergence.test.ts
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*
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* must report failures, and an unset run must be green. If you change a case
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* here, re-run both. A version of this suite passed under the kill switch
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* because `rebuildEdgeSet` was not rebuilding anything — see the note there.
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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 path from 'path';
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import * as os from 'os';
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import CodeGraph from '../src/index';
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import { createDatabase } from '../src/db/sqlite-adapter';
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describe('Incremental sync converges to a full rebuild (CG-33)', () => {
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let testDir: string;
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let cg: CodeGraph;
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const write = (rel: string, content: string) => {
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const full = path.join(testDir, rel);
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fs.mkdirSync(path.dirname(full), { recursive: true });
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fs.writeFileSync(full, content);
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};
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/**
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* Every edge as a `source|target|kind` triple, read from the database with a
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* second read-only connection. Node ids are `sha256(filePath:kind:name:line)`,
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* so for an identical tree they are identical across a sync and a rebuild —
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* which is what makes the two sets directly comparable.
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*/
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const edgeSet = (): Set<string> => {
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const { db } = createDatabase(path.join(testDir, '.codegraph', 'codegraph.db'), { readOnly: true });
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try {
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const rows = db.prepare('SELECT source, target, kind FROM edges').all() as Array<{
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source: string;
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target: string;
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kind: string;
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}>;
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return new Set(rows.map((r) => `${r.source}|${r.target}|${r.kind}`));
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} finally {
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db.close();
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}
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};
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/**
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* Run `fn` against a second, WRITABLE connection to the same database. Used
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* by the two rule tests below to plant edge shapes the extractor cannot
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* produce on demand — an edge from an engine older than the refName stamp,
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* and a synthesized dispatch edge.
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*/
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const withDb = <T>(fn: (db: ReturnType<typeof createDatabase>['db']) => T): T => {
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const { db } = createDatabase(path.join(testDir, '.codegraph', 'codegraph.db'));
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try {
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return fn(db);
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} finally {
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db.close();
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}
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};
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/** Human-readable diff, so a failure names the edges instead of just a count. */
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const describeDiff = (synced: Set<string>, rebuilt: Set<string>): string => {
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const missing = [...rebuilt].filter((e) => !synced.has(e));
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const stale = [...synced].filter((e) => !rebuilt.has(e));
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return `missing from synced: ${missing.length}, stale in synced: ${stale.length}`;
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};
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/**
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* Rebuild the index from scratch over the CURRENT tree and return its edge
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* set — the ground truth a user gets from `codegraph index`.
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*
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* It must go through `CodeGraph.recreate`, which is what the CLI's `index`
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* command does: it DELETES the database file and builds an empty one. Calling
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* `indexAll` on the live handle instead is not a rebuild at all — every file
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* hashes identical, so the store writes nothing (`nodesCreated: 0`), no
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* reference is re-created, and every existing edge survives untouched. The
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* comparison then reads the synced index against ITSELF and can never fail,
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* which is exactly how this suite passed with `CODEGRAPH_NO_REBIND=1` (CG-35).
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*/
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const rebuildEdgeSet = async (): Promise<Set<string>> => {
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// Close the live handle first: `recreate` unlinks the database file, and a
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// held handle makes that EBUSY on Windows.
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cg.destroy();
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cg = await CodeGraph.recreate(testDir);
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await cg.indexAll();
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return edgeSet();
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};
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beforeEach(() => {
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testDir = fs.mkdtempSync(path.join(os.tmpdir(), 'codegraph-cg33-'));
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});
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afterEach(() => {
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cg?.destroy();
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if (fs.existsSync(testDir)) fs.rmSync(testDir, { recursive: true, force: true });
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});
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/**
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* The originating shape. `caller.ts` calls `pct` with no import, so it binds
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* by name; at index time `zeta.ts` is the only definition. A later sync adds
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* `alpha.ts`, which sorts FIRST and is therefore the rebuild's answer — but
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* `caller.ts` never changes, so nothing re-resolves it.
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*/
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it('rebinds references in UNCHANGED files when a sync adds a competing definition', async () => {
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write('src/caller.ts', `export function run(): number {\n return pct(1);\n}\n`);
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write('src/zeta.ts', `export function pct(n: number): number {\n return n;\n}\n`);
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cg = CodeGraph.initSync(testDir, { config: { include: ['**/*.ts'], exclude: [] } });
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await cg.indexAll();
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write('src/alpha.ts', `export function pct(n: number): number {\n return n * 2;\n}\n`);
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const result = await cg.sync();
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expect(result.filesAdded).toBe(1);
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expect(result.definitionDelta).toContain('pct');
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const synced = edgeSet();
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const rebuilt = await rebuildEdgeSet();
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expect(describeDiff(synced, rebuilt)).toBe('missing from synced: 0, stale in synced: 0');
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});
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/**
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* The mirror direction: removing a definition narrows the candidate set too,
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* so the delta must include names the sync DROPPED, not just names it added.
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*
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* This one already converged before the fix — a removal cascades the edge
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* away and the #1240 removal path resurrects it, so the reference gets
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* re-resolved for free. It is here as a standing guard on the invariant, and
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* because the removal half of the delta has no other coverage: an
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* implementation that only sampled post-sync names would still pass every
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* other test in this file.
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*/
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it('rebinds references in UNCHANGED files when a sync removes a competing definition', async () => {
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write('src/caller.ts', `export function run(): number {\n return pct(1);\n}\n`);
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write('src/alpha.ts', `export function pct(n: number): number {\n return n;\n}\n`);
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write('src/zeta.ts', `export function pct(n: number): number {\n return n * 2;\n}\n`);
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cg = CodeGraph.initSync(testDir, { config: { include: ['**/*.ts'], exclude: [] } });
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await cg.indexAll();
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fs.rmSync(path.join(testDir, 'src', 'alpha.ts'));
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const result = await cg.sync();
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expect(result.filesRemoved).toBe(1);
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const synced = edgeSet();
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const rebuilt = await rebuildEdgeSet();
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expect(describeDiff(synced, rebuilt)).toBe('missing from synced: 0, stale in synced: 0');
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});
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/**
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* The delta must be computed per FILE. Comparing one name set across the whole
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* changed batch cancels a name that is added in one changed file while another
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* changed file already defined it — which is precisely the shape a commit that
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* splits a module out has, and it was the largest residual class in the first
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* measurement of this fix.
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*/
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it('flags a name added in one changed file even when another changed file already defines it', async () => {
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write('src/caller.ts', `export function run(): number {\n return pct(1);\n}\n`);
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write('src/zeta.ts', `export function pct(n: number): number {\n return n;\n}\nexport function keep(): number {\n return 0;\n}\n`);
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cg = CodeGraph.initSync(testDir, { config: { include: ['**/*.ts'], exclude: [] } });
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await cg.indexAll();
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// One commit: a NEW file gains `pct`, and the file that already had `pct`
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// is edited too (so a batch-wide name set would see `pct` on both sides).
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write('src/alpha.ts', `export function pct(n: number): number {\n return n * 2;\n}\n`);
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write('src/zeta.ts', `export function pct(n: number): number {\n return n + 1;\n}\nexport function keep(): number {\n return 0;\n}\n`);
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const result = await cg.sync();
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expect(result.definitionDelta).toContain('pct');
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const synced = edgeSet();
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const rebuilt = await rebuildEdgeSet();
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expect(describeDiff(synced, rebuilt)).toBe('missing from synced: 0, stale in synced: 0');
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});
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/**
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* The realistic case the issue was filed from: many edits driven through sync
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* one after another, the way a watcher or a `git pull` applies them. Drift
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* accumulated across syncs, so a single-edit test would not have caught it.
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*/
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it('stays converged across a sequence of adds, edits, renames and deletes', async () => {
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write('src/caller.ts', `export function run(): number {\n return pct(1) + fmt(2) + collect(3);\n}\n`);
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write('src/util/zeta.ts', `export function pct(n: number): number {\n return n;\n}\n`);
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write('src/util/omega.ts', `export function fmt(n: number): number {\n return n;\n}\n`);
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cg = CodeGraph.initSync(testDir, { config: { include: ['**/*.ts'], exclude: [] } });
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await cg.indexAll();
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// 1. add a competing `pct` that sorts before the existing one
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write('src/util/alpha.ts', `export function pct(n: number): number {\n return n * 2;\n}\n`);
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await cg.sync();
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// 2. body-only edit — must produce NO definition delta, so the common sync
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// pays nothing for this machinery
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write('src/util/alpha.ts', `export function pct(n: number): number {\n return n * 3;\n}\n`);
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const bodyOnly = await cg.sync();
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expect(bodyOnly.filesModified).toBe(1);
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expect(bodyOnly.definitionDelta).toBeUndefined();
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// 3. a rename: `fmt` moves out of omega.ts into a file that sorts first
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write('src/util/omega.ts', `export function other(n: number): number {\n return n;\n}\n`);
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write('src/util/beta.ts', `export function fmt(n: number): number {\n return n;\n}\n`);
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await cg.sync();
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// 4. a symbol appears for a reference that never resolved at all
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write('src/util/gamma.ts', `export function collect(n: number): number {\n return n;\n}\n`);
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await cg.sync();
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// 5. delete the current `pct` winner, so the reference must fall back...
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fs.rmSync(path.join(testDir, 'src', 'util', 'alpha.ts'));
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await cg.sync();
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// 6. ...and then a later sync introduces a new winner ahead of it again.
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// Ending here rather than on the delete matters: after the delete the
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// binding happens to land back where it started, which a broken index
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// also reaches. The final state must be one only re-resolution reaches.
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write('src/util/aaa.ts', `export function pct(n: number): number {\n return n * 5;\n}\n`);
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await cg.sync();
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const synced = edgeSet();
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expect(synced.size).toBeGreaterThan(0);
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const rebuilt = await rebuildEdgeSet();
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expect(describeDiff(synced, rebuilt)).toBe('missing from synced: 0, stale in synced: 0');
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});
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/**
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* The rebind pass DELETES an edge and re-inserts the reference behind it, so
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* it may only touch edges it can reconstruct. Two shapes it must leave alone,
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* both of which it would otherwise destroy permanently:
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*
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* - an edge with no `metadata.refName` — written by an engine older than the
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* stamp. Rebuilding a reference from the target's plain name would strip the
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* receiver context the original text carried (`h.greet` → `greet`);
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* - a synthesized dispatch edge (`provenance='heuristic'`), which is not
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* resolution output at all: nothing would re-create it, and the synthesizer
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* that wired it does not run again on this sync.
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*
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* Both are planted directly, since extraction cannot be asked to emit them.
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* The sync then changes the answer for `pct`, which is exactly the condition
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* that makes the pass want to re-open every edge targeting `pct`.
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*/
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it('never deletes an edge it cannot reconstruct — no refName stamp, or synthesized', async () => {
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write('src/caller.ts', `export function run(): number {\n return pct(1);\n}\n`);
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write('src/other.ts', `export function other(): number {\n return 0;\n}\n`);
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write('src/zeta.ts', `export function pct(n: number): number {\n return n;\n}\n`);
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cg = CodeGraph.initSync(testDir, { config: { include: ['**/*.ts'], exclude: [] } });
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await cg.indexAll();
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const planted = withDb((db) => {
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const pct = db.prepare("SELECT id FROM nodes WHERE name = 'pct'").get() as { id: string };
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const other = db.prepare("SELECT id FROM nodes WHERE name = 'other'").get() as { id: string };
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// 1. Strip the stamp off the real edge, leaving the rest of its metadata
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// intact — the shape an index built before the stamp existed has.
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db.prepare(
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`UPDATE edges SET metadata = json_remove(metadata, '$.refName')
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WHERE target = ? AND kind = 'calls'`
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).run(pct.id);
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// 2. A synthesized edge that DOES carry a stamp, so only the provenance
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// rule can save it.
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db.prepare(
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`INSERT INTO edges (source, target, kind, metadata, line, col, provenance)
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VALUES (?, ?, 'calls', ?, 1, 0, 'heuristic')`
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).run(other.id, pct.id, JSON.stringify({ refName: 'pct', synthesizedBy: 'cg35-test' }));
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return {
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unstamped: `${(db.prepare("SELECT source FROM edges WHERE target = ? AND provenance IS NULL AND kind = 'calls'").get(pct.id) as { source: string }).source}|${pct.id}|calls`,
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synthesized: `${other.id}|${pct.id}|calls`,
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};
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});
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const before = edgeSet();
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expect(before.has(planted.unstamped)).toBe(true);
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expect(before.has(planted.synthesized)).toBe(true);
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write('src/alpha.ts', `export function pct(n: number): number {\n return n * 2;\n}\n`);
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const result = await cg.sync();
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expect(result.definitionDelta).toContain('pct');
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// Both survive: the pass considered them (their target is `pct`) and
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// declined. Drift is the acceptable outcome here; an edge that no pass can
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// ever restore is not.
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const after = edgeSet();
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expect(after.has(planted.unstamped)).toBe(true);
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expect(after.has(planted.synthesized)).toBe(true);
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});
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/**
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* The per-name ceiling in `getResolutionEdgesByTargetName` (500 by default).
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* Above it a name is generic — `push`, `get`, `join` — one new definition
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* won't flip most of its references, and rebinding an arbitrary subset would
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* manufacture wrong edges while costing the most work. It must DECLINE the
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* name outright, and declining must be lossless.
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*
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* The rare name in the same sync is the control: it proves the pass ran and
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* that the ceiling is what spared the generic one, not a dead rebind pass.
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*/
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it('declines a name over the per-name ceiling instead of rebinding an arbitrary subset', async () => {
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// Must exceed the 500 default in getResolutionEdgesByTargetName.
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const OVER_CEILING = 501;
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const callers = Array.from(
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{ length: OVER_CEILING },
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(_, i) => `export function hot${i}(): number {\n return push(${i});\n}\n`
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).join('');
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write('src/hot.ts', callers);
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write('src/rare.ts', `export function rare(): number {\n return tug(1);\n}\n`);
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write(
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'src/zzz_defs.ts',
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`export function push(n: number): number {\n return n;\n}\nexport function tug(n: number): number {\n return n;\n}\n`
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);
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cg = CodeGraph.initSync(testDir, { config: { include: ['**/*.ts'], exclude: [] } });
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await cg.indexAll();
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const targetsOf = (name: string): string[] =>
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withDb((db) =>
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(
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db
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.prepare(
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`SELECT t.file_path AS file FROM edges e
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JOIN nodes t ON t.id = e.target
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JOIN nodes s ON s.id = e.source
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WHERE t.name = ? AND e.kind = 'calls'`
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)
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.all(name) as Array<{ file: string }>
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).map((r) => r.file)
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);
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expect(targetsOf('push')).toHaveLength(OVER_CEILING);
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expect(new Set(targetsOf('push'))).toEqual(new Set(['src/zzz_defs.ts']));
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expect(targetsOf('tug')).toEqual(['src/zzz_defs.ts']);
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// One sync adds a competing definition of BOTH names, in a file that sorts
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// first and is therefore the rebuild's answer for each.
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write(
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'src/aaa.ts',
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`export function push(n: number): number {\n return n * 2;\n}\nexport function tug(n: number): number {\n return n * 2;\n}\n`
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);
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const result = await cg.sync();
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expect(result.definitionDelta).toContain('push');
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expect(result.definitionDelta).toContain('tug');
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// `push` is untouched — every edge still there, still on the old target.
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// This is knowingly divergent from a rebuild; see "Don't chase the
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// residual" in docs/benchmarks/index-drift-cg33.md.
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const pushTargets = targetsOf('push');
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expect(pushTargets).toHaveLength(OVER_CEILING);
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expect(new Set(pushTargets)).toEqual(new Set(['src/zzz_defs.ts']));
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// `tug` — the control — rebound.
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expect(targetsOf('tug')).toEqual(['src/aaa.ts']);
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});
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/**
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* Guards the escape hatch itself: with the rebind pass off, the same sequence
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* must still produce a structurally sound index (no lost or orphaned edges) —
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* just a drifted one. If this ever fails, the pass is doing something the
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* kill switch cannot undo.
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*/
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it('CODEGRAPH_NO_REBIND=1 disables the pass without corrupting the index', async () => {
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write('src/caller.ts', `export function run(): number {\n return pct(1);\n}\n`);
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write('src/zeta.ts', `export function pct(n: number): number {\n return n;\n}\n`);
|
|
cg = CodeGraph.initSync(testDir, { config: { include: ['**/*.ts'], exclude: [] } });
|
|
await cg.indexAll();
|
|
const before = edgeSet();
|
|
|
|
process.env.CODEGRAPH_NO_REBIND = '1';
|
|
try {
|
|
write('src/alpha.ts', `export function pct(n: number): number {\n return n * 2;\n}\n`);
|
|
await cg.sync();
|
|
} finally {
|
|
delete process.env.CODEGRAPH_NO_REBIND;
|
|
}
|
|
|
|
const after = edgeSet();
|
|
// Every edge that existed before is still there — the pass is the only
|
|
// thing that would have re-opened them, and it did not run.
|
|
for (const edge of before) expect(after.has(edge)).toBe(true);
|
|
});
|
|
});
|
|
|
|
/**
|
|
* Resolution's candidate order must be a property of the CODE, not of the order
|
|
* rows were written. This is the half of CG-33 that a re-resolution pass alone
|
|
* cannot fix: without it, re-resolving a reference against the very same graph
|
|
* can still pick a different winner than a rebuild does.
|
|
*/
|
|
describe('Same-name candidate order is content-derived, not insertion-derived (CG-33)', () => {
|
|
let testDir: string;
|
|
let cg: CodeGraph;
|
|
|
|
afterEach(() => {
|
|
cg?.destroy();
|
|
if (fs.existsSync(testDir)) fs.rmSync(testDir, { recursive: true, force: true });
|
|
});
|
|
|
|
it('getNodesByName orders by (file_path, start_line) even when rows were written in another order', async () => {
|
|
testDir = fs.mkdtempSync(path.join(os.tmpdir(), 'codegraph-cg33-order-'));
|
|
fs.mkdirSync(path.join(testDir, 'src'), { recursive: true });
|
|
fs.writeFileSync(path.join(testDir, 'src', 'mid.ts'), `export function pad(): void {}\nexport function dup(): number {\n return 2;\n}\n`);
|
|
fs.writeFileSync(path.join(testDir, 'src', 'zeta.ts'), `export function dup(): number {\n return 1;\n}\n`);
|
|
cg = CodeGraph.initSync(testDir, { config: { include: ['**/*.ts'], exclude: [] } });
|
|
await cg.indexAll();
|
|
|
|
// A sync APPENDS this file's nodes, so `alpha.ts` gets the highest rowids
|
|
// despite sorting first — exactly the divergence a full index never has,
|
|
// and the reason candidate order cannot come from the physical row order.
|
|
fs.writeFileSync(path.join(testDir, 'src', 'alpha.ts'), `export function dup(): number {\n return 3;\n}\n`);
|
|
await cg.sync();
|
|
|
|
const keys = cg.getNodesByName('dup').map((n) => `${n.filePath}:${String(n.startLine).padStart(6, '0')}`);
|
|
expect(keys.length).toBeGreaterThanOrEqual(3);
|
|
expect(keys).toEqual([...keys].sort());
|
|
expect(keys[0]).toContain('src/alpha.ts');
|
|
});
|
|
});
|