CG-33: record index-drift measurement and add a drift diff tool
A live, auto-sync-maintained index does not converge to a clean full rebuild of the identical tree. On codegraph's own repo, 4.3% of distinct edges are wrong in both directions (751 missing, 476 stale), dominated by `calls` — the edges flow queries traverse and that feed the RWR mass explore ranks files by. Raw edge rows differ by only +0.7%, because the divergence is bidirectional and nets out; any drift check must compare edge SETS. Rebuild-vs-rebuild is 0, so the indexer is deterministic and this is not noise. Node sets are identical and every integrity check is 0 on both indexes, so this is stale cross-file resolution, not accumulated residue. `diff-index-drift.mjs` is read-only and takes two index paths — rebuilding is the caller's job, so the tool can never clobber the artifact it is measuring. It also refuses a missing path, since node:sqlite creates an empty database rather than failing and an empty schema reads exactly like a stale pre-migration index. Diagnostic captures from the originating incident are deliberately NOT committed: they contain verbatim source from a private repo. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
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Claude Opus 5
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# Index drift: incremental sync vs. full rebuild (CG-33)
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Measured 2026-08-06. A live, auto-sync-maintained index **does not converge** to
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a clean full rebuild of the identical working tree. On codegraph's own repo,
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**4.3% of distinct edges were wrong**, in both directions, overwhelmingly
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`calls` edges.
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This matters because it is silent: nothing warns, nothing surfaces it, and the
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README tells users the index is never stale and there is nothing to re-run.
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Retrieval quality decays invisibly, and the user-visible symptom — an agent
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falling back to Read — reads as "codegraph isn't very good" rather than "this
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index needs rebuilding."
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## Result
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Subject: codegraph's own `.codegraph/codegraph.db`, long-lived and
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incrementally synced, against a full rebuild of the same tree with the same
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build. Edges compared as distinct `(source, target, kind)` triples.
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| | count |
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|---|---|
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| distinct edge triples (rebuild) | 28,809 |
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| in rebuild but **missing** from live | **751** |
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| in live but **absent** from rebuild (stale) | **476** |
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| **total divergent** | **1,227 — 4.3%** |
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Missing edges by kind: `calls=635`, `contains=38`, `references=34`,
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`instantiates=21`, `imports=13`, `extends=10`.
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### Raw counts hide it
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Raw edge **rows** were 39,845 live vs 40,122 rebuilt — a benign-looking +0.7%.
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The divergence is bidirectional, so a net-count check nets it out and reports
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almost nothing wrong. **Any drift detector must compare edge sets, not totals.**
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### The indexer is deterministic
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Control, rebuild vs rebuild on the same tree and build: **0 differing edges**
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(28,809 both runs). So the live-vs-rebuild delta is not run-to-run noise.
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### It is resolution, not residue
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Node sets are identical — `files` 501 = 501, `nodes` 10,110 = 10,110,
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heuristic edges 36 = 36 — and every integrity check is 0 on *both* indexes:
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no duplicate nodes, no orphan edges, no nodes referencing a missing file row.
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Nothing accumulates. Cross-file **resolution** goes stale.
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## Likely mechanism
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`ReferenceResolver` resolves calls and imports by name-matching and the import
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graph across the **whole** project. Incremental sync re-parses and re-resolves
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only the changed file, so:
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- edges from *other* files into changed symbols are never recomputed → stale
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edges retained (the 476);
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- edges that should newly form from unchanged files into changed symbols are
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never created → missing edges (the 751).
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Start in `src/sync/` and `src/resolution/` — specifically what scope is
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re-resolved on a single-file change.
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## Why it degrades retrieval
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Graph mass (RWR) is **relative and normalized**, so call edges missing elsewhere
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inflate an unaffected file's share of the mass. Explore ranks files by that mass
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(`allocateExploreBudget` weights on it), so drift silently promotes files that
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should rank low.
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Observed on a private application repo under heavy development: a generated
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ambient-types file carried graph mass **0.24750** on the drifted index vs
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**0.13119** on a clean rebuild (~1.9×), and score **49.0** vs **27.0**. On the
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drifted index it took **60.7%** of an explore envelope and starved the file the
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agent had actually named by symbol, which rendered **251 chars of a 10,970
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reservation**. After a full re-index — no code change — the same query answers
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correctly. That incident is what prompted this measurement; see CG-24.
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Severity scales with churn and index age. codegraph's own repo shows 4.3%;
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a repo under heavier active development plausibly drifts further.
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## Reproducing
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`scripts/agent-eval/diff-index-drift.mjs` is read-only and diffs two indexes.
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Snapshot the live index **before** rebuilding — the original artifact for this
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investigation was destroyed by re-indexing over it:
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```bash
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cp .codegraph/codegraph.db /tmp/live.db # snapshot FIRST
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node dist/bin/codegraph.js index . # full rebuild
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node scripts/agent-eval/diff-index-drift.mjs /tmp/live.db .codegraph/codegraph.db
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```
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Exit code is 0 when converged, 1 when drifted. To re-confirm determinism, diff
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two consecutive rebuilds — that must report 0.
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## Note on probing an index
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The index file is `.codegraph/codegraph.db`. There is no `graph.db`. `sqlite3`
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against a mistyped path **creates an empty database** rather than failing, and
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every subsequent query then answers from an empty schema — which reads exactly
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like a stale pre-migration index. That produced a wrong root cause during this
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investigation. `diff-index-drift.mjs` checks `existsSync` before opening for
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exactly this reason.
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#!/usr/bin/env node
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/**
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* Diff two CodeGraph indexes of the SAME tree — typically a live,
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* incrementally-synced `.codegraph/codegraph.db` against a clean full rebuild
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* of the identical working tree (CG-33).
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*
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* Non-destructive: it only reads. Rebuilding is the caller's job, so the live
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* index is never clobbered by the tool measuring it — the mistake that cost the
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* original CG-33 artifact.
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*
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* # snapshot the live index BEFORE touching it
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* cp .codegraph/codegraph.db /tmp/live.db
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* node dist/bin/codegraph.js index .
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* node scripts/agent-eval/diff-index-drift.mjs /tmp/live.db .codegraph/codegraph.db
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*
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* Edges are compared as distinct `(source, target, kind)` triples. Raw row
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* counts are NOT a drift signal: a bidirectional divergence nets out. On the
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* codegraph repo the raw counts differed by +0.7% while 4.3% of distinct edges
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* were actually wrong.
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*/
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import { DatabaseSync } from 'node:sqlite';
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import { existsSync } from 'node:fs';
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const [livePath, rebuiltPath] = process.argv.slice(2);
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if (!livePath || !rebuiltPath) {
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console.error('usage: diff-index-drift.mjs <live.db> <rebuilt.db>');
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process.exit(2);
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}
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for (const p of [livePath, rebuiltPath]) {
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if (!existsSync(p)) {
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// node:sqlite CREATES a missing file rather than failing, which silently
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// yields an empty schema and a confident, wrong conclusion. Refuse first.
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console.error(`not found: ${p}`);
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process.exit(2);
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}
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}
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const open = (p) => new DatabaseSync(p, { readOnly: true });
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const live = open(livePath);
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const rebuilt = open(rebuiltPath);
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const scalar = (db, q) => db.prepare(q).get().n;
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const edgeKey = (r) => `${r.source}\u0000${r.target}\u0000${r.kind}`;
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const liveEdges = live.prepare('select source, target, kind from edges').all();
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const rebuiltEdges = rebuilt.prepare('select source, target, kind from edges').all();
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const liveSet = new Set(liveEdges.map(edgeKey));
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const rebuiltSet = new Set(rebuiltEdges.map(edgeKey));
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const missing = rebuiltEdges.filter((r) => !liveSet.has(edgeKey(r))); // should exist, doesn't
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const stale = liveEdges.filter((r) => !rebuiltSet.has(edgeKey(r))); // exists, shouldn't
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const divergent = missing.length + stale.length;
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const byKind = (rows) => {
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const m = new Map();
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for (const r of rows) m.set(r.kind, (m.get(r.kind) ?? 0) + 1);
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return [...m].sort((a, b) => b[1] - a[1]).map(([k, v]) => `${k}=${v}`).join(', ') || '(none)';
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};
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const pct = (n, d) => (d ? ((n / d) * 100).toFixed(1) : '0.0');
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console.log(`live ${livePath}`);
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console.log(`rebuilt ${rebuiltPath}`);
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console.log('');
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console.log('counts live rebuilt');
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for (const [label, q] of [
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['files', 'select count(*) n from files'],
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['nodes', 'select count(*) n from nodes'],
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['edges (rows)', 'select count(*) n from edges'],
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// Grouped rather than `count(distinct a || b || c)`: bare concatenation has no
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// separator, so `(ab, c)` and `(a, bc)` would collapse into one.
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['edges (distinct)', 'select count(*) n from (select distinct source, target, kind from edges)'],
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['heuristic edges', "select count(*) n from edges where provenance='heuristic'"],
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]) {
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console.log(` ${label.padEnd(20)} ${String(scalar(live, q)).padEnd(9)} ${scalar(rebuilt, q)}`);
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}
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console.log('');
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console.log('edge divergence (distinct triples)');
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console.log(` missing from live: ${missing.length} — ${byKind(missing)}`);
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console.log(` stale in live: ${stale.length} — ${byKind(stale)}`);
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console.log(` TOTAL divergent: ${divergent} (${pct(divergent, rebuiltSet.size)}% of ${rebuiltSet.size})`);
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// Integrity checks — these separate "resolution went stale" (edges wrong, nodes
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// identical) from "residue accumulated" (duplicate/orphan rows). CG-33 is the
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// former: on the codegraph repo every check below was 0 on BOTH indexes.
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console.log('');
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console.log('integrity live rebuilt');
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for (const [label, q] of [
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['duplicate nodes', 'select count(*) n from (select file_path,name,kind,start_line from nodes group by 1,2,3,4 having count(*)>1)'],
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['orphan edges', 'select count(*) n from edges e where not exists(select 1 from nodes where id=e.source) or not exists(select 1 from nodes where id=e.target)'],
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['nodes w/ missing file row', 'select count(*) n from nodes nd where not exists(select 1 from files f where f.path=nd.file_path)'],
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]) {
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console.log(` ${label.padEnd(30)} ${String(scalar(live, q)).padEnd(6)} ${scalar(rebuilt, q)}`);
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}
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console.log('');
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console.log(divergent === 0
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? 'CONVERGED — the synced index matches a full rebuild.'
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: `DRIFTED — ${divergent} edges differ. Rebuild-vs-rebuild is 0 (the indexer is deterministic), so this is sync divergence, not noise.`);
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process.exitCode = divergent === 0 ? 0 : 1;
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