Coverage for the CG-12 allocator, built around "would this go red if the lever were removed" rather than line coverage — every way this regresses is silent, ending in an agent falling back to Read. Unit (`explore-proportional-allocation.test.ts`, 18 -> 38): calibration pins, envelope safety across every tier and 30 candidate shapes, the cliff boundary, spine weighting/trim survival, the diffuse control, and the degenerate inputs — identical scores, a lone file, a runaway top scorer, zero results, maxFiles 0, a non-finite score. End-to-end (`explore-allocation-e2e.test.ts`, new): CG-6's second regression fixture as a deterministic synthetic mirror — a large relevant file, a small helper that used to win by shipping whole, and an incidental `explore`/`BUDGET` collision — asserting per-file budget share, not file presence. Plus degenerate result sets and a survey-style diffuse control through the real render loop. The live self-query arm stays in probe-allocation.mjs, where drift is a number to re-baseline rather than a red suite. Reverting the render loop to the pre-CG-12 rules reproduces #1500 on the mirror exactly and takes 5 e2e + 2 payroll gates red: file score pre-CG-12 CG-12 src/mcp/allocator.ts 77.5 4,843 (39.7%) 9,335 (80.1%) src/util/budget-math.ts 36.0 6,079 (49.8%) 1,037 ( 8.9%) Two defects the invariants surfaced, both fixed in tools.ts: - rounded shares could sum past `pool`, so "reservations fit the envelope" was approximate rather than exact; both terms now floor - a non-finite score made every share Infinity/Infinity, handing the render loop a NaN allowance; `weightOf` now fails safe to 0 Also adds a hard-ceiling gate to the payroll fixture — at 19.3K against a 19.5K ceiling it is the only fixture that stresses the ~25K inline cap — and exports EXPLORE_ALLOCATION so invariant tests read the constants while one test pins the literals. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
302 lines
15 KiB
TypeScript
302 lines
15 KiB
TypeScript
/**
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* Regression fixture for GitHub issue #1500 / epic CG-1 — relevance-proportional
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* explore budget allocation.
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*
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* The reporter's repo is a Go service whose GENERATED FKIT CRUD layer sits beside
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* the hand-written use-case that does the real work. Asking an architecture
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* question that doesn't name the exact use-case ("how does payroll cycle create
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* and calculate payslips?") spends the explore envelope on the generated CRUD,
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* because the generated layer name-collides on every term in the question while
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* the hand-written workflow is one big file that gets clipped.
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*
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* `__tests__/fixtures/payroll-go/` reproduces that shape permanently. This suite
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* is in two halves:
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*
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* 1. **Fixture shape** — green today. These pin the properties the fixture must
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* keep for the gate below to mean anything: the generated/hand-written split
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* (including the ordinary-named generated files only a CONTENT header betrays,
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* which is the #1500 case), the deliberate name collisions, and the
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* runPayrollCycleAll → BuildPayslip → Upsert chain resolving end-to-end. If
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* the fixture rots, these fail first and say so.
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*
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* 2. **Budget allocation** — the gate. CG-10 (relevance scoring) closed most of
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* it: the generated CRUD now ranks and delivers BELOW the hand-written
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* workflow, and those assertions are live regressions. What remains is
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* `it.fails`, which DOCUMENTS THE PART STILL OPEN — vitest passes an
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* `it.fails` test only while its body throws, so it goes RED the moment
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* CG-12's proportional byte allocation lands.
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* **When it goes red, delete the `.fails` — do not delete the test.**
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*
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* The same assertions run outside vitest, against the built dist and with the
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* full CG-4 per-file diagnostic, via `node scripts/agent-eval/probe-allocation.mjs`
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* (declared in `scripts/agent-eval/allocation-fixtures.json`).
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*/
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import { describe, it, expect, beforeAll, afterAll } 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 { ToolHandler, getExploreOutputBudget } from '../src/mcp/tools';
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import { attributeSourceBytes } from '../src/mcp/explore-diagnostics';
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import { isGeneratedFile, hasGeneratedHeader } from '../src/extraction/generated-detection';
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const FIXTURE_SRC = path.join(__dirname, 'fixtures', 'payroll-go');
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/** The question a newcomer asks — names none of the symbols that answer it. */
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const QUERY = 'how does payroll cycle create and calculate payslips?';
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/** The hand-written workflow: what the query is actually about. */
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const ANSWER_PREFIXES = [
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'internal/usecase/',
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'internal/store/',
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'internal/transport/',
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'internal/domain/',
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'cmd/',
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];
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/** The generated CRUD/DTO layer: what wins the envelope today. */
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const GENERATED_PREFIX = 'internal/gen/';
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const startsWithAny = (p: string, prefixes: string[]) => prefixes.some((x) => p.startsWith(x));
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describe('#1500 — generated Go CRUD beside a hand-written payroll workflow', () => {
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let testDir: string;
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let cg: CodeGraph;
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let handler: ToolHandler;
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let response: string;
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/** Delivered source bytes per file, attributed from the final response. */
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let bytes: Map<string, number>;
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beforeAll(async () => {
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testDir = fs.mkdtempSync(path.join(os.tmpdir(), 'codegraph-1500-'));
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fs.cpSync(FIXTURE_SRC, testDir, { recursive: true });
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// A stray index in the checked-in tree would be copied in and reused.
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fs.rmSync(path.join(testDir, '.codegraph'), { recursive: true, force: true });
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cg = CodeGraph.initSync(testDir);
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await cg.indexAll();
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handler = new ToolHandler(cg);
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const result = await handler.execute('codegraph_explore', { query: QUERY });
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response = result.content?.[0]?.text ?? '';
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bytes = attributeSourceBytes(response);
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}, 120_000);
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afterAll(() => {
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if (cg) cg.destroy();
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if (testDir && fs.existsSync(testDir)) fs.rmSync(testDir, { recursive: true, force: true });
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});
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// ── 1. Fixture shape ──────────────────────────────────────────────────────
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describe('fixture shape', () => {
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it('indexes as a Go project with both layers present', () => {
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const files = cg.getFiles().map((f) => f.path);
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expect(files.filter((p) => p.endsWith('.go')).length).toBeGreaterThanOrEqual(15);
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expect(files.some((p) => p.startsWith(GENERATED_PREFIX))).toBe(true);
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expect(files.some((p) => p.startsWith('internal/usecase/'))).toBe(true);
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});
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it('flags every generated file and no hand-written one', () => {
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for (const file of cg.getFiles()) {
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expect(file.generated, `${file.path} generated flag`).toBe(
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file.path.startsWith(GENERATED_PREFIX),
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);
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}
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});
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it('carries generated files that ONLY a content header betrays — the #1500 case', () => {
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// Half the generated tree has ordinary names (`payslip.go`, `store.go`).
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// Path-only detection misses them; the CG-5 content check is what catches
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// them. Without these the fixture would be a .pb.go fixture, not a #1500 one.
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const contentOnly = [
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'internal/gen/fkit/payroll/payslip.go',
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'internal/gen/fkit/payroll/payroll_cycle.go',
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'internal/gen/fkit/payroll/store.go',
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'internal/gen/fkit/payroll/calculate.go',
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'internal/gen/fkit/payroll/dto.go',
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'internal/gen/fkit/employee/employee.go',
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'internal/gen/fkit/timesheet/timesheet.go',
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];
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for (const rel of contentOnly) {
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const source = fs.readFileSync(path.join(testDir, rel), 'utf-8');
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expect(isGeneratedFile(rel), `${rel} must NOT be detectable by path`).toBe(false);
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expect(hasGeneratedHeader(source), `${rel} must be detectable by header`).toBe(true);
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expect(cg.getFile(rel)?.generated, `${rel} indexed flag`).toBe(true);
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}
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// …beside the conventional path-detectable ones, so both channels are covered.
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expect(isGeneratedFile('internal/gen/payrollpb/payroll.pb.go')).toBe(true);
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});
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it('collides the generated layer with the hand-written one by name', () => {
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// A naive scorer sees two BuildPayslips and two Upserts and has no reason
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// to prefer the one that implements the business rule.
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for (const name of ['BuildPayslip', 'Upsert', 'Store']) {
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const files = new Set(cg.getNodesByName(name).map((n) => n.filePath));
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expect([...files].some((p) => p.startsWith(GENERATED_PREFIX)), `${name} generated`).toBe(true);
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expect([...files].some((p) => !p.startsWith(GENERATED_PREFIX)), `${name} hand-written`).toBe(true);
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}
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});
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it('resolves the hand-written workflow chain end-to-end in the graph', () => {
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const calleesOf = (name: string, file: string) => {
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const node = cg.getNodesByName(name).find((n) => n.filePath === file);
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expect(node, `${name} in ${file}`).toBeTruthy();
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return cg
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.getOutgoingEdges(node!.id)
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.filter((e) => e.kind === 'calls')
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.map((e) => cg.getNode(e.target))
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.filter((n): n is NonNullable<typeof n> => !!n);
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};
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// handler → use-case
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expect(
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calleesOf('RunCycle', 'internal/transport/httpapi/payroll_handler.go')
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.some((n) => n.name === 'RunCycle' && n.filePath === 'internal/usecase/payroll/cycle.go'),
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).toBe(true);
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// use-case → the workflow
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expect(
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calleesOf('RunCycle', 'internal/usecase/payroll/cycle.go')
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.some((n) => n.name === 'runPayrollCycleAll'),
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).toBe(true);
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// the workflow → build + persist
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const workflow = calleesOf('runPayrollCycleAll', 'internal/usecase/payroll/cycle.go');
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expect(
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workflow.some((n) => n.name === 'BuildPayslip' && n.filePath === 'internal/usecase/payroll/payslip_builder.go'),
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'runPayrollCycleAll must reach the hand-written BuildPayslip',
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).toBe(true);
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expect(workflow.some((n) => n.name === 'Upsert'), 'runPayrollCycleAll must reach an Upsert').toBe(true);
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});
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it('routes an HTTP entry point into the workflow', () => {
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const router = cg.getNodesInFile('internal/transport/httpapi/router.go');
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expect(router.some((n) => n.kind === 'route' || n.name === 'NewRouter')).toBe(true);
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});
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it('sizes the two layers so the size-driven render split actually bites', () => {
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// The mechanism the epic is about: a small file ships WHOLE, a large one
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// falls through to clipped clusters. The workflow file must stay above the
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// whole-file window and the generated files below it, or the fixture stops
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// reproducing anything.
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const lines = (rel: string) => fs.readFileSync(path.join(testDir, rel), 'utf-8').split('\n').length;
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expect(lines('internal/usecase/payroll/cycle.go')).toBeGreaterThan(220);
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for (const rel of ['internal/gen/fkit/payroll/payslip.go', 'internal/gen/fkit/payroll/payroll_cycle.go']) {
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expect(lines(rel)).toBeLessThan(220);
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}
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});
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it('answers the query at all', () => {
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expect(response.length).toBeGreaterThan(1000);
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expect(bytes.size).toBeGreaterThan(0);
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});
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});
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// ── 2. Budget allocation — the open bug ───────────────────────────────────
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describe('budget allocation', () => {
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const share = (predicate: (p: string) => boolean) => {
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let total = 0;
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for (const [file, n] of bytes) if (predicate(file)) total += n;
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return total / response.length;
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};
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const answerShare = () => share((p) => startsWithAny(p, ANSWER_PREFIXES));
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const generatedShare = () => share((p) => p.startsWith(GENERATED_PREFIX));
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/**
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* BASELINE 2026-08-03, BEFORE CG-10 (very-tiny tier, 13,000-char budget):
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* 23,020 chars allocated, cut to 16,011 by the 19,500 hard ceiling. The
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* generated CRUD delivered 57.4%; the hand-written layer 25.6%, all of it
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* domain types. `cycle.go` was allocated the single largest slice (7,052
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* chars, 30.6%) and delivered ZERO — the ceiling dropped its whole section —
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* so runPayrollCycleAll, the hand-written BuildPayslip and the real Upsert
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* never reached the agent.
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*
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* AFTER CG-10 (relevance scoring): the generated files rank #3/#4 instead of
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* #1/#2 — kind-weighted scoring plus a generated rank PENALTY on both the
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* score and the graph mass, rather than the old tiebreak-at-equal-score.
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* `cycle.go` now delivers 38.9% and the generated layer 23.5%. Four of the
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* five gates below are green and are now live regressions.
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*
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* AFTER CG-12 (score-proportional allocation): every file's share of the
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* envelope is reserved before anything renders, and a file under 15% of the
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* top weight gets no source at all — so the two generated files cliff to
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* pointers, hand their `maxFiles` slots to the hand-written store and
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* builder, and the answer group takes ~79% with the generated layer at 0%.
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* `func (s *Service) BuildPayslip` — the "calculate" half of the question —
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* finally reaches the agent. All gates below are live regressions now.
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*/
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it('CG-10 GATE: concentrates the envelope on the hand-written workflow', () => {
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expect(answerShare()).toBeGreaterThanOrEqual(0.55);
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});
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it('CG-10 GATE: does not spend the envelope on the generated CRUD', () => {
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expect(generatedShare()).toBeLessThanOrEqual(0.25);
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});
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it('CG-10 GATE: ranks the generated CRUD below the hand-written workflow', () => {
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// The #1500 report in one assertion: before CG-10 the generated layer both
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// outscored AND out-delivered the use-case that implements the business rule.
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expect(answerShare()).toBeGreaterThan(generatedShare());
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});
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it('CG-10 GATE: delivers the workflow file it allocated the most bytes to', () => {
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expect(bytes.get('internal/usecase/payroll/cycle.go') ?? 0).toBeGreaterThan(0);
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});
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it('CG-10 GATE: puts the hand-written chain in the response, not its generated twin', () => {
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// Bare `Upsert` also matches the generated collision — these needles are
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// unique to the hand-written chain.
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expect(response).toContain('runPayrollCycleAll');
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expect(response).toContain('s.store.Upsert(ctx, slip)');
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});
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it('CG-12 GATE: delivers the calculation the question asks about', () => {
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// `payslip_builder.go` ranks #6 and the tier's maxFiles is 4 — it reaches
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// the response only because the two generated files cliff to pointers
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// WITHOUT consuming a slot. That slot hand-off is the CG-12 mechanism.
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expect(bytes.get('internal/usecase/payroll/payslip_builder.go') ?? 0).toBeGreaterThan(0);
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expect(response).toContain('func (s *Service) BuildPayslip');
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});
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it('CG-12 GATE: withholds the generated CRUD bytes but still names it', () => {
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// A cliffed file costs ~100 chars instead of ~4,500, and stays one
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// follow-up explore away — withholding is only cheap if it stays nameable.
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expect(bytes.get('internal/gen/fkit/payroll/payslip.go') ?? 0).toBe(0);
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expect(response).toContain('**Not shown above — explore these names for their source**');
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expect(response).toMatch(/internal\/gen\/fkit\/payroll\/payslip\.go: \w+:\d+/);
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});
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it('CG-14 GATE: holds the response inside the hard ceiling under real pressure', () => {
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// This fixture is the stress case for the ceiling, not just for the split:
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// 19 files put it in the very-tiny tier (13,000-char envelope) while the
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// answer genuinely needs more, so the render loop spends its full allowed
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// overshoot — ~19.3K against a 19.5K ceiling. That leaves ~1% of headroom,
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// which is exactly why this is worth pinning: the bound that matters is the
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// host's ~25K inline cap, and above it the response is written to a file
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// the agent Reads back, undoing the point of the tool.
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const budget = getExploreOutputBudget(cg.getFiles().length);
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const hardCeiling = Math.min(Math.round(budget.maxOutputChars * 1.5), 25000);
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expect(response.length).toBeGreaterThan(budget.maxOutputChars);
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expect(response.length).toBeLessThanOrEqual(hardCeiling);
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expect(response.length).toBeLessThan(25000);
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});
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it('records the shape of the allocation so a regression is legible', () => {
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// Not a gate — a snapshot of the split, so a future change that shifts the
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// numbers shows up in the diff rather than silently flipping a gate.
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const generated = generatedShare();
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const answer = answerShare();
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expect({
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generatedWinsEnvelope: generated > answer,
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workflowFileDelivers: (bytes.get('internal/usecase/payroll/cycle.go') ?? 0) > 0,
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builderFileDelivers: (bytes.get('internal/usecase/payroll/payslip_builder.go') ?? 0) > 0,
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}).toEqual({
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generatedWinsEnvelope: false,
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workflowFileDelivers: true,
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builderFileDelivers: true,
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});
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});
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});
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});
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