Files
msd-core/tests/planner-decomposition.test.cjs
Tom Boucher 2c32e8d890 test(#1973): consolidate 48 workflow regression tests into workflow-aspect suites
Fold 48 issue-named workflow-markdown regression files into the canonical test
that owns each workflow aspect (execute-phase-*, plan-phase-*, quick-*, discuss-*,
worktree-cleanup, secure-phase, verify, update, settings, etc.), across 32 existing
suites. Verbatim block-scoped describe wrappers; 281 subtests conserved 1:1. No new
test files. Host-env pre-check: only gsd-settings-advanced spawns CLI and it sets no
GSD_WORKSTREAM/GSD_PROJECT value — no leak risk.

Regenerates regression-name allowlist (222->181), ratchets file-count allowlist
(verify 11->10), makes 30 relocated allow-test-rule exemptions issue-ref-compliant
(ADR-456; prunes 30 stale ids). lint:ci green.

Part of epic #1969. Closes #1973.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-07-03 09:17:32 -04:00

243 lines
10 KiB
JavaScript

// allow-test-rule: source-text-is-the-product
// Workflow .md / agent .md / command .md / reference .md files — their text
// IS what the runtime loads. Testing text content tests the deployed contract.
// Per CONTRIBUTING.md exception matrix.
/**
* Tests for modular decomposition of agents/gsd-planner.md
*
* Verifies that:
* 1. gsd-planner.md stays under the 100K agent file threshold
* 2. gsd-planner.md is under 45K chars (proving the three mode sections were extracted)
* 3. The three reference files exist
* 4. gsd-planner.md contains reference pointers to each extracted file
* 5. Each reference file contains key content from the original mode section
*/
'use strict';
const { describe, test } = require('node:test');
const assert = require('node:assert/strict');
const fs = require('fs');
const path = require('path');
const PROJECT_ROOT = path.join(__dirname, '..');
// ─── Size thresholds ─────────────────────────────────────────────────────────
const AGENT_FILE_SIZE_LIMIT = 100 * 1024; // 100K — appropriate for version-controlled source
const PLANNER_EXTRACTED_LIMIT = 48 * 1024; // 48K — proves extraction happened
// ─── File paths ──────────────────────────────────────────────────────────────
const PLANNER_PATH = path.join(PROJECT_ROOT, 'agents', 'gsd-planner.md');
const GAP_CLOSURE_REF = path.join(PROJECT_ROOT, 'gsd-core', 'references', 'planner-gap-closure.md');
const REVISION_REF = path.join(PROJECT_ROOT, 'gsd-core', 'references', 'planner-revision.md');
const REVIEWS_REF = path.join(PROJECT_ROOT, 'gsd-core', 'references', 'planner-reviews.md');
// ─── gsd-planner.md size ─────────────────────────────────────────────────────
describe('gsd-planner.md size constraints', () => {
test('planner file exists', () => {
assert.ok(fs.existsSync(PLANNER_PATH), `Missing: ${PLANNER_PATH}`);
});
test('planner is under 100K chars (agent file threshold)', () => {
const raw = fs.readFileSync(PLANNER_PATH, 'utf-8');
// Normalize CRLF → LF before measuring — Windows checkouts inflate length by ~1 char/line
const content = raw.replace(/\r\n/g, '\n').replace(/\r/g, '\n');
assert.ok(
content.length < AGENT_FILE_SIZE_LIMIT,
`gsd-planner.md is ${content.length} chars, exceeds 100K agent threshold`
);
});
test('planner is under 45K chars (proves mode sections were extracted)', () => {
const raw = fs.readFileSync(PLANNER_PATH, 'utf-8');
// Normalize CRLF → LF before measuring — Windows checkouts inflate length by ~1 char/line
const content = raw.replace(/\r\n/g, '\n').replace(/\r/g, '\n');
assert.ok(
content.length < PLANNER_EXTRACTED_LIMIT,
`gsd-planner.md is ${content.length} chars, expected < 45K after extracting mode sections`
);
});
});
// ─── Reference files exist ───────────────────────────────────────────────────
describe('extracted reference files exist', () => {
test('planner-gap-closure.md exists', () => {
assert.ok(fs.existsSync(GAP_CLOSURE_REF), `Missing: ${GAP_CLOSURE_REF}`);
});
test('planner-revision.md exists', () => {
assert.ok(fs.existsSync(REVISION_REF), `Missing: ${REVISION_REF}`);
});
test('planner-reviews.md exists', () => {
assert.ok(fs.existsSync(REVIEWS_REF), `Missing: ${REVIEWS_REF}`);
});
});
// ─── gsd-planner.md contains reference pointers ──────────────────────────────
describe('gsd-planner.md contains reference pointers to extracted files', () => {
let plannerContent;
test('planner references planner-gap-closure.md', () => {
plannerContent = plannerContent || fs.readFileSync(PLANNER_PATH, 'utf-8');
assert.ok(
plannerContent.includes('planner-gap-closure.md'),
'gsd-planner.md must reference planner-gap-closure.md'
);
});
test('planner references planner-revision.md', () => {
plannerContent = plannerContent || fs.readFileSync(PLANNER_PATH, 'utf-8');
assert.ok(
plannerContent.includes('planner-revision.md'),
'gsd-planner.md must reference planner-revision.md'
);
});
test('planner references planner-reviews.md', () => {
plannerContent = plannerContent || fs.readFileSync(PLANNER_PATH, 'utf-8');
assert.ok(
plannerContent.includes('planner-reviews.md'),
'gsd-planner.md must reference planner-reviews.md'
);
});
});
// ─── Reference files contain key content ────────────────────────────────────
describe('reference files contain key content from original mode sections', () => {
test('planner-gap-closure.md contains gap closure content', () => {
const content = fs.readFileSync(GAP_CLOSURE_REF, 'utf-8');
const hasGapContent = content.toLowerCase().includes('gap_closure') ||
content.toLowerCase().includes('gap closure') ||
content.includes('GAP CLOSURE') ||
content.includes('--gaps');
assert.ok(hasGapContent, 'planner-gap-closure.md must contain gap closure mode content');
});
test('planner-revision.md contains revision content', () => {
const content = fs.readFileSync(REVISION_REF, 'utf-8');
const hasRevisionContent = content.includes('revision') ||
content.includes('Revision') ||
content.includes('REVISION') ||
content.includes('revision_context');
assert.ok(hasRevisionContent, 'planner-revision.md must contain revision mode content');
});
test('planner-reviews.md contains reviews content', () => {
const content = fs.readFileSync(REVIEWS_REF, 'utf-8');
const hasReviewsContent = content.includes('reviews') ||
content.includes('Reviews') ||
content.includes('REVIEWS') ||
content.includes('REVIEWS.md');
assert.ok(hasReviewsContent, 'planner-reviews.md must contain reviews mode content');
});
});
// ────────────────────────────────────────────────────────────────────────
// Folded from tests/bug-3320-planner-deep-work-rules.test.cjs — consolidation epic #1969 (B4 #1973)
// ────────────────────────────────────────────────────────────────────────
{
const { describe: __foldDescribe } = require('node:test');
__foldDescribe("folded:bug-3320-planner-deep-work-rules (consolidation epic #1969 B4 #1973)", () => {
'use strict';
// allow-test-rule: source-text-is-product [#3320]
// The bug is a contradiction in prompt/workflow source text. These assertions
// intentionally pin the contract words that planner agents consume.
const { describe, test } = require('node:test');
const assert = require('node:assert/strict');
const fs = require('fs');
const path = require('path');
const ROOT = path.join(__dirname, '..');
const PLANNER_AGENT = path.join(ROOT, 'agents', 'gsd-planner.md');
const PLAN_PHASE_WORKFLOW = path.join(ROOT, 'gsd-core', 'workflows', 'plan-phase.md');
function read(relativePath) {
return fs.readFileSync(path.join(ROOT, relativePath), 'utf8');
}
function extractDeepWorkRules() {
const workflow = fs.readFileSync(PLAN_PHASE_WORKFLOW, 'utf8');
const match = workflow.match(/<deep_work_rules>[\s\S]*?<\/deep_work_rules>/);
assert.ok(match, 'plan-phase.md must contain a deep_work_rules block');
return match[0];
}
describe('bug #3320 planner action contract', () => {
test('planner agent explicitly keeps implementation code out of action blocks', () => {
const planner = fs.readFileSync(PLANNER_AGENT, 'utf8');
assert.match(
planner,
/NEVER place fenced code blocks \(```\) inside `<action>`/,
'gsd-planner.md must explicitly forbid fenced implementation code in <action>'
);
assert.match(
planner,
/Code excerpts belong in `<read_first>` source files or referenced context/,
'gsd-planner.md must route code excerpts to context/read-first material'
);
});
test('plan-phase deep_work_rules no longer requires self-sufficient code dumps', () => {
const deepWorkRules = extractDeepWorkRules();
assert.doesNotMatch(
deepWorkRules,
/copy them into the action verbatim/,
'deep_work_rules must not tell planners to copy source material verbatim into <action>'
);
assert.doesNotMatch(
deepWorkRules,
/complete the task from the action text alone/,
'deep_work_rules must not make <action> self-sufficient without read_first/context'
);
assert.match(
deepWorkRules,
/Do not include full file contents, fenced code blocks, or complete implementations in `<action>`/,
'deep_work_rules must explicitly bound concrete values to avoid code dumping'
);
});
test('plan-phase acceptance criteria allow behavior and test assertions', () => {
const deepWorkRules = extractDeepWorkRules();
assert.match(
deepWorkRules,
/behavior assertion/,
'acceptance criteria must allow behavior assertions, not just grep checks'
);
assert.match(
deepWorkRules,
/test command/,
'acceptance criteria must allow test-command assertions'
);
});
test('quality gate matches the reconciled planner contract', () => {
const workflow = read('gsd-core/workflows/plan-phase.md');
assert.match(
workflow,
/Every task has `<acceptance_criteria>` with behavior, test-command, CLI, or source assertions/,
'quality gate must not narrow acceptance criteria back to grep-only checks'
);
assert.match(
workflow,
/Every `<action>` contains concrete identifiers without fenced code blocks or full implementations/,
'quality gate must enforce concrete prose without implementation dumps'
);
});
});
});
}