'use strict';
/**
* decisions.test.cjs — regression tests for parseDecisions / extractDecisions
* and the check.decision-coverage-plan gate fail-loud behavior.
*
* Bug #1364: parseDecisions returns [] when decisions appear under markdown headers
* (## Locked decisions / ## Implementation decisions) instead of a
* ... block. Also, em-dash bullets
* '- **D-1 — title** body' are dropped as unparseable.
*
* Bug #1365: check.decision-coverage-plan silently returns passed:true when
* CONTEXT.md is decision-shaped (has block or D- tokens) but 0
* decisions are extracted — gate now returns passed:false with format-mismatch
* reason (could-not-parse outcome).
*
* Parser QA matrix (CONTRIBUTING.md 'Parser and project-file inputs'):
* - CRLF newlines
* - Unicode in a heading
* - Decisions-looking heading inside a fenced code block (must be ignored)
* - Both bullet forms: colon ('- **D-1:** ...') and em-dash ('- **D-1 — ...**')
* - Genuinely empty / no-decisions case (still [])
* - Pre-existing block behaviour is unaffected (regression guard)
*/
const { describe, test, beforeEach, afterEach } = require('node:test');
const assert = require('node:assert/strict');
const fs = require('fs');
const path = require('path');
const { parseDecisions, extractDecisions } = require('../gsd-core/bin/lib/decisions.cjs');
const { runGsdTools, createTempProject, cleanup } = require('./helpers.cjs');
// ─── Regression #1364: markdown-header fallback ───────────────────────────────
describe('parseDecisions — markdown header fallback (#1364)', () => {
test('extracts D-NN from ## Locked decisions header (em-dash bullets)', () => {
const md = '## Locked decisions\n- **D-1 — a** x\n- **D-2 — b** y\n';
const ds = parseDecisions(md);
assert.deepStrictEqual(
ds.map(d => d.id),
['D-1', 'D-2'],
'should extract D-1 and D-2 from em-dash bullets under markdown header'
);
});
test('extracts D-NN from ## Implementation decisions header (colon bullets)', () => {
const md = '## Implementation decisions\n- **D-01:** Use OAuth 2.0\n- **D-02:** Redis sessions\n';
const ds = parseDecisions(md);
assert.deepStrictEqual(ds.map(d => d.id), ['D-01', 'D-02']);
assert.strictEqual(ds[0].text, 'Use OAuth 2.0');
});
test('extracts D-NN from ### Decisions header (mixed bullets)', () => {
const md = '### Decisions\n- **D-1:** colon form\n- **D-2 — em-dash form** body text\n';
const ds = parseDecisions(md);
assert.deepStrictEqual(ds.map(d => d.id), ['D-1', 'D-2']);
});
test('extracts from header with case variation (## DECISIONS)', () => {
const md = '## DECISIONS\n- **D-10:** uppercase heading\n';
const ds = parseDecisions(md);
assert.deepStrictEqual(ds.map(d => d.id), ['D-10']);
});
test('extracts from heading with Unicode in surrounding text (## \u{1F512} Locked decisions)', () => {
// Unicode chars before "decisions" must not break the heading matcher.
const md = '## \u{1F512} Locked decisions\n- **D-3 — unicode heading** value\n';
const ds = parseDecisions(md);
assert.deepStrictEqual(ds.map(d => d.id), ['D-3']);
});
test('CRLF newlines work for markdown-header path', () => {
const md = '## Locked decisions\r\n- **D-5:** crlf bullet\r\n- **D-6 — em dash** crlf em\r\n';
const ds = parseDecisions(md);
assert.deepStrictEqual(ds.map(d => d.id), ['D-5', 'D-6']);
});
test('decisions-looking heading inside a fenced code block is ignored', () => {
const md = [
'```',
'## Locked decisions',
'- **D-99:** fake',
'```',
'',
'## Real decisions',
'- **D-1:** real',
].join('\n');
const ds = parseDecisions(md);
assert.deepStrictEqual(ds.map(d => d.id), ['D-1']);
});
test('generic prose heading does not produce false positives', () => {
const md = '## Context\n- some bullet\n\n## Architecture\n- another bullet\n';
assert.deepStrictEqual(parseDecisions(md), []);
});
test('no decisions anywhere returns [] (no false positives)', () => {
assert.deepStrictEqual(parseDecisions('## Locked decisions\n\nNo bullets here.\n'), []);
});
test('content with no decisions heading and no block returns []', () => {
assert.deepStrictEqual(parseDecisions('# Just a title\nsome prose\n'), []);
});
});
// ─── Regression #1364: em-dash bullet inside existing block ───────
describe('parseDecisions — em-dash bullet form inside block (#1364)', () => {
test('em-dash bullet is parsed inside a block', () => {
const md = '\n- **D-1 — my title** body text\n\n';
const ds = parseDecisions(md);
assert.deepStrictEqual(ds.map(d => d.id), ['D-1']);
assert.ok(ds[0].text.length > 0, 'text must not be empty');
});
test('em-dash bullet with alphanumeric ID is parsed', () => {
const md = '\n- **D-INFRA-01 — infra decision** body\n\n';
const ds = parseDecisions(md);
assert.deepStrictEqual(ds.map(d => d.id), ['D-INFRA-01']);
});
});
// ─── Regression guard: pre-existing block behaviour unchanged ─────
describe('parseDecisions — existing block still works (#1364 guard)', () => {
test('colon form inside block still parses', () => {
const md = '\n- **D-1:** colon form\n\n';
const ds = parseDecisions(md);
assert.deepStrictEqual(ds.map(d => d.id), ['D-1']);
assert.strictEqual(ds[0].text, 'colon form');
});
test('multiple D-NN in block with categories still works', () => {
const md = `\n### Auth\n- **D-01:** OAuth\n### Storage\n- **D-02:** Postgres\n\n`;
const ds = parseDecisions(md);
assert.deepStrictEqual(ds.map(d => d.id), ['D-01', 'D-02']);
assert.strictEqual(ds[0].category, 'Auth');
});
test('D-IDs outside the block are still ignored when a block is present', () => {
const md = '- **D-99:** outside\n\n- **D-01:** inside\n\n- **D-77:** after\n';
const ds = parseDecisions(md);
assert.deepStrictEqual(ds.map(d => d.id), ['D-01']);
});
test('empty / null / undefined still return []', () => {
assert.deepStrictEqual(parseDecisions(''), []);
assert.deepStrictEqual(parseDecisions(null), []);
assert.deepStrictEqual(parseDecisions(undefined), []);
});
});
// ─── extractDecisions outcome: 'none-present' and 'could-not-parse' ──────────
describe('extractDecisions — typed outcome (#1364 + #1365)', () => {
test('returns outcome:parsed with decisions array when block present', () => {
const md = '\n- **D-1:** OAuth 2.0\n\n';
const result = extractDecisions(md);
assert.strictEqual(result.outcome, 'parsed');
assert.strictEqual(result.decisions.length, 1);
assert.strictEqual(result.decisions[0].id, 'D-1');
});
test('returns outcome:parsed for markdown-header path', () => {
const md = '## Locked decisions\n- **D-2:** use Redis\n';
const result = extractDecisions(md);
assert.strictEqual(result.outcome, 'parsed');
assert.strictEqual(result.decisions.length, 1);
});
test('returns outcome:none-present for genuinely empty content', () => {
const result = extractDecisions('# Just a title\nsome prose without decisions\n');
assert.strictEqual(result.outcome, 'none-present');
assert.deepStrictEqual(result.decisions, []);
});
test('returns outcome:none-present for empty string', () => {
const result = extractDecisions('');
assert.strictEqual(result.outcome, 'none-present');
});
test('returns outcome:could-not-parse when block present but yields 0 decisions', () => {
// A block with no parseable bullets is decision-shaped
const md = '\n\nJust prose, no D-NN bullets\n\n\n';
const result = extractDecisions(md);
assert.strictEqual(result.outcome, 'could-not-parse');
assert.deepStrictEqual(result.decisions, []);
});
test('returns outcome:could-not-parse when D- token present but no parseable decisions', () => {
// Content references D-01 in prose but it's malformed — not in a parseable bullet
const md = '# Context\n\nSee also D-01 for background. No block, no heading.\n';
const result = extractDecisions(md);
assert.strictEqual(result.outcome, 'could-not-parse');
assert.deepStrictEqual(result.decisions, []);
});
test('returns outcome:could-not-parse when /decisions?/i heading present but 0 decisions extracted', () => {
// Header present but no actual D-NN bullets under it
const md = '## Locked decisions\n\nNo D-NN bullets here, just prose.\n';
const result = extractDecisions(md);
assert.strictEqual(result.outcome, 'could-not-parse');
assert.deepStrictEqual(result.decisions, []);
});
test('returns outcome:none-present for generic prose with no decision signals', () => {
// No block, no /decisions?/i heading, no \bD- token — genuinely no decisions
const md = '## Context\n\nSome architecture notes.\n\n## Goals\n\nBe fast.\n';
const result = extractDecisions(md);
assert.strictEqual(result.outcome, 'none-present');
});
test('parseDecisions delegates correctly (thin wrapper)', () => {
// parseDecisions is a thin delegate that returns extractDecisions().decisions
const md = '\n- **D-1:** foo\n\n';
const fromExtract = extractDecisions(md).decisions;
const fromParse = parseDecisions(md);
assert.deepStrictEqual(fromParse, fromExtract);
});
});
// ─── QA matrix for parser correctness ────────────────────────────────────────
describe('parseDecisions — parser QA matrix', () => {
test('### category headings inside a decisions block set category', () => {
const md = '\n### Auth\n- **D-01:** OAuth 2.0\n### Storage\n- **D-02:** Postgres\n';
const ds = parseDecisions(md);
assert.strictEqual(ds[0].category, 'Auth');
assert.strictEqual(ds[1].category, 'Storage');
});
test("### Claude's Discretion section sets trackable:false", () => {
const md = "\n### Claude's Discretion\n- **D-01:** internal\n";
const ds = parseDecisions(md);
assert.strictEqual(ds[0].trackable, false);
});
test('[informational] tag sets trackable:false', () => {
const md = '\n- **D-01 [informational]:** ref only\n';
const ds = parseDecisions(md);
assert.strictEqual(ds[0].trackable, false);
});
test('[deferred] tag sets trackable:false', () => {
const md = '\n- **D-01 [deferred]:** not yet\n';
const ds = parseDecisions(md);
assert.strictEqual(ds[0].trackable, false);
});
test('continuation lines append to text (tab-indented)', () => {
const md = '\n- **D-01:** first line\n\tcontinued here\n';
const ds = parseDecisions(md);
assert.ok(ds[0].text.includes('first line'), 'must include first line');
assert.ok(ds[0].text.includes('continued here'), 'must include continuation');
});
test('CRLF inside a block still parses', () => {
const md = '\r\n- **D-01:** crlf decision\r\n';
const ds = parseDecisions(md);
assert.deepStrictEqual(ds.map(d => d.id), ['D-01']);
});
test('fenced code block inside document does not pollute decisions', () => {
const md = [
'```',
'',
'- **D-99:** fake in fence',
'',
'```',
'',
'',
'- **D-01:** real',
'',
].join('\n');
const ds = parseDecisions(md);
assert.deepStrictEqual(ds.map(d => d.id), ['D-01']);
});
test('alphanumeric IDs (D-INFRA-01) are accepted', () => {
const md = '\n- **D-INFRA-01:** infra call\n';
const ds = parseDecisions(md);
assert.deepStrictEqual(ds.map(d => d.id), ['D-INFRA-01']);
});
test('em-dash bullet form with tags still sets tags', () => {
const md = '\n- **D-01 [informational] — title** body\n';
const ds = parseDecisions(md);
assert.deepStrictEqual(ds.map(d => d.id), ['D-01']);
assert.ok(ds[0].tags.includes('informational'));
});
});
// ─── #1365: fail-loud gate — check.decision-coverage-plan ────────────────────
/**
* Gate-level tests for the could-not-parse fail-loud behavior (#1365).
* These exercise cmdDecisionCoveragePlan via the real CLI (check decision-coverage-plan).
*
* Naming: check.decision-coverage-plan is invoked as `query check.decision-coverage-plan`.
* The gate lives in check-command-router.cts; outcome flows from decisions.cts extractDecisions.
*/
function writeContextFile(phaseDir, content) {
fs.writeFileSync(path.join(phaseDir, 'CONTEXT.md'), content);
}
function writePlanFile(phaseDir, name, body) {
fs.writeFileSync(path.join(phaseDir, `${name}-PLAN.md`), body);
}
function writePlanningConfig(planningDir, config) {
fs.writeFileSync(path.join(planningDir, 'config.json'), JSON.stringify(config));
}
function runDecisionCoveragePlan(phaseDir, contextPath, cwd) {
return runGsdTools(['query', 'check.decision-coverage-plan', phaseDir, contextPath], cwd);
}
describe('check.decision-coverage-plan — fail-loud on could-not-parse (#1365)', () => {
let tmpDir;
let planningDir;
let phaseDir;
beforeEach(() => {
tmpDir = createTempProject('gsd-1365-');
planningDir = path.join(tmpDir, '.planning');
phaseDir = path.join(planningDir, 'phases', '01-init');
fs.mkdirSync(phaseDir, { recursive: true });
});
afterEach(() => cleanup(tmpDir));
test('decision-shaped CONTEXT.md with block but 0 parseable decisions → passed:false (not silent skip)', () => {
// #1365 bug: gate used to return passed:true/skipped for this case.
writeContextFile(phaseDir, [
'# Phase 1',
'',
'',
'',
'See the ADR for architecture choices. No D-NN bullets here.',
'',
'',
].join('\n'));
writePlanFile(phaseDir, '01', '# Plan\n## Objective\nImplement feature.\n');
const contextPath = path.join(phaseDir, 'CONTEXT.md');
const result = runDecisionCoveragePlan(phaseDir, contextPath, tmpDir);
const raw = result.output || '';
const parsed = JSON.parse(raw);
assert.strictEqual(parsed.passed, false,
`Gate must return passed:false for decision-shaped but 0-extracted content. Got: ${JSON.stringify(parsed)}`);
const msg = (parsed.message || parsed.reason || '').toLowerCase();
assert.ok(
msg.includes('format') || msg.includes('mismatch') || msg.includes('could not parse') || msg.includes('parse'),
`Message must mention format mismatch or parsing issue. Got: "${parsed.message}"`
);
});
test('CONTEXT.md with \\bD- token in prose but no parseable decisions → passed:false', () => {
writeContextFile(phaseDir, [
'# Phase 1 Context',
'',
'See D-01 for the authentication decision and D-02 for storage.',
'These are just prose references, not structured decisions.',
].join('\n'));
writePlanFile(phaseDir, '01', '# Plan\nRef D-01.\n');
const contextPath = path.join(phaseDir, 'CONTEXT.md');
const result = runDecisionCoveragePlan(phaseDir, contextPath, tmpDir);
const raw = result.output || '';
const parsed = JSON.parse(raw);
assert.strictEqual(parsed.passed, false,
`Gate must return passed:false for D-token-but-no-parseable content. Got: ${JSON.stringify(parsed)}`);
});
test('genuinely empty CONTEXT.md (no decision signals) → passed:true/skipped (no false alarm)', () => {
writeContextFile(phaseDir, [
'# Phase 1 Context',
'',
'## Goals',
'Build the feature.',
'',
'## Architecture',
'Use Node.js and TypeScript.',
].join('\n'));
writePlanFile(phaseDir, '01', '# Plan\nImplement the feature.\n');
const contextPath = path.join(phaseDir, 'CONTEXT.md');
const result = runDecisionCoveragePlan(phaseDir, contextPath, tmpDir);
const raw = result.output || '';
const parsed = JSON.parse(raw);
assert.strictEqual(parsed.passed, true,
`Gate must NOT false-alarm on genuinely empty content. Got: ${JSON.stringify(parsed)}`);
assert.strictEqual(parsed.skipped, true,
`Gate must skip when there are no decisions. Got: ${JSON.stringify(parsed)}`);
});
test('well-formed CONTEXT.md with real decisions all covered → passed:true (normal case)', () => {
writeContextFile(phaseDir, [
'# Context',
'',
'',
'### Implementation',
'- **D-01:** Use OAuth 2.0 for authentication',
'',
].join('\n'));
writePlanFile(phaseDir, '01', '# Plan\n## Must Haves\n- D-01: Implement OAuth 2.0\n');
const contextPath = path.join(phaseDir, 'CONTEXT.md');
const result = runDecisionCoveragePlan(phaseDir, contextPath, tmpDir);
const raw = result.output || '';
const parsed = JSON.parse(raw);
assert.strictEqual(parsed.passed, true,
`Real decisions covered → must pass. Got: ${JSON.stringify(parsed)}`);
assert.strictEqual(parsed.skipped, false);
});
test('well-formed CONTEXT.md with decisions heading (markdown-header) all covered → passed:true', () => {
// After #1364 fix: markdown-header decisions are now extractable and coverable
writeContextFile(phaseDir, [
'# Context',
'',
'## Implementation decisions',
'',
'- **D-01:** Use Redis for caching',
].join('\n'));
writePlanFile(phaseDir, '01', '# Plan\n## Must Haves\n- D-01: Implement Redis caching\n');
const contextPath = path.join(phaseDir, 'CONTEXT.md');
const result = runDecisionCoveragePlan(phaseDir, contextPath, tmpDir);
const raw = result.output || '';
const parsed = JSON.parse(raw);
assert.strictEqual(parsed.passed, true,
`Markdown-header decisions covered → must pass. Got: ${JSON.stringify(parsed)}`);
assert.strictEqual(parsed.skipped, false);
assert.strictEqual(parsed.total, 1);
assert.strictEqual(parsed.covered, 1);
});
test('CONTEXT.md missing → passed:true/skipped (unchanged behavior)', () => {
const contextPath = path.join(phaseDir, 'NONEXISTENT-CONTEXT.md');
const result = runDecisionCoveragePlan(phaseDir, contextPath, tmpDir);
const raw = result.output || '';
const parsed = JSON.parse(raw);
assert.strictEqual(parsed.passed, true);
assert.strictEqual(parsed.skipped, true);
});
test('gate disabled by config → passed:true/skipped (unchanged behavior)', () => {
writeContextFile(phaseDir, '\nNo D-NN bullets\n');
writePlanningConfig(planningDir, { workflow: { context_coverage_gate: false } });
const contextPath = path.join(phaseDir, 'CONTEXT.md');
const result = runDecisionCoveragePlan(phaseDir, contextPath, tmpDir);
const raw = result.output || '';
const parsed = JSON.parse(raw);
assert.strictEqual(parsed.passed, true);
assert.strictEqual(parsed.skipped, true);
});
});
describe('check.decision-coverage-plan — boundary/threshold tests (#1365)', () => {
let tmpDir;
let planningDir;
let phaseDir;
beforeEach(() => {
tmpDir = createTempProject('gsd-1365-bva-');
planningDir = path.join(tmpDir, '.planning');
phaseDir = path.join(planningDir, 'phases', '01-init');
fs.mkdirSync(phaseDir, { recursive: true });
});
afterEach(() => cleanup(tmpDir));
test('exactly 1 decision extracted (limit == 1) → not could-not-parse', () => {
writeContextFile(phaseDir, '\n- **D-01:** single decision\n');
writePlanFile(phaseDir, '01', '# Plan\n## Objective\nRef D-01.\n');
const contextPath = path.join(phaseDir, 'CONTEXT.md');
const result = runDecisionCoveragePlan(phaseDir, contextPath, tmpDir);
const parsed = JSON.parse(result.output || '');
assert.strictEqual(parsed.passed, true);
assert.strictEqual(parsed.skipped, false);
assert.strictEqual(parsed.total, 1);
assert.strictEqual(parsed.covered, 1);
});
test('FIX A: empty scaffold (limit - 1 == 0, no D- token) → none-present → passed:true/skipped (NOT blocked)', () => {
// FIX A: An empty scaffold has no D- tokens → none-present, gate passes.
// REGRESSION: previously returned could-not-parse → passed:false, blocking legitimate phases.
writeContextFile(phaseDir, '\n\n');
writePlanFile(phaseDir, '01', '# Plan\nSome plan.\n');
const contextPath = path.join(phaseDir, 'CONTEXT.md');
const result = runDecisionCoveragePlan(phaseDir, contextPath, tmpDir);
const parsed = JSON.parse(result.output || '');
assert.strictEqual(parsed.passed, true,
`Empty scaffold → none-present → passed:true. Got: ${JSON.stringify(parsed)}`);
assert.strictEqual(parsed.skipped, true,
`Empty scaffold → none-present → skipped:true. Got: ${JSON.stringify(parsed)}`);
});
test('FIX A: block with D- token in prose (not a bullet) → could-not-parse → passed:false', () => {
// If the block contains a D- token but not as a parseable bullet → could-not-parse
writeContextFile(phaseDir, '\nD-01 is mentioned in prose but not as a bullet.\n');
writePlanFile(phaseDir, '01', '# Plan\nSome plan.\n');
const contextPath = path.join(phaseDir, 'CONTEXT.md');
const result = runDecisionCoveragePlan(phaseDir, contextPath, tmpDir);
const parsed = JSON.parse(result.output || '');
assert.strictEqual(parsed.passed, false,
`D-token-in-prose → could-not-parse → passed:false. Got: ${JSON.stringify(parsed)}`);
});
});
// ─── FIX A regressions: tighten could-not-parse (empty scaffold / none-present) ───
describe('FIX A: tighten could-not-parse — empty scaffolds must not block (#1372)', () => {
test('empty scaffold → none-present (gate clean)', () => {
// REGRESSION: previously returned could-not-parse, blocking legitimate phases
const result = extractDecisions('');
assert.strictEqual(result.outcome, 'none-present',
`Empty scaffold must be none-present. Got: ${result.outcome}`);
assert.deepStrictEqual(result.decisions, []);
});
test('## Decisions heading with prose only, no D- bullets → none-present', () => {
// A heading with only prose and no D- tokens is not decision-shaped
const md = '## Decisions\n\nArchitecture is handled via ADR-001.\n\nSee docs.\n';
const result = extractDecisions(md);
assert.strictEqual(result.outcome, 'none-present',
`Prose-only decisions heading must be none-present. Got: ${result.outcome}`);
});
test('all-discretion block (### Claude’s Discretion, no D- bullets) → none-present', () => {
// An all-discretion block with no D- tokens is a legitimate empty context
const curlySingle = '’';
const md = '\n### Claude' + curlySingle + 's Discretion\n\nAll implementation details left to Claude.\n';
const result = extractDecisions(md);
assert.strictEqual(result.outcome, 'none-present',
`All-discretion block with no D- bullets must be none-present. Got: ${result.outcome}`);
});
test(' block with D- token in prose (not bullet) → still could-not-parse', () => {
// A D- token that is NOT in a parseable bullet format still signals format mismatch
const md = '\nSee D-01 for the decision.\n';
const result = extractDecisions(md);
assert.strictEqual(result.outcome, 'could-not-parse',
`D-token in block prose must be could-not-parse. Got: ${result.outcome}`);
});
});
// ─── FIX B regressions: parse-miss must fail loud ────────────────────────────
describe('FIX B: parse-miss on malformed D-NN bullet → could-not-parse (#1372)', () => {
test('valid D-01 + malformed D-02 bullet → outcome could-not-parse (not silent pass)', () => {
// REGRESSION: previously returned outcome:parsed (silently dropped D-02)
const md = '\n- **D-01:** Use OAuth 2.0\n- **D-02 malformed no colon or dash** text\n';
const result = extractDecisions(md);
assert.strictEqual(result.outcome, 'could-not-parse',
`Mixed valid+malformed must be could-not-parse. Got: ${result.outcome}`);
});
test('valid D-01 + malformed D-02 bullet → gate passed:false (not silent skip)', () => {
// Gate-level regression: a parse-miss must propagate as passed:false
// Uses extractDecisions directly to confirm gate-layer behavior
const md = '\n- **D-01:** Use OAuth 2.0\n- **D-02 malformed no colon or dash** text\n';
const result = extractDecisions(md);
// The check-command-router uses outcome === 'could-not-parse' && decisions.length where
// trackable.length === 0 → passed:false. Confirm outcome propagates correctly.
assert.strictEqual(result.outcome, 'could-not-parse');
// D-01 was parsed (it was valid); the result still contains it for context
// but the overall outcome is could-not-parse because of the parse-miss on D-02.
assert.ok(result.decisions.some(d => d.id === 'D-01'),
`D-01 (valid) must still be in decisions. Got: ${JSON.stringify(result.decisions)}`);
});
test('only malformed D-NN bullet (no valid ones) → could-not-parse', () => {
const md = '\n- **D-01 no colon no dash here** just text\n';
const result = extractDecisions(md);
assert.strictEqual(result.outcome, 'could-not-parse',
`Only-malformed-bullet must be could-not-parse. Got: ${result.outcome}`);
});
});
// ─── FIX B gate-level: parse-miss silently swallowed when covered decision exists ─
describe('FIX B gate-level: parse-miss → passed:false regardless of covered decisions (#1365)', () => {
let tmpDir;
let planningDir;
let phaseDir;
beforeEach(() => {
tmpDir = createTempProject('gsd-1365-fixb-');
planningDir = path.join(tmpDir, '.planning');
phaseDir = path.join(planningDir, 'phases', '01-init');
fs.mkdirSync(phaseDir, { recursive: true });
});
afterEach(() => cleanup(tmpDir));
test('FAIL-FIRST: valid D-01 covered + malformed D-02 → gate must return passed:false (parse-miss wins)', () => {
// CONTEXT.md: D-01 is valid colon-form; D-02 has no colon and no em-dash → parse-miss
// PLAN.md: covers D-01 via ## Must Haves so coverage of D-01 would pass on its own.
// Before fix: decisions.length === 1 (D-01), outcome === 'could-not-parse' →
// guard `decisions.length === 0 && outcome === 'could-not-parse'` is FALSE →
// gate proceeds to coverage → D-01 is covered → passed:true [BUG]
// After fix: outcome === 'could-not-parse' fires regardless of decisions.length →
// gate returns passed:false with reason:'could-not-parse' [CORRECT]
writeContextFile(phaseDir, [
'# Phase 1 Context',
'',
'',
'### Implementation',
'- **D-01:** use JWT tokens',
'- **D-02** ratio 3:1',
'',
].join('\n'));
// D-02 bullet has no colon and no em-dash → parse-miss → outcome:'could-not-parse'
// but D-01 is in decisions with trackable:true
// Plan covers D-01 explicitly via ## Must Haves (DESIGNATED_HEADINGS_RE match)
writePlanFile(phaseDir, '01', [
'# Plan',
'',
'## Must Haves',
'',
'- D-01: implement JWT token issuance and validation',
].join('\n'));
// Pre-check: confirm extractDecisions outcome so we know what the gate is receiving
const extraction = extractDecisions([
'',
'### Implementation',
'- **D-01:** use JWT tokens',
'- **D-02** ratio 3:1',
'',
].join('\n'));
assert.strictEqual(extraction.outcome, 'could-not-parse',
`Pre-check: extractDecisions must return could-not-parse. Got: ${extraction.outcome}`);
assert.ok(extraction.decisions.some(d => d.id === 'D-01'),
`Pre-check: D-01 must be in decisions (coverage would pass for D-01 alone). Got: ${JSON.stringify(extraction.decisions)}`);
assert.strictEqual(extraction.decisions.filter(d => d.trackable).length, 1,
'Pre-check: exactly 1 trackable decision (D-01) — confirms decisions.length === 1 path');
// Gate call: with the old guard `decisions.length === 0 && outcome === 'could-not-parse'`
// this would be skipped (length is 1) and coverage would find D-01 covered → passed:true.
// With the fix this must return passed:false.
const contextPath = path.join(phaseDir, 'CONTEXT.md');
const result = runDecisionCoveragePlan(phaseDir, contextPath, tmpDir);
const parsed = JSON.parse(result.output || '');
assert.strictEqual(parsed.passed, false,
`Gate must return passed:false when parse-miss present, even if covered decisions exist. Got: ${JSON.stringify(parsed)}`);
assert.strictEqual(parsed.reason, 'could-not-parse',
`Gate must report reason:'could-not-parse'. Got: ${JSON.stringify(parsed)}`);
// Message must indicate a format/parse problem (not a coverage gap on D-01)
const msg = (parsed.message || '').toLowerCase();
assert.ok(
msg.includes('could not') || msg.includes('format') || msg.includes('mismatch') || msg.includes('parse'),
`Message must indicate parse/format issue, not D-01 coverage gap. Got: "${parsed.message}"`
);
// Confirm D-01 is NOT in uncovered[] — the failure is parse-miss, not a coverage gap
assert.deepStrictEqual(parsed.uncovered, [],
`uncovered must be empty (D-01 is covered; failure is parse-miss). Got: ${JSON.stringify(parsed.uncovered)}`);
});
test('verify-side: valid D-01 covered + malformed D-02 → verify advisory surfaces could-not-parse', () => {
// Same scenario but via decision-coverage-verify (non-blocking advisory)
writeContextFile(phaseDir, [
'# Phase 1 Context',
'',
'',
'- **D-01:** use JWT tokens',
'- **D-02** ratio 3:1',
'',
].join('\n'));
writePlanFile(phaseDir, '01', '# Plan\n\n## Must Haves\n\n- D-01: implement JWT\n');
const contextPath = path.join(phaseDir, 'CONTEXT.md');
const result = runGsdTools(
['query', 'check.decision-coverage-verify', phaseDir, contextPath],
tmpDir
);
const parsed = JSON.parse(result.output || '');
assert.strictEqual(parsed.reason, 'could-not-parse',
`Verify must surface could-not-parse reason. Got: ${JSON.stringify(parsed)}`);
assert.strictEqual(parsed.blocking, false,
`Verify is always non-blocking. Got: ${JSON.stringify(parsed)}`);
});
});
// ─── FIX C regressions: curly-quote Claude's Discretion ───────────────────────
describe('FIX C: curly-quote Claude’s Discretion → trackable:false (#1372)', () => {
test('### Claude’s Discretion (U+2019 curly apostrophe) sets trackable:false', () => {
// REGRESSION: curly apostrophe was not stripped from category, so
// "claudes discretion" key was not in DISCRETION_HEADINGS → trackable:true
const curlySingle = '’';
const md = '\n### Claude' + curlySingle + 's Discretion\n- **D-01:** internal decision\n';
const ds = parseDecisions(md);
assert.strictEqual(ds.length, 1, 'one decision must be parsed');
assert.strictEqual(ds[0].trackable, false,
`Curly-apostrophe discretion heading must yield trackable:false. Got trackable:${ds[0].trackable}`);
});
test('### Claude‘s Discretion (U+2018 opening quote) sets trackable:false', () => {
const openSingle = '‘';
const md = '\n### Claude' + openSingle + 's Discretion\n- **D-01:** internal decision\n';
const ds = parseDecisions(md);
assert.strictEqual(ds.length, 1);
assert.strictEqual(ds[0].trackable, false,
`Open-single-quote discretion heading must yield trackable:false. Got trackable:${ds[0].trackable}`);
});
test('[folded] tag sets trackable:false (coverage gap fix)', () => {
// Previously NON_TRACKABLE_TAGS included 'folded' but had no dedicated test
const md = '\n- **D-01 [folded]:** folded decision\n';
const ds = parseDecisions(md);
assert.strictEqual(ds.length, 1);
assert.strictEqual(ds[0].trackable, false,
`[folded] tag must yield trackable:false. Got trackable:${ds[0].trackable}`);
assert.ok(ds[0].tags.includes('folded'), 'tags must include "folded"');
});
});
// ─── FIX D regressions: gap-checker surfaces decision parse failure independently ─
describe('FIX D: gap-checker surfaces decision could-not-parse even when requirements exist (#1372)', () => {
const { runGapAnalysis } = require('../gsd-core/bin/lib/gap-checker.cjs');
let tmpDir;
let planningDir;
let phaseDir;
beforeEach(() => {
tmpDir = createTempProject('gsd-1372-fixd-');
planningDir = path.join(tmpDir, '.planning');
phaseDir = path.join(planningDir, 'phases', '01-init');
fs.mkdirSync(phaseDir, { recursive: true });
fs.writeFileSync(path.join(planningDir, 'config.json'), JSON.stringify({}));
});
afterEach(() => cleanup(tmpDir));
test('REQUIREMENTS.md with 1 req + unparseable CONTEXT.md → gap report includes format-mismatch signal', () => {
// REGRESSION: previously the could-not-parse signal was silently masked
// inside `if (items.length === 0)` — when requirements existed, it never fired.
const reqPath = path.join(planningDir, 'REQUIREMENTS.md');
fs.writeFileSync(reqPath, '- [ ] **REQ-01** Some requirement\n');
const ctxMd = '\nSome prose about decisions but no D-NN bullets.\n\n';
fs.writeFileSync(path.join(phaseDir, 'CONTEXT.md'), ctxMd);
fs.writeFileSync(path.join(phaseDir, '01-PLAN.md'), '# Plan\nREQ-01 is covered here.\n');
const result = runGapAnalysis(tmpDir, phaseDir);
assert.ok(
result.summary.includes('format mismatch') || result.summary.includes('possible format'),
`Summary must mention format mismatch. Got: "${result.summary}"`
);
assert.ok(
result.table.includes('format mismatch') || result.table.includes('possible format'),
`Table must include format mismatch note. Got: "${result.table}"`
);
});
test('no REQUIREMENTS.md + unparseable CONTEXT.md → gap report includes format-mismatch signal', () => {
// Pre-existing behavior (items.length === 0 path) must still work
const ctxMd = '\nSome prose about decisions but no D-NN bullets.\n\n';
fs.writeFileSync(path.join(phaseDir, 'CONTEXT.md'), ctxMd);
fs.writeFileSync(path.join(phaseDir, '01-PLAN.md'), '# Plan\nSome plan.\n');
const result = runGapAnalysis(tmpDir, phaseDir);
assert.ok(
result.summary.includes('format mismatch') || result.summary.includes('possible format'),
`Summary must mention format mismatch. Got: "${result.summary}"`
);
});
test('REQUIREMENTS.md with 1 req + valid CONTEXT.md → no mismatch signal (clean path)', () => {
// Ensure the fix does not introduce false positives on valid input
const reqPath = path.join(planningDir, 'REQUIREMENTS.md');
fs.writeFileSync(reqPath, '- [ ] **REQ-01** Some requirement\n');
const ctxMd = '\n- **D-01:** Use OAuth 2.0\n\n';
fs.writeFileSync(path.join(phaseDir, 'CONTEXT.md'), ctxMd);
fs.writeFileSync(path.join(phaseDir, '01-PLAN.md'), '# Plan\nREQ-01 is covered. D-01 is covered.\n');
const result = runGapAnalysis(tmpDir, phaseDir);
assert.ok(
!result.summary.includes('format mismatch') && !result.summary.includes('possible format'),
`Valid input must NOT show format mismatch. Got: "${result.summary}"`
);
});
});
// ─── Regression #1639: titled-colon bullet form '- **D-NN: Title.** body' ─────
// Both bulletColonRe (':**' anchor) and bulletEmDashRe (em-dash) miss the form where a
// title sits between the colon and the closing **, so it was dropped by the parse-miss
// guard and check.decision-coverage-plan passed vacuously when all decisions were titled.
describe('parseDecisions — titled-colon bullet form (#1639)', () => {
test('titled-colon bullet is parsed, not dropped', () => {
const md = '## Locked decisions\n- **D-01: Default sandbox ON.** body\n- **D-02: Reject unsigned.** body two\n';
const out = parseDecisions(md);
assert.equal(out.length, 2, 'should extract both titled-colon decisions (not 0)');
assert.equal(out[0].id, 'D-01');
assert.equal(out[1].id, 'D-02');
});
test('titled-colon coexists with colon-immediate and em-dash forms', () => {
const md = '## Locked decisions\n- **D-01:** plain colon\n- **D-02 — emdash** body\n- **D-03: Titled.** body\n';
const out = parseDecisions(md);
assert.equal(out.length, 3);
assert.deepEqual(out.map((d) => d.id), ['D-01', 'D-02', 'D-03']);
});
test('titled-colon with [tags] still parses id and tags', () => {
const md = '## Locked decisions\n- **D-01 [informational]: Title.** body\n';
const out = parseDecisions(md);
assert.equal(out.length, 1);
assert.equal(out[0].id, 'D-01');
assert.ok(out[0].tags.includes('informational'), `tags should include informational, got ${JSON.stringify(out[0].tags)}`);
});
test('all-titled CONTEXT.md parses every decision (no vacuous 0)', () => {
// The reporter case: 13 decisions all titled → previously all dropped → gate passed vacuously.
let md = '## Locked decisions\n';
for (let i = 1; i <= 13; i++) md += `- **D-${String(i).padStart(2, '0')}: Decision ${i}.** body\n`;
const out = parseDecisions(md);
assert.equal(out.length, 13, 'all 13 titled-colon decisions must parse (not vacuously 0)');
});
});