#2821 reworked parsePhaseFromProse's NAME precedence (dash-vs-paren choice, status-keyword tails, `Milestone:` tails, paren-stripped separator search, the lone-ALL-CAPS-tail rule) but shipped it pinned only by hand-picked examples. The two pre-existing property blocks cover phase-token ANCHORING (#2111) and "N of M" phase extraction; neither touches name precedence. This adds nine properties over the canonical parser. P1 and P9 are the delta guards: both fail against the pre-#2821 paren-first parser (proved with a standalone mutation harness), because each requires a genuine em-dash name to win over a co-present parenthetical. P9 additionally exercises the paren-stripped separator search, since the losing parenthetical itself contains an em-dash. P2-P4 are characterization tests for precedence contracts both parser versions satisfy; P5-P8 pin totality and phase-token extraction, which #2821 left alone. The section comment states which is which so a future reader does not mistake the characterization tests for delta guards. The generator's status-word exclusion filter is a test-local mirror of the private, unexported STATUSY_TAIL_RE. A divergence-guard test pins that mirror to observable parser behavior (not source text, which the no-source-grep rule forbids), so an implementation vocabulary change fails loudly instead of silently weakening every property that depends on the filter. Also clears six pre-existing no-unused-vars lint warnings surfaced by the lint run for this change (dead bindings in four unrelated test files, deleted rather than underscore-renamed); removing the never-called openCodeBlock helper cascaded to its now-unused fs/path/reviewPath consts in both fold scopes. Co-authored-by: Claude Opus 5 <noreply@anthropic.com>
978 lines
44 KiB
JavaScript
978 lines
44 KiB
JavaScript
/**
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* Tests for src/phase-id.cts (compiled to gsd-core/bin/lib/phase-id.cjs).
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*
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* Verifies behavioural contracts of the extracted pure phase-id helpers:
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* - escapeRegex
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* - normalizePhaseName
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* - comparePhaseNum
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* - extractPhaseToken
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* - phaseTokenMatches
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* - phaseMarkdownRegexSource
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* - phaseMarkdownRegexSourceExact
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* - getMilestoneFromPhaseId
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* - getPhaseDirFromPhaseId
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* - core.cjs re-export shims resolve to the exact same functions (single instance)
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*
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* ADR-857 rollout phase 2a / issue #865.
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*/
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'use strict';
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const { test, describe } = require('node:test');
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const assert = require('node:assert/strict');
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const phaseId = require('../gsd-core/bin/lib/phase-id.cjs');
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const fc = require('fast-check');
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// ─── escapeRegex ─────────────────────────────────────────────────────────────
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describe('escapeRegex', () => {
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test('escapes all regex special characters', () => {
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assert.strictEqual(phaseId.escapeRegex('.'), '\\.');
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assert.strictEqual(phaseId.escapeRegex('*'), '\\*');
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assert.strictEqual(phaseId.escapeRegex('+'), '\\+');
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assert.strictEqual(phaseId.escapeRegex('?'), '\\?');
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assert.strictEqual(phaseId.escapeRegex('^'), '\\^');
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assert.strictEqual(phaseId.escapeRegex('$'), '\\$');
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assert.strictEqual(phaseId.escapeRegex('{'), '\\{');
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assert.strictEqual(phaseId.escapeRegex('}'), '\\}');
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assert.strictEqual(phaseId.escapeRegex('('), '\\(');
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assert.strictEqual(phaseId.escapeRegex(')'), '\\)');
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assert.strictEqual(phaseId.escapeRegex('|'), '\\|');
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assert.strictEqual(phaseId.escapeRegex('['), '\\[');
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assert.strictEqual(phaseId.escapeRegex(']'), '\\]');
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assert.strictEqual(phaseId.escapeRegex('\\'), '\\\\');
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});
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test('leaves alphanumeric and hyphen characters unescaped', () => {
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assert.strictEqual(phaseId.escapeRegex('abc'), 'abc');
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assert.strictEqual(phaseId.escapeRegex('01-02'), '01-02');
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assert.strictEqual(phaseId.escapeRegex('v1.0'), 'v1\\.0');
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});
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test('coerces non-string values via String()', () => {
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assert.strictEqual(phaseId.escapeRegex(42), '42');
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assert.strictEqual(phaseId.escapeRegex(null), 'null');
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assert.strictEqual(phaseId.escapeRegex(undefined), 'undefined');
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});
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test('adversarial: path-traversal-like inputs are treated as literals', () => {
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const result = phaseId.escapeRegex('../../../etc/passwd');
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// The dots get escaped; slashes and alphanumeric pass through unchanged
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assert.strictEqual(result, '\\.\\./\\.\\./\\.\\./etc/passwd');
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// The result forms a valid regex (no throws)
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assert.doesNotThrow(() => new RegExp(result));
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});
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test('unicode passthrough', () => {
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assert.strictEqual(phaseId.escapeRegex('Phase Name'), 'Phase Name');
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assert.strictEqual(phaseId.escapeRegex('中文'), '中文');
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});
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});
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// ─── normalizePhaseName ───────────────────────────────────────────────────────
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describe('normalizePhaseName', () => {
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test('zero-pads single-digit phase', () => {
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assert.strictEqual(phaseId.normalizePhaseName('1'), '01');
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assert.strictEqual(phaseId.normalizePhaseName('3'), '03');
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});
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test('leaves two-digit phase unchanged', () => {
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assert.strictEqual(phaseId.normalizePhaseName('12'), '12');
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});
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test('strips project_code prefix before normalizing', () => {
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assert.strictEqual(phaseId.normalizePhaseName('CK-01'), '01');
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assert.strictEqual(phaseId.normalizePhaseName('PROJ-3'), '03');
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assert.strictEqual(phaseId.normalizePhaseName('AB-12'), '12');
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assert.strictEqual(phaseId.normalizePhaseName('MANIFOLD-7'), '07');
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assert.strictEqual(phaseId.normalizePhaseName('APP1-7'), '07');
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assert.strictEqual(phaseId.normalizePhaseName('APP_1-7'), '07');
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});
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test('does not strip leading-underscore pseudo-prefix (#1455)', () => {
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// Valid project_code values must start with [A-Z]; leading underscores
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// (_FOO-7, _-7) are not valid codes and must not be stripped.
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assert.strictEqual(phaseId.normalizePhaseName('_FOO-7'), '_FOO-7');
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assert.strictEqual(phaseId.normalizePhaseName('_-7'), '_-7');
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});
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test('handles letter suffix (preserves original case per #1962)', () => {
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assert.strictEqual(phaseId.normalizePhaseName('12A'), '12A');
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assert.strictEqual(phaseId.normalizePhaseName('3b'), '03b');
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});
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test('handles decimal phase IDs', () => {
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assert.strictEqual(phaseId.normalizePhaseName('12.1'), '12.1');
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assert.strictEqual(phaseId.normalizePhaseName('3.10'), '03.10');
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});
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test('handles milestone-prefixed IDs (M-NN form)', () => {
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assert.strictEqual(phaseId.normalizePhaseName('1-1'), '01-01');
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assert.strictEqual(phaseId.normalizePhaseName('2-3'), '02-03');
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assert.strictEqual(phaseId.normalizePhaseName('1-2-3'), '01-02-03');
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});
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test('custom phase IDs: project_code prefix is stripped, then numeric part is normalized', () => {
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// The project-code prefix is stripped, leaving a numeric token that normalizes to '42' (no leading zero needed for 2+ digits).
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assert.strictEqual(phaseId.normalizePhaseName('PROJ-42'), '42');
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assert.strictEqual(phaseId.normalizePhaseName('AUTH-101'), '101');
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assert.strictEqual(phaseId.normalizePhaseName('MANIFOLD-117'), '117');
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});
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test('custom phase IDs with non-numeric remainder pass through as-is', () => {
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// No project_code pattern, no numeric match → return str as-is
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assert.strictEqual(phaseId.normalizePhaseName('my-phase'), 'my-phase');
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});
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test('coerces non-string values', () => {
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assert.strictEqual(phaseId.normalizePhaseName(5), '05');
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});
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});
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// ─── comparePhaseNum ──────────────────────────────────────────────────────────
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describe('comparePhaseNum', () => {
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test('sorts numeric phases in ascending order', () => {
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const phases = ['03', '01', '10', '02'];
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const sorted = [...phases].sort(phaseId.comparePhaseNum);
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assert.deepStrictEqual(sorted, ['01', '02', '03', '10']);
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});
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test('compares single-digit vs two-digit correctly', () => {
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assert.ok(phaseId.comparePhaseNum('1', '02') < 0);
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assert.ok(phaseId.comparePhaseNum('02', '1') > 0);
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assert.strictEqual(phaseId.comparePhaseNum('1', '01'), 0);
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});
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test('handles decimal phases', () => {
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assert.ok(phaseId.comparePhaseNum('1', '1.1') < 0);
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assert.ok(phaseId.comparePhaseNum('1.1', '1.2') < 0);
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assert.ok(phaseId.comparePhaseNum('1.10', '1.9') > 0);
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assert.strictEqual(phaseId.comparePhaseNum('1.1', '01.1'), 0);
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});
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test('handles letter suffix ordering (no letter < A < B)', () => {
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assert.ok(phaseId.comparePhaseNum('01', '01A') < 0);
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assert.ok(phaseId.comparePhaseNum('01A', '01B') < 0);
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assert.ok(phaseId.comparePhaseNum('01B', '01') > 0);
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});
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test('handles milestone-prefixed IDs', () => {
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assert.ok(phaseId.comparePhaseNum('1-1', '1-2') < 0);
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assert.ok(phaseId.comparePhaseNum('2-1', '1-10') > 0);
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assert.ok(phaseId.comparePhaseNum('1-2-3', '1-2-4') < 0);
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assert.strictEqual(phaseId.comparePhaseNum('01-01', '1-1'), 0);
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});
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test('strips project_code prefix before comparing', () => {
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assert.strictEqual(phaseId.comparePhaseNum('CK-01', '01'), 0);
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assert.ok(phaseId.comparePhaseNum('CK-01', 'CK-02') < 0);
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assert.strictEqual(phaseId.comparePhaseNum('MANIFOLD-117', '117'), 0);
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assert.strictEqual(phaseId.comparePhaseNum('APP1-117', '117'), 0);
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assert.strictEqual(phaseId.comparePhaseNum('APP_1-117', '117'), 0);
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});
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test('handles non-parseable phase IDs via localeCompare fallback', () => {
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// Should not throw on non-numeric IDs
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const result = phaseId.comparePhaseNum('alpha', 'beta');
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assert.strictEqual(typeof result, 'number');
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});
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});
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// ─── extractPhaseToken ────────────────────────────────────────────────────────
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describe('extractPhaseToken', () => {
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test('extracts simple numeric token from directory name', () => {
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assert.strictEqual(phaseId.extractPhaseToken('01-some-phase-name'), '01');
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assert.strictEqual(phaseId.extractPhaseToken('12A-feature'), '12A');
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});
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test('extracts milestone-prefixed numeric token', () => {
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assert.strictEqual(phaseId.extractPhaseToken('01-02-some-name'), '01-02');
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assert.strictEqual(phaseId.extractPhaseToken('02-03-04-deep'), '02-03-04');
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});
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test('extracts token with project_code prefix', () => {
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assert.strictEqual(phaseId.extractPhaseToken('CK-01-some-phase'), 'CK-01');
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assert.strictEqual(phaseId.extractPhaseToken('PROJ-12-feature'), 'PROJ-12');
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assert.strictEqual(phaseId.extractPhaseToken('MANIFOLD-117-feature'), 'MANIFOLD-117');
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assert.strictEqual(phaseId.extractPhaseToken('APP1-117-feature'), 'APP1-117');
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assert.strictEqual(phaseId.extractPhaseToken('APP_1-117-feature'), 'APP_1-117');
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});
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test('extracts glued letter-prefix phase tokens (#1324)', () => {
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assert.strictEqual(phaseId.extractPhaseToken('P0.3-tenant-primitives'), 'P0.3');
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assert.strictEqual(phaseId.extractPhaseToken('P0.0-foundation'), 'P0.0');
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assert.strictEqual(phaseId.extractPhaseToken('P0.16-gate'), 'P0.16');
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assert.strictEqual(phaseId.extractPhaseToken('M1-2-brain'), 'M1-2');
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});
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// #612/#2249: the #2043/#1324 letter-prefixed-decimal family has a NUMERIC-tail
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// variant (`P0.3-2`) the #1324 pins above never covered — every tail there is
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// non-numeric (`-tenant`, `-gate`) or hyphen-only (`M1-2`). PR-1 added a bracket
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// dir reader `{CODE}.{MM}-{PP}` to extractPhaseToken; because that shape is
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// string-indistinguishable from this family when the code ends in a digit, the
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// reader is GATED on an explicit `convention` arg. This characterization locks
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// the convention-less (legacy) reading byte-identical across the WHOLE family —
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// single- AND multi-digit tails — so the gate can never silently regress it.
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// (The multi-digit rows are precisely the ones no discriminator-tightening fix
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// could have preserved: `P0.12-34` stays ambiguous with a padded bracket dir,
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// whereas the convention gate is complete.)
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test('preserves the #2043 numeric-tail letter-prefixed family (convention-less, byte-identical)', () => {
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assert.strictEqual(phaseId.extractPhaseToken('P0.3-2-tenant'), 'P0.3-2');
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assert.strictEqual(phaseId.extractPhaseToken('P1.2-3'), 'P1.2-3');
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assert.strictEqual(phaseId.extractPhaseToken('A0.1-2'), 'A0.1-2');
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assert.strictEqual(phaseId.extractPhaseToken('X9.9-9-name'), 'X9.9-9');
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assert.strictEqual(phaseId.extractPhaseToken('P0.12-34-name'), 'P0.12-34');
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assert.strictEqual(phaseId.extractPhaseToken('P0.34-56-name'), 'P0.34-56');
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assert.strictEqual(phaseId.extractPhaseToken('P0X.3-2'), 'P0X.3-2');
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});
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test('returns the full dirName when no numeric token found', () => {
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assert.strictEqual(phaseId.extractPhaseToken('no-numeric'), 'no-numeric');
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assert.strictEqual(phaseId.extractPhaseToken('alpha'), 'alpha');
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assert.strictEqual(phaseId.extractPhaseToken('phase-name-01'), 'phase-name-01');
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});
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test('stops at first non-numeric-starting segment', () => {
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assert.strictEqual(phaseId.extractPhaseToken('01-02-name-03'), '01-02');
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});
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test('rejects a single-digit slug word after a phase number (#2043)', () => {
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// A phase dir like "46-6-rs-pipeline-orchestrator" (roadmap phase name
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// "6 Rs Pipeline Orchestrator" → slug "6-rs-...") must yield token "46",
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// not "46-6" — the "6" is the slug's first word, not a sub-phase segment.
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assert.strictEqual(phaseId.extractPhaseToken('46-6-rs-pipeline-orchestrator'), '46');
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assert.strictEqual(phaseId.extractPhaseToken('68-6-rs'), '68');
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// Legit cases are unaffected: a real zero-padded milestone-sub-phase pair
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// stays intact, and a single-digit sub-phase after a letter-prefixed
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// milestone id (e.g. "M1-2") is still valid.
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assert.strictEqual(phaseId.extractPhaseToken('01-02-some-name'), '01-02');
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assert.strictEqual(phaseId.extractPhaseToken('M1-2-brain'), 'M1-2');
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// Milestone-prefixed convention: "M1-" strips as a project-code prefix, so
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// the same rule fixes the slug-collision there too — a phase 46 named
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// "6 Rs …" under milestone M1 yields "M1-46", not "M1-46-6". Phase 6 under
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// M1 ("M1-6-rs") correctly stays "M1-6" (the 6 is the phase number).
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assert.strictEqual(phaseId.extractPhaseToken('M1-46-6-rs-pipeline-orchestrator'), 'M1-46');
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assert.strictEqual(phaseId.extractPhaseToken('M1-6-rs-pipeline'), 'M1-6');
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// Single-digit + letter-suffix phase id ("1A") is a real token, not a slug word.
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assert.strictEqual(phaseId.extractPhaseToken('1A-brain'), '1A');
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});
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test('rejects a ≥3-digit slug word after a phase number (#2232)', () => {
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// Roadmap phase name "2026 Photos & Performance" slugifies to
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// "2026-photos-performance"; dir "14-2026-photos-performance" must yield
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// token "14", not "14-2026" — the year is the slug's first word, not a
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// sub-phase segment (the residual case #2043 scoped out).
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assert.strictEqual(phaseId.extractPhaseToken('14-2026-photos-performance'), '14');
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assert.ok(
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phaseId.phaseTokenMatches('14-2026-photos-performance', phaseId.normalizePhaseName('14')),
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'phase 14 must match its own dir despite the year-leading slug',
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);
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// Boundary by continuation-segment digit width (the locked policy: a
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// continuation is EXACTLY the 2-digit zero-padded form the write side emits):
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assert.strictEqual(phaseId.extractPhaseToken('46-6-rs'), '46'); // 1-digit: slug word (#2043)
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assert.strictEqual(phaseId.extractPhaseToken('01-02-name'), '01-02'); // 2-digit: sub-phase
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assert.strictEqual(phaseId.extractPhaseToken('05-100-slug'), '05'); // 3-digit: slug word (policy)
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assert.strictEqual(phaseId.extractPhaseToken('14-2026-photos'), '14'); // 4-digit: year slug word
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// Milestone-prefixed variant collides the same way. Composed from parts
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// rather than written as one literal: GitGuardian's generic high-entropy
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// detector false-positives on the joined form (an alphanumeric run with
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// separators reads as a token/key shape to it). The assertion is identical;
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// only the source spelling changes.
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const mPrefix = 'M1';
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assert.strictEqual(
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phaseId.extractPhaseToken(`${mPrefix}-14-2026-photos`),
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`${mPrefix}-14`,
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);
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});
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});
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// ─── phaseTokenMatches ────────────────────────────────────────────────────────
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describe('phaseTokenMatches', () => {
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test('matches exact token (case-insensitive)', () => {
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assert.ok(phaseId.phaseTokenMatches('01-some-phase', '01'));
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assert.ok(phaseId.phaseTokenMatches('12A-feature', '12A'));
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assert.ok(phaseId.phaseTokenMatches('12A-feature', '12a'));
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});
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test('matches with project_code prefix stripped', () => {
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assert.ok(phaseId.phaseTokenMatches('CK-01-phase', '01'));
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assert.ok(phaseId.phaseTokenMatches('PROJ-12-feature', '12'));
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assert.ok(phaseId.phaseTokenMatches('MANIFOLD-117-feature', '117'));
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assert.ok(phaseId.phaseTokenMatches('APP1-117-feature', '117'));
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assert.ok(phaseId.phaseTokenMatches('APP_1-117-feature', '117'));
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});
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test('matches glued letter-prefix phase dirs (#1324)', () => {
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assert.ok(phaseId.phaseTokenMatches('P0.3-tenant-primitives', 'P0.3'));
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assert.ok(phaseId.phaseTokenMatches('M1-2-brain', 'M1-2'));
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assert.ok(!phaseId.phaseTokenMatches('P0.3-tenant-primitives', 'P0.4'));
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});
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test('does not match when token differs', () => {
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assert.ok(!phaseId.phaseTokenMatches('01-some-phase', '02'));
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assert.ok(!phaseId.phaseTokenMatches('12A-feature', '12B'));
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});
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test('matches milestone-prefixed token', () => {
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assert.ok(phaseId.phaseTokenMatches('01-02-feature', '01-02'));
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assert.ok(!phaseId.phaseTokenMatches('01-02-feature', '01-03'));
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});
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});
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// ─── phaseMarkdownRegexSource ─────────────────────────────────────────────────
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describe('phaseMarkdownRegexSource', () => {
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test('produces a regex source that matches zero-padded variants', () => {
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const src = phaseId.phaseMarkdownRegexSource('1');
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const re = new RegExp(src);
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assert.ok(re.test('1'));
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assert.ok(re.test('01'));
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assert.ok(re.test('001'));
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});
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test('produces source matching a two-digit phase', () => {
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const src = phaseId.phaseMarkdownRegexSource('12');
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const re = new RegExp(src);
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assert.ok(re.test('12'));
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assert.ok(re.test('012'));
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assert.ok(!re.test('13'));
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});
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test('handles letter suffix', () => {
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const src = phaseId.phaseMarkdownRegexSource('12A');
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const re = new RegExp(src, 'i');
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assert.ok(re.test('12A'));
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assert.ok(re.test('012A'));
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});
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test('handles decimal phases', () => {
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const src = phaseId.phaseMarkdownRegexSource('3.1');
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const re = new RegExp(src);
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assert.ok(re.test('3.1'));
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assert.ok(re.test('03.1'));
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assert.ok(!re.test('3.2'));
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});
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test('handles milestone-prefixed phase IDs', () => {
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const src = phaseId.phaseMarkdownRegexSource('1-2');
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const re = new RegExp(src);
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assert.ok(re.test('1-2'));
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assert.ok(re.test('01-02'));
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assert.ok(re.test('01-2'));
|
||
assert.ok(!re.test('1-3'));
|
||
});
|
||
|
||
test('strips project_code prefix before building regex', () => {
|
||
const withPrefix = phaseId.phaseMarkdownRegexSource('CK-01');
|
||
const withoutPrefix = phaseId.phaseMarkdownRegexSource('01');
|
||
assert.strictEqual(withPrefix, withoutPrefix);
|
||
assert.strictEqual(phaseId.phaseMarkdownRegexSource('MANIFOLD-117'), phaseId.phaseMarkdownRegexSource('117'));
|
||
});
|
||
|
||
test('falls back to escaped literal for unparseable input', () => {
|
||
const src = phaseId.phaseMarkdownRegexSource('v1.0');
|
||
assert.strictEqual(typeof src, 'string');
|
||
assert.ok(src.length > 0);
|
||
});
|
||
|
||
test('adversarial: phase num containing regex metacharacters is escaped', () => {
|
||
// e.g. some exotic value that shouldn't break regexp construction
|
||
const src = phaseId.phaseMarkdownRegexSource('3.1');
|
||
// The literal dot in "3.1" should be escaped so it only matches a real dot
|
||
const re = new RegExp(src);
|
||
assert.ok(!re.test('3X1'), 'unescaped dot would match any char — must be escaped');
|
||
});
|
||
});
|
||
|
||
// ─── phaseMarkdownRegexSourceExact ────────────────────────────────────────────
|
||
|
||
describe('phaseMarkdownRegexSourceExact', () => {
|
||
test('returns escaped form for project-code-prefixed IDs', () => {
|
||
const result = phaseId.phaseMarkdownRegexSourceExact('PROJ-42');
|
||
// hyphen is not a regex special char so it passes through unescaped
|
||
assert.strictEqual(result, 'PROJ-42');
|
||
// The result is a valid regex source
|
||
assert.doesNotThrow(() => new RegExp(result));
|
||
assert.strictEqual(phaseId.phaseMarkdownRegexSourceExact('MANIFOLD-117'), 'MANIFOLD-117');
|
||
assert.strictEqual(phaseId.phaseMarkdownRegexSourceExact('APP1-117'), 'APP1-117');
|
||
assert.strictEqual(phaseId.phaseMarkdownRegexSourceExact('APP_1-117'), 'APP_1-117');
|
||
});
|
||
|
||
test('returns null for non-prefixed IDs', () => {
|
||
assert.strictEqual(phaseId.phaseMarkdownRegexSourceExact('01'), null);
|
||
assert.strictEqual(phaseId.phaseMarkdownRegexSourceExact('12A'), null);
|
||
assert.strictEqual(phaseId.phaseMarkdownRegexSourceExact('1-2'), null);
|
||
});
|
||
|
||
test('null coercion: returns null for null/undefined', () => {
|
||
assert.strictEqual(phaseId.phaseMarkdownRegexSourceExact(null), null);
|
||
assert.strictEqual(phaseId.phaseMarkdownRegexSourceExact(undefined), null);
|
||
});
|
||
|
||
test('resulting regex matches the exact prefixed ID', () => {
|
||
const src = phaseId.phaseMarkdownRegexSourceExact('AUTH-101');
|
||
assert.ok(src !== null);
|
||
const re = new RegExp(src);
|
||
assert.ok(re.test('AUTH-101'));
|
||
assert.ok(!re.test('AUTH-102'));
|
||
});
|
||
});
|
||
|
||
// ─── getMilestoneFromPhaseId ──────────────────────────────────────────────────
|
||
|
||
describe('getMilestoneFromPhaseId', () => {
|
||
test('returns vN.0 for a milestone-prefixed phase id', () => {
|
||
assert.strictEqual(phaseId.getMilestoneFromPhaseId('1-01'), 'v1.0');
|
||
assert.strictEqual(phaseId.getMilestoneFromPhaseId('02-03'), 'v2.0');
|
||
assert.strictEqual(phaseId.getMilestoneFromPhaseId('10-5'), 'v10.0');
|
||
});
|
||
|
||
test('returns null for non-milestone-prefixed IDs', () => {
|
||
assert.strictEqual(phaseId.getMilestoneFromPhaseId('01'), null);
|
||
assert.strictEqual(phaseId.getMilestoneFromPhaseId('12A'), null);
|
||
});
|
||
|
||
test('returns null for special sentinel milestones 0 and 999', () => {
|
||
assert.strictEqual(phaseId.getMilestoneFromPhaseId('0-1'), null);
|
||
assert.strictEqual(phaseId.getMilestoneFromPhaseId('999-1'), null);
|
||
});
|
||
|
||
test('strips project_code prefix before parsing', () => {
|
||
assert.strictEqual(phaseId.getMilestoneFromPhaseId('CK-2-01'), 'v2.0');
|
||
assert.strictEqual(phaseId.getMilestoneFromPhaseId('MANIFOLD-2-01'), 'v2.0');
|
||
assert.strictEqual(phaseId.getMilestoneFromPhaseId('APP1-2-01'), 'v2.0');
|
||
assert.strictEqual(phaseId.getMilestoneFromPhaseId('APP_1-2-01'), 'v2.0');
|
||
});
|
||
|
||
test('coerces non-string values', () => {
|
||
// numeric doesn't match the milestone pattern — returns null
|
||
assert.strictEqual(phaseId.getMilestoneFromPhaseId(42), null);
|
||
});
|
||
});
|
||
|
||
// ─── getPhaseDirFromPhaseId ───────────────────────────────────────────────────
|
||
|
||
describe('getPhaseDirFromPhaseId', () => {
|
||
test('returns null for non-milestone-format IDs', () => {
|
||
assert.strictEqual(phaseId.getPhaseDirFromPhaseId('01', null, null), null);
|
||
assert.strictEqual(phaseId.getPhaseDirFromPhaseId('12A', null, null), null);
|
||
});
|
||
|
||
test('constructs dir name from milestone-prefixed phase id (no name, no code)', () => {
|
||
const result = phaseId.getPhaseDirFromPhaseId('1-2', null, null);
|
||
assert.strictEqual(result, '01-02');
|
||
});
|
||
|
||
test('includes phaseName slug', () => {
|
||
const result = phaseId.getPhaseDirFromPhaseId('1-2', 'My Feature', null);
|
||
assert.strictEqual(result, '01-02-my-feature');
|
||
});
|
||
|
||
test('prepends projectCode when provided', () => {
|
||
const result = phaseId.getPhaseDirFromPhaseId('1-2', 'Auth', 'CK');
|
||
assert.strictEqual(result, 'CK-01-02-auth');
|
||
});
|
||
|
||
test('strips project_code from phaseId before parsing', () => {
|
||
const result = phaseId.getPhaseDirFromPhaseId('CK-1-2', null, null);
|
||
assert.strictEqual(result, '01-02');
|
||
assert.strictEqual(phaseId.getPhaseDirFromPhaseId('MANIFOLD-1-2', null, null), '01-02');
|
||
assert.strictEqual(phaseId.getPhaseDirFromPhaseId('APP1-1-2', null, null), '01-02');
|
||
assert.strictEqual(phaseId.getPhaseDirFromPhaseId('APP_1-1-2', null, null), '01-02');
|
||
});
|
||
|
||
test('handles deep decomposition IDs (M-N-N)', () => {
|
||
// m[2] is "02-03" for input "1-2-3" — split and pad each sub-part
|
||
const result = phaseId.getPhaseDirFromPhaseId('1-2-3', null, null);
|
||
assert.strictEqual(result, '01-02-03');
|
||
});
|
||
|
||
test('slug strips leading/trailing hyphens from phaseName', () => {
|
||
const result = phaseId.getPhaseDirFromPhaseId('1-1', ' --some--name-- ', null);
|
||
// normalize: replace non-alnum runs with hyphen, strip edges
|
||
assert.ok(result !== null);
|
||
assert.ok(!result.startsWith('-'));
|
||
assert.ok(!result.endsWith('-'));
|
||
});
|
||
});
|
||
|
||
// ─── parsePhaseFromProse (#2121, anchored — fixes #2111) ─────────────────────
|
||
|
||
describe('parsePhaseFromProse', () => {
|
||
test('null / empty input yields null phase and name', () => {
|
||
assert.deepEqual(phaseId.parsePhaseFromProse(null), { phase: null, name: null });
|
||
assert.deepEqual(phaseId.parsePhaseFromProse(''), { phase: null, name: null });
|
||
});
|
||
|
||
test('#2111: a milestone-completion string carries no phase', () => {
|
||
assert.equal(phaseId.parsePhaseFromProse('Milestone v0.5 complete').phase, null);
|
||
assert.equal(phaseId.parsePhaseFromProse('Milestone v1.0 complete').phase, null);
|
||
assert.equal(phaseId.parsePhaseFromProse('Milestone v2.10 complete').phase, null);
|
||
});
|
||
|
||
test('#2111: a bare version token or stray numeral is not a phase', () => {
|
||
assert.equal(phaseId.parsePhaseFromProse('v0.5').phase, null);
|
||
assert.equal(phaseId.parsePhaseFromProse('v1.0').phase, null);
|
||
assert.equal(phaseId.parsePhaseFromProse('Fixed 12 bugs in v2.3').phase, null);
|
||
});
|
||
|
||
test('a genuine phase value (starting with the token) is parsed', () => {
|
||
assert.deepEqual(phaseId.parsePhaseFromProse('3 of 4 (Delta)'), { phase: '3', name: 'Delta' });
|
||
assert.deepEqual(phaseId.parsePhaseFromProse('3A — Delta'), { phase: '3A', name: 'Delta' });
|
||
assert.equal(phaseId.parsePhaseFromProse('12.1: Setup').phase, '12.1');
|
||
assert.equal(phaseId.parsePhaseFromProse('29 of 30').phase, '29');
|
||
assert.equal(phaseId.parsePhaseFromProse('029').phase, '029');
|
||
});
|
||
|
||
test('a leading project-code prefix is tolerated but not captured (bare token)', () => {
|
||
assert.equal(phaseId.parsePhaseFromProse('MEM-01 — Foo').phase, '01');
|
||
assert.equal(phaseId.parsePhaseFromProse('AB-29 of 30').phase, '29');
|
||
});
|
||
|
||
test('an optional leading "Phase" label is tolerated', () => {
|
||
assert.equal(phaseId.parsePhaseFromProse('Phase 3A — Delta').phase, '3A');
|
||
});
|
||
|
||
test('a status-word parenthetical is filtered from the name', () => {
|
||
// #2736 precedence change (the #1695 AC #3 residual): the em-dash name now
|
||
// wins when it is a genuine name, so `3A — Delta (executing)` yields
|
||
// 'Delta' (previously null — paren-priority harvested the status aside and
|
||
// the status filter nulled it, losing the real name).
|
||
assert.deepEqual(phaseId.parsePhaseFromProse('3A — Delta (executing)'), { phase: '3A', name: 'Delta' });
|
||
assert.equal(phaseId.parsePhaseFromProse('3 (complete)').name, null);
|
||
});
|
||
|
||
test('#2736: status-keyword-aware precedence across the first-party writer shapes', () => {
|
||
// completePhaseCore shape `N — Name (aside)`: the dash name wins; the
|
||
// name's own parenthetical is no longer harvested as the whole name.
|
||
assert.deepEqual(
|
||
phaseId.parsePhaseFromProse('48 — Closer-ruling measurement (D1a)'),
|
||
{ phase: '48', name: 'Closer-ruling measurement' },
|
||
);
|
||
// beginPhaseCore shape `N (Name) — EXECUTING`: the dash tail is a status
|
||
// keyword, so the parenthetical name still wins.
|
||
assert.deepEqual(
|
||
phaseId.parsePhaseFromProse('16 (Native Global Hotkey) — EXECUTING'),
|
||
{ phase: '16', name: 'Native Global Hotkey' },
|
||
);
|
||
// `N — COMPLETE` (state.cts phase-complete body line): status keyword on
|
||
// the dash, no paren → no name.
|
||
assert.deepEqual(phaseId.parsePhaseFromProse('5 — COMPLETE'), { phase: '5', name: null });
|
||
// gsd2-import shape `N (slug) — Milestone: Title`: the dash tail is a
|
||
// milestone label, not a name → the parenthetical still wins.
|
||
assert.deepEqual(
|
||
phaseId.parsePhaseFromProse('06 (setup) — Milestone: Foundation'),
|
||
{ phase: '06', name: 'setup' },
|
||
);
|
||
// Cross-AI review round 1: an em-dash INSIDE a parenthetical name must not
|
||
// be mistaken for the name separator (the dash search runs on a
|
||
// paren-stripped copy).
|
||
assert.deepEqual(
|
||
phaseId.parsePhaseFromProse('16 (Native — Global Hotkey) — EXECUTING'),
|
||
{ phase: '16', name: 'Native — Global Hotkey' },
|
||
);
|
||
// Cross-AI review round 1: status-LIKE dash tails beyond the canonical
|
||
// three lose to a parenthetical name (broader precedence vocabulary +
|
||
// the lone-ALL-CAPS-token heuristic), without changing which extracted
|
||
// names are nulled.
|
||
assert.equal(phaseId.parsePhaseFromProse('3 (Foundation) — COMPLETED').name, 'Foundation');
|
||
assert.equal(phaseId.parsePhaseFromProse('3 (Name) — In progress').name, 'Name');
|
||
assert.equal(phaseId.parsePhaseFromProse('3 (Name) — READY').name, 'Name');
|
||
assert.equal(phaseId.parsePhaseFromProse('3 (Name) — WIP').name, 'Name');
|
||
// With no parenthetical to prefer, an unknown dash tail stays the best guess.
|
||
assert.equal(phaseId.parsePhaseFromProse('3 — WIP').name, 'WIP');
|
||
});
|
||
|
||
test('#2124 review: name quantifiers are length-bounded (ReDoS guard)', () => {
|
||
// A parenthetical within the bound extracts; one longer than the bound is
|
||
// NOT matched — the cap is what prevents O(n^2) backtracking on a crafted
|
||
// untrusted value. Removing the bound would extract the long name → fail.
|
||
assert.equal(phaseId.parsePhaseFromProse('3 (Delta)').name, 'Delta');
|
||
assert.equal(phaseId.parsePhaseFromProse(`3 (${'x'.repeat(201)})`).name, null);
|
||
// A long unterminated "(" run yields no name and still parses the phase.
|
||
assert.deepEqual(phaseId.parsePhaseFromProse(`3 ${'('.repeat(5000)}`), { phase: '3', name: null });
|
||
});
|
||
|
||
test('#2124 review: non-string input is coerced, never throws', () => {
|
||
assert.doesNotThrow(() => phaseId.parsePhaseFromProse(3));
|
||
assert.equal(phaseId.parsePhaseFromProse(3).phase, '3');
|
||
assert.deepEqual(phaseId.parsePhaseFromProse(true), { phase: null, name: null });
|
||
});
|
||
});
|
||
|
||
// ─── stripConfiguredProjectCodePrefix (#2121 / #2104, config-aware) ───────────
|
||
|
||
describe('stripConfiguredProjectCodePrefix', () => {
|
||
test('#2104: a foreign prefix is preserved (not collapsed to a bare phase)', () => {
|
||
assert.equal(phaseId.stripConfiguredProjectCodePrefix('MEM-01', 'LKML'), 'MEM-01');
|
||
});
|
||
|
||
test('the configured prefix is stripped (case-insensitive)', () => {
|
||
assert.equal(phaseId.stripConfiguredProjectCodePrefix('CK-01', 'CK'), '01');
|
||
assert.equal(phaseId.stripConfiguredProjectCodePrefix('LKML-29', 'lkml'), '29');
|
||
assert.equal(phaseId.stripConfiguredProjectCodePrefix('AB-29', 'AB'), '29');
|
||
});
|
||
|
||
test('a value with no prefix is returned unchanged', () => {
|
||
assert.equal(phaseId.stripConfiguredProjectCodePrefix('01', 'CK'), '01');
|
||
assert.equal(phaseId.stripConfiguredProjectCodePrefix('029', 'CK'), '029');
|
||
});
|
||
|
||
test('an absent/empty projectCode preserves the value verbatim', () => {
|
||
assert.equal(phaseId.stripConfiguredProjectCodePrefix('MEM-01', ''), 'MEM-01');
|
||
assert.equal(phaseId.stripConfiguredProjectCodePrefix('MEM-01', null), 'MEM-01');
|
||
assert.equal(phaseId.stripConfiguredProjectCodePrefix('MEM-01', undefined), 'MEM-01');
|
||
});
|
||
});
|
||
|
||
// ─── isForeignPrefixedPhaseQuery (#2121 / #2056) ─────────────────────────────
|
||
|
||
describe('isForeignPrefixedPhaseQuery', () => {
|
||
test('a prefix that is not the configured code is foreign', () => {
|
||
assert.equal(phaseId.isForeignPrefixedPhaseQuery('MEM-01', 'LKML'), true);
|
||
});
|
||
|
||
test('the configured prefix is not foreign (case-insensitive)', () => {
|
||
assert.equal(phaseId.isForeignPrefixedPhaseQuery('CK-01', 'CK'), false);
|
||
assert.equal(phaseId.isForeignPrefixedPhaseQuery('ck-01', 'CK'), false);
|
||
});
|
||
|
||
test('a value with no prefix is never foreign', () => {
|
||
assert.equal(phaseId.isForeignPrefixedPhaseQuery('01', 'CK'), false);
|
||
assert.equal(phaseId.isForeignPrefixedPhaseQuery('29', 'AB'), false);
|
||
});
|
||
|
||
test('a prefixed query with no configured code is foreign; a bare one is not', () => {
|
||
assert.equal(phaseId.isForeignPrefixedPhaseQuery('MEM-01', ''), true);
|
||
assert.equal(phaseId.isForeignPrefixedPhaseQuery('MEM-01', null), true);
|
||
assert.equal(phaseId.isForeignPrefixedPhaseQuery('01', ''), false);
|
||
});
|
||
});
|
||
|
||
// ─── roadmapPhaseLookupSources (#2121, owned here after the move) ─────────────
|
||
|
||
describe('roadmapPhaseLookupSources', () => {
|
||
const PREFIX_TOLERANT = `${phaseId.OPTIONAL_PROJECT_CODE_PREFIX_SOURCE}0*29`;
|
||
|
||
test('a bare numeric query yields the numeric then prefix-tolerant sources', () => {
|
||
const sources = phaseId.roadmapPhaseLookupSources('29');
|
||
assert.deepEqual(sources, ['0*29', PREFIX_TOLERANT]);
|
||
});
|
||
|
||
test('the bare numeric source precedes the prefix-tolerant fallback', () => {
|
||
const sources = phaseId.roadmapPhaseLookupSources('29');
|
||
assert.ok(sources.indexOf('0*29') < sources.indexOf(PREFIX_TOLERANT));
|
||
});
|
||
|
||
test('a project-code-prefixed query adds the exact source first (3 sources)', () => {
|
||
const sources = phaseId.roadmapPhaseLookupSources('AB-29');
|
||
assert.equal(sources.length, 3);
|
||
assert.equal(sources[0], 'AB-29');
|
||
assert.ok(sources.includes('0*29'));
|
||
assert.ok(sources.includes(PREFIX_TOLERANT));
|
||
});
|
||
|
||
test('zero-padding is tolerated: 029 resolves the same sources as 29', () => {
|
||
assert.deepEqual(phaseId.roadmapPhaseLookupSources('029'), phaseId.roadmapPhaseLookupSources('29'));
|
||
});
|
||
|
||
test('sources are deduplicated', () => {
|
||
const sources = phaseId.roadmapPhaseLookupSources('29');
|
||
assert.equal(sources.length, new Set(sources).size);
|
||
});
|
||
});
|
||
|
||
// ─── #2121 property tests (fast-check) ───────────────────────────────────────
|
||
|
||
describe('phase-id canonical surface — properties', () => {
|
||
test('#2111 invariant: a "Milestone vX.Y complete" string never yields a phase', () => {
|
||
fc.assert(
|
||
fc.property(fc.nat(999), fc.nat(999), (major, minor) => {
|
||
return phaseId.parsePhaseFromProse(`Milestone v${major}.${minor} complete`).phase === null;
|
||
}),
|
||
);
|
||
});
|
||
|
||
test('parse↔normalize: a "N of M" prose value extracts N, and it normalizes stably', () => {
|
||
fc.assert(
|
||
fc.property(fc.integer({ min: 1, max: 9999 }), fc.integer({ min: 1, max: 9999 }), (n, m) => {
|
||
const parsed = phaseId.parsePhaseFromProse(`${n} of ${m}`);
|
||
return (
|
||
parsed.phase === String(n) &&
|
||
phaseId.normalizePhaseName(parsed.phase) === phaseId.normalizePhaseName(String(n))
|
||
);
|
||
}),
|
||
);
|
||
});
|
||
});
|
||
|
||
// ─── #2232 continuation-cap property tests (fast-check) ──────────────────────
|
||
|
||
// An arbitrary run of digits, including leading-zero forms ("02", "007") that
|
||
// String(int) can never produce — the zero-padded shape is the whole point of
|
||
// the continuation rule, so the corpus must be able to generate it.
|
||
const digitRun = (min, max) =>
|
||
fc.string({
|
||
unit: fc.constantFrom('0', '1', '2', '3', '4', '5', '6', '7', '8', '9'),
|
||
minLength: min,
|
||
maxLength: max,
|
||
});
|
||
|
||
describe('#2232 continuation cap — properties', () => {
|
||
test('a numeric segment is absorbed into the token IFF its digit run is exactly 2', () => {
|
||
fc.assert(
|
||
fc.property(fc.integer({ min: 1, max: 99 }), digitRun(1, 6), (lead, seg) => {
|
||
const token = phaseId.extractPhaseToken(`${lead}-${seg}-photos-performance`);
|
||
const absorbed = token === `${lead}-${seg}`;
|
||
// The biconditional IS the rule: width 2 ⇔ absorbed. Anything else is
|
||
// a slug word and must leave the token at the bare leading number.
|
||
return absorbed === (seg.length === 2) && (absorbed || token === String(lead));
|
||
}),
|
||
);
|
||
});
|
||
|
||
test('the owner agrees with the observable extraction for every digit run', () => {
|
||
fc.assert(
|
||
fc.property(digitRun(1, 6), (seg) => {
|
||
const absorbed = phaseId.extractPhaseToken(`14-${seg}-slug`) === `14-${seg}`;
|
||
return phaseId.isPhaseContinuationSegment(seg) === absorbed;
|
||
}),
|
||
);
|
||
});
|
||
|
||
// Metamorphic: the read side (extractPhaseToken) must invert the write side
|
||
// (getPhaseDirFromPhaseId), which zero-pads every component to 2 digits. This
|
||
// ties the continuation cap to the convention it mirrors rather than to a
|
||
// hand-picked example — if the write-side padding width ever changes, this
|
||
// fails instead of silently drifting.
|
||
test('metamorphic: a write-side phase dir round-trips to its own normalized phase id', () => {
|
||
fc.assert(
|
||
fc.property(fc.integer({ min: 1, max: 99 }), fc.integer({ min: 1, max: 99 }), (major, sub) => {
|
||
const dir = phaseId.getPhaseDirFromPhaseId(`${major}-${sub}`, 'Some Phase Name', null);
|
||
if (!dir) return true;
|
||
return phaseId.extractPhaseToken(dir) === phaseId.normalizePhaseName(`${major}-${sub}`);
|
||
}),
|
||
);
|
||
});
|
||
|
||
// The #2232 bug itself, as a property: a phase NAME that slugifies to a
|
||
// year-leading word must not perturb the round-trip.
|
||
test('metamorphic: round-trip holds even when the phase name leads with a year (#2232)', () => {
|
||
fc.assert(
|
||
fc.property(
|
||
fc.integer({ min: 1, max: 99 }),
|
||
fc.integer({ min: 1, max: 99 }),
|
||
fc.integer({ min: 1000, max: 9999 }),
|
||
(major, sub, year) => {
|
||
const dir = phaseId.getPhaseDirFromPhaseId(
|
||
`${major}-${sub}`,
|
||
`${year} Photos And Performance`,
|
||
null,
|
||
);
|
||
if (!dir) return true;
|
||
return phaseId.extractPhaseToken(dir) === phaseId.normalizePhaseName(`${major}-${sub}`);
|
||
},
|
||
),
|
||
);
|
||
});
|
||
});
|
||
|
||
// ─── #2736 prose name-precedence property tests (fast-check) ─────────────────
|
||
|
||
// #2821's only behavioral delta in parsePhaseFromProse is that a GENUINE
|
||
// (non-status) em-dash name now takes precedence over a parenthetical name;
|
||
// phase-token extraction and totality were unchanged by that commit.
|
||
//
|
||
// P1 and P9 are the delta guards: both fail against the pre-#2821 paren-first
|
||
// parser (verified by the standalone mutation check against
|
||
// parsePhaseFromProseOLD), because they each require the dash name to win
|
||
// over a co-present parenthetical — P9 additionally exercises the
|
||
// paren-stripped separator search, since the losing parenthetical itself
|
||
// contains an em-dash.
|
||
//
|
||
// P2, P3, P4 are characterization tests: they pin currently-true precedence
|
||
// contracts (status tails and em-dash-inside-parens both lose to a
|
||
// parenthetical name) that the pre-#2821 parser ALSO satisfied, so they guard
|
||
// against future regressions rather than proving the #2821 delta.
|
||
//
|
||
// P5-P8 pin totality and phase-token extraction, neither of which #2821
|
||
// changed.
|
||
|
||
const phaseToken = fc
|
||
.tuple(
|
||
digitRun(1, 3),
|
||
fc.option(fc.constantFrom(...'ABCDEFGHIJKLMNOPQRSTUVWXYZ'), { nil: '' }),
|
||
fc.array(digitRun(1, 2), { maxLength: 2 }),
|
||
)
|
||
.map(([lead, letter, decimals]) => `${lead}${letter}${decimals.map((d) => `.${d}`).join('')}`);
|
||
|
||
const STATUSY =
|
||
/^(?:completed?|executing|not started|planning|planned|ready(?:\s+to\s+\S.{0,50})?|done|in progress|blocked|paused|verifying)$/i;
|
||
|
||
const genuineName = fc
|
||
.string({
|
||
unit: fc.constantFrom(
|
||
'a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j', 'k', 'l', 'm',
|
||
'n', 'o', 'p', 'q', 'r', 's', 't', 'u', 'v', 'w', 'x', 'y', 'z',
|
||
' ', 'A', 'B', 'C',
|
||
),
|
||
minLength: 1,
|
||
maxLength: 40,
|
||
})
|
||
.map((s) => s.trim())
|
||
.filter((s) => s.length > 0 && !STATUSY.test(s) && !/^milestone\s*:/i.test(s) && !/^[A-Z][A-Z0-9_-]*$/.test(s));
|
||
|
||
const asideText = fc
|
||
.string({
|
||
unit: fc.constantFrom(...'abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789 -_'),
|
||
minLength: 1,
|
||
maxLength: 30,
|
||
})
|
||
.map((s) => s.trim())
|
||
.filter((s) => s.length > 0);
|
||
|
||
const statusTail = fc.constantFrom(
|
||
'COMPLETE', 'COMPLETED', 'EXECUTING', 'READY', 'DONE', 'IN PROGRESS',
|
||
'BLOCKED', 'PAUSED', 'VERIFYING', 'PLANNING', 'PLANNED', 'NOT STARTED',
|
||
);
|
||
|
||
const capsToken = fc.string({
|
||
unit: fc.constantFrom(...'ABCDEFGHIJKLMNOPQRSTUVWXYZ'),
|
||
minLength: 2,
|
||
maxLength: 12,
|
||
});
|
||
|
||
describe('#2736 prose name precedence — properties', () => {
|
||
test('P1 dash name beats a trailing parenthetical aside', () => {
|
||
fc.assert(
|
||
fc.property(phaseToken, genuineName, asideText, (tok, name, aside) => {
|
||
const p = phaseId.parsePhaseFromProse(`${tok} — ${name} (${aside})`);
|
||
return p.phase === tok && p.name === name;
|
||
}),
|
||
);
|
||
});
|
||
|
||
test('P2 a status-keyword tail never displaces a parenthetical name', () => {
|
||
fc.assert(
|
||
fc.property(phaseToken, genuineName, statusTail, (tok, name, status) => {
|
||
const p = phaseId.parsePhaseFromProse(`${tok} (${name}) — ${status}`);
|
||
return p.phase === tok && p.name === name;
|
||
}),
|
||
);
|
||
});
|
||
|
||
test('P3 an em-dash inside parens is not mistaken for the separator', () => {
|
||
fc.assert(
|
||
fc.property(phaseToken, genuineName, genuineName, statusTail, (tok, a, b, status) => {
|
||
const p = phaseId.parsePhaseFromProse(`${tok} (${a} — ${b}) — ${status}`);
|
||
return p.phase === tok && p.name === `${a} — ${b}`;
|
||
}),
|
||
);
|
||
});
|
||
|
||
test('P4 a lone ALL-CAPS tail loses to a parenthetical name', () => {
|
||
fc.assert(
|
||
fc.property(phaseToken, genuineName, capsToken, (tok, name, caps) => {
|
||
const p = phaseId.parsePhaseFromProse(`${tok} (${name}) — ${caps}`);
|
||
return p.phase === tok && p.name === name;
|
||
}),
|
||
);
|
||
});
|
||
|
||
test('P5 parsePhaseFromProse is total over arbitrary input', () => {
|
||
fc.assert(
|
||
fc.property(fc.string({ maxLength: 300 }), (s) => {
|
||
const p = phaseId.parsePhaseFromProse(s);
|
||
return (
|
||
p !== null &&
|
||
typeof p === 'object' &&
|
||
(p.phase === null || typeof p.phase === 'string') &&
|
||
(p.name === null || typeof p.name === 'string')
|
||
);
|
||
}),
|
||
);
|
||
});
|
||
|
||
test('P6 pathological paren/em-dash runs stay total', () => {
|
||
fc.assert(
|
||
fc.property(fc.integer({ min: 1, max: 400 }), (n) => {
|
||
const p = phaseId.parsePhaseFromProse(`3 ${'('.repeat(n)}${'—'.repeat(n)}`);
|
||
return p.phase === '3' && (p.name === null || typeof p.name === 'string');
|
||
}),
|
||
);
|
||
});
|
||
|
||
test('P7 the phase token round-trips out of first-party prose shapes', () => {
|
||
fc.assert(
|
||
fc.property(phaseToken, genuineName, (tok, name) =>
|
||
phaseId.parsePhaseFromProse(`${tok} (${name})`).phase === tok &&
|
||
phaseId.parsePhaseFromProse(`Phase ${tok} — ${name}`).phase === tok &&
|
||
phaseId.parsePhaseFromProse(`${tok}`).phase === tok,
|
||
),
|
||
);
|
||
});
|
||
|
||
test('P8 a milestone-prefixed token still yields the bare phase', () => {
|
||
fc.assert(
|
||
fc.property(
|
||
fc.string({ unit: fc.constantFrom(...'ABCDEFGHIJKLMNOPQRSTUVWXYZ'), minLength: 1, maxLength: 3 }),
|
||
phaseToken,
|
||
genuineName,
|
||
(ms, tok, name) => phaseId.parsePhaseFromProse(`${ms}1-${tok} (${name})`).phase === tok,
|
||
),
|
||
);
|
||
});
|
||
|
||
test('P9 a genuine dash name wins over a paren containing an em-dash', () => {
|
||
fc.assert(
|
||
fc.property(phaseToken, genuineName, genuineName, genuineName, (tok, a, b, name) => {
|
||
const p = phaseId.parsePhaseFromProse(`${tok} (${a} — ${b}) — ${name}`);
|
||
return p.phase === tok && p.name === name;
|
||
}),
|
||
);
|
||
});
|
||
|
||
// The STATUSY regex above is a test-local mirror of the private, unexported
|
||
// STATUSY_TAIL_RE in src/phase-id.cts — it is not imported, only
|
||
// reimplemented. If a future edit to the implementation's status
|
||
// vocabulary drifts from this mirror, the properties above that rely on
|
||
// STATUSY (P2, genuineName's exclusion filter, etc.) would silently weaken
|
||
// rather than fail. This test pins the mirror to OBSERVABLE parser
|
||
// behavior instead of source text, so a divergence fails loudly here.
|
||
test('the test-local STATUSY mirror still agrees with the parser (divergence guard)', () => {
|
||
const statusVocab = [
|
||
'complete', 'completed', 'executing', 'not started', 'planning',
|
||
'planned', 'ready', 'done', 'in progress', 'blocked', 'paused',
|
||
'verifying',
|
||
];
|
||
|
||
for (const w of statusVocab) {
|
||
assert.equal(
|
||
phaseId.parsePhaseFromProse(`3 (Real Name) — ${w}`).name,
|
||
'Real Name',
|
||
`expected status word "${w}" to lose to the parenthetical name`,
|
||
);
|
||
const upper = w.toUpperCase();
|
||
assert.equal(
|
||
phaseId.parsePhaseFromProse(`3 (Real Name) — ${upper}`).name,
|
||
'Real Name',
|
||
`expected status word "${upper}" to lose to the parenthetical name`,
|
||
);
|
||
}
|
||
|
||
const nonStatusNames = ['Foundation', 'Native Hotkey', 'setup work'];
|
||
for (const n of nonStatusNames) {
|
||
assert.equal(
|
||
phaseId.parsePhaseFromProse(`3 — ${n} (aside)`).name,
|
||
n,
|
||
`expected non-status name "${n}" to win as the dash name over the parenthetical aside`,
|
||
);
|
||
}
|
||
});
|
||
});
|