Files
msd-core/tests/command-contract.test.cjs
Jakub Zych a9a7a328e6 refactor: hard-fork GSD -> MSD (Make Software Done)
Mechanical rename produced by scripts/msd-rename.cjs: gsd/Gsd/GSD -> msd/Msd/MSD
across contents and paths, upstream package/repo coordinates -> @golem15/msd-core
and golem15com/msd-core. Deep links into upstream history, sibling upstream
packages, the GSD-2 import feature, CHANGELOG.md and .changeset/ are kept as-is.

Hand edits on top: MSD block-letter banner and logos, LICENSE copyright line,
package/plugin identity, regenerated lockfile, install-tree fixtures, derived
registries and benchmark baseline; migration checksum baseline re-locked
(MSD keeps its own install state, so no install had applied the old sums);
sort-order and regex-escaped expectations in tests adjusted.
2026-10-06 01:47:40 +02:00

727 lines
26 KiB
JavaScript

// allow-test-rule: source-text-is-the-product
// commands/msd/*.md files ARE the deployed skill surface. Testing their
// contract tests the runtime behaviour.
'use strict';
/**
* Command Contract tests (ADR-0002)
*
* Authoritative behavioral contract for every commands/msd/*.md file.
* Replaces scattered coverage in enh-2790-skill-consolidation and
* bug-3135-capture-backlog-workflow for the full-surface contract checks.
*
* Contract:
* 1. name: present, non-empty, starts with msd: or msd-
* 2. description: present, non-empty
* 3. allowed-tools: present, non-empty, all entries from CANONICAL_TOOLS
* 4. execution_context @-refs: every reference resolves to an existing file
* 5. execution_context @-refs: each on its own line (no trailing prose)
*/
const { describe, test } = require('node:test');
const assert = require('node:assert/strict');
const fs = require('node:fs');
const path = require('node:path');
const ROOT = path.join(__dirname, '..');
const COMMANDS_DIR = path.join(ROOT, 'commands', 'msd');
const MSD_ROOT = path.join(ROOT, 'msd-core');
const {
CANONICAL_TOOLS,
parseFrontmatter,
executionContextRefs,
workflowPathRefs,
unreachableWorkflows,
} = require('../scripts/command-contract-helpers.cjs');
const { runNode, OUTCOME } = require('./helpers/process-seam.cjs');
const { PROBE_TIMEOUT_MS } = require('./helpers/timeouts.cjs');
const { createTempDir, cleanup } = require('./helpers.cjs');
const LINT_SCRIPT = path.join(ROOT, 'scripts', 'lint-command-contract.cjs');
const commandFiles = fs
.readdirSync(COMMANDS_DIR)
.filter(f => f.endsWith('.md'))
.map(f => ({ name: f, full: path.join(COMMANDS_DIR, f) }));
// ─── contract tests ───────────────────────────────────────────────────────────
describe('command contract: name field (ADR-0002)', () => {
for (const { name, full } of commandFiles) {
test(`${name}: name: present and starts with msd: or msd-`, () => {
const fm = parseFrontmatter(fs.readFileSync(full, 'utf-8'));
assert.ok(fm.name && fm.name.trim(), `${name}: name: field missing or empty`);
assert.ok(
/^msd[:-]/.test(fm.name.trim()),
`${name}: name: must start with "msd:" or "msd-", got "${fm.name.trim()}"`,
);
});
}
});
describe('command contract: description field (ADR-0002)', () => {
for (const { name, full } of commandFiles) {
test(`${name}: description: present and non-empty`, () => {
const fm = parseFrontmatter(fs.readFileSync(full, 'utf-8'));
assert.ok(
fm.description && fm.description.trim(),
`${name}: description: field missing or empty`,
);
});
}
});
describe('command contract: allowed-tools (ADR-0002)', () => {
for (const { name, full } of commandFiles) {
test(`${name}: allowed-tools: present, non-empty, all canonical`, () => {
const fm = parseFrontmatter(fs.readFileSync(full, 'utf-8'));
assert.ok(
fm['allowed-tools'] && fm['allowed-tools'].trim(),
`${name}: allowed-tools: block missing or empty`,
);
const tools = fm['allowed-tools'].split('\n').map(t => t.trim()).filter(Boolean);
for (const tool of tools) {
const valid =
CANONICAL_TOOLS.has(tool) ||
(tool.startsWith('mcp__context7__') && CANONICAL_TOOLS.has('mcp__context7__*'));
assert.ok(valid, `${name}: unknown tool "${tool}" in allowed-tools`);
}
});
}
});
describe('command contract: execution_context @-refs resolve (ADR-0002)', () => {
for (const { name, full } of commandFiles) {
test(`${name}: all execution_context @-refs exist on disk`, () => {
const refs = executionContextRefs(fs.readFileSync(full, 'utf-8'));
for (const { normalized } of refs) {
assert.ok(
fs.existsSync(path.join(MSD_ROOT, normalized)),
`${name}: execution_context @-ref "${normalized}" does not exist — ` +
'create the file or remove the reference',
);
}
});
}
});
describe('command contract: execution_context @-refs on own line (ADR-0002)', () => {
for (const { name, full } of commandFiles) {
test(`${name}: no @-refs with trailing prose in execution_context`, () => {
const refs = executionContextRefs(fs.readFileSync(full, 'utf-8'));
const bad = refs.filter(r => r.trailingProse);
assert.equal(
bad.length, 0,
`${name}: @-refs with trailing prose in execution_context: ` +
bad.map(r => r.token).join(', '),
);
});
}
});
describe('#3561 — workflowPathRefs resolver', () => {
test('eager @-include', () => {
assert.deepEqual(
workflowPathRefs('@~/.claude/msd-core/workflows/x.md'),
['workflows/x.md'],
);
});
test('lazy tilde path', () => {
assert.deepEqual(
workflowPathRefs('read `~/.claude/msd-core/workflows/x.md` now'),
['workflows/x.md'],
);
});
test('repo-relative path', () => {
assert.deepEqual(
workflowPathRefs('see msd-core/workflows/x.md'),
['workflows/x.md'],
);
});
test('bare workflows path', () => {
assert.deepEqual(
workflowPathRefs('see workflows/x.md'),
['workflows/x.md'],
);
});
test('parent-relative steps path', () => {
assert.deepEqual(
workflowPathRefs('run execute-phase/steps/post-merge-gate.md'),
['workflows/execute-phase/steps/post-merge-gate.md'],
);
});
test('parent-relative modes path', () => {
assert.deepEqual(
workflowPathRefs('use discuss-phase/modes/power.md'),
['workflows/discuss-phase/modes/power.md'],
);
});
test('empty content yields no refs', () => {
assert.deepEqual(workflowPathRefs(''), []);
});
test('unrelated prose yields no refs', () => {
assert.deepEqual(workflowPathRefs('nothing to see here'), []);
});
test('whitespace-only yields no refs', () => {
assert.deepEqual(workflowPathRefs(' \n\t \n'), []);
});
test('de-duplicates repeated refs', () => {
const refs = workflowPathRefs('workflows/x.md and again workflows/x.md');
assert.deepEqual(refs, ['workflows/x.md']);
assert.equal(refs.length, 1);
});
test('CRLF-tolerant', () => {
assert.deepEqual(
workflowPathRefs('workflows/a.md\r\nworkflows/b.md'),
['workflows/a.md', 'workflows/b.md'],
);
});
test('ignores non-workflow md paths', () => {
assert.deepEqual(
workflowPathRefs('docs/GUIDE.md README.md references/r.md'),
[],
);
});
test('surfaces a ref whose target is absent', () => {
assert.deepEqual(
workflowPathRefs('workflows/does-not-exist.md'),
['workflows/does-not-exist.md'],
);
});
test('does not emit a traversing path', () => {
const refs = workflowPathRefs('workflows/../../etc/passwd.md');
for (const ref of refs) {
assert.ok(!ref.includes('..'), `traversal path leaked: ${ref}`);
}
});
test('tolerates an overlong path', () => {
const content = 'workflows/' + 'a'.repeat(5000) + '.md';
assert.doesNotThrow(() => workflowPathRefs(content));
});
test('rejects a .mdx path', () => {
assert.deepEqual(workflowPathRefs('workflows/foobar.mdx'), []);
});
test('rejects a .md5 path', () => {
assert.deepEqual(workflowPathRefs('workflows/foo.md5'), []);
});
test('still accepts a .md path followed by punctuation', () => {
assert.deepEqual(
workflowPathRefs('see workflows/x.md, then stop'),
['workflows/x.md'],
);
});
test('binds to the --fast line, not the whole file', () => {
const syntheticFile = [
'- If it is `--fast`: strip the flag, run the scan workflow.',
'<!-- see msd-core/workflows/scan.md -->',
].join('\n');
const fastLine = syntheticFile
.split(/\r?\n/)
.find(line => /^-\s*If it is\s*`--fast`/.test(line));
assert.ok(fastLine, 'setup error: synthetic fixture missing --fast routing line');
assert.ok(
!workflowPathRefs(fastLine).includes('workflows/scan.md'),
'regression guard: the --fast routing line itself names no resolvable path — ' +
'an unrelated comment elsewhere in the file must not make this test pass',
);
});
});
describe('#3561 — /msd-map-codebase --fast routes to a loadable workflow', () => {
const mapCodebasePath = path.join(COMMANDS_DIR, 'map-codebase.md');
const mapCodebaseContent = fs.readFileSync(mapCodebasePath, 'utf-8');
test('map-codebase: --fast routing names a loadable scan.md', () => {
const fastLine = mapCodebaseContent
.split(/\r?\n/)
.find(line => /^-\s*If it is\s*`--fast`/.test(line));
assert.ok(
fastLine,
'#3561: commands/msd/map-codebase.md has no "--fast" routing bullet ' +
'(expected a line matching /^-\\s*If it is\\s*`--fast`/) — the routing logic is missing entirely',
);
const refs = workflowPathRefs(fastLine);
assert.ok(
refs.includes('workflows/scan.md'),
'#3561: --fast routes to the scan workflow but the routing line names no path ' +
'the runtime can resolve, so scan.md is never loaded',
);
});
test('full map does not eagerly load scan.md', () => {
const refs = executionContextRefs(mapCodebaseContent);
assert.equal(refs.length, 1);
assert.equal(refs[0].normalized, 'workflows/map-codebase.md');
});
});
describe('#3561 — every workflow path referenced by a command exists on disk', () => {
for (const { name, full } of commandFiles) {
test(`${name}: all workflowPathRefs paths exist on disk`, () => {
const refs = workflowPathRefs(fs.readFileSync(full, 'utf-8'));
for (const ref of refs) {
assert.ok(
fs.existsSync(path.join(MSD_ROOT, ref)),
`${name}: referenced workflow path "${ref}" does not exist under ${MSD_ROOT}`,
);
}
});
}
});
describe('#3560 — unreachableWorkflows closure', () => {
test('a planted orphan is reported', () => {
const loaderContents = ['load workflows/live.md'];
const msdFiles = new Map();
const workflowPaths = ['workflows/live.md', 'workflows/orphan.md'];
assert.deepEqual(
unreachableWorkflows(loaderContents, msdFiles, workflowPaths),
['workflows/orphan.md'],
);
});
test('eager include reaches', () => {
const loaderContents = ['@~/.claude/msd-core/workflows/a.md'];
const msdFiles = new Map();
const workflowPaths = ['workflows/a.md'];
assert.deepEqual(unreachableWorkflows(loaderContents, msdFiles, workflowPaths), []);
});
test('lazy path reaches', () => {
const loaderContents = ['read `msd-core/workflows/a.md`'];
const msdFiles = new Map();
const workflowPaths = ['workflows/a.md'];
assert.deepEqual(unreachableWorkflows(loaderContents, msdFiles, workflowPaths), []);
});
test('parent-relative reaches', () => {
const loaderContents = ['run execute-phase/steps/s.md'];
const msdFiles = new Map();
const workflowPaths = ['workflows/execute-phase/steps/s.md'];
assert.deepEqual(unreachableWorkflows(loaderContents, msdFiles, workflowPaths), []);
});
test('reaches transitively', () => {
const loaderContents = ['see workflows/a.md'];
const msdFiles = new Map([['workflows/a.md', 'see workflows/b.md']]);
const workflowPaths = ['workflows/a.md', 'workflows/b.md'];
assert.deepEqual(unreachableWorkflows(loaderContents, msdFiles, workflowPaths), []);
});
test('reaches at depth three', () => {
const loaderContents = ['see workflows/a.md'];
const msdFiles = new Map([
['workflows/a.md', 'see workflows/b.md'],
['workflows/b.md', 'see workflows/c.md'],
]);
const workflowPaths = ['workflows/a.md', 'workflows/b.md', 'workflows/c.md'];
assert.deepEqual(unreachableWorkflows(loaderContents, msdFiles, workflowPaths), []);
});
test('a self-reference does not reach', () => {
// Nothing in loaderContents mentions self.md; the fact that self.md's
// own body references itself must not count as reachability.
const loaderContents = [];
const msdFiles = new Map([['workflows/self.md', 'see workflows/self.md']]);
const workflowPaths = ['workflows/self.md'];
assert.deepEqual(
unreachableWorkflows(loaderContents, msdFiles, workflowPaths),
['workflows/self.md'],
);
});
test('a mutual-reference island does not reach', () => {
// x and y point only at each other; no loader points at either. The
// island looks connected from the inside but no runtime ever opens it.
const loaderContents = [];
const msdFiles = new Map([
['workflows/x.md', 'see workflows/y.md'],
['workflows/y.md', 'see workflows/x.md'],
]);
const workflowPaths = ['workflows/x.md', 'workflows/y.md'];
assert.deepEqual(
unreachableWorkflows(loaderContents, msdFiles, workflowPaths),
['workflows/x.md', 'workflows/y.md'],
);
});
test('terminates on a cycle', () => {
// a -> b -> c -> a. All three are reachable from the loader; the walk
// must still terminate rather than looping forever on the cycle.
const loaderContents = ['see workflows/a.md'];
const msdFiles = new Map([
['workflows/a.md', 'see workflows/b.md'],
['workflows/b.md', 'see workflows/c.md'],
['workflows/c.md', 'see workflows/a.md'],
]);
const workflowPaths = ['workflows/a.md', 'workflows/b.md', 'workflows/c.md'];
assert.deepEqual(unreachableWorkflows(loaderContents, msdFiles, workflowPaths), []);
});
test('a docs-only mention does not reach (Goodhart guard: mentioning a path is not the same as loading it)', () => {
// Simulates a hypothetical prose/docs file that names orphan.md — that
// string is simply never included in loaderContents (or msdFiles), which
// is exactly what "a docs mention" looks like to this function: absent.
const loaderContents = [];
const msdFiles = new Map();
const workflowPaths = ['workflows/orphan.md'];
assert.deepEqual(
unreachableWorkflows(loaderContents, msdFiles, workflowPaths),
['workflows/orphan.md'],
);
});
test('a dangling reference reaches nothing', () => {
const loaderContents = ['see workflows/missing.md'];
const msdFiles = new Map();
const workflowPaths = ['workflows/real-orphan.md'];
assert.doesNotThrow(() => unreachableWorkflows(loaderContents, msdFiles, workflowPaths));
assert.deepEqual(
unreachableWorkflows(loaderContents, msdFiles, workflowPaths),
['workflows/real-orphan.md'],
);
});
test('empty workflow set', () => {
const loaderContents = ['see workflows/a.md'];
const msdFiles = new Map();
const workflowPaths = [];
assert.deepEqual(unreachableWorkflows(loaderContents, msdFiles, workflowPaths), []);
});
test('no loaders means nothing is reached', () => {
const loaderContents = [];
const msdFiles = new Map();
const workflowPaths = ['workflows/a.md'];
assert.deepEqual(
unreachableWorkflows(loaderContents, msdFiles, workflowPaths),
['workflows/a.md'],
);
});
test('CRLF-tolerant', () => {
const loaderContents = ['workflows/a.md\r\nworkflows/b.md'];
const msdFiles = new Map();
const workflowPaths = ['workflows/a.md', 'workflows/b.md'];
assert.deepEqual(unreachableWorkflows(loaderContents, msdFiles, workflowPaths), []);
});
test('reports exactly the orphan among many', () => {
const reachable = Array.from({ length: 152 }, (_, i) => `workflows/gen-${i}.md`);
const loaderContents = reachable.slice();
const msdFiles = new Map();
const orphan = 'workflows/orphan-152.md';
const workflowPaths = [...reachable, orphan];
const result = unreachableWorkflows(loaderContents, msdFiles, workflowPaths);
assert.equal(result.length, 1);
assert.deepEqual(result, [orphan]);
});
});
describe('#3560 — rule 6 fails the build on a real orphan', () => {
// Builds the minimal fixture tree the lint CLI needs to satisfy rules 1-5
// for a single command file, plus an eagerly-loaded live.md workflow.
// `extra` lets each test layer on exactly the additional state it needs
// without coupling test execution order to shared mutable fixture state.
function buildBaseFixture(dir) {
fs.mkdirSync(path.join(dir, 'commands', 'msd'), { recursive: true });
fs.mkdirSync(path.join(dir, 'msd-core', 'workflows'), { recursive: true });
fs.mkdirSync(path.join(dir, 'agents'), { recursive: true });
fs.mkdirSync(path.join(dir, 'skills'), { recursive: true });
fs.writeFileSync(
path.join(dir, 'commands', 'msd', 'fixture-command.md'),
[
'---',
'name: msd:fixture-command',
'description: Fixture command for the #3560 rule-6 regression tests.',
'allowed-tools:',
' - Read',
' - Bash',
'---',
'',
'<execution_context>',
'@~/.claude/msd-core/workflows/live.md',
'</execution_context>',
'',
].join('\n'),
);
fs.writeFileSync(
path.join(dir, 'msd-core', 'workflows', 'live.md'),
'# live workflow\n\nNothing special here.\n',
);
}
function runLint(dir) {
return runNode([LINT_SCRIPT, '--root', dir], { timeoutMs: PROBE_TIMEOUT_MS });
}
test('clean fixture passes', (t) => {
const dir = createTempDir('msd-3560-clean-');
t.after(() => cleanup(dir));
buildBaseFixture(dir);
const result = runLint(dir);
assert.equal(result.outcome, OUTCOME.EXITED);
assert.equal(result.exitCode, 0);
});
test('a planted orphan fails the build', (t) => {
const dir = createTempDir('msd-3560-orphan-');
t.after(() => cleanup(dir));
buildBaseFixture(dir);
fs.writeFileSync(
path.join(dir, 'msd-core', 'workflows', 'orphan.md'),
'# orphan workflow\n\nNo loader references this file.\n',
);
const result = runLint(dir);
assert.equal(result.outcome, OUTCOME.EXITED);
assert.equal(result.exitCode, 1);
assert.ok(
(result.stdout + result.stderr).includes('msd-core/workflows/orphan.md'),
'diagnostic output must name the orphaned file path',
);
});
test('an orphan referenced only from docs/ still fails', (t) => {
const dir = createTempDir('msd-3560-docs-only-');
t.after(() => cleanup(dir));
buildBaseFixture(dir);
fs.writeFileSync(
path.join(dir, 'msd-core', 'workflows', 'orphan.md'),
'# orphan workflow\n\nNo loader references this file.\n',
);
fs.mkdirSync(path.join(dir, 'docs'), { recursive: true });
fs.writeFileSync(
path.join(dir, 'docs', 'SOMETHING.md'),
'See msd-core/workflows/orphan.md for details.\n',
);
const result = runLint(dir);
assert.equal(result.outcome, OUTCOME.EXITED);
assert.equal(result.exitCode, 1);
});
test('an orphan reachable only transitively passes', (t) => {
const dir = createTempDir('msd-3560-transitive-');
t.after(() => cleanup(dir));
buildBaseFixture(dir);
fs.writeFileSync(
path.join(dir, 'msd-core', 'workflows', 'orphan.md'),
'# orphan workflow\n\nReachable transitively via live.md.\n',
);
// live.md itself now names orphan.md; live.md is eagerly loaded by the
// fixture command, so orphan.md becomes reachable one hop out.
fs.writeFileSync(
path.join(dir, 'msd-core', 'workflows', 'live.md'),
'# live workflow\n\nSee workflows/orphan.md for the follow-up.\n',
);
const result = runLint(dir);
assert.equal(result.outcome, OUTCOME.EXITED);
assert.equal(result.exitCode, 0);
});
});
describe('#3560 — deleted orphan workflows do not ship', () => {
const deletedBasenames = ['discovery-phase.md', 'plan-milestone-gaps.md'];
for (const basename of deletedBasenames) {
test(`${basename}: does not exist under msd-core/workflows/`, () => {
assert.ok(
!fs.existsSync(path.join(MSD_ROOT, 'workflows', basename)),
`${basename}: expected file to be deleted from msd-core/workflows/, but it still exists`,
);
});
}
const fixturesDir = path.join(ROOT, 'tests', 'fixtures', 'install-tree');
const fixtureFiles = fs.readdirSync(fixturesDir).filter(f => f.endsWith('.json'));
for (const fixtureFile of fixtureFiles) {
test(`${fixtureFile}: install-tree manifest contains no entry for a deleted workflow`, () => {
const manifest = JSON.parse(fs.readFileSync(path.join(fixturesDir, fixtureFile), 'utf-8'));
for (const basename of deletedBasenames) {
const msdRelative = `msd-core/workflows/${basename}`;
assert.ok(
!manifest.includes(msdRelative),
`${fixtureFile}: manifest still lists ${msdRelative}`,
);
}
});
}
test('scan.md is untouched by this PR', () => {
assert.ok(
fs.existsSync(path.join(MSD_ROOT, 'workflows', 'scan.md')),
'msd-core/workflows/scan.md is expected to still exist — this PR only deletes ' +
'discovery-phase.md and plan-milestone-gaps.md',
);
});
});
describe('#3560 — INVENTORY carries no row for a deleted workflow', () => {
const inventoryFiles = [
'docs/INVENTORY.md',
'docs/ja-JP/INVENTORY.md',
'docs/ko-KR/INVENTORY.md',
'docs/zh-CN/INVENTORY.md',
'docs/pt-BR/INVENTORY.md',
];
for (const rel of inventoryFiles) {
test(`${rel}: mentions neither discovery-phase.md nor plan-milestone-gaps.md`, () => {
const content = fs.readFileSync(path.join(ROOT, rel), 'utf-8');
assert.ok(!content.includes('discovery-phase.md'), `${rel}: still mentions discovery-phase.md`);
assert.ok(!content.includes('plan-milestone-gaps.md'), `${rel}: still mentions plan-milestone-gaps.md`);
});
}
});
// ────────────────────────────────────────────────────────────────────────
// Folded from tests/bug-3168-task-to-agent-rename.test.cjs — consolidation epic #1969 (B3 #1972)
// ────────────────────────────────────────────────────────────────────────
{
const { describe: __foldDescribe } = require('node:test');
__foldDescribe("folded:bug-3168-task-to-agent-rename (consolidation epic #1969 B3 #1972)", () => {
'use strict';
// allow-test-rule: source-text-is-the-product (see #3168)
// commands/msd/*.md, msd-core/workflows/*.md, and agents/msd-*.md are
// deployed product files. Checking their text IS checking the runtime contract.
/**
* #3168 — Incomplete Task→Agent dispatcher rename causes silent inline fallback.
*
* The Claude Code subagent-dispatcher tool is named `Agent`. The `Task*` namespace
* (TaskCreate, TaskList, TaskGet, TaskUpdate, TaskOutput, TaskStop) is the task
* tracker — a distinct tool set. MSD workflows were partially migrated and still
* reference `Task(` and `- Task` in allowed-tools/tools frontmatter in most files.
*/
const { test, describe } = require('node:test');
const assert = require('node:assert/strict');
const fs = require('node:fs');
const path = require('node:path');
const ROOT = path.join(__dirname, '..');
const COMMANDS_DIR = path.join(ROOT, 'commands', 'msd');
const WORKFLOWS_DIR = path.join(ROOT, 'msd-core', 'workflows');
const AGENTS_DIR = path.join(ROOT, 'agents');
// Task tracker names — these must NOT be renamed
const TASK_TRACKER_PATTERN = /\bTask(?:Create|List|Get|Update|Output|Stop)\b/;
function readMdFiles(dir, prefix) {
return fs.readdirSync(dir)
.filter(f => f.endsWith('.md') && (!prefix || f.startsWith(prefix)))
.map(f => ({ name: f, path: path.join(dir, f), content: fs.readFileSync(path.join(dir, f), 'utf-8') }));
}
function extractFrontmatterTools(content) {
const fm = content.match(/^---\r?\n([\s\S]*?)\r?\n---/);
if (!fm) return [];
const toolsMatch = fm[1].match(/^allowed-tools:\s*\r?\n((?:[ \t]+-[^\n]*\n?)*)/m) ||
fm[1].match(/^tools:\s*(.+)$/m);
if (!toolsMatch) return [];
const toolsBlock = toolsMatch[1];
if (toolsBlock.includes('\n')) {
return toolsBlock.match(/[-\s]*([A-Za-z_*][A-Za-z0-9_*]*)/g)
.map(t => t.replace(/^[-\s]+/, '').trim())
.filter(Boolean);
}
return toolsBlock.split(',').map(t => t.trim()).filter(Boolean);
}
describe('#3168 — commands/msd: allowed-tools must use Agent not Task', () => {
const commands = readMdFiles(COMMANDS_DIR);
for (const cmd of commands) {
test(`${cmd.name}: allowed-tools must not list Task without Agent`, () => {
const tools = extractFrontmatterTools(cmd.content);
const hasTask = tools.includes('Task');
const hasAgent = tools.includes('Agent');
assert.ok(
!hasTask || hasAgent,
`${cmd.name}: allowed-tools lists "Task" but not "Agent" — dispatcher tool is "Agent", not "Task"\n tools: [${tools.join(', ')}]`,
);
assert.ok(
!hasTask,
`${cmd.name}: allowed-tools still lists "Task" — remove it (Agent is the dispatcher tool)\n tools: [${tools.join(', ')}]`,
);
});
}
});
describe('#3168 — workflows: prose must use Agent( not Task( for dispatcher calls', () => {
const workflows = [];
function collectMd(dir) {
for (const entry of fs.readdirSync(dir, { withFileTypes: true })) {
if (entry.isDirectory()) collectMd(path.join(dir, entry.name));
else if (entry.name.endsWith('.md')) workflows.push({ name: entry.name, path: path.join(dir, entry.name), content: fs.readFileSync(path.join(dir, entry.name), 'utf-8') });
}
}
collectMd(WORKFLOWS_DIR);
for (const wf of workflows) {
test(`${wf.name}: must not contain dispatcher Task( calls`, () => {
const lines = wf.content.split(/\r?\n/);
const violations = [];
for (let i = 0; i < lines.length; i++) {
const line = lines[i];
// Skip code fences that show old examples
if (line.trim().startsWith('```') || line.trim().startsWith('#')) continue;
// Match Task( that is NOT a tracker call (TaskCreate, TaskList, etc.)
if (/\bTask\(/.test(line) && !TASK_TRACKER_PATTERN.test(line)) {
violations.push(` line ${i + 1}: ${line.trim()}`);
}
}
assert.deepStrictEqual(
violations,
[],
`${wf.name}: found dispatcher Task( calls that should be Agent(:\n${violations.join('\n')}`,
);
});
}
});
describe('#3168 — agents: tools frontmatter must use Agent not Task', () => {
const agents = readMdFiles(AGENTS_DIR, 'msd-');
for (const agent of agents) {
test(`${agent.name}: tools must not list Task`, () => {
const tools = extractFrontmatterTools(agent.content);
assert.ok(
!tools.includes('Task'),
`${agent.name}: tools frontmatter lists "Task" — should be "Agent"\n tools: [${tools.join(', ')}]`,
);
});
}
});
});
}