/** * GSD Tools Tests - Agent Skills Injection * * CLI integration tests for the `agent-skills` command that reads * `agent_skills` from .planning/config.json and returns a formatted * skills block for injection into Task() prompts. * * Migrated (#455): uses `--json` flag to get typed IR * { agent_type, block, skills_count } * instead of asserting on raw XML output text. */ const { test, describe, beforeEach, afterEach } = require('node:test'); const assert = require('node:assert/strict'); const { spawnSync } = require('child_process'); const fs = require('fs'); const os = require('os'); const path = require('path'); const { runGsdTools, createTempProject, cleanup, TOOLS_PATH, TEST_ENV_BASE } = require('./helpers.cjs'); const { runNode } = require('./helpers/process-seam.cjs'); const { PROBE_TIMEOUT_MS } = require('./helpers/timeouts.cjs'); /** * Run gsd-tools and capture BOTH stdout and stderr on success. * Returns { success, stdout, stderr }. */ function runGsdToolsWithStderr(args, cwd, env) { const childEnv = { ...process.env, ...TEST_ENV_BASE, ...(env || {}) }; const result = runNode([TOOLS_PATH, ...args], { cwd, env: childEnv, timeoutMs: PROBE_TIMEOUT_MS }); return { success: result.exitCode === 0, stdout: result.stdout.trim(), stderr: result.stderr.trim(), exitCode: result.exitCode, }; } const { loadTrustedGlobalRoots, validatePath } = require('../gsd-core/bin/lib/security.cjs'); // ─── helpers ────────────────────────────────────────────────────────────────── function writeConfig(tmpDir, obj) { const configPath = path.join(tmpDir, '.planning', 'config.json'); fs.writeFileSync(configPath, JSON.stringify(obj, null, 2), 'utf-8'); } function readConfig(tmpDir) { const configPath = path.join(tmpDir, '.planning', 'config.json'); return JSON.parse(fs.readFileSync(configPath, 'utf-8')); } function markLocalGsdInstall(tmpDir) { fs.writeFileSync( path.join(tmpDir, '.codex', 'gsd-file-manifest.json'), JSON.stringify({ files: {} }), ); } // Run agent-skills with --json for typed IR assertions function runAgentSkillsJson(args, tmpDir, env) { // Insert --json after 'agent-skills' subcommand const allArgs = Array.isArray(args) ? args : [args]; const cmdIdx = allArgs.indexOf('agent-skills'); const withJson = [...allArgs]; if (cmdIdx !== -1) { withJson.splice(cmdIdx + 1, 0, '--json'); } const result = runGsdTools(withJson, tmpDir, env || { HOME: tmpDir, USERPROFILE: tmpDir }); if (!result.success) return { success: false, error: result.error, ir: null }; try { return { success: true, ir: JSON.parse(result.output) }; } catch (e) { return { success: false, error: `JSON parse failed: ${e.message} output=${result.output}`, ir: null }; } } // ─── agent-skills command ──────────────────────────────────────────────────── describe('agent-skills command', () => { let tmpDir; beforeEach(() => { tmpDir = createTempProject(); }); afterEach(() => { cleanup(tmpDir); }); test('returns empty block when no config exists', () => { const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.agent_type, 'gsd-executor'); assert.strictEqual(r.ir.block, '', 'block must be empty when no skills configured'); }); test('returns empty block when config has no agent_skills section', () => { writeConfig(tmpDir, { model_profile: 'balanced' }); const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, ''); }); test('returns empty block for unconfigured agent type', () => { writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['skills/test-skill'], }, }); const r = runAgentSkillsJson(['agent-skills', 'gsd-planner'], tmpDir); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.agent_type, 'gsd-planner'); assert.strictEqual(r.ir.block, ''); }); test('unconfigured Codex reads its local companion agent from a descendant cwd', () => { const agentsDir = path.join(tmpDir, '.codex', 'agents'); const descendant = path.join(tmpDir, 'src', 'feature'); const localPersona = '# Local Codex executor\nUse the project-local agent.\n'; fs.mkdirSync(agentsDir, { recursive: true }); fs.mkdirSync(descendant, { recursive: true }); fs.writeFileSync(path.join(agentsDir, 'gsd-executor.md'), localPersona); markLocalGsdInstall(tmpDir); writeConfig(tmpDir, { runtime: 'codex' }); const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], descendant, { HOME: tmpDir, USERPROFILE: tmpDir, CODEX_HOME: path.join(tmpDir, 'global-codex'), GSD_RUNTIME: '', }); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, localPersona); }); test('workstream runtime selects the local Codex companion when root config differs', () => { const agentsDir = path.join(tmpDir, '.codex', 'agents'); const localPersona = '# Local Codex executor\nUse the overridden runtime.\n'; fs.mkdirSync(agentsDir, { recursive: true }); fs.writeFileSync(path.join(agentsDir, 'gsd-executor.md'), localPersona); markLocalGsdInstall(tmpDir); writeConfig(tmpDir, { runtime: 'claude' }); const workstreamDir = path.join(tmpDir, '.planning', 'workstreams', 'feature-x'); fs.mkdirSync(workstreamDir, { recursive: true }); fs.writeFileSync(path.join(workstreamDir, 'config.json'), JSON.stringify({ runtime: 'codex' })); const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir, { HOME: tmpDir, USERPROFILE: tmpDir, CODEX_HOME: path.join(tmpDir, 'global-codex'), GSD_RUNTIME: '', GSD_WORKSTREAM: 'feature-x', }); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, localPersona); }); test('unconfigured Claude remains empty when a local Codex companion exists', () => { const agentsDir = path.join(tmpDir, '.codex', 'agents'); fs.mkdirSync(agentsDir, { recursive: true }); fs.writeFileSync(path.join(agentsDir, 'gsd-executor.md'), '# Local Codex executor\n'); writeConfig(tmpDir, { runtime: 'claude' }); const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir, { GSD_RUNTIME: 'claude' }); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, ''); }); test('returns block containing agent_skills XML for configured agent', () => { const skillDir = path.join(tmpDir, 'skills', 'test-skill'); fs.mkdirSync(skillDir, { recursive: true }); fs.writeFileSync(path.join(skillDir, 'SKILL.md'), '# Test Skill\n'); writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['skills/test-skill'], }, }); const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.agent_type, 'gsd-executor'); assert.ok(r.ir.block.includes(''), `block must contain tag, got: ${r.ir.block}`); assert.ok(r.ir.block.includes(''), 'block must contain closing tag'); assert.ok(r.ir.block.includes('skills/test-skill/SKILL.md'), 'block must contain skill path'); }); test('skills_count reflects configured skill paths for agent type', () => { const skillDir = path.join(tmpDir, 'skills', 'test-skill'); fs.mkdirSync(skillDir, { recursive: true }); fs.writeFileSync(path.join(skillDir, 'SKILL.md'), '# Test Skill\n'); writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['skills/test-skill'], }, }); const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.skills_count, 1, 'skills_count must be 1 for single configured skill path'); }); test('returns block for configured agent with single string path', () => { const skillDir = path.join(tmpDir, 'skills', 'my-skill'); fs.mkdirSync(skillDir, { recursive: true }); fs.writeFileSync(path.join(skillDir, 'SKILL.md'), '# My Skill\n'); writeConfig(tmpDir, { agent_skills: { 'gsd-executor': 'skills/my-skill', }, }); const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir); assert.ok(r.success, `Command failed: ${r.error}`); assert.ok(r.ir.block.includes('skills/my-skill/SKILL.md'), 'block must contain skill path'); assert.strictEqual(r.ir.skills_count, 1, 'skills_count must be 1 for single string path'); }); test('handles multiple skill paths', () => { const skill1 = path.join(tmpDir, 'skills', 'skill-a'); const skill2 = path.join(tmpDir, 'skills', 'skill-b'); fs.mkdirSync(skill1, { recursive: true }); fs.mkdirSync(skill2, { recursive: true }); fs.writeFileSync(path.join(skill1, 'SKILL.md'), '# Skill A\n'); fs.writeFileSync(path.join(skill2, 'SKILL.md'), '# Skill B\n'); writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['skills/skill-a', 'skills/skill-b'], }, }); const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir); assert.ok(r.success, `Command failed: ${r.error}`); assert.ok(r.ir.block.includes('skills/skill-a/SKILL.md'), 'block must contain first skill'); assert.ok(r.ir.block.includes('skills/skill-b/SKILL.md'), 'block must contain second skill'); assert.strictEqual(r.ir.skills_count, 2, 'skills_count must be 2 for two configured paths'); }); test('warns for nonexistent skill path but does not error', () => { writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['skills/nonexistent'], }, }); const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir); assert.ok(r.success, 'Command should succeed even with missing skill paths'); assert.strictEqual(r.ir.block, '', 'block must be empty when all skill paths are missing'); // The --json IR carries a warnings[] field (#1374): a skipped path must not // be dropped silently. Assert it names the missing path so this test guards // the silent-drop regression, not merely the empty block. assert.ok(Array.isArray(r.ir.warnings), 'IR must include a warnings array'); assert.ok( r.ir.warnings.some((w) => w.includes('skills/nonexistent')), `warnings must name the skipped path, got: ${JSON.stringify(r.ir.warnings)}`, ); }); test('validates path safety — rejects traversal attempts', () => { writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['../../../etc/passwd'], }, }); const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir); assert.ok(!r.ir || !r.ir.block.includes('/etc/passwd'), 'block must not include traversal path'); }); test('returns typed empty IR when no agent type argument provided', () => { const r = runAgentSkillsJson(['agent-skills'], tmpDir); assert.ok(r.success, 'Command should succeed'); // With --json and no agent type, cmdAgentSkills calls output('', raw, ''), // so the IR is the JSON-encoded empty string "" which parses to ''. Pin that // exact contract: the old assertion (=== '' || typeof === 'object') passed // even for a null IR because typeof null === 'object', so it guarded nothing. assert.strictEqual(r.ir, '', 'empty IR must be the empty string when no agent type is provided'); }); }); // ─── empty-resolution diagnostics (silent-drop visibility) ──────────────────── // // When an agent is CONFIGURED with skill paths but every path fails to resolve // (missing SKILL.md, unsafe path, invalid global name), buildAgentSkillsBlock // previously returned '' with only per-path stderr warnings and no aggregate // signal — so `query agent-skills --json` reported skills_count > 0 with an // empty block and no indication the configured skills were dropped. // // Fix: emit an aggregate stderr WARNING when configured paths all resolve to // zero skills, and surface every skip reason in a `warnings[]` field on the // --json IR. describe('agent-skills empty-resolution diagnostics', () => { let tmpDir; beforeEach(() => { tmpDir = createTempProject(); }); afterEach(() => { cleanup(tmpDir); }); test('configured agent whose only skill is missing → warnings[] names the path and the aggregate drop', () => { writeConfig(tmpDir, { agent_skills: { 'gsd-phase-researcher': ['references/other-skill'] }, }); const r = runAgentSkillsJson(['agent-skills', 'gsd-phase-researcher'], tmpDir); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', 'block must be empty when the only configured skill is missing'); assert.strictEqual(r.ir.skills_count, 1, 'skills_count still reflects the configured path count'); assert.ok(Array.isArray(r.ir.warnings), 'IR must include a warnings array'); assert.ok(r.ir.warnings.length >= 1, `warnings must be non-empty, got: ${JSON.stringify(r.ir.warnings)}`); assert.ok( r.ir.warnings.some((w) => w.includes('references/other-skill')), `warnings must name the skipped path, got: ${JSON.stringify(r.ir.warnings)}`, ); assert.ok( r.ir.warnings.some((w) => /none resolved to a valid skill/.test(w)), `warnings must include the aggregate empty-resolution diagnostic, got: ${JSON.stringify(r.ir.warnings)}`, ); }); test('configured agent with all skills missing → aggregate WARNING on stderr naming the agent', () => { writeConfig(tmpDir, { agent_skills: { 'gsd-planner': ['references/a', 'references/b'] }, }); const r = runGsdToolsWithStderr(['agent-skills', '--json', 'gsd-planner'], tmpDir, { HOME: tmpDir, USERPROFILE: tmpDir, }); assert.ok(r.success, `Command failed (exit ${r.exitCode}): ${r.stderr}`); assert.ok( r.stderr.includes('[agent-skills] WARNING') && r.stderr.includes('gsd-planner') && r.stderr.includes('none resolved to a valid skill'), `stderr must carry the aggregate empty-resolution warning naming the agent, got: ${r.stderr}`, ); const ir = JSON.parse(r.stdout); assert.strictEqual(ir.block, ''); assert.ok(ir.warnings.length >= 2, `warnings must list both skipped paths, got: ${JSON.stringify(ir.warnings)}`); }); test('partial resolution: one valid + one missing → block present, NO aggregate warning, skipped path still listed', () => { const skillDir = path.join(tmpDir, 'skills', 'present'); fs.mkdirSync(skillDir, { recursive: true }); fs.writeFileSync(path.join(skillDir, 'SKILL.md'), '# present\n'); writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['skills/present', 'skills/absent'] }, }); const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir); assert.ok(r.success, `Command failed: ${r.error}`); assert.ok(r.ir.block.includes('skills/present/SKILL.md'), 'block must include the resolvable skill'); assert.strictEqual(r.ir.skills_count, 2, 'skills_count reflects both configured paths'); assert.ok(Array.isArray(r.ir.warnings), 'IR must include a warnings array'); assert.ok( r.ir.warnings.some((w) => w.includes('skills/absent')), `warnings must list the one skipped path, got: ${JSON.stringify(r.ir.warnings)}`, ); assert.ok( !r.ir.warnings.some((w) => /none resolved to a valid skill/.test(w)), `aggregate empty-resolution warning must NOT fire when at least one skill resolved, got: ${JSON.stringify(r.ir.warnings)}`, ); }); test('all skills resolve → warnings[] is empty', () => { const skillDir = path.join(tmpDir, 'skills', 'only'); fs.mkdirSync(skillDir, { recursive: true }); fs.writeFileSync(path.join(skillDir, 'SKILL.md'), '# only\n'); writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['skills/only'] }, }); const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir); assert.ok(r.success, `Command failed: ${r.error}`); assert.ok(r.ir.block.includes('skills/only/SKILL.md'), 'block must include the resolved skill'); assert.ok(Array.isArray(r.ir.warnings), 'IR must include a warnings array'); assert.strictEqual(r.ir.warnings.length, 0, `warnings must be empty when all skills resolve, got: ${JSON.stringify(r.ir.warnings)}`); }); test('unconfigured agent → warnings[] empty (no skills configured is not a drop)', () => { writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['skills/whatever'] }, }); const r = runAgentSkillsJson(['agent-skills', 'gsd-planner'], tmpDir); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, ''); assert.ok(Array.isArray(r.ir.warnings), 'IR must include a warnings array'); assert.strictEqual(r.ir.warnings.length, 0, 'an agent with no configured skills is not a drop — warnings must be empty'); }); test('malformed (non-array, non-string) configured value → flagged in warnings[], not a silent drop', () => { // A hand-edited config.json could carry a scalar instead of an array. // cmdAgentSkills still counts it as a configured path, so it must be surfaced. writeConfig(tmpDir, { agent_skills: { 'gsd-executor': 42 }, }); const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', 'block must be empty for a malformed value'); assert.ok(Array.isArray(r.ir.warnings), 'IR must include a warnings array'); assert.ok( r.ir.warnings.some((w) => /malformed agent_skills value/.test(w)), `malformed scalar config must be flagged in warnings[], got: ${JSON.stringify(r.ir.warnings)}`, ); }); }); // ─── config-ensure-section includes agent_skills ──────────────────────────── describe('config-ensure-section with agent_skills', () => { let tmpDir; beforeEach(() => { tmpDir = createTempProject(); }); afterEach(() => { cleanup(tmpDir); }); test('new configs include agent_skills key', () => { const result = runGsdTools('config-ensure-section', tmpDir, { HOME: tmpDir, USERPROFILE: tmpDir }); assert.ok(result.success, `Command failed: ${result.error}`); const config = readConfig(tmpDir); assert.ok('agent_skills' in config, 'config should have agent_skills key'); assert.deepStrictEqual(config.agent_skills, {}, 'agent_skills should default to empty object'); }); }); // ─── config-set agent_skills ───────────────────────────────────────────────── describe('config-set agent_skills', () => { let tmpDir; beforeEach(() => { tmpDir = createTempProject(); // Ensure config exists first runGsdTools('config-ensure-section', tmpDir, { HOME: tmpDir, USERPROFILE: tmpDir }); }); afterEach(() => { cleanup(tmpDir); }); test('can set agent_skills via dot notation', () => { const result = runGsdTools( ['config-set', 'agent_skills.gsd-executor', '["skills/my-skill"]'], tmpDir, { HOME: tmpDir, USERPROFILE: tmpDir } ); assert.ok(result.success, `Command failed: ${result.error}`); const config = readConfig(tmpDir); assert.deepStrictEqual( config.agent_skills['gsd-executor'], ['skills/my-skill'], 'Should store array of skill paths' ); }); }); // ─── global: prefix support (#1992) ────────────────────────────────────────── describe('agent-skills global: prefix', () => { let tmpDir; let fakeHome; let globalSkillsDir; beforeEach(() => { tmpDir = createTempProject(); // Create a fake HOME with ~/.claude/skills/ structure fakeHome = fs.mkdtempSync(path.join(require('os').tmpdir(), 'gsd-1992-home-')); globalSkillsDir = path.join(fakeHome, '.claude', 'skills'); fs.mkdirSync(globalSkillsDir, { recursive: true }); }); afterEach(() => { cleanup(tmpDir); cleanup(fakeHome); }); function createGlobalSkill(name) { const skillDir = path.join(globalSkillsDir, name); fs.mkdirSync(skillDir, { recursive: true }); fs.writeFileSync(path.join(skillDir, 'SKILL.md'), `# ${name}\nGlobal skill content.\n`); return skillDir; } test('global:valid-skill resolves to $HOME/.claude/skills/valid-skill/SKILL.md', () => { createGlobalSkill('valid-skill'); writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['global:valid-skill'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.ok(r.ir.block.includes('valid-skill/SKILL.md'), `block must reference the global skill: ${r.ir.block}`); assert.ok(r.ir.block.includes(''), 'block must emit agent_skills XML'); }); test('global:invalid!name is rejected by regex and skipped', () => { writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['global:invalid!name'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', 'block must be empty when invalid name is rejected'); }); test('global:missing-skill is skipped when directory is absent', () => { writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['global:missing-skill'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', 'block must be empty when skill is missing'); }); // ─── #2941: bare skill name matching a global skill must hint at global: prefix ── test('#2941 — bare name matching a global skill hints at the global: prefix', () => { // Create a global skill so it exists on disk under ~/.claude/skills/ createGlobalSkill('patch-coverage-check'); // Reference it by BARE name (no global: prefix) — this resolves as // project-relative, which doesn't exist, so it's skipped. The warning // must hint that the name matches a global skill. writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['patch-coverage-check'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', 'block must be empty — bare name does not resolve as project-relative'); assert.ok(Array.isArray(r.ir.warnings), 'IR must include warnings'); const hintWarning = r.ir.warnings.find((w) => /patch-coverage-check/.test(w) && /global:/.test(w)); assert.ok(hintWarning, `warning must hint at the global: prefix when a bare name matches a global skill, got: ${JSON.stringify(r.ir.warnings)}`); }); test('#2941 — bare name with NO global match keeps the original warning (no false hint)', () => { // No global skill of this name exists. The warning must be the original // "Skill not found" message without a global: hint. writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['totally-nonexistent-skill'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', 'block must be empty'); assert.ok(Array.isArray(r.ir.warnings), 'IR must include warnings'); const notFoundWarning = r.ir.warnings.find((w) => /Skill not found/.test(w) && /totally-nonexistent-skill/.test(w)); assert.ok(notFoundWarning, `must have the standard "not found" warning, got: ${JSON.stringify(r.ir.warnings)}`); // Must NOT contain a global: hint — there is no global skill of this name. assert.ok(!notFoundWarning.includes('global:'), `warning must not hint at global: when no global skill matches, got: ${notFoundWarning}`); }); test('mix of global: and project-relative paths both resolve correctly', () => { createGlobalSkill('shadcn'); const projectSkillDir = path.join(tmpDir, 'skills', 'local-skill'); fs.mkdirSync(projectSkillDir, { recursive: true }); fs.writeFileSync(path.join(projectSkillDir, 'SKILL.md'), '# local\n'); writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['global:shadcn', 'skills/local-skill'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.ok(r.ir.block.includes('shadcn/SKILL.md'), 'block must include global shadcn'); assert.ok(r.ir.block.includes('skills/local-skill/SKILL.md'), 'block must include project-relative skill'); assert.strictEqual(r.ir.skills_count, 2, 'skills_count must be 2 for both configured paths'); }); test('global: with empty name produces clear warning and skips', () => { writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['global:'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', 'block must be empty for empty global: prefix'); }); }); // ─── loadTrustedGlobalRoots unit tests (#52) ────────────────────────────────── describe('loadTrustedGlobalRoots', () => { test('returns [] for undefined config', () => { assert.deepStrictEqual(loadTrustedGlobalRoots(undefined), []); }); test('returns [] for null config', () => { assert.deepStrictEqual(loadTrustedGlobalRoots(null), []); }); test('returns [] when agent_skills_security is absent', () => { assert.deepStrictEqual(loadTrustedGlobalRoots({}), []); }); test('returns [] when trusted_global_roots is absent', () => { assert.deepStrictEqual(loadTrustedGlobalRoots({ agent_skills_security: {} }), []); }); test('returns [] when trusted_global_roots is not an array', () => { assert.deepStrictEqual(loadTrustedGlobalRoots({ agent_skills_security: { trusted_global_roots: '/some/path' } }), []); assert.deepStrictEqual(loadTrustedGlobalRoots({ agent_skills_security: { trusted_global_roots: 42 } }), []); assert.deepStrictEqual(loadTrustedGlobalRoots({ agent_skills_security: { trusted_global_roots: true } }), []); }); test('drops non-string entries from the array', () => { // Use a real temp dir so realpathSync succeeds; non-strings are still dropped const realDir = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-tgr-ns-')); try { const realPath = fs.realpathSync(realDir); const config = { agent_skills_security: { trusted_global_roots: [42, null, realDir, true] } }; assert.deepStrictEqual(loadTrustedGlobalRoots(config), [realPath]); } finally { cleanup(realDir); } }); test('drops project-relative (non-absolute) entries', () => { const config = { agent_skills_security: { trusted_global_roots: ['foo/bar', 'relative/path'] } }; assert.deepStrictEqual(loadTrustedGlobalRoots(config), []); }); test('keeps absolute paths — real dirs are kept and canonicalized', () => { // Non-existent dirs are dropped; use real temp dirs and compare against realpaths const dir1 = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-tgr-d1-')); const dir2 = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-tgr-d2-')); try { const real1 = fs.realpathSync(dir1); const real2 = fs.realpathSync(dir2); const config = { agent_skills_security: { trusted_global_roots: [dir1, dir2] } }; assert.deepStrictEqual(loadTrustedGlobalRoots(config), [real1, real2]); } finally { cleanup(dir1); cleanup(dir2); } }); test('expands leading ~/ to os.homedir() — kept only if the dir exists', () => { // Create a real subdir under os.tmpdir() and verify it is kept (canonical compare) // Note: we cannot reliably create a dir under os.homedir() in CI, so we verify // the expansion logic using a known-existing absolute path that happens to be // "within" homedir — the tilde expansion is exercised separately; this test // verifies the returned value equals the realpath of the expanded path. const subdir = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-tgr-tilde-')); try { const realSub = fs.realpathSync(subdir); // Pass a raw path (non-tilde) to verify realpath canonicalization at minimum const config = { agent_skills_security: { trusted_global_roots: [subdir] } }; const result = loadTrustedGlobalRoots(config); assert.deepStrictEqual(result, [realSub], 'result must equal realpath of existing dir'); } finally { cleanup(subdir); } }); test('non-existent absolute root is dropped (returns [])', () => { const config = { agent_skills_security: { trusted_global_roots: ['/nonexistent-gsd-root-12345xyz'] } }; assert.deepStrictEqual(loadTrustedGlobalRoots(config), [], 'non-existent root must be dropped'); }); test('trusted root that is a symlink is canonicalized to the link target', () => { const realTarget = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-tgr-symtgt-')); const symlinkPath = path.join(os.tmpdir(), `gsd-tgr-symlink-${Date.now()}`); let symlinkCreated = false; try { try { fs.symlinkSync(realTarget, symlinkPath); symlinkCreated = true; } catch (err) { if (err.code === 'EPERM' || err.code === 'ENOSYS') { // symlinks not supported on this platform — skip return; } throw err; } const realResolved = fs.realpathSync(realTarget); const config = { agent_skills_security: { trusted_global_roots: [symlinkPath] } }; const result = loadTrustedGlobalRoots(config); assert.deepStrictEqual(result, [realResolved], 'symlink root must be canonicalized to the link target'); } finally { cleanup(realTarget); if (symlinkCreated) { try { fs.unlinkSync(symlinkPath); } catch { /* ignore */ } } } }); test('de-duplicates entries by canonical path', () => { // Both entries point to the same real dir — after canonicalization, only one is kept const realDir = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-tgr-dedup-')); try { const realPath = fs.realpathSync(realDir); const config = { agent_skills_security: { trusted_global_roots: [realDir, realDir, realPath] } }; assert.deepStrictEqual(loadTrustedGlobalRoots(config), [realPath]); } finally { cleanup(realDir); } }); test('expands ~/ before absolute check — non-existent ~/x is dropped after expansion', () => { // ~/x becomes an absolute path after expansion, but if ~/x does not exist it is // dropped by the realpathSync guard (non-existent root is not trustworthy). const expandedX = path.join(os.homedir(), 'x-gsd-nonexistent-12345'); // Ensure it really doesn't exist if (fs.existsSync(expandedX)) { // Cannot test non-existence reliably — skip assertion return; } const config = { agent_skills_security: { trusted_global_roots: ['~/x-gsd-nonexistent-12345'] } }; const result = loadTrustedGlobalRoots(config); assert.deepStrictEqual(result, [], 'non-existent ~/x must be dropped after expansion'); }); test('expands bare ~ to os.homedir()', () => { // Bare ~ (exactly) must expand to homedir — mirrors runtime-homes.cts:28 const config = { agent_skills_security: { trusted_global_roots: ['~'] } }; const result = loadTrustedGlobalRoots(config); // ~ expands to homedir, which is then rejected as a dangerously broad root // So the result must be [] (rejected after expansion) assert.deepStrictEqual(result, [], 'bare ~ expands to homedir and is then rejected as too broad'); }); test('rejects filesystem root /', () => { const config = { agent_skills_security: { trusted_global_roots: ['/'] } }; assert.deepStrictEqual(loadTrustedGlobalRoots(config), [], 'filesystem root must be rejected'); }); test('rejects os.homedir() itself', () => { const config = { agent_skills_security: { trusted_global_roots: [os.homedir()] } }; assert.deepStrictEqual(loadTrustedGlobalRoots(config), [], 'homedir itself must be rejected as too broad'); }); }); // ─── trusted_global_roots integration guard (#52) ───────────────────────────── // // NOTE: These tests validate the trusted-root bypass logic by directly calling // loadTrustedGlobalRoots + validatePath rather than invoking the full CLI // (which would require controlling the runtime HOME path in a way that also // triggers a symlink escape scenario through gsd-tools subprocess invocation). // Full end-to-end symlink testing would require OS-level symlink setup in tmp // dirs and a mechanism to redirect the runtime home path — coverage here is // sufficient to verify the core guard logic. describe('trusted_global_roots guard logic', () => { let tmpDir; let externalDir; beforeEach(() => { tmpDir = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-52-trusted-')); externalDir = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-52-external-')); // Create a skill file in externalDir fs.writeFileSync(path.join(externalDir, 'SKILL.md'), '# External\n'); }); afterEach(() => { cleanup(tmpDir); cleanup(externalDir); }); test('validatePath rejects skill outside globalSkillsBase (baseline — no trusted roots)', () => { const skillMd = path.join(externalDir, 'SKILL.md'); const result = validatePath(skillMd, tmpDir, { allowAbsolute: true }); assert.ok(!result.safe, 'skill outside base must be rejected by validatePath'); }); test('with trusted root matching real target dir — validatePath accepts', () => { // Simulate the trusted-root fallback: skill is outside base but inside trusted root const skillMd = path.join(externalDir, 'SKILL.md'); const baseCheck = validatePath(skillMd, tmpDir, { allowAbsolute: true }); assert.ok(!baseCheck.safe, 'base check must fail (prerequisite)'); // Trusted root fallback: check against externalDir const config = { agent_skills_security: { trusted_global_roots: [externalDir] } }; const trustedRoots = loadTrustedGlobalRoots(config); const acceptedViaTrustedRoot = trustedRoots.some((root) => { const rootCheck = validatePath(skillMd, root, { allowAbsolute: true }); return rootCheck.safe; }); assert.ok(acceptedViaTrustedRoot, 'skill must be accepted when within a trusted root'); }); test('with unrelated trusted root — skill still rejected', () => { const skillMd = path.join(externalDir, 'SKILL.md'); const unrelatedDir = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-52-unrelated-')); try { const config = { agent_skills_security: { trusted_global_roots: [unrelatedDir] } }; const trustedRoots = loadTrustedGlobalRoots(config); const acceptedViaTrustedRoot = trustedRoots.some((root) => { const rootCheck = validatePath(skillMd, root, { allowAbsolute: true }); return rootCheck.safe; }); assert.ok(!acceptedViaTrustedRoot, 'skill must still be rejected when trusted root is unrelated'); } finally { cleanup(unrelatedDir); } }); test('with empty trusted_global_roots array — skill still rejected (byte-identical to today)', () => { const skillMd = path.join(externalDir, 'SKILL.md'); const config = { agent_skills_security: { trusted_global_roots: [] } }; const trustedRoots = loadTrustedGlobalRoots(config); assert.strictEqual(trustedRoots.length, 0, 'no roots loaded'); const acceptedViaTrustedRoot = trustedRoots.some((root) => { const rootCheck = validatePath(skillMd, root, { allowAbsolute: true }); return rootCheck.safe; }); assert.ok(!acceptedViaTrustedRoot, 'skill must be rejected when trusted roots is empty'); }); }); // ─── trusted_global_roots e2e CLI tests (#52) ───────────────────────────────── // // These tests exercise the full CLI path (runAgentSkillsJson → gsd-tools → // loadConfig → agent-skills command) to verify that agent_skills_security is // properly threaded through the config pipeline. Symlinks are created so a // global: skill's realpath escapes the ~/.claude/skills/ base, requiring a // trusted root to be accepted. describe('trusted_global_roots e2e CLI (#52)', () => { let tmpDir; let fakeHome; let globalSkillsDir; let sharedRoot; let symlinkSupported; beforeEach(() => { tmpDir = createTempProject(); fakeHome = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-52-e2e-home-')); globalSkillsDir = path.join(fakeHome, '.claude', 'skills'); fs.mkdirSync(globalSkillsDir, { recursive: true }); sharedRoot = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-52-e2e-shared-')); // Create the shared skill directory OUTSIDE fakeHome const sharedSkillDir = path.join(sharedRoot, 'shared-skill'); fs.mkdirSync(sharedSkillDir, { recursive: true }); fs.writeFileSync(path.join(sharedSkillDir, 'SKILL.md'), '# Shared Skill\nContent from shared root.\n'); // Attempt to create a symlink inside globalSkillsDir pointing to the shared skill symlinkSupported = true; try { fs.symlinkSync(sharedSkillDir, path.join(globalSkillsDir, 'shared-skill')); } catch (err) { if (err.code === 'EPERM' || err.code === 'ENOSYS') { symlinkSupported = false; } else { throw err; } } }); afterEach(() => { cleanup(tmpDir); cleanup(fakeHome); cleanup(sharedRoot); }); test('REGRESSION: symlinked-escape skill with NO agent_skills_security in config → block is empty', (t) => { if (!symlinkSupported) { t.skip('symlinks not supported on this platform'); return; } // No agent_skills_security in config — symlink escape must be blocked writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global:shared-skill'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', 'block must be empty when symlink escapes base and no trusted root configured'); }); test('FEATURE: symlink escape with matching trusted_global_roots → block includes skill', (t) => { if (!symlinkSupported) { t.skip('symlinks not supported on this platform'); return; } // Configure the sharedRoot as a trusted global root writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global:shared-skill'] }, agent_skills_security: { trusted_global_roots: [sharedRoot] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.ok(r.ir.block.includes(''), `block must contain tag, got: ${r.ir.block}`); assert.ok(r.ir.block.includes('shared-skill/SKILL.md'), `block must include the shared skill, got: ${r.ir.block}`); assert.ok(r.ir.skills_count >= 1, 'skills_count must be at least 1'); }); test('FEATURE NOTE: accepted-via-trusted-root emits NOTE on stderr', (t) => { if (!symlinkSupported) { t.skip('symlinks not supported on this platform'); return; } // Capture stderr using spawnSync (runGsdTools only captures stderr on failure) writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global:shared-skill'] }, agent_skills_security: { trusted_global_roots: [sharedRoot] }, }); const r = runGsdToolsWithStderr( ['agent-skills', '--json', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed (exit ${r.exitCode}): ${r.stderr}`); // The NOTE must appear on stderr using only the skill name (no full paths) assert.ok( r.stderr.includes('[agent-skills] NOTE: Global skill "shared-skill" accepted via trusted_global_roots'), `stderr must contain the trusted-root NOTE, got: ${r.stderr}`, ); }); test('NEGATIVE: symlink escape with unrelated trusted root (existing dir) → block is empty', (t) => { if (!symlinkSupported) { t.skip('symlinks not supported on this platform'); return; } // The unrelated dir MUST exist so it isn't dropped for the wrong reason (non-existence). // Rejection must be because it doesn't cover the shared skill location, not because // the dir is missing — otherwise the test would pass vacuously. const unrelatedRoot = fs.mkdtempSync(path.join(os.tmpdir(), 'gsd-52-e2e-unrelated-')); // Verify the dir actually exists so the trusted root is loaded (not silently dropped) assert.ok(fs.existsSync(unrelatedRoot), 'unrelated root must exist so it enters the trusted roots list'); try { writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global:shared-skill'] }, agent_skills_security: { trusted_global_roots: [unrelatedRoot] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', 'block must be empty when trusted root does not cover the shared skill location'); } finally { cleanup(unrelatedRoot); } }); test('HARDENING: trusted_global_roots: ["/"] → block is empty (broad root rejected)', (t) => { if (!symlinkSupported) { t.skip('symlinks not supported on this platform'); return; } writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global:shared-skill'] }, agent_skills_security: { trusted_global_roots: ['/'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', 'block must be empty when "/" is the trusted root (rejected as too broad)'); }); }); // ─── bug #1243: plugin-namespaced agent skills ───────────────────────────────── // allow-test-rule: source-text-is-the-product (#1243) describe('bug #1243: plugin-namespaced agent skills', () => { let tmpDir; let fakeHome; let globalSkillsDir; beforeEach(() => { tmpDir = createTempProject(); fakeHome = fs.mkdtempSync(path.join(require('os').tmpdir(), 'gsd-1243-home-')); globalSkillsDir = path.join(fakeHome, '.claude', 'skills'); fs.mkdirSync(globalSkillsDir, { recursive: true }); }); afterEach(() => { cleanup(tmpDir); cleanup(fakeHome); }); function createGlobalSkill1243(name) { const skillDir = path.join(globalSkillsDir, name); fs.mkdirSync(skillDir, { recursive: true }); fs.writeFileSync(path.join(skillDir, 'SKILL.md'), `# ${name}\nGlobal skill content.\n`); return skillDir; } // ─── happy path ──────────────────────────────────────────────────────────── test('happy: global:coderabbit:code-review (claude) emits directive naming coderabbit:code-review, no @-line, no path', () => { writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global:coderabbit:code-review'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); // Must contain the namespaced name assert.ok( r.ir.block.includes('coderabbit:code-review'), `block must contain namespaced name, got: ${r.ir.block}` ); // Must NOT be a @-include line assert.ok( !r.ir.block.includes('- @'), `block must not contain @-include line, got: ${r.ir.block}` ); // Must NOT contain filesystem path or plugins/cache assert.ok( !r.ir.block.includes('plugins/cache'), `block must not contain plugins/cache, got: ${r.ir.block}` ); // Must have the wrapper assert.ok( r.ir.block.includes(''), `block must contain wrapper, got: ${r.ir.block}` ); }); // ─── mixed: path-resolvable + namespaced ──────────────────────────────────── test('mixed: path-resolvable global + namespaced → @-include AND directive in block', () => { createGlobalSkill1243('my-local-skill'); writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global:my-local-skill', 'global:vendor:remote-skill'], }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); // The path-resolvable one must be a @-include assert.ok( r.ir.block.includes('- @') && r.ir.block.includes('my-local-skill/SKILL.md'), `block must contain @-include for path-resolvable skill, got: ${r.ir.block}` ); // The namespaced one must be a directive, not a @-include assert.ok( r.ir.block.includes('vendor:remote-skill'), `block must contain namespaced directive, got: ${r.ir.block}` ); }); // ─── precedence: bare unresolved vs resolved ───────────────────────────────── test('precedence: bare global:foo not-on-disk → not found/skipped, no directive', () => { // foo is NOT created on disk writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global:foo'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', `bare unresolved name must produce empty block, got: ${r.ir.block}`); }); test('precedence: bare global:foo that resolves → @-include (existing path behavior)', () => { createGlobalSkill1243('foo'); writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global:foo'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.ok( r.ir.block.includes('- @') && r.ir.block.includes('foo/SKILL.md'), `path-resolvable bare name must produce @-include, got: ${r.ir.block}` ); }); // ─── negative validation ───────────────────────────────────────────────────── test('negative: global:../evil rejected', () => { writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global:../evil'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', `traversal must be rejected, got: ${r.ir.block}`); }); test('negative: global:a::b rejected (empty segment)', () => { writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global:a::b'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', `double-colon must be rejected, got: ${r.ir.block}`); }); test('negative: global::x rejected (leading colon)', () => { writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global::x'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', `leading colon must be rejected, got: ${r.ir.block}`); }); test('negative: global:x: rejected (trailing colon)', () => { writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global:x:'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', `trailing colon must be rejected, got: ${r.ir.block}`); }); test('negative: global:a/b rejected (slash in name)', () => { writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global:a/b'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', `slash in name must be rejected, got: ${r.ir.block}`); }); test('negative: global: (empty name) rejected', () => { writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global:'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', `empty name must be rejected, got: ${r.ir.block}`); }); // ─── cross-runtime ────────────────────────────────────────────────────────── test('cross-runtime: namespaced + codex runtime → no directive (skipped/warned)', () => { writeConfig(tmpDir, { runtime: 'codex', agent_skills: { 'gsd-executor': ['global:vendor:remote-skill'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual( r.ir.block, '', `namespaced skill on non-claude runtime must produce empty block, got: ${r.ir.block}` ); }); test('cross-runtime: namespaced + claude runtime → directive emitted', () => { writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global:vendor:remote-skill'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.ok( r.ir.block.includes('vendor:remote-skill'), `claude runtime must emit directive for namespaced skill, got: ${r.ir.block}` ); }); // ─── regression (Hyrum) ───────────────────────────────────────────────────── test('HYRUM regression: include-only block is BYTE-IDENTICAL to expected format', () => { // This test asserts the FULL block output is byte-identical for an include-only // config (path-resolvable global skill + project-relative local skill). // It protects the ~22 workflow consumers that depend on this exact block shape. createGlobalSkill1243('shadcn'); const projectSkillDir = path.join(tmpDir, 'skills', 'local'); fs.mkdirSync(projectSkillDir, { recursive: true }); fs.writeFileSync(path.join(projectSkillDir, 'SKILL.md'), '# local\n'); writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global:shadcn', 'skills/local'] }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); // Compute the expected absolute path for the global skill (resolved via fakeHome) const expectedGlobalPath = path.join(fakeHome, '.claude', 'skills', 'shadcn', 'SKILL.md'); // The local path is always project-relative (not absolute) const expectedLocalPath = 'skills/local/SKILL.md'; const expectedBlock = [ '', 'Read these user-configured skills:', `- @${expectedGlobalPath.replace(/\\/g, '/')}`, `- @${expectedLocalPath}`, '', ].join('\n'); assert.strictEqual( r.ir.block.replace(/\\/g, '/'), expectedBlock, `HYRUM: block must be byte-identical to expected include-only format.\nExpected: ${JSON.stringify(expectedBlock)}\nGot: ${JSON.stringify(r.ir.block)}` ); }); test('regression: empty/missing config → empty block', () => { const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.block, '', `missing config must produce empty block, got: ${r.ir.block}`); }); test('BYTE-IDENTICAL mixed-block: path-resolvable global + plugin-namespaced → single section, interleaved, exact format', () => { // Regression for code-review finding: docs previously showed a bogus two-section format // with a separate "Load these plugin-provided skills using the Skill tool:" header. // The ACTUAL emitted block is a single section where @-includes and // plugin-provided directives are interleaved in config order under the same header. // // Config order: global:my-local-skill (path-resolvable) FIRST, then global:vendor:remote-skill (namespaced). createGlobalSkill1243('my-local-skill'); writeConfig(tmpDir, { runtime: 'claude', agent_skills: { 'gsd-executor': ['global:my-local-skill', 'global:vendor:remote-skill'], }, }); const r = runAgentSkillsJson( ['agent-skills', 'gsd-executor'], tmpDir, { HOME: fakeHome, USERPROFILE: fakeHome } ); assert.ok(r.success, `Command failed: ${r.error}`); // Compute the expected @-include path (absolute path to the resolved global skill) const expectedInclude = path.join(fakeHome, '.claude', 'skills', 'my-local-skill', 'SKILL.md'); const expectedBlock = [ '', 'Read these user-configured skills:', `- @${expectedInclude.replace(/\\/g, '/')}`, '- Load the `vendor:remote-skill` skill via the Skill tool before proceeding (plugin-provided).', '', ].join('\n'); assert.strictEqual( r.ir.block.replace(/\\/g, '/'), expectedBlock, `BYTE-IDENTICAL: mixed block must be a single section with @-include and directive interleaved.\nExpected: ${JSON.stringify(expectedBlock)}\nGot: ${JSON.stringify(r.ir.block)}` ); // Structural assertions: must NOT contain any secondary header assert.ok( !r.ir.block.includes('Load these plugin-provided skills using the Skill tool:'), `block must NOT contain the bogus two-section header, got: ${r.ir.block}` ); }); // ─── grant: Skill tool in consumer agent frontmatter ───────────────────────── test('grant: all 22 agent_skills consumer agents have Skill in their tools frontmatter', () => { const CONSUMER_AGENTS = [ 'gsd-advisor-researcher', 'gsd-assumptions-analyzer', 'gsd-code-fixer', 'gsd-code-reviewer', 'gsd-codebase-mapper', 'gsd-debugger', 'gsd-doc-writer', 'gsd-eval-auditor', 'gsd-executor', 'gsd-integration-checker', 'gsd-nyquist-auditor', 'gsd-phase-researcher', 'gsd-plan-checker', 'gsd-planner', 'gsd-project-researcher', 'gsd-research-synthesizer', 'gsd-roadmapper', 'gsd-security-auditor', 'gsd-ui-auditor', 'gsd-ui-checker', 'gsd-ui-researcher', 'gsd-verifier', ]; const AGENTS_DIR = path.join(__dirname, '..', 'agents'); /** * Extract tool names from an agent file's frontmatter. * Handles both inline CSV format ("tools: Read, Write") and * YAML block sequence format ("tools:\n - Read\n - Write"). */ function extractTools(content) { // Parse frontmatter between first pair of --- delimiters const lines = content.split('\n'); let fmStart = -1; let fmEnd = -1; for (let i = 0; i < lines.length; i++) { if (lines[i].trim() === '---') { if (fmStart === -1) fmStart = i; else { fmEnd = i; break; } } } if (fmStart === -1 || fmEnd === -1) return []; const fmLines = lines.slice(fmStart + 1, fmEnd); // Find 'tools:' line const toolsIdx = fmLines.findIndex((l) => /^tools:/.test(l)); if (toolsIdx === -1) return []; const toolsLine = fmLines[toolsIdx]; const inlineValue = toolsLine.replace(/^tools:\s*/, '').trim(); if (inlineValue) { // Inline CSV format: "tools: Read, Write, ..." return inlineValue.split(',').map((t) => t.trim()).filter(Boolean); } // Block sequence format: next lines starting with " - ..." const tools = []; for (let i = toolsIdx + 1; i < fmLines.length; i++) { const m = fmLines[i].match(/^\s+-\s+(\S.*)/); if (!m) break; // end of block list tools.push(m[1].trim()); } return tools; } const failures = []; for (const agentName of CONSUMER_AGENTS) { const agentPath = path.join(AGENTS_DIR, agentName + '.md'); assert.ok(fs.existsSync(agentPath), `Agent file not found: ${agentPath}`); const content = fs.readFileSync(agentPath, 'utf8'); const toolsList = extractTools(content); if (!toolsList.includes('Skill')) { failures.push(`${agentName}: tools=[${toolsList.join(', ')}] — missing Skill`); } } assert.deepStrictEqual( failures, [], `These consumer agents are missing "Skill" in their tools frontmatter:\n${failures.join('\n')}` ); }); test('grant: exact set of agents with Skill equals the 22 consumers (drift guard)', () => { // This test asserts that the SET of agents declaring Skill in their frontmatter // tools: field is EXACTLY the 22 known consumers — no more, no less. // // If a new agent legitimately needs Skill outside this set, add it to // KNOWN_SKILL_AGENTS with a comment explaining why. // // Empirically verified 2026-06-14: no agent outside the 22 consumers declares // Skill in its frontmatter tools: — KNOWN_SKILL_AGENTS is the 22 consumers only. const KNOWN_SKILL_AGENTS = new Set([ // ── 22 agent_skills consumers (spawn child agents + inject skill context) ── 'gsd-advisor-researcher', 'gsd-assumptions-analyzer', 'gsd-code-fixer', 'gsd-code-reviewer', 'gsd-codebase-mapper', 'gsd-debugger', 'gsd-doc-writer', 'gsd-eval-auditor', 'gsd-executor', 'gsd-integration-checker', 'gsd-nyquist-auditor', 'gsd-phase-researcher', 'gsd-plan-checker', 'gsd-planner', 'gsd-project-researcher', 'gsd-research-synthesizer', 'gsd-roadmapper', 'gsd-security-auditor', 'gsd-ui-auditor', 'gsd-ui-checker', 'gsd-ui-researcher', 'gsd-verifier', ]); // allow-test-rule: source-text-is-the-product (#1243) const AGENTS_DIR = path.join(__dirname, '..', 'agents'); const agentFiles = fs.readdirSync(AGENTS_DIR).filter((f) => f.startsWith('gsd-') && f.endsWith('.md')); /** * Extract tool names from an agent file's frontmatter (same logic as above). * Handles both inline CSV and YAML block-sequence forms. */ function extractToolsForDriftGuard(content) { const lines = content.split('\n'); let fmStart = -1, fmEnd = -1; for (let i = 0; i < lines.length; i++) { if (lines[i].trim() === '---') { if (fmStart === -1) fmStart = i; else { fmEnd = i; break; } } } if (fmStart === -1 || fmEnd === -1) return []; const fmLines = lines.slice(fmStart + 1, fmEnd); const toolsIdx = fmLines.findIndex((l) => /^tools:/.test(l)); if (toolsIdx === -1) return []; const toolsLine = fmLines[toolsIdx]; const inlineValue = toolsLine.replace(/^tools:\s*/, '').trim(); if (inlineValue) return inlineValue.split(',').map((t) => t.trim()).filter(Boolean); const tools = []; for (let i = toolsIdx + 1; i < fmLines.length; i++) { const m = fmLines[i].match(/^\s+-\s+(\S.*)/); if (!m) break; tools.push(m[1].trim()); } return tools; } // Collect actual set of agents with Skill in frontmatter const actualSkillSet = new Set(); for (const file of agentFiles) { const name = file.replace('.md', ''); const content = fs.readFileSync(path.join(AGENTS_DIR, file), 'utf8'); const tools = extractToolsForDriftGuard(content); if (tools.includes('Skill')) actualSkillSet.add(name); } // 1. Every consumer MUST have Skill const missingSkill = []; for (const agent of KNOWN_SKILL_AGENTS) { if (!actualSkillSet.has(agent)) missingSkill.push(agent); } assert.deepStrictEqual( missingSkill, [], `These consumer agents are MISSING "Skill" in their tools frontmatter:\n${missingSkill.join('\n')}` ); // 2. The actual skill set must EQUAL the known set exactly (no extras) const unexpectedSkill = []; for (const agent of actualSkillSet) { if (!KNOWN_SKILL_AGENTS.has(agent)) unexpectedSkill.push(agent); } assert.deepStrictEqual( unexpectedSkill, [], `These agents declare "Skill" but are NOT in KNOWN_SKILL_AGENTS:\n${unexpectedSkill.join('\n')}\nIf this is intentional, add the agent to KNOWN_SKILL_AGENTS with a comment.` ); }); }); // ─── Resolution Provenance diagnostics (#1415 / #1366) ──────────────────────── // // Verifies that cmdAgentSkills uses findProjectRoot (cwd-drift anchor) and // loadConfigResolved (provenance-aware config loading), and that the --json IR // includes the new fields: configured, reason, source, degraded. describe('agent-skills — Resolution Provenance (#1415)', () => { let tmpDir; beforeEach(() => { tmpDir = createTempProject(); }); afterEach(() => { cleanup(tmpDir); }); test('--json IR includes configured, reason, source, degraded fields', () => { // Minimal smoke: just the field presence const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir); assert.ok(r.success, `Command failed: ${r.error}`); assert.ok('configured' in r.ir, 'IR must include "configured" field'); assert.ok('reason' in r.ir, 'IR must include "reason" field'); assert.ok('source' in r.ir, 'IR must include "source" field'); assert.ok('degraded' in r.ir, 'IR must include "degraded" field'); }); test('not_configured: agent not in map → configured:false, reason:not_configured, no stderr warning', () => { writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['skills/foo'] }, }); const r = runGsdToolsWithStderr(['agent-skills', '--json', 'gsd-planner'], tmpDir, { HOME: tmpDir, USERPROFILE: tmpDir, }); assert.ok(r.success, `Command failed: ${r.stderr}`); const ir = JSON.parse(r.stdout); assert.strictEqual(ir.configured, false); assert.strictEqual(ir.reason, 'not_configured'); // No warning on stderr for not_configured assert.ok( !r.stderr.includes('WARNING'), `Should NOT emit WARNING for not_configured agent, got stderr: ${r.stderr}`, ); }); test('configured_empty: agent_skills[X]=[] → configured:true, reason:configured_empty, stderr WARNING, skills_count:0', () => { writeConfig(tmpDir, { agent_skills: { 'gsd-executor': [] }, }); const r = runGsdToolsWithStderr(['agent-skills', '--json', 'gsd-executor'], tmpDir, { HOME: tmpDir, USERPROFILE: tmpDir, }); assert.ok(r.success, `Command failed: ${r.stderr}`); const ir = JSON.parse(r.stdout); assert.strictEqual(ir.configured, true); assert.strictEqual(ir.reason, 'configured_empty'); assert.strictEqual(ir.skills_count, 0); assert.strictEqual(ir.block, ''); assert.ok( r.stderr.includes('WARNING') || r.stderr.toLowerCase().includes('warning'), `Should emit WARNING for configured_empty, got stderr: ${r.stderr}`, ); }); test('configured_unresolved: configured path that does not exist → reason:configured_unresolved, stderr WARNING', () => { writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['skills/nonexistent-1415'] }, }); const r = runGsdToolsWithStderr(['agent-skills', '--json', 'gsd-executor'], tmpDir, { HOME: tmpDir, USERPROFILE: tmpDir, }); assert.ok(r.success, `Command failed: ${r.stderr}`); const ir = JSON.parse(r.stdout); assert.strictEqual(ir.configured, true); assert.strictEqual(ir.reason, 'configured_unresolved'); assert.strictEqual(ir.block, ''); assert.ok( r.stderr.includes('WARNING') || r.stderr.toLowerCase().includes('warning'), `Should emit WARNING for configured_unresolved, got stderr: ${r.stderr}`, ); }); test('resolved: valid configured path → configured:true, reason:resolved, block non-empty', () => { const skillDir = path.join(tmpDir, 'skills', 'my-skill-1415'); fs.mkdirSync(skillDir, { recursive: true }); fs.writeFileSync(path.join(skillDir, 'SKILL.md'), '# My Skill\n'); writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['skills/my-skill-1415'] }, }); const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.configured, true); assert.strictEqual(r.ir.reason, 'resolved'); assert.ok(r.ir.block.includes(''), 'block must be non-empty for resolved'); }); test('cwd-drift: invoking from descendant subdir resolves config from project root', () => { const skillDir = path.join(tmpDir, 'skills', 'drift-skill'); fs.mkdirSync(skillDir, { recursive: true }); fs.writeFileSync(path.join(skillDir, 'SKILL.md'), '# Drift Skill\n'); writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['skills/drift-skill'] }, }); // Invoke from a descendant subdirectory const deepDir = path.join(tmpDir, 'src', 'feature'); fs.mkdirSync(deepDir, { recursive: true }); const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], deepDir); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.configured, true); assert.strictEqual(r.ir.reason, 'resolved'); assert.ok(r.ir.block.includes(''), `block must be non-empty for drift test, got: ${r.ir.block}`); }); test('source field matches config provenance (root when config.json present)', () => { writeConfig(tmpDir, { agent_skills: { 'gsd-executor': [] }, }); const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir); assert.ok(r.success, `Command failed: ${r.error}`); assert.strictEqual(r.ir.source, 'root'); assert.strictEqual(r.ir.degraded, false); }); test('Fix 3: agent_skills[X]="" (empty string) → configured_empty, skills_count:0, stderr WARNING', () => { writeConfig(tmpDir, { agent_skills: { 'gsd-executor': '' }, }); const r = runGsdToolsWithStderr(['agent-skills', '--json', 'gsd-executor'], tmpDir, { HOME: tmpDir, USERPROFILE: tmpDir, }); assert.ok(r.success, `Command failed: ${r.stderr}`); const ir = JSON.parse(r.stdout); assert.strictEqual(ir.configured, true, 'should be configured'); assert.strictEqual(ir.reason, 'configured_empty', `empty string must yield configured_empty, got: ${ir.reason}`); assert.strictEqual(ir.skills_count, 0, 'skills_count must be 0 for empty string'); assert.strictEqual(ir.block, '', 'block must be empty'); assert.ok( r.stderr.includes('WARNING') || r.stderr.toLowerCase().includes('warning'), `Should emit WARNING for empty-string configured_empty, got stderr: ${r.stderr}`, ); }); // ─── Resolution Convention P3 (#1416) ──────────────────────────────────────── // The --json IR gains an additive `value: { block, skills_count }` field // (Resolution envelope). All existing flat fields are retained // for back-compat. RED: value field absent before build; GREEN: after build:lib. test('P3 (#1416): --json IR includes value.block and value.skills_count matching flat fields (back-compat)', () => { const skillDir = path.join(tmpDir, 'skills', 'p3-skill'); fs.mkdirSync(skillDir, { recursive: true }); fs.writeFileSync(path.join(skillDir, 'SKILL.md'), '# P3 Skill\n'); writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['skills/p3-skill'] }, }); const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir); assert.ok(r.success, `Command failed: ${r.error}`); // value field must exist and be an object assert.ok(r.ir.value !== undefined && r.ir.value !== null, 'ir.value must be present (Resolution)'); assert.strictEqual(typeof r.ir.value, 'object', 'ir.value must be an object'); // value.block must match flat block assert.strictEqual(r.ir.value.block, r.ir.block, 'value.block must match flat block field'); assert.ok(r.ir.value.block.includes(''), 'value.block must contain '); // value.skills_count must match flat skills_count assert.strictEqual(r.ir.value.skills_count, r.ir.skills_count, 'value.skills_count must match flat skills_count field'); assert.strictEqual(r.ir.value.skills_count, 1, 'value.skills_count must be 1 for one configured path'); // All existing flat fields must still be present (back-compat) assert.strictEqual(typeof r.ir.agent_type, 'string', 'flat agent_type must still be present'); assert.strictEqual(typeof r.ir.block, 'string', 'flat block must still be present'); assert.strictEqual(typeof r.ir.skills_count, 'number', 'flat skills_count must still be present'); assert.ok(Array.isArray(r.ir.warnings), 'flat warnings must still be present'); assert.strictEqual(typeof r.ir.configured, 'boolean', 'flat configured must still be present'); assert.strictEqual(typeof r.ir.reason, 'string', 'flat reason must still be present'); assert.ok('source' in r.ir, 'flat source must still be present'); assert.ok('degraded' in r.ir, 'flat degraded must still be present'); }); test('P3 (#1416): value.block and value.skills_count are consistent when unconfigured', () => { // No config → not_configured; value must still be present with empty block and 0 count const r = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir); assert.ok(r.success, `Command failed: ${r.error}`); assert.ok(r.ir.value !== undefined, 'ir.value must be present even when unconfigured'); assert.strictEqual(r.ir.value.block, r.ir.block, 'value.block must match flat block (empty)'); assert.strictEqual(r.ir.value.skills_count, r.ir.skills_count, 'value.skills_count must match flat skills_count (0)'); assert.strictEqual(r.ir.value.block, '', 'value.block must be empty when unconfigured'); assert.strictEqual(r.ir.value.skills_count, 0, 'value.skills_count must be 0 when unconfigured'); }); }); describe('#1400 regression: plain agent-skills output survives pipe/file stdout', () => { // The plain (non---json) path previously did process.stdout.write(block) // immediately followed by process.exit(0). When stdout is a pipe or file // (how workflows consume it via `$(gsd_run query agent-skills )`) // rather than a TTY, process.exit() tears the process down before Node // flushes the async stdout buffer — on Windows that reliably truncates the // write to 0 bytes, so every ${AGENT_SKILLS_*} substitution expands empty. // The fix routes the plain path through the same synchronous-flush output() // helper the --json branch uses. These tests capture stdout via a real file // descriptor (not a TTY) and assert the block arrives intact. let tmpDir; beforeEach(() => { tmpDir = createTempProject(); const skillDir = path.join(tmpDir, 'skills', 'test-skill'); fs.mkdirSync(skillDir, { recursive: true }); fs.writeFileSync(path.join(skillDir, 'SKILL.md'), '# Test Skill\n'); writeConfig(tmpDir, { agent_skills: { 'gsd-executor': ['skills/test-skill'], }, }); }); afterEach(() => { cleanup(tmpDir); }); // Run the plain path with stdout redirected to a real file descriptor // (the truncation-prone case), then read the file back. function runPlainToFile(agentType) { const outPath = path.join(tmpDir, 'agent-skills.out'); const fd = fs.openSync(outPath, 'w'); try { // Kept as a raw spawnSync (not the process-seam): the seam does not // forward a `stdio` option, and this test needs stdout wired directly // to a real file descriptor to reproduce the exit-before-flush // truncation bug — capturing via a pipe would defeat the point. const result = spawnSync( process.execPath, [TOOLS_PATH, 'query', 'agent-skills', agentType], { cwd: tmpDir, env: { ...process.env, ...TEST_ENV_BASE, HOME: tmpDir, USERPROFILE: tmpDir }, stdio: ['ignore', fd, 'pipe'], timeout: PROBE_TIMEOUT_MS, }, ); return { status: result.status, contents: fs.readFileSync(outPath, 'utf-8') }; } finally { fs.closeSync(fd); } } test('writes the full block to a redirected file (non-empty, not truncated)', () => { const { status, contents } = runPlainToFile('gsd-executor'); assert.strictEqual(status, 0, 'command must exit 0'); assert.ok(contents.length > 0, 'redirected file must not be empty (exit-before-flush truncation)'); assert.ok(contents.includes(''), `file must contain opening tag, got: ${JSON.stringify(contents)}`); assert.ok(contents.includes(''), 'file must contain closing tag'); assert.ok(contents.includes('skills/test-skill/SKILL.md'), 'file must contain the configured skill path'); }); test('plain file output equals the --json .block content byte-for-byte', () => { const { contents } = runPlainToFile('gsd-executor'); const jsonResult = runAgentSkillsJson(['agent-skills', 'gsd-executor'], tmpDir, { HOME: tmpDir, USERPROFILE: tmpDir, }); assert.ok(jsonResult.success, `--json command failed: ${jsonResult.error}`); assert.strictEqual( contents, jsonResult.ir.block, 'plain stdout block must match the --json .block exactly', ); assert.ok(contents.length > 0, 'block must be non-empty for a configured agent'); }); // RULESET.TESTS.boundary-coverage — at/over the OS pipe-buffer limit. // The earlier tests use a ~95-byte block; this one drives a payload well past // the ~64 KB pipe buffer through a pipe. The pre-fix `process.stdout.write + // process.exit(0)` emitted only the first ~64 KB before the process tore down; // writeAllSync's offset loop instead writes every byte synchronously, however // the OS chooses to chunk a write that large. (This is an integration check on // the boundary, not a forced-partial-write unit test — depending on the host, // a single writeSync may still drain the whole buffer.) test('writes a >64 KB block through a pipe without truncation (pipe-buffer boundary)', () => { const PIPE_BUFFER = 64 * 1024; // Each resolved skill adds one `- @/SKILL.md` line. Keep each path // component short (Windows MAX_PATH safety) and use many skills to clear the // pipe buffer comfortably (~80 KB). const filler = 'p'.repeat(60); const skillPaths = []; for (let i = 0; i < 900; i++) { const rel = path.join('skills', `skill-${String(i).padStart(4, '0')}-${filler}`); fs.mkdirSync(path.join(tmpDir, rel), { recursive: true }); fs.writeFileSync(path.join(tmpDir, rel, 'SKILL.md'), '# s\n'); skillPaths.push(rel.split(path.sep).join('/')); // POSIX form for config } writeConfig(tmpDir, { agent_skills: { 'gsd-executor': skillPaths } }); // stdout to a pipe (the truncation-prone case the bug is about), captured // via the process seam — proves writeAllSync drained every byte before // exit. Actual output here is well under the seam's implicit 1MB // spawnSync maxBuffer default, so no override is needed. const result = runNode([TOOLS_PATH, 'query', 'agent-skills', 'gsd-executor'], { cwd: tmpDir, env: { ...process.env, ...TEST_ENV_BASE, HOME: tmpDir, USERPROFILE: tmpDir }, timeoutMs: PROBE_TIMEOUT_MS, }); const out = result.stdout || ''; assert.strictEqual(result.exitCode, 0, `command must exit 0; stderr=${result.stderr}`); assert.ok( Buffer.byteLength(out, 'utf-8') > PIPE_BUFFER, `block must exceed the ${PIPE_BUFFER}-byte pipe buffer to exercise partial writes (got ${Buffer.byteLength(out, 'utf-8')} bytes)`, ); // No head/tail truncation, and both the first and last configured skills // present — a partial-write bug would drop the tail (or everything). assert.ok(out.trim().startsWith(''), 'block must start with the opening tag'); assert.ok(out.trim().endsWith(''), 'block must end with the closing tag (no tail truncation)'); assert.ok(out.includes(`- @${skillPaths[0]}/SKILL.md`), 'first skill ref must be present'); assert.ok(out.includes(`- @${skillPaths[skillPaths.length - 1]}/SKILL.md`), 'last skill ref must be present'); }); });