'use strict'; /** * loop-render-hooks.test.cjs — behavioral tests for loop-resolver.cjs. * * ADR-857 phase 3c. * Uses node:test + node:assert/strict. * Pure-function tests (resolveLoopHooks, renderLoopHooks) pass registry+config * directly — no I/O. End-to-end tests use cmdLoopRenderHooks + a temp project. */ const { describe, test, before, after } = require('node:test'); const assert = require('node:assert/strict'); const fs = require('node:fs'); const os = require('node:os'); const path = require('node:path'); const { cleanup } = require('./helpers.cjs'); const { resolveLoopHooks, renderLoopHooks, _getNestedConfigValue, _resolveActivationValue, _readRawConfigKey, CANONICAL_POINTS_FALLBACK, CANONICAL_POINTS, } = require('../gsd-core/bin/lib/loop-resolver.cjs'); // The real registry for integration tests const realRegistry = require('../gsd-core/bin/lib/capability-registry.cjs'); // ─── Synthetic registry fixtures ───────────────────────────────────────────── /** * Build a minimal synthetic registry with a single step hook at a given point. * Optionally include a configSchema for testing default-based activation. */ function makeRegistry({ point = 'plan:pre', steps = [], contributions = [], gates = {}, configSchema = {} } = {}) { const byLoopPoint = {}; for (const p of CANONICAL_POINTS_FALLBACK) { byLoopPoint[p] = { steps: [], contributions: [], gates: [] }; } if (steps.length) byLoopPoint[point].steps = steps; if (contributions.length) byLoopPoint[point].contributions = contributions; if (gates[point]) byLoopPoint[point].gates = gates[point]; return { byLoopPoint, configSchema }; } // ─── Temp project helpers ───────────────────────────────────────────────────── let tmpProjectDir; // A project with NO .planning/config.json — relies on schema defaults let tmpEmptyProjectDir; // A project where ui_phase is explicitly false in root config let tmpFalseConfigProjectDir; // Runtime config dir whose surface disables the UI capability let tmpUiDisabledConfigDir; before(() => { tmpProjectDir = fs.mkdtempSync(path.join(os.tmpdir(), 'loop-resolver-test-')); const planningDir = path.join(tmpProjectDir, '.planning'); fs.mkdirSync(planningDir, { recursive: true }); // Write minimal config.json with all UI flags enabled fs.writeFileSync( path.join(planningDir, 'config.json'), JSON.stringify({ workflow: { ui_phase: true, ui_review: true, ui_safety_gate: true } }), 'utf8', ); // Empty project — no config.json: schema defaults drive activation tmpEmptyProjectDir = fs.mkdtempSync(path.join(os.tmpdir(), 'loop-resolver-empty-')); fs.mkdirSync(path.join(tmpEmptyProjectDir, '.planning'), { recursive: true }); // False config project — ui_phase explicitly false in root config tmpFalseConfigProjectDir = fs.mkdtempSync(path.join(os.tmpdir(), 'loop-resolver-false-')); const falseConfigPlanningDir = path.join(tmpFalseConfigProjectDir, '.planning'); fs.mkdirSync(falseConfigPlanningDir, { recursive: true }); fs.writeFileSync( path.join(falseConfigPlanningDir, 'config.json'), JSON.stringify({ workflow: { ui_phase: false, ui_review: false, ui_safety_gate: false } }), 'utf8', ); tmpUiDisabledConfigDir = fs.mkdtempSync(path.join(os.tmpdir(), 'loop-resolver-ui-disabled-')); fs.writeFileSync( path.join(tmpUiDisabledConfigDir, '.gsd-surface.json'), JSON.stringify({ baseProfile: 'full', disabledClusters: ['ui'], explicitAdds: [], explicitRemoves: [], }, null, 2), 'utf8', ); }); after(() => { if (tmpProjectDir) cleanup(tmpProjectDir); if (tmpEmptyProjectDir) cleanup(tmpEmptyProjectDir); if (tmpFalseConfigProjectDir) cleanup(tmpFalseConfigProjectDir); if (tmpUiDisabledConfigDir) cleanup(tmpUiDisabledConfigDir); }); // ─── 1. Canonical-point validation ─────────────────────────────────────────── describe('canonical point validation', () => { test('all 12 canonical points are accepted by resolveLoopHooks with empty registry', () => { const emptyRegistry = makeRegistry(); const config = {}; for (const p of CANONICAL_POINTS_FALLBACK) { const result = resolveLoopHooks({ point: p, registry: emptyRegistry, config }); assert.strictEqual(result.point, p); assert.deepEqual(result.activeHooks, []); } }); test('12 canonical points total', () => { assert.strictEqual(CANONICAL_POINTS_FALLBACK.length, 12); }); test('invalid point throws with a clear message', () => { const emptyRegistry = makeRegistry(); assert.throws( () => resolveLoopHooks({ point: 'plan:mid', registry: emptyRegistry, config: {} }), (err) => { assert.ok(err instanceof Error); assert.match(err.message, /Invalid loop point/); assert.match(err.message, /plan:mid/); return true; }, ); }); test('empty string point throws', () => { const emptyRegistry = makeRegistry(); assert.throws( () => resolveLoopHooks({ point: '', registry: emptyRegistry, config: {} }), /Invalid loop point/, ); }); test('close typo throws', () => { const emptyRegistry = makeRegistry(); assert.throws( () => resolveLoopHooks({ point: 'plan:pre ', registry: emptyRegistry, config: {} }), /Invalid loop point/, ); }); // FIX 2: non-canonical point rejected even if the registry has it as a byLoopPoint key test('non-canonical point in registry byLoopPoint is still rejected', () => { // Craft a registry that has a synthetic non-canonical key in byLoopPoint const registry = { byLoopPoint: { // All canonical points (needed so the registry is well-formed) ...Object.fromEntries(CANONICAL_POINTS_FALLBACK.map(p => [p, { steps: [], contributions: [], gates: [] }])), // A non-canonical key that a malformed registry might inject 'inject:arbitrary': { steps: [{ capId: 'evil', ref: { skill: 'bad' } }], contributions: [], gates: [] }, }, }; assert.throws( () => resolveLoopHooks({ point: 'inject:arbitrary', registry, config: {} }), /Invalid loop point/, ); }); // FIX 2: all 12 canonical points are listed in the error message test('invalid point error lists the canonical 12', () => { const emptyRegistry = makeRegistry(); assert.throws( () => resolveLoopHooks({ point: 'not:real', registry: emptyRegistry, config: {} }), (err) => { assert.ok(err instanceof Error); for (const p of CANONICAL_POINTS_FALLBACK) { assert.ok(err.message.includes(p), `Expected "${p}" in error message: ${err.message}`); } return true; }, ); }); // CANONICAL_POINTS is derived from LOOP_HOST_CONTRACT, not from registry keys test('CANONICAL_POINTS and CANONICAL_POINTS_FALLBACK are the same 12 points', () => { assert.deepEqual(CANONICAL_POINTS, CANONICAL_POINTS_FALLBACK); assert.strictEqual(CANONICAL_POINTS.length, 12); }); }); // ─── 2. Activation tests ───────────────────────────────────────────────────── describe('activation filter', () => { test('hook with no "when" is always active', () => { const registry = makeRegistry({ steps: [{ capId: 'test-cap', point: 'plan:pre', ref: { skill: 'my-skill' } }], }); const result = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); assert.strictEqual(result.activeHooks.length, 1); assert.strictEqual(result.activeHooks[0].capId, 'test-cap'); }); test('hook with when="mytool.on", config{mytool:{on:true}} → active', () => { const registry = makeRegistry({ steps: [{ capId: 'test-cap', point: 'plan:pre', ref: { skill: 'my-skill' }, when: 'mytool.on' }], }); const config = { mytool: { on: true } }; const result = resolveLoopHooks({ point: 'plan:pre', registry, config }); assert.strictEqual(result.activeHooks.length, 1); assert.strictEqual(result.activeHooks[0].kind, 'step'); }); test('hook with when="mytool.on", config{mytool:{on:false}} → filtered', () => { const registry = makeRegistry({ steps: [{ capId: 'test-cap', point: 'plan:pre', ref: { skill: 'my-skill' }, when: 'mytool.on' }], }); const config = { mytool: { on: false } }; const result = resolveLoopHooks({ point: 'plan:pre', registry, config }); assert.strictEqual(result.activeHooks.length, 0); }); test('hook with when="mytool.on", config{} (absent key) → filtered', () => { const registry = makeRegistry({ steps: [{ capId: 'test-cap', point: 'plan:pre', ref: { skill: 'my-skill' }, when: 'mytool.on' }], }); const result = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); assert.strictEqual(result.activeHooks.length, 0); }); test('hook with when="mytool.on", config{mytool:{}} → filtered (key absent)', () => { const registry = makeRegistry({ steps: [{ capId: 'test-cap', point: 'plan:pre', ref: { skill: 'my-skill' }, when: 'mytool.on' }], }); const config = { mytool: {} }; const result = resolveLoopHooks({ point: 'plan:pre', registry, config }); assert.strictEqual(result.activeHooks.length, 0); }); // FIX 3: non-string `when` → INACTIVE (not always-active) test('hook with when=true (boolean) → inactive (FIX 3: malformed non-string when)', () => { const registry = makeRegistry({ steps: [{ capId: 'test-cap', point: 'plan:pre', ref: { skill: 'my-skill' }, when: true }], }); const result = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); assert.strictEqual(result.activeHooks.length, 0, 'non-string when=true must be treated as inactive'); }); test('hook with when=42 (number) → inactive (FIX 3)', () => { const registry = makeRegistry({ steps: [{ capId: 'test-cap', point: 'plan:pre', ref: { skill: 'my-skill' }, when: 42 }], }); const result = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); assert.strictEqual(result.activeHooks.length, 0, 'non-string when=42 must be inactive'); }); test('hook with when={} (object) → inactive (FIX 3)', () => { const registry = makeRegistry({ steps: [{ capId: 'test-cap', point: 'plan:pre', ref: { skill: 'my-skill' }, when: {} }], }); const result = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); assert.strictEqual(result.activeHooks.length, 0, 'non-string when={} must be inactive'); }); // FIX 4: configSchema default=true → active with absent config (no cwd → level 4 applies) test('configSchema default=true + absent config → active', () => { const registry = makeRegistry({ steps: [{ capId: 'test-cap', point: 'plan:pre', ref: { skill: 'my-skill' }, when: 'mytool.on' }], configSchema: { 'mytool.on': { type: 'boolean', default: true, description: 'Enable mytool.' }, }, }); const result = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); assert.strictEqual(result.activeHooks.length, 1, 'schema default=true should activate the hook'); assert.strictEqual(result.activeHooks[0].capId, 'test-cap'); }); // FIX 4: configSchema default=false → inactive with absent config test('configSchema default=false + absent config → inactive', () => { const registry = makeRegistry({ steps: [{ capId: 'test-cap', point: 'plan:pre', ref: { skill: 'my-skill' }, when: 'mytool.on' }], configSchema: { 'mytool.on': { type: 'boolean', default: false, description: 'Disabled by default.' }, }, }); const result = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); assert.strictEqual(result.activeHooks.length, 0, 'schema default=false should keep hook inactive'); }); // FIX 4: configSchema default=true but explicit config override=false → inactive (config wins) test('configSchema default=true but config override false → inactive (config wins)', () => { const registry = makeRegistry({ steps: [{ capId: 'test-cap', point: 'plan:pre', ref: { skill: 'my-skill' }, when: 'mytool.on' }], configSchema: { 'mytool.on': { type: 'boolean', default: true, description: 'Enabled by default.' }, }, }); const config = { mytool: { on: false } }; const result = resolveLoopHooks({ point: 'plan:pre', registry, config }); assert.strictEqual(result.activeHooks.length, 0, 'explicit config=false overrides schema default=true'); }); }); // ─── 3. UI pilot integration tests ─────────────────────────────────────────── describe('UI pilot integration', () => { test('plan:pre with workflow.ui_phase=true → ui-phase step active', () => { const config = { workflow: { ui_phase: true, ui_review: true, ui_safety_gate: true } }; const result = resolveLoopHooks({ point: 'plan:pre', registry: realRegistry, config }); const uiStep = result.activeHooks.find(h => h.capId === 'ui' && h.kind === 'step'); assert.ok(uiStep, 'Expected ui step at plan:pre'); assert.deepEqual(uiStep.ref, { skill: 'ui-phase' }); assert.ok(Array.isArray(uiStep.produces)); assert.ok(uiStep.produces.includes('UI-SPEC.md')); }); test('plan:pre with workflow.ui_phase=false → ui-phase step filtered', () => { const config = { workflow: { ui_phase: false, ui_review: true, ui_safety_gate: true } }; const result = resolveLoopHooks({ point: 'plan:pre', registry: realRegistry, config }); const uiStep = result.activeHooks.find(h => h.capId === 'ui' && h.kind === 'step'); assert.strictEqual(uiStep, undefined, 'Expected ui step to be filtered'); }); // FIX 4 INVERSION: empty config + real registry → ui-phase IS active (schema default=true) test('plan:pre with empty config + real registry → ui-phase step active by default (FIX 4)', () => { // realRegistry has configSchema['workflow.ui_phase'].default === true // So with no config and no cwd, the schema default kicks in → active const result = resolveLoopHooks({ point: 'plan:pre', registry: realRegistry, config: {} }); const uiStep = result.activeHooks.find(h => h.capId === 'ui' && h.kind === 'step'); assert.ok( uiStep, 'Expected ui step to be active by default (configSchema.default=true). Got: ' + JSON.stringify(result.activeHooks), ); assert.strictEqual(uiStep.when, 'workflow.ui_phase'); }); test('execute:wave:post with workflow.ui_safety_gate=true → ui gate active', () => { const config = { workflow: { ui_phase: true, ui_review: true, ui_safety_gate: true } }; const result = resolveLoopHooks({ point: 'execute:wave:post', registry: realRegistry, config }); const uiGate = result.activeHooks.find(h => h.capId === 'ui' && h.kind === 'gate'); assert.ok(uiGate, 'Expected ui gate at execute:wave:post'); assert.strictEqual(uiGate.blocking, true); assert.strictEqual(uiGate.onError, 'halt'); }); test('execute:wave:post with workflow.ui_safety_gate=false → ui gate filtered', () => { const config = { workflow: { ui_phase: true, ui_review: true, ui_safety_gate: false } }; const result = resolveLoopHooks({ point: 'execute:wave:post', registry: realRegistry, config }); const uiGate = result.activeHooks.find(h => h.capId === 'ui' && h.kind === 'gate'); assert.strictEqual(uiGate, undefined, 'Expected ui gate to be filtered'); }); // FIX 4: execute:wave:post with empty config → ui gate active by schema default test('execute:wave:post with empty config → ui gate active by schema default', () => { const result = resolveLoopHooks({ point: 'execute:wave:post', registry: realRegistry, config: {} }); const uiGate = result.activeHooks.find(h => h.capId === 'ui' && h.kind === 'gate'); assert.ok(uiGate, 'Expected ui gate active by default (configSchema.default=true)'); assert.strictEqual(uiGate.blocking, true); }); }); // ─── 4. Ordering tests ──────────────────────────────────────────────────────── describe('hook ordering', () => { test('steps appear before contributions before gates', () => { const registry = makeRegistry({ point: 'plan:pre', steps: [{ capId: 'c1', point: 'plan:pre', ref: { skill: 'sk1' } }], contributions: [{ capId: 'c2', point: 'plan:pre', into: 'planner' }], gates: { 'plan:pre': [{ capId: 'c3', point: 'plan:pre', check: { query: 'some-gate' }, blocking: false }] }, }); const config = {}; const result = resolveLoopHooks({ point: 'plan:pre', registry, config }); assert.strictEqual(result.activeHooks.length, 3); assert.strictEqual(result.activeHooks[0].kind, 'step'); assert.strictEqual(result.activeHooks[1].kind, 'contribution'); assert.strictEqual(result.activeHooks[2].kind, 'gate'); }); test('within steps, registry order is preserved', () => { const registry = makeRegistry({ point: 'plan:pre', steps: [ { capId: 'cap-a', point: 'plan:pre', ref: { skill: 'a' } }, { capId: 'cap-b', point: 'plan:pre', ref: { skill: 'b' } }, { capId: 'cap-c', point: 'plan:pre', ref: { skill: 'c' } }, ], }); const result = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); assert.deepEqual(result.activeHooks.map(h => h.capId), ['cap-a', 'cap-b', 'cap-c']); }); }); // ─── 5. Envelope shape ──────────────────────────────────────────────────────── describe('envelope shape', () => { test('envelope has point, activeHooks, rendered from renderLoopHooks', () => { const registry = makeRegistry({ steps: [{ capId: 'cap-a', point: 'plan:pre', ref: { skill: 'my-skill' }, produces: ['A.md'], consumes: ['B.md'] }], }); const resolved = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); const rendered = renderLoopHooks(resolved); assert.strictEqual(resolved.point, 'plan:pre'); assert.ok(Array.isArray(resolved.activeHooks)); assert.strictEqual(typeof rendered, 'string'); }); test('empty activeHooks → rendered is non-empty placeholder string', () => { const registry = makeRegistry(); // all empty const resolved = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); const rendered = renderLoopHooks(resolved); assert.strictEqual(resolved.activeHooks.length, 0); assert.ok(rendered.length > 0, 'rendered should be a non-empty placeholder'); assert.match(rendered, /plan:pre/); }); test('rendered contains hook content when hooks are active', () => { const registry = makeRegistry({ steps: [{ capId: 'ui', point: 'plan:pre', ref: { skill: 'ui-phase' }, produces: ['UI-SPEC.md'], consumes: ['CONTEXT.md'], when: 'workflow.ui_phase', onError: 'skip' }], }); const config = { workflow: { ui_phase: true } }; const resolved = resolveLoopHooks({ point: 'plan:pre', registry, config }); const rendered = renderLoopHooks(resolved); assert.match(rendered, /ui-phase/); assert.match(rendered, /ui/); assert.match(rendered, /UI-SPEC\.md/); }); test('rendered for UI pilot at plan:pre with all flags on', () => { const config = { workflow: { ui_phase: true, ui_review: true, ui_safety_gate: true } }; const resolved = resolveLoopHooks({ point: 'plan:pre', registry: realRegistry, config }); const rendered = renderLoopHooks(resolved); assert.match(rendered, /ui-phase/); assert.match(rendered, /UI-SPEC\.md/); }); }); // ─── 6. Malformed registry resilience ──────────────────────────────────────── describe('malformed registry resilience', () => { test('missing byLoopPoint → no throw, empty activeHooks', () => { const badRegistry = {}; // no byLoopPoint // No throw — but point validation falls back to CANONICAL_POINTS_FALLBACK const result = resolveLoopHooks({ point: 'plan:pre', registry: badRegistry, config: {} }); assert.strictEqual(result.activeHooks.length, 0); }); test('null hook in steps array → skipped', () => { const registry = makeRegistry({ steps: [null, { capId: 'ok', point: 'plan:pre', ref: { skill: 'ok-skill' } }, undefined], }); const result = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); assert.strictEqual(result.activeHooks.length, 1); assert.strictEqual(result.activeHooks[0].capId, 'ok'); }); test('byLoopPoint[point] missing arrays → no throw, empty result', () => { const registry = { byLoopPoint: { 'plan:pre': {} } }; // no steps/contributions/gates keys const result = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); assert.strictEqual(result.activeHooks.length, 0); }); test('byLoopPoint[point] has non-array steps → treated as empty', () => { const registry = { byLoopPoint: { 'plan:pre': { steps: 'bad', contributions: [], gates: [] } } }; const result = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); assert.strictEqual(result.activeHooks.length, 0); }); test('byLoopPoint[point] is null → no throw, empty result', () => { const registry = { byLoopPoint: { 'plan:pre': null } }; const result = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); assert.strictEqual(result.activeHooks.length, 0); }); }); // ─── 7. Prototype-pollution guard ──────────────────────────────────────────── describe('prototype-pollution guard', () => { test('when="__proto__.x" does not pollute Object.prototype', () => { const registry = makeRegistry({ steps: [{ capId: 'attacker', point: 'plan:pre', ref: { skill: 'evil' }, when: '__proto__.x' }], }); const config = { x: 'injected' }; // Should not throw and should not activate (guard returns found:false) const result = resolveLoopHooks({ point: 'plan:pre', registry, config }); assert.strictEqual(result.activeHooks.length, 0); // Object.prototype must not be polluted assert.strictEqual(({}).x, undefined); }); test('when="constructor.x" does not pollute', () => { const registry = makeRegistry({ steps: [{ capId: 'attacker', point: 'plan:pre', ref: { skill: 'evil' }, when: 'constructor.x' }], }); const result = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); assert.strictEqual(result.activeHooks.length, 0); }); test('when="prototype.x" does not pollute', () => { const registry = makeRegistry({ steps: [{ capId: 'attacker', point: 'plan:pre', ref: { skill: 'evil' }, when: 'prototype.x' }], }); const result = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); assert.strictEqual(result.activeHooks.length, 0); }); test('_getNestedConfigValue: __proto__ segment returns found:false', () => { const r = _getNestedConfigValue({}, '__proto__.x'); assert.strictEqual(r.found, false); }); test('_getNestedConfigValue: constructor segment returns found:false', () => { const r = _getNestedConfigValue({}, 'constructor.toString'); assert.strictEqual(r.found, false); }); test('_getNestedConfigValue: normal dotted key traversal works', () => { const config = { workflow: { ui_phase: true } }; const r = _getNestedConfigValue(config, 'workflow.ui_phase'); assert.strictEqual(r.found, true); assert.strictEqual(r.value, true); }); // FIX 4: raw config.json with __proto__ key does not pollute via _readRawConfigKey test('raw config.json with "__proto__" key does not pollute Object.prototype', () => { const tmpDir = fs.mkdtempSync(path.join(os.tmpdir(), 'loop-resolver-proto-')); try { // Write a raw config.json containing __proto__ at top level and nested // (JSON.parse of {"__proto__":{"x":"polluted"}} does NOT set prototype in modern Node, // but we verify our guarded traversal returns found:false for such keys) const maliciousConfig = '{"__proto__":{"x":"polluted"},"workflow":{"ui_phase":true}}'; fs.writeFileSync(path.join(tmpDir, 'config.json'), maliciousConfig, 'utf8'); // _readRawConfigKey with '__proto__.x' should return found:false (guard) const r1 = _readRawConfigKey(path.join(tmpDir, 'config.json'), '__proto__.x'); assert.strictEqual(r1.found, false, '__proto__ lookup must be guarded'); // Normal key should work const r2 = _readRawConfigKey(path.join(tmpDir, 'config.json'), 'workflow.ui_phase'); assert.strictEqual(r2.found, true); assert.strictEqual(r2.value, true); // Object.prototype must not be polluted assert.strictEqual(({}).x, undefined); } finally { cleanup(tmpDir); } }); // FIX 4: _resolveActivationValue with cwd pointing to project with __proto__ config key test('_resolveActivationValue: raw config with __proto__ key does not pollute', () => { const tmpDir = fs.mkdtempSync(path.join(os.tmpdir(), 'loop-resolver-proto2-')); try { const planningDir = path.join(tmpDir, '.planning'); fs.mkdirSync(planningDir, { recursive: true }); fs.writeFileSync( path.join(planningDir, 'config.json'), '{"__proto__":{"y":"polluted2"}}', 'utf8', ); const registry = makeRegistry({ steps: [{ capId: 'test', point: 'plan:pre', ref: { skill: 'sk' }, when: '__proto__.y' }], }); const result = resolveLoopHooks({ point: 'plan:pre', registry, config: {}, cwd: tmpDir }); assert.strictEqual(result.activeHooks.length, 0, '__proto__ when must be inactive'); assert.strictEqual(({}).y, undefined, 'Object.prototype.y must not be polluted'); } finally { cleanup(tmpDir); } }); }); // ─── 7b. Raw config.json override paths (FIX 4) ────────────────────────────── describe('raw config.json override paths (FIX 4)', () => { // FIX 4: user sets workflow.ui_phase=false in root config.json → hook filtered test('root config.json with ui_phase=false overrides schema default=true → inactive', () => { // tmpFalseConfigProjectDir has .planning/config.json { workflow: { ui_phase: false } } const result = resolveLoopHooks({ point: 'plan:pre', registry: realRegistry, config: {}, // empty loadConfig result (simulating pre-cutover) cwd: tmpFalseConfigProjectDir, }); const uiStep = result.activeHooks.find(h => h.capId === 'ui' && h.kind === 'step'); assert.strictEqual( uiStep, undefined, 'root config.json override false must beat schema default=true', ); }); // FIX 4: root config.json with ui_phase=true (explicit) → hook active test('root config.json with ui_phase=true → active (raw config read path)', () => { // tmpProjectDir has .planning/config.json { workflow: { ui_phase: true } } const result = resolveLoopHooks({ point: 'plan:pre', registry: realRegistry, config: {}, // empty loadConfig result (simulating pre-cutover) cwd: tmpProjectDir, }); const uiStep = result.activeHooks.find(h => h.capId === 'ui' && h.kind === 'step'); assert.ok(uiStep, 'root config.json ui_phase=true should activate hook'); }); // FIX 4: no config.json at all → falls through to schema default=true → active test('no config.json → schema default=true → hook active', () => { // tmpEmptyProjectDir has .planning/ directory but no config.json const result = resolveLoopHooks({ point: 'plan:pre', registry: realRegistry, config: {}, // empty loadConfig result cwd: tmpEmptyProjectDir, }); const uiStep = result.activeHooks.find(h => h.capId === 'ui' && h.kind === 'step'); assert.ok(uiStep, 'no config.json → schema default=true → hook should be active'); }); // FIX 4: _readRawConfigKey returns found:false for missing file (ENOENT — silent) test('_readRawConfigKey: missing file → found:false, no throw', () => { const result = _readRawConfigKey('/nonexistent/path/config.json', 'workflow.ui_phase'); assert.strictEqual(result.found, false); }); // FIX 4: _readRawConfigKey returns found:false for malformed JSON, warns once test('_readRawConfigKey: malformed JSON → found:false, no throw', () => { const tmpDir = fs.mkdtempSync(path.join(os.tmpdir(), 'loop-resolver-malformed-')); try { const malformedPath = path.join(tmpDir, 'config.json'); fs.writeFileSync(malformedPath, '{ invalid json }', 'utf8'); const result = _readRawConfigKey(malformedPath, 'workflow.ui_phase'); assert.strictEqual(result.found, false, 'malformed JSON should return found:false'); } finally { cleanup(tmpDir); } }); }); // ─── 8. Renderer tests ──────────────────────────────────────────────────────── describe('renderLoopHooks', () => { test('step hook renders skill ref, capId, produces, consumes', () => { const resolved = { point: 'plan:pre', activeHooks: [{ capId: 'ui', kind: 'step', ref: { skill: 'ui-phase' }, when: 'workflow.ui_phase', produces: ['UI-SPEC.md'], consumes: ['CONTEXT.md'], onError: 'skip', }], }; const rendered = renderLoopHooks(resolved); assert.match(rendered, /Step 1/); assert.match(rendered, /skill:ui-phase/); assert.match(rendered, /\(ui\)/); assert.match(rendered, /UI-SPEC\.md/); assert.match(rendered, /CONTEXT\.md/); assert.match(rendered, /workflow\.ui_phase/); assert.match(rendered, /skip/); }); test('step hook renders agent ref and inline prompt fragment', () => { const registry = makeRegistry({ point: 'plan:pre', steps: [{ capId: 'research', point: 'plan:pre', ref: { agent: 'gsd-phase-researcher' }, fragment: { inline: 'Research the phase before planning.' }, produces: ['RESEARCH.md'], consumes: ['CONTEXT.md'], onError: 'skip', }], }); const resolved = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); assert.deepEqual(resolved.activeHooks[0].fragment, { inline: 'Research the phase before planning.' }); const rendered = renderLoopHooks(resolved); assert.match(rendered, /agent:gsd-phase-researcher/); assert.match(rendered, /Research the phase before planning\./); }); test('contribution hook renders into role', () => { const resolved = { point: 'plan:pre', activeHooks: [{ capId: 'contrib-cap', kind: 'contribution', into: 'planner', fragment: { inline: 'Apply the project-specific planning guardrails.' }, }], }; const rendered = renderLoopHooks(resolved); assert.match(rendered, /contribution/); assert.match(rendered, /contrib-cap/); assert.match(rendered, /planner/); assert.match(rendered, /Apply the project-specific planning guardrails\./); assert.match(rendered, //); assert.match(rendered, /<\/contribution>/); assert.doesNotMatch(rendered, /]+\/>/); }); test('resolveLoopHooks preserves contribution fragment data', () => { const registry = makeRegistry({ point: 'plan:pre', contributions: [{ capId: 'contrib-cap', point: 'plan:pre', into: 'planner', fragment: { inline: 'Use artifact-backed evidence.' }, produces: ['PLAN-NOTES.md'], consumes: ['CONTEXT.md'], when: 'workflow.contrib', onError: 'halt', }], configSchema: { 'workflow.contrib': { type: 'boolean', default: true, description: 'Enable test contribution.' }, }, }); const resolved = resolveLoopHooks({ point: 'plan:pre', registry, config: {} }); assert.strictEqual(resolved.activeHooks.length, 1); assert.deepEqual(resolved.activeHooks[0].fragment, { inline: 'Use artifact-backed evidence.' }); assert.deepEqual(resolved.activeHooks[0].produces, ['PLAN-NOTES.md']); assert.deepEqual(resolved.activeHooks[0].consumes, ['CONTEXT.md']); assert.strictEqual(resolved.activeHooks[0].onError, 'halt'); }); test('gate hook renders check, blocking, onError', () => { const resolved = { point: 'execute:wave:post', activeHooks: [{ capId: 'ui', kind: 'gate', check: { query: 'ui.safety-gate' }, blocking: true, onError: 'halt', }], }; const rendered = renderLoopHooks(resolved); assert.match(rendered, /Gate/); assert.match(rendered, /ui/); assert.match(rendered, /blocking=true/); assert.match(rendered, /halt/); }); test('multiple hooks in order render with correct ordinals', () => { const resolved = { point: 'plan:pre', activeHooks: [ { capId: 'cap-a', kind: 'step', ref: { skill: 'a' }, produces: ['A.md'], consumes: [] }, { capId: 'cap-b', kind: 'step', ref: { skill: 'b' }, produces: ['B.md'], consumes: ['A.md'] }, ], }; const rendered = renderLoopHooks(resolved); assert.match(rendered, /Step 1/); assert.match(rendered, /Step 2/); const idx1 = rendered.indexOf('Step 1'); const idx2 = rendered.indexOf('Step 2'); assert.ok(idx1 < idx2, 'Step 1 should appear before Step 2'); }); test('empty hooks returns placeholder containing the point name', () => { const rendered = renderLoopHooks({ point: 'ship:post', activeHooks: [] }); assert.match(rendered, /ship:post/); assert.ok(rendered.length > 0); }); test('rendered is deterministic (same input → same output)', () => { const config = { workflow: { ui_phase: true, ui_review: true, ui_safety_gate: true } }; const resolved = resolveLoopHooks({ point: 'plan:pre', registry: realRegistry, config }); const r1 = renderLoopHooks(resolved); const r2 = renderLoopHooks(resolved); assert.strictEqual(r1, r2); }); }); // ─── 9. End-to-end cmdLoopRenderHooks (via gsd-tools subprocess) ───────────── const { runNode } = require('./helpers/process-seam.cjs'); const ROOT = path.resolve(__dirname, '..'); const GSD_TOOLS = path.join(ROOT, 'gsd-core', 'bin', 'gsd-tools.cjs'); describe('cmdLoopRenderHooks end-to-end (via gsd-tools)', () => { test('loop render-hooks plan:pre returns JSON envelope with ui-phase step active', () => { const result = runNode( [GSD_TOOLS, 'loop', 'render-hooks', 'plan:pre', '--cwd', tmpProjectDir], { cwd: ROOT, timeoutMs: 15000 }, ); assert.strictEqual(result.exitCode, 0, 'Expected exit 0. stderr: ' + (result.stderr || '')); const envelope = JSON.parse(result.stdout.trim()); assert.strictEqual(envelope.point, 'plan:pre'); assert.ok(Array.isArray(envelope.activeHooks)); assert.strictEqual(typeof envelope.rendered, 'string'); // With ui_phase=true in tmpProjectDir config, ui-phase step should be active const uiStep = envelope.activeHooks.find(h => h.capId === 'ui' && h.kind === 'step'); assert.ok(uiStep, 'Expected ui step in activeHooks. Got: ' + JSON.stringify(envelope.activeHooks)); assert.match(envelope.rendered, /ui-phase/); }); // FIX 4: schema-default activation — no config.json in project → ui-phase step active by default test('loop render-hooks plan:pre with no config.json → ui-phase step active by schema default', () => { const result = runNode( [GSD_TOOLS, 'loop', 'render-hooks', 'plan:pre', '--cwd', tmpEmptyProjectDir], { cwd: ROOT, timeoutMs: 15000 }, ); assert.strictEqual(result.exitCode, 0, 'Expected exit 0. stderr: ' + (result.stderr || '')); const envelope = JSON.parse(result.stdout.trim()); const uiStep = envelope.activeHooks.find(h => h.capId === 'ui' && h.kind === 'step'); assert.ok( uiStep, 'Expected ui step active by default. Got: ' + JSON.stringify(envelope.activeHooks), ); assert.match(envelope.rendered, /ui-phase/); }); test('loop render-hooks plan:pre with ui capability disabled in surface → ui hooks absent', () => { const result = runNode( [ GSD_TOOLS, 'loop', 'render-hooks', 'plan:pre', '--cwd', tmpEmptyProjectDir, '--config-dir', tmpUiDisabledConfigDir, ], { cwd: ROOT, timeoutMs: 15000 }, ); assert.strictEqual(result.exitCode, 0, 'Expected exit 0. stderr: ' + (result.stderr || '')); const envelope = JSON.parse(result.stdout.trim()); const uiHooks = envelope.activeHooks.filter(h => h.capId === 'ui'); assert.deepStrictEqual( uiHooks, [], 'UI hooks must be absent when the UI capability is disabled at the runtime surface', ); }); // FIX 4: explicit false in config.json overrides schema default test('loop render-hooks plan:pre with ui_phase=false in config.json → ui-phase step absent', () => { const result = runNode( [GSD_TOOLS, 'loop', 'render-hooks', 'plan:pre', '--cwd', tmpFalseConfigProjectDir], { cwd: ROOT, timeoutMs: 15000 }, ); assert.strictEqual(result.exitCode, 0, 'Expected exit 0. stderr: ' + (result.stderr || '')); const envelope = JSON.parse(result.stdout.trim()); const uiStep = envelope.activeHooks.find(h => h.capId === 'ui' && h.kind === 'step'); assert.strictEqual( uiStep, undefined, 'ui-phase step should be absent when config.json sets ui_phase=false', ); }); test('loop render-hooks invalid-point exits non-zero', () => { const result = runNode( [GSD_TOOLS, 'loop', 'render-hooks', 'plan:mid', '--cwd', tmpProjectDir], { cwd: ROOT, timeoutMs: 15000 }, ); assert.notStrictEqual(result.exitCode, 0, 'Expected non-zero exit for invalid point'); assert.match(result.stderr, /plan:mid|Invalid loop point/); }); }); // ─── 10. --active-cap flag (scanner-safe boolean derivation) ────────────────── describe('--active-cap flag (loop render-hooks)', () => { // Temp project with tdd_mode=true in config let tddOnDir; // Temp project with tdd_mode=false in config let tddOffDir; before(() => { tddOnDir = fs.mkdtempSync(path.join(os.tmpdir(), 'loop-active-cap-tdd-on-')); const planOn = path.join(tddOnDir, '.planning'); fs.mkdirSync(planOn, { recursive: true }); fs.writeFileSync( path.join(planOn, 'config.json'), JSON.stringify({ workflow: { tdd_mode: true } }), 'utf8', ); tddOffDir = fs.mkdtempSync(path.join(os.tmpdir(), 'loop-active-cap-tdd-off-')); const planOff = path.join(tddOffDir, '.planning'); fs.mkdirSync(planOff, { recursive: true }); fs.writeFileSync( path.join(planOff, 'config.json'), JSON.stringify({ workflow: { tdd_mode: false } }), 'utf8', ); }); after(() => { if (tddOnDir) cleanup(tddOnDir); if (tddOffDir) cleanup(tddOffDir); }); test('--active-cap tdd with tdd_mode=true → stdout trimmed === "true", exit 0', () => { const result = runNode( [GSD_TOOLS, 'loop', 'render-hooks', 'execute:post', '--active-cap', 'tdd', '--cwd', tddOnDir], { cwd: ROOT, timeoutMs: 15000 }, ); assert.strictEqual(result.exitCode, 0, 'Expected exit 0. stderr: ' + (result.stderr || '')); assert.strictEqual(result.stdout.trim(), 'true', 'Expected stdout "true" when tdd_mode=true'); }); test('--active-cap tdd with tdd_mode=false → stdout trimmed === "false", exit 0', () => { const result = runNode( [GSD_TOOLS, 'loop', 'render-hooks', 'execute:post', '--active-cap', 'tdd', '--cwd', tddOffDir], { cwd: ROOT, timeoutMs: 15000 }, ); assert.strictEqual(result.exitCode, 0, 'Expected exit 0. stderr: ' + (result.stderr || '')); assert.strictEqual(result.stdout.trim(), 'false', 'Expected stdout "false" when tdd_mode=false'); }); test('--active-cap → stdout trimmed === "false", exit 0', () => { const result = runNode( [GSD_TOOLS, 'loop', 'render-hooks', 'execute:post', '--active-cap', 'no-such-capability-xyz', '--cwd', tddOffDir], { cwd: ROOT, timeoutMs: 15000 }, ); assert.strictEqual(result.exitCode, 0, 'Expected exit 0 for unknown capId. stderr: ' + (result.stderr || '')); assert.strictEqual(result.stdout.trim(), 'false', 'Expected stdout "false" for unknown capId'); }); test('--active-cap with no value → non-zero exit and error message', () => { const result = runNode( [GSD_TOOLS, 'loop', 'render-hooks', 'execute:post', '--active-cap', '--cwd', tddOffDir], { cwd: ROOT, timeoutMs: 15000 }, ); assert.notStrictEqual(result.exitCode, 0, 'Expected non-zero exit when --active-cap has no value'); assert.match(result.stderr, /active-cap/i, 'Expected error message referencing --active-cap'); }); test('--active-cap output is exactly "true" or "false" (no JSON envelope, clean for shell capture)', () => { // The entire stdout must be just "true" or "false" + newline — no envelope object const result = runNode( [GSD_TOOLS, 'loop', 'render-hooks', 'execute:post', '--active-cap', 'tdd', '--cwd', tddOnDir], { cwd: ROOT, timeoutMs: 15000 }, ); assert.strictEqual(result.exitCode, 0, 'Expected exit 0. stderr: ' + (result.stderr || '')); // Must be exactly "true" or "false" — not a JSON object/envelope const trimmed = result.stdout.trim(); assert.ok( trimmed === 'true' || trimmed === 'false', `stdout must be "true" or "false", got: ${JSON.stringify(result.stdout)}`, ); // Must not be a JSON object (no envelope with point/activeHooks/rendered keys) let parsed; try { parsed = JSON.parse(trimmed); } catch { parsed = null; } assert.ok( typeof parsed !== 'object' || parsed === null, 'stdout must not be a JSON object/envelope when --active-cap is used', ); }); }); // ─── Phase 4 regression: loop-resolver gates on state.active (not state.enabled) ───── // // FAIL-FIRST PROOF (what would fail against the OLD state.enabled check): // Scenario: capability has activationKey set; it is installed + surfaced (enabled=true) // but the activationKey resolves to false (active=false). The capability has a hook // WITHOUT a `when` guard (unconditional). With old state.enabled check: // state.enabled=true → state.enabled !== false → true → hook IS rendered (BUG). // With new state.active check: // state.active=false → state.active === true → false → hook NOT rendered (CORRECT). // // This test uses resolveLoopHooks directly with a synthetic registry and a // capabilityStatesById map that models the above scenario: enabled=true, active=false. // It would FAIL against the OLD `state.enabled !== false` code and PASS against the // NEW `state.active === true` code. describe('Phase 4 regression: capabilityStatesById gates on active (not enabled) for config-disabled capability', () => { test('[regression] enabled=true active=false + no `when` guard → hook NOT rendered (state.active gate)', () => { // Fail-first: with OLD `state.enabled !== false`, enabled=true → hook IS rendered (BUG). // With NEW `state.active === true`, active=false → hook NOT rendered (CORRECT). const registry = makeRegistry({ point: 'plan:pre', steps: [{ capId: 'test-cap', ref: { skill: 'gsd-test-skill' } }], // No `when` → unconditional hook (no per-hook config gate to fall back on) }); const capabilityStatesById = new Map([ // enabled=true (installed+surfaced), active=false (activationKey resolved to false) // This models a capability like intel/graphify that is surfaced but config-disabled. ['test-cap', { enabled: true, active: false }], ]); const result = resolveLoopHooks({ point: 'plan:pre', registry, config: {}, // config doesn't matter — capability already resolved active=false capabilityStatesById, }); assert.strictEqual( result.activeHooks.length, 0, 'Hook must NOT be rendered when state.active=false, even if enabled=true and no `when` guard — ' + 'OLD state.enabled check would include this hook (BUG: enabled=true passes enabled!==false); ' + 'NEW state.active check correctly suppresses it (active=false fails active===true)', ); }); test('[positive control] enabled=true active=true + no `when` guard → hook IS rendered', () => { // Confirms the fixture is sound: same hook, same registry, but active=true → rendered. // This test must PASS against BOTH old and new code (it's the unbroken branch). const registry = makeRegistry({ point: 'plan:pre', steps: [{ capId: 'test-cap', ref: { skill: 'gsd-test-skill' } }], }); const capabilityStatesById = new Map([ ['test-cap', { enabled: true, active: true }], ]); const result = resolveLoopHooks({ point: 'plan:pre', registry, config: {}, capabilityStatesById, }); assert.strictEqual( result.activeHooks.length, 1, 'Hook MUST be rendered when state.active=true and no `when` guard (positive control)', ); assert.strictEqual(result.activeHooks[0].capId, 'test-cap'); }); }); // ─── ADR-1244 D2: load-failed capability gates FAIL OPEN with a loud warning (#2009) ── describe('ADR-1244 D2: load-failed capability gates fail OPEN with a loud warning (#2009)', () => { // Decision (#2009): a capability that fails to LOAD must not block the loop. // cmdLoopRenderHooks injects NO gate (the loop proceeds — fail open) and emits a // loud warning naming the load reason and the exact `gsd capability remove ` // remediation, both to STDERR (the channel host workflows actually surface) and // in the envelope's `warnings` array. Previously it injected a blocking=true, // onError=halt gate that halted every declared point project-wide. // Helper: write an overlay cap with an incompatible engines.gsd (→ skipped at load) // that declares gate(s) at the given point(s). `capId` may be an invalid id to // exercise the sanitization path. function writeSkippedGateCap(overlayHome, capId, gatePoints) { const capDir = path.join(overlayHome, '.gsd', 'capabilities', capId); fs.mkdirSync(capDir, { recursive: true }); const capManifest = { id: capId, role: 'feature', version: '1.0.0', title: 'Load-Failed Gate Cap', description: 'ADR-1244 D2 fail-open wiring test', tier: 'standard', requires: [], engines: { gsd: '>=99.0.0' }, // intentionally incompatible → always skipped at load runtimeCompat: { supported: ['*'], unsupported: [] }, skills: [], agents: [], hooks: [], config: {}, steps: [], contributions: [], gates: gatePoints.map((point) => ({ point, check: { query: 'always-pass' }, blocking: true, onError: 'halt' })), }; fs.writeFileSync(path.join(capDir, 'capability.json'), JSON.stringify(capManifest), 'utf8'); } function renderHooks(overlayHome, point, extraArgs = []) { const result = runNode( [GSD_TOOLS, 'loop', 'render-hooks', point, '--cwd', overlayHome, ...extraArgs], { cwd: ROOT, timeoutMs: 15000, env: { ...process.env, GSD_HOME: overlayHome } }, ); assert.strictEqual(result.exitCode, 0, `Expected exit 0 at ${point}. stderr: ` + (result.stderr || '')); return result; } function parseEnvelope(result) { try { return JSON.parse(result.stdout.trim()); } catch { assert.fail('loop render-hooks output must be valid JSON; got: ' + result.stdout.slice(0, 300)); } } test('load-failed gate-kind overlay cap → NO gate injected (fail open) + loud warning on stderr and in envelope', (t) => { const overlayHome = fs.mkdtempSync(path.join(os.tmpdir(), 'loop-fail-open-')); t.after(() => cleanup(overlayHome)); const capId = 'load-failed-gate-cap'; writeSkippedGateCap(overlayHome, capId, ['execute:wave:post']); const result = renderHooks(overlayHome, 'execute:wave:post'); const envelope = parseEnvelope(result); // AC2 / AC-a: fail OPEN — NO gate (blocking or otherwise) is injected for the // load-failed cap, so the loop proceeds. const anyGate = Array.isArray(envelope.activeHooks) ? envelope.activeHooks.find((h) => h.capId === capId) : undefined; assert.strictEqual( anyGate, undefined, 'no hook must be injected for a load-failed cap (fail open). Got: ' + JSON.stringify(envelope.activeHooks), ); // AC-b: a loud warning is surfaced in the envelope `warnings` channel... const warnEnv = (envelope.warnings || []).find((w) => w.includes(capId)); assert.ok(warnEnv, 'envelope.warnings must name the load-failed cap. Got: ' + JSON.stringify(envelope.warnings)); // AC1: ...carrying the exact remediation, and making clear the gate is not enforced. assert.ok( warnEnv.includes(`gsd capability remove ${capId}`), 'warning must include the `gsd capability remove ` remediation. Got: ' + warnEnv, ); assert.match(warnEnv, /skipped|not enforced|failing open/i, 'warning must say the gate is not enforced. Got: ' + warnEnv); // ...and ALSO to stderr (the channel host workflows actually see). assert.ok( result.stderr.includes(`gsd capability remove ${capId}`), 'stderr must carry the loud fail-open warning with remediation. Got: ' + result.stderr, ); }); test('load-failed cap declaring gates at ship:pre AND verify:post → neither point blocks (project can ship & verify)', (t) => { const overlayHome = fs.mkdtempSync(path.join(os.tmpdir(), 'loop-fail-open-2pt-')); t.after(() => cleanup(overlayHome)); const capId = 'load-failed-two-point-cap'; writeSkippedGateCap(overlayHome, capId, ['ship:pre', 'verify:post']); for (const point of ['ship:pre', 'verify:post']) { const result = renderHooks(overlayHome, point); const envelope = parseEnvelope(result); const injected = envelope.activeHooks.find((h) => h.capId === capId); assert.strictEqual( injected, undefined, `${point} must NOT inject any hook for a load-failed cap (fail open). Got: ` + JSON.stringify(envelope.activeHooks), ); const warn = (envelope.warnings || []).find((w) => w.includes(`gsd capability remove ${capId}`)); assert.ok(warn, `${point} must surface a fail-open warning with remediation. Got: ` + JSON.stringify(envelope.warnings)); } }); test('security: an invalid (non-kebab) capability id is withheld — no runnable remove command is rendered (#2009 review)', (t) => { const overlayHome = fs.mkdtempSync(path.join(os.tmpdir(), 'loop-fail-open-evil-')); t.after(() => cleanup(overlayHome)); // A directory name that is a valid POSIX filename but NOT a valid capability // id, and contains a shell metacharacter. It must never appear inside a // runnable `gsd capability remove ` command in the surfaced warning. const evilId = 'Bad;Cap'; writeSkippedGateCap(overlayHome, evilId, ['ship:pre']); const result = renderHooks(overlayHome, 'ship:pre'); const envelope = parseEnvelope(result); const combined = (envelope.warnings || []).join('\n') + '\n' + result.stderr; // The raw metacharacter id must not be embedded in a runnable remove command. assert.ok( !combined.includes(`gsd capability remove ${evilId}`), 'invalid capability id must NOT be placed in a runnable remove command. Got: ' + combined, ); // A warning is still surfaced (fail-open is loud), using the withheld-id form. assert.match( combined, /invalid id \(withheld\)/, 'an invalid id must be reported via the withheld-id placeholder. Got: ' + combined, ); }); });