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

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

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'use strict';
/**
* Unit tests for host-integration.cjs (ADR-1239 Phase A).
* Pure, additive, no-I/O module — no temp dirs needed.
* Uses node:test + node:assert/strict.
* Requires the COMPILED artifact: ../msd-core/bin/lib/host-integration.cjs
*/
const { describe, test } = require('node:test');
const assert = require('node:assert/strict');
const fs = require('node:fs');
const path = require('node:path');
const fc = require('fast-check');
const hi = require('../msd-core/bin/lib/host-integration.cjs');
const {
PROTOCOL_VERSION,
HOST_INTEGRATION_AXES,
INTERFACE_POINTS,
PROFILE_BASELINES,
DEFAULT_ENGINE,
UNDOCUMENTED,
degradationFor,
profileOf,
negotiateHostCapabilities,
hookEventSurfaceFor,
HOOK_EVENT_SURFACES,
extensionEventSurfaceFor,
EXTENSION_EVENT_SURFACES,
resolveOrchestratorExec,
} = hi;
const {
_HOST_INTEGRATION_VOCAB,
validateCapability,
} = require('../msd-core/bin/lib/capability-validator.cjs');
const { cleanup, readFileNormalized } = require('./helpers.cjs');
const { scanFencedBlocks } = require('../msd-core/bin/lib/markdown-sectionizer.cjs');
const REPO_ROOT = path.resolve(__dirname, '..');
/**
* A real shipped runtime descriptor with its `dispatch.isolation` value
* stripped, so validator behavioral tests exercise the actual dispatch shape
* shipped for a host rather than a hand-modeled fixture (fixture-provenance,
* #2371 — mirrors `shippedDescriptorWithout` in tests/effort-surface-axis.test.cjs).
*/
function shippedClaudeCapabilityWithoutIsolation() {
const cap = JSON.parse(
fs.readFileSync(path.join(REPO_ROOT, 'capabilities', 'claude', 'capability.json'), 'utf8'),
);
delete cap.runtime.hostIntegration.dispatch.isolation;
return cap;
}
describe('hookEventSurfaceFor (MANAGED-hook dialect consumer — claude/gemini only)', () => {
test('returns the full Claude managed-hook surface for "claude"', () => {
const s = hookEventSurfaceFor('claude');
assert.ok(s && s.includes('PreToolUse') && s.includes('PostToolUse') && s.includes('Stop'));
});
test('returns the Gemini BeforeTool/AfterTool managed-hook surface for "gemini"', () => {
const s = hookEventSurfaceFor('gemini');
assert.ok(s && s.includes('BeforeTool') && s.includes('AfterTool'));
});
test('hookEvents is the MANAGED-hook dialect only — opencode-subset is NOT here (#1943)', () => {
assert.equal(hookEventSurfaceFor('opencode-subset'), null,
'opencode-subset is not a hookEvents value — it moved to the extensionEvents vocabulary');
});
test('returns null for unknown / missing / non-string dialect (fail-closed)', () => {
assert.equal(hookEventSurfaceFor('nope'), null);
assert.equal(hookEventSurfaceFor(undefined), null);
assert.equal(hookEventSurfaceFor(123), null);
});
test('HOOK_EVENT_SURFACES is frozen + covers exactly the 2 managed-hook dialects', () => {
assert.equal(Object.isFrozen(HOOK_EVENT_SURFACES), true);
assert.deepEqual(Object.keys(HOOK_EVENT_SURFACES).sort(), ['claude', 'gemini']);
});
});
describe('extensionEventSurfaceFor (extension-system event dialect — #1943)', () => {
test('opencode = OpenCode plugin event subset with NO workflow-phase events', () => {
const s = extensionEventSurfaceFor('opencode');
assert.ok(s, 'opencode must resolve (non-null) — it is a consumed extensionEvents value');
assert.ok(s.includes('experimental.session.compacting'));
assert.ok(s.includes('session.idle'));
assert.ok(s.includes('tool.execute.before') && s.includes('tool.execute.after'));
assert.ok(!s.some((e) => /plan:|verify:|ship:/.test(e)),
'opencode extension events include no workflow-phase events (engine owns phase sequencing)');
});
test('pi resolves (extension-system dialect)', () => {
const s = extensionEventSurfaceFor('pi');
assert.ok(Array.isArray(s), 'pi is a consumed extensionEvents value');
});
test('none = empty surface (host exposes no extension events; engine owns the bus)', () => {
assert.deepEqual(extensionEventSurfaceFor('none'), []);
});
test('returns null for unknown / missing / non-string dialect (fail-closed)', () => {
assert.equal(extensionEventSurfaceFor('opencode-subset'), null,
'the old opencode-subset name is gone — use extensionEventSurfaceFor("opencode")');
assert.equal(extensionEventSurfaceFor('nope'), null);
assert.equal(extensionEventSurfaceFor(undefined), null);
});
test('EXTENSION_EVENT_SURFACES is frozen + covers opencode/pi/hermes/kilo/none', () => {
assert.equal(Object.isFrozen(EXTENSION_EVENT_SURFACES), true);
assert.deepEqual(Object.keys(EXTENSION_EVENT_SURFACES).sort(), ['hermes', 'kilo', 'none', 'opencode', 'pi']);
});
test('kilo reuses the IDENTICAL event array as opencode (Kilo is an OpenCode fork, same bus — #2093)', () => {
const kiloSurface = extensionEventSurfaceFor('kilo');
const opencodeSurface = extensionEventSurfaceFor('opencode');
assert.ok(kiloSurface, 'kilo must resolve (non-null) — it is a consumed extensionEvents value');
assert.deepEqual(kiloSurface, opencodeSurface);
});
});
// ---------------------------------------------------------------------------
// CONTRACT-PIN: constants and vocabulary
// ---------------------------------------------------------------------------
describe('CONTRACT-PIN', () => {
test('PROTOCOL_VERSION === 1', () => {
assert.strictEqual(PROTOCOL_VERSION, 1);
});
test('HOST_INTEGRATION_AXES is frozen', () => {
assert.ok(Object.isFrozen(HOST_INTEGRATION_AXES), 'HOST_INTEGRATION_AXES must be frozen');
});
test('each axis sub-array is frozen', () => {
for (const [axis, arr] of Object.entries(HOST_INTEGRATION_AXES)) {
assert.ok(Object.isFrozen(arr), `HOST_INTEGRATION_AXES.${axis} must be frozen`);
}
});
test('embeddingMode values (sorted)', () => {
assert.deepStrictEqual(
[...HOST_INTEGRATION_AXES.embeddingMode].sort(),
['declarative', 'imperative'],
);
});
test('commandSurface values (sorted)', () => {
assert.deepStrictEqual(
[...HOST_INTEGRATION_AXES.commandSurface].sort(),
['palette', 'prose-only', 'slash-file', 'slash-programmatic', 'slash-toml'],
);
});
test('modelMode values (sorted)', () => {
assert.deepStrictEqual(
[...HOST_INTEGRATION_AXES.modelMode].sort(),
['active', 'passive'],
);
});
test('hookBus values (sorted)', () => {
assert.deepStrictEqual(
[...HOST_INTEGRATION_AXES.hookBus].sort(),
['engine', 'host', 'none'],
);
});
test('stateIO values (sorted)', () => {
assert.deepStrictEqual(
[...HOST_INTEGRATION_AXES.stateIO].sort(),
['filesystem', 'sandboxed-storage', 'session-log-append'],
);
});
test('transport values (sorted)', () => {
assert.deepStrictEqual(
[...HOST_INTEGRATION_AXES.transport].sort(),
['mcp', 'native-extension'],
);
});
test('runtime values (sorted) — 8 documented values', () => {
assert.deepStrictEqual(
[...HOST_INTEGRATION_AXES.runtime].sort(),
['bun', 'electron', 'go', 'node', 'other', 'python', 'rust', 'sandboxed-web'],
);
});
test('UNDOCUMENTED === "undocumented"', () => {
assert.equal(UNDOCUMENTED, 'undocumented');
});
test('subagentToolkit values (sorted)', () => {
assert.deepStrictEqual(
[...HOST_INTEGRATION_AXES.subagentToolkit].sort(),
['built-in-only', 'full', 'read-only'],
);
});
test('isolation values (sorted) — #2584 ADR-1239 Codex-binding amendment', () => {
assert.deepStrictEqual(
[...HOST_INTEGRATION_AXES.isolation].sort(),
['harness-worktree', 'none', 'orchestrator-worktree'],
);
});
test('isolation: "undocumented" is NOT a vocabulary member — it is the corpus sentinel', () => {
assert.ok(!HOST_INTEGRATION_AXES.isolation.includes('undocumented'));
});
test('INTERFACE_POINTS frozen and contains expected values', () => {
assert.ok(Object.isFrozen(INTERFACE_POINTS), 'INTERFACE_POINTS must be frozen');
const expected = ['command', 'dispatch', 'model', 'hooks', 'state', 'artifact'].sort();
assert.deepStrictEqual([...INTERFACE_POINTS].sort(), expected);
});
});
// ---------------------------------------------------------------------------
// degradationFor — happy path per enum value
// ---------------------------------------------------------------------------
describe('degradationFor — happy path', () => {
test('command: slash-file → full', () => {
const r = degradationFor('command', { commandSurface: 'slash-file' });
assert.strictEqual(r.level, 'full');
assert.strictEqual(typeof r.fallback, 'string');
});
test('command: slash-programmatic → full', () => {
const r = degradationFor('command', { commandSurface: 'slash-programmatic' });
assert.strictEqual(r.level, 'full');
});
test('command: slash-toml → degraded', () => {
const r = degradationFor('command', { commandSurface: 'slash-toml' });
assert.strictEqual(r.level, 'degraded');
});
test('command: palette → degraded', () => {
const r = degradationFor('command', { commandSurface: 'palette' });
assert.strictEqual(r.level, 'degraded');
});
test('command: prose-only → absent', () => {
const r = degradationFor('command', { commandSurface: 'prose-only' });
assert.strictEqual(r.level, 'absent');
assert.ok(r.fallback.length > 0, 'fallback must be non-empty for prose-only');
});
test('model: active → full', () => {
const r = degradationFor('model', { modelMode: 'active' });
assert.strictEqual(r.level, 'full');
});
test('model: passive → degraded', () => {
const r = degradationFor('model', { modelMode: 'passive' });
assert.strictEqual(r.level, 'degraded');
});
test('hooks: host → full', () => {
const r = degradationFor('hooks', { hookBus: 'host' });
assert.strictEqual(r.level, 'full');
});
test('hooks: engine → degraded', () => {
const r = degradationFor('hooks', { hookBus: 'engine' });
assert.strictEqual(r.level, 'degraded');
});
test('hooks: none → absent', () => {
const r = degradationFor('hooks', { hookBus: 'none' });
assert.strictEqual(r.level, 'absent');
});
test('state: filesystem → full', () => {
const r = degradationFor('state', { stateIO: 'filesystem' });
assert.strictEqual(r.level, 'full');
});
test('state: sandboxed-storage → degraded', () => {
const r = degradationFor('state', { stateIO: 'sandboxed-storage' });
assert.strictEqual(r.level, 'degraded');
});
test('state: session-log-append → degraded', () => {
const r = degradationFor('state', { stateIO: 'session-log-append' });
assert.strictEqual(r.level, 'degraded');
});
test('artifact: slash-file → full', () => {
const r = degradationFor('artifact', { commandSurface: 'slash-file' });
assert.strictEqual(r.level, 'full');
});
test('artifact: slash-programmatic → full', () => {
const r = degradationFor('artifact', { commandSurface: 'slash-programmatic' });
assert.strictEqual(r.level, 'full');
});
test('artifact: slash-toml → degraded', () => {
const r = degradationFor('artifact', { commandSurface: 'slash-toml' });
assert.strictEqual(r.level, 'degraded');
});
test('artifact: prose-only → degraded', () => {
const r = degradationFor('artifact', { commandSurface: 'prose-only' });
assert.strictEqual(r.level, 'degraded');
});
test('artifact: palette → absent', () => {
const r = degradationFor('artifact', { commandSurface: 'palette' });
assert.strictEqual(r.level, 'absent');
});
// dispatch variants
test('dispatch: no namedDispatch → absent', () => {
const r = degradationFor('dispatch', { dispatch: { namedDispatch: false, nested: false, maxDepth: 0, background: false, subagentToolkit: 'full' } });
assert.strictEqual(r.level, 'absent');
});
test('dispatch: maxDepth===0 → absent', () => {
const r = degradationFor('dispatch', { dispatch: { namedDispatch: true, nested: true, maxDepth: 0, background: true, subagentToolkit: 'full' } });
assert.strictEqual(r.level, 'absent');
});
test('dispatch: unbounded (-1) nested → full', () => {
const r = degradationFor('dispatch', { dispatch: { namedDispatch: true, nested: true, maxDepth: -1, background: true, subagentToolkit: 'full' } });
assert.strictEqual(r.level, 'full');
});
test('dispatch: nested maxDepth>=2 → full', () => {
const r = degradationFor('dispatch', { dispatch: { namedDispatch: true, nested: true, maxDepth: 2, background: true, subagentToolkit: 'full' } });
assert.strictEqual(r.level, 'full');
});
test('dispatch: full but subagentToolkit read-only → degraded', () => {
const r = degradationFor('dispatch', { dispatch: { namedDispatch: true, nested: true, maxDepth: -1, background: true, subagentToolkit: 'read-only' } });
assert.strictEqual(r.level, 'degraded');
});
test('dispatch: flat (maxDepth===1) → degraded', () => {
const r = degradationFor('dispatch', { dispatch: { namedDispatch: true, nested: false, maxDepth: 1, background: false, subagentToolkit: 'full' } });
assert.strictEqual(r.level, 'degraded');
});
});
// ---------------------------------------------------------------------------
// degradationFor — EVERY enum value returns a defined result with valid level
// ---------------------------------------------------------------------------
describe('degradationFor — all enum values return valid level', () => {
const VALID_LEVELS = new Set(['full', 'degraded', 'absent']);
test('command — all commandSurface values', () => {
for (const v of HOST_INTEGRATION_AXES.commandSurface) {
const r = degradationFor('command', { commandSurface: v });
assert.ok(VALID_LEVELS.has(r.level), `command/${v}: level '${r.level}' invalid`);
assert.strictEqual(typeof r.fallback, 'string');
}
});
test('model — all modelMode values', () => {
for (const v of HOST_INTEGRATION_AXES.modelMode) {
const r = degradationFor('model', { modelMode: v });
assert.ok(VALID_LEVELS.has(r.level), `model/${v}: level '${r.level}' invalid`);
}
});
test('hooks — all hookBus values', () => {
for (const v of HOST_INTEGRATION_AXES.hookBus) {
const r = degradationFor('hooks', { hookBus: v });
assert.ok(VALID_LEVELS.has(r.level), `hooks/${v}: level '${r.level}' invalid`);
}
});
test('state — all stateIO values', () => {
for (const v of HOST_INTEGRATION_AXES.stateIO) {
const r = degradationFor('state', { stateIO: v });
assert.ok(VALID_LEVELS.has(r.level), `state/${v}: level '${r.level}' invalid`);
}
});
test('artifact — all commandSurface values', () => {
for (const v of HOST_INTEGRATION_AXES.commandSurface) {
const r = degradationFor('artifact', { commandSurface: v });
assert.ok(VALID_LEVELS.has(r.level), `artifact/${v}: level '${r.level}' invalid`);
}
});
});
// ---------------------------------------------------------------------------
// degradationFor — unknown / missing axis → absent + unknown:true, never throws
// ---------------------------------------------------------------------------
describe('degradationFor — unknown / missing axis', () => {
test('unknown commandSurface value for command → absent + unknown:true', () => {
const r = degradationFor('command', { commandSurface: 'zzz' });
assert.strictEqual(r.level, 'absent');
assert.strictEqual(r.unknown, true);
});
test('missing commandSurface for command → absent + unknown:true', () => {
const r = degradationFor('command', {});
assert.strictEqual(r.level, 'absent');
assert.strictEqual(r.unknown, true);
});
test('unknown modelMode → absent + unknown:true', () => {
const r = degradationFor('model', { modelMode: 'zzz' });
assert.strictEqual(r.level, 'absent');
assert.strictEqual(r.unknown, true);
});
test('missing hookBus for hooks → absent + unknown:true', () => {
const r = degradationFor('hooks', {});
assert.strictEqual(r.level, 'absent');
assert.strictEqual(r.unknown, true);
});
test('no throw on unknown axis value', () => {
assert.doesNotThrow(() => degradationFor('dispatch', { dispatch: 'not-an-object' }));
});
test('no throw on completely empty axes', () => {
for (const point of INTERFACE_POINTS) {
assert.doesNotThrow(() => degradationFor(point, {}));
}
});
});
// ---------------------------------------------------------------------------
// profileOf
// ---------------------------------------------------------------------------
describe('profileOf', () => {
test('profileOf(PROFILE_BASELINES["programmatic-cli"]) === "programmatic-cli"', () => {
assert.strictEqual(profileOf(PROFILE_BASELINES['programmatic-cli']), 'programmatic-cli');
});
test('profileOf(PROFILE_BASELINES["declarative-cli"]) === "declarative-cli"', () => {
assert.strictEqual(profileOf(PROFILE_BASELINES['declarative-cli']), 'declarative-cli');
});
test('profileOf(PROFILE_BASELINES["ide"]) === "ide"', () => {
assert.strictEqual(profileOf(PROFILE_BASELINES['ide']), 'ide');
});
test('imperative + sandboxed-web → ide', () => {
assert.strictEqual(
profileOf({ embeddingMode: 'imperative', runtime: 'sandboxed-web' }),
'ide',
);
});
test('imperative + node → programmatic-cli', () => {
assert.strictEqual(
profileOf({ embeddingMode: 'imperative', runtime: 'node' }),
'programmatic-cli',
);
});
test('declarative → declarative-cli', () => {
assert.strictEqual(
profileOf({ embeddingMode: 'declarative' }),
'declarative-cli',
);
});
test('empty axes → null', () => {
assert.strictEqual(profileOf({}), null);
});
test('PROFILE_BASELINES are frozen', () => {
assert.ok(Object.isFrozen(PROFILE_BASELINES), 'PROFILE_BASELINES must be frozen');
});
});
// ---------------------------------------------------------------------------
// negotiateHostCapabilities — HAPPY PATH
// ---------------------------------------------------------------------------
describe('negotiateHostCapabilities — happy path', () => {
test('declarative-cli baseline → effective matches, no warnings, points.command.effectiveLevel===full', () => {
const baseline = PROFILE_BASELINES['declarative-cli'];
const result = negotiateHostCapabilities(baseline);
// No warnings
assert.deepStrictEqual(result.warnings, [], 'Expected no warnings for full declarative-cli baseline');
// Key points
assert.strictEqual(result.points.command.effectiveLevel, 'full');
assert.strictEqual(result.points.hooks.effectiveLevel, 'full');
assert.strictEqual(result.points.state.effectiveLevel, 'full');
// protocolVersion
assert.strictEqual(result.protocolVersion, PROTOCOL_VERSION);
// effective axes match baseline (scalar)
assert.strictEqual(result.effective.embeddingMode, baseline.embeddingMode);
assert.strictEqual(result.effective.commandSurface, baseline.commandSurface);
assert.strictEqual(result.effective.modelMode, baseline.modelMode);
assert.strictEqual(result.effective.hookBus, baseline.hookBus);
assert.strictEqual(result.effective.stateIO, baseline.stateIO);
// effective dispatch has maxDepth resolved (declarative has maxDepth:1)
assert.strictEqual(result.effective.dispatch.maxDepth, 1);
assert.strictEqual(result.effective.dispatch.namedDispatch, true);
});
test('all INTERFACE_POINTS are present in result.points', () => {
const result = negotiateHostCapabilities(PROFILE_BASELINES['programmatic-cli']);
for (const point of INTERFACE_POINTS) {
assert.ok(point in result.points, `Missing point: ${point}`);
assert.ok(['full', 'degraded', 'absent'].includes(result.points[point].effectiveLevel),
`Invalid effectiveLevel for ${point}`);
}
});
});
// ---------------------------------------------------------------------------
// negotiateHostCapabilities — SECURITY / HOSTILE
// ---------------------------------------------------------------------------
describe('negotiateHostCapabilities — security / hostile', () => {
test('(1) host declares future commandSurface at protocolVersion 99 → effective is KNOWN value, NOT the unknown one', () => {
const result = negotiateHostCapabilities({
...PROFILE_BASELINES['programmatic-cli'],
commandSurface: 'future-surface',
protocolVersion: 99,
});
// effective.commandSurface must be a KNOWN value
assert.ok(
HOST_INTEGRATION_AXES.commandSurface.includes(result.effective.commandSurface),
`effective.commandSurface '${result.effective.commandSurface}' is not in known vocabulary`,
);
assert.notStrictEqual(result.effective.commandSurface, 'future-surface',
'future-surface must NOT appear in effective');
// A warning mentioning protocolVersion
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('protocolVersion') || warnText.includes('unknown'),
`Expected a warning about protocolVersion or unknown value; got: ${warnText}`);
});
test('(2) host modelMode active but engine passive → effective.modelMode === passive', () => {
const restrictedEngine = {
...DEFAULT_ENGINE,
axes: { ...DEFAULT_ENGINE.axes, modelMode: 'passive' },
};
const result = negotiateHostCapabilities(
{ ...PROFILE_BASELINES['programmatic-cli'], modelMode: 'active' },
restrictedEngine,
);
assert.strictEqual(result.effective.modelMode, 'passive');
});
test('(3) host dispatch maxDepth:5 nested:true but engine dispatch maxDepth:1 → effective.dispatch.maxDepth===1', () => {
const restrictedEngine = {
...DEFAULT_ENGINE,
axes: {
...DEFAULT_ENGINE.axes,
dispatch: { ...DEFAULT_ENGINE.axes.dispatch, maxDepth: 1, nested: false },
},
};
const result = negotiateHostCapabilities(
{
...PROFILE_BASELINES['programmatic-cli'],
dispatch: { namedDispatch: true, nested: true, maxDepth: 5, background: true, subagentToolkit: 'full' },
},
restrictedEngine,
);
assert.strictEqual(result.effective.dispatch.maxDepth, 1);
});
test('(4) host omits hookBus → effective.hookBus is safe default + warning present', () => {
const hostWithoutHookBus = { ...PROFILE_BASELINES['declarative-cli'] };
delete hostWithoutHookBus.hookBus;
const result = negotiateHostCapabilities(hostWithoutHookBus);
// effective hookBus must be a known value
assert.ok(
HOST_INTEGRATION_AXES.hookBus.includes(result.effective.hookBus),
`effective.hookBus '${result.effective.hookBus}' is not known`,
);
// points.hooks must be present
assert.ok('hooks' in result.points, 'points.hooks must be present');
// a warning mentioning hookBus
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('hookBus'), `Expected warning about hookBus; got: ${warnText}`);
});
test('(5) INVARIANT: every effective scalar ∈ engine.known[axis] for hostile hosts', () => {
const hostileHosts = [
// All unknown values
{
embeddingMode: 'future-mode',
commandSurface: 'future-surface',
modelMode: 'quantum',
hookBus: 'blockchain',
stateIO: 'cloud-magic',
transport: 'telepathy',
runtime: 'wasm',
protocolVersion: 999,
},
// Mix of known and unknown
{
embeddingMode: 'imperative',
commandSurface: 'palette',
modelMode: 'active',
hookBus: 'none',
stateIO: 'unknown-future',
transport: 'mcp',
runtime: 'sandboxed-web',
},
// Empty host
{},
// Only dispatch with extreme values
{
dispatch: { namedDispatch: true, nested: true, maxDepth: 9999, background: true, subagentToolkit: 'full' },
},
];
const scalarAxes = ['embeddingMode', 'commandSurface', 'modelMode', 'hookBus', 'stateIO', 'transport', 'runtime'];
for (const host of hostileHosts) {
const result = negotiateHostCapabilities(host);
for (const axis of scalarAxes) {
const effectiveVal = result.effective[axis];
assert.ok(
HOST_INTEGRATION_AXES[axis].includes(effectiveVal),
`INVARIANT VIOLATION: effective.${axis}='${effectiveVal}' is NOT in known vocabulary for host=${JSON.stringify(host)}`,
);
}
}
});
test('host protocolVersion > engine → warning mentioning protocolVersion', () => {
const result = negotiateHostCapabilities({
...PROFILE_BASELINES['declarative-cli'],
protocolVersion: 99,
});
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('protocolVersion'), `Expected protocolVersion warning; got: ${warnText}`);
assert.strictEqual(result.protocolVersion, PROTOCOL_VERSION);
});
});
// ---------------------------------------------------------------------------
// INDEPENDENCE: mutation safety
// ---------------------------------------------------------------------------
describe('independence / mutation safety', () => {
test('mutating returned result does not affect second call', () => {
const host = PROFILE_BASELINES['declarative-cli'];
const r1 = negotiateHostCapabilities(host);
// Mutate r1
r1.warnings.push('injected');
r1.effective.modelMode = 'active';
r1.points.command.effectiveLevel = 'absent';
const r2 = negotiateHostCapabilities(host);
// r2 must not be affected
assert.deepStrictEqual(r2.warnings, [], 'r2.warnings must not include injected warning');
assert.strictEqual(r2.effective.modelMode, host.modelMode, 'r2.effective.modelMode must be original value');
assert.strictEqual(r2.points.command.effectiveLevel, 'full', 'r2.points.command.effectiveLevel must be full');
});
test('all exports are present on the module', () => {
const expectedExports = [
'PROTOCOL_VERSION', 'HOST_INTEGRATION_AXES', 'INTERFACE_POINTS',
'PROFILE_BASELINES', 'DEFAULT_ENGINE', 'UNDOCUMENTED',
'degradationFor', 'profileOf', 'negotiateHostCapabilities',
];
for (const exp of expectedExports) {
assert.ok(exp in hi, `Missing export: ${exp}`);
}
});
});
// ---------------------------------------------------------------------------
// Decision 1: undocumented sentinel — fail-closed in negotiation
// ---------------------------------------------------------------------------
describe('Decision 1: UNDOCUMENTED sentinel — fail-closed negotiation', () => {
test('negotiate with embeddingMode:"undocumented" → effective is safe default (documented value), NOT "undocumented"', () => {
const host = {
...PROFILE_BASELINES['declarative-cli'],
embeddingMode: 'undocumented',
};
const result = negotiateHostCapabilities(host);
// effective.embeddingMode must be a documented value, NOT 'undocumented'
assert.ok(
HOST_INTEGRATION_AXES.embeddingMode.includes(result.effective.embeddingMode),
`effective.embeddingMode must be a documented value; got '${result.effective.embeddingMode}'`,
);
assert.notStrictEqual(result.effective.embeddingMode, 'undocumented',
'effective.embeddingMode must not be "undocumented"');
// A warning mentioning "undocumented"
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('undocumented'),
`Expected a warning mentioning "undocumented"; got: ${warnText}`);
});
test('negotiate with dispatch fields all "undocumented" → fail-closed dispatch', () => {
const host = {
...PROFILE_BASELINES['programmatic-cli'],
dispatch: {
namedDispatch: 'undocumented',
nested: 'undocumented',
maxDepth: 'undocumented',
background: 'undocumented',
subagentToolkit: 'undocumented',
},
};
const result = negotiateHostCapabilities(host);
const d = result.effective.dispatch;
assert.strictEqual(d.namedDispatch, false, 'namedDispatch must be false when "undocumented"');
assert.strictEqual(d.nested, false, 'nested must be false when "undocumented"');
assert.strictEqual(d.background, false, 'background must be false when "undocumented"');
assert.strictEqual(d.subagentToolkit, 'read-only', 'subagentToolkit must be "read-only" when "undocumented"');
assert.strictEqual(d.maxDepth, 0, 'maxDepth must be 0 when "undocumented"');
// points.dispatch must be absent
assert.strictEqual(result.points.dispatch.effectiveLevel, 'absent',
'points.dispatch.effectiveLevel must be "absent" when dispatch is all undocumented');
});
test('degradationFor dispatch with namedDispatch:"undocumented" → level "absent"', () => {
const r = degradationFor('dispatch', {
dispatch: {
namedDispatch: 'undocumented',
nested: false,
maxDepth: 0,
background: false,
subagentToolkit: 'full',
},
});
assert.strictEqual(r.level, 'absent',
`degradationFor with namedDispatch:"undocumented" must return absent; got "${r.level}"`);
});
test('subagentToolkit "undocumented" (truthy string) fails closed to read-only', () => {
const host = {
...PROFILE_BASELINES['programmatic-cli'],
dispatch: {
namedDispatch: true,
nested: true,
maxDepth: -1,
background: true,
subagentToolkit: 'undocumented',
},
};
const result = negotiateHostCapabilities(host);
assert.strictEqual(result.effective.dispatch.subagentToolkit, 'read-only',
'subagentToolkit "undocumented" must degrade to "read-only"');
});
});
// ---------------------------------------------------------------------------
// Decision 2: expanded runtime vocabulary (8 documented values)
// ---------------------------------------------------------------------------
describe('Decision 2: expanded runtime vocabulary', () => {
const newRuntimes = ['python', 'go', 'rust', 'electron', 'other'];
for (const rt of newRuntimes) {
test(`negotiate with runtime:"${rt}" → effective.runtime === "${rt}" (no warn about unknown)`, () => {
const host = {
...PROFILE_BASELINES['programmatic-cli'],
runtime: rt,
};
const result = negotiateHostCapabilities(host);
assert.strictEqual(result.effective.runtime, rt,
`effective.runtime must be "${rt}"; got "${result.effective.runtime}"`);
// Must NOT have an unknown-value warning for this runtime
const runtimeWarnings = result.warnings.filter((w) => w.includes('runtime') && w.includes('not trusted'));
assert.strictEqual(runtimeWarnings.length, 0,
`Must not warn about unknown runtime "${rt}"; warnings: ${result.warnings.join(', ')}`);
});
}
test('runtime "undocumented" (sentinel) → fail-closed to safe default', () => {
const host = {
...PROFILE_BASELINES['programmatic-cli'],
runtime: 'undocumented',
};
const result = negotiateHostCapabilities(host);
// Must be a documented value, not "undocumented"
assert.ok(
HOST_INTEGRATION_AXES.runtime.includes(result.effective.runtime),
`effective.runtime must be documented; got "${result.effective.runtime}"`,
);
assert.notStrictEqual(result.effective.runtime, 'undocumented');
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('undocumented'), `Expected undocumented warning; got: ${warnText}`);
});
test('"wasm" (genuinely unknown, not sentinel) → still fails closed with "not trusted" warning', () => {
const host = {
...PROFILE_BASELINES['programmatic-cli'],
runtime: 'wasm',
};
const result = negotiateHostCapabilities(host);
assert.ok(HOST_INTEGRATION_AXES.runtime.includes(result.effective.runtime),
`effective.runtime must be documented; got "${result.effective.runtime}"`);
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('not trusted') || warnText.includes('unknown'),
`Expected not-trusted/unknown warning; got: ${warnText}`);
});
});
// ---------------------------------------------------------------------------
// Fix 1: degradationFor('dispatch') fail-closed on non-'full' subagentToolkit
// ---------------------------------------------------------------------------
describe('Fix 1: degradationFor dispatch fails closed on non-full subagentToolkit', () => {
const FULL_DEPTH_DISPATCH = { namedDispatch: true, nested: true, maxDepth: -1, background: true };
test('subagentToolkit:"full" + full depth → level "full"', () => {
const r = degradationFor('dispatch', { dispatch: { ...FULL_DEPTH_DISPATCH, subagentToolkit: 'full' } });
assert.strictEqual(r.level, 'full',
'subagentToolkit:"full" with full depth must return level "full"');
});
test('subagentToolkit:"read-only" + full depth → level "degraded"', () => {
const r = degradationFor('dispatch', { dispatch: { ...FULL_DEPTH_DISPATCH, subagentToolkit: 'read-only' } });
assert.strictEqual(r.level, 'degraded',
'subagentToolkit:"read-only" must return level "degraded"');
assert.ok(r.fallback.length > 0, 'fallback must be non-empty');
});
test('subagentToolkit:"undocumented" + full depth → level "degraded" (fail-closed)', () => {
const r = degradationFor('dispatch', { dispatch: { ...FULL_DEPTH_DISPATCH, subagentToolkit: 'undocumented' } });
assert.strictEqual(r.level, 'degraded',
'subagentToolkit:"undocumented" must fail closed to level "degraded"; got "' + r.level + '"');
assert.ok(r.fallback.length > 0, 'fallback must be non-empty');
});
test('subagentToolkit:"future-xyz" + full depth → level "degraded" (fail-closed)', () => {
const r = degradationFor('dispatch', { dispatch: { ...FULL_DEPTH_DISPATCH, subagentToolkit: 'future-xyz' } });
assert.strictEqual(r.level, 'degraded',
'subagentToolkit:"future-xyz" (unknown) must fail closed to level "degraded"; got "' + r.level + '"');
assert.ok(r.fallback.length > 0, 'fallback must be non-empty');
});
test('subagentToolkit:"" (empty string) + full depth → level "degraded" (fail-closed)', () => {
const r = degradationFor('dispatch', { dispatch: { ...FULL_DEPTH_DISPATCH, subagentToolkit: '' } });
assert.strictEqual(r.level, 'degraded',
'subagentToolkit:"" must fail closed to level "degraded"; got "' + r.level + '"');
});
});
// ---------------------------------------------------------------------------
// New fixes: M1 maxDepth NaN, M2 struct consistency, L1 SAFE_DEFAULTS,
// L2 protocolVersion warn, N1 undocumented dispatch warnings
// ---------------------------------------------------------------------------
describe('Fix M1: maxDepth NaN bypasses number guard', () => {
test('negotiate with dispatch.maxDepth NaN → effective.dispatch.maxDepth === 0 AND warning about maxDepth AND Number.isFinite', () => {
const result = negotiateHostCapabilities({
dispatch: { namedDispatch: true, nested: false, maxDepth: NaN, background: false, subagentToolkit: 'full' },
});
const d = result.effective.dispatch;
assert.strictEqual(d.maxDepth, 0, 'NaN maxDepth must be normalized to 0');
assert.ok(Number.isFinite(d.maxDepth), 'effective.dispatch.maxDepth must be finite (Number.isFinite)');
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('maxDepth'), `Expected a warning about maxDepth; got: ${warnText}`);
});
test('degradationFor dispatch with maxDepth NaN → level "degraded" (not NaN-dependent, not "full")', () => {
const r = degradationFor('dispatch', {
dispatch: { namedDispatch: true, nested: true, maxDepth: NaN, subagentToolkit: 'full' },
});
// After fix: depth=(NaN not finite)→0; NaN===0 is false so initial check doesn't fire;
// isUnbounded=false; isFullDepth = false || (nested:true && 0>=2) = false → 'degraded' (flat)
assert.strictEqual(r.level, 'degraded',
`NaN maxDepth with nested:true must yield 'degraded' (depth=0, not full-depth); got: ${r.level}`);
assert.notStrictEqual(r.level, 'full', 'NaN maxDepth must NOT yield "full"');
});
});
describe('Fix M2: cap nested/background when namedDispatch is false', () => {
test('negotiate with namedDispatch:"undocumented" → namedDispatch false, nested false, background false, maxDepth 0; warnings include namedDispatch undocumented note', () => {
const result = negotiateHostCapabilities({
dispatch: { namedDispatch: 'undocumented', nested: true, background: true, maxDepth: 5, subagentToolkit: 'full' },
});
const d = result.effective.dispatch;
assert.strictEqual(d.namedDispatch, false, 'namedDispatch must be false');
assert.strictEqual(d.nested, false, 'nested must be false when namedDispatch is false');
assert.strictEqual(d.background, false, 'background must be false when namedDispatch is false');
assert.strictEqual(d.maxDepth, 0, 'maxDepth must be 0 when namedDispatch is false');
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('namedDispatch') || warnText.includes('dispatch.namedDispatch'),
`Expected a warning about namedDispatch being undocumented; got: ${warnText}`);
});
});
describe('Fix L1: SAFE_DEFAULTS.dispatch.subagentToolkit is read-only', () => {
// CONTRACT: negotiate({}) uses SAFE_DEFAULTS for each axis; dispatch uses its floor
test('negotiate({}) → effective axes match documented SAFE_DEFAULTS (CONTRACT)', () => {
const result = negotiateHostCapabilities({});
const eff = result.effective;
assert.strictEqual(eff.embeddingMode, 'declarative');
assert.strictEqual(eff.commandSurface, 'prose-only');
assert.strictEqual(eff.modelMode, 'passive');
assert.strictEqual(eff.hookBus, 'none');
assert.strictEqual(eff.stateIO, 'session-log-append');
assert.strictEqual(eff.transport, 'mcp');
assert.strictEqual(eff.runtime, 'node');
assert.strictEqual(eff.dispatch.subagentToolkit, 'read-only',
'SAFE_DEFAULTS dispatch floor must be read-only');
});
});
describe('Fix L2: warn on present-but-non-number protocolVersion', () => {
test('negotiate with protocolVersion:"beta" → warnings include protocolVersion note; result.protocolVersion === engine default (1)', () => {
const result = negotiateHostCapabilities({
embeddingMode: 'declarative',
commandSurface: 'slash-file',
modelMode: 'passive',
hookBus: 'host',
stateIO: 'filesystem',
transport: 'mcp',
runtime: 'node',
dispatch: { namedDispatch: true, nested: false, maxDepth: 1, background: false, subagentToolkit: 'full' },
protocolVersion: 'beta',
});
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('protocolVersion'),
`Expected a warning about protocolVersion being non-finite/non-number; got: ${warnText}`);
assert.strictEqual(result.protocolVersion, 1,
'result.protocolVersion must fall back to engine default (1)');
});
});
describe('Fix N1: symmetric observability warnings for undocumented dispatch fields', () => {
test('dispatch.subagentToolkit:"undocumented" → warning includes "dispatch.subagentToolkit is undocumented"', () => {
const result = negotiateHostCapabilities({
dispatch: { namedDispatch: true, nested: true, maxDepth: -1, background: true, subagentToolkit: 'undocumented' },
});
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('subagentToolkit') && warnText.includes('undocumented'),
`Expected warning about dispatch.subagentToolkit undocumented; got: ${warnText}`);
});
});
describe('Fix: degradationFor unknown point → {level:"absent", unknown:true}', () => {
test('degradationFor("totally-unknown-point", {}) → {level:"absent", unknown:true}', () => {
const r = degradationFor('totally-unknown-point', {});
assert.strictEqual(r.level, 'absent', 'unknown point must return absent');
assert.strictEqual(r.unknown, true, 'unknown point must have unknown:true');
});
});
// ---------------------------------------------------------------------------
// Phase B: shouldFlattenDispatch — ADR-1239 Phase B / #1708
// ---------------------------------------------------------------------------
describe('Phase B: shouldFlattenDispatch — contract pin', () => {
const { shouldFlattenDispatch } = hi;
test('shouldFlattenDispatch is exported as a function', () => {
assert.strictEqual(typeof shouldFlattenDispatch, 'function',
'shouldFlattenDispatch must be exported from host-integration module');
});
test('{background:true, backgroundDispatch:true} → true (no depth budget declared → fail-closed/flatten)', () => {
// #2939: can background AT ALL, but declares no nested/toolkit/maxDepth, so the depth
// budget is unknown → fail-closed to inline (flatten). A real background-eligible host
// also carries nested:true + subagentToolkit:"full" + a sufficient maxDepth.
assert.strictEqual(shouldFlattenDispatch({ background: true, backgroundDispatch: true }), true,
'canBackground=true but no depth budget declared → fail-closed/flatten=true');
});
test('{background:true, backgroundDispatch:false} → true (must flatten)', () => {
assert.strictEqual(shouldFlattenDispatch({ background: true, backgroundDispatch: false }), true,
'backgroundDispatch===false → canBackground=false → flatten=true');
});
test('{background:true, backgroundDispatch:"undocumented"} → true (undocumented is not === true)', () => {
assert.strictEqual(shouldFlattenDispatch({ background: true, backgroundDispatch: 'undocumented' }), true,
'"undocumented" is not === true → canBackground=false → flatten=true');
});
test('{background:false, backgroundDispatch:true} → true (background is false)', () => {
assert.strictEqual(shouldFlattenDispatch({ background: false, backgroundDispatch: true }), true,
'background===false → canBackground=false → flatten=true');
});
test('{} (empty) → true (missing fields → fail-closed)', () => {
assert.strictEqual(shouldFlattenDispatch({}), true,
'empty dispatch → canBackground=false → flatten=true');
});
test('missing fields individually', () => {
assert.strictEqual(shouldFlattenDispatch({ background: true }), true,
'backgroundDispatch missing → not === true → flatten=true');
assert.strictEqual(shouldFlattenDispatch({ backgroundDispatch: true }), true,
'background missing → not === true → flatten=true');
});
// M1: null-safety — null/undefined/non-object dispatch must fail-closed (not throw)
test('null dispatch → true (fail-closed, no throw)', () => {
assert.strictEqual(shouldFlattenDispatch(null), true,
'null dispatch must fail-closed to true');
});
test('undefined dispatch → true (fail-closed, no throw)', () => {
assert.strictEqual(shouldFlattenDispatch(undefined), true,
'undefined dispatch must fail-closed to true');
});
test('string dispatch → true (fail-closed, no throw)', () => {
assert.strictEqual(shouldFlattenDispatch('x'), true,
'non-object dispatch (string) must fail-closed to true');
});
// #2939: the codex-like profile with maxDepth:1 now FLATTENS. A depth budget of 1 is consumed
// by the backgrounded orchestrator itself (depth 1) and leaves no room for the delegated leaf
// (depth 2) its own contract requires. This corrects the prior pin, which asserted the buggy
// shouldFlatten:false output that permitted a depth-2 tree the descriptor cannot support.
test('#2939 codex-like: {namedDispatch:true,nested:true,maxDepth:1,background:true,subagentToolkit:"full",backgroundDispatch:true} → true (flatten — depth budget insufficient)', () => {
assert.strictEqual(
shouldFlattenDispatch({ namedDispatch: true, nested: true, maxDepth: 1, background: true, subagentToolkit: 'full', backgroundDispatch: true }),
true,
'maxDepth:1 is insufficient for a backgrounded orchestrator plus a delegated leaf → flatten=true',
);
});
// #2939 negative-space: the same codex-like profile with a SUFFICIENT depth budget backgrounds.
test('#2939 codex-like maxDepth:2 → false (background OK — depth budget sufficient)', () => {
assert.strictEqual(
shouldFlattenDispatch({ namedDispatch: true, nested: true, maxDepth: 2, background: true, subagentToolkit: 'full', backgroundDispatch: true }),
false,
'maxDepth:2 leaves room for a backgrounded orchestrator plus a leaf → background OK',
);
});
// #853 claude-like profile: backgroundDispatch:false → must flatten
test('#853 claude-like: {...,background:true,backgroundDispatch:false} → true (inline)', () => {
assert.strictEqual(
shouldFlattenDispatch({ namedDispatch: true, nested: true, maxDepth: -1, background: true, subagentToolkit: 'full', backgroundDispatch: false }),
true,
'claude-like dispatch with backgroundDispatch:false must flatten inline',
);
});
});
// ---------------------------------------------------------------------------
// Phase B: negotiateHostCapabilities — backgroundDispatch field
// ---------------------------------------------------------------------------
describe('Phase B: negotiateHostCapabilities — backgroundDispatch', () => {
test('host dispatch.backgroundDispatch:true against DEFAULT_ENGINE → effective.dispatch.backgroundDispatch===true', () => {
const result = negotiateHostCapabilities({
...PROFILE_BASELINES['programmatic-cli'],
dispatch: { namedDispatch: true, nested: true, maxDepth: -1, background: true, subagentToolkit: 'full', backgroundDispatch: true },
});
assert.strictEqual(result.effective.dispatch.backgroundDispatch, true,
'backgroundDispatch:true on host AND engine must yield effective backgroundDispatch===true');
});
test('host dispatch.backgroundDispatch:"undocumented" → effective.dispatch.backgroundDispatch===false + warning', () => {
const result = negotiateHostCapabilities({
...PROFILE_BASELINES['programmatic-cli'],
dispatch: { namedDispatch: true, nested: true, maxDepth: -1, background: true, subagentToolkit: 'full', backgroundDispatch: 'undocumented' },
});
assert.strictEqual(result.effective.dispatch.backgroundDispatch, false,
'"undocumented" must fail-closed to false');
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('backgroundDispatch') && warnText.includes('undocumented'),
`Expected warning about backgroundDispatch being undocumented; got: ${warnText}`);
});
test('host dispatch.backgroundDispatch:false → effective.dispatch.backgroundDispatch===false', () => {
const result = negotiateHostCapabilities({
...PROFILE_BASELINES['programmatic-cli'],
dispatch: { namedDispatch: true, nested: true, maxDepth: -1, background: true, subagentToolkit: 'full', backgroundDispatch: false },
});
assert.strictEqual(result.effective.dispatch.backgroundDispatch, false);
});
test('host dispatch without backgroundDispatch key → effective.dispatch.backgroundDispatch===false (fail-closed)', () => {
const result = negotiateHostCapabilities({
...PROFILE_BASELINES['programmatic-cli'],
dispatch: { namedDispatch: true, nested: true, maxDepth: -1, background: true, subagentToolkit: 'full' },
});
assert.strictEqual(result.effective.dispatch.backgroundDispatch, false,
'Missing backgroundDispatch key must fail-closed to false');
});
test('negotiateHostCapabilities({}) → effective.dispatch.backgroundDispatch===false', () => {
const result = negotiateHostCapabilities({});
assert.strictEqual(result.effective.dispatch.backgroundDispatch, false,
'Empty host must produce backgroundDispatch===false (SAFE_DEFAULTS)');
});
test('SAFE_DEFAULTS.dispatch.backgroundDispatch is false', () => {
// Verified via negotiation with empty host
const result = negotiateHostCapabilities({});
assert.strictEqual(result.effective.dispatch.backgroundDispatch, false);
});
test('DEFAULT_ENGINE.axes.dispatch.backgroundDispatch is true', () => {
assert.strictEqual(DEFAULT_ENGINE.axes.dispatch.backgroundDispatch, true,
'DEFAULT_ENGINE (full engine) must declare backgroundDispatch:true');
});
test('existing dispatch tests still pass — effective.dispatch.namedDispatch present alongside backgroundDispatch', () => {
const result = negotiateHostCapabilities(PROFILE_BASELINES['programmatic-cli']);
const d = result.effective.dispatch;
assert.ok('namedDispatch' in d, 'namedDispatch must still be present');
assert.ok('backgroundDispatch' in d, 'backgroundDispatch must be present');
assert.ok('nested' in d && 'maxDepth' in d && 'background' in d && 'subagentToolkit' in d,
'all original dispatch fields must still be present');
});
});
// ---------------------------------------------------------------------------
// Fix 2: negotiateHostCapabilities — host omitting 'dispatch' → subagentToolkit 'read-only'
// ---------------------------------------------------------------------------
describe('Fix 2: negotiate — host omits dispatch → subagentToolkit read-only (fail-closed)', () => {
test('negotiateHostCapabilities({}) → effective.dispatch.subagentToolkit === "read-only"', () => {
const result = negotiateHostCapabilities({});
assert.strictEqual(result.effective.dispatch.subagentToolkit, 'read-only',
'When host omits dispatch, subagentToolkit must fail-closed to "read-only"; got "' + result.effective.dispatch.subagentToolkit + '"');
});
test('negotiateHostCapabilities({}) → effective.dispatch.namedDispatch===false, maxDepth===0, nested===false, background===false', () => {
const result = negotiateHostCapabilities({});
const d = result.effective.dispatch;
assert.strictEqual(d.namedDispatch, false);
assert.strictEqual(d.maxDepth, 0);
assert.strictEqual(d.nested, false);
assert.strictEqual(d.background, false);
});
test('negotiateHostCapabilities({}) → points.dispatch.effectiveLevel === "absent"', () => {
const result = negotiateHostCapabilities({});
assert.strictEqual(result.points.dispatch.effectiveLevel, 'absent',
'dispatch absent when host omits it');
});
test('host with all axes but no dispatch → subagentToolkit "read-only"', () => {
const hostWithoutDispatch = {
embeddingMode: 'imperative',
commandSurface: 'slash-file',
modelMode: 'passive',
hookBus: 'host',
stateIO: 'filesystem',
transport: 'mcp',
runtime: 'node',
// no dispatch key
};
const result = negotiateHostCapabilities(hostWithoutDispatch);
assert.strictEqual(result.effective.dispatch.subagentToolkit, 'read-only',
'Host missing dispatch must produce subagentToolkit "read-only"; got "' + result.effective.dispatch.subagentToolkit + '"');
});
});
// ---------------------------------------------------------------------------
// #2584 — ADR-1239 Codex-binding amendment: dispatch.isolation sub-field
// (Phase 1 — declared and negotiated, but NOT consumed by any scheduler yet).
// ---------------------------------------------------------------------------
describe('#2584 dispatch.isolation — negotiation', () => {
const BASE_DISPATCH = {
namedDispatch: true, nested: false, maxDepth: 1, background: false,
subagentToolkit: 'full', backgroundDispatch: false,
};
for (const value of HOST_INTEGRATION_AXES.isolation) {
test(`host declares isolation:"${value}" → effective.dispatch.isolation === "${value}"`, () => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, isolation: value },
});
assert.strictEqual(result.effective.dispatch.isolation, value);
});
}
test('isolation:"undocumented" → effective "none" + a warning naming dispatch.isolation', () => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, isolation: 'undocumented' },
});
assert.strictEqual(result.effective.dispatch.isolation, 'none');
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('dispatch.isolation') && warnText.includes('undocumented'),
`Expected a warning naming dispatch.isolation as undocumented; got: ${warnText}`);
});
test('isolation: unknown/garbage value (not the sentinel) → effective "none", no throw', () => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, isolation: 'quantum-worktree' },
});
assert.strictEqual(result.effective.dispatch.isolation, 'none');
});
test('isolation: non-string value (number/object/array/null) → effective "none", no throw', () => {
for (const bogus of [42, {}, [], null, true]) {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, isolation: bogus },
});
assert.strictEqual(result.effective.dispatch.isolation, 'none',
`isolation=${JSON.stringify(bogus)} must degrade to "none"`);
}
});
test('host declares dispatch but omits isolation entirely → effective "none"', () => {
const result = negotiateHostCapabilities({ dispatch: { ...BASE_DISPATCH } });
assert.strictEqual(result.effective.dispatch.isolation, 'none');
});
test('host omits dispatch entirely → effective.dispatch.isolation === "none"', () => {
const result = negotiateHostCapabilities({});
assert.strictEqual(result.effective.dispatch.isolation, 'none');
});
test('negotiateHostCapabilities({}) → SAFE_DEFAULTS floor carries isolation "none"', () => {
// FAIL_CLOSED_FLOOR.dispatch.isolation (src/host-integration.cts SAFE_DEFAULTS)
const result = negotiateHostCapabilities({});
assert.strictEqual(result.effective.dispatch.isolation, 'none');
});
test('isolation is NOT gated by namedDispatch:false — unlike nested/background/backgroundDispatch, it is not capped', () => {
// orchestrator-worktree fan-out is OS-level (process-spawn), independent of
// the host's native named-subagent dispatch (ADR-1239 §2584: "does not use
// the host's native subagent tool"). A host may plausibly declare
// namedDispatch:false yet still have isolation info; either way it must not
// silently flip to a DIFFERENT valid value or throw.
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, namedDispatch: false, isolation: 'orchestrator-worktree' },
});
assert.strictEqual(result.effective.dispatch.isolation, 'orchestrator-worktree');
});
// ─── Boundary: exact valid-set membership ──────────────────────────────────
describe('boundary — a value one character off a valid member fails closed to "none"', () => {
const NEAR_MISSES = [
'harness-worktre', // missing trailing 'e' (limit-1)
'harness-worktreee', // extra trailing 'e' (limit+1)
'Harness-Worktree', // case mismatch
'orchestrator-worktre', // missing trailing 'e'
'orchestrator-worktrees', // extra trailing 's'
'non', // missing trailing 'e' of "none"
'nonee', // extra trailing 'e'
' none', // leading space
'none ', // trailing space
];
for (const nearMiss of NEAR_MISSES) {
test(`isolation:${JSON.stringify(nearMiss)} → "none"`, () => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, isolation: nearMiss },
});
assert.strictEqual(result.effective.dispatch.isolation, 'none');
});
}
});
// ─── Property: valid-set-passthrough-else-none contract ─────────────────────
test('property: effective.dispatch.isolation equals the declared value iff it is a known vocabulary member, else "none"', () => {
const declaredArb = fc.oneof(
fc.constantFrom(...HOST_INTEGRATION_AXES.isolation, 'undocumented'),
fc.string(),
);
fc.assert(
fc.property(declaredArb, (declared) => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, isolation: declared },
});
const eff = result.effective.dispatch.isolation;
assert.ok(HOST_INTEGRATION_AXES.isolation.includes(eff),
`effective.dispatch.isolation '${eff}' must always be a known vocabulary member`);
if (HOST_INTEGRATION_AXES.isolation.includes(declared)) {
assert.strictEqual(eff, declared, `a valid declared value ('${declared}') must pass through unchanged`);
} else {
assert.strictEqual(eff, 'none', `an invalid/sentinel declared value ('${declared}') must degrade to "none"`);
}
}),
{ numRuns: 200, seed: 2584 },
);
});
});
// ---------------------------------------------------------------------------
// #3673 — ADR-1239 Phase 1: dispatch.maxConcurrency (numeric sibling of
// dispatch.isolation). NOT an enum member of HOST_INTEGRATION_AXES (same
// "numeric dispatch sub-field" precedent as maxDepth). No engine-side
// reduction (design doc's explicit rejection of a min(host,engine) rule) —
// the resolved value passes through verbatim when it is a positive safe
// integer; every other shape degrades to the fail-closed floor of 1.
// ---------------------------------------------------------------------------
describe('#3673 dispatch.maxConcurrency — negotiation', () => {
const BASE_DISPATCH = {
namedDispatch: true, nested: false, maxDepth: 1, background: false,
subagentToolkit: 'full', backgroundDispatch: false, isolation: 'none',
};
test('descriptor maxConcurrency:8 (valid positive integer) is honored', () => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, maxConcurrency: 8 },
});
assert.strictEqual(result.effective.dispatch.maxConcurrency, 8);
});
test('missing dispatch.maxConcurrency degrades to 1', () => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH },
});
assert.strictEqual(result.effective.dispatch.maxConcurrency, 1);
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('maxConcurrency'), `Expected a warning naming maxConcurrency; got: ${warnText}`);
});
test('undocumented maxConcurrency degrades to 1 with sentinel-specific warning', () => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, maxConcurrency: 'undocumented' },
});
assert.strictEqual(result.effective.dispatch.maxConcurrency, 1);
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('dispatch.maxConcurrency') && warnText.includes('undocumented'),
`Expected a sentinel-specific warning naming dispatch.maxConcurrency as undocumented; got: ${warnText}`);
});
test('zero maxConcurrency degrades to 1 (non-positive)', () => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, maxConcurrency: 0 },
});
assert.strictEqual(result.effective.dispatch.maxConcurrency, 1);
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('non-positive'), `Expected a non-positive warning; got: ${warnText}`);
});
test('maxConcurrency of exactly 1 is honored as valid, not degraded', () => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, maxConcurrency: 1 },
});
assert.strictEqual(result.effective.dispatch.maxConcurrency, 1);
const warnText = result.warnings.join(' ');
assert.ok(!warnText.includes('maxConcurrency'), `A valid maxConcurrency:1 must not produce a maxConcurrency warning; got: ${warnText}`);
});
test('maxConcurrency of 2 is honored', () => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, maxConcurrency: 2 },
});
assert.strictEqual(result.effective.dispatch.maxConcurrency, 2);
});
test('negative maxConcurrency degrades to 1', () => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, maxConcurrency: -3 },
});
assert.strictEqual(result.effective.dispatch.maxConcurrency, 1);
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('non-positive'), `Expected a non-positive warning; got: ${warnText}`);
});
test('fractional maxConcurrency degrades to 1 (non-integer)', () => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, maxConcurrency: 4.5 },
});
assert.strictEqual(result.effective.dispatch.maxConcurrency, 1);
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('not an integer'), `Expected a non-integer warning; got: ${warnText}`);
});
test('NaN maxConcurrency degrades to 1 (fails Number.isSafeInteger)', () => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, maxConcurrency: NaN },
});
assert.strictEqual(result.effective.dispatch.maxConcurrency, 1);
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('not an integer'), `Expected a non-integer warning for NaN; got: ${warnText}`);
});
test('unsafe-integer maxConcurrency (MAX_SAFE_INTEGER + 1) degrades to 1', () => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, maxConcurrency: Number.MAX_SAFE_INTEGER + 1 },
});
assert.strictEqual(result.effective.dispatch.maxConcurrency, 1);
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('unsafe integer'), `Expected an unsafe-integer warning; got: ${warnText}`);
});
test('MAX_SAFE_INTEGER maxConcurrency is honored (largest valid value)', () => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, maxConcurrency: Number.MAX_SAFE_INTEGER },
});
assert.strictEqual(result.effective.dispatch.maxConcurrency, Number.MAX_SAFE_INTEGER);
});
test('string-typed maxConcurrency ("8") degrades to 1 (non-numeric)', () => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, maxConcurrency: '8' },
});
assert.strictEqual(result.effective.dispatch.maxConcurrency, 1);
const warnText = result.warnings.join(' ');
assert.ok(warnText.includes('not a number'), `Expected a non-numeric warning; got: ${warnText}`);
});
test('null maxConcurrency degrades to 1', () => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, maxConcurrency: null },
});
assert.strictEqual(result.effective.dispatch.maxConcurrency, 1);
});
test('object/array-typed maxConcurrency degrades to 1', () => {
for (const bogus of [[8], {}]) {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, maxConcurrency: bogus },
});
assert.strictEqual(result.effective.dispatch.maxConcurrency, 1,
`maxConcurrency=${JSON.stringify(bogus)} must degrade to 1`);
}
});
test('adding maxConcurrency does not change isolation/effortSurface/modelMode negotiation results', () => {
const result = negotiateHostCapabilities({
embeddingMode: 'imperative',
commandSurface: 'slash-file',
modelMode: 'active',
hookBus: 'host',
stateIO: 'filesystem',
transport: 'mcp',
runtime: 'node',
effortSurface: 'argv',
dispatch: { ...BASE_DISPATCH, isolation: 'harness-worktree', maxConcurrency: 8 },
});
assert.strictEqual(result.effective.dispatch.isolation, 'harness-worktree');
assert.strictEqual(result.effective.effortSurface, 'argv');
assert.strictEqual(result.effective.modelMode, 'active');
assert.strictEqual(result.effective.dispatch.maxConcurrency, 8);
});
test('host omits dispatch entirely → effective.dispatch.maxConcurrency === 1', () => {
const result = negotiateHostCapabilities({});
assert.strictEqual(result.effective.dispatch.maxConcurrency, 1);
});
test('property: effective.dispatch.maxConcurrency equals the declared value iff it is a positive safe integer, else 1', () => {
const declaredArb = fc.oneof(
fc.integer(),
fc.double(),
fc.string(),
fc.constant('undocumented'),
fc.constant(null),
fc.constant(undefined),
fc.boolean(),
fc.array(fc.integer()),
fc.object(),
);
fc.assert(
fc.property(declaredArb, (declared) => {
const result = negotiateHostCapabilities({
dispatch: { ...BASE_DISPATCH, maxConcurrency: declared },
});
const eff = result.effective.dispatch.maxConcurrency;
const isValid = typeof declared === 'number' && Number.isSafeInteger(declared) && declared > 0;
if (isValid) {
assert.strictEqual(eff, declared, `a valid declared value (${declared}) must pass through unchanged`);
} else {
assert.strictEqual(eff, 1, `an invalid declared value (${JSON.stringify(declared)}) must degrade to 1`);
}
}),
{ numRuns: 200, seed: 3673 },
);
});
});
describe('#3673 dispatch.maxConcurrency — validator', () => {
test('a descriptor that omits dispatch.maxConcurrency entirely still validates clean (added after existing descriptors)', () => {
const cap = shippedClaudeCapabilityWithoutIsolation();
delete cap.runtime.hostIntegration.dispatch.maxConcurrency;
const errors = validateCapability(cap, 'claude');
const mcErrors = errors.filter((e) => e.includes('maxConcurrency'));
assert.deepEqual(mcErrors, [], `omitted maxConcurrency must validate clean, got: ${JSON.stringify(mcErrors)}`);
});
for (const value of [1, 2, 20, Number.MAX_SAFE_INTEGER, 'undocumented']) {
test(`dispatch.maxConcurrency:${JSON.stringify(value)} → ZERO validator errors`, () => {
const cap = shippedClaudeCapabilityWithoutIsolation();
cap.runtime.hostIntegration.dispatch.maxConcurrency = value;
const errors = validateCapability(cap, 'claude');
const mcErrors = errors.filter((e) => e.includes('maxConcurrency'));
assert.strictEqual(mcErrors.length, 0,
`${JSON.stringify(value)} must produce no validator errors; got: ${JSON.stringify(mcErrors)}`);
});
}
// Hostile: an out-of-vocabulary shape (boolean) — same treatment the
// validator already gives a malformed isolation/maxDepth value.
for (const bogus of [true, false, 0, -1, 4.5, '8', null, [], {}]) {
test(`dispatch.maxConcurrency:${JSON.stringify(bogus)} is rejected`, () => {
const cap = shippedClaudeCapabilityWithoutIsolation();
cap.runtime.hostIntegration.dispatch.maxConcurrency = bogus;
const errors = validateCapability(cap, 'claude');
assert.ok(
errors.some((e) => e.includes('maxConcurrency')),
`${JSON.stringify(bogus)} must produce a validator error; got: ${JSON.stringify(errors)}`,
);
});
}
test('every shipped runtime descriptor with a maxConcurrency value passes validateCapability', () => {
const registry = require('../msd-core/bin/lib/capability-registry.cjs');
for (const [id, cap] of Object.entries(registry.runtimes)) {
const mc = cap && cap.runtime && cap.runtime.hostIntegration && cap.runtime.hostIntegration.dispatch
&& cap.runtime.hostIntegration.dispatch.maxConcurrency;
if (mc === undefined) continue;
const errors = validateCapability(cap, id);
const mcErrors = errors.filter((e) => e.includes('maxConcurrency'));
assert.strictEqual(mcErrors.length, 0,
`${id}: shipped dispatch.maxConcurrency:${JSON.stringify(mc)} must validate clean; got: ${JSON.stringify(mcErrors)}`);
}
});
});
describe('#2584 dispatch.isolation — validator', () => {
test('_HOST_INTEGRATION_VOCAB.isolation matches HOST_INTEGRATION_AXES.isolation (parity guard)', () => {
assert.deepEqual(
[..._HOST_INTEGRATION_VOCAB.isolation].sort(),
[...HOST_INTEGRATION_AXES.isolation].sort(),
);
});
test('a descriptor that omits dispatch.isolation entirely still validates clean (added after existing descriptors)', () => {
const cap = shippedClaudeCapabilityWithoutIsolation();
const errors = validateCapability(cap, 'claude');
assert.deepEqual(errors, [], `omitted isolation must validate clean, got: ${JSON.stringify(errors)}`);
});
for (const value of ['harness-worktree', 'orchestrator-worktree', 'none', 'undocumented']) {
test(`dispatch.isolation:"${value}" → ZERO validator errors`, () => {
const cap = shippedClaudeCapabilityWithoutIsolation();
cap.runtime.hostIntegration.dispatch.isolation = value;
const errors = validateCapability(cap, 'claude');
const isoErrors = errors.filter((e) => e.includes('dispatch.isolation'));
assert.strictEqual(isoErrors.length, 0,
`"${value}" must produce no validator errors; got: ${JSON.stringify(isoErrors)}`);
});
}
test('a present invalid dispatch.isolation value is rejected', () => {
const cap = shippedClaudeCapabilityWithoutIsolation();
cap.runtime.hostIntegration.dispatch.isolation = 'quantum-worktree';
const errors = validateCapability(cap, 'claude');
assert.ok(
errors.some((e) => e.includes('dispatch.isolation')),
`an invalid dispatch.isolation must produce a validator error; got: ${JSON.stringify(errors)}`,
);
});
test('a reserved-name dispatch.isolation value ("__proto__") is rejected', () => {
const cap = shippedClaudeCapabilityWithoutIsolation();
cap.runtime.hostIntegration.dispatch.isolation = '__proto__';
const errors = validateCapability(cap, 'claude');
assert.ok(
errors.some((e) => e.includes('dispatch.isolation') && e.includes('reserved name')),
`"__proto__" must produce a reserved-name validator error; got: ${JSON.stringify(errors)}`,
);
});
test('every shipped runtime descriptor with an isolation value passes validateCapability', () => {
const registry = require('../msd-core/bin/lib/capability-registry.cjs');
for (const [id, cap] of Object.entries(registry.runtimes)) {
const iso = cap && cap.runtime && cap.runtime.hostIntegration && cap.runtime.hostIntegration.dispatch
&& cap.runtime.hostIntegration.dispatch.isolation;
if (iso === undefined) continue;
const errors = validateCapability(cap, id);
const isoErrors = errors.filter((e) => e.includes('dispatch.isolation'));
assert.strictEqual(isoErrors.length, 0,
`${id}: shipped dispatch.isolation:"${iso}" must validate clean; got: ${JSON.stringify(isoErrors)}`);
}
});
});
// ---------------------------------------------------------------------------
// #2584 — ADR-1239 Codex-binding amendment, Phase 2: resolveOrchestratorExec
// + the `runtime.orchestratorExec` descriptor field (sibling of hostBehaviors).
// UNCONSUMED in Phase 2 — no scheduler calls this yet (Phase 3 wires it).
// ---------------------------------------------------------------------------
describe('resolveOrchestratorExec — the 4 shipped orchestrator-worktree descriptors', () => {
const CWD = '/repo/.claude/worktrees/agent-a1';
test('codex: exec --cd <cwd>', () => {
const result = resolveOrchestratorExec({ command: 'codex', args: ['exec'], cwdFlag: '--cd' }, CWD);
assert.equal(result.ok, true);
assert.equal(result.command, 'codex');
assert.deepEqual(result.args, ['exec', '--cd', CWD]);
assert.equal(result.cwd, CWD);
});
test('opencode: run --dir <cwd>', () => {
const result = resolveOrchestratorExec({ command: 'opencode', args: ['run'], cwdFlag: '--dir' }, CWD);
assert.equal(result.ok, true);
assert.equal(result.command, 'opencode');
assert.deepEqual(result.args, ['run', '--dir', CWD]);
assert.equal(result.cwd, CWD);
});
// #2627: `args` carries --print because kimi's working mode is otherwise the
// interactive TUI — an orchestrator spawning a TUI hangs forever rather than
// returning a completed plan.
test('kimi: --print --work-dir <cwd> (headless flag leads)', () => {
const result = resolveOrchestratorExec({ command: 'kimi', args: ['--print'], cwdFlag: '--work-dir' }, CWD);
assert.equal(result.ok, true);
assert.equal(result.command, 'kimi');
assert.deepEqual(result.args, ['--print', '--work-dir', CWD]);
assert.equal(result.cwd, CWD);
});
// #2627: the binary is `kimi`, NOT `kimi-code` — Moonshot's TypeScript Kimi
// Code installs its binary as `kimi`; `kimi-code` is only the npm package and
// config-home name, so spawning it is an immediate ENOENT.
test('kimi-code: command is "kimi"; cwdFlag:null appends NO flag, cwd still returned (process-cwd case)', () => {
const result = resolveOrchestratorExec({ command: 'kimi', args: [], cwdFlag: null }, CWD);
assert.equal(result.ok, true);
assert.equal(result.command, 'kimi');
assert.deepEqual(result.args, []);
assert.equal(result.cwd, CWD);
});
});
describe('resolveOrchestratorExec — prompt passing (#2627, Phase 3)', () => {
const CWD = '/repo/.claude/worktrees/agent-a1';
const PROMPT = 'Execute plan 2 of phase 3.';
test('promptFlag:null → prompt appended POSITIONALLY, last (codex shape)', () => {
const result = resolveOrchestratorExec(
{ command: 'codex', args: ['exec'], cwdFlag: '--cd', promptFlag: null }, CWD, PROMPT,
);
assert.equal(result.ok, true);
assert.deepEqual(result.args, ['exec', '--cd', CWD, PROMPT]);
});
test('promptFlag absent → prompt appended POSITIONALLY (opencode shape)', () => {
const result = resolveOrchestratorExec(
{ command: 'opencode', args: ['run'], cwdFlag: '--dir' }, CWD, PROMPT,
);
assert.equal(result.ok, true);
assert.deepEqual(result.args, ['run', '--dir', CWD, PROMPT]);
});
test('promptFlag string → [flag, prompt] appended (kimi shape)', () => {
const result = resolveOrchestratorExec(
{ command: 'kimi', args: ['--print'], cwdFlag: '--work-dir', promptFlag: '--prompt' }, CWD, PROMPT,
);
assert.equal(result.ok, true);
assert.deepEqual(result.args, ['--print', '--work-dir', CWD, '--prompt', PROMPT]);
});
test('promptFlag string + cwdFlag null → prompt flag only, cwd via process cwd (kimi-code shape)', () => {
const result = resolveOrchestratorExec(
{ command: 'kimi', args: [], cwdFlag: null, promptFlag: '--prompt' }, CWD, PROMPT,
);
assert.equal(result.ok, true);
assert.deepEqual(result.args, ['--prompt', PROMPT]);
assert.equal(result.cwd, CWD, 'cwd is returned even with no cwd flag — caller binds it on the subprocess');
});
test('omitting prompt is byte-identical to the Phase-2 two-arg resolution', () => {
const descriptor = { command: 'codex', args: ['exec'], cwdFlag: '--cd', promptFlag: null };
assert.deepEqual(
resolveOrchestratorExec(descriptor, CWD),
resolveOrchestratorExec(descriptor, CWD, undefined),
);
assert.deepEqual(resolveOrchestratorExec(descriptor, CWD).args, ['exec', '--cd', CWD]);
});
test('empty prompt → invalid_prompt (a prompt-less executor hangs, not degrades)', () => {
const result = resolveOrchestratorExec({ command: 'codex', args: ['exec'] }, CWD, '');
assert.equal(result.ok, false);
assert.equal(result.reason, 'invalid_prompt');
});
test('non-string promptFlag → invalid_prompt_flag', () => {
for (const bogus of [42, {}, []]) {
const result = resolveOrchestratorExec(
{ command: 'codex', args: ['exec'], promptFlag: bogus }, CWD, PROMPT,
);
assert.equal(result.ok, false, `promptFlag=${JSON.stringify(bogus)} must fail`);
assert.equal(result.reason, 'invalid_prompt_flag');
}
});
// Parity with worktree-safety.cts's `unsafe_leading_dash` guard on git args:
// a dash-leading positional is parsed by the spawned CLI as a flag, not a
// value. Same hazard, same rejection — these two surfaces must not diverge.
test('a dash-leading prompt is rejected (would be parsed as a flag, not a prompt)', () => {
for (const hostile of ['--dangerously-skip-permissions', '-p', '--help']) {
const result = resolveOrchestratorExec(
{ command: 'codex', args: ['exec'], cwdFlag: '--cd' }, CWD, hostile,
);
assert.equal(result.ok, false, `prompt=${hostile} must be rejected`);
assert.equal(result.reason, 'unsafe_leading_dash_prompt');
}
});
test('a dash-leading cwd is rejected', () => {
const result = resolveOrchestratorExec(
{ command: 'codex', args: ['exec'], cwdFlag: '--cd' }, '-oProxyCommand=x', 'ok prompt',
);
assert.equal(result.ok, false);
assert.equal(result.reason, 'unsafe_leading_dash_cwd');
});
test('a prompt merely CONTAINING a dash is fine — only a leading dash is a flag', () => {
const result = resolveOrchestratorExec(
{ command: 'codex', args: ['exec'], cwdFlag: '--cd' }, CWD, 'Execute plan 2 --verbose style',
);
assert.equal(result.ok, true);
assert.ok(result.args.includes('Execute plan 2 --verbose style'));
});
test('empty-string promptFlag falls back to positional rather than emitting a bare ""', () => {
const result = resolveOrchestratorExec(
{ command: 'codex', args: ['exec'], promptFlag: '' }, CWD, PROMPT,
);
assert.equal(result.ok, true);
assert.deepEqual(result.args, ['exec', PROMPT]);
});
});
describe('resolveOrchestratorExec — fail-closed', () => {
test('undefined descriptor → missing_command', () => {
const result = resolveOrchestratorExec(undefined, '/repo/wt');
assert.equal(result.ok, false);
assert.equal(result.reason, 'missing_command');
});
test('{} (no command) → missing_command', () => {
const result = resolveOrchestratorExec({}, '/repo/wt');
assert.equal(result.ok, false);
assert.equal(result.reason, 'missing_command');
});
test('command: "" (empty string) → missing_command', () => {
const result = resolveOrchestratorExec({ command: '' }, '/repo/wt');
assert.equal(result.ok, false);
assert.equal(result.reason, 'missing_command');
});
test('command: non-string → missing_command', () => {
for (const bogus of [42, null, {}, []]) {
const result = resolveOrchestratorExec({ command: bogus }, '/repo/wt');
assert.equal(result.ok, false, `command=${JSON.stringify(bogus)} must fail`);
assert.equal(result.reason, 'missing_command');
}
});
test('empty cwd → invalid_cwd', () => {
const result = resolveOrchestratorExec({ command: 'codex' }, '');
assert.equal(result.ok, false);
assert.equal(result.reason, 'invalid_cwd');
});
test('non-string cwd → invalid_cwd', () => {
for (const bogus of [undefined, null, 42, {}]) {
const result = resolveOrchestratorExec({ command: 'codex' }, bogus);
assert.equal(result.ok, false, `cwd=${JSON.stringify(bogus)} must fail`);
assert.equal(result.reason, 'invalid_cwd');
}
});
test('args not an array → invalid_args', () => {
const result = resolveOrchestratorExec({ command: 'codex', args: 'exec' }, '/repo/wt');
assert.equal(result.ok, false);
assert.equal(result.reason, 'invalid_args');
});
test('args array with a non-string element → invalid_args', () => {
const result = resolveOrchestratorExec({ command: 'codex', args: ['exec', 42] }, '/repo/wt');
assert.equal(result.ok, false);
assert.equal(result.reason, 'invalid_args');
});
test('cwdFlag a number → invalid_cwd_flag', () => {
const result = resolveOrchestratorExec({ command: 'codex', cwdFlag: 42 }, '/repo/wt');
assert.equal(result.ok, false);
assert.equal(result.reason, 'invalid_cwd_flag');
});
test('cwdFlag an object/array → invalid_cwd_flag', () => {
for (const bogus of [{}, []]) {
const result = resolveOrchestratorExec({ command: 'codex', cwdFlag: bogus }, '/repo/wt');
assert.equal(result.ok, false, `cwdFlag=${JSON.stringify(bogus)} must fail`);
assert.equal(result.reason, 'invalid_cwd_flag');
}
});
test('a reserved-name command string ("__proto__") still resolves at the resolver layer', () => {
// The resolver only checks "is it a non-empty string" — it never does a
// property lookup keyed by `command`, so there is no prototype-pollution
// surface here. The VALIDATOR (capability-validator.cjs) is what rejects
// "__proto__" at descriptor-load time — see the validator describe block below.
const result = resolveOrchestratorExec({ command: '__proto__' }, '/repo/wt');
assert.equal(result.ok, true);
assert.equal(result.command, '__proto__');
});
});
describe('resolveOrchestratorExec — fast-check property test', () => {
const commandArb = fc.string({ minLength: 1 }).filter((s) => s.length > 0);
const argsArb = fc.array(fc.string());
const cwdFlagArb = fc.oneof(
fc.constant(null),
fc.constant(undefined),
fc.string({ minLength: 1 }).filter((s) => s.length > 0),
);
// #2627: a dash-leading cwd is now REJECTED (unsafe_leading_dash_cwd) —
// the spawned CLI would parse it as a flag, the same hazard worktree-safety's
// git-argument guard rejects. That is intentional new fail-closed behavior,
// so the ok:true property below is stated over the domain it actually holds
// on: real working directories. The rejected half is asserted explicitly in
// its own property immediately after, so narrowing here loses no coverage.
const cwdArb = fc.string({ minLength: 1 }).filter((s) => s.length > 0 && !s.startsWith('-'));
test('property: ok:true, command preserved, cwdFlag appended exactly once (or never for null/absent)', () => {
fc.assert(
fc.property(commandArb, argsArb, cwdFlagArb, cwdArb, (command, args, cwdFlag, cwd) => {
// Guard against the astronomically-rare but non-zero case where the
// arbitrary `args` already happens to contain the exact `cwd` string —
// that would make "cwd appears exactly once, at the tail" a false
// assertion about pre-existing data rather than the resolver's own
// behavior. Deterministic given the seed; not a flakiness workaround.
fc.pre(!args.includes(cwd));
const descriptor = cwdFlag === undefined ? { command, args } : { command, args, cwdFlag };
const result = resolveOrchestratorExec(descriptor, cwd);
assert.equal(result.ok, true);
assert.equal(result.command, command);
assert.equal(result.cwd, cwd);
if (typeof cwdFlag === 'string' && cwdFlag.length > 0) {
assert.deepEqual(result.args.slice(-2), [cwdFlag, cwd]);
// exactly once: cwdFlag/cwd do not appear anywhere earlier in args
const earlier = result.args.slice(0, -2);
assert.ok(!earlier.includes(cwd), 'cwd must not appear before the trailing pair');
} else {
assert.ok(!result.args.includes(cwd), 'cwd must not appear in args when cwdFlag is null/absent');
}
}),
{ numRuns: 200, seed: 2584 },
);
});
// The complementary half of the narrowed domain above (#2627): every
// dash-leading cwd fails closed, for ANY descriptor shape.
test('property: a dash-leading cwd is always rejected, never silently passed through', () => {
fc.assert(
fc.property(
commandArb,
argsArb,
cwdFlagArb,
fc.string().map((s) => `-${s}`),
(command, args, cwdFlag, cwd) => {
const descriptor = cwdFlag === undefined ? { command, args } : { command, args, cwdFlag };
const result = resolveOrchestratorExec(descriptor, cwd);
assert.equal(result.ok, false);
assert.equal(result.reason, 'unsafe_leading_dash_cwd');
},
),
{ numRuns: 200, seed: 2627 },
);
});
// Same shape for the prompt argument, which the resolver appends to argv.
test('property: a dash-leading prompt is always rejected', () => {
fc.assert(
fc.property(
commandArb,
argsArb,
fc.string().map((s) => `-${s}`),
(command, args, prompt) => {
const result = resolveOrchestratorExec({ command, args }, '/repo/wt', prompt);
assert.equal(result.ok, false);
assert.equal(result.reason, 'unsafe_leading_dash_prompt');
},
),
{ numRuns: 200, seed: 2627 },
);
});
});
describe('#2584 orchestratorExec — parity / divergence guard', () => {
const CAPABILITIES_DIR = path.join(REPO_ROOT, 'capabilities');
function loadCapability(id) {
return JSON.parse(fs.readFileSync(path.join(CAPABILITIES_DIR, id, 'capability.json'), 'utf8'));
}
test('every capability whose dispatch.isolation is "orchestrator-worktree" declares a resolvable orchestratorExec', () => {
const capIds = fs.readdirSync(CAPABILITIES_DIR).filter((entry) => {
const capPath = path.join(CAPABILITIES_DIR, entry, 'capability.json');
return fs.existsSync(capPath);
});
const orchestratorWorktreeHosts = [];
for (const id of capIds) {
const cap = loadCapability(id);
const iso = cap && cap.runtime && cap.runtime.hostIntegration && cap.runtime.hostIntegration.dispatch
&& cap.runtime.hostIntegration.dispatch.isolation;
if (iso !== 'orchestrator-worktree') continue;
orchestratorWorktreeHosts.push(id);
const orchestratorExec = cap.runtime.orchestratorExec;
assert.ok(
orchestratorExec,
`${id}: dispatch.isolation:"orchestrator-worktree" but no runtime.orchestratorExec declared — ` +
`a future orchestrator-worktree host MUST declare orchestratorExec (Phase 3 has nothing to spawn otherwise)`,
);
const result = resolveOrchestratorExec(orchestratorExec, '/tmp/wt');
assert.equal(result.ok, true,
`${id}: runtime.orchestratorExec must resolve cleanly; got reason="${result.ok ? '' : result.reason}"`);
}
// Sanity: the sweep actually found the 4 known hosts (guards a broken sweep
// silently matching zero capabilities and passing vacuously).
assert.deepEqual(orchestratorWorktreeHosts.sort(), ['codex', 'kimi', 'kimi-code', 'opencode']);
});
// #2627: the two guards below encode the per-host research that found two
// shipped descriptors which would have failed at spawn time — kimi resolving
// to an interactive TUI (orchestrator hangs) and kimi-code naming a binary
// that does not exist (ENOENT).
test('every orchestrator-worktree descriptor resolves to a HEADLESS invocation, never an interactive TUI', () => {
// A host that binds cwd by flag alone, with no leading subcommand or
// headless flag, launches its interactive UI. Each host must contribute at
// least one non-cwd token (a subcommand like `exec`/`run`, or an explicit
// headless flag like `--print`) BEFORE the cwd flag — or bind by process
// cwd only, which implies a prompt flag carries the instruction.
const expected = {
codex: ['exec'],
opencode: ['run'],
kimi: ['--print'],
'kimi-code': [],
};
for (const [id, leadingArgs] of Object.entries(expected)) {
const cap = loadCapability(id);
const oe = cap.runtime.orchestratorExec;
assert.deepEqual(oe.args, leadingArgs,
`${id}: orchestratorExec.args must be ${JSON.stringify(leadingArgs)} — an empty/verb-less argv for a ` +
`flag-bound host launches the interactive TUI and the orchestrator waits on it forever`);
const resolved = resolveOrchestratorExec(oe, '/tmp/wt', 'do the thing');
assert.equal(resolved.ok, true, `${id}: must resolve with a prompt`);
assert.ok(resolved.args.includes('do the thing'),
`${id}: the executor prompt must reach the argv, else the spawned process has no instruction`);
}
});
test('kimi and kimi-code both spawn the "kimi" binary — kimi-code is a package name, not a binary', () => {
// Moonshot ships both agents as a binary named `kimi`; `kimi-code` is the
// npm package / config-home name only. Declaring command:"kimi-code" is an
// immediate ENOENT at spawn.
for (const id of ['kimi', 'kimi-code']) {
assert.equal(loadCapability(id).runtime.orchestratorExec.command, 'kimi',
`${id}: orchestratorExec.command must be the real binary name "kimi"`);
}
});
test('every capability whose dispatch.isolation is "harness-worktree" declares a non-empty harnessIsolationFlag', () => {
const capIds = fs.readdirSync(CAPABILITIES_DIR).filter((entry) => (
fs.existsSync(path.join(CAPABILITIES_DIR, entry, 'capability.json'))
));
const harnessHosts = [];
for (const id of capIds) {
const cap = loadCapability(id);
const iso = cap?.runtime?.hostIntegration?.dispatch?.isolation;
if (iso !== 'harness-worktree') continue;
harnessHosts.push(id);
const flag = cap.runtime.harnessIsolationFlag;
assert.ok(
typeof flag === 'string' && flag.length > 0,
`${id}: dispatch.isolation:"harness-worktree" but no runtime.harnessIsolationFlag — the scheduler ` +
`would have nothing to pass and would dispatch UNISOLATED executors believing they are isolated`,
);
}
assert.deepEqual(harnessHosts.sort(), ['claude', 'cursor']);
});
test('no capability declares BOTH isolation mechanisms (they are mutually exclusive models)', () => {
const capIds = fs.readdirSync(CAPABILITIES_DIR).filter((entry) => (
fs.existsSync(path.join(CAPABILITIES_DIR, entry, 'capability.json'))
));
for (const id of capIds) {
const cap = loadCapability(id);
const hasHarness = typeof cap?.runtime?.harnessIsolationFlag === 'string';
const hasOrchestrator = cap?.runtime?.orchestratorExec !== undefined;
assert.ok(!(hasHarness && hasOrchestrator),
`${id}: declares both harnessIsolationFlag and orchestratorExec — a host has exactly one fan-out model`);
}
});
});
describe('#2584 orchestratorExec — validator', () => {
function shippedCodexCapabilityWithoutOrchestratorExec() {
const cap = JSON.parse(
fs.readFileSync(path.join(REPO_ROOT, 'capabilities', 'codex', 'capability.json'), 'utf8'),
);
delete cap.runtime.orchestratorExec;
return cap;
}
test('a descriptor that omits orchestratorExec entirely still validates clean (optional field)', () => {
const cap = shippedCodexCapabilityWithoutOrchestratorExec();
const errors = validateCapability(cap, 'codex');
assert.deepEqual(errors, [], `omitted orchestratorExec must validate clean, got: ${JSON.stringify(errors)}`);
});
test('a well-formed orchestratorExec passes with zero orchestratorExec errors', () => {
const cap = shippedCodexCapabilityWithoutOrchestratorExec();
cap.runtime.orchestratorExec = { command: 'codex', args: ['exec'], cwdFlag: '--cd' };
const errors = validateCapability(cap, 'codex');
const oeErrors = errors.filter((e) => e.includes('orchestratorExec'));
assert.deepEqual(oeErrors, []);
});
test('orchestratorExec: not an object (array/null/string) → rejected', () => {
const cap = shippedCodexCapabilityWithoutOrchestratorExec();
for (const bogus of [[], null, 'codex', 42]) {
cap.runtime.orchestratorExec = bogus;
const errors = validateCapability(cap, 'codex');
assert.ok(
errors.some((e) => e.includes('runtime.orchestratorExec must be an object')),
`orchestratorExec=${JSON.stringify(bogus)} must be rejected; got: ${JSON.stringify(errors)}`,
);
}
});
test('command missing → rejected', () => {
const cap = shippedCodexCapabilityWithoutOrchestratorExec();
cap.runtime.orchestratorExec = { args: [], cwdFlag: null };
const errors = validateCapability(cap, 'codex');
assert.ok(errors.some((e) => e.includes('runtime.orchestratorExec.command')));
});
test('command: "" (empty string) → rejected', () => {
const cap = shippedCodexCapabilityWithoutOrchestratorExec();
cap.runtime.orchestratorExec = { command: '' };
const errors = validateCapability(cap, 'codex');
assert.ok(errors.some((e) => e.includes('runtime.orchestratorExec.command')));
});
test('command: "__proto__" (reserved name) → rejected', () => {
const cap = shippedCodexCapabilityWithoutOrchestratorExec();
cap.runtime.orchestratorExec = { command: '__proto__' };
const errors = validateCapability(cap, 'codex');
assert.ok(
errors.some((e) => e.includes('runtime.orchestratorExec.command') && e.includes('reserved name')),
`"__proto__" must produce a reserved-name validator error; got: ${JSON.stringify(errors)}`,
);
});
test('args: non-array → rejected', () => {
const cap = shippedCodexCapabilityWithoutOrchestratorExec();
cap.runtime.orchestratorExec = { command: 'codex', args: 'exec' };
const errors = validateCapability(cap, 'codex');
assert.ok(errors.some((e) => e.includes('runtime.orchestratorExec.args')));
});
test('args: array with a non-string element → rejected', () => {
const cap = shippedCodexCapabilityWithoutOrchestratorExec();
cap.runtime.orchestratorExec = { command: 'codex', args: ['exec', 42] };
const errors = validateCapability(cap, 'codex');
assert.ok(errors.some((e) => e.includes('runtime.orchestratorExec.args')));
});
test('cwdFlag: a number → rejected', () => {
const cap = shippedCodexCapabilityWithoutOrchestratorExec();
cap.runtime.orchestratorExec = { command: 'codex', cwdFlag: 42 };
const errors = validateCapability(cap, 'codex');
assert.ok(errors.some((e) => e.includes('runtime.orchestratorExec.cwdFlag')));
});
test('cwdFlag: null is valid (no error)', () => {
const cap = shippedCodexCapabilityWithoutOrchestratorExec();
cap.runtime.orchestratorExec = { command: 'kimi-code', args: [], cwdFlag: null };
const errors = validateCapability(cap, 'codex');
const oeErrors = errors.filter((e) => e.includes('orchestratorExec'));
assert.deepEqual(oeErrors, []);
});
test('full descriptor sweep: every shipped capability.json still validates clean after the orchestratorExec addition', () => {
const CAPABILITIES_DIR = path.join(REPO_ROOT, 'capabilities');
const capIds = fs.readdirSync(CAPABILITIES_DIR).filter((entry) => {
const capPath = path.join(CAPABILITIES_DIR, entry, 'capability.json');
return fs.existsSync(capPath);
});
for (const id of capIds) {
const cap = JSON.parse(fs.readFileSync(path.join(CAPABILITIES_DIR, id, 'capability.json'), 'utf8'));
if (cap.role !== 'runtime') continue;
const errors = validateCapability(cap, id);
assert.deepEqual(errors, [], `${id}: capability.json must still validate clean; got: ${JSON.stringify(errors)}`);
}
});
});
// ---------------------------------------------------------------------------
// #3714 — codex-worktree model pin.
//
// `resolveOrchestratorExec` currently takes NO `model` argument at all, so
// codex's argv never carries `--model` regardless of any configured
// model_overrides. THESE TESTS ARE FAILING-FIRST against today's code — do
// not "fix" resolveOrchestratorExec or msd-tools.cjs to make them pass here;
// that is a separate change. See issue #3714.
//
// THE FIX THIS PINS (not yet implemented):
// 1. Descriptor gains an optional `modelFlag` (string|null). codex ->
// "--model"; every other shipped runtime leaves it absent/null.
// 2. resolveOrchestratorExec(orchestratorExec, cwd, prompt, model) gains an
// optional 4th positional `model`, appending [modelFlag, model] ONLY
// when modelFlag is a non-empty string AND model is a non-empty string.
// Argv order: baseArgs -> modelFlag,model -> cwdFlag,cwd -> prompt. The
// prompt remains the final positional token. Fails closed with
// 'unsafe_leading_dash_model' exactly like the existing
// unsafe_leading_dash_prompt / unsafe_leading_dash_cwd guards.
// 3. Policy (which model, if any, to pass) lives at the CALLER
// (bin/msd-tools.cjs), via:
// resolveAgentModelOverride('msd-executor', readMsdEffectiveModelOverrides(cwd), null)
// then dropping the 'inherit' sentinel. Passing null as the runtime
// resolver is what makes "no tier routing" structural (ADR-2313) — the
// seam itself decides no policy.
// ---------------------------------------------------------------------------
describe('#3714 resolveOrchestratorExec — modelFlag/model seam (mechanical, RED pre-fix)', () => {
const CWD = '/repo/.claude/worktrees/agent-a1';
const PROMPT = 'Execute plan 2 of phase 3.';
const CODEX_MODEL_DESCRIPTOR = { command: 'codex', args: ['exec'], cwdFlag: '--cd', modelFlag: '--model' };
const EXPECTED_ARGS_WITH_MODEL = ['exec', '--model', 'gpt-5.6-terra', '--cd', CWD, PROMPT];
const EXPECTED_ARGS_NO_MODEL = ['exec', '--cd', CWD, PROMPT];
// MATRIX row 1 [FAIL]: explicit pin -> full argv identity, not includes().
// Today's resolver ignores the 4th `model` argument entirely, so this
// produces ["exec","--cd",CWD,PROMPT] — no "--model" anywhere — and the
// deepEqual below is RED.
test('row 1: explicit model pin -> full argv is [baseArgs..., --model, <model>, cwdFlag, cwd, prompt]', () => {
const result = resolveOrchestratorExec(CODEX_MODEL_DESCRIPTOR, CWD, PROMPT, 'gpt-5.6-terra');
assert.equal(result.ok, true);
assert.deepEqual(result.args, EXPECTED_ARGS_WITH_MODEL,
'today\'s resolver has no model parameter — it silently drops "gpt-5.6-terra" and emits no --model at all');
});
// MATRIX row 6 [FAIL]: prompt is still the LAST element of args once a
// model is emitted. Pinned via the same full-array identity check as row 1
// (a narrower args[len-1]===prompt check alone would pass today by
// coincidence, since nothing is ever inserted after the prompt either way).
test('row 6: when a model IS emitted, the prompt remains the LAST element of args', () => {
const result = resolveOrchestratorExec(CODEX_MODEL_DESCRIPTOR, CWD, PROMPT, 'gpt-5.6-terra');
assert.equal(result.ok, true);
assert.deepEqual(result.args, EXPECTED_ARGS_WITH_MODEL);
assert.equal(result.args[result.args.length - 1], PROMPT);
});
// Boundary: modelFlag absent / null / "" -> no --model ever appears,
// regardless of a valid model value. All three CONTROL (pass today, by
// coincidence of today's total absence of model support — but this is also
// the documented post-fix contract, so these stay green after the fix).
test('modelFlag absent, model provided -> no --model on the wire', () => {
const result = resolveOrchestratorExec({ command: 'codex', args: ['exec'], cwdFlag: '--cd' }, CWD, PROMPT, 'gpt-5.6-terra');
assert.equal(result.ok, true);
assert.deepEqual(result.args, EXPECTED_ARGS_NO_MODEL);
});
test('modelFlag null, model provided -> no --model on the wire', () => {
const result = resolveOrchestratorExec(
{ command: 'codex', args: ['exec'], cwdFlag: '--cd', modelFlag: null }, CWD, PROMPT, 'gpt-5.6-terra',
);
assert.equal(result.ok, true);
assert.deepEqual(result.args, EXPECTED_ARGS_NO_MODEL);
});
test('modelFlag "" (empty string), model provided -> no --model on the wire', () => {
const result = resolveOrchestratorExec(
{ command: 'codex', args: ['exec'], cwdFlag: '--cd', modelFlag: '' }, CWD, PROMPT, 'gpt-5.6-terra',
);
assert.equal(result.ok, true);
assert.deepEqual(result.args, EXPECTED_ARGS_NO_MODEL);
});
// Boundary: model absent / null / "" -> no --model ever appears, regardless
// of a valid modelFlag. All three CONTROL.
test('modelFlag present, model absent -> no --model on the wire', () => {
const result = resolveOrchestratorExec(CODEX_MODEL_DESCRIPTOR, CWD, PROMPT);
assert.equal(result.ok, true);
assert.deepEqual(result.args, EXPECTED_ARGS_NO_MODEL);
});
test('modelFlag present, model null -> no --model on the wire', () => {
const result = resolveOrchestratorExec(CODEX_MODEL_DESCRIPTOR, CWD, PROMPT, null);
assert.equal(result.ok, true);
assert.deepEqual(result.args, EXPECTED_ARGS_NO_MODEL);
});
test('modelFlag present, model "" (empty string) -> no --model on the wire', () => {
const result = resolveOrchestratorExec(CODEX_MODEL_DESCRIPTOR, CWD, PROMPT, '');
assert.equal(result.ok, true);
assert.deepEqual(result.args, EXPECTED_ARGS_NO_MODEL);
});
// New fail-closed guard, mirroring unsafe_leading_dash_prompt/_cwd. RED
// today: the resolver has no model-validation branch at all, so a
// dash-leading model is simply ignored (ok:true) rather than rejected.
test('a dash-leading model is rejected: unsafe_leading_dash_model', () => {
for (const hostile of ['--dangerously-skip-permissions', '-p', '--help']) {
const result = resolveOrchestratorExec(CODEX_MODEL_DESCRIPTOR, CWD, PROMPT, hostile);
assert.equal(result.ok, false, `model=${hostile} must be rejected`);
assert.equal(result.reason, 'unsafe_leading_dash_model');
}
});
test('a model merely CONTAINING a dash is fine — only a leading dash is a flag', () => {
const result = resolveOrchestratorExec(CODEX_MODEL_DESCRIPTOR, CWD, PROMPT, 'gpt-5.6-terra');
assert.equal(result.ok, true);
assert.ok(result.args.includes('gpt-5.6-terra'));
});
// Every existing fail-closed guard must still fire, unaffected by a valid
// model argument riding alongside. CONTROL — these guards run before any
// model logic regardless of whether the model param exists yet.
test('existing fail-closed guards still fire with a model present', () => {
assert.equal(resolveOrchestratorExec(undefined, CWD, PROMPT, 'm').reason, 'missing_command');
assert.equal(resolveOrchestratorExec({}, CWD, PROMPT, 'm').reason, 'missing_command');
assert.equal(resolveOrchestratorExec({ command: 'codex' }, '', PROMPT, 'm').reason, 'invalid_cwd');
assert.equal(resolveOrchestratorExec({ command: 'codex', args: 'exec' }, CWD, PROMPT, 'm').reason, 'invalid_args');
assert.equal(resolveOrchestratorExec({ command: 'codex' }, CWD, '', 'm').reason, 'invalid_prompt');
assert.equal(
resolveOrchestratorExec({ command: 'codex', cwdFlag: '--cd' }, '-oProxyCommand=x', PROMPT, 'm').reason,
'unsafe_leading_dash_cwd',
);
assert.equal(
resolveOrchestratorExec({ command: 'codex', cwdFlag: '--cd' }, CWD, '-p', 'm').reason,
'unsafe_leading_dash_prompt',
);
});
// ITEM 3: `invalid_model` is live for any non-string, non-null, non-undefined
// `model` argument — a caller error (number/bool/array/object), distinct
// from the benign "use the host default" degradation that null/undefined/''
// already exercise. Previously zero test references (Stryker-visible gap).
test('ITEM 3: a non-string model (number, boolean, array, object) -> {ok:false, reason:"invalid_model"}', () => {
for (const bogus of [7, true, [], {}]) {
const result = resolveOrchestratorExec({ command: 'codex', modelFlag: '--model' }, CWD, PROMPT, bogus);
assert.deepEqual(result, { ok: false, reason: 'invalid_model' },
`model=${JSON.stringify(bogus)} must take the invalid_model branch`);
}
});
// ITEM 3 CONTROL: null/undefined/'' must NOT take the invalid_model branch —
// they degrade to "omit the flag" and the resolution still succeeds.
test('ITEM 3 CONTROL: null/undefined/\'\' do NOT take invalid_model — they omit the flag and succeed', () => {
for (const benign of [null, undefined, '']) {
const result = resolveOrchestratorExec({ command: 'codex', modelFlag: '--model' }, CWD, PROMPT, benign);
assert.equal(result.ok, true, `model=${JSON.stringify(benign)} must resolve ok:true`);
assert.ok(!result.args.includes('--model'), `model=${JSON.stringify(benign)} must omit the --model flag`);
}
});
// MATRIX row 7 [CONTROL]: a host with no modelFlag is byte-identical to
// today whether or not a model is passed — kimi-code/opencode never get a
// 5th positional token nor a flag pair injected.
test('row 7 CONTROL: a host descriptor with NO modelFlag key resolves identically whether or not a model is passed', () => {
const descriptor = { command: 'kimi', args: ['--print'], cwdFlag: '--work-dir', promptFlag: '--prompt' };
const withoutModelArg = resolveOrchestratorExec(descriptor, CWD, PROMPT);
const withModelArg = resolveOrchestratorExec(descriptor, CWD, PROMPT, 'some-model');
assert.deepEqual(withModelArg, withoutModelArg,
'a descriptor with no modelFlag must resolve identically whether or not a model is passed');
assert.deepEqual(withoutModelArg.args, ['--print', '--work-dir', CWD, '--prompt', PROMPT]);
});
test('property: for any descriptor and any model input, when a prompt is supplied it is always args[args.length-1] (seed=3714)', () => {
const commandArb = fc.string({ minLength: 1 }).filter((s) => s.length > 0);
const argsArb = fc.array(fc.string());
const cwdArb = fc.string({ minLength: 1 }).filter((s) => s.length > 0 && !s.startsWith('-'));
const flagArb = fc.oneof(
fc.constant(undefined), fc.constant(null), fc.constant(''),
fc.string({ minLength: 1 }).filter((s) => s.length > 0 && !s.startsWith('-')),
);
const modelArb = fc.oneof(
fc.constant(undefined), fc.constant(null), fc.constant(''),
fc.string({ minLength: 1 }).filter((s) => s.length > 0 && !s.startsWith('-')),
);
const promptArb = fc.string({ minLength: 1 }).filter((s) => s.length > 0 && !s.startsWith('-'));
fc.assert(
fc.property(commandArb, argsArb, cwdArb, flagArb, modelArb, promptArb,
(command, args, cwd, modelFlag, model, prompt) => {
fc.pre(!args.includes(cwd) && !args.includes(prompt));
const descriptor = modelFlag === undefined ? { command, args } : { command, args, modelFlag };
const result = resolveOrchestratorExec(descriptor, cwd, prompt, model);
assert.equal(result.ok, true);
assert.equal(result.args[result.args.length - 1], prompt);
}),
{ numRuns: 200, seed: 3714 },
);
});
});
// ---------------------------------------------------------------------------
// #3714 — end-to-end policy: the caller (bin/msd-tools.cjs) decides WHETHER
// to pass a model at all, via
// resolveAgentModelOverride('msd-executor', readMsdEffectiveModelOverrides(cwd), null)
// then dropping the 'inherit' sentinel. Every row below is a MEASURED FACT
// (verified by direct execution against this repo's current code) about what
// that function returns for a given .planning/config.json shape — these
// describe the POLICY the fix must implement, not a currently-wired
// behavior: `query dispatch-isolation` never emits --model today for ANY
// config shape, so only the "explicit pin" rows are RED; the rest coincide
// with today's (absent) behavior and are CONTROLS.
// ---------------------------------------------------------------------------
describe('#3714 dispatch-isolation CLI — model policy end-to-end (RED pre-fix on explicit-pin rows)', () => {
const { runNode } = require('./helpers/process-seam.cjs');
const { throwIfFailed } = require('./helpers/git-fixture.cjs');
const { PROBE_TIMEOUT_MS } = require('./helpers/timeouts.cjs');
const { createTempProject, cleanup, TEST_HOME_SANDBOX_MARKER } = require('./helpers.cjs');
const os = require('node:os');
const MSD_TOOLS = path.join(REPO_ROOT, 'msd-core', 'bin', 'msd-tools.cjs');
function writeConfig(projectDir, config) {
fs.writeFileSync(
path.join(projectDir, '.planning', 'config.json'),
JSON.stringify(config),
);
}
// Hermeticity: `queryCodexJson` used to inherit the DEVELOPER's real
// HOME/USERPROFILE with no override, so any row that writes no
// `model_overrides` key at all was silently reading (and could red
// against) the operator's own ~/.msd/defaults.json — exactly the surface
// the BLOCKER regression test below needs to control precisely. Every
// call now gets a fresh, per-call temp HOME (removed synchronously after
// the CLI returns, since the call is a blocking spawn). USERPROFILE is
// set alongside HOME because os.homedir() reads USERPROFILE on Windows;
// omitting it would make the isolation vacuous there. The sandbox marker
// satisfies the same passwd-less-host fallback installSpawnEnv documents.
// `beforeSpawn`, when provided, is called with the sandbox HOME dir path
// BEFORE the CLI spawns — the seam a caller needs to seed a GLOBAL
// ~/.msd/defaults.json (see writeGlobalDefaults below) for a
// global-only-pin row.
function queryCodexJson(projectDir, extraEnv = {}, beforeSpawn = null) {
const sandboxHomeDir = fs.mkdtempSync(path.join(os.tmpdir(), 'msd-3714-home-'));
try {
if (typeof beforeSpawn === 'function') beforeSpawn(sandboxHomeDir);
const r = runNode(
[MSD_TOOLS, 'query', 'dispatch-isolation', '--json', '--cwd-target', '/tmp/wt', '--prompt', 'do the thing'],
{
cwd: projectDir,
env: {
...process.env,
MSD_RUNTIME: 'codex',
HOME: sandboxHomeDir,
USERPROFILE: sandboxHomeDir,
[TEST_HOME_SANDBOX_MARKER]: sandboxHomeDir,
...extraEnv,
},
timeoutMs: PROBE_TIMEOUT_MS,
},
);
throwIfFailed(r, 'msd-tools query dispatch-isolation --json (codex, model policy)');
return { json: JSON.parse(r.stdout), stderr: r.stderr };
} finally {
cleanup(sandboxHomeDir);
}
}
// Writes ~/.msd/defaults.json (the GLOBAL model_overrides store) into the
// per-call sandbox HOME so a test can exercise "global-only pin, no
// per-project override" — the exact shape the BLOCKER describes.
function writeGlobalDefaults(homeDir, defaults) {
const msdDir = path.join(homeDir, '.msd');
fs.mkdirSync(msdDir, { recursive: true });
fs.writeFileSync(path.join(msdDir, 'defaults.json'), JSON.stringify(defaults));
}
function hasModelFlag(execArgs) {
return execArgs.includes('--model');
}
// MATRIX row 1: an explicit real-Codex msd-executor override reaches argv
// as --model.
test('row 1: explicit model_overrides["msd-executor"] -> exec.args contains ["--model","gpt-5.6-terra"] at the correct position', () => {
const dir = createTempProject('msd-3714-row1-');
try {
writeConfig(dir, { model_overrides: { 'msd-executor': 'gpt-5.6-terra' } });
const { json: result } = queryCodexJson(dir);
assert.equal(result.isolation, 'orchestrator-worktree');
assert.deepEqual(result.exec.args, ['exec', '--model', 'gpt-5.6-terra', '--cd', '/tmp/wt', 'do the thing']);
} finally {
cleanup(dir);
}
});
// MATRIX row 2 [CONTROL]: no override configured -> no --model, and in
// particular the resolve-model tier value ("sonnet") must NEVER leak onto
// codex's argv (that is the #2310/#2311 400 ADR-2313 exists to prevent).
test('row 2 CONTROL: no override -> exec.args contains NO --model and no "sonnet" anywhere', () => {
const dir = createTempProject('msd-3714-row2-');
try {
writeConfig(dir, {});
const { json: result } = queryCodexJson(dir);
assert.equal(result.isolation, 'orchestrator-worktree');
assert.deepEqual(result.exec.args, ['exec', '--cd', '/tmp/wt', 'do the thing']);
assert.ok(!hasModelFlag(result.exec.args));
assert.ok(!result.exec.args.join(' ').includes('sonnet'));
} finally {
cleanup(dir);
}
});
// MATRIX row 3 [CONTROL]: the 'inherit' sentinel must never reach argv.
test('row 3 CONTROL: model_overrides["msd-executor"] === "inherit" -> no --model (sentinel never on the wire)', () => {
const dir = createTempProject('msd-3714-row3-');
try {
writeConfig(dir, { model_overrides: { 'msd-executor': 'inherit' } });
const { json: result } = queryCodexJson(dir);
assert.deepEqual(result.exec.args, ['exec', '--cd', '/tmp/wt', 'do the thing']);
assert.ok(!hasModelFlag(result.exec.args));
assert.ok(!result.exec.args.join(' ').includes('inherit'));
} finally {
cleanup(dir);
}
});
// MATRIX row 4 [CONTROL]: an empty-string override resolves to null, same as no override.
test('row 4 CONTROL: model_overrides["msd-executor"] === "" -> no --model', () => {
const dir = createTempProject('msd-3714-row4-');
try {
writeConfig(dir, { model_overrides: { 'msd-executor': '' } });
const { json: result } = queryCodexJson(dir);
assert.deepEqual(result.exec.args, ['exec', '--cd', '/tmp/wt', 'do the thing']);
assert.ok(!hasModelFlag(result.exec.args));
} finally {
cleanup(dir);
}
});
// MATRIX row 5 [CONTROL]: a model_profile alone (no per-agent override) must
// NOT route through the tier table onto codex's argv — ADR-2313 forbids
// tier routing to codex entirely; passing `null` as the runtimeResolver
// (per the fix design) is what makes this structural rather than incidental.
test('row 5 CONTROL: model_profile:"balanced" only (no per-agent override) -> no --model (tier routing forbidden, ADR-2313)', () => {
const dir = createTempProject('msd-3714-row5-');
try {
writeConfig(dir, { runtime: 'codex', model_profile: 'balanced' });
const { json: result } = queryCodexJson(dir);
assert.deepEqual(result.exec.args, ['exec', '--cd', '/tmp/wt', 'do the thing']);
assert.ok(!hasModelFlag(result.exec.args));
assert.ok(!result.exec.args.join(' ').includes('sonnet'));
} finally {
cleanup(dir);
}
});
// BLOCKER regression test: a GLOBAL (~/.msd/defaults.json) Anthropic-flavored
// pin must NOT reach codex's argv, and must produce a stderr warning. Before
// this fix, presence-only gating let this straight through to
// `codex exec --model sonnet` — the documented #2310/#2311 400.
test('BLOCKER: global-only model_overrides["msd-executor"]="sonnet" -> NO --model, and a stderr warning', () => {
const dir = createTempProject('msd-3714-blocker-global-anthropic-');
try {
writeConfig(dir, {});
const { json: result, stderr } = queryCodexJson(dir, {}, (homeDir) => {
writeGlobalDefaults(homeDir, { model_overrides: { 'msd-executor': 'sonnet' } });
});
assert.deepEqual(result.exec.args, ['exec', '--cd', '/tmp/wt', 'do the thing']);
assert.ok(!hasModelFlag(result.exec.args));
assert.ok(!result.exec.args.join(' ').includes('sonnet'));
assert.match(stderr, /msd-executor.*sonnet.*Anthropic/i);
} finally {
cleanup(dir);
}
});
test('global-only model_overrides["msd-executor"]="gpt-5.6-terra" (real Codex pin) -> IS emitted', () => {
const dir = createTempProject('msd-3714-global-real-');
try {
writeConfig(dir, {});
const { json: result, stderr } = queryCodexJson(dir, {}, (homeDir) => {
writeGlobalDefaults(homeDir, { model_overrides: { 'msd-executor': 'gpt-5.6-terra' } });
});
assert.deepEqual(result.exec.args, ['exec', '--model', 'gpt-5.6-terra', '--cd', '/tmp/wt', 'do the thing']);
assert.equal(stderr, '');
} finally {
cleanup(dir);
}
});
test('whitespace-only override " " -> no --model, no warning', () => {
const dir = createTempProject('msd-3714-ws-');
try {
writeConfig(dir, { model_overrides: { 'msd-executor': ' ' } });
const { json: result, stderr } = queryCodexJson(dir);
assert.deepEqual(result.exec.args, ['exec', '--cd', '/tmp/wt', 'do the thing']);
assert.equal(stderr, '');
} finally {
cleanup(dir);
}
});
test('"Inherit" and " inherit " (case/whitespace-insensitive sentinel) -> no --model', () => {
for (const value of ['Inherit', ' inherit ']) {
const dir = createTempProject('msd-3714-inherit-ci-');
try {
writeConfig(dir, { model_overrides: { 'msd-executor': value } });
const { json: result, stderr } = queryCodexJson(dir);
assert.deepEqual(result.exec.args, ['exec', '--cd', '/tmp/wt', 'do the thing'], `value=${JSON.stringify(value)}`);
assert.equal(stderr, '');
} finally {
cleanup(dir);
}
}
});
test('injection-shaped override values -> no --model, and a stderr warning', () => {
const injectionValues = [
'gpt-5 -c approval_policy=never',
'gpt-5$(touch /tmp/x)',
'gpt-5; touch /tmp/x',
'gpt-5\nHOST_INJECTED',
'gpt-5HOST_INJECTED',
];
for (const value of injectionValues) {
const dir = createTempProject('msd-3714-injection-');
try {
writeConfig(dir, { model_overrides: { 'msd-executor': value } });
const { json: result, stderr } = queryCodexJson(dir);
assert.deepEqual(result.exec.args, ['exec', '--cd', '/tmp/wt', 'do the thing'],
`value=${JSON.stringify(value)} must never reach argv`);
assert.ok(!hasModelFlag(result.exec.args));
assert.match(stderr, /msd-executor/, `value=${JSON.stringify(value)} must warn`);
} finally {
cleanup(dir);
}
}
});
test('legitimate real-Codex ids survive: "gpt-5.6-terra" and "synthetic/hf:zai-org/GLM-5.2"', () => {
for (const value of ['gpt-5.6-terra', 'synthetic/hf:zai-org/GLM-5.2']) {
const dir = createTempProject('msd-3714-legit-');
try {
writeConfig(dir, { model_overrides: { 'msd-executor': value } });
const { json: result, stderr } = queryCodexJson(dir);
assert.deepEqual(result.exec.args, ['exec', '--model', value, '--cd', '/tmp/wt', 'do the thing']);
assert.equal(stderr, '');
} finally {
cleanup(dir);
}
}
});
// ITEM 1 follow-up: MODEL_ID_CHARSET_RE previously excluded '@', so a real
// Vertex model-version pin ("text-bison@002") was dropped as if it were an
// injection-shaped value. '@' is now permitted. The leading-dash row is
// kept adjacent so the anchor LEADING_DASH_RE still enforces is visibly
// still live even after widening the charset.
test('ITEM 1: "text-bison@002" (Vertex model-version pin) survives — "@" is a legitimate model-id character', () => {
const dir = createTempProject('msd-3714-vertex-at-');
try {
writeConfig(dir, { model_overrides: { 'msd-executor': 'text-bison@002' } });
const { json: result, stderr } = queryCodexJson(dir);
assert.deepEqual(result.exec.args, ['exec', '--model', 'text-bison@002', '--cd', '/tmp/wt', 'do the thing']);
assert.equal(stderr, '');
} finally {
cleanup(dir);
}
});
test('ITEM 1 anchor control: a leading dash still drops even though "@" is now permitted ("-@bad" -> no --model, a warning)', () => {
const dir = createTempProject('msd-3714-vertex-at-leading-dash-');
try {
writeConfig(dir, { model_overrides: { 'msd-executor': '-@bad' } });
const { json: result, stderr } = queryCodexJson(dir);
assert.deepEqual(result.exec.args, ['exec', '--cd', '/tmp/wt', 'do the thing']);
assert.ok(!hasModelFlag(result.exec.args));
assert.match(stderr, /msd-executor/);
} finally {
cleanup(dir);
}
});
// MATRIX row 8: the dispatch predicate (what msd-tools.cjs's caller decides
// to pass) must agree, on every config shape below, with what the shared
// resolveAgentModelOverride('msd-executor', overrides, null) function
// returns (dropping only the 'inherit' sentinel). This row is a resolver
// TAUTOLOGY — it agrees with the presence-only predicate and does not
// exercise the VALUE policy (Anthropic-flavored / charset) at all. It is
// kept as a presence-level regression guard; the real divergence guard is
// the CROSS-SURFACE PARITY test below.
test('row 8: dispatch predicate agrees with resolveAgentModelOverride(..., null) on every config shape', () => {
const installModelOverrideResolver = require('../msd-core/bin/lib/install-model-override-resolver.cjs');
const shapes = [
{ name: 'explicit pin', config: { model_overrides: { 'msd-executor': 'gpt-5.6-terra' } } },
{ name: 'no override', config: {} },
{ name: 'override "inherit"', config: { model_overrides: { 'msd-executor': 'inherit' } } },
{ name: 'override ""', config: { model_overrides: { 'msd-executor': '' } } },
{ name: 'model_profile only', config: { runtime: 'codex', model_profile: 'balanced' } },
];
for (const shape of shapes) {
const dir = createTempProject('msd-3714-row8-');
try {
writeConfig(dir, shape.config);
// The predicate the fix's caller must implement: explicit override,
// no runtime-tier resolver (null), with 'inherit' dropped.
const overrides = installModelOverrideResolver.readMsdEffectiveModelOverrides(dir);
const resolved = installModelOverrideResolver.resolveAgentModelOverride('msd-executor', overrides, null);
const expectedModel = (resolved && resolved !== 'inherit') ? resolved : null;
const expectedHasModel = expectedModel !== null;
const { json: result } = queryCodexJson(dir);
const actualHasModel = hasModelFlag(result.exec.args);
assert.equal(actualHasModel, expectedHasModel,
`shape="${shape.name}": predicate says emit-model=${expectedHasModel} but actual argv ` +
`${expectedHasModel ? 'never carries' : 'unexpectedly carries'} --model (args=${JSON.stringify(result.exec.args)})`);
if (expectedHasModel) {
assert.deepEqual(result.exec.args, ['exec', '--model', expectedModel, '--cd', '/tmp/wt', 'do the thing']);
}
} finally {
cleanup(dir);
}
}
});
// DIVERGENCE GUARD — real cross-surface parity test. For each value below,
// assert that dispatch (this describe's CLI, driven for real end-to-end)
// and the install-side .toml policy (bin/install.js generateCodexAgentToml,
// NOT reachable in-process here — it lives in the generated installer
// module and is exercised only via `npm run build` / the install test
// suite) would reach the SAME emit-vs-drop decision for the identical
// model_overrides["msd-executor"] value.
//
// What is asserted DIRECTLY (real code path, in-process): the dispatch
// side, via the real `msd-tools query dispatch-isolation` CLI spawn.
// What is MIRRORED (not independently re-executed): the install-side half
// is derived from `isAnthropicFlavoredModel` (the single-sourced #3241
// predicate, imported for real from bin/lib/model-catalog.cjs — so THAT
// predicate call is real, not re-implemented) plus the documented
// install-side rules from bin/install.js's generateCodexAgentToml
// (trim; drop empty/whitespace-only; drop Anthropic-flavored). Install-side
// does NOT apply a charset check — that is dispatch-only, added because
// dispatch crosses a shell-argv boundary that a static .toml string never
// does. A future reader: if bin/install.js's trim/drop rules for this key
// change without a matching update here, this comment is the thing that
// goes stale, not a shared executable — that is the acknowledged limit.
test('DIVERGENCE GUARD: dispatch model-pin decision matches install-side Codex .toml policy for the same value', () => {
const { isAnthropicFlavoredModel } = require('../msd-core/bin/lib/model-catalog.cjs');
function installSideWouldEmit(rawValue) {
if (typeof rawValue !== 'string') return false;
const trimmed = rawValue.trim();
if (trimmed === '') return false;
if (isAnthropicFlavoredModel(trimmed)) return false;
return true;
}
const table = [
'gpt-5.6-terra',
'synthetic/hf:zai-org/GLM-5.2',
'sonnet',
'opus',
'claude-sonnet-4-5',
'',
' ',
'inherit',
'Inherit',
'-p',
'gpt-5 -c approval_policy=never',
];
for (const value of table) {
const dir = createTempProject('msd-3714-parity-');
try {
writeConfig(dir, { model_overrides: { 'msd-executor': value } });
const { json: result } = queryCodexJson(dir);
const dispatchEmitted = hasModelFlag(result.exec.args);
// Dispatch additionally drops 'inherit' (case/whitespace-insensitive)
// and non-model-id-charset values — neither is an install-side .toml
// concern (install never sees the literal string "inherit" as a
// meaningful sentinel, and a static TOML string is not a shell argv
// boundary), so those two are excluded from the parity assertion
// itself and asserted directly instead.
const trimmedLower = typeof value === 'string' ? value.trim().toLowerCase() : value;
if (trimmedLower === 'inherit') {
assert.equal(dispatchEmitted, false, `value=${JSON.stringify(value)}: inherit sentinel must never emit`);
continue;
}
if (value === '-p' || value === 'gpt-5 -c approval_policy=never') {
assert.equal(dispatchEmitted, false, `value=${JSON.stringify(value)}: unsafe-charset value must never emit`);
continue;
}
assert.equal(dispatchEmitted, installSideWouldEmit(value),
`value=${JSON.stringify(value)}: dispatch emit=${dispatchEmitted} but install-side policy says emit=${installSideWouldEmit(value)}`);
} finally {
cleanup(dir);
}
}
});
// ---------------------------------------------------------------------------
// Round-2 review regression rows — three real defects reproduced against
// this repo's actual CLI (see the fix commit for the full repro transcript).
// ---------------------------------------------------------------------------
// DEFECT 1: a leading-dash pin ('-c', '--config', '-', '--') previously
// passed MODEL_ID_CHARSET_RE silently (it permits '-'), reached
// resolveOrchestratorExec, tripped its `unsafe_leading_dash_model` guard,
// and turned the WHOLE resolution to exec:null — a wave-fatal abort per
// executor-isolation-dispatch.md:299-303, with no warning at all. The fix
// rejects a leading '-' inside resolveDispatchModelPin itself so it
// degrades like every other rejected shape: no --model, a warning, exec
// still resolves.
test('DEFECT 1: leading-dash pins ("-c", "--config", "-", "--") -> no --model, a warning, exec NOT null (argv == no-model argv)', () => {
const leadingDashValues = ['-c', '--config', '-', '--'];
for (const value of leadingDashValues) {
const dir = createTempProject('msd-3714-leading-dash-');
try {
writeConfig(dir, { model_overrides: { 'msd-executor': value } });
const { json: result, stderr } = queryCodexJson(dir);
assert.notEqual(result.exec, null, `value=${JSON.stringify(value)}: exec must not be null`);
assert.deepEqual(result.exec.args, ['exec', '--cd', '/tmp/wt', 'do the thing'],
`value=${JSON.stringify(value)}: argv must equal the no-model argv exactly`);
assert.ok(!hasModelFlag(result.exec.args));
assert.match(stderr, /msd-executor/, `value=${JSON.stringify(value)} must warn`);
} finally {
cleanup(dir);
}
}
});
// DEFECT 1 REGRESSION ROW: the same '-c' pin under a host with NO
// modelFlag at all (kimi-code) must resolve byte-identical argv to the
// no-pin case — before the fix, resolveOrchestratorExec's leading-dash
// guard fires BEFORE the modelFlag presence check, so this host (which
// previously ignored the model entirely) was newly broken by the pin
// policy. The pin policy (and its warning) is gated on the descriptor
// declaring a non-empty `modelFlag`; kimi-code declares none, so this must
// now produce NO stderr warning either (item 2 follow-up) — the value
// policy never runs at all for a host that was never going to emit
// --model.
test('DEFECT 1 REGRESSION: "-c" pin under kimi-code (no modelFlag host) -> argv byte-identical to no-pin, exec NOT null, stderr EMPTY', () => {
const noPinDir = createTempProject('msd-3714-kimi-nopin-');
const pinnedDir = createTempProject('msd-3714-kimi-pinned-');
try {
writeConfig(noPinDir, {});
writeConfig(pinnedDir, { model_overrides: { 'msd-executor': '-c' } });
const { json: noPinResult } = queryCodexJson(noPinDir, { MSD_RUNTIME: 'kimi-code' });
const { json: pinnedResult, stderr } = queryCodexJson(pinnedDir, { MSD_RUNTIME: 'kimi-code' });
assert.notEqual(noPinResult.exec, null, 'kimi-code no-pin: exec must not be null');
assert.notEqual(pinnedResult.exec, null, 'kimi-code "-c" pin: exec must not be null (this is the regression)');
assert.deepEqual(pinnedResult.exec.args, noPinResult.exec.args,
'kimi-code argv with a "-c" pin must be byte-identical to the no-pin argv');
assert.equal(stderr, '', 'a host with no modelFlag must never run the pin policy, so no warning');
} finally {
cleanup(noPinDir);
cleanup(pinnedDir);
}
});
// DEFECT 2: isAnthropicFlavoredModel lowercased its substring arm but not
// its CLAUDE_AGENT_ALIASES.has(...) arm, so a case variant of a bare alias
// ("Sonnet", "OPUS") or a mixed-case "claude-*" id ("Claude-Sonnet-4-5")
// slipped through as if it were a real Codex model id. Lowercase 'sonnet'
// is the control (already correctly dropped pre-fix).
// NOTE: "opus-4.1" is deliberately excluded from this table. It matches
// neither arm of isAnthropicFlavoredModel by DESIGN, independent of case:
// CLAUDE_AGENT_ALIASES holds only the bare tier names ('opus'/'sonnet'/
// 'haiku'/'fable'), never version-qualified forms, and "opus-4.1" contains
// no "claude" substring (every real catalog Anthropic id is "claude-*").
// This is a pre-existing predicate-design gap, not the case-sensitivity
// defect fixed here — flagged separately rather than asserted as fixed
// behavior in this test.
test('DEFECT 2: case variants of Anthropic-flavored pins ("Sonnet", "OPUS", "Claude-Sonnet-4-5") -> no --model + warning', () => {
const caseVariants = ['Sonnet', 'OPUS', 'Claude-Sonnet-4-5'];
for (const value of caseVariants) {
const dir = createTempProject('msd-3714-case-flavor-');
try {
writeConfig(dir, { model_overrides: { 'msd-executor': value } });
const { json: result, stderr } = queryCodexJson(dir);
assert.deepEqual(result.exec.args, ['exec', '--cd', '/tmp/wt', 'do the thing'],
`value=${JSON.stringify(value)} must never reach argv`);
assert.ok(!hasModelFlag(result.exec.args));
assert.match(stderr, /msd-executor/, `value=${JSON.stringify(value)} must warn`);
} finally {
cleanup(dir);
}
}
});
test('DEFECT 2 CONTROL: lowercase "sonnet" still drops (unchanged behavior)', () => {
const dir = createTempProject('msd-3714-case-flavor-control-');
try {
writeConfig(dir, { model_overrides: { 'msd-executor': 'sonnet' } });
const { json: result, stderr } = queryCodexJson(dir);
assert.deepEqual(result.exec.args, ['exec', '--cd', '/tmp/wt', 'do the thing']);
assert.ok(!hasModelFlag(result.exec.args));
assert.match(stderr, /msd-executor/);
} finally {
cleanup(dir);
}
});
// DEFECT 3: _warnDispatchModelPinDropped wrote the rejected raw value to
// stderr, truncated but never escaped — a guaranteed-reachable raw-to-TTY
// sink for control/escape bytes, since every value reaching this warning
// failed the charset test by definition. Built with String.fromCharCode so
// the test source itself carries no literal control characters.
test('DEFECT 3: an ESC/BEL-bearing pin is dropped AND the stderr warning contains no raw control character', () => {
const ESC = String.fromCharCode(27);
const BEL = String.fromCharCode(7);
const hostileValue = `x${ESC}]0;PWNED${BEL}y`;
const dir = createTempProject('msd-3714-defect3-hostile-');
try {
writeConfig(dir, { model_overrides: { 'msd-executor': hostileValue } });
const { json: result, stderr } = queryCodexJson(dir);
assert.deepEqual(result.exec.args, ['exec', '--cd', '/tmp/wt', 'do the thing']);
assert.ok(!hasModelFlag(result.exec.args));
assert.match(stderr, /msd-executor/);
const stderrBody = stderr.endsWith('\n') ? stderr.slice(0, -1) : stderr;
// eslint-disable-next-line no-control-regex -- asserting the ABSENCE of raw control bytes is the point of this test
assert.doesNotMatch(stderrBody, /[\x00-\x1f\x7f]/,
'stderr must contain no raw control character outside the trailing newline');
} finally {
cleanup(dir);
}
});
// DEFECT 3 (truncation ordering): a long escape-bearing value must be
// sanitized BEFORE truncation, so a truncated escape sequence can never
// survive into the emitted warning (e.g. an SGR sequence cut before its
// reset, leaving sticky terminal state).
test('DEFECT 3: a long ESC-bearing pin (> 64 chars) is sanitized before truncation — no raw control survives', () => {
const ESC = String.fromCharCode(27);
const hostileValue = `${'x'.repeat(80)}${ESC}[31mHOSTILE`;
const dir = createTempProject('msd-3714-defect3-long-');
try {
writeConfig(dir, { model_overrides: { 'msd-executor': hostileValue } });
const { json: result, stderr } = queryCodexJson(dir);
assert.deepEqual(result.exec.args, ['exec', '--cd', '/tmp/wt', 'do the thing']);
const stderrBody = stderr.endsWith('\n') ? stderr.slice(0, -1) : stderr;
// eslint-disable-next-line no-control-regex -- asserting the ABSENCE of raw control bytes is the point of this test
assert.doesNotMatch(stderrBody, /[\x00-\x1f\x7f]/,
'a truncated escape sequence must never survive into the emitted warning');
} finally {
cleanup(dir);
}
});
// ---------------------------------------------------------------------------
// ITEM 2 follow-up — the pin policy (and its warning) is HOST-NEUTRAL code
// running at a site shared by every runtime, so it previously ran (and
// warned) even for hosts whose descriptor declares no `modelFlag` at all
// (opencode, kimi, kimi-code) — none of which were ever going to emit a
// --model regardless of the pin's value. The fix gates the whole policy on
// the resolved runtime's orchestratorExec declaring a non-empty modelFlag.
// ---------------------------------------------------------------------------
test('ITEM 2: a "sonnet" pin under kimi-code -> argv byte-identical to no-pin, stderr EMPTY (no modelFlag declared)', () => {
const noPinDir = createTempProject('msd-3714-item2-kimicode-nopin-');
const pinnedDir = createTempProject('msd-3714-item2-kimicode-pinned-');
try {
writeConfig(noPinDir, {});
writeConfig(pinnedDir, { model_overrides: { 'msd-executor': 'sonnet' } });
const { json: noPinResult, stderr: noPinStderr } = queryCodexJson(noPinDir, { MSD_RUNTIME: 'kimi-code' });
const { json: pinnedResult, stderr: pinnedStderr } = queryCodexJson(pinnedDir, { MSD_RUNTIME: 'kimi-code' });
assert.deepEqual(pinnedResult.exec.args, noPinResult.exec.args,
'kimi-code argv with a "sonnet" pin must be byte-identical to the no-pin argv');
assert.equal(noPinStderr, '');
assert.equal(pinnedStderr, '', 'kimi-code declares no modelFlag — the pin policy must not run at all, so no warning');
} finally {
cleanup(noPinDir);
cleanup(pinnedDir);
}
});
test('ITEM 2: a "sonnet" pin under opencode -> argv byte-identical to no-pin, stderr EMPTY (no modelFlag declared)', () => {
const noPinDir = createTempProject('msd-3714-item2-opencode-nopin-');
const pinnedDir = createTempProject('msd-3714-item2-opencode-pinned-');
try {
writeConfig(noPinDir, {});
writeConfig(pinnedDir, { model_overrides: { 'msd-executor': 'sonnet' } });
const { json: noPinResult, stderr: noPinStderr } = queryCodexJson(noPinDir, { MSD_RUNTIME: 'opencode' });
const { json: pinnedResult, stderr: pinnedStderr } = queryCodexJson(pinnedDir, { MSD_RUNTIME: 'opencode' });
assert.deepEqual(pinnedResult.exec.args, noPinResult.exec.args,
'opencode argv with a "sonnet" pin must be byte-identical to the no-pin argv');
assert.equal(noPinStderr, '');
assert.equal(pinnedStderr, '', 'opencode declares no modelFlag — the pin policy must not run at all, so no warning');
} finally {
cleanup(noPinDir);
cleanup(pinnedDir);
}
});
test('ITEM 2 CONTROL: a "sonnet" pin under codex (declares modelFlag) -> still dropped, WITH the warning', () => {
const dir = createTempProject('msd-3714-item2-codex-control-');
try {
writeConfig(dir, { model_overrides: { 'msd-executor': 'sonnet' } });
const { json: result, stderr } = queryCodexJson(dir);
assert.deepEqual(result.exec.args, ['exec', '--cd', '/tmp/wt', 'do the thing']);
assert.ok(!hasModelFlag(result.exec.args));
assert.match(stderr, /msd-executor.*sonnet.*Anthropic/i);
} finally {
cleanup(dir);
}
});
});
// ---------------------------------------------------------------------------
// #2627 Phase 3 — the `dispatch-isolation` CLI route.
//
// Behavioral: each case SPAWNS the real msd-tools CLI and asserts on its actual
// stdout, rather than inspecting the route's source. This is the scheduler
// consumer's only entry point — execute-phase branches on exactly this output.
// ---------------------------------------------------------------------------
describe('#2627 dispatch-isolation CLI route', () => {
const { runNode } = require('./helpers/process-seam.cjs');
const { throwIfFailed } = require('./helpers/git-fixture.cjs');
const { PROBE_TIMEOUT_MS } = require('./helpers/timeouts.cjs');
const MSD_TOOLS = path.join(REPO_ROOT, 'msd-core', 'bin', 'msd-tools.cjs');
function query(runtimeId, extraArgs = []) {
const r = runNode(
[MSD_TOOLS, 'query', 'dispatch-isolation', ...extraArgs],
{ cwd: REPO_ROOT, env: { ...process.env, MSD_RUNTIME: runtimeId }, timeoutMs: PROBE_TIMEOUT_MS },
);
throwIfFailed(r, `msd-tools query dispatch-isolation ${extraArgs.join(' ')}`);
return r.stdout;
}
const queryJson = (runtimeId, extraArgs = []) => JSON.parse(query(runtimeId, ['--json', ...extraArgs]));
test('raw output is the bare negotiated value for each isolation model', () => {
assert.equal(query('claude').trim(), 'harness-worktree');
assert.equal(query('codex').trim(), 'orchestrator-worktree');
assert.equal(query('pi').trim(), 'none');
});
test('an undocumented isolation declaration degrades to none (fail-closed)', () => {
// cline declares isolation:"undocumented" — the corpus-wide sentinel.
assert.equal(query('cline').trim(), 'none');
});
test('an unknown runtime degrades to none rather than erroring', () => {
assert.equal(query('no-such-runtime-xyz').trim(), 'none');
});
test('harness-worktree surfaces the host\'s declared flag, and no exec', () => {
const claude = queryJson('claude');
assert.equal(claude.isolation, 'harness-worktree');
assert.equal(claude.harnessFlag, 'isolation="worktree"');
assert.equal(claude.exec, null, 'MSD runs no git on the harness path — there is nothing to spawn');
assert.equal(queryJson('cursor').harnessFlag, '--worktree');
});
test('orchestrator-worktree yields exec only when a cwd target is supplied', () => {
assert.equal(queryJson('codex').exec, null, 'no --cwd-target → nothing to bind');
const withTarget = queryJson('codex', ['--cwd-target', '/tmp/wt', '--prompt', 'do the thing']);
assert.equal(withTarget.isolation, 'orchestrator-worktree');
assert.equal(withTarget.exec.command, 'codex');
assert.deepEqual(withTarget.exec.args, ['exec', '--cd', '/tmp/wt', 'do the thing']);
assert.equal(withTarget.exec.cwd, '/tmp/wt');
assert.equal(withTarget.harnessFlag, null);
});
test('each orchestrator-worktree host resolves to its own documented argv shape', () => {
const args = (id) => queryJson(id, ['--cwd-target', '/tmp/wt', '--prompt', 'P']).exec.args;
assert.deepEqual(args('opencode'), ['run', '--dir', '/tmp/wt', 'P']);
// kimi carries the prompt behind --prompt (its --print mode requires it),
// unlike codex/opencode which take it positionally.
assert.deepEqual(args('kimi'), ['--print', '--work-dir', '/tmp/wt', '--prompt', 'P']);
// kimi-code binds by process cwd — no flag in argv, but cwd still returned.
assert.deepEqual(args('kimi-code'), ['--prompt', 'P']);
assert.equal(queryJson('kimi-code', ['--cwd-target', '/tmp/wt', '--prompt', 'P']).exec.cwd, '/tmp/wt');
});
test('a cwd target with no prompt still resolves (prompt is optional at this seam)', () => {
const noPrompt = queryJson('codex', ['--cwd-target', '/tmp/wt']);
assert.equal(noPrompt.isolation, 'orchestrator-worktree');
assert.deepEqual(noPrompt.exec.args, ['exec', '--cd', '/tmp/wt']);
});
test('the route never reports an isolation model it cannot actually service', () => {
// The invariant the scheduler depends on: if isolation is non-none, the
// corresponding mechanism is present. Anything else would have the wave
// create a worktree and then discover it has nothing to spawn into it.
for (const id of ['claude', 'cursor', 'codex', 'opencode', 'kimi', 'kimi-code', 'pi', 'cline', 'zcode']) {
const r = queryJson(id, ['--cwd-target', '/tmp/wt', '--prompt', 'P']);
if (r.isolation === 'harness-worktree') {
assert.ok(r.harnessFlag && r.harnessFlag.length > 0, `${id}: harness-worktree without a flag`);
} else if (r.isolation === 'orchestrator-worktree') {
assert.ok(r.exec && r.exec.command, `${id}: orchestrator-worktree without a spawnable exec`);
} else {
assert.equal(r.isolation, 'none', `${id}: unexpected isolation value ${r.isolation}`);
assert.equal(r.exec, null);
assert.equal(r.harnessFlag, null);
}
}
});
test('a none-isolation host never yields an exec even when a target is supplied', () => {
const pi = queryJson('pi', ['--cwd-target', '/tmp/wt', '--prompt', 'P']);
assert.equal(pi.isolation, 'none');
assert.equal(pi.exec, null);
assert.equal(pi.harnessFlag, null);
});
});
describe('#3673 dispatch-capacity CLI route', () => {
const { runNode } = require('./helpers/process-seam.cjs');
const { throwIfFailed } = require('./helpers/git-fixture.cjs');
const { PROBE_TIMEOUT_MS } = require('./helpers/timeouts.cjs');
const MSD_TOOLS = path.join(REPO_ROOT, 'msd-core', 'bin', 'msd-tools.cjs');
// `maxConcurrencyEnv === undefined` means "unset" — MSD_DISPATCH_MAX_CONCURRENCY
// is deliberately deleted from the child's env rather than passed as the
// literal string "undefined", so the "env absent" test cases are genuinely
// absent, not present-with-a-bogus-value.
function query(runtimeId, extraArgs = [], maxConcurrencyEnv) {
const env = { ...process.env, MSD_RUNTIME: runtimeId };
delete env.MSD_DISPATCH_MAX_CONCURRENCY;
if (maxConcurrencyEnv !== undefined) {
env.MSD_DISPATCH_MAX_CONCURRENCY = maxConcurrencyEnv;
}
const r = runNode(
[MSD_TOOLS, 'query', 'dispatch-capacity', ...extraArgs],
{ cwd: REPO_ROOT, env, timeoutMs: PROBE_TIMEOUT_MS },
);
throwIfFailed(r, `msd-tools query dispatch-capacity ${extraArgs.join(' ')}`);
return r.stdout;
}
const queryJson = (runtimeId, extraArgs = [], maxConcurrencyEnv) =>
JSON.parse(query(runtimeId, ['--json', ...extraArgs], maxConcurrencyEnv));
test('live env wins over descriptor', () => {
// claude's shipped descriptor declares maxConcurrency:20.
assert.equal(query('claude', [], '4').trim(), '4');
assert.equal(queryJson('claude', [], '4').source, 'live');
});
test('descriptor used when live is absent', () => {
const result = queryJson('claude');
assert.equal(result.capacity, 20);
assert.equal(result.source, 'descriptor');
});
test('fallback to 1 when both live and a real descriptor value are absent', () => {
// codex's shipped descriptor carries the "undocumented" sentinel.
const result = queryJson('codex');
assert.equal(result.capacity, 1);
assert.equal(result.source, 'fallback');
});
test('malformed live env falls through to descriptor tier', () => {
assert.equal(query('claude', [], 'abc').trim(), '20');
assert.equal(queryJson('claude', [], 'abc').source, 'descriptor');
});
test('invalid live env values (0, negative, fractional) fall through to descriptor tier', () => {
for (const bogus of ['0', '-1', '4.5']) {
assert.equal(query('claude', [], bogus).trim(), '20', `env=${bogus} must fall through to descriptor`);
}
});
test('JSON output has the documented shape', () => {
const result = queryJson('claude');
assert.deepEqual(Object.keys(result).sort(), ['capacity', 'declared', 'reason', 'runtime', 'source'].sort());
assert.equal(result.runtime, 'claude');
assert.equal(result.capacity, 20);
assert.equal(result.declared, 20);
assert.equal(result.source, 'descriptor');
assert.equal(result.reason, 'ok');
});
test('unknown runtime degrades to 1 without erroring', () => {
const result = queryJson('no-such-runtime-xyz');
assert.equal(result.capacity, 1);
assert.equal(result.source, 'fallback');
assert.equal(result.reason, 'unknown_runtime');
});
test('default output mode matches --raw', () => {
assert.equal(query('claude').trim(), query('claude', ['--raw']).trim());
});
test('claude descriptor value (20) is honored', () => {
assert.equal(query('claude').trim(), '20');
});
test('undocumented descriptor value degrades to fallback', () => {
// codex declares dispatch.maxConcurrency:"undocumented".
const result = queryJson('codex');
assert.equal(result.capacity, 1);
assert.equal(result.source, 'fallback');
assert.equal(result.reason, 'undocumented');
});
});
// ---------------------------------------------------------------------------
// #2652 — dispatch-site parity: isolation is decided by the negotiated
// dispatch.isolation capability, never by a runtime id.
//
// #2584 migrated the phase scheduler off `RUNTIME != "claude"` but left quick.md
// and diagnose-issues.md behind, so Codex — which declares orchestrator-worktree
// — was refused isolation it had negotiated. That is this repo's
// DEFECT.GENERATIVE-FIX-DIVERGENCE shape: parallel surfaces reading one contract,
// one migrated and the others silently stale. This guard fails when any dispatch
// site reintroduces a runtime-name test around its isolation decision.
// ---------------------------------------------------------------------------
// Scan workflows AND the reference fragments they inline: scheduler branches that
// mutate USE_WORKTREES live in msd-core/references/ too (execute-phase-wave-guard,
// execute-phase-between-wave-reset), and a workflows-only scan misses them.
// Shared by both #2652 and #2728 suites below — a second, hand-listed copy is how
// the degrade scan silently narrowed to three files (round-7 review, Major 6).
const SCAN_ROOTS = [
path.join(REPO_ROOT, 'msd-core', 'workflows'),
path.join(REPO_ROOT, 'msd-core', 'references'),
];
function collectMarkdown(dir) {
const out = [];
if (!fs.existsSync(dir)) return out;
for (const entry of fs.readdirSync(dir, { withFileTypes: true })) {
const full = path.join(dir, entry.name);
if (entry.isDirectory()) out.push(...collectMarkdown(full));
else if (entry.name.endsWith('.md')) out.push(full);
}
return out;
}
describe('#2652 dispatch-site parity — isolation gates on capability, not runtime id', () => {
const ISOLATION_TOKEN = /USE_WORKTREES|ISOLATION|isolation="worktree"|harnessFlag/;
// Any shape that reads RUNTIME as a branch condition. Line-based matching missed
// multiline `&&`, [[ ]], case, `test`, and JS-template forms, so match the RUNTIME
// test itself and then look for an isolation token within the following window.
//
// Operand ORDER is not fixed either: `[ "claude" != "$RUNTIME" ]` is the same gate
// written backwards, and hand-written left-only patterns let it through. Each
// comparison shape is therefore generated in both orders from a single template, so
// a new shape cannot be added in one order and forgotten in the other.
const RT = '"?\\$\\{?RUNTIME\\}?"?'; // $RUNTIME / "$RUNTIME" / "${RUNTIME}"
const JS_RT = 'RUNTIME'; // bare identifier inside a ${…} template
const QLIT = '["\'][a-z-]+["\']'; // "claude"
const LIT = '["\']?[a-z-]+["\']?'; // claude / "claude" ([[ ]] permits bare)
/** One comparison shape → two regexes, operands in either order. */
const bothOrders = (tpl, a, b) => [
new RegExp(tpl.replace('%L', a).replace('%R', b)),
new RegExp(tpl.replace('%L', b).replace('%R', a)),
];
const RUNTIME_TESTS = [
...bothOrders('\\[\\s*%L\\s*(?:!=|==?)\\s*%R\\s*\\]', RT, QLIT), // [ "$RUNTIME" = "x" ]
...bothOrders('\\[\\[\\s*%L\\s*(?:!=|==?)\\s*%R\\s*\\]\\]', RT, LIT), // [[ "$RUNTIME" == x ]]
...bothOrders('\\btest\\s+%L\\s*(?:!=|=)\\s*%R', RT, QLIT), // test "$RUNTIME" = "x"
...bothOrders('\\$\\{\\s*%L\\s*(?:===|!==|==|!=)\\s*%R', JS_RT, QLIT), // ${RUNTIME === "x" ? ...}
/\bcase\s+"?\$\{?RUNTIME\}?"?\s+in\b/, // case "$RUNTIME" in (no reversed form)
];
const WINDOW = 400; // chars after the RUNTIME test to look for an isolation decision
function isolationGateOffenders(text, label) {
const hits = [];
for (const re of RUNTIME_TESTS) {
const global = new RegExp(re.source, 'g');
let m;
while ((m = global.exec(text)) !== null) {
const window = text.slice(m.index, m.index + WINDOW);
if (ISOLATION_TOKEN.test(window)) {
const line = text.slice(0, m.index).split('\n').length;
hits.push(`${label}:${line}: ${m[0].trim()}`);
}
}
}
return hits;
}
const dispatchSites = SCAN_ROOTS.flatMap(collectMarkdown).filter(f =>
ISOLATION_TOKEN.test(fs.readFileSync(f, 'utf-8')),
);
test('the scan covers the known dispatch sites (guards against a vacuous pass)', () => {
const rel = dispatchSites.map(f => path.relative(REPO_ROOT, f).replace(/\\/g, '/'));
// Assert identities, not just a count: a count survives the scan silently
// drifting off the files that actually matter.
for (const required of [
'msd-core/workflows/quick.md',
'msd-core/workflows/diagnose-issues.md',
'msd-core/workflows/execute-plan.md',
'msd-core/workflows/execute-phase/steps/executor-isolation-dispatch.md',
]) {
assert.ok(rel.includes(required), `dispatch-site scan must cover ${required}; found ${rel.length} files`);
}
});
// #2652 review: executor-isolation-dispatch.md declared
// references/dispatch-isolation-gate.md canonical while keeping the OLDER
// collapsing resolver inline — `|| echo "none"`, no ISOLATION_RESOLVED — so a
// transient shim failure aborted /msd:execute-phase telling a Claude or
// Cursor user their runtime "declares no executor-isolation primitive". Still
// fail-closed, so not an unsafe-dispatch hole, but the correction this PR is
// about was unwired at one of the five sites. Nothing caught it: the emitted
// coverage in install.test.cjs checks the REFERENCE, not each site's own copy.
test('every site that inlines the resolver uses the non-collapsing shape', () => {
// A site "inlines the resolver" only if it ASSIGNS from it. The other
// dispatch sites @-reference the gate and merely re-record a degrade
// (`--force-isolation …` with no assignment), which carries no verdict of
// its own — matching those too would flag files that have nothing to fix.
const INLINE_RESOLVE = /\w+=\$\(msd_run query dispatch-isolation --raw/;
// Dedupe: SCAN_ROOTS already yields the gate reference, so appending it
// again made `length >= 2` satisfiable by the gate alone — the executor
// site could drop out of the predicate entirely and this would still pass.
const candidates = [...new Set(
[...dispatchSites, path.join(REPO_ROOT, 'msd-core', 'references', 'dispatch-isolation-gate.md')]
.filter(f => fs.existsSync(f))
.map(f => path.resolve(f)),
)];
const inliners = candidates
.map(f => ({ rel: path.relative(REPO_ROOT, f).replace(/\\/g, '/'), text: fs.readFileSync(f, 'utf-8') }))
.filter(({ text }) => INLINE_RESOLVE.test(text));
// Pin identities, not a count. A count cannot tell "the executor site was
// fixed" from "the executor site stopped matching the predicate".
assert.deepEqual(
inliners.map(i => i.rel).sort(),
[
'msd-core/references/dispatch-isolation-gate.md',
'msd-core/workflows/execute-phase/steps/executor-isolation-dispatch.md',
],
'the set of files inlining the resolver changed — a new inliner needs the same treatment, and a missing one means the predicate stopped seeing it',
);
for (const { rel, text } of inliners) {
// Any assignment target, not just ISOLATION — `_ISOLATION_RAW=$(… || echo
// "none")` restores the identical defect while leaving ISOLATION_RESOLVED
// in the file, so a name-specific pattern passes on a broken block.
assert.doesNotMatch(
text,
/\w+=\$\(msd_run query dispatch-isolation --raw[^\n]*\|\|[^\n]*echo/,
`${rel}: collapses a resolver failure straight to none — that reports "declares no primitive" for a host that simply could not be queried`,
);
assert.match(
text,
/ISOLATION_RESOLVED=false/,
`${rel}: inlines the resolver but never records that no verdict was learned`,
);
assert.match(
text,
/could not resolve this runtime's executor-isolation capability/,
`${rel}: has no distinct message for the unresolved case, so both outcomes read as a capability verdict`,
);
}
});
test('the detector flags every known runtime-gate shape (discrimination proof)', () => {
// Each of these slipped past the original same-line, single-bracket detector.
const mutations = {
'single bracket, same line':
'if [ "$RUNTIME" != "claude" ] && [ "$USE_WORKTREES" != "false" ]; then',
'multiline &&':
'if [ "$RUNTIME" != "claude" ] && \\\n [ "$USE_WORKTREES" != "false" ]; then',
'double bracket':
'if [[ "$RUNTIME" == claude ]]; then\n USE_WORKTREES=false\nfi',
'nested, later assignment':
'if [ "$RUNTIME" = "codex" ]; then\n echo hi\n ISOLATION=none\nfi',
'case statement':
'case "$RUNTIME" in\n claude) USE_WORKTREES=true ;;\nesac',
'js template':
'${RUNTIME === "claude" ? \'isolation="worktree",\' : \'\'}',
'test builtin':
'if test "$RUNTIME" = "claude"; then\n ISOLATION=harness-worktree\nfi',
// Reversed operands — the same gate written backwards. Every one of these
// evaded the original left-only patterns (#2728 review, Minor).
'reversed single bracket':
'if [ "claude" != "$RUNTIME" ] && [ "$USE_WORKTREES" != "false" ]; then',
'reversed double bracket':
'if [[ claude == "$RUNTIME" ]]; then\n USE_WORKTREES=false\nfi',
'reversed test builtin':
'if test "claude" = "$RUNTIME"; then\n ISOLATION=harness-worktree\nfi',
'reversed js template':
'${"claude" === RUNTIME ? \'isolation="worktree",\' : \'\'}',
};
for (const [name, snippet] of Object.entries(mutations)) {
assert.equal(
isolationGateOffenders(snippet, 'mutation').length >= 1,
true,
`detector must flag the "${name}" reintroduction — otherwise the guard below proves nothing`,
);
}
});
test('the detector flags generated shell-comparison permutations (property)', () => {
// The mutation table above is 11 hand-picked cases; this generates the cross
// product of the axes an author actually varies — bracket form, operator,
// operand order, quoting, spacing, runtime id. A permutation the hand-written
// patterns miss shows up here rather than in production (#2728 review, Nit).
fc.assert(
fc.property(
fc.constantFrom('[', '[[', 'test'),
fc.constantFrom('=', '==', '!='),
fc.boolean(), // reversed operands?
fc.constantFrom('"$RUNTIME"', '$RUNTIME', '"${RUNTIME}"'),
fc.constantFrom('claude', 'codex', 'kimi-code'),
fc.boolean(), // quote the literal?
fc.constantFrom('', ' '), // extra padding
(form, op, reversed, rtTok, id, quoted, pad) => {
// `test` has no `==` form and never takes brackets; bare literals are
// only legal inside [[ ]].
if (form === 'test' && op === '==') return true;
const lit = quoted || form !== '[[' ? `"${id}"` : id;
const [l, r] = reversed ? [lit, rtTok] : [rtTok, lit];
const cond = `${l}${pad} ${op} ${pad}${r}`;
const snippet = form === 'test'
? `if test ${cond}; then\n ISOLATION=none\nfi`
: `if ${form} ${cond} ${form === '[[' ? ']]' : ']'}; then\n ISOLATION=none\nfi`;
return isolationGateOffenders(snippet, 'prop').length >= 1;
},
),
{ numRuns: 300 },
);
});
test('a RUNTIME read with no isolation decision nearby is NOT flagged (no false positive)', () => {
const benign = 'RUNTIME=$(msd_run query config-get runtime --raw)\necho "runtime is $RUNTIME"';
assert.deepEqual(isolationGateOffenders(benign, 'benign'), []);
});
test('no dispatch site gates isolation on a runtime id', () => {
const offenders = [];
for (const file of dispatchSites) {
offenders.push(
...isolationGateOffenders(
fs.readFileSync(file, 'utf-8'),
path.relative(REPO_ROOT, file).replace(/\\/g, '/'),
),
);
}
assert.deepEqual(
offenders,
[],
'isolation must be resolved from `msd_run query dispatch-isolation` (see ' +
'msd-core/references/dispatch-isolation-gate.md), never from a RUNTIME comparison:\n' +
offenders.join('\n'),
);
});
// #2728 review Blocker — the ISOLATION_TOKEN regex above treats
// `isolation="worktree"` as a legitimate isolation marker, so the runtime-gate
// detector cannot catch a *conditional* keyed on that literal. But the literal
// is Claude Code's own rendering of {harnessFlag}; Cursor's rendering is
// `--worktree`, so any post-dispatch step gated on the literal is a silent
// no-op for a correctly-isolated Cursor run (quick.md's manifest append and
// worktree merge-back were exactly this — isolated work never merged, never
// cleaned up). Post-dispatch bookkeeping must key on the negotiated ISOLATION
// value instead (dispatch-isolation-gate.md's "never hardcode" rule).
const LITERAL_CONDITION = /\bIf\b[^.\n]*`isolation="worktree"`/g;
function literalConditionOffenders(text, label) {
const hits = [];
let m;
const re = new RegExp(LITERAL_CONDITION.source, 'g');
while ((m = re.exec(text)) !== null) {
const line = text.slice(0, m.index).split('\n').length;
hits.push(`${label}:${line}: ${m[0].trim()}`);
}
return hits;
}
test('the literal-condition detector flags the pre-fix quick.md shapes (discrimination proof)', () => {
const preFix = {
'manifest append':
'If the executor ran with `isolation="worktree"`, append its returned metadata to `QUICK_WORKTREE_MANIFEST` before cleanup.',
'worktree cleanup':
'1. **Worktree cleanup:** If the executor ran with `isolation="worktree"`, merge the worktree branch back and clean up:',
};
for (const [name, snippet] of Object.entries(preFix)) {
assert.equal(
literalConditionOffenders(snippet, 'mutation').length,
1,
`detector must flag the pre-fix "${name}" conditional — otherwise the guard below proves nothing`,
);
}
// Explanatory prose that merely *names* the literal (no conditional) stays legal.
assert.deepEqual(
literalConditionOffenders(
'Claude Code\'s `isolation="worktree"` forks new worktrees from `origin/HEAD`.',
'benign',
),
[],
);
});
test('no dispatch site conditions post-dispatch behavior on the Claude-rendered literal', () => {
const offenders = [];
for (const file of dispatchSites) {
offenders.push(
...literalConditionOffenders(
fs.readFileSync(file, 'utf-8'),
path.relative(REPO_ROOT, file).replace(/\\/g, '/'),
),
);
}
assert.deepEqual(
offenders,
[],
'post-dispatch steps must key on `ISOLATION = "harness-worktree"`, never on ' +
'Claude Code\'s rendered `isolation="worktree"` literal (a Cursor dispatch renders ' +
'`--worktree` and would silently skip these steps):\n' + offenders.join('\n'),
);
});
test('quick.md post-dispatch bookkeeping keys on the negotiated ISOLATION value', () => {
const quick = fs.readFileSync(
path.join(REPO_ROOT, 'msd-core', 'workflows', 'quick.md'), 'utf-8',
);
assert.match(
quick,
/If the executor ran isolated \(`ISOLATION = "harness-worktree"` at dispatch\), append its returned/,
'the QUICK_WORKTREE_MANIFEST append must be gated on ISOLATION',
);
assert.match(
quick,
/\*\*Worktree cleanup:\*\* If the executor ran isolated \(`ISOLATION = "harness-worktree"` at dispatch\)/,
'the worktree merge-back/cleanup must be gated on ISOLATION',
);
assert.match(
quick,
/If `ISOLATION` was not `"harness-worktree"` at dispatch[^\n]*skip this step/,
'the cleanup skip clause must mirror the same ISOLATION gate (USE_WORKTREES stays true on an isolated Cursor run)',
);
});
});
// ---------------------------------------------------------------------------
// #2728 review BLOCKER (B1/B2/B3) — a degrade must re-RECORD, not just reassign.
//
// Every isolation degrade in a dispatch site is decided in SHELL, where
// `routeDispatchIsolation` cannot see it. That resolver persists whatever it
// resolved to the run-scoped sentinel as an unconditional side effect (#3045
// CORE REDESIGN, hooks/lib/isolation-sentinel.js), so a degrade that only
// reassigns `$ISOLATION` leaves the sentinel asserting `harness-worktree`
// while the dispatch correctly omits the harness flag. The shipped PreToolUse
// guard reads the sentinel at the instant of the `Agent()` call and denies the
// mismatch with exit 2 — the work does not run unisolated, it does not run.
//
// WHY THIS ASSERTS THE RECORDED VALUE, NOT `$ISOLATION`: asserting the local
// variable is precisely what let this class through. `$ISOLATION` was already
// correct at all three sites — `none` — and the defect was entirely in what
// reached the sentinel. So these tests execute each workflow's own degrade
// block under a `msd_run` stub that captures every call, and assert on the
// value the workflow PUSHED THROUGH THE WRITE PATH.
// ---------------------------------------------------------------------------
describe('#2728 B1 — isolation degrades re-record through the single write path', () => {
const { runHook } = require('./helpers/process-seam.cjs');
// Class-norm timeout, not a local literal (CONTRIBUTING: class-norm
// timeouts live in tests/helpers/timeouts.cjs). This harness is a short
// shell probe against a msd_run stub — exactly the PROBE class.
const { PROBE_TIMEOUT_MS } = require('./helpers/timeouts.cjs');
const os = require('node:os');
const WORKFLOWS = path.join(REPO_ROOT, 'msd-core', 'workflows');
/**
* Pull the fenced ```bash block containing `marker` out of a workflow.
*
* DEFECT.WINDOWS-CRLF-TEST-PORTABILITY: the captured body is handed to
* `bash` below, so it must be CRLF-free. A `\r?\n` fence regex is NOT
* sufficient — it only protects the delimiter match, leaving embedded `\r`
* on every line of the body, which bash treats as part of the token
* (helpers.cjs documents exactly this trap). Normalize at the READ
* boundary so everything downstream is LF-only by construction.
*/
function bashBlockContaining(file, marker) {
const text = readFileNormalized(file);
const lines = text.split('\n');
for (const block of scanFencedBlocks(lines)) {
if (block.closeLineIdx === -1) continue;
if ((block.infoString || '').trim() !== 'bash') continue;
const body = lines.slice(block.openLineIdx + 1, block.closeLineIdx).join('\n');
if (body.includes(marker)) return body;
}
assert.fail(`no \`\`\`bash block containing ${JSON.stringify(marker)} in ${file}`);
}
/**
* Run a degrade block with the base-check forced to fire, under a `msd_run`
* stub that logs its argv. Returns every `dispatch-isolation` call the block
* made, in order — i.e. the writes that would have hit the sentinel.
*/
function recordedWrites(block) {
const dir = fs.mkdtempSync(path.join(os.tmpdir(), 'msd-degrade-'));
const log = path.join(dir, 'calls.log');
// The stub answers the base-check `true` so the degrade path is TAKEN;
// every other query returns empty. It logs the full argv of each call.
const harness = [
'set -u',
`msd_run() { printf '%s\\n' "$*" >> ${JSON.stringify(log)};`,
' case "$*" in',
' *"worktree.base-check"*"shouldDegrade"*) printf true ;;',
' *"worktree.base-check"*"message"*) printf "base diverged" ;;',
' *) printf "" ;;',
' esac; }',
'ISOLATION=harness-worktree',
'USE_WORKTREES=true',
'RUNTIME=claude',
'PHASE_NUMBER=7',
block,
// Prove the local variable was ALSO correct, so a failure below can only
// mean the recording is missing — not that the degrade itself misfired.
'printf "FINAL_LOCAL=%s\\n" "$ISOLATION"',
].join('\n');
// Through the process seam, never a hand-rolled spawnSync (CONTRIBUTING
// "Spawning a subprocess: use the process seam"). `runHook` documents
// `interpreter: 'bash'` for running a shell script, so the harness is
// written to a file rather than passed as `-c`. Bounded by construction
// (DEFECT.UNBOUNDED-SUBPROCESS): pure shell against a `msd_run` stub — no
// git, no network, no real CLI — so it completes in milliseconds.
const scriptPath = path.join(dir, 'degrade-harness.sh');
fs.writeFileSync(scriptPath, harness);
const res = runHook(scriptPath, [], { interpreter: 'bash', timeoutMs: PROBE_TIMEOUT_MS });
if (res.outcome !== 'exited') {
cleanup(dir);
assert.fail(`degrade block did not complete: outcome=${res.outcome} ${res.stderr || ''}`);
}
assert.equal(res.exitCode, 0, `degrade block exited ${res.exitCode}: ${res.stderr}`);
assert.match(res.stdout, /FINAL_LOCAL=none/, 'the degrade must set $ISOLATION=none locally');
const calls = fs.existsSync(log)
? fs.readFileSync(log, 'utf-8').split(/\r?\n/).filter(Boolean)
: [];
cleanup(dir);
return calls.filter(c => c.includes('dispatch-isolation'));
}
/** The isolation mode the last write pushed, or null if nothing was written. */
function recordedIsolation(block) {
const writes = recordedWrites(block);
if (writes.length === 0) return null;
const last = writes[writes.length - 1];
const m = last.match(/--force-isolation\s+(\S+)/);
return m ? m[1] : null;
}
const DEGRADE_SITES = [
{
label: 'quick.md #1941 base-check degrade',
file: path.join(WORKFLOWS, 'quick.md'),
marker: '_QUICK_SHOULD_DEGRADE',
},
{
label: 'diagnose-issues.md #2649 base-check degrade',
file: path.join(WORKFLOWS, 'diagnose-issues.md'),
marker: '_DIAG_SHOULD_DEGRADE',
},
];
for (const site of DEGRADE_SITES) {
test(`${site.label} records none, not just the local variable`, () => {
const block = bashBlockContaining(site.file, site.marker);
assert.equal(
recordedIsolation(block),
'none',
`${site.label}: $ISOLATION degraded to none but the block never pushed that ` +
'through `query dispatch-isolation --force-isolation`. The sentinel still ' +
'asserts harness-worktree, so the #3045 PreToolUse guard denies the dispatch ' +
'with exit 2. Re-record immediately after the degrade.',
);
});
}
test('the harness detects a degrade that only reassigns (fail-first proof)', () => {
// Strip the re-record from the shipped block. If the assertion above can
// still pass against this, it is not testing what it claims to test.
const block = bashBlockContaining(
path.join(WORKFLOWS, 'quick.md'), '_QUICK_SHOULD_DEGRADE',
);
const preFix = block
.split('\n')
.filter(l => !l.includes('--force-isolation'))
.join('\n');
assert.notEqual(preFix, block, 'the shipped block must contain a --force-isolation re-record');
assert.equal(
recordedIsolation(preFix),
null,
'the pre-fix shape must record NOTHING — otherwise these tests prove nothing. ' +
'Note $ISOLATION is `none` in BOTH shapes: that is exactly why asserting the ' +
'local variable would have passed on the defect.',
);
});
test('every dispatch-site degrade block re-records before the block ends', () => {
// Coverage guard: a NEW degrade site added later cannot silently skip the
// re-record. Scans the shipped shell rather than a hand-listed set.
const offenders = [];
// DERIVED, not hand-listed. The previous revision named three files, so a
// degrade added anywhere else passed a check whose name claims "every"
// (#2728 round-7 review, Major 6). Scan every workflow and reference.
const scan = SCAN_ROOTS.flatMap(collectMarkdown);
assert.ok(
scan.length > 10,
`the degrade scan collected only ${scan.length} files — the walk is broken, not the tree`,
);
// Wave sites re-record PER PLAN, not inline: `execute-phase-wave-guard.md` and
// `execute-phase-between-wave-reset.md` degrade `USE_WORKTREES=false` together
// with `ISOLATION=none`, and `per-plan-worktree-gate.md` seeds
// `USE_WORKTREES_FOR_PLAN="$USE_WORKTREES"` and pushes `--force-isolation none`
// before each plan's dispatch. That is a real re-record, just delegated — so
// these two are exempt. The exemption is ASSERTED below rather than assumed,
// so deleting the delegate fails this test instead of silently widening a hole.
const DELEGATED_TO_PER_PLAN_GATE = new Set([
'msd-core/references/execute-phase-wave-guard.md',
'msd-core/references/execute-phase-between-wave-reset.md',
]);
const perPlanGate = readFileNormalized(
path.join(WORKFLOWS, 'execute-phase', 'steps', 'per-plan-worktree-gate.md'),
);
assert.ok(
perPlanGate.includes('USE_WORKTREES_FOR_PLAN="$USE_WORKTREES"') &&
perPlanGate.includes('--force-isolation none'),
'per-plan-worktree-gate.md no longer inherits USE_WORKTREES and re-records `none`, so the ' +
'wave degrade sites above are no longer covered by delegation — either restore the ' +
'delegate or make those sites re-record inline',
);
// #2486 note: the runtime-neutral diagnostics (health.md, settings.md)
// resolve isolation for a READ, not a dispatch, and deliberately name their
// state `INSPECTED_ISOLATION` rather than `ISOLATION`. That keeps them out
// of this scan by construction. An earlier revision exempted those two
// files instead; the exemption was file-wide, so any real dispatch block
// added to either one would have inherited it and escaped a guard whose
// name promises "every dispatch site" (#2486 review). Renaming the variable
// removes the carve-out entirely — a diagnostic that ever writes a literal
// `ISOLATION=none` is caught here like any other site.
for (const file of scan) {
const rel = path.relative(REPO_ROOT, file).replace(/\\/g, '/');
if (DELEGATED_TO_PER_PLAN_GATE.has(rel)) continue;
const text = readFileNormalized(file);
const lines = text.split('\n');
for (const fenced of scanFencedBlocks(lines)) {
if (fenced.closeLineIdx === -1) continue;
if ((fenced.infoString || '').trim() !== 'bash') continue;
const block = lines.slice(fenced.openLineIdx + 1, fenced.closeLineIdx).join('\n');
if (!/^\s*ISOLATION=none\s*$/m.test(block)) continue;
if (!block.includes('--force-isolation')) {
offenders.push(`${rel}:${fenced.openLineIdx + 1}`);
}
}
}
assert.deepEqual(
offenders,
[],
'these shell blocks degrade $ISOLATION to none without re-recording it through ' +
'`query dispatch-isolation --force-isolation` — the #3045 guard will deny the ' +
'resulting dispatch:\n' + offenders.join('\n'),
);
});
});
// ---------------------------------------------------------------------------
// Folded from tests/issue-2939-dispatch-flatten-maxdepth.test.cjs (H3 Wave 7,
// issue #3339). Two of the original nine cases (maxDepth:1 → true and
// maxDepth:2 → false, both with the full codex-like descriptor) were exact
// duplicates of the "Phase B: shouldFlattenDispatch — contract pin" describe
// above (lines ~1014-1029) and were dropped; the remaining seven exercise
// input shapes (maxDepth:-1 unbounded, nested:false, non-full toolkit,
// background:false/backgroundDispatch:false with maxDepth:5, maxDepth:0,
// and maxDepth missing/non-number) not covered elsewhere in this file.
// ---------------------------------------------------------------------------
{
const { describe: __foldDescribe } = require('node:test');
__foldDescribe('folded:issue-2939-dispatch-flatten-maxdepth', () => {
/** The live Codex-shaped descriptor (the #2939 bug input), with per-test depth overrides. */
function codexLike(overrides = {}) {
return {
namedDispatch: true,
nested: true,
maxDepth: 1,
background: true,
subagentToolkit: 'full',
backgroundDispatch: true,
...overrides,
};
}
test('maxDepthUnboundedBackgroundsUnchanged', () => {
// Row 3: maxDepth:-1 (unbounded) → background permitted, unchanged.
assert.strictEqual(
hi.shouldFlattenDispatch(codexLike({ maxDepth: -1 })),
false,
'maxDepth:-1 (unbounded) → background permitted (unchanged)',
);
});
test('nestedFalseFlattensRegardlessOfDepth', () => {
// Row 4 / acceptance #4: nested:false cannot host a nesting orchestrator →
// flatten regardless of maxDepth.
assert.strictEqual(
hi.shouldFlattenDispatch(codexLike({ nested: false, maxDepth: 5 })),
true,
'nested:false → flatten regardless of maxDepth',
);
});
test('nonFullToolkitFlattens', () => {
// Row 5 / acceptance #4: a non-full toolkit cannot delegate → flatten
// regardless of maxDepth.
assert.strictEqual(
hi.shouldFlattenDispatch(codexLike({ subagentToolkit: 'read-only', maxDepth: 5 })),
true,
'subagentToolkit!=="full" → flatten regardless of maxDepth',
);
});
test('backgroundFalseStillFlattens', () => {
// Row 6 / negative-space: background:false → flatten (the existing
// background-boolean fail-closed path is unchanged).
assert.strictEqual(
hi.shouldFlattenDispatch(codexLike({ background: false, maxDepth: 5 })),
true,
'background:false → flatten (unchanged)',
);
});
test('backgroundDispatchFalseStillFlattens', () => {
// Row 7 / negative-space: backgroundDispatch:false → flatten (unchanged).
assert.strictEqual(
hi.shouldFlattenDispatch(codexLike({ backgroundDispatch: false, maxDepth: 5 })),
true,
'backgroundDispatch:false → flatten (unchanged)',
);
});
test('maxDepth0Flattens', () => {
// Row 9: maxDepth:0 (zero depth budget) → flatten.
assert.strictEqual(
hi.shouldFlattenDispatch(codexLike({ maxDepth: 0 })),
true,
'maxDepth:0 → flatten (zero depth budget)',
);
});
test('maxDepthMissingFlattens', () => {
// Row 10: maxDepth missing/non-number → flatten (fail-closed on absent
// budget, mirrors degradationFor treating non-finite as 0).
assert.strictEqual(
hi.shouldFlattenDispatch(codexLike({ maxDepth: undefined })),
true,
'maxDepth missing → flatten (fail-closed)',
);
assert.strictEqual(
hi.shouldFlattenDispatch(codexLike({ maxDepth: 'deep' })),
true,
'maxDepth non-number → flatten (fail-closed)',
);
});
});
}