'use strict'; /** * Tests for model-resolver.cjs (ADR-857 phase 2f / #888). * * Covers: * - resolveModelInternal: model resolution across tiers + profile overrides * - resolveGranularityInternal + assertValidGranularityOverride * - resolveEffortInternal / resolveFastModeInternal * - resolveEffortForTier / nextEffort * - resolveModelForTier (dynamic routing) * - resolveModelPolicy (#49 provider-neutral presets) * - resolveTierEntry (#2517 runtime-aware tier resolution) * - shim identity: core.X === modelResolver.X for all 13 public symbols * - ADVERSARIAL: unknown agent types, invalid granularity/effort overrides, * runtime override edge cases */ process.env.GSD_TEST_MODE = '1'; const { describe, test, beforeEach, afterEach } = require('node:test'); const assert = require('node:assert/strict'); const fs = require('node:fs'); const path = require('node:path'); const os = require('node:os'); const { cleanup } = require('./helpers.cjs'); // ─── modules under test ─────────────────────────────────────────────────────── const modelResolver = require('../gsd-core/bin/lib/model-resolver.cjs'); const coreModule = require('../gsd-core/bin/lib/core.cjs'); const { resolveTierEntry, resolveModelPolicy, resolveModelInternal, VALID_GRANULARITIES, resolveGranularityInternal, assertValidGranularityOverride, resolveModelForTier, VALID_EFFORTS, EFFORT_SET, nextEffort, resolveEffortInternal, resolveFastModeInternal, resolveEffortForTier, } = modelResolver; // ─── helpers ────────────────────────────────────────────────────────────────── function makeTempProject(prefix = 'gsd-model-resolver-test-') { const tmpDir = fs.mkdtempSync(path.join(os.tmpdir(), prefix)); fs.mkdirSync(path.join(tmpDir, '.planning', 'phases'), { recursive: true }); return tmpDir; } function writeConfig(tmpDir, obj) { const configPath = path.join(tmpDir, '.planning', 'config.json'); fs.writeFileSync(configPath, JSON.stringify(obj, null, 2), 'utf-8'); } // ─── shim identity ──────────────────────────────────────────────────────────── describe('model-resolver shim identity', () => { test('core.resolveTierEntry === modelResolver.resolveTierEntry', () => { assert.strictEqual(coreModule.resolveTierEntry, modelResolver.resolveTierEntry); }); test('core.resolveModelPolicy === modelResolver.resolveModelPolicy', () => { assert.strictEqual(coreModule.resolveModelPolicy, modelResolver.resolveModelPolicy); }); test('core.resolveModelInternal === modelResolver.resolveModelInternal', () => { assert.strictEqual(coreModule.resolveModelInternal, modelResolver.resolveModelInternal); }); test('core.VALID_GRANULARITIES === modelResolver.VALID_GRANULARITIES (same Set object)', () => { assert.strictEqual(coreModule.VALID_GRANULARITIES, modelResolver.VALID_GRANULARITIES); }); test('core.resolveGranularityInternal === modelResolver.resolveGranularityInternal', () => { assert.strictEqual(coreModule.resolveGranularityInternal, modelResolver.resolveGranularityInternal); }); test('core.assertValidGranularityOverride === modelResolver.assertValidGranularityOverride', () => { assert.strictEqual(coreModule.assertValidGranularityOverride, modelResolver.assertValidGranularityOverride); }); test('core.resolveModelForTier === modelResolver.resolveModelForTier', () => { assert.strictEqual(coreModule.resolveModelForTier, modelResolver.resolveModelForTier); }); test('core.VALID_EFFORTS === modelResolver.VALID_EFFORTS (same Array object)', () => { assert.strictEqual(coreModule.VALID_EFFORTS, modelResolver.VALID_EFFORTS); }); test('core.EFFORT_SET === modelResolver.EFFORT_SET (same Set object)', () => { assert.strictEqual(coreModule.EFFORT_SET, modelResolver.EFFORT_SET); }); test('core.nextEffort === modelResolver.nextEffort', () => { assert.strictEqual(coreModule.nextEffort, modelResolver.nextEffort); }); test('core.resolveEffortInternal === modelResolver.resolveEffortInternal', () => { assert.strictEqual(coreModule.resolveEffortInternal, modelResolver.resolveEffortInternal); }); test('core.resolveFastModeInternal === modelResolver.resolveFastModeInternal', () => { assert.strictEqual(coreModule.resolveFastModeInternal, modelResolver.resolveFastModeInternal); }); test('core.resolveEffortForTier === modelResolver.resolveEffortForTier', () => { assert.strictEqual(coreModule.resolveEffortForTier, modelResolver.resolveEffortForTier); }); }); // ─── resolveModelInternal ───────────────────────────────────────────────────── describe('resolveModelInternal', () => { let tmpDir; beforeEach(() => { tmpDir = makeTempProject(); }); afterEach(() => { if (tmpDir) cleanup(tmpDir); tmpDir = null; }); test('no config -> balanced profile -> gsd-planner resolves to a string', () => { const model = resolveModelInternal(tmpDir, 'gsd-planner'); assert.ok(typeof model === 'string' && model.length > 0, `Expected non-empty string, got: ${JSON.stringify(model)}`); }); test('model_overrides takes precedence over everything else', () => { writeConfig(tmpDir, { model_overrides: { 'gsd-planner': 'my-custom-model' } }); assert.strictEqual(resolveModelInternal(tmpDir, 'gsd-planner'), 'my-custom-model'); }); test('model_profile=quality -> opus-class model for gsd-planner', () => { writeConfig(tmpDir, { model_profile: 'quality' }); const model = resolveModelInternal(tmpDir, 'gsd-planner'); // quality profile must resolve to a non-empty model string assert.ok(typeof model === 'string' && model.length > 0); }); test('model_profile=budget -> haiku-class model for gsd-planner', () => { writeConfig(tmpDir, { model_profile: 'budget' }); const model = resolveModelInternal(tmpDir, 'gsd-planner'); assert.ok(typeof model === 'string' && model.length > 0); }); test('resolve_model_ids=omit -> returns empty string', () => { writeConfig(tmpDir, { resolve_model_ids: 'omit' }); assert.strictEqual(resolveModelInternal(tmpDir, 'gsd-planner'), ''); }); test('unknown agent type, no config -> returns a non-empty string (fallback)', () => { const model = resolveModelInternal(tmpDir, 'completely-unknown-agent-xyz'); assert.ok(typeof model === 'string' && model.length > 0); }); test('model_profile=inherit -> returns "inherit"', () => { writeConfig(tmpDir, { model_profile: 'inherit' }); assert.strictEqual(resolveModelInternal(tmpDir, 'gsd-planner'), 'inherit'); }); test('models config per phase type overrides profile tier', () => { writeConfig(tmpDir, { models: { planning: 'opus' } }); // gsd-planner maps to planning phase type; config says opus // with no resolve_model_ids, should return 'opus' const model = resolveModelInternal(tmpDir, 'gsd-planner'); assert.strictEqual(model, 'opus'); }); test('models with invalid tier value falls through to profile', () => { writeConfig(tmpDir, { models: { planning: 'not-a-valid-tier' } }); // invalid tier value -> falls back to profile resolution const model = resolveModelInternal(tmpDir, 'gsd-planner'); assert.ok(typeof model === 'string' && model.length > 0); }); test('runtime non-claude + model_profile_overrides for runtime tier', () => { writeConfig(tmpDir, { runtime: 'codex', model_profile_overrides: { codex: { haiku: 'codex-mini', sonnet: 'codex', opus: 'codex-full' }, }, }); // gsd-codebase-mapper is light tier -> haiku in balanced profile const model = resolveModelInternal(tmpDir, 'gsd-codebase-mapper'); assert.ok(typeof model === 'string' && model.length > 0); }); }); // ─── resolveGranularityInternal ─────────────────────────────────────────────── describe('resolveGranularityInternal', () => { let tmpDir; beforeEach(() => { tmpDir = makeTempProject(); }); afterEach(() => { if (tmpDir) cleanup(tmpDir); tmpDir = null; }); test('no config, no override -> returns "standard"', () => { assert.strictEqual(resolveGranularityInternal(tmpDir, 'planning'), 'standard'); }); test('valid override wins over config', () => { writeConfig(tmpDir, { granularity: 'fine' }); assert.strictEqual(resolveGranularityInternal(tmpDir, 'planning', 'coarse'), 'coarse'); }); test('invalid override ignored, falls through to config', () => { writeConfig(tmpDir, { granularity: 'fine' }); assert.strictEqual(resolveGranularityInternal(tmpDir, 'planning', 'ultradetailed'), 'fine'); }); test('null override falls through to config', () => { writeConfig(tmpDir, { granularity: 'coarse' }); assert.strictEqual(resolveGranularityInternal(tmpDir, 'planning', null), 'coarse'); }); test('per-phase-type granularity beats global granularity', () => { writeConfig(tmpDir, { granularity: 'coarse', granularities: { planning: 'fine' }, }); assert.strictEqual(resolveGranularityInternal(tmpDir, 'planning'), 'fine'); }); test('planning.granularity nested config used as fallback', () => { writeConfig(tmpDir, { planning: { granularity: 'coarse' } }); assert.strictEqual(resolveGranularityInternal(tmpDir, null), 'coarse'); }); test('VALID_GRANULARITIES contains exactly coarse, standard, fine', () => { assert.ok(VALID_GRANULARITIES instanceof Set); assert.ok(VALID_GRANULARITIES.has('coarse')); assert.ok(VALID_GRANULARITIES.has('standard')); assert.ok(VALID_GRANULARITIES.has('fine')); assert.strictEqual(VALID_GRANULARITIES.size, 3); }); }); // ─── assertValidGranularityOverride ─────────────────────────────────────────── describe('assertValidGranularityOverride', () => { test('undefined -> no-op (no throw)', () => { assert.doesNotThrow(() => assertValidGranularityOverride(undefined, (msg) => { throw new Error(msg); }) ); }); test('null -> no-op (no throw)', () => { assert.doesNotThrow(() => assertValidGranularityOverride(null, (msg) => { throw new Error(msg); }) ); }); test('empty string -> no-op (no throw)', () => { assert.doesNotThrow(() => assertValidGranularityOverride('', (msg) => { throw new Error(msg); }) ); }); test('valid value "coarse" -> no-op (no throw)', () => { assert.doesNotThrow(() => assertValidGranularityOverride('coarse', (msg) => { throw new Error(msg); }) ); }); test('invalid value -> calls fail with descriptive message', () => { let caught = null; // fail is called with the message; we capture it by throwing so the test can inspect assert.throws( () => assertValidGranularityOverride('megafine', (msg) => { caught = msg; throw new Error(msg); }), (err) => { assert.ok(err.message.includes('megafine'), `error message should include the invalid value: ${err.message}`); assert.ok(err.message.includes('coarse') && err.message.includes('standard') && err.message.includes('fine'), `error message should list valid values: ${err.message}`); return true; } ); assert.ok(caught !== null, 'fail should have been called'); }); }); // ─── resolveEffortInternal ──────────────────────────────────────────────────── describe('resolveEffortInternal', () => { let tmpDir; beforeEach(() => { tmpDir = makeTempProject(); }); afterEach(() => { if (tmpDir) cleanup(tmpDir); tmpDir = null; }); test('no config -> gsd-planner (heavy) defaults to "xhigh" via tier default', () => { assert.strictEqual(resolveEffortInternal(tmpDir, 'gsd-planner'), 'xhigh'); }); test('invocation override beats everything', () => { writeConfig(tmpDir, { effort: { agent_overrides: { 'gsd-planner': 'low' } } }); assert.strictEqual(resolveEffortInternal(tmpDir, 'gsd-planner', { override: 'minimal' }), 'minimal'); }); test('agent_overrides beats routing_tier_defaults', () => { writeConfig(tmpDir, { effort: { routing_tier_defaults: { heavy: 'medium' }, agent_overrides: { 'gsd-planner': 'low' }, }, }); assert.strictEqual(resolveEffortInternal(tmpDir, 'gsd-planner'), 'low'); }); test('effort.default is final fallback when no tier default matches', () => { writeConfig(tmpDir, { effort: { default: 'minimal' } }); assert.strictEqual(resolveEffortInternal(tmpDir, 'completely-unknown-agent-xyz'), 'minimal'); }); test('VALID_EFFORTS and EFFORT_SET are consistent', () => { assert.ok(Array.isArray(VALID_EFFORTS)); assert.ok(EFFORT_SET instanceof Set); assert.strictEqual(EFFORT_SET.size, VALID_EFFORTS.length); for (const e of VALID_EFFORTS) { assert.ok(EFFORT_SET.has(e), `EFFORT_SET missing: ${e}`); } }); }); // ─── nextEffort ──────────────────────────────────────────────────────────────── describe('nextEffort', () => { test('minimal -> low', () => { assert.strictEqual(nextEffort('minimal'), 'low'); }); test('max -> max (clamp at ceiling)', () => { assert.strictEqual(nextEffort('max'), 'max'); }); test('high -> xhigh', () => { assert.strictEqual(nextEffort('high'), 'xhigh'); }); test('unknown effort -> null', () => { assert.strictEqual(nextEffort('turbo'), null); }); }); // ─── resolveFastModeInternal ────────────────────────────────────────────────── describe('resolveFastModeInternal', () => { let tmpDir; beforeEach(() => { tmpDir = makeTempProject(); }); afterEach(() => { if (tmpDir) cleanup(tmpDir); tmpDir = null; }); test('no config -> defaults to false', () => { assert.strictEqual(resolveFastModeInternal(tmpDir, 'gsd-planner'), false); }); test('opts.override=true beats config', () => { writeConfig(tmpDir, { fast_mode: { agent_overrides: { 'gsd-planner': false } } }); assert.strictEqual(resolveFastModeInternal(tmpDir, 'gsd-planner', { override: true }), true); }); test('fast_mode.enabled=true sets default for all agents', () => { writeConfig(tmpDir, { fast_mode: { enabled: true } }); assert.strictEqual(resolveFastModeInternal(tmpDir, 'gsd-planner'), true); }); test('agent_overrides beats enabled', () => { writeConfig(tmpDir, { fast_mode: { enabled: true, agent_overrides: { 'gsd-planner': false } }, }); assert.strictEqual(resolveFastModeInternal(tmpDir, 'gsd-planner'), false); }); test('unknown agent with no config -> false', () => { assert.strictEqual(resolveFastModeInternal(tmpDir, 'unknown-agent-xyz'), false); }); }); // ─── resolveEffortForTier ───────────────────────────────────────────────────── describe('resolveEffortForTier', () => { let tmpDir; beforeEach(() => { tmpDir = makeTempProject(); }); afterEach(() => { if (tmpDir) cleanup(tmpDir); tmpDir = null; }); test('dynamic_routing disabled -> attempt has no effect', () => { const base = resolveEffortForTier(tmpDir, 'gsd-planner', 0); const at1 = resolveEffortForTier(tmpDir, 'gsd-planner', 1); assert.strictEqual(base, at1); }); test('dynamic_routing enabled + escalate_on_failure=true + attempt=1 -> one step up', () => { writeConfig(tmpDir, { dynamic_routing: { enabled: true, tier_models: { light: 'haiku', standard: 'sonnet', heavy: 'opus' }, escalate_on_failure: true, max_escalations: 2, }, effort: { routing_tier_defaults: { light: 'low' } }, }); assert.strictEqual(resolveEffortForTier(tmpDir, 'gsd-codebase-mapper', 0), 'low'); assert.strictEqual(resolveEffortForTier(tmpDir, 'gsd-codebase-mapper', 1), 'medium'); }); test('escalation clamps at "max"', () => { writeConfig(tmpDir, { dynamic_routing: { enabled: true, tier_models: { light: 'haiku', standard: 'sonnet', heavy: 'opus' }, escalate_on_failure: true, max_escalations: 99, }, effort: { default: 'xhigh' }, }); assert.strictEqual(resolveEffortForTier(tmpDir, 'gsd-planner', 99), 'max'); }); }); // ─── resolveModelForTier ────────────────────────────────────────────────────── describe('resolveModelForTier', () => { let tmpDir; beforeEach(() => { tmpDir = makeTempProject(); }); afterEach(() => { if (tmpDir) cleanup(tmpDir); tmpDir = null; }); test('no dynamic_routing -> falls back to resolveModelInternal', () => { const fromForTier = resolveModelForTier(tmpDir, 'gsd-planner'); const fromInternal = resolveModelInternal(tmpDir, 'gsd-planner'); assert.strictEqual(fromForTier, fromInternal); }); test('model_overrides wins before dynamic routing logic', () => { writeConfig(tmpDir, { model_overrides: { 'gsd-planner': 'override-model' }, dynamic_routing: { enabled: true, tier_models: { light: 'haiku', standard: 'sonnet', heavy: 'opus' }, escalate_on_failure: true, max_escalations: 2, }, }); assert.strictEqual(resolveModelForTier(tmpDir, 'gsd-planner'), 'override-model'); }); test('dynamic_routing + tier_models + attempt=0 -> default tier model', () => { writeConfig(tmpDir, { dynamic_routing: { enabled: true, tier_models: { light: 'haiku-custom', standard: 'sonnet-custom', heavy: 'opus-custom' }, escalate_on_failure: true, max_escalations: 2, }, }); // gsd-codebase-mapper is 'light' tier assert.strictEqual(resolveModelForTier(tmpDir, 'gsd-codebase-mapper', 0), 'haiku-custom'); }); test('dynamic_routing + attempt=1 escalates tier', () => { writeConfig(tmpDir, { dynamic_routing: { enabled: true, tier_models: { light: 'haiku-custom', standard: 'sonnet-custom', heavy: 'opus-custom' }, escalate_on_failure: true, max_escalations: 2, }, }); // gsd-codebase-mapper light -> attempt=1 -> standard assert.strictEqual(resolveModelForTier(tmpDir, 'gsd-codebase-mapper', 1), 'sonnet-custom'); }); }); // ─── resolveModelPolicy ─────────────────────────────────────────────────────── describe('resolveModelPolicy (#49)', () => { test('null policy -> null', () => { assert.strictEqual(resolveModelPolicy(null, 'sonnet'), null); }); test('no provider -> null', () => { assert.strictEqual(resolveModelPolicy({ budget: 'medium' }, 'sonnet'), null); }); test('generic provider: tier=opus -> reads policy.high', () => { const result = resolveModelPolicy( { provider: 'generic', high: 'my-high-model', medium: 'my-medium', low: 'my-low' }, 'opus' ); assert.strictEqual(result, 'my-high-model'); }); test('generic provider: tier=sonnet -> reads policy.medium', () => { const result = resolveModelPolicy( { provider: 'generic', high: 'hi', medium: 'med', low: 'lo' }, 'sonnet' ); assert.strictEqual(result, 'med'); }); test('generic provider: tier=haiku -> reads policy.low', () => { const result = resolveModelPolicy( { provider: 'generic', high: 'hi', medium: 'med', low: 'lo' }, 'haiku' ); assert.strictEqual(result, 'lo'); }); test('custom provider same as generic', () => { const result = resolveModelPolicy( { provider: 'custom', medium: 'custom-sonnet' }, 'sonnet' ); assert.strictEqual(result, 'custom-sonnet'); }); test('runtime_tiers override takes precedence over provider', () => { const result = resolveModelPolicy( { provider: 'generic', high: 'generic-hi', medium: 'generic-med', low: 'generic-lo', runtime: 'codex', runtime_tiers: { codex: { sonnet: 'codex-sonnet-override' } }, }, 'sonnet' ); assert.strictEqual(result, 'codex-sonnet-override'); }); test('unknown tier for generic -> null', () => { const result = resolveModelPolicy( { provider: 'generic', high: 'hi', medium: 'med', low: 'lo' }, 'unknown-tier' ); assert.strictEqual(result, null); }); }); // ─── resolveTierEntry ──────────────────────────────────────────────────────── describe('resolveTierEntry (#2517)', () => { test('null runtime -> null', () => { assert.strictEqual(resolveTierEntry({ runtime: null, tier: 'sonnet', overrides: null }), null); }); test('null tier -> null', () => { assert.strictEqual(resolveTierEntry({ runtime: 'codex', tier: null, overrides: null }), null); }); test('unknown runtime + unknown tier, no overrides -> null', () => { assert.strictEqual(resolveTierEntry({ runtime: 'totally-unknown-runtime-xyz', tier: 'totally-unknown-tier', overrides: null, }), null); }); test('user override as string expands to { model: string }', () => { const entry = resolveTierEntry({ runtime: 'codex', tier: 'sonnet', overrides: { codex: { sonnet: 'my-custom-codex-model' } }, }); assert.ok(entry !== null); assert.strictEqual(entry.model, 'my-custom-codex-model'); }); test('user override as object merged with builtin', () => { const entry = resolveTierEntry({ runtime: 'codex', tier: 'sonnet', overrides: { codex: { sonnet: { model: 'user-model', extra: 'value' } } }, }); assert.ok(entry !== null); assert.strictEqual(entry.model, 'user-model'); assert.strictEqual(entry['extra'], 'value'); }); }); // ─── ADVERSARIAL ───────────────────────────────────────────────────────────── describe('ADVERSARIAL: edge cases', () => { let tmpDir; beforeEach(() => { tmpDir = makeTempProject(); }); afterEach(() => { if (tmpDir) cleanup(tmpDir); tmpDir = null; }); test('resolveModelInternal: unknown agent + model_profile=quality -> "opus" fallback', () => { writeConfig(tmpDir, { model_profile: 'quality' }); const model = resolveModelInternal(tmpDir, 'completely-unknown-agent'); assert.strictEqual(model, 'opus'); }); test('resolveModelInternal: unknown agent + model_profile=budget -> "haiku" fallback', () => { writeConfig(tmpDir, { model_profile: 'budget' }); assert.strictEqual(resolveModelInternal(tmpDir, 'unknown-agent'), 'haiku'); }); test('resolveGranularityInternal: empty override "" is treated as no override', () => { writeConfig(tmpDir, { granularity: 'fine' }); assert.strictEqual(resolveGranularityInternal(tmpDir, 'planning', ''), 'fine'); }); test('assertValidGranularityOverride: "ultrawide" is invalid -> fail called', () => { let errorMsg = null; assert.throws( () => assertValidGranularityOverride('ultrawide', (msg) => { errorMsg = msg; throw new Error(msg); }), (err) => { assert.ok(err.message.includes('ultrawide'), `error should mention the invalid value: ${err.message}`); return true; } ); assert.ok(errorMsg !== null, 'fail should have been called'); assert.ok(errorMsg.includes('ultrawide'), `error message should include 'ultrawide': ${errorMsg}`); }); test('resolveEffortInternal: invalid override "turbo" falls through to tier default', () => { const result = resolveEffortInternal(tmpDir, 'gsd-planner', { override: 'turbo' }); // gsd-planner is heavy -> tier default xhigh assert.strictEqual(result, 'xhigh'); }); test('resolveFastModeInternal: string "true" override is not accepted (must be boolean)', () => { const result = resolveFastModeInternal(tmpDir, 'gsd-planner', { override: 'true' }); // string is not boolean -> falls through to default false assert.strictEqual(result, false); }); test('resolveEffortInternal: effort block is non-object string -> uses tier default', () => { writeConfig(tmpDir, { effort: 'bad-value' }); const result = resolveEffortInternal(tmpDir, 'gsd-planner'); assert.ok(EFFORT_SET.has(result), `Expected valid effort, got: ${result}`); }); test('resolveModelForTier: unknown agent with dynamic routing -> resolveModelInternal fallback', () => { writeConfig(tmpDir, { dynamic_routing: { enabled: true, tier_models: { light: 'haiku', standard: 'sonnet', heavy: 'opus' }, escalate_on_failure: true, max_escalations: 1, }, }); // unknown agent has no defaultTier -> falls back to resolveModelInternal const fromForTier = resolveModelForTier(tmpDir, 'unknown-agent-xyz'); const fromInternal = resolveModelInternal(tmpDir, 'unknown-agent-xyz'); assert.strictEqual(fromForTier, fromInternal); }); test('resolveTierEntry: runtime override with non-string, non-object value -> no model set', () => { const entry = resolveTierEntry({ runtime: 'codex', tier: 'sonnet', overrides: { codex: { sonnet: 42 } }, }); // numeric 42 is neither string nor object -> treated as truthy userEntry=42 (not expanded) // result will have whatever builtins exist + the override // Key requirement: does not crash assert.ok(entry !== null || entry === null, 'should not throw'); }); test('resolveModelPolicy: non-object policy -> null', () => { assert.strictEqual(resolveModelPolicy('string-policy', 'sonnet'), null); }); test('resolveModelPolicy: null tier -> null', () => { assert.strictEqual(resolveModelPolicy({ provider: 'generic', medium: 'sonnet' }, null), null); }); test('resolveEffortForTier: max_escalations=0 caps escalation', () => { writeConfig(tmpDir, { dynamic_routing: { enabled: true, tier_models: { light: 'haiku', standard: 'sonnet', heavy: 'opus' }, escalate_on_failure: true, max_escalations: 0, }, effort: { routing_tier_defaults: { light: 'low' } }, }); const at0 = resolveEffortForTier(tmpDir, 'gsd-codebase-mapper', 0); const at1 = resolveEffortForTier(tmpDir, 'gsd-codebase-mapper', 1); // max_escalations=0 means no escalation allowed even at attempt=1 assert.strictEqual(at0, at1); }); });