multilingual-absa / .opencode /gsd-core /bin /lib /config-loader.cjs
Aryan Mishra
feat: initial commit - Multilingual ABSA project setup with 6 phases, 36 requirements
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"use strict";
/**
* Config Loader β€” Project configuration loading
*
* ADR-857 rollout phase 2e: extracted from core.cts (issue #885).
* Owns project configuration loading: reads `.planning/config.json`,
* merges built-in defaults (`CONFIG_DEFAULTS`/`CANONICAL_CONFIG_DEFAULTS`),
* normalizes legacy keys, applies the active-workstream overlay, validates
* against the config schema, and warns on unknown keys/profile overrides.
* Behaviour is preserved byte-for-behaviour from the prior location; only
* the module boundary moved. The core.cjs re-export spine was retired in
* epic #1267; callers import loadConfig from config-loader.cjs directly.
*
* Dependencies (leaf modules only):
* - node:fs / node:os / node:path (stdlib)
* - ./configuration.cjs (normalizeLegacyKeys, CONFIG_DEFAULTS as CANONICAL_CONFIG_DEFAULTS)
* - ./config-schema.cjs (VALID_CONFIG_KEYS, DYNAMIC_KEY_PATTERNS)
* - ./planning-workspace.cjs (planningDir, planningRoot)
* - ./shell-command-projection.cjs (execGit, platformWriteSync, platformReadSync)
* - ./core-utils.cjs (detectSubRepos)
* - ./model-catalog.cjs (KNOWN_RUNTIMES, KNOWN_PROVIDERS)
*/
var __importDefault = (this && this.__importDefault) || function (mod) {
return (mod && mod.__esModule) ? mod : { "default": mod };
};
const node_fs_1 = __importDefault(require("node:fs"));
const node_os_1 = __importDefault(require("node:os"));
const node_path_1 = __importDefault(require("node:path"));
const shell_command_projection_cjs_1 = require("./shell-command-projection.cjs");
// eslint-disable-next-line @typescript-eslint/no-require-imports
const planningWorkspace = require("./planning-workspace.cjs");
const { planningDir, planningRoot } = planningWorkspace;
// eslint-disable-next-line @typescript-eslint/no-require-imports
const coreUtilsModule = require("./core-utils.cjs");
const { detectSubRepos } = coreUtilsModule;
// ─── Configuration Module (generated CJS mirror) ────────────────────────────
const configuration_cjs_1 = require("./configuration.cjs");
// eslint-disable-next-line @typescript-eslint/no-require-imports
const configSchema = require("./config-schema.cjs");
const { VALID_CONFIG_KEYS, DYNAMIC_KEY_PATTERNS, isCentralConfigKey: _isCentralConfigKeyFn } = configSchema;
const model_catalog_cjs_1 = require("./model-catalog.cjs");
// ─── Federated Config (ADR-857 phase 3b) ─────────────────────────────────────
// eslint-disable-next-line @typescript-eslint/no-require-imports
const federatedConfigModule = require("./federated-config.cjs");
const { mergeFederatedConfig } = federatedConfigModule;
// The capability-registry.cjs is generated and lives in the same gsd-core/bin/lib/ output dir.
// Both config-loader.cjs and capability-registry.cjs land in gsd-core/bin/lib/ at build time.
// eslint-disable-next-line @typescript-eslint/no-require-imports, @typescript-eslint/no-unsafe-assignment
const _capabilityRegistryReal = require('./capability-registry.cjs');
// Module-level registry reference. Defaults to the real generated registry.
// Overridable for tests via _setFederatedRegistryForTests.
let _capabilityRegistry = _capabilityRegistryReal;
/** Test-only seam: inject a synthetic registry. Call _resetFederatedRegistryForTests() to restore. */
function _setFederatedRegistryForTests(reg) {
_capabilityRegistry = reg;
}
/** Test-only seam: restore the real generated registry. */
function _resetFederatedRegistryForTests() {
_capabilityRegistry = _capabilityRegistryReal;
}
// ─── File & Config utilities ──────────────────────────────────────────────────
/**
* Canonical config defaults β€” flat-key projection for CJS consumers.
*
* Cycle 4: Values are sourced from CANONICAL_CONFIG_DEFAULTS (the nested
* manifest loaded by configuration.generated.cjs). The flat shape is
* preserved here so legacy consumers (config.cjs, verify.cjs, tests that
* regex-parse this source) continue to work without changes. The key names
* and the `const CONFIG_DEFAULTS = {` pattern are intentionally kept.
*
* Mapping notes:
* - workflow.plan_check β†’ plan_checker (CJS flat name; verify.cjs uses this)
* - git.* β†’ flat git keys (branching_strategy, templates)
* - workflow.* β†’ flat names (research, verifier, …)
* - planning.sub_repos β†’ sub_repos
* - planning.commit_docs / search_gitignored β†’ top-level flat keys
*/
// CANONICAL_CONFIG_DEFAULTS is typed as Record<string, unknown> from configuration.cjs;
// we use a typed accessor to avoid repeated casts.
function _getConfigDefault(key) {
return (configuration_cjs_1.CONFIG_DEFAULTS)[key];
}
function _getNestedConfigDefault(section, field) {
const sec = (configuration_cjs_1.CONFIG_DEFAULTS)[section];
if (sec && typeof sec === 'object' && !Array.isArray(sec)) {
return sec[field];
}
return undefined;
}
const CONFIG_DEFAULTS = {
model_profile: _getConfigDefault('model_profile'),
commit_docs: _getConfigDefault('commit_docs'),
search_gitignored: _getConfigDefault('search_gitignored'),
branching_strategy: _getNestedConfigDefault('git', 'branching_strategy'),
phase_branch_template: _getNestedConfigDefault('git', 'phase_branch_template'),
milestone_branch_template: _getNestedConfigDefault('git', 'milestone_branch_template'),
quick_branch_template: _getNestedConfigDefault('git', 'quick_branch_template'),
research: _getNestedConfigDefault('workflow', 'research'),
plan_checker: _getNestedConfigDefault('workflow', 'plan_check'), // flat CJS name maps to workflow.plan_check
verifier: _getNestedConfigDefault('workflow', 'verifier'),
nyquist_validation: _getNestedConfigDefault('workflow', 'nyquist_validation'),
ai_integration_phase: _getNestedConfigDefault('workflow', 'ai_integration_phase'),
parallelization: _getConfigDefault('parallelization'),
brave_search: _getConfigDefault('brave_search'),
firecrawl: _getConfigDefault('firecrawl'),
exa_search: _getConfigDefault('exa_search'),
text_mode: _getNestedConfigDefault('workflow', 'text_mode'),
sub_repos: _getNestedConfigDefault('planning', 'sub_repos'),
resolve_model_ids: _getConfigDefault('resolve_model_ids'),
context_window: _getConfigDefault('context_window'),
phase_naming: _getConfigDefault('phase_naming'),
project_code: _getConfigDefault('project_code'),
subagent_timeout: _getNestedConfigDefault('workflow', 'subagent_timeout'),
security_enforcement: _getNestedConfigDefault('workflow', 'security_enforcement'),
security_asvs_level: _getNestedConfigDefault('workflow', 'security_asvs_level'),
security_block_on: _getNestedConfigDefault('workflow', 'security_block_on'),
post_planning_gaps: _getNestedConfigDefault('workflow', 'post_planning_gaps'),
};
/**
* Deep-merge two plain config objects. `overlay` wins on key conflict.
* Explicit `null` in overlay overrides base (null means "unset this key").
* Arrays are replaced, not merged. Non-object primitives use overlay value.
*
* Note: `undefined` in overlay is treated as "no value provided" and falls
* back to base (preserves inheritance). Explicit `null` overrides base.
*/
function _deepMergeConfig(base, overlay) {
if (overlay === null || overlay === undefined)
return overlay;
if (typeof base !== 'object' || typeof overlay !== 'object')
return overlay;
const result = { ...base };
for (const key of Object.keys(overlay)) {
if (overlay[key] !== null && typeof overlay[key] === 'object' && !Array.isArray(overlay[key])) {
result[key] = _deepMergeConfig((base[key] ?? {}), overlay[key]);
}
else {
result[key] = overlay[key];
}
}
return result;
}
// Module-level deduplication for unknown-key warnings (#3523).
// A single `init phase-op N` call invokes loadConfig more than once; this Set
// prevents the same warning from being echoed on each invocation.
const _warnedUnknownConfigKeys = new Set();
// ─── Git utilities ────────────────────────────────────────────────────────────
const _gitIgnoredCache = new Map();
function isGitIgnored(cwd, targetPath) {
const key = cwd + '::' + targetPath;
if (_gitIgnoredCache.has(key))
return _gitIgnoredCache.get(key);
// --no-index checks .gitignore rules regardless of whether the file is tracked.
const result = (0, shell_command_projection_cjs_1.execGit)(['check-ignore', '-q', '--no-index', '--', targetPath], { cwd });
const ignored = result.exitCode === 0;
_gitIgnoredCache.set(key, ignored);
return ignored;
}
// ─── Model alias resolution ───────────────────────────────────────────────────
const RUNTIME_OVERRIDE_TIERS = new Set(['opus', 'sonnet', 'haiku']);
const _warnedConfigKeys = new Set();
function _warnUnknownProfileOverrides(parsed, configLabel) {
if (!parsed || typeof parsed !== 'object')
return;
const runtime = parsed['runtime'];
if (runtime && typeof runtime === 'string' && !(model_catalog_cjs_1.KNOWN_RUNTIMES).has(runtime)) {
const key = `${configLabel}::runtime::${runtime}`;
if (!_warnedConfigKeys.has(key)) {
_warnedConfigKeys.add(key);
try {
process.stderr.write(`gsd: warning β€” config key "runtime" has unknown value "${runtime}". ` +
`Known runtimes: ${[...(model_catalog_cjs_1.KNOWN_RUNTIMES)].sort().join(', ')}. ` +
`Resolution will fall back to safe defaults. (#2517)\n`);
}
catch { /* stderr might be closed in some test harnesses */ }
}
}
const overrides = parsed['model_profile_overrides'];
if (overrides && typeof overrides === 'object' && !Array.isArray(overrides)) {
for (const [overrideRuntime, tierMap] of Object.entries(overrides)) {
if (!(model_catalog_cjs_1.KNOWN_RUNTIMES).has(overrideRuntime)) {
const key = `${configLabel}::override-runtime::${overrideRuntime}`;
if (!_warnedConfigKeys.has(key)) {
_warnedConfigKeys.add(key);
try {
process.stderr.write(`gsd: warning β€” model_profile_overrides.${overrideRuntime}.* uses ` +
`unknown runtime "${overrideRuntime}". Known runtimes: ` +
`${[...(model_catalog_cjs_1.KNOWN_RUNTIMES)].sort().join(', ')}. (#2517)\n`);
}
catch { /* ok */ }
}
}
if (!tierMap || typeof tierMap !== 'object')
continue;
for (const tierName of Object.keys(tierMap)) {
if (!RUNTIME_OVERRIDE_TIERS.has(tierName)) {
const key = `${configLabel}::override-tier::${overrideRuntime}.${tierName}`;
if (!_warnedConfigKeys.has(key)) {
_warnedConfigKeys.add(key);
try {
process.stderr.write(`gsd: warning β€” model_profile_overrides.${overrideRuntime}.${tierName} ` +
`uses unknown tier "${tierName}". Allowed tiers: opus, sonnet, haiku. (#2517)\n`);
}
catch { /* ok */ }
}
}
}
}
}
const policy = parsed['model_policy'];
if (policy && typeof policy === 'object' && !Array.isArray(policy)) {
const policyObj = policy;
const provider = policyObj['provider'];
const _POLICY_SENTINEL_PROVIDERS = new Set(['generic', 'custom']);
if (provider && typeof provider === 'string' &&
!(model_catalog_cjs_1.KNOWN_PROVIDERS).has(provider) && !_POLICY_SENTINEL_PROVIDERS.has(provider)) {
const pkey = `${configLabel}::model_policy::provider::${provider}`;
if (!_warnedConfigKeys.has(pkey)) {
_warnedConfigKeys.add(pkey);
try {
process.stderr.write(`gsd: warning β€” model_policy.provider has unknown value "${provider}". ` +
`Known providers: ${[...(model_catalog_cjs_1.KNOWN_PROVIDERS)].sort().join(', ')}. ` +
`For manual model IDs use provider="custom". (#49)\n`);
}
catch { /* ok */ }
}
}
const rtOverrides = policyObj['runtime_tiers'];
if (rtOverrides && typeof rtOverrides === 'object' && !Array.isArray(rtOverrides)) {
for (const [pruntime, tierMap] of Object.entries(rtOverrides)) {
if (!(model_catalog_cjs_1.KNOWN_RUNTIMES).has(pruntime)) {
const key = `${configLabel}::model_policy.runtime_tiers::${pruntime}`;
if (!_warnedConfigKeys.has(key)) {
_warnedConfigKeys.add(key);
try {
process.stderr.write(`gsd: warning β€” model_policy.runtime_tiers.${pruntime}.* uses ` +
`unknown runtime "${pruntime}". Known runtimes: ` +
`${[...(model_catalog_cjs_1.KNOWN_RUNTIMES)].sort().join(', ')}. (#49)\n`);
}
catch { /* ok */ }
}
}
if (!tierMap || typeof tierMap !== 'object')
continue;
for (const tierName of Object.keys(tierMap)) {
if (!RUNTIME_OVERRIDE_TIERS.has(tierName)) {
const key = `${configLabel}::model_policy.runtime_tiers::${pruntime}.${tierName}`;
if (!_warnedConfigKeys.has(key)) {
_warnedConfigKeys.add(key);
try {
process.stderr.write(`gsd: warning β€” model_policy.runtime_tiers.${pruntime}.${tierName} ` +
`uses unknown tier "${tierName}". Allowed: opus, sonnet, haiku. (#49)\n`);
}
catch { /* ok */ }
}
}
}
}
}
}
}
// Internal helper exposed for tests so per-process warning state can be reset
// between cases that intentionally exercise the warning path repeatedly.
function _resetRuntimeWarningCacheForTests() {
_warnedConfigKeys.clear();
}
// ─── FIX 2: Federated overlay helpers ────────────────────────────────────────
/**
* Apply federated key values into a mutable config object.
* Handles N-level dotted keys (e.g. "a.b.c" β†’ obj.a.b.c).
* Only adds keys that are not already present (does not clobber).
* Inline prototype-pollution guards at every segment.
*/
function _applyFederatedValues(obj, values, validKeys) {
for (const dottedKey of validKeys) {
// S2: inline literal guard on full key
if (dottedKey === '__proto__' || dottedKey === 'constructor' || dottedKey === 'prototype')
continue;
const parts = dottedKey.split('.');
if (parts.length === 1) {
const topKey = parts[0];
if (topKey !== '__proto__' && topKey !== 'constructor' && topKey !== 'prototype') {
if (!Object.prototype.hasOwnProperty.call(obj, topKey)) {
obj[topKey] = values[dottedKey];
}
}
}
else {
// N-level nested key: traverse/create intermediate objects
let cur = obj;
let ok = true;
for (let i = 0; i < parts.length - 1; i++) {
const seg = parts[i];
// S2: inline literal guard on each segment
if (seg === '__proto__' || seg === 'constructor' || seg === 'prototype') {
ok = false;
break;
}
if (!Object.prototype.hasOwnProperty.call(cur, seg) || cur[seg] === null) {
cur[seg] = {};
}
if (typeof cur[seg] !== 'object' || Array.isArray(cur[seg])) {
ok = false;
break;
}
cur = cur[seg];
}
if (!ok)
continue;
const leafKey = parts[parts.length - 1];
// S2: inline literal guard on leaf
if (leafKey === '__proto__' || leafKey === 'constructor' || leafKey === 'prototype')
continue;
if (!Object.prototype.hasOwnProperty.call(cur, leafKey)) {
cur[leafKey] = values[dottedKey];
}
}
}
}
/**
* FIX 2: Apply the federated overlay to a base config object.
* When validKeys is empty (current registry β€” all keys are central),
* returns the baseConfig UNCHANGED (true no-op, preserves reference identity).
* When validKeys is non-empty, applies values into a shallow clone to avoid
* mutating shared CONFIG_DEFAULTS/module constants.
*/
function _applyFederatedOverlay(baseConfig, userConfig) {
const _fedRegistrySchema = _capabilityRegistry.configSchema;
if (!_fedRegistrySchema || typeof _fedRegistrySchema !== 'object')
return baseConfig;
const _fedOverlay = mergeFederatedConfig({
configSchema: _fedRegistrySchema,
isCentralKey: (key) => _isCentralConfigKeyFn(key),
userConfig,
});
// True no-op: if no federated keys, return UNCHANGED (byte-identical, no clone)
if (_fedOverlay.validKeys.length === 0)
return baseConfig;
// Clone shallowly to avoid mutating shared constants, then apply nested values
const cloned = { ...baseConfig };
_applyFederatedValues(cloned, _fedOverlay.values, _fedOverlay.validKeys);
return cloned;
}
function loadConfig(cwd, options = {}) {
const activeWorkstream = Object.prototype.hasOwnProperty.call(options, 'workstream')
? options['workstream']
: (options['workstreamContext'] && Object.prototype.hasOwnProperty.call(options['workstreamContext'], 'ws'))
? options['workstreamContext']['ws']
: (process.env['GSD_WORKSTREAM'] || null);
// When GSD_WORKSTREAM is set, load root config first so workstream config
// can inherit from it. This prevents users from duplicating model_overrides,
// workflow.*, etc. across every workstream config (#2714).
const ws = typeof activeWorkstream === 'string' ? activeWorkstream : (activeWorkstream === null ? null : null);
// #315 β€” per-call lazy memo: all three detection sites inside this loadConfig
// call operate on the same cwd and the subrepo set cannot change mid-call, so
// a single scan is sufficient. The memo is scoped to THIS call (not module-level)
// so separate loadConfig invocations each get a fresh scan.
let cachedSubRepos;
const getDetectedSubRepos = () => {
if (cachedSubRepos === undefined)
cachedSubRepos = detectSubRepos(cwd);
// Return a copy: original detectSubRepos returned a fresh array per call,
// so each site must keep an independent array (avoid cross-site aliasing).
return cachedSubRepos.slice();
};
let rootParsed = null;
if (ws) {
const rootConfigPath = node_path_1.default.join(planningRoot(cwd), 'config.json');
try {
const raw = (0, shell_command_projection_cjs_1.platformReadSync)(rootConfigPath);
if (raw === null)
throw new Error('missing');
rootParsed = JSON.parse(raw);
// Cycle 4: delegate all legacy-key normalization to the Configuration Module.
const { parsed: rootNormalized, normalizations: rootNorms } = (0, configuration_cjs_1.normalizeLegacyKeys)(rootParsed);
if (rootNorms.length > 0) {
// Resolve filesystem-dependent normalizations (multiRepo β†’ planning.sub_repos)
for (const norm of rootNorms) {
if (norm.requiresFilesystem && !rootNormalized.planning?.['sub_repos']) {
const detected = getDetectedSubRepos();
if (detected.length > 0) {
if (!rootNormalized.planning)
rootNormalized.planning = {};
rootNormalized.planning['sub_repos'] = detected;
rootNormalized.planning['commit_docs'] = false;
}
}
}
rootParsed = rootNormalized;
try {
(0, shell_command_projection_cjs_1.platformWriteSync)(rootConfigPath, JSON.stringify(rootParsed, null, 2));
}
catch { /* ignore */ }
}
else {
rootParsed = rootNormalized;
}
}
catch {
// Root config missing or unparseable β€” workstream config stands alone
}
}
const configPath = node_path_1.default.join(planningDir(cwd, ws), 'config.json');
const defaults = CONFIG_DEFAULTS;
try {
const raw = (0, shell_command_projection_cjs_1.platformReadSync)(configPath);
if (raw === null)
throw new Error('missing');
// `fileData` is the parsed content of the config.json file on disk β€” used
// for migrations and writes so we never persist merged values back to disk.
const fileData = JSON.parse(raw);
// Cycle 4: Single normalizeLegacyKeys call replaces all four inline migration
// blocks (depth→granularity, multiRepo→planning.sub_repos, sub_repos→planning.sub_repos,
// branching_strategy→git.branching_strategy). The Module is pure (no I/O); disk
// writeback is handled below with the existing platformWriteSync pattern.
let configDirty = false;
{
const { parsed: normalized, normalizations } = (0, configuration_cjs_1.normalizeLegacyKeys)(fileData);
if (normalizations.length > 0) {
// Merge normalized values back into fileData (mutation-in-place for legacy code below)
Object.keys(fileData).forEach(k => delete fileData[k]);
Object.assign(fileData, normalized);
configDirty = true;
// Resolve filesystem-dependent normalizations (multiRepo β†’ planning.sub_repos).
for (const norm of normalizations) {
if (norm.requiresFilesystem && !fileData.planning?.['sub_repos']) {
const detected = getDetectedSubRepos();
if (detected.length > 0) {
if (!fileData.planning)
fileData.planning = {};
fileData.planning['sub_repos'] = detected;
fileData.planning['commit_docs'] = false;
}
}
}
}
}
// Keep planning.sub_repos in sync with actual filesystem
const currentSubRepos = fileData.planning?.['sub_repos'] || [];
if (Array.isArray(currentSubRepos) && currentSubRepos.length > 0) {
const detected = getDetectedSubRepos();
if (detected.length > 0) {
const sorted = [...currentSubRepos].sort();
if (JSON.stringify(sorted) !== JSON.stringify(detected)) {
if (!fileData.planning)
fileData.planning = {};
fileData.planning['sub_repos'] = detected;
configDirty = true;
}
}
}
// Persist sub_repos changes (migration or sync) β€” write only the on-disk
// file contents, never the merged result, to avoid polluting workstream configs.
if (configDirty) {
try {
(0, shell_command_projection_cjs_1.platformWriteSync)(configPath, JSON.stringify(fileData, null, 2));
}
catch { /* ignore */ }
}
// Now apply root→workstream inheritance. `parsed` is the effective config
// used for value extraction below; fileData is kept for disk writes only.
const parsed = rootParsed
? (_deepMergeConfig(rootParsed, fileData) ?? fileData)
: fileData;
// Warn about unrecognized top-level keys so users don't silently lose config.
const KNOWN_TOP_LEVEL = new Set([
// Extract top-level key names from dot-notation paths (e.g., 'workflow.research' β†’ 'workflow')
...[...VALID_CONFIG_KEYS].map((k) => k.split('.')[0]),
// Dynamic-pattern top-level containers (e.g. review, model_profile_overrides)
...DYNAMIC_KEY_PATTERNS.map(p => p.topLevel),
// Internal keys loadConfig reads but config-set doesn't expose
'model_overrides', 'context_window', 'resolve_model_ids', 'claude_md_path', 'effort', 'fast_mode',
// Deprecated keys (still accepted for migration, not in config-set)
'depth', 'multiRepo', 'branching_strategy', 'research',
]);
// FIX 3: Compute federated overlay BEFORE the unknown-key warning, so that
// federated top-level keys are added to KNOWN_TOP_LEVEL before the check runs.
// This is hoisted out of the try-catch below so validKeys are available here.
let _preWarningFedValidKeys = [];
try {
const _fedRegistrySchemaEarly = _capabilityRegistry.configSchema;
if (_fedRegistrySchemaEarly && typeof _fedRegistrySchemaEarly === 'object') {
const _earlyOverlay = mergeFederatedConfig({
configSchema: _fedRegistrySchemaEarly,
isCentralKey: (key) => _isCentralConfigKeyFn(key),
userConfig: parsed,
});
_preWarningFedValidKeys = _earlyOverlay.validKeys;
for (const dottedKey of _preWarningFedValidKeys) {
const topKey = dottedKey.split('.')[0];
if (topKey !== '__proto__' && topKey !== 'constructor' && topKey !== 'prototype') {
KNOWN_TOP_LEVEL.add(topKey);
}
}
}
}
catch {
// Defensive: if registry access fails here, proceed without pre-warning keys
}
const unknownKeys = Object.keys(parsed).filter(k => !KNOWN_TOP_LEVEL.has(k));
if (unknownKeys.length > 0) {
const warnKey = unknownKeys.join(',');
if (!_warnedUnknownConfigKeys.has(warnKey)) {
_warnedUnknownConfigKeys.add(warnKey);
process.stderr.write(`gsd-tools: warning: unknown config key(s) in .planning/config.json: ${unknownKeys.join(', ')} β€” these will be ignored\n`);
}
}
// #2517 β€” Validate runtime/tier values
_warnUnknownProfileOverrides(parsed, '.planning/config.json');
const get = (key, nested) => {
if (parsed[key] !== undefined)
return parsed[key];
if (nested && parsed[nested.section] && typeof parsed[nested.section] === 'object' && parsed[nested.section] !== null) {
const sec = parsed[nested.section];
if (sec[nested.field] !== undefined) {
return sec[nested.field];
}
}
return undefined;
};
const parallelization = (() => {
const val = get('parallelization');
if (typeof val === 'boolean')
return val;
if (typeof val === 'object' && val !== null && 'enabled' in (val))
return val['enabled'];
return defaults.parallelization;
})();
const _baseConfig = {
model_profile: get('model_profile') ?? defaults.model_profile,
commit_docs: (() => {
const explicit = get('commit_docs', { section: 'planning', field: 'commit_docs' });
// If explicitly set in config, respect the user's choice
if (explicit !== undefined)
return explicit;
// Auto-detection: when no explicit value and .planning/ is gitignored,
// default to false instead of true
if (isGitIgnored(cwd, '.planning/'))
return false;
return defaults.commit_docs;
})(),
search_gitignored: get('search_gitignored', { section: 'planning', field: 'search_gitignored' }) ?? defaults.search_gitignored,
branching_strategy: get('branching_strategy', { section: 'git', field: 'branching_strategy' }) ?? defaults.branching_strategy,
phase_branch_template: get('phase_branch_template', { section: 'git', field: 'phase_branch_template' }) ?? defaults.phase_branch_template,
milestone_branch_template: get('milestone_branch_template', { section: 'git', field: 'milestone_branch_template' }) ?? defaults.milestone_branch_template,
quick_branch_template: get('quick_branch_template', { section: 'git', field: 'quick_branch_template' }) ?? defaults.quick_branch_template,
research: get('research', { section: 'workflow', field: 'research' }) ?? defaults.research,
plan_checker: get('plan_checker', { section: 'workflow', field: 'plan_check' }) ?? defaults.plan_checker,
verifier: get('verifier', { section: 'workflow', field: 'verifier' }) ?? defaults.verifier,
nyquist_validation: get('nyquist_validation', { section: 'workflow', field: 'nyquist_validation' }) ?? defaults.nyquist_validation,
post_planning_gaps: get('post_planning_gaps', { section: 'workflow', field: 'post_planning_gaps' }) ?? defaults.post_planning_gaps,
parallelization,
brave_search: get('brave_search') ?? defaults.brave_search,
firecrawl: get('firecrawl') ?? defaults.firecrawl,
exa_search: get('exa_search') ?? defaults.exa_search,
mvp_mode: get('mvp_mode', { section: 'workflow', field: 'mvp_mode' }) ?? false,
text_mode: get('text_mode', { section: 'workflow', field: 'text_mode' }) ?? defaults.text_mode,
auto_advance: get('auto_advance', { section: 'workflow', field: 'auto_advance' }) ?? false,
_auto_chain_active: get('_auto_chain_active', { section: 'workflow', field: '_auto_chain_active' }) ?? false,
mode: get('mode') ?? 'interactive',
sub_repos: get('sub_repos', { section: 'planning', field: 'sub_repos' }) ?? defaults.sub_repos,
resolve_model_ids: get('resolve_model_ids') ?? defaults.resolve_model_ids,
context_window: get('context_window') ?? defaults.context_window,
phase_naming: get('phase_naming') ?? defaults.phase_naming,
project_code: get('project_code') ?? defaults.project_code,
subagent_timeout: get('subagent_timeout', { section: 'workflow', field: 'subagent_timeout' }) ?? defaults.subagent_timeout,
model_overrides: (parsed['model_overrides']) || null,
// #3023 β€” per-phase-type model map.
models: (parsed['models']) || null,
// #68 β€” top-level granularity
granularity: parsed['granularity'] !== undefined ? parsed['granularity'] : null,
// #68 β€” per-phase-type granularity map.
granularities: (parsed['granularities']) || null,
// #68 β€” planning sub-object
planning: (parsed['planning']) || null,
// #3024 β€” dynamic routing block.
dynamic_routing: (parsed['dynamic_routing']) || null,
// #2517 β€” runtime-aware profiles.
runtime: (parsed['runtime']) || null,
model_profile_overrides: (parsed['model_profile_overrides']) || null,
// #49 β€” provider-neutral model policy presets.
model_policy: (parsed['model_policy']) || null,
// #443 β€” effort/fast_mode
effort: (parsed['effort']) || null,
fast_mode: (parsed['fast_mode']) || null,
agent_skills: (parsed['agent_skills']) || {},
agent_skills_security: (parsed['agent_skills_security']) || null,
manager: (parsed['manager']) || {},
response_language: get('response_language') || null,
claude_md_path: get('claude_md_path') || null,
claude_md_assembly: (parsed['claude_md_assembly']) || null,
};
// ─── ADR-857 phase 3b: federated config overlay ───────────────────────────
// FIX 2: Use the pre-computed _preWarningFedValidKeys (from the FIX 3 block above)
// plus a fresh overlay call to get values. The KNOWN_TOP_LEVEL was already updated.
// TODAY: every UI key is still in the central config-schema, so isCentralKey()
// returns true for all of them β†’ validKeys is empty β†’ _baseConfig is returned UNCHANGED
// (true no-op: no clone, no reorder, byte-identical output).
// This becomes a live channel once a key is atomically removed from the central schema.
try {
if (_preWarningFedValidKeys.length > 0) {
// There are actual federated values β€” re-use the already-computed overlay
// (we run mergeFederatedConfig again here to get the values map; the validKeys
// are guaranteed identical since it's the same inputs).
const _fedRegistrySchema = _capabilityRegistry.configSchema;
if (_fedRegistrySchema && typeof _fedRegistrySchema === 'object') {
const _fedOverlay = mergeFederatedConfig({
configSchema: _fedRegistrySchema,
isCentralKey: (key) => _isCentralConfigKeyFn(key),
userConfig: parsed,
});
// Apply dotted-path values (e.g. "workflow.ui_phase" β†’ _baseConfig.workflow.ui_phase)
// WITHOUT clobbering existing keys. N-level nesting supported.
_applyFederatedValues(_baseConfig, _fedOverlay.values, _fedOverlay.validKeys);
}
}
// Pending-migration warnings are suppressed at load time to avoid noisy output on
// every loadConfig call. They are surfaced at registry-generation time (--check/--write).
}
catch {
// Defensive: if the federated overlay throws for any reason, return the base config unchanged.
// This keeps loadConfig's no-throw contract intact regardless of capability registry state.
}
return _baseConfig;
}
catch {
// Fall back to ~/.gsd/defaults.json only for truly pre-project contexts (#1683)
if (node_fs_1.default.existsSync(planningDir(cwd, ws))) {
if (rootParsed) {
// Workstream has no config.json: re-parse using root config as the sole source.
// (FIX 2: overlay is applied recursively in the re-entrant loadConfig call)
return loadConfig(cwd, { workstream: null });
}
// FIX 2: Apply the federated overlay on the no-config path.
// Migrated Capability keys are surfaced from the generated registry even
// when the project has no config.json, so schema defaults still apply.
try {
return _applyFederatedOverlay(defaults, {});
}
catch {
return defaults;
}
}
try {
const home = process.env['GSD_HOME'] || node_os_1.default.homedir();
const globalDefaultsPath = node_path_1.default.join(home, '.gsd', 'defaults.json');
const raw = (0, shell_command_projection_cjs_1.platformReadSync)(globalDefaultsPath);
if (raw === null)
throw new Error('missing');
const globalDefaults = JSON.parse(raw);
const _globalBaseCfg = {
...defaults,
model_profile: (globalDefaults['model_profile']) ?? defaults.model_profile,
commit_docs: (globalDefaults['commit_docs']) ?? defaults.commit_docs,
research: (globalDefaults['research']) ?? defaults.research,
plan_checker: (globalDefaults['plan_checker']) ?? defaults.plan_checker,
verifier: (globalDefaults['verifier']) ?? defaults.verifier,
nyquist_validation: (globalDefaults['nyquist_validation']) ?? defaults.nyquist_validation,
post_planning_gaps: (globalDefaults['post_planning_gaps'])
?? globalDefaults['workflow']?.['post_planning_gaps']
?? defaults.post_planning_gaps,
parallelization: (globalDefaults['parallelization']) ?? defaults.parallelization,
text_mode: (globalDefaults['text_mode']) ?? defaults.text_mode,
resolve_model_ids: (globalDefaults['resolve_model_ids']) ?? defaults.resolve_model_ids,
context_window: (globalDefaults['context_window']) ?? defaults.context_window,
subagent_timeout: (globalDefaults['subagent_timeout']) ?? defaults.subagent_timeout,
model_overrides: (globalDefaults['model_overrides']) || null,
models: (globalDefaults['models']) || null,
granularity: (globalDefaults['granularity']) !== undefined ? globalDefaults['granularity'] : null,
granularities: (globalDefaults['granularities']) || null,
planning: (globalDefaults['planning']) || null,
dynamic_routing: (globalDefaults['dynamic_routing']) || null,
effort: (globalDefaults['effort']) || null,
fast_mode: (globalDefaults['fast_mode']) || null,
agent_skills: (globalDefaults['agent_skills']) || {},
response_language: (globalDefaults['response_language']) || null,
};
// FIX 2: Apply federated overlay on global-defaults path.
// With the current registry this is a true no-op (returns _globalBaseCfg unchanged).
try {
return _applyFederatedOverlay(_globalBaseCfg, globalDefaults);
}
catch {
return _globalBaseCfg;
}
}
catch {
// FIX 2: Apply federated overlay on the final fallback path.
// With the current registry this is a true no-op (returns `defaults` unchanged).
try {
return _applyFederatedOverlay(defaults, {});
}
catch {
return defaults;
}
}
}
}
module.exports = {
loadConfig,
isGitIgnored,
CONFIG_DEFAULTS,
_getConfigDefault,
_getNestedConfigDefault,
_deepMergeConfig,
_warnedUnknownConfigKeys,
_warnUnknownProfileOverrides,
_resetRuntimeWarningCacheForTests,
_warnedConfigKeys,
_gitIgnoredCache,
RUNTIME_OVERRIDE_TIERS,
_setFederatedRegistryForTests,
_resetFederatedRegistryForTests,
};