* refactor: multi-channel infrastructure with explicit channel/is_group tracking - Add channels[] array and findChannel() routing in index.ts, replacing hardcoded whatsapp.* calls with channel-agnostic callbacks - Add channel TEXT and is_group INTEGER columns to chats table with COALESCE upsert to protect existing values from null overwrites - is_group defaults to 0 (safe: unknown chats excluded from groups) - WhatsApp passes explicit channel='whatsapp' and isGroup to onChatMetadata - getAvailableGroups filters on is_group instead of JID pattern matching - findChannel logs warnings instead of silently dropping unroutable JIDs - Migration backfills channel/is_group from JID patterns for existing DBs Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com> * feat: skills engine v0.1 — deterministic skill packages with rerere resolution Three-way merge engine for applying skill packages on top of a core codebase. Skills declare which files they add/modify, and the engine uses git merge-file for conflict detection with git rerere for automatic resolution of previously-seen conflicts. Key components: - apply: three-way merge with backup/rollback safety net - replay: clean-slate replay for uninstall and rebase - update: core version updates with deletion detection - rebase: bake applied skills into base (one-way) - manifest: validation with path traversal protection - resolution-cache: pre-computed rerere resolutions - structured: npm deps, env vars, docker-compose merging - CI: per-skill test matrix with conflict detection 151 unit tests covering merge, rerere, backup, replay, uninstall, update, rebase, structured ops, and edge cases. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com> * feat: add Discord and Telegram skill packages Skill packages for adding Discord and Telegram channels to NanoClaw. Each package includes: - Channel implementation (add/src/channels/) - Three-way merge targets for index.ts, config.ts, routing.test.ts - Intent docs explaining merge invariants - Standalone integration tests - manifest.yaml with dependency/conflict declarations Applied via: npx tsx scripts/apply-skill.ts .claude/skills/add-discord These are inert until applied — no runtime impact. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com> * remove unused docs (skills-system-status, implementation-guide) Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.6 <noreply@anthropic.com>
369 lines
11 KiB
TypeScript
369 lines
11 KiB
TypeScript
import { execFileSync, execSync } from 'child_process';
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import crypto from 'crypto';
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import fs from 'fs';
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import os from 'os';
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import path from 'path';
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import { parse as parseYaml } from 'yaml';
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import { clearBackup, createBackup, restoreBackup } from './backup.js';
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import { BASE_DIR, NANOCLAW_DIR } from './constants.js';
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import { copyDir } from './fs-utils.js';
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import { isCustomizeActive } from './customize.js';
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import { acquireLock } from './lock.js';
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import {
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cleanupMergeState,
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isGitRepo,
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mergeFile,
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runRerere,
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setupRerereAdapter,
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} from './merge.js';
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import { recordPathRemap } from './path-remap.js';
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import { computeFileHash, readState, writeState } from './state.js';
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import {
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mergeDockerComposeServices,
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mergeEnvAdditions,
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mergeNpmDependencies,
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runNpmInstall,
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} from './structured.js';
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import type { UpdatePreview, UpdateResult } from './types.js';
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function walkDir(dir: string, root?: string): string[] {
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const rootDir = root ?? dir;
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const results: string[] = [];
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for (const entry of fs.readdirSync(dir, { withFileTypes: true })) {
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const fullPath = path.join(dir, entry.name);
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if (entry.isDirectory()) {
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results.push(...walkDir(fullPath, rootDir));
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} else {
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results.push(path.relative(rootDir, fullPath));
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}
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}
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return results;
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}
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export function previewUpdate(newCorePath: string): UpdatePreview {
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const projectRoot = process.cwd();
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const state = readState();
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const baseDir = path.join(projectRoot, BASE_DIR);
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// Read new version from package.json in newCorePath
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const newPkgPath = path.join(newCorePath, 'package.json');
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let newVersion = 'unknown';
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if (fs.existsSync(newPkgPath)) {
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const pkg = JSON.parse(fs.readFileSync(newPkgPath, 'utf-8'));
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newVersion = pkg.version ?? 'unknown';
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}
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// Walk all files in newCorePath, compare against base to find changed files
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const newCoreFiles = walkDir(newCorePath);
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const filesChanged: string[] = [];
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const filesDeleted: string[] = [];
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for (const relPath of newCoreFiles) {
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const basePath = path.join(baseDir, relPath);
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const newPath = path.join(newCorePath, relPath);
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if (!fs.existsSync(basePath)) {
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filesChanged.push(relPath);
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continue;
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}
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const baseHash = computeFileHash(basePath);
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const newHash = computeFileHash(newPath);
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if (baseHash !== newHash) {
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filesChanged.push(relPath);
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}
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}
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// Detect files deleted in the new core (exist in base but not in newCorePath)
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if (fs.existsSync(baseDir)) {
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const baseFiles = walkDir(baseDir);
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const newCoreSet = new Set(newCoreFiles);
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for (const relPath of baseFiles) {
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if (!newCoreSet.has(relPath)) {
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filesDeleted.push(relPath);
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}
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}
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}
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// Check which changed files have skill overlaps
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const conflictRisk: string[] = [];
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const customPatchesAtRisk: string[] = [];
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for (const relPath of filesChanged) {
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// Check applied skills
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for (const skill of state.applied_skills) {
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if (skill.file_hashes[relPath]) {
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conflictRisk.push(relPath);
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break;
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}
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}
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// Check custom modifications
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if (state.custom_modifications) {
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for (const mod of state.custom_modifications) {
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if (mod.files_modified.includes(relPath)) {
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customPatchesAtRisk.push(relPath);
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break;
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}
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}
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}
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}
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return {
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currentVersion: state.core_version,
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newVersion,
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filesChanged,
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filesDeleted,
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conflictRisk,
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customPatchesAtRisk,
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};
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}
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export async function applyUpdate(newCorePath: string): Promise<UpdateResult> {
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const projectRoot = process.cwd();
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const state = readState();
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const baseDir = path.join(projectRoot, BASE_DIR);
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// --- Pre-flight ---
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if (isCustomizeActive()) {
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return {
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success: false,
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previousVersion: state.core_version,
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newVersion: 'unknown',
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error:
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'A customize session is active. Run commitCustomize() or abortCustomize() first.',
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};
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}
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const releaseLock = acquireLock();
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try {
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// --- Preview ---
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const preview = previewUpdate(newCorePath);
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// --- Backup ---
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const filesToBackup = [
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...preview.filesChanged.map((f) => path.join(projectRoot, f)),
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...preview.filesDeleted.map((f) => path.join(projectRoot, f)),
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];
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createBackup(filesToBackup);
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// --- Three-way merge ---
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const mergeConflicts: string[] = [];
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for (const relPath of preview.filesChanged) {
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const currentPath = path.join(projectRoot, relPath);
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const basePath = path.join(baseDir, relPath);
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const newCoreSrcPath = path.join(newCorePath, relPath);
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if (!fs.existsSync(currentPath)) {
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// File doesn't exist yet — just copy from new core
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fs.mkdirSync(path.dirname(currentPath), { recursive: true });
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fs.copyFileSync(newCoreSrcPath, currentPath);
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continue;
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}
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if (!fs.existsSync(basePath)) {
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// No base — use current as base
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fs.mkdirSync(path.dirname(basePath), { recursive: true });
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fs.copyFileSync(currentPath, basePath);
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}
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// Three-way merge: current ← base → newCore
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// Save current content before merge overwrites it (needed for rerere stage 2 = "ours")
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const oursContent = fs.readFileSync(currentPath, 'utf-8');
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const tmpCurrent = path.join(
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os.tmpdir(),
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`nanoclaw-update-${crypto.randomUUID()}-${path.basename(relPath)}`,
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);
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fs.copyFileSync(currentPath, tmpCurrent);
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const result = mergeFile(tmpCurrent, basePath, newCoreSrcPath);
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if (result.clean) {
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fs.copyFileSync(tmpCurrent, currentPath);
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fs.unlinkSync(tmpCurrent);
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} else {
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// Copy conflict markers to working tree path before rerere
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fs.copyFileSync(tmpCurrent, currentPath);
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fs.unlinkSync(tmpCurrent);
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if (isGitRepo()) {
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const baseContent = fs.readFileSync(basePath, 'utf-8');
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const theirsContent = fs.readFileSync(newCoreSrcPath, 'utf-8');
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setupRerereAdapter(relPath, baseContent, oursContent, theirsContent);
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const autoResolved = runRerere(currentPath);
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if (autoResolved) {
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execFileSync('git', ['add', relPath], { stdio: 'pipe' });
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execSync('git rerere', { stdio: 'pipe' });
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cleanupMergeState(relPath);
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continue;
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}
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cleanupMergeState(relPath);
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}
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mergeConflicts.push(relPath);
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}
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}
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if (mergeConflicts.length > 0) {
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// Preserve backup so user can resolve conflicts manually, then continue
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// Call clearBackup() after resolution or restoreBackup() + clearBackup() to abort
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return {
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success: false,
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previousVersion: preview.currentVersion,
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newVersion: preview.newVersion,
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mergeConflicts,
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backupPending: true,
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error: `Unresolved merge conflicts in: ${mergeConflicts.join(', ')}. Resolve manually then call clearBackup(), or restoreBackup() + clearBackup() to abort.`,
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};
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}
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// --- Remove deleted files ---
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for (const relPath of preview.filesDeleted) {
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const currentPath = path.join(projectRoot, relPath);
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if (fs.existsSync(currentPath)) {
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fs.unlinkSync(currentPath);
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}
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}
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// --- Re-apply custom patches ---
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const customPatchFailures: string[] = [];
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if (state.custom_modifications) {
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for (const mod of state.custom_modifications) {
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const patchPath = path.join(projectRoot, mod.patch_file);
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if (!fs.existsSync(patchPath)) {
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customPatchFailures.push(
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`${mod.description}: patch file missing (${mod.patch_file})`,
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);
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continue;
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}
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try {
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execFileSync('git', ['apply', '--3way', patchPath], {
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stdio: 'pipe',
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cwd: projectRoot,
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});
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} catch {
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customPatchFailures.push(mod.description);
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}
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}
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}
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// --- Record path remaps from update metadata ---
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const remapFile = path.join(newCorePath, '.nanoclaw-meta', 'path_remap.yaml');
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if (fs.existsSync(remapFile)) {
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const remap = parseYaml(fs.readFileSync(remapFile, 'utf-8')) as Record<string, string>;
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if (remap && typeof remap === 'object') {
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recordPathRemap(remap);
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}
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}
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// --- Update base ---
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if (fs.existsSync(baseDir)) {
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fs.rmSync(baseDir, { recursive: true, force: true });
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}
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fs.mkdirSync(baseDir, { recursive: true });
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copyDir(newCorePath, baseDir);
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// --- Structured ops: re-apply from all skills ---
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const allNpmDeps: Record<string, string> = {};
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const allEnvAdditions: string[] = [];
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const allDockerServices: Record<string, unknown> = {};
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let hasNpmDeps = false;
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for (const skill of state.applied_skills) {
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const outcomes = skill.structured_outcomes as Record<string, unknown> | undefined;
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if (!outcomes) continue;
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if (outcomes.npm_dependencies) {
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Object.assign(allNpmDeps, outcomes.npm_dependencies as Record<string, string>);
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hasNpmDeps = true;
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}
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if (outcomes.env_additions) {
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allEnvAdditions.push(...(outcomes.env_additions as string[]));
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}
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if (outcomes.docker_compose_services) {
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Object.assign(
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allDockerServices,
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outcomes.docker_compose_services as Record<string, unknown>,
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);
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}
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}
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if (hasNpmDeps) {
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const pkgPath = path.join(projectRoot, 'package.json');
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mergeNpmDependencies(pkgPath, allNpmDeps);
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}
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if (allEnvAdditions.length > 0) {
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const envPath = path.join(projectRoot, '.env.example');
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mergeEnvAdditions(envPath, allEnvAdditions);
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}
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if (Object.keys(allDockerServices).length > 0) {
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const composePath = path.join(projectRoot, 'docker-compose.yml');
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mergeDockerComposeServices(composePath, allDockerServices);
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}
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if (hasNpmDeps) {
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runNpmInstall();
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}
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// --- Run tests for each applied skill ---
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const skillReapplyResults: Record<string, boolean> = {};
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for (const skill of state.applied_skills) {
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const outcomes = skill.structured_outcomes as Record<string, unknown> | undefined;
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if (!outcomes?.test) continue;
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const testCmd = outcomes.test as string;
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try {
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execSync(testCmd, {
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stdio: 'pipe',
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cwd: projectRoot,
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timeout: 120_000,
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});
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skillReapplyResults[skill.name] = true;
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} catch {
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skillReapplyResults[skill.name] = false;
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}
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}
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// --- Update state ---
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state.core_version = preview.newVersion;
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writeState(state);
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// --- Cleanup ---
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clearBackup();
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return {
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success: true,
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previousVersion: preview.currentVersion,
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newVersion: preview.newVersion,
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customPatchFailures:
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customPatchFailures.length > 0 ? customPatchFailures : undefined,
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skillReapplyResults:
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Object.keys(skillReapplyResults).length > 0
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? skillReapplyResults
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: undefined,
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};
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} catch (err) {
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restoreBackup();
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clearBackup();
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return {
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success: false,
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previousVersion: state.core_version,
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newVersion: 'unknown',
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error: err instanceof Error ? err.message : String(err),
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};
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} finally {
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releaseLock();
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}
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}
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