feat(opencode): never leave orphaned OpenCode server processes

OpenChamber spawns the OpenCode server as an external child binary (detached
on Unix), so a hard crash, SIGKILL, or Ctrl+C of the host before graceful
teardown could leave it running. Orphaned servers then accumulate and contend
on the shared SQLite DB, causing severe startup slowdowns.

Add a per-process registry plus a startup reaper, mirroring the pattern
OpenCode's own CLI daemon uses for its detached server:

- One file per spawned process at
  ~/.config/openchamber/managed-opencode/<pid>.json. Per-process files avoid
  the read-modify-write clobber race between concurrent runtimes/windows that a
  single shared file would suffer.
- On spawn, record the child (pid, owner pid, port, binary, host runtime).
- On graceful close/restart, delete the record.
- On startup, reap only our own, verified, genuinely-orphaned processes:
  recorded by us AND still a live `opencode serve` on the recorded port AND
  whose spawner is provably gone (reparented to pid 1, or recorded owner dead).
  It never touches a process a live instance is using, the user's standalone
  server, the official desktop app, or the TUI.

Wire it into every runtime that spawns the server:

- web/desktop via the OpenCode lifecycle (register on spawn, unregister on
  close/restart, reap at startup). The restart-for-config-change flow inherits
  this automatically through the same kill/spawn paths.
- VS Code carries a parity implementation (it does not bundle the web package)
  that reads/writes the same registry directory and uses the same algorithm.
- Tag the actual host runtime (desktop/web/ssh-remote/vscode) for observability.

Also tighten teardown so the registry stays accurate and orphans die promptly
instead of only on the next start:

- The web server now also handles SIGHUP and SIGUSR2 (terminal close and the
  nodemon restart used by dev:server:watch / dev:web:hmr).
- Electron now installs SIGINT/SIGTERM/SIGHUP handlers that run the same
  background teardown as a normal quit, covering Ctrl+C on electron:dev.

External OpenCode servers (OPENCODE_SKIP_START) are intentionally excluded: we
never manage or kill processes we did not spawn.
This commit is contained in:
Bohdan Triapitsyn
2026-06-24 16:51:17 +03:00
parent a9dfd32347
commit 2ff5428c69
6 changed files with 566 additions and 1 deletions
+16
View File
@@ -285,6 +285,22 @@ const performConfirmedQuit = () => {
app.exit(0); app.exit(0);
}; };
// Hard-stop signals (`Ctrl+C` on `electron:dev`, an external `kill`/SIGTERM,
// terminal close) bypass the normal app-quit flow — which would orphan the
// in-process web server's managed OpenCode child. Run the same background
// teardown the quit path uses (which kills the sidecar), then exit. The startup
// reaper remains the backstop for an unhandled hard crash (SIGKILL).
for (const signal of ['SIGINT', 'SIGTERM', 'SIGHUP']) {
process.on(signal, () => {
try {
shutdownBackgroundServices();
} catch (error) {
log.warn(`[electron] ${signal} shutdown failed:`, error);
}
app.exit(0);
});
}
const requestQuitWithConfirmation = async () => { const requestQuitWithConfirmation = async () => {
await refreshQuitRiskFlags(); await refreshQuitRiskFlags();
+19
View File
@@ -9,6 +9,7 @@ import { spawn } from 'child_process';
import { randomBytes } from 'crypto'; import { randomBytes } from 'crypto';
import { normalizeWindowsDriveLetter } from './pathUtils'; import { normalizeWindowsDriveLetter } from './pathUtils';
import { resolveWorkingDirectoryChange } from './workingDirectoryChange'; import { resolveWorkingDirectoryChange } from './workingDirectoryChange';
import { registerManagedProcess, unregisterManagedProcess, reapOrphanedProcesses } from './opencodeProcessRegistry';
const t = vscode.l10n.t; const t = vscode.l10n.t;
@@ -688,6 +689,9 @@ async function spawnManagedOpenCodeServer(
child.on('error', onError); child.on('error', onError);
}); });
// Record this child so a future run can reap it if we crash before teardown.
registerManagedProcess({ pid: child.pid, ownerPid: process.pid, port, binary, runtime: 'vscode' });
return { return {
url, url,
close: () => { close: () => {
@@ -696,6 +700,7 @@ async function spawnManagedOpenCodeServer(
} catch { } catch {
// ignore // ignore
} }
unregisterManagedProcess(child.pid);
}, },
}; };
} }
@@ -726,6 +731,7 @@ async function allocateManagedOpenCodePort(): Promise<number> {
export function createOpenCodeManager(context: vscode.ExtensionContext): OpenCodeManager { export function createOpenCodeManager(context: vscode.ExtensionContext): OpenCodeManager {
let server: { url: string; close: () => void } | null = null; let server: { url: string; close: () => void } | null = null;
let reapedOrphansOnce = false;
let managedApiUrlOverride: string | null = null; let managedApiUrlOverride: string | null = null;
let managedPassword: string | null = null; let managedPassword: string | null = null;
let managedPasswordSource: 'user-env' | 'generated' | 'rotated' | null = null; let managedPasswordSource: 'user-env' | 'generated' | 'rotated' | null = null;
@@ -866,6 +872,19 @@ export function createOpenCodeManager(context: vscode.ExtensionContext): OpenCod
return; return;
} }
// Before spawning our own server, reap any OpenCode process WE spawned in a
// prior run that was orphaned by a crash/host-kill. Verified + scoped to our
// own pids, so it never touches a live instance's or the user's own server.
if (!reapedOrphansOnce) {
reapedOrphansOnce = true;
try {
const { reaped } = await reapOrphanedProcesses({ log: (msg) => console.log(msg) });
if (reaped > 0) console.log(`[opencode] startup reaped ${reaped} orphaned process(es)`);
} catch (error) {
console.warn('[opencode] orphan reap failed:', error instanceof Error ? error.message : error);
}
}
setStatus('connecting'); setStatus('connecting');
cliMissing = false; cliMissing = false;
cliPath = null; cliPath = null;
@@ -0,0 +1,236 @@
// Managed OpenCode process registry + orphan reaper — VS Code parity copy.
//
// The VS Code extension does NOT bundle the web package, so it cannot import
// the web runtime's registry module. This is a parity implementation that
// reads/writes the SAME on-disk registry directory and uses the SAME algorithm,
// so a process spawned by any runtime (web, desktop, VS Code) can be reaped by
// any other.
//
// Storage is ONE FILE PER SPAWNED PROCESS (`<childPid>.json`) in a registry
// directory — never a single shared JSON file — because multiple runtimes and
// windows run concurrently and a shared file would be clobbered by the
// read-modify-write race. Per-process files mean each instance only ever writes
// or deletes its OWN file.
//
// See packages/web/server/lib/opencode/managed-process-registry.js for the full
// rationale and safety model. In short: we only ever kill pids THIS product
// recorded, re-verified as a live `opencode serve`, and only when their spawner
// is provably gone (reparented to pid 1, or recorded owner pid dead).
import fs from 'node:fs';
import os from 'node:os';
import path from 'node:path';
import { spawnSync } from 'node:child_process';
type ManagedProcessEntry = {
pid: number;
ownerPid: number;
port: number | null;
binary: string | null;
runtime: string;
startedAt: string;
};
const resolveRegistryDir = (): string => {
const override = process.env.OPENCHAMBER_MANAGED_PROCESS_REGISTRY;
if (override && override.trim()) return override.trim();
return path.join(os.homedir(), '.config', 'openchamber', 'managed-opencode');
};
const entryFilePath = (pid: number): string => path.join(resolveRegistryDir(), `${pid}.json`);
const writeEntryFile = (entry: ManagedProcessEntry): void => {
const dir = resolveRegistryDir();
try {
fs.mkdirSync(dir, { recursive: true });
const filePath = path.join(dir, `${entry.pid}.json`);
const tmp = `${filePath}.tmp-${process.pid}`;
fs.writeFileSync(tmp, JSON.stringify(entry, null, 2));
fs.renameSync(tmp, filePath);
} catch {
// Best-effort: a failed registry write must never break spawn/shutdown.
}
};
const readAllEntries = (): Array<{ entry: ManagedProcessEntry; filePath: string }> => {
const dir = resolveRegistryDir();
let names: string[] = [];
try {
names = fs.readdirSync(dir).filter((name) => name.endsWith('.json'));
} catch {
return [];
}
const out: Array<{ entry: ManagedProcessEntry; filePath: string }> = [];
for (const name of names) {
const filePath = path.join(dir, name);
try {
const entry = JSON.parse(fs.readFileSync(filePath, 'utf8'));
if (entry && Number.isInteger(entry.pid)) {
out.push({ entry: entry as ManagedProcessEntry, filePath });
} else {
fs.rmSync(filePath, { force: true });
}
} catch {
try { fs.rmSync(filePath, { force: true }); } catch { /* ignore */ }
}
}
return out;
};
export const registerManagedProcess = (input: {
pid: number | undefined;
ownerPid?: number;
port?: number | null;
binary?: string | null;
runtime?: string;
}): void => {
const pid = input.pid;
if (!Number.isInteger(pid)) return;
writeEntryFile({
pid: pid as number,
ownerPid: Number.isInteger(input.ownerPid) ? (input.ownerPid as number) : process.pid,
port: Number.isInteger(input.port as number) ? (input.port as number) : null,
binary: typeof input.binary === 'string' ? input.binary : null,
runtime: typeof input.runtime === 'string' ? input.runtime : 'vscode',
startedAt: new Date().toISOString(),
});
};
export const unregisterManagedProcess = (pid: number | undefined): void => {
if (!Number.isInteger(pid)) return;
try {
fs.rmSync(entryFilePath(pid as number), { force: true });
} catch {
// ignore
}
};
const isPidAlive = (pid: number): boolean => {
if (!Number.isInteger(pid)) return false;
try {
process.kill(pid, 0);
return true;
} catch (error) {
return (error as NodeJS.ErrnoException)?.code === 'EPERM';
}
};
const sleep = (ms: number): Promise<void> => new Promise((resolve) => setTimeout(resolve, ms));
const readUnixProcInfo = (pid: number): { ppid: number; command: string } | null => {
try {
const result = spawnSync('ps', ['-p', String(pid), '-o', 'ppid=,command='], {
encoding: 'utf8',
timeout: 3000,
windowsHide: true,
});
const line = (result.stdout || '').trim();
if (!line) return null;
const match = line.match(/^\s*(\d+)\s+(.*)$/);
if (!match) return null;
return { ppid: Number.parseInt(match[1], 10), command: match[2] };
} catch {
return null;
}
};
const readWindowsImageName = (pid: number): string | null => {
try {
const result = spawnSync('tasklist', ['/FI', `PID eq ${pid}`, '/FO', 'CSV', '/NH'], {
encoding: 'utf8',
timeout: 3000,
windowsHide: true,
});
return (result.stdout || '').trim() || null;
} catch {
return null;
}
};
const commandIdentifiesOurServer = (command: string, entry: ManagedProcessEntry): boolean => {
if (typeof command !== 'string') return false;
const lower = command.toLowerCase();
if (!lower.includes('opencode') || !lower.includes('serve')) return false;
if (Number.isInteger(entry.port) && !command.includes(String(entry.port))) return false;
return true;
};
const killOrphan = async (pid: number): Promise<void> => {
if (process.platform === 'win32') {
try {
spawnSync('taskkill', ['/PID', String(pid), '/T', '/F'], { stdio: 'ignore', timeout: 5000, windowsHide: true });
} catch {
// ignore
}
return;
}
const signalTree = (signal: NodeJS.Signals) => {
try { process.kill(-pid, signal); } catch { /* ignore */ }
try { process.kill(pid, signal); } catch { /* ignore */ }
};
signalTree('SIGTERM');
for (let waited = 0; waited < 1500 && isPidAlive(pid); waited += 150) {
await sleep(150);
}
if (isPidAlive(pid)) {
signalTree('SIGKILL');
await sleep(300);
}
};
const processEntry = async (
entry: ManagedProcessEntry,
log?: (message: string) => void,
): Promise<boolean> => {
if (!isPidAlive(entry.pid)) return false;
const ownerGone = Number.isInteger(entry.ownerPid) && !isPidAlive(entry.ownerPid);
if (process.platform === 'win32') {
const image = readWindowsImageName(entry.pid);
const looksLikeOpencode = typeof image === 'string' && image.toLowerCase().includes('opencode');
if (looksLikeOpencode && ownerGone) {
await killOrphan(entry.pid);
log?.(`[opencode] reaped orphaned process pid ${entry.pid} (owner ${entry.ownerPid} gone)`);
return true;
}
return false;
}
const info = readUnixProcInfo(entry.pid);
if (!info || !commandIdentifiesOurServer(info.command, entry)) return false;
const orphaned = info.ppid === 1 || ownerGone;
if (!orphaned) return false;
await killOrphan(entry.pid);
log?.(`[opencode] reaped orphaned process pid ${entry.pid} (reparented/owner gone)`);
return true;
};
export const reapOrphanedProcesses = async (
options: { log?: (message: string) => void } = {},
): Promise<{ inspected: number; reaped: number }> => {
const { log } = options;
const records = readAllEntries();
if (records.length === 0) return { inspected: 0, reaped: 0 };
let reaped = 0;
for (const { entry, filePath } of records) {
let drop = false;
try {
const wasReaped = await processEntry(entry, log);
if (wasReaped) reaped += 1;
drop = wasReaped || !isPidAlive(entry.pid);
} catch (error) {
log?.(`[opencode] reap check failed for pid ${entry.pid}: ${error instanceof Error ? error.message : error}`);
}
if (drop) {
try { fs.rmSync(filePath, { force: true }); } catch { /* ignore */ }
}
}
return { inspected: records.length, reaped };
};
+38 -1
View File
@@ -1,5 +1,6 @@
import { spawn, spawnSync } from 'node:child_process'; import { spawn, spawnSync } from 'node:child_process';
import net from 'node:net'; import net from 'node:net';
import { registerManagedProcess, unregisterManagedProcess, reapOrphanedProcesses } from './managed-process-registry.js';
const parsePositiveInt = (value, fallback) => { const parsePositiveInt = (value, fallback) => {
const parsed = Number.parseInt(String(value ?? ''), 10); const parsed = Number.parseInt(String(value ?? ''), 10);
@@ -140,7 +141,7 @@ export const createOpenCodeLifecycleRuntime = (deps) => {
}); });
}; };
const closeManagedOpenCodeChild = async (child) => { const terminateChildProcess = async (child) => {
if (!child) { if (!child) {
return; return;
} }
@@ -212,6 +213,19 @@ export const createOpenCodeLifecycleRuntime = (deps) => {
await waitForChildProcessClose(child, 1000); await waitForChildProcessClose(child, 1000);
}; };
const closeManagedOpenCodeChild = async (child) => {
const pid = child?.pid;
try {
await terminateChildProcess(child);
} finally {
// Drop it from the registry only once it has actually exited, so a child
// that survived teardown stays eligible for the next run's reaper.
if (Number.isInteger(pid) && hasChildProcessExited(child)) {
unregisterManagedProcess(pid);
}
}
};
const formatCapturedOutput = ({ stdout, stderr }) => { const formatCapturedOutput = ({ stdout, stderr }) => {
const parts = []; const parts = [];
if (stdout.trim()) { if (stdout.trim()) {
@@ -324,6 +338,19 @@ export const createOpenCodeLifecycleRuntime = (deps) => {
child.on('error', onError); child.on('error', onError);
}); });
// Record this child so a future run can reap it if we crash before teardown.
// The web-server lifecycle runs in-process inside multiple hosts, so tag the
// actual host (Electron sets OPENCHAMBER_RUNTIME='desktop'; the standalone
// web CLI leaves it unset → 'web'; SSH remote → 'ssh-remote') rather than a
// hardcoded label, matching the server's existing runtimeName convention.
registerManagedProcess({
pid: child.pid,
ownerPid: process.pid,
port,
binary,
runtime: process.env.OPENCHAMBER_RUNTIME || 'web',
});
return { return {
url, url,
pid: child.pid || null, pid: child.pid || null,
@@ -747,6 +774,16 @@ export const createOpenCodeLifecycleRuntime = (deps) => {
const bootstrapOpenCodeAtStartup = async () => { const bootstrapOpenCodeAtStartup = async () => {
try { try {
// Before doing anything, reap any OpenCode process WE spawned in a prior
// run that was orphaned by a crash/hard-exit. Verified + scoped to our own
// pids, so it never touches a live instance's or the user's own server.
try {
const { reaped } = await reapOrphanedProcesses({ log: (msg) => console.log(msg) });
if (reaped > 0) console.log(`[lifecycle] startup reaped ${reaped} orphaned OpenCode process(es)`);
} catch (error) {
console.warn('[lifecycle] orphan reap failed:', error?.message ?? error);
}
syncFromHmrState(); syncFromHmrState();
if (await isOpenCodeProcessHealthy()) { if (await isOpenCodeProcessHealthy()) {
console.log(`[HMR] Reusing existing OpenCode process on port ${state.openCodePort}`); console.log(`[HMR] Reusing existing OpenCode process on port ${state.openCodePort}`);
@@ -0,0 +1,251 @@
// Managed OpenCode process registry + orphan reaper.
//
// OpenChamber spawns the OpenCode server as an EXTERNAL child binary (on Unix
// with `detached: true`, so it leads its own process group). That binary can
// therefore outlive its parent if the parent is hard-killed/crashes/`Ctrl+C`ed
// before graceful teardown runs — leaving an orphaned `opencode serve` that
// then contends on the shared SQLite DB and slows everything down.
//
// We cannot tie an arbitrary external binary to the parent's death portably
// (Electron's `utilityProcess` would, but it only runs JS entrypoints, not a
// standalone binary). So we use the same pattern OpenCode's own CLI daemon uses
// for its detached server: an on-disk record of the pids WE spawned, plus a
// startup reaper that kills ONLY our own, verified, genuinely-orphaned
// processes — never a process a live instance (another desktop window, a VS
// Code host, the user's standalone `opencode`) is actively using.
//
// Storage: ONE FILE PER SPAWNED PROCESS in a registry directory, named
// `<childPid>.json`. Multiple runtimes (web/desktop/VS Code) and multiple
// windows all run concurrently; a single shared JSON file would be corrupted by
// the read-modify-write race (last writer wins, clobbering another instance's
// entry). Per-process files mean every instance only ever writes/deletes its
// OWN file, so there is no write contention at all.
//
// Safety model (why this never kills the wrong thing):
// 1. The reaper only ever considers pids THIS product recorded. The user's
// standalone CLI server, the official desktop app, and the TUI are never
// recorded, so they are never even candidates.
// 2. Before killing, it re-verifies the live pid is still an `opencode serve`
// matching the recorded port (guards against the OS recycling a dead pid
// onto an unrelated process).
// 3. It kills only when the spawning owner is provably gone — the child has
// been reparented to init/pid 1, or the recorded owner pid is dead. A
// child still owned by a live instance is left untouched.
//
// The VS Code extension cannot import this module (it does not bundle the web
// package); it carries a parity implementation that reads/writes the SAME dir.
import fs from 'node:fs';
import os from 'node:os';
import path from 'node:path';
import { spawnSync } from 'node:child_process';
const resolveRegistryDir = () => {
const override = process.env.OPENCHAMBER_MANAGED_PROCESS_REGISTRY;
if (override && override.trim()) return override.trim();
return path.join(os.homedir(), '.config', 'openchamber', 'managed-opencode');
};
const entryFilePath = (pid) => path.join(resolveRegistryDir(), `${pid}.json`);
const writeEntryFile = (entry) => {
const dir = resolveRegistryDir();
try {
fs.mkdirSync(dir, { recursive: true });
const filePath = path.join(dir, `${entry.pid}.json`);
const tmp = `${filePath}.tmp-${process.pid}`;
fs.writeFileSync(tmp, JSON.stringify(entry, null, 2));
fs.renameSync(tmp, filePath);
} catch {
// Best-effort: a failed registry write must never break spawn/shutdown.
}
};
const readAllEntries = () => {
const dir = resolveRegistryDir();
let names = [];
try {
names = fs.readdirSync(dir).filter((name) => name.endsWith('.json'));
} catch {
return [];
}
const out = [];
for (const name of names) {
const filePath = path.join(dir, name);
try {
const entry = JSON.parse(fs.readFileSync(filePath, 'utf8'));
if (entry && Number.isInteger(entry.pid)) {
out.push({ entry, filePath });
} else {
fs.rmSync(filePath, { force: true });
}
} catch {
// Corrupt/partial file — drop it.
try { fs.rmSync(filePath, { force: true }); } catch {}
}
}
return out;
};
/** Record an OpenCode process WE spawned so a future run can reap it if orphaned. */
export const registerManagedProcess = ({ pid, ownerPid, port, binary, runtime } = {}) => {
if (!Number.isInteger(pid)) return;
writeEntryFile({
pid,
ownerPid: Number.isInteger(ownerPid) ? ownerPid : process.pid,
port: Number.isInteger(port) ? port : null,
binary: typeof binary === 'string' ? binary : null,
runtime: typeof runtime === 'string' ? runtime : 'web',
startedAt: new Date().toISOString(),
});
};
/** Drop a pid from the registry (after we have killed/closed it ourselves). */
export const unregisterManagedProcess = (pid) => {
if (!Number.isInteger(pid)) return;
try {
fs.rmSync(entryFilePath(pid), { force: true });
} catch {
}
};
const isPidAlive = (pid) => {
if (!Number.isInteger(pid)) return false;
try {
process.kill(pid, 0);
return true;
} catch (error) {
// EPERM = process exists but we lack permission to signal it → still alive.
return error?.code === 'EPERM';
}
};
const sleep = (ms) => new Promise((resolve) => setTimeout(resolve, ms));
// Returns { ppid, command } for a live pid on Unix, or null if it can't be read.
const readUnixProcInfo = (pid) => {
try {
const result = spawnSync('ps', ['-p', String(pid), '-o', 'ppid=,command='], {
encoding: 'utf8',
timeout: 3000,
windowsHide: true,
});
const line = (result.stdout || '').trim();
if (!line) return null;
const match = line.match(/^\s*(\d+)\s+(.*)$/);
if (!match) return null;
return { ppid: Number.parseInt(match[1], 10), command: match[2] };
} catch {
return null;
}
};
// Windows image name for a pid (e.g. "opencode.exe"), or null.
const readWindowsImageName = (pid) => {
try {
const result = spawnSync('tasklist', ['/FI', `PID eq ${pid}`, '/FO', 'CSV', '/NH'], {
encoding: 'utf8',
timeout: 3000,
windowsHide: true,
});
return (result.stdout || '').trim() || null;
} catch {
return null;
}
};
const commandIdentifiesOurServer = (command, entry) => {
if (typeof command !== 'string') return false;
const lower = command.toLowerCase();
if (!lower.includes('opencode') || !lower.includes('serve')) return false;
// Tie to the exact server we registered when we know its port, so a recycled
// pid running a *different* opencode server is never mistaken for ours.
if (Number.isInteger(entry.port) && !command.includes(String(entry.port))) return false;
return true;
};
const killOrphan = async (pid) => {
if (process.platform === 'win32') {
try {
spawnSync('taskkill', ['/PID', String(pid), '/T', '/F'], { stdio: 'ignore', timeout: 5000, windowsHide: true });
} catch {
}
return;
}
const signalTree = (signal) => {
try { process.kill(-pid, signal); } catch {}
try { process.kill(pid, signal); } catch {}
};
signalTree('SIGTERM');
for (let waited = 0; waited < 1500 && isPidAlive(pid); waited += 150) {
await sleep(150);
}
if (isPidAlive(pid)) {
signalTree('SIGKILL');
await sleep(300);
}
};
// Decide+act on a single registry entry. Returns true if it was reaped.
const processEntry = async (entry, { log }) => {
// Dead pid → nothing to do (caller drops the file).
if (!isPidAlive(entry.pid)) return false;
const ownerGone = Number.isInteger(entry.ownerPid) && !isPidAlive(entry.ownerPid);
if (process.platform === 'win32') {
const image = readWindowsImageName(entry.pid);
const looksLikeOpencode = typeof image === 'string' && image.toLowerCase().includes('opencode');
// Windows lacks reliable reparent-to-1 semantics (job objects usually kill
// children with the parent), so we reap only when the owner is provably dead
// AND the image still looks like opencode.
if (looksLikeOpencode && ownerGone) {
await killOrphan(entry.pid);
log?.(`[lifecycle] reaped orphaned OpenCode pid ${entry.pid} (owner ${entry.ownerPid} gone)`);
return true;
}
return false;
}
const info = readUnixProcInfo(entry.pid);
// Can't verify identity (or it's not our server) → leave it alone.
if (!info || !commandIdentifiesOurServer(info.command, entry)) return false;
const orphaned = info.ppid === 1 || ownerGone;
if (!orphaned) return false; // still owned by a live instance
await killOrphan(entry.pid);
log?.(`[lifecycle] reaped orphaned OpenCode pid ${entry.pid} (reparented/owner gone)`);
return true;
};
/**
* Kill any genuinely-orphaned OpenCode processes WE previously spawned, and
* prune their registry files. Safe to call at startup before spawning a new
* server. Returns { inspected, reaped }.
*/
export const reapOrphanedProcesses = async ({ log } = {}) => {
const records = readAllEntries();
if (records.length === 0) return { inspected: 0, reaped: 0 };
let reaped = 0;
for (const { entry, filePath } of records) {
let drop = false;
try {
const wasReaped = await processEntry(entry, { log });
if (wasReaped) reaped += 1;
// Drop the file when the process is gone (reaped now, or already dead);
// keep it only while the process is still alive and owned by a live owner.
drop = wasReaped || !isPidAlive(entry.pid);
} catch (error) {
log?.(`[lifecycle] reap check failed for pid ${entry.pid}: ${error?.message ?? error}`);
}
if (drop) {
try { fs.rmSync(filePath, { force: true }); } catch {}
}
}
return { inspected: records.length, reaped };
};
@@ -131,9 +131,15 @@ export const createServerStartupRuntime = (dependencies) => {
const handleSignal = async () => { const handleSignal = async () => {
await gracefulShutdown(); await gracefulShutdown();
}; };
// Cover every signal a shell or dev harness may use to stop/restart us, so
// the managed OpenCode child is always torn down gracefully instead of
// orphaned: SIGINT/SIGQUIT (Ctrl+C/Ctrl+\), SIGTERM (kill/default), SIGHUP
// (terminal close), SIGUSR2 (nodemon restart for `dev:server:watch`).
process.on('SIGTERM', handleSignal); process.on('SIGTERM', handleSignal);
process.on('SIGINT', handleSignal); process.on('SIGINT', handleSignal);
process.on('SIGQUIT', handleSignal); process.on('SIGQUIT', handleSignal);
process.on('SIGHUP', handleSignal);
process.on('SIGUSR2', handleSignal);
setSignalsAttached(true); setSignalsAttached(true);
syncToHmrState(); syncToHmrState();
} }