945 lines
38 KiB
JavaScript
945 lines
38 KiB
JavaScript
#!/usr/bin/env node
|
||
// mirasim-relay — a standalone reimplementation of the local relay that Mirasim's
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// desktop build runs in-process, so the same account credit is reachable from Linux.
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//
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// Everything here mirrors what mirasim-server-linux-x64 0.0.146 does in `server.cjs`:
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// login POST {LOGIN_BASE}/auth/code {email} -> {dev_code?}
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// POST {LOGIN_BASE}/auth/verify {email, code} -> {access_token, refresh_token}
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// GET {LOGIN_BASE}/auth/oauth/{provider}/login?redirect_uri=http://127.0.0.1:P/callback
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// refresh POST {LOGIN_BASE}/auth/refresh {refresh_token} -> {access_token, refresh_token?}
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// device POST {RELAY_BASE}/v1/device/session {publicKey, deviceId} -> {ticket, expiresIn|expiresAt}
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// traffic POST {RELAY_BASE}/v1/messages (Anthropic wire format)
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// POST {RELAY_BASE}/v1/responses (OpenAI Responses — what Codex uses)
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// POST {RELAY_BASE}/v1/chat/completions (OpenAI Chat Completions)
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// GET {RELAY_BASE}/v1/models
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//
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// One relay, two dialects. `server.cjs` routes on the path alone (its classifier is
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// reproduced verbatim in classifyPath below), so an Anthropic-compatible agent points
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// ANTHROPIC_BASE_URL here and Codex points its `apodex` provider block here, and neither
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// learns that a relay is involved.
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import http from 'node:http';
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import crypto from 'node:crypto';
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import fs from 'node:fs';
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import path from 'node:path';
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import os from 'node:os';
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import { Readable } from 'node:stream';
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import { pipeline } from 'node:stream/promises';
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import { spawn } from 'node:child_process';
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import readline from 'node:readline/promises';
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import { fileURLToPath } from 'node:url';
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// ---------------------------------------------------------------------------
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// Constants lifted from the shipped build.
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// ---------------------------------------------------------------------------
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const RELAY_BASE = stripSlash(process.env.MIRASIM_RELAY_BASE_URL || process.env.MIRASIM_RELAY_URL || 'https://mirasim-relay.mirofish.ai');
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const LOGIN_BASE = stripSlash(process.env.MIRASIM_LOGIN_URL || 'https://admin.test.mirofish.ai');
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const CLIENT_VERSION = process.env.MIRASIM_APP_VERSION || '0.0.146';
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const SIG_SCHEME = 'mrs-sig-v1';
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const DEVICE_SESSION_PATH = '/v1/device/session';
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const NONCE_BYTES = 12;
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const DEVICE_ID_LEN = 22;
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const H_DEVICE = 'x-mirasim-device';
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const H_TS = 'x-mirasim-ts';
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const H_NONCE = 'x-mirasim-nonce';
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const H_SIG = 'x-mirasim-sig';
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const H_CLIENT = 'x-mirasim-client';
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const H_AGENT = 'x-mirasim-agent';
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const H_SESSION = 'x-mirasim-session';
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const H_CALL = 'x-mirasim-call';
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const H_PROBE = 'x-mirasim-probe';
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// Only this anthropic-beta value survives the hop upstream; the rest are dropped, because
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// the relay's own account is what decides which betas are actually available.
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const KEPT_BETAS = ['context-1m-2025-08-07'];
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const HOP_BY_HOP = new Set(['content-length', 'transfer-encoding', 'connection', 'host']);
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const REFRESH_MARGIN_SEC = 900; // refresh the access token this long before `exp`
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const TICKET_RENEW_MARGIN_MS = 120_000;
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const TICKET_RETRY_MS = 30_000; // backoff after a failed mint
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const TICKET_UNSUPPORTED_MS = 900_000; // how long a 404/501 pins us to the plain token
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const TICKET_DEFAULT_TTL_MS = 600_000;
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const PROBE_MODEL = 'claude-haiku-4-5-20251001';
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// The sentinel the desktop build hands to a spawned agent in place of a real key; the relay
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// recognises it as "use the managed credential" and this proxy substitutes it per request.
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const MANAGED_CREDENTIAL = 'mirasim-relay-managed-credential';
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// Codex's side of the relay, from the shipped build's model table: the provider block it
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// injects is named `apodex`, wire_api is `responses`, and the key comes from OPENAI_API_KEY.
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const CODEX_PROVIDER = 'apodex';
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const CODEX_MODELS = ['gpt-5.6-sol', 'gpt-5.6-terra', 'gpt-5.6-luna'];
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const CODEX_DEFAULT_MODEL = CODEX_MODELS[0];
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const CODEX_DEFAULT_EFFORT = 'xhigh';
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const CONFIG_DIR = process.env.MIRASIM_PROXY_HOME || path.join(os.homedir(), '.config', 'mirasim-proxy');
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const CONFIG_PATH = path.join(CONFIG_DIR, 'config.json');
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// ---------------------------------------------------------------------------
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// Small helpers
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// ---------------------------------------------------------------------------
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function stripSlash(u) { return String(u).replace(/\/+$/, ''); }
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function nowSec() { return Math.floor(Date.now() / 1000); }
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function die(msg) { process.stderr.write(`mirasim-relay: ${msg}\n`); process.exit(1); }
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function log(msg) { process.stderr.write(`${msg}\n`); }
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// Header values must stay ASCII; the desktop build percent-encodes anything else rather
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// than letting undici reject the request.
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function sanitizeHeader(value) {
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const s = String(value);
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if (!/[^ -~]/.test(s)) return s;
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let out = '';
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for (const ch of s) {
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if (!/[^ -~]/.test(ch) && ch !== '%') { out += ch; continue; }
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for (const b of Buffer.from(ch, 'utf8')) out += '%' + b.toString(16).toUpperCase().padStart(2, '0');
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}
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return out;
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}
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function decodeJwt(token) {
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try {
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const part = String(token).split('.')[1];
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if (!part) return null;
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return JSON.parse(Buffer.from(part, 'base64url').toString('utf8'));
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} catch { return null; }
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}
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async function readJsonError(res) {
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let detail = '';
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try {
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const text = await res.text();
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try {
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const j = JSON.parse(text);
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detail = j.error?.message || j.message || j.error || text;
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} catch { detail = text; }
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} catch { /* body already consumed or unreadable */ }
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return new Error(`HTTP ${res.status}${detail ? `: ${String(detail).slice(0, 400)}` : ''}`);
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}
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// ---------------------------------------------------------------------------
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// Config store — 0600, same shape as the desktop build's `auth` / `device` sections.
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// ---------------------------------------------------------------------------
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function loadConfig() {
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try { return JSON.parse(fs.readFileSync(CONFIG_PATH, 'utf8')); } catch { return {}; }
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}
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function saveConfig(cfg) {
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fs.mkdirSync(CONFIG_DIR, { recursive: true, mode: 0o700 });
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const tmp = `${CONFIG_PATH}.tmp`;
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fs.writeFileSync(tmp, JSON.stringify(cfg, null, 2), { mode: 0o600 });
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fs.renameSync(tmp, CONFIG_PATH);
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}
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function storeTokens({ token, refreshToken }) {
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const claims = decodeJwt(token);
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if (!claims) throw new Error('the sign-in response was not a readable JWT');
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const cfg = loadConfig();
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cfg.auth = {
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token,
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userId: claims.sub,
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exp: claims.exp,
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...(refreshToken ? { refreshToken } : cfg.auth?.refreshToken ? { refreshToken: cfg.auth.refreshToken } : {}),
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};
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saveConfig(cfg);
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return cfg.auth;
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}
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// ---------------------------------------------------------------------------
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// Account auth
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// ---------------------------------------------------------------------------
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async function requestEmailCode(email) {
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const res = await fetch(`${LOGIN_BASE}/auth/code`, {
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method: 'POST',
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headers: { 'content-type': 'application/json' },
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body: JSON.stringify({ email }),
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});
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if (!res.ok) throw await readJsonError(res);
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const body = await res.json().catch(() => ({}));
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return typeof body.dev_code === 'string' ? body.dev_code : null;
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}
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async function verifyEmailCode(email, code) {
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const res = await fetch(`${LOGIN_BASE}/auth/verify`, {
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method: 'POST',
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headers: { 'content-type': 'application/json' },
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body: JSON.stringify({ email, code }),
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});
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if (!res.ok) throw await readJsonError(res);
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const body = await res.json();
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if (typeof body.access_token !== 'string' || !body.access_token) {
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throw new Error('sign-in response carried no access_token');
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}
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return { token: body.access_token, refreshToken: body.refresh_token || undefined };
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}
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async function listProviders() {
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try {
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const res = await fetch(`${LOGIN_BASE}/auth/oauth/providers`);
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if (!res.ok) return [];
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const body = await res.json();
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return Array.isArray(body.providers) ? body.providers : [];
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} catch { return []; }
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}
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async function fetchProfile(token) {
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try {
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const res = await fetch(`${LOGIN_BASE}/auth/me`, { headers: { Authorization: `Bearer ${token}` } });
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if (!res.ok) return {};
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return await res.json();
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} catch { return {}; }
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}
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// Browser sign-in: spin up a throwaway loopback listener, hand the relay a redirect_uri
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// pointing at it, and take the tokens off the callback query string.
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function oauthLogin(provider, { timeoutMs = 300_000 } = {}) {
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return new Promise((resolve, reject) => {
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let settled = false;
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const server = http.createServer((req, res) => {
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const url = new URL(req.url || '/', 'http://127.0.0.1');
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if (url.pathname !== '/callback') { res.writeHead(404); res.end(); return; }
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const token = url.searchParams.get('access_token') || url.searchParams.get('token');
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const refreshToken = url.searchParams.get('refresh_token') || undefined;
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const ok = Boolean(token);
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res.writeHead(ok ? 200 : 400, { 'content-type': 'text/html; charset=utf-8' });
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res.end(`<!doctype html><meta charset="utf-8"><body style="font:16px system-ui;padding:3rem">
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<h2>${ok ? '登录成功' : '登录失败'}</h2>
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<p>${ok ? '可以关闭此页面,回到终端继续。' : '未收到 token,请回到终端重试。'}</p></body>`);
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finish(() => (ok ? resolve({ token, refreshToken }) : reject(new Error('callback carried no token'))));
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});
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const timer = setTimeout(() => finish(() => reject(new Error('browser sign-in timed out'))), timeoutMs);
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timer.unref?.();
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function finish(fn) {
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if (settled) return;
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settled = true;
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clearTimeout(timer);
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server.close(() => fn());
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}
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server.on('error', (err) => finish(() => reject(err)));
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server.listen(0, '127.0.0.1', () => {
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const redirect = `http://127.0.0.1:${server.address().port}/callback`;
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const url = `${LOGIN_BASE}/auth/oauth/${provider}/login?redirect_uri=${encodeURIComponent(redirect)}`;
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log(` 在浏览器里打开以下地址完成 ${provider} 登录:\n ${url}\n`);
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openBrowser(url);
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});
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});
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}
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function openBrowser(url) {
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const [cmd, args] = process.platform === 'darwin'
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? ['open', [url]]
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: process.platform === 'win32'
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? ['cmd', ['/c', 'start', '', url]]
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: ['xdg-open', [url]];
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try {
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const child = spawn(cmd, args, { stdio: 'ignore', detached: true });
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child.on('error', () => {});
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child.unref();
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} catch { /* headless box: the printed URL is the fallback */ }
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}
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// Returns a valid access token, refreshing through /auth/refresh when it is close to expiry.
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async function currentToken({ onReauthRequired } = {}) {
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const cfg = loadConfig();
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const auth = cfg.auth;
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if (!auth?.token) throw new Error('not signed in — run `mirasim-relay login` first');
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if (auth.exp - nowSec() > REFRESH_MARGIN_SEC) return auth.token;
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if (!auth.refreshToken) {
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if (auth.exp <= nowSec()) {
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onReauthRequired?.();
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throw new Error('access token expired and no refresh token is stored — run `mirasim-relay login` again');
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}
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return auth.token;
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}
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try {
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const res = await fetch(`${LOGIN_BASE}/auth/refresh`, {
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method: 'POST',
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headers: { 'content-type': 'application/json' },
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body: JSON.stringify({ refresh_token: auth.refreshToken }),
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});
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if (!res.ok) {
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if (res.status === 401 || res.status === 403) onReauthRequired?.();
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return auth.token; // let the relay be the judge; a stale token still beats no token
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}
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const body = await res.json();
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if (typeof body.access_token !== 'string' || !body.access_token) return auth.token;
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return storeTokens({
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token: body.access_token,
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refreshToken: body.refresh_token || auth.refreshToken,
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}).token;
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} catch {
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return auth.token;
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}
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}
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// ---------------------------------------------------------------------------
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// Device identity and request signing (mrs-sig-v1)
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// ---------------------------------------------------------------------------
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let cachedIdentity = null;
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function deviceIdentity() {
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if (cachedIdentity) return cachedIdentity;
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const cfg = loadConfig();
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let pem = cfg.device?.privateKey;
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if (!pem) {
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const { privateKey } = crypto.generateKeyPairSync('ed25519');
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pem = privateKey.export({ format: 'pem', type: 'pkcs8' }).toString();
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saveConfig({ ...loadConfig(), device: { privateKey: pem } });
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}
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const privateKey = crypto.createPrivateKey(pem);
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const publicKeyB64 = crypto.createPublicKey(privateKey)
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.export({ format: 'der', type: 'spki' })
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.toString('base64');
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const deviceId = crypto.createHash('sha256').update(publicKeyB64).digest('base64url').slice(0, DEVICE_ID_LEN);
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cachedIdentity = {
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deviceId,
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publicKeyB64,
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sign: (msg) => crypto.sign(null, Buffer.from(msg, 'utf8'), privateKey).toString('base64url'),
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};
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return cachedIdentity;
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}
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function canonicalString({ method, path: p, ts, nonce, bodySha256 }) {
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return [SIG_SCHEME, method.toUpperCase(), p, ts, nonce, bodySha256].join('\n');
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}
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function signatureHeaders(identity, { method, path: p, body }) {
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const ts = String(Date.now());
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const nonce = crypto.randomBytes(NONCE_BYTES).toString('base64url');
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const bodySha256 = crypto.createHash('sha256').update(body ?? Buffer.alloc(0)).digest('hex');
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const sig = identity.sign(canonicalString({ method, path: p, ts, nonce, bodySha256 }));
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return {
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[H_DEVICE]: identity.deviceId,
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[H_TS]: ts,
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[H_NONCE]: nonce,
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[H_SIG]: sig,
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[H_CLIENT]: CLIENT_VERSION,
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};
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}
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// ---------------------------------------------------------------------------
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// Device-session ticket
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//
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// The relay may hand back a short-lived ticket that supersedes the account JWT as the
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// bearer credential. It is strictly an upgrade: on 404/501 (or any failure) we keep using
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// the plain token, which is exactly the fallback the desktop build takes.
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// ---------------------------------------------------------------------------
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class TicketManager {
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#state = null;
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#inFlight = null;
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#mintedFor = '';
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#nextAttemptMs = 0;
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#unsupportedUntilMs = 0;
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get unsupported() { return Date.now() < this.#unsupportedUntilMs; }
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/** The ticket to use as bearer, or null when the plain account token should be used. */
|
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credential() {
|
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const s = this.#state;
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if (!s) return null;
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if (Date.now() >= s.expiresAtMs) { this.#state = null; return null; }
|
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return s.ticket;
|
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}
|
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|
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/** Signing key, only while a ticket is live — unsigned traffic is what the fallback sends. */
|
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signingIdentity() { return this.#state ? deviceIdentity() : null; }
|
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snapshot() {
|
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return {
|
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deviceId: this.#state?.deviceId ?? deviceIdentity()?.deviceId ?? null,
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expiresAtMs: this.#state?.expiresAtMs ?? null,
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unsupported: this.unsupported,
|
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};
|
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}
|
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|
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async ensureFresh(issuerToken) {
|
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if (this.#inFlight) return this.#inFlight;
|
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if (Date.now() < this.#nextAttemptMs || this.unsupported) return;
|
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if (!issuerToken) return;
|
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if (this.#state && this.#mintedFor === issuerToken && Date.now() < this.#state.expiresAtMs - TICKET_RENEW_MARGIN_MS) return;
|
||
|
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this.#inFlight = this.#mint(issuerToken).finally(() => { this.#inFlight = null; });
|
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return this.#inFlight;
|
||
}
|
||
|
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async #mint(issuerToken) {
|
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this.#nextAttemptMs = Date.now() + TICKET_RETRY_MS;
|
||
const identity = deviceIdentity();
|
||
if (!identity) { log('relay-ticket: no device key available — falling back to the plain token'); return; }
|
||
|
||
const body = JSON.stringify({ publicKey: identity.publicKeyB64, deviceId: identity.deviceId });
|
||
const headers = {
|
||
'content-type': 'application/json',
|
||
authorization: `Bearer ${issuerToken}`,
|
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...signatureHeaders(identity, { method: 'POST', path: DEVICE_SESSION_PATH, body }),
|
||
};
|
||
|
||
const ctrl = new AbortController();
|
||
const timer = setTimeout(() => ctrl.abort(), 15_000);
|
||
try {
|
||
const res = await fetch(`${RELAY_BASE}${DEVICE_SESSION_PATH}`, {
|
||
method: 'POST', headers, body, signal: ctrl.signal,
|
||
});
|
||
|
||
if (res.status === 404 || res.status === 501) {
|
||
this.#unsupportedUntilMs = Date.now() + TICKET_UNSUPPORTED_MS;
|
||
res.text().catch(() => {});
|
||
log('relay-ticket: relay does not support device signing — using the plain token');
|
||
return;
|
||
}
|
||
if (!res.ok) {
|
||
res.text().catch(() => {});
|
||
log(`relay-ticket: mint failed (${res.status}) — using the plain token`);
|
||
return;
|
||
}
|
||
|
||
const body2 = await res.json();
|
||
if (typeof body2.ticket !== 'string' || !body2.ticket) return;
|
||
const expiresAtMs = typeof body2.expiresIn === 'number'
|
||
? Date.now() + body2.expiresIn * 1000
|
||
: typeof body2.expiresAt === 'number'
|
||
? body2.expiresAt * 1000
|
||
: Date.now() + TICKET_DEFAULT_TTL_MS;
|
||
|
||
this.#state = { ticket: body2.ticket, expiresAtMs, deviceId: identity.deviceId };
|
||
this.#mintedFor = issuerToken;
|
||
this.#nextAttemptMs = 0;
|
||
this.#unsupportedUntilMs = 0;
|
||
log(`relay-ticket: device session established (device ${identity.deviceId})`);
|
||
} catch (err) {
|
||
log(`relay-ticket: mint error (${err.message}) — using the plain token`);
|
||
} finally {
|
||
clearTimeout(timer);
|
||
}
|
||
}
|
||
|
||
invalidate() { this.#state = null; this.#mintedFor = ''; }
|
||
}
|
||
|
||
// ---------------------------------------------------------------------------
|
||
// The local proxy
|
||
// ---------------------------------------------------------------------------
|
||
|
||
function readBody(req) {
|
||
return new Promise((resolve, reject) => {
|
||
const chunks = [];
|
||
req.on('data', (c) => chunks.push(c));
|
||
req.on('end', () => resolve(Buffer.concat(chunks)));
|
||
req.on('error', reject);
|
||
// A client that vanishes mid-upload ends the request without 'end'; treat the partial
|
||
// read as a disconnect rather than leaving this promise pending forever.
|
||
req.on('aborted', () => reject(Object.assign(new Error('client aborted the request'), { name: 'AbortError' })));
|
||
});
|
||
}
|
||
|
||
// Everything that means "the other end went away" — expected during normal agent use
|
||
// (Ctrl-C, a cancelled turn, a closed pane) and never worth reporting as a proxy fault.
|
||
function isDisconnect(err) {
|
||
if (!err) return false;
|
||
if (err.name === 'AbortError' || err.code === 'ABORT_ERR') return true;
|
||
const code = err.code || err.cause?.code;
|
||
if (code === 'ECONNRESET' || code === 'EPIPE' || code === 'ERR_STREAM_PREMATURE_CLOSE') return true;
|
||
return isDisconnect(err.cause !== err ? err.cause : null);
|
||
}
|
||
|
||
function forwardHeaders(incoming) {
|
||
const out = {};
|
||
for (const [k, v] of Object.entries(incoming)) {
|
||
if (v === undefined) continue;
|
||
if (HOP_BY_HOP.has(k.toLowerCase())) continue;
|
||
out[k.toLowerCase()] = Array.isArray(v) ? v.join(', ') : v;
|
||
}
|
||
// anthropic-beta is filtered rather than passed through: only the values the relay
|
||
// actually honours survive, and the header disappears entirely if none do.
|
||
const beta = out['anthropic-beta'];
|
||
if (beta !== undefined) {
|
||
const kept = beta.split(',').map((s) => s.trim()).filter((s) => KEPT_BETAS.includes(s));
|
||
if (kept.length) out['anthropic-beta'] = kept.join(',');
|
||
else delete out['anthropic-beta'];
|
||
}
|
||
return out;
|
||
}
|
||
|
||
// Which dialect the relay will read a request as. This is `tD()` from server.cjs, regexes
|
||
// and all: the relay dispatches on the path alone, so the same endpoint and the same
|
||
// credential serve Claude Code and Codex. `/backend-api/codex/responses` is the ChatGPT
|
||
// backend shape — the desktop build only ever sees it via its MITM capture of chatgpt.com,
|
||
// and the relay itself answers 404 there, but it is recognised for completeness.
|
||
function classifyPath(pathname) {
|
||
if (/^\/v1\/messages\/?$/.test(pathname)) return 'anthropic';
|
||
if (/^\/v1\/responses\/?$/.test(pathname) || /^\/backend-api\/codex\/responses\/?$/.test(pathname)) return 'openai-responses';
|
||
if (/(^|\/)chat\/completions\/?$/.test(pathname)) return 'openai-chat';
|
||
return null;
|
||
}
|
||
|
||
// Which agent the traffic claims to be, when the caller has not pinned one with --agent.
|
||
// The desktop build reports `codex` for both OpenAI dialects.
|
||
const AGENT_FOR_KIND = { anthropic: 'claude', 'openai-responses': 'codex', 'openai-chat': 'codex' };
|
||
|
||
async function serve({ port, host, agent, verbose }) { const tickets = new TicketManager();
|
||
const sessionId = crypto.randomUUID();
|
||
let reauthNeeded = false;
|
||
|
||
// Backstop. Every disconnect path below is handled explicitly, but a long-lived proxy
|
||
// must not die because one of them was missed — an agent hanging up should cost one
|
||
// request, never the whole server. Real bugs still crash loudly.
|
||
const survive = (err) => {
|
||
if (isDisconnect(err)) { if (verbose) log(` ignored late disconnect: ${err?.code || err?.name}`); return; }
|
||
console.error(err);
|
||
process.exit(1);
|
||
};
|
||
process.on('uncaughtException', survive);
|
||
process.on('unhandledRejection', survive);
|
||
|
||
// Warm the credential path once so failures surface at startup, not on first prompt.
|
||
const bootToken = await currentToken({ onReauthRequired: () => { reauthNeeded = true; } });
|
||
await tickets.ensureFresh(bootToken);
|
||
|
||
const server = http.createServer((req, res) => {
|
||
// Socket-level errors on either half surface as 'error' events; unhandled, they are fatal.
|
||
req.on('error', () => {});
|
||
res.on('error', () => {});
|
||
|
||
// A client hanging up is routine, so it must never reach the process as an unhandled
|
||
// rejection — and once the socket is gone there is nothing left to reply to either.
|
||
handle(req, res).catch((err) => {
|
||
if (isDisconnect(err)) { res.destroy(); return; }
|
||
if (res.writableEnded || res.destroyed) return;
|
||
if (res.headersSent) { res.destroy(); return; }
|
||
try {
|
||
res.writeHead(502, { 'content-type': 'application/json' });
|
||
res.end(JSON.stringify({ type: 'error', error: { type: 'proxy_error', message: String(err?.message || err) } }));
|
||
} catch { res.destroy(); }
|
||
});
|
||
});
|
||
|
||
// Malformed requests arrive on the raw socket, before any handler exists.
|
||
server.on('clientError', (err, socket) => {
|
||
if (!socket.writable) return;
|
||
socket.end('HTTP/1.1 400 Bad Request\r\n\r\n');
|
||
});
|
||
|
||
server.keepAliveTimeout = 125_000;
|
||
server.headersTimeout = 130_000;
|
||
|
||
async function handle(req, res) {
|
||
const url = new URL(req.url || '/', 'http://127.0.0.1');
|
||
const pathname = url.pathname;
|
||
const method = req.method || 'POST';
|
||
const callId = crypto.randomUUID();
|
||
const kind = classifyPath(pathname);
|
||
const reportedAgent = agent || AGENT_FOR_KIND[kind] || 'claude';
|
||
|
||
if (pathname === '/__health') {
|
||
const snap = tickets.snapshot();
|
||
res.writeHead(200, { 'content-type': 'application/json' });
|
||
res.end(JSON.stringify({ ok: true, relay: RELAY_BASE, device: snap.deviceId, ticket: Boolean(tickets.credential()), reauthNeeded }));
|
||
return;
|
||
}
|
||
|
||
const body = await readBody(req);
|
||
const abort = new AbortController();
|
||
res.on('close', () => { if (!res.writableEnded) abort.abort(); });
|
||
|
||
// One retry, but only when retrying can actually change the credential we present:
|
||
// a live ticket we can drop, or a refresh token that can mint a new access token.
|
||
// Without either, a 401 is the relay's final answer and re-sending just doubles it.
|
||
for (let attempt = 0; attempt < 2; attempt++) {
|
||
const token = await currentToken({ onReauthRequired: () => { reauthNeeded = true; } });
|
||
await tickets.ensureFresh(token);
|
||
|
||
const ticket = tickets.credential();
|
||
const credential = ticket ?? token;
|
||
|
||
const headers = forwardHeaders(req.headers);
|
||
delete headers.authorization;
|
||
delete headers['x-api-key'];
|
||
headers.authorization = `Bearer ${credential}`;
|
||
headers[H_CLIENT] = CLIENT_VERSION;
|
||
headers[H_AGENT] = sanitizeHeader(reportedAgent);
|
||
headers[H_SESSION] = sessionId;
|
||
headers[H_CALL] = callId;
|
||
|
||
const identity = tickets.signingIdentity();
|
||
if (identity) {
|
||
for (const [k, v] of Object.entries(signatureHeaders(identity, { method, path: pathname, body }))) {
|
||
if (v) headers[k.toLowerCase()] = sanitizeHeader(v);
|
||
}
|
||
}
|
||
|
||
const upstream = `${RELAY_BASE}${pathname}${url.search || ''}`;
|
||
const started = Date.now();
|
||
const res2 = await fetch(upstream, {
|
||
method,
|
||
headers,
|
||
body: method === 'GET' || method === 'HEAD' ? undefined : body,
|
||
signal: abort.signal,
|
||
redirect: 'manual',
|
||
});
|
||
|
||
if (res2.status === 401 && attempt === 0 && (ticket || loadConfig().auth?.refreshToken)) {
|
||
tickets.invalidate();
|
||
res2.body?.cancel?.().catch(() => {});
|
||
continue;
|
||
}
|
||
|
||
if (verbose) {
|
||
log(` ${method} ${pathname} -> ${res2.status} ${Date.now() - started}ms [${kind || 'passthrough'}/${reportedAgent}]${ticket ? ' [ticket]' : ''}`);
|
||
}
|
||
|
||
const outHeaders = {};
|
||
res2.headers.forEach((v, k) => {
|
||
if (HOP_BY_HOP.has(k.toLowerCase())) return;
|
||
outHeaders[k] = v;
|
||
});
|
||
if (res.destroyed) { res2.body?.cancel?.().catch(() => {}); return; }
|
||
res.writeHead(res2.status, outHeaders);
|
||
|
||
if (!res2.body) { res.end(); return; }
|
||
|
||
// pipeline(), unlike .pipe(), forwards errors to the caller instead of leaving the
|
||
// source stream to emit an unhandled 'error'. A client that hangs up mid-stream trips
|
||
// the abort controller above, so this is the common case, not the exceptional one.
|
||
try {
|
||
await pipeline(Readable.fromWeb(res2.body), res);
|
||
} catch (err) {
|
||
if (!isDisconnect(err)) throw err;
|
||
if (verbose) log(` ${method} ${pathname} client went away mid-stream`);
|
||
res.destroy();
|
||
}
|
||
return;
|
||
}
|
||
}
|
||
|
||
await new Promise((resolve, reject) => {
|
||
server.once('error', reject);
|
||
server.listen(port, host, resolve);
|
||
});
|
||
|
||
const bound = server.address();
|
||
const base = `http://${host}:${bound.port}`;
|
||
const snap = tickets.snapshot();
|
||
|
||
log(`mirasim-relay listening on ${base}`);
|
||
log(` upstream : ${RELAY_BASE}`);
|
||
log(` device : ${snap.deviceId}${snap.unsupported ? ' (signing unsupported by relay — plain token)' : ''}`);
|
||
log(` ticket : ${tickets.credential() ? 'active' : 'none (plain token)'}`);
|
||
log(` dialects : /v1/messages (anthropic) · /v1/responses (codex) · /v1/chat/completions`);
|
||
if (reauthNeeded) log(' warning : the stored credential looks stale — run `mirasim-relay login` if requests start failing');
|
||
log('');
|
||
log(' point an agent at it:');
|
||
log(` ANTHROPIC_BASE_URL=${base}`);
|
||
log(` ANTHROPIC_AUTH_TOKEN=${MANAGED_CREDENTIAL} # replaced per request`);
|
||
log(` codex: mirasim-relay codex --port ${bound.port} -- <codex args>`);
|
||
log('');
|
||
|
||
return server;
|
||
}
|
||
|
||
// ---------------------------------------------------------------------------
|
||
// Commands
|
||
// ---------------------------------------------------------------------------
|
||
|
||
async function cmdLogin(argv) {
|
||
const rl = readline.createInterface({ input: process.stdin, output: process.stderr });
|
||
try {
|
||
let method = argv.method;
|
||
if (!method) {
|
||
const providers = await listProviders();
|
||
log('登录方式:');
|
||
log(' 1) 邮箱验证码');
|
||
for (const [i, p] of providers.entries()) log(` ${i + 2}) ${p} (浏览器)`);
|
||
log(` ${providers.length + 2}) 直接粘贴 access token`);
|
||
const pick = (await rl.question('选择 [1]: ')).trim() || '1';
|
||
const n = Number(pick);
|
||
if (n === 1) method = 'email';
|
||
else if (n >= 2 && n < providers.length + 2) method = providers[n - 2];
|
||
else method = 'token';
|
||
}
|
||
|
||
let tokens;
|
||
if (method === 'email') {
|
||
const email = argv.email || (await rl.question('邮箱: ')).trim();
|
||
if (!email) throw new Error('email is required');
|
||
const devCode = await requestEmailCode(email);
|
||
if (devCode) log(` (测试环境直接返回了验证码: ${devCode})`);
|
||
else log(' 验证码已发送,请查收邮件。');
|
||
const code = (await rl.question('验证码: ')).trim();
|
||
tokens = await verifyEmailCode(email, code);
|
||
} else if (method === 'token') {
|
||
const token = (await rl.question('access token: ')).trim();
|
||
if (!token) throw new Error('token is required');
|
||
const refreshToken = (await rl.question('refresh token (可留空): ')).trim() || undefined;
|
||
tokens = { token, refreshToken };
|
||
} else {
|
||
tokens = await oauthLogin(method);
|
||
}
|
||
|
||
const auth = storeTokens(tokens);
|
||
const profile = await fetchProfile(auth.token);
|
||
const claims = decodeJwt(auth.token) || {};
|
||
log('');
|
||
log('已登录。');
|
||
log(` 账号 : ${profile.name || profile.email || claims.email || auth.userId}`);
|
||
log(` 过期 : ${new Date(auth.exp * 1000).toISOString()}`);
|
||
log(` 刷新 : ${auth.refreshToken ? '有 refresh token,会自动续期' : '无 refresh token,过期后需要重新登录'}`);
|
||
log(` 配置 : ${CONFIG_PATH}`);
|
||
} finally {
|
||
rl.close();
|
||
}
|
||
}
|
||
|
||
async function cmdLogout() {
|
||
const cfg = loadConfig();
|
||
delete cfg.auth;
|
||
saveConfig(cfg);
|
||
log('已退出登录(设备密钥保留)。');
|
||
}
|
||
|
||
async function cmdStatus(argv = {}) {
|
||
const cfg = loadConfig();
|
||
if (!cfg.auth?.token) die('not signed in — run `mirasim-relay login` first');
|
||
|
||
const token = await currentToken();
|
||
const claims = decodeJwt(token) || {};
|
||
const profile = await fetchProfile(token);
|
||
const identity = deviceIdentity();
|
||
|
||
log(`账号 : ${profile.name || profile.email || claims.email || claims.sub}`);
|
||
if (claims.plan) log(`套餐 : ${claims.plan}`);
|
||
log(`token : exp ${new Date((claims.exp || 0) * 1000).toISOString()} (${Math.max(0, (claims.exp || 0) - nowSec())}s 后过期)`);
|
||
log(`refresh : ${cfg.auth.refreshToken ? 'yes' : 'no'}`);
|
||
log(`device : ${identity.deviceId}`);
|
||
log(`relay : ${RELAY_BASE}`);
|
||
log(`login : ${LOGIN_BASE}`);
|
||
|
||
// Same probe the desktop build uses to read quota: a 1-token request carrying the
|
||
// probe marker, whose rate-limit response headers are the actual payload of interest.
|
||
log('');
|
||
log('探测中继额度…');
|
||
const res = await fetch(`${RELAY_BASE}/v1/messages`, {
|
||
method: 'POST',
|
||
headers: {
|
||
'anthropic-version': '2023-06-01',
|
||
'content-type': 'application/json',
|
||
[H_PROBE]: 'usage',
|
||
[H_CLIENT]: CLIENT_VERSION,
|
||
Authorization: `Bearer ${token}`,
|
||
},
|
||
body: JSON.stringify({ model: PROBE_MODEL, max_tokens: 1, messages: [{ role: 'user', content: 'hi' }] }),
|
||
}).catch((err) => { log(` 探测失败: ${err.message}`); return null; });
|
||
|
||
if (!res) return;
|
||
const verdict = res.status === 401 || res.status === 403 ? 'invalid'
|
||
: res.status === 429 ? 'rate-limited' : 'ok';
|
||
log(` HTTP ${res.status} -> ${verdict}`);
|
||
res.headers.forEach((v, k) => {
|
||
if (/ratelimit|retry-after/i.test(k)) log(` ${k}: ${v}`);
|
||
});
|
||
if (verdict !== 'ok') {
|
||
const text = await res.text().catch(() => '');
|
||
if (text) log(` ${text.slice(0, 400)}`);
|
||
} else {
|
||
res.text().catch(() => {});
|
||
}
|
||
|
||
// The OpenAI half of the relay. Worth checking separately: an account can carry Claude
|
||
// credit and no Codex credit, and the two dialects answer on different routes.
|
||
log('');
|
||
log('探测 codex (responses) 路由…');
|
||
const res2 = await fetch(`${RELAY_BASE}/v1/responses`, {
|
||
method: 'POST',
|
||
headers: {
|
||
'content-type': 'application/json',
|
||
[H_PROBE]: 'usage',
|
||
[H_CLIENT]: CLIENT_VERSION,
|
||
[H_AGENT]: 'codex',
|
||
Authorization: `Bearer ${token}`,
|
||
},
|
||
body: JSON.stringify({
|
||
model: argv.model || CODEX_DEFAULT_MODEL,
|
||
input: 'hi',
|
||
max_output_tokens: 16,
|
||
stream: false,
|
||
}),
|
||
}).catch((err) => { log(` 探测失败: ${err.message}`); return null; });
|
||
|
||
if (!res2) return;
|
||
log(` HTTP ${res2.status} -> ${res2.status === 404 ? 'route absent' : res2.status === 401 || res2.status === 403 ? 'not entitled' : res2.status === 429 ? 'rate-limited' : 'ok'}`);
|
||
res2.headers.forEach((v, k) => { if (/ratelimit|retry-after/i.test(k)) log(` ${k}: ${v}`); });
|
||
const body2 = await res2.text().catch(() => '');
|
||
if (res2.status >= 400 && body2) log(` ${body2.slice(0, 400)}`);
|
||
log(` models : ${CODEX_MODELS.join(', ')}`);
|
||
}
|
||
|
||
// Codex takes no base-URL env var — it reads a provider block out of config.toml. The
|
||
// desktop build injects that block on the command line instead of writing the file, and
|
||
// these are the same five overrides it uses (`Hpn()` in server.cjs), with the proxy
|
||
// substituted for its own in-process relay.
|
||
function codexOverrides(base) {
|
||
return [
|
||
`model_providers.${CODEX_PROVIDER}.name=${CODEX_PROVIDER}`,
|
||
`model_providers.${CODEX_PROVIDER}.base_url=${base}/v1`,
|
||
`model_providers.${CODEX_PROVIDER}.wire_api=responses`,
|
||
`model_providers.${CODEX_PROVIDER}.env_key=OPENAI_API_KEY`,
|
||
`model_provider=${CODEX_PROVIDER}`,
|
||
];
|
||
}
|
||
|
||
function cmdEnv(argv) {
|
||
const port = argv.port || 8787;
|
||
const host = argv.host || '127.0.0.1';
|
||
const base = `http://${host}:${port}`;
|
||
const fish = /fish/.test(process.env.SHELL || '') && !argv.bash;
|
||
const set = (k, v) => process.stdout.write(fish ? `set -gx ${k} ${v}\n` : `export ${k}=${v}\n`);
|
||
|
||
if (argv.codex) {
|
||
// Only the key is an env var; the endpoint has to arrive as config overrides.
|
||
set('OPENAI_API_KEY', MANAGED_CREDENTIAL);
|
||
set('CODEX_MODEL', argv.model || CODEX_DEFAULT_MODEL);
|
||
process.stdout.write(`\n# codex has no base-URL env var — pass these too:\n`);
|
||
process.stdout.write(`# codex ${codexOverrides(base).map((o) => `-c ${o}`).join(' ')}\n`);
|
||
process.stdout.write(`# or just: mirasim-relay codex --port ${port} -- <codex args>\n`);
|
||
return;
|
||
}
|
||
|
||
set('ANTHROPIC_BASE_URL', base);
|
||
set('ANTHROPIC_AUTH_TOKEN', MANAGED_CREDENTIAL);
|
||
}
|
||
|
||
// Launch the real codex against the proxy. Everything after `--` is forwarded verbatim.
|
||
async function cmdCodex(argv) {
|
||
const port = argv.port || 8787;
|
||
const host = argv.host || '127.0.0.1';
|
||
const base = `http://${host}:${port}`;
|
||
const model = argv.model || CODEX_DEFAULT_MODEL;
|
||
const effort = argv.effort || CODEX_DEFAULT_EFFORT;
|
||
|
||
if (!CODEX_MODELS.includes(model)) {
|
||
log(`warning: ${model} is not one of the relay's codex models (${CODEX_MODELS.join(', ')})`);
|
||
}
|
||
|
||
const passthrough = argv._.slice(1);
|
||
const args = [...codexOverrides(base).flatMap((o) => ['-c', o]), '--model', model, ...passthrough];
|
||
const env = {
|
||
...process.env,
|
||
OPENAI_API_KEY: MANAGED_CREDENTIAL,
|
||
CODEX_MODEL: model,
|
||
CODEX_REASONING_EFFORT: effort,
|
||
};
|
||
|
||
const bin = process.env.MIRASIM_CODEX_BIN || 'codex';
|
||
log(`${bin} -> ${base}/v1/responses (${model}, effort ${effort})`);
|
||
|
||
const child = spawn(bin, args, { stdio: 'inherit', env });
|
||
child.on('error', (err) => {
|
||
if (err.code === 'ENOENT') {
|
||
die(`codex not found — install @openai/codex, or set MIRASIM_CODEX_BIN.\n` +
|
||
`run it yourself with:\n OPENAI_API_KEY=${MANAGED_CREDENTIAL} codex ${codexOverrides(base).map((o) => `-c ${o}`).join(' ')}`);
|
||
}
|
||
die(err.message);
|
||
});
|
||
await new Promise((resolve) => child.on('exit', (code, signal) => {
|
||
process.exitCode = signal ? 1 : code ?? 0;
|
||
resolve();
|
||
}));
|
||
}
|
||
|
||
function usage() {
|
||
process.stderr.write(`mirasim-relay — 把 Mirasim 的本地中继单独跑起来(Linux 可用)
|
||
|
||
用法:
|
||
mirasim-relay login [--method email|github|google|token] [--email you@example.com]
|
||
mirasim-relay serve [--port 8787] [--host 127.0.0.1] [--agent claude|codex] [-v]
|
||
mirasim-relay codex [--port 8787] [--model ${CODEX_DEFAULT_MODEL}] [--effort ${CODEX_DEFAULT_EFFORT}] [-- <codex 参数>]
|
||
mirasim-relay status [--model ${CODEX_DEFAULT_MODEL}]
|
||
mirasim-relay env [--port 8787] [--bash] [--codex]
|
||
mirasim-relay logout
|
||
|
||
中继同时提供两种协议(按路径分发,凭据完全一样):
|
||
POST /v1/messages Anthropic —— Claude Code 等
|
||
POST /v1/responses OpenAI Responses —— Codex(wire_api=responses)
|
||
POST /v1/chat/completions OpenAI Chat Completions
|
||
GET /v1/models
|
||
|
||
codex 模型: ${CODEX_MODELS.join(', ')}
|
||
|
||
环境变量:
|
||
MIRASIM_RELAY_BASE_URL 覆盖中继地址 (默认 ${RELAY_BASE})
|
||
MIRASIM_LOGIN_URL 覆盖登录地址 (默认 ${LOGIN_BASE})
|
||
MIRASIM_APP_VERSION 覆盖上报的客户端版本 (默认 ${CLIENT_VERSION})
|
||
MIRASIM_PROXY_HOME 覆盖配置目录 (默认 ${CONFIG_DIR})
|
||
MIRASIM_CODEX_BIN codex 可执行文件 (默认 PATH 上的 codex)
|
||
`);
|
||
}
|
||
|
||
function parseArgs(args) {
|
||
const out = { _: [] };
|
||
for (let i = 0; i < args.length; i++) {
|
||
const a = args[i];
|
||
if (a === '--') { out._.push(...args.slice(i + 1)); break; } // rest belongs to the child process
|
||
if (a === '-v' || a === '--verbose') { out.verbose = true; continue; }
|
||
if (a === '--bash') { out.bash = true; continue; }
|
||
if (a === '--codex') { out.codex = true; continue; }
|
||
if (a.startsWith('--')) {
|
||
const [k, inline] = a.slice(2).split('=');
|
||
out[k] = inline !== undefined ? inline : args[++i];
|
||
continue;
|
||
}
|
||
out._.push(a);
|
||
}
|
||
return out;
|
||
}
|
||
|
||
async function main() {
|
||
const argv = parseArgs(process.argv.slice(2));
|
||
const cmd = argv._[0];
|
||
|
||
switch (cmd) {
|
||
case 'login': return cmdLogin(argv);
|
||
case 'logout': return cmdLogout();
|
||
case 'status': return cmdStatus(argv);
|
||
case 'env': return cmdEnv(argv);
|
||
case 'codex': return cmdCodex(argv);
|
||
case 'serve':
|
||
return serve({
|
||
port: Number(argv.port || 8787),
|
||
host: argv.host || '127.0.0.1',
|
||
agent: argv.agent, // unset means: report the agent the path implies
|
||
verbose: Boolean(argv.verbose),
|
||
});
|
||
default:
|
||
usage();
|
||
process.exit(cmd ? 1 : 0);
|
||
}
|
||
}
|
||
|
||
// Only take over the process when run as a command; importing this file (tests) must not
|
||
// start the CLI.
|
||
if (process.argv[1] && path.resolve(process.argv[1]) === fileURLToPath(import.meta.url)) {
|
||
main().catch((err) => die(err?.message || String(err)));
|
||
}
|
||
|
||
export {
|
||
RELAY_BASE, LOGIN_BASE, CLIENT_VERSION, SIG_SCHEME, DEVICE_SESSION_PATH, KEPT_BETAS,
|
||
MANAGED_CREDENTIAL, CODEX_PROVIDER, CODEX_MODELS, CODEX_DEFAULT_MODEL,
|
||
deviceIdentity, canonicalString, signatureHeaders, forwardHeaders, sanitizeHeader,
|
||
classifyPath, codexOverrides, decodeJwt, TicketManager, serve,
|
||
};
|