"""Shared device-code / loopback-PKCE / browser / TLS helpers for interactive OAuth logins. Split out of ``hermes_cli/auth.py`` and re-exported there; origin helpers are imported lazily inside each function so ``hermes_cli.auth.`` patches still intercept (and no import cycle). """ from __future__ import annotations import base64 import hashlib import logging import os import ssl import sys import threading import time import webbrowser from http.server import BaseHTTPRequestHandler, HTTPServer from pathlib import Path from typing import Any, Callable, Dict, FrozenSet, Optional from urllib.parse import parse_qs, urlparse from hermes_cli.auth_constants import ( AuthError, DEFAULT_NOUS_PORTAL_URL, DEVICE_AUTH_POLL_INTERVAL_CAP_SECONDS, DEVICE_CODE_GRANT_TYPE, OAUTH_OVER_SSH_DOCS_URL, httpx) from utils import is_truthy_value # Log-record parity with the origin module (caplog tests pin "hermes_cli.auth"). logger = logging.getLogger("hermes_cli.auth") # Console/text-mode browsers that ``webbrowser`` will launch INSIDE the terminal, hijacking the # user's TTY with an unusable text browser. When the resolved browser is one of these we refuse # to auto-open and fall back to the print-the-URL path, same as a remote session. _CONSOLE_BROWSER_NAMES: FrozenSet[str] = frozenset({ "w3m", "lynx", "links", "links2", "elinks", "www-browser", "browsh", # TUI browser — still hijacks the terminal }) # Browser-only remote IDEs / cloud shells (they don't set SSH_CLIENT / SSH_TTY). Keep this list # narrow — well-known env vars set by the host platform — so a local shell never trips it. _REMOTE_IDE_ENV_VARS = ( "CLOUD_SHELL", # GCP Cloud Shell "CODESPACES", "CODESPACE_NAME", # GitHub Codespaces "GITPOD_WORKSPACE_ID", # Gitpod "REPL_ID", # Replit "STACKBLITZ", # StackBlitz ) def _is_remote_session() -> bool: """Detect environments where loopback OAuth can't reach the local browser. Historically only SSH was checked, but #26923 surfaced that **browser-only remote consoles** (GCP Cloud Shell, GitHub Codespaces, AWS EC2 Instance Connect, Gitpod, Replit, etc.) hit the exact same problem — the user has a browser on their laptop but the loopback listener is bound on the remote VM that the laptop's browser can't reach. These environments typically don't set ``SSH_CLIENT`` / ``SSH_TTY``, so the SSH-only check left them with no guidance and no fallback. """ return bool( os.getenv("SSH_CLIENT") or os.getenv("SSH_TTY") or any(os.getenv(var) for var in _REMOTE_IDE_ENV_VARS)) def _names_console_browser(value: str) -> bool: token = value.strip().split()[0] if value.strip() else "" return os.path.basename(token).lower() in _CONSOLE_BROWSER_NAMES def _can_open_graphical_browser() -> bool: """Return True only when a *graphical* browser is likely to open. On a headless Linux box ``webbrowser.open()`` often resolves to a text-mode browser that takes over the terminal. Heuristics: a ``$BROWSER`` naming a console browser refuses; on Linux a display server (``$DISPLAY`` / ``$WAYLAND_DISPLAY``) is required unless ``$BROWSER`` is set (a console one already returned False, so a set ``$BROWSER`` here is graphical). """ browser_env = os.environ.get("BROWSER", "") if browser_env and _names_console_browser(browser_env): return False if sys.platform.startswith("linux"): has_display = bool(os.environ.get("DISPLAY") or os.environ.get("WAYLAND_DISPLAY")) if not has_display and not browser_env: return False try: controller = webbrowser.get() except Exception: return False # No browser resolvable at all → definitely don't auto-open. candidate = getattr(controller, "name", "") or getattr(controller, "basename", "") or "" return not (candidate and _names_console_browser(candidate)) def _ssh_user_at_host() -> str: """Best-effort 'user@hostname' for the SSH tunnel hint; placeholders keep it valid syntax.""" try: import socket as _socket hostname = _socket.gethostname() or "" except OSError: hostname = "" user = os.getenv("USER") or os.getenv("LOGNAME") or "" return f"{user}@{hostname}" def _pkce_code_verifier(length: int = 64) -> str: return base64.urlsafe_b64encode(os.urandom(length)).decode("ascii").rstrip("=")[:128] def _pkce_code_challenge(code_verifier: str) -> str: digest = hashlib.sha256(code_verifier.encode("utf-8")).digest() return base64.urlsafe_b64encode(digest).decode("ascii").rstrip("=") def _make_loopback_callback_handler( expected_path: str, *, display_name: str, ) -> tuple[type[BaseHTTPRequestHandler], dict[str, Any]]: """Handler class for an RFC 8252 loopback redirect plus the dict it fills in. Only a GET on *expected_path* is accepted (anything else is a 404 and leaves the result untouched), so a nonce embedded in the path acts as the CSRF ``state`` for authorization servers that do not echo an explicit ``state`` parameter. """ result: dict[str, Any] = {"code": None, "state": None, "error": None, "error_description": None} class _LoopbackCallbackHandler(BaseHTTPRequestHandler): def do_GET(self) -> None: # noqa: N802 parsed = urlparse(self.path) if parsed.path != expected_path: self.send_response(404) self.end_headers() self.wfile.write(b"Not found.") return params = parse_qs(parsed.query) for key in result: result[key] = params.get(key, [None])[0] self.send_response(200) self.send_header("Content-Type", "text/html; charset=utf-8") self.end_headers() outcome = "failed" if result["error"] else "received" self.wfile.write( f"

{display_name} authorization {outcome}.

" "You can close this tab.".encode("utf-8")) def log_message(self, format: str, *args: Any) -> None: # noqa: A003 return return _LoopbackCallbackHandler, result def _bind_loopback_callback_server( host: str, port: int, handler_cls: type[BaseHTTPRequestHandler], *, err: Callable[..., AuthError], bind_failed_code: str, ) -> HTTPServer: """Bind the loopback listener up front (``port=0`` = OS-assigned) so the redirect URI sent to the authorization server names a port we already own — no probe-close-rebind race.""" class _ReuseHTTPServer(HTTPServer): allow_reuse_address = True try: return _ReuseHTTPServer((host, port), handler_cls) except OSError as exc: raise err(f"Could not bind callback server on {host}:{port}: {exc}", bind_failed_code) from exc def _serve_loopback_callback( server: HTTPServer, result: dict[str, Any], *, timeout_seconds: float, err: Callable[..., AuthError], timeout_code: str, ) -> dict[str, Any]: """Serve *server* until the redirect lands in *result* or the deadline passes; always closes.""" thread = threading.Thread(target=server.serve_forever, kwargs={"poll_interval": 0.1}, daemon=True) thread.start() deadline = time.monotonic() + max(5.0, timeout_seconds) try: while time.monotonic() < deadline: if result["code"] or result["error"]: return result time.sleep(0.1) finally: server.shutdown() server.server_close() thread.join(timeout=1.0) raise err("Authorization timed out waiting for the local callback.", timeout_code) def _print_loopback_ssh_hint(redirect_uri: str, *, docs_url: str | None = None) -> None: """Print an SSH tunnel hint when a loopback-redirect OAuth flow runs on a remote host. The auth server redirects the browser to ``127.0.0.1:/callback``; when the browser is on another machine (the SSH case) the redirect needs a local port forward to reach us. """ from hermes_cli.auth import _is_remote_session if not _is_remote_session(): return try: parsed = urlparse(redirect_uri) except Exception: return host, port = parsed.hostname or "", parsed.port if host not in {"127.0.0.1", "::1", "localhost"} or not port: return divider = "-" * 60 print( f"\n{divider}\nRemote session detected — SSH tunnel required\n{divider}\n" f"Hermes is waiting for the OAuth callback on {redirect_uri}\n" "but your browser is on a different machine. Run this command\n" "in a NEW terminal on your local machine BEFORE opening the URL:\n\n" f" ssh -N -L {port}:127.0.0.1:{port} {_ssh_user_at_host()}\n\n" "Then open the authorize URL above in your local browser.") if docs_url: print(f"Provider docs: {docs_url}") print(f"SSH/jump-box guide: {OAUTH_OVER_SSH_DOCS_URL}\n{divider}\n") def _default_verify() -> bool | ssl.SSLContext: """Platform-aware default SSL verify for httpx clients. On macOS with Homebrew Python the system OpenSSL cannot find the system trust store, so pin certifi's bundle when importable; elsewhere defer to httpx's built-in default. """ if sys.platform == "darwin": try: import certifi return ssl.create_default_context(cafile=certifi.where()) except ImportError: pass return True def _resolve_verify( *, insecure: Optional[bool] = None, ca_bundle: Optional[str] = None, auth_state: Optional[Dict[str, Any]] = None) -> bool | ssl.SSLContext: from hermes_cli.auth import _default_verify tls_state = auth_state.get("tls") if isinstance(auth_state, dict) else {} tls_state = tls_state if isinstance(tls_state, dict) else {} effective_insecure = ( is_truthy_value(insecure, default=False) if insecure is not None else is_truthy_value(tls_state.get("insecure", False), default=False)) effective_ca = ( ca_bundle or tls_state.get("ca_bundle") or os.getenv("HERMES_CA_BUNDLE") or os.getenv("SSL_CERT_FILE") or os.getenv("REQUESTS_CA_BUNDLE")) if effective_insecure: return False if effective_ca: ca_path = str(effective_ca) if not os.path.isfile(ca_path): logger.warning( "CA bundle path does not exist: %s — falling back to default certificates", ca_path) return _default_verify() return ssl.create_default_context(cafile=ca_path) return _default_verify() def _request_device_code( client: httpx.Client, portal_base_url: str, client_id: str, scope: Optional[str], ) -> Dict[str, Any]: """POST to the device code endpoint. Returns device_code, user_code, etc.""" response = client.post( f"{portal_base_url}/api/oauth/device/code", data={"client_id": client_id, **({"scope": scope} if scope else {})}) response.raise_for_status() data = response.json() required_fields = [ "device_code", "user_code", "verification_uri", "verification_uri_complete", "expires_in", "interval"] missing = [f for f in required_fields if f not in data] if missing: raise ValueError(f"Device code response missing fields: {', '.join(missing)}") return data def _nous_device_auth_timeout_message(portal_base_url: str) -> str: """Actionable timeout text: the usual cause is Portal sign-in failing in the browser tab. A bare "Timed out waiting for device authorization" gives the user nothing to act on. The most common cause is Portal sign-in failing in the opened browser tab (including the server-side CAPTCHA loop from 20605), so point at the Portal login page and the retry command. See #20605. """ portal = (portal_base_url or DEFAULT_NOUS_PORTAL_URL).rstrip("/") return ( "Timed out waiting for device authorization.\n" " Portal sign-in is required before the device code can be approved.\n" " If the browser showed a CAPTCHA / 'You did not pass CAPTCHA' error,\n" " finish signing in at the Portal in a normal browser tab, then retry:\n" " hermes portal\n" f" Portal login: {portal}/login") def _print_device_code_instructions( verification_url: str, user_code: str, *, open_browser: bool, failure_dash: str = "--", swallow_open_errors: bool = False) -> None: """Print the shared "To continue" device-code block and optionally open the browser. Callers decide *whether* to open (remote-session / graphical-browser gating differs per provider); *failure_dash* keeps each provider's historical hint wording. """ print() print("To continue:") print(f" 1. Open: {verification_url}") print(f" 2. If prompted, enter code: {user_code}") if not open_browser: return try: opened = webbrowser.open(verification_url) except Exception: if not swallow_open_errors: raise opened = False if opened: print(" (Opened browser for verification)") else: print(f" Could not open browser automatically {failure_dash} use the URL above.") def _poll_device_token_generic( post: Callable[[], "httpx.Response"], *, expires_in: int, poll_interval: int, validate_success: Callable[[Dict[str, Any]], None], on_non_json_error: Callable[["httpx.Response"], Exception], on_error: Callable[["httpx.Response", Dict[str, Any]], Exception], on_timeout: Callable[[], Exception]) -> Dict[str, Any]: """RFC 8628 device-code polling loop shared by the Nous and xAI flows. ``authorization_pending`` sleeps and retries; ``slow_down`` grows the interval by 1s (cap 30s). A non-JSON 408/429/5xx, or a 403 carrying ``x-vercel-mitigated`` (edge/WAF mitigation, never a real OAuth error), backs off — honoring ``Retry-After``, capped at 60s and at the device-code deadline — instead of aborting a login the user may still be approving. Every other error, a non-JSON error body, and the deadline become provider-specific exceptions via the supplied factories so each caller keeps its exact error contract. """ deadline = time.monotonic() + max(1, expires_in) current_interval = poll_interval edge_backoff = 0.0 # kept apart from current_interval so slow_down/pending pacing is untouched while time.monotonic() < deadline: response = post() if response.status_code == 200: payload = response.json() validate_success(payload) return payload try: error_payload = response.json() except Exception: status = response.status_code # Edge/WAF mitigation: back off and keep polling until the device code expires. if status in {408, 429} or status >= 500 or ( status == 403 and response.headers.get("x-vercel-mitigated")): from agent.retry_utils import parse_retry_after_seconds retry_after = parse_retry_after_seconds(response.headers) if retry_after is not None: edge_backoff = min(max(current_interval, retry_after), 60) else: edge_backoff = min(max(edge_backoff * 2, current_interval * 2, 5), 60) time.sleep(max(0.0, min(edge_backoff, deadline - time.monotonic()))) continue response.raise_for_status() raise on_non_json_error(response) edge_backoff = 0.0 error_code = str(error_payload.get("error") or "") if error_code == "authorization_pending": time.sleep(current_interval) continue if error_code == "slow_down": current_interval = min(current_interval + 1, 30) time.sleep(current_interval) continue raise on_error(response, error_payload) raise on_timeout() def _poll_for_token( client: httpx.Client, portal_base_url: str, client_id: str, device_code: str, expires_in: int, poll_interval: int) -> Dict[str, Any]: """Poll the Nous token endpoint until the user approves or the code expires.""" def _validate(payload: Dict[str, Any]) -> None: if "access_token" not in payload: raise ValueError("Token response did not include access_token") def _error(_response, error_payload) -> Exception: # Plain copy per OAuth error code; the raw ``code: description`` stays on a Details line. from hermes_cli.auth_error_copy import device_flow_error return device_flow_error( str(error_payload.get("error", "") or ""), str(error_payload.get("error_description") or "Unknown authentication error")) return _poll_device_token_generic( lambda: client.post( f"{portal_base_url}/api/oauth/token", data={ "grant_type": DEVICE_CODE_GRANT_TYPE, "client_id": client_id, "device_code": device_code}), expires_in=expires_in, poll_interval=max(1, min(poll_interval, DEVICE_AUTH_POLL_INTERVAL_CAP_SECONDS)), validate_success=_validate, on_error=_error, on_non_json_error=lambda _r: RuntimeError( "Token endpoint returned a non-JSON error response"), # Enriched at the SOURCE so the CLI login and the dashboard/desktop poller # (web_server_oauth._nous_promotion_poller surfaces it to the UI) both inherit the guidance. on_timeout=lambda: TimeoutError(_nous_device_auth_timeout_message(portal_base_url))) def _prompt_yes_no(prompt: str, *, default: str) -> bool: """``input()`` a [Y/n]-style question; EOF/Ctrl-C count as *default*.""" try: answer = input(prompt).strip().lower() except (EOFError, KeyboardInterrupt): answer = default return answer in {"", "y", "yes"} if default == "y" else answer in {"y", "yes"} def _print_login_success( provider_id: str, config_path: Path, *, show_auth_state: bool = False) -> None: print() print("Login successful!") if show_auth_state: from hermes_constants import display_hermes_home as _dhh print(f" Auth state: {_dhh()}/auth.json") print(f" Config updated: {config_path} (model.provider={provider_id})") def _offer_existing_oauth_credentials( provider_id: str, *, resolve: Callable[[], Dict[str, Any]], is_expiring: Callable[[str, int], bool], display_name: str, default_base_url: str, expired_notice: Optional[str] = None) -> bool: """Offer to reuse still-valid stored OAuth credentials. Returns True when the user accepted. *resolve* attempts a refresh, so a resolved token should be valid — but double-check the expiry before telling the user "Login successful!". """ from hermes_cli.auth import _update_config_for_provider try: existing = resolve() api_key = existing.get("api_key", "") if isinstance(api_key, str) and api_key and not is_expiring(api_key, 60): print(f"Existing {display_name} credentials found in Hermes auth store.") if _prompt_yes_no("Use existing credentials? [Y/n]: ", default="y"): config_path = _update_config_for_provider( provider_id, existing.get("base_url", default_base_url)) _print_login_success(provider_id, config_path) return True elif expired_notice: print(expired_notice) except AuthError: pass return False