server.py 13 KB

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  1. from __future__ import annotations
  2. import asyncio
  3. import contextlib
  4. import logging
  5. import os
  6. import platform
  7. import signal
  8. import socket
  9. import sys
  10. import threading
  11. import time
  12. from collections.abc import Generator, Sequence
  13. from email.utils import formatdate
  14. from types import FrameType
  15. from typing import TYPE_CHECKING, Union
  16. import click
  17. from uvicorn.config import Config
  18. if TYPE_CHECKING:
  19. from uvicorn.protocols.http.h11_impl import H11Protocol
  20. from uvicorn.protocols.http.httptools_impl import HttpToolsProtocol
  21. from uvicorn.protocols.websockets.websockets_impl import WebSocketProtocol
  22. from uvicorn.protocols.websockets.wsproto_impl import WSProtocol
  23. Protocols = Union[H11Protocol, HttpToolsProtocol, WSProtocol, WebSocketProtocol]
  24. HANDLED_SIGNALS = (
  25. signal.SIGINT, # Unix signal 2. Sent by Ctrl+C.
  26. signal.SIGTERM, # Unix signal 15. Sent by `kill <pid>`.
  27. )
  28. if sys.platform == "win32": # pragma: py-not-win32
  29. HANDLED_SIGNALS += (signal.SIGBREAK,) # Windows signal 21. Sent by Ctrl+Break.
  30. logger = logging.getLogger("uvicorn.error")
  31. class ServerState:
  32. """
  33. Shared servers state that is available between all protocol instances.
  34. """
  35. def __init__(self) -> None:
  36. self.total_requests = 0
  37. self.connections: set[Protocols] = set()
  38. self.tasks: set[asyncio.Task[None]] = set()
  39. self.default_headers: list[tuple[bytes, bytes]] = []
  40. class Server:
  41. def __init__(self, config: Config) -> None:
  42. self.config = config
  43. self.server_state = ServerState()
  44. self.started = False
  45. self.should_exit = False
  46. self.force_exit = False
  47. self.last_notified = 0.0
  48. self._captured_signals: list[int] = []
  49. def run(self, sockets: list[socket.socket] | None = None) -> None:
  50. self.config.setup_event_loop()
  51. return asyncio.run(self.serve(sockets=sockets))
  52. async def serve(self, sockets: list[socket.socket] | None = None) -> None:
  53. with self.capture_signals():
  54. await self._serve(sockets)
  55. async def _serve(self, sockets: list[socket.socket] | None = None) -> None:
  56. process_id = os.getpid()
  57. config = self.config
  58. if not config.loaded:
  59. config.load()
  60. self.lifespan = config.lifespan_class(config)
  61. message = "Started server process [%d]"
  62. color_message = "Started server process [" + click.style("%d", fg="cyan") + "]"
  63. logger.info(message, process_id, extra={"color_message": color_message})
  64. await self.startup(sockets=sockets)
  65. if self.should_exit:
  66. return
  67. await self.main_loop()
  68. await self.shutdown(sockets=sockets)
  69. message = "Finished server process [%d]"
  70. color_message = "Finished server process [" + click.style("%d", fg="cyan") + "]"
  71. logger.info(message, process_id, extra={"color_message": color_message})
  72. async def startup(self, sockets: list[socket.socket] | None = None) -> None:
  73. await self.lifespan.startup()
  74. if self.lifespan.should_exit:
  75. self.should_exit = True
  76. return
  77. config = self.config
  78. def create_protocol(
  79. _loop: asyncio.AbstractEventLoop | None = None,
  80. ) -> asyncio.Protocol:
  81. return config.http_protocol_class( # type: ignore[call-arg]
  82. config=config,
  83. server_state=self.server_state,
  84. app_state=self.lifespan.state,
  85. _loop=_loop,
  86. )
  87. loop = asyncio.get_running_loop()
  88. listeners: Sequence[socket.SocketType]
  89. if sockets is not None: # pragma: full coverage
  90. # Explicitly passed a list of open sockets.
  91. # We use this when the server is run from a Gunicorn worker.
  92. def _share_socket(
  93. sock: socket.SocketType,
  94. ) -> socket.SocketType: # pragma py-linux pragma: py-darwin
  95. # Windows requires the socket be explicitly shared across
  96. # multiple workers (processes).
  97. from socket import fromshare # type: ignore[attr-defined]
  98. sock_data = sock.share(os.getpid()) # type: ignore[attr-defined]
  99. return fromshare(sock_data)
  100. self.servers: list[asyncio.base_events.Server] = []
  101. for sock in sockets:
  102. is_windows = platform.system() == "Windows"
  103. if config.workers > 1 and is_windows: # pragma: py-not-win32
  104. sock = _share_socket(sock) # type: ignore[assignment]
  105. server = await loop.create_server(create_protocol, sock=sock, ssl=config.ssl, backlog=config.backlog)
  106. self.servers.append(server)
  107. listeners = sockets
  108. elif config.fd is not None: # pragma: py-win32
  109. # Use an existing socket, from a file descriptor.
  110. sock = socket.fromfd(config.fd, socket.AF_UNIX, socket.SOCK_STREAM)
  111. server = await loop.create_server(create_protocol, sock=sock, ssl=config.ssl, backlog=config.backlog)
  112. assert server.sockets is not None # mypy
  113. listeners = server.sockets
  114. self.servers = [server]
  115. elif config.uds is not None: # pragma: py-win32
  116. # Create a socket using UNIX domain socket.
  117. uds_perms = 0o666
  118. if os.path.exists(config.uds):
  119. uds_perms = os.stat(config.uds).st_mode # pragma: full coverage
  120. server = await loop.create_unix_server(
  121. create_protocol, path=config.uds, ssl=config.ssl, backlog=config.backlog
  122. )
  123. os.chmod(config.uds, uds_perms)
  124. assert server.sockets is not None # mypy
  125. listeners = server.sockets
  126. self.servers = [server]
  127. else:
  128. # Standard case. Create a socket from a host/port pair.
  129. try:
  130. server = await loop.create_server(
  131. create_protocol,
  132. host=config.host,
  133. port=config.port,
  134. ssl=config.ssl,
  135. backlog=config.backlog,
  136. )
  137. except OSError as exc:
  138. logger.error(exc)
  139. await self.lifespan.shutdown()
  140. sys.exit(1)
  141. assert server.sockets is not None
  142. listeners = server.sockets
  143. self.servers = [server]
  144. if sockets is None:
  145. self._log_started_message(listeners)
  146. else:
  147. # We're most likely running multiple workers, so a message has already been
  148. # logged by `config.bind_socket()`.
  149. pass # pragma: full coverage
  150. self.started = True
  151. def _log_started_message(self, listeners: Sequence[socket.SocketType]) -> None:
  152. config = self.config
  153. if config.fd is not None: # pragma: py-win32
  154. sock = listeners[0]
  155. logger.info(
  156. "Uvicorn running on socket %s (Press CTRL+C to quit)",
  157. sock.getsockname(),
  158. )
  159. elif config.uds is not None: # pragma: py-win32
  160. logger.info("Uvicorn running on unix socket %s (Press CTRL+C to quit)", config.uds)
  161. else:
  162. addr_format = "%s://%s:%d"
  163. host = "0.0.0.0" if config.host is None else config.host
  164. if ":" in host:
  165. # It's an IPv6 address.
  166. addr_format = "%s://[%s]:%d"
  167. port = config.port
  168. if port == 0:
  169. port = listeners[0].getsockname()[1]
  170. protocol_name = "https" if config.ssl else "http"
  171. message = f"Uvicorn running on {addr_format} (Press CTRL+C to quit)"
  172. color_message = "Uvicorn running on " + click.style(addr_format, bold=True) + " (Press CTRL+C to quit)"
  173. logger.info(
  174. message,
  175. protocol_name,
  176. host,
  177. port,
  178. extra={"color_message": color_message},
  179. )
  180. async def main_loop(self) -> None:
  181. counter = 0
  182. should_exit = await self.on_tick(counter)
  183. while not should_exit:
  184. counter += 1
  185. counter = counter % 864000
  186. await asyncio.sleep(0.1)
  187. should_exit = await self.on_tick(counter)
  188. async def on_tick(self, counter: int) -> bool:
  189. # Update the default headers, once per second.
  190. if counter % 10 == 0:
  191. current_time = time.time()
  192. current_date = formatdate(current_time, usegmt=True).encode()
  193. if self.config.date_header:
  194. date_header = [(b"date", current_date)]
  195. else:
  196. date_header = []
  197. self.server_state.default_headers = date_header + self.config.encoded_headers
  198. # Callback to `callback_notify` once every `timeout_notify` seconds.
  199. if self.config.callback_notify is not None:
  200. if current_time - self.last_notified > self.config.timeout_notify: # pragma: full coverage
  201. self.last_notified = current_time
  202. await self.config.callback_notify()
  203. # Determine if we should exit.
  204. if self.should_exit:
  205. return True
  206. max_requests = self.config.limit_max_requests
  207. if max_requests is not None and self.server_state.total_requests >= max_requests:
  208. logger.warning(f"Maximum request limit of {max_requests} exceeded. Terminating process.")
  209. return True
  210. return False
  211. async def shutdown(self, sockets: list[socket.socket] | None = None) -> None:
  212. logger.info("Shutting down")
  213. # Stop accepting new connections.
  214. for server in self.servers:
  215. server.close()
  216. for sock in sockets or []:
  217. sock.close() # pragma: full coverage
  218. # Request shutdown on all existing connections.
  219. for connection in list(self.server_state.connections):
  220. connection.shutdown()
  221. await asyncio.sleep(0.1)
  222. # When 3.10 is not supported anymore, use `async with asyncio.timeout(...):`.
  223. try:
  224. await asyncio.wait_for(
  225. self._wait_tasks_to_complete(),
  226. timeout=self.config.timeout_graceful_shutdown,
  227. )
  228. except asyncio.TimeoutError:
  229. logger.error(
  230. "Cancel %s running task(s), timeout graceful shutdown exceeded",
  231. len(self.server_state.tasks),
  232. )
  233. for t in self.server_state.tasks:
  234. t.cancel(msg="Task cancelled, timeout graceful shutdown exceeded")
  235. # Send the lifespan shutdown event, and wait for application shutdown.
  236. if not self.force_exit:
  237. await self.lifespan.shutdown()
  238. async def _wait_tasks_to_complete(self) -> None:
  239. # Wait for existing connections to finish sending responses.
  240. if self.server_state.connections and not self.force_exit:
  241. msg = "Waiting for connections to close. (CTRL+C to force quit)"
  242. logger.info(msg)
  243. while self.server_state.connections and not self.force_exit:
  244. await asyncio.sleep(0.1)
  245. # Wait for existing tasks to complete.
  246. if self.server_state.tasks and not self.force_exit:
  247. msg = "Waiting for background tasks to complete. (CTRL+C to force quit)"
  248. logger.info(msg)
  249. while self.server_state.tasks and not self.force_exit:
  250. await asyncio.sleep(0.1)
  251. for server in self.servers:
  252. await server.wait_closed()
  253. @contextlib.contextmanager
  254. def capture_signals(self) -> Generator[None, None, None]:
  255. # Signals can only be listened to from the main thread.
  256. if threading.current_thread() is not threading.main_thread():
  257. yield
  258. return
  259. # always use signal.signal, even if loop.add_signal_handler is available
  260. # this allows to restore previous signal handlers later on
  261. original_handlers = {sig: signal.signal(sig, self.handle_exit) for sig in HANDLED_SIGNALS}
  262. try:
  263. yield
  264. finally:
  265. for sig, handler in original_handlers.items():
  266. signal.signal(sig, handler)
  267. # If we did gracefully shut down due to a signal, try to
  268. # trigger the expected behaviour now; multiple signals would be
  269. # done LIFO, see https://stackoverflow.com/questions/48434964
  270. for captured_signal in reversed(self._captured_signals):
  271. signal.raise_signal(captured_signal)
  272. def handle_exit(self, sig: int, frame: FrameType | None) -> None:
  273. self._captured_signals.append(sig)
  274. if self.should_exit and sig == signal.SIGINT:
  275. self.force_exit = True # pragma: full coverage
  276. else:
  277. self.should_exit = True