2023-01-12 01:04:47 +00:00
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#
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# Copyright 2009 Facebook
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#
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# Licensed under the Apache License, Version 2.0 (the "License"); you may
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# not use this file except in compliance with the License. You may obtain
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# a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
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# WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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# License for the specific language governing permissions and limitations
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# under the License.
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"""WSGI support for the Tornado web framework.
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WSGI is the Python standard for web servers, and allows for interoperability
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between Tornado and other Python web frameworks and servers.
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This module provides WSGI support via the `WSGIContainer` class, which
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makes it possible to run applications using other WSGI frameworks on
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the Tornado HTTP server. The reverse is not supported; the Tornado
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`.Application` and `.RequestHandler` classes are designed for use with
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the Tornado `.HTTPServer` and cannot be used in a generic WSGI
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container.
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"""
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import concurrent.futures
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from io import BytesIO
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import tornado
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import sys
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from tornado.concurrent import dummy_executor
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from tornado import escape
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from tornado import httputil
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from tornado.ioloop import IOLoop
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from tornado.log import access_log
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from typing import List, Tuple, Optional, Callable, Any, Dict, Text
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from types import TracebackType
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import typing
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if typing.TYPE_CHECKING:
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from typing import Type # noqa: F401
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from _typeshed.wsgi import WSGIApplication as WSGIAppType # noqa: F401
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# PEP 3333 specifies that WSGI on python 3 generally deals with byte strings
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# that are smuggled inside objects of type unicode (via the latin1 encoding).
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# This function is like those in the tornado.escape module, but defined
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# here to minimize the temptation to use it in non-wsgi contexts.
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def to_wsgi_str(s: bytes) -> str:
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assert isinstance(s, bytes)
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return s.decode("latin1")
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class WSGIContainer(object):
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r"""Makes a WSGI-compatible application runnable on Tornado's HTTP server.
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.. warning::
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WSGI is a *synchronous* interface, while Tornado's concurrency model
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is based on single-threaded *asynchronous* execution. Many of Tornado's
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distinguishing features are not available in WSGI mode, including efficient
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long-polling and websockets. The primary purpose of `WSGIContainer` is
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to support both WSGI applications and native Tornado ``RequestHandlers`` in
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a single process. WSGI-only applications are likely to be better off
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with a dedicated WSGI server such as ``gunicorn`` or ``uwsgi``.
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Wrap a WSGI application in a `WSGIContainer` to make it implement the Tornado
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`.HTTPServer` ``request_callback`` interface. The `WSGIContainer` object can
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then be passed to classes from the `tornado.routing` module,
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`tornado.web.FallbackHandler`, or to `.HTTPServer` directly.
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This class is intended to let other frameworks (Django, Flask, etc)
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run on the Tornado HTTP server and I/O loop.
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Realistic usage will be more complicated, but the simplest possible example uses a
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hand-written WSGI application with `.HTTPServer`::
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def simple_app(environ, start_response):
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status = "200 OK"
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response_headers = [("Content-type", "text/plain")]
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start_response(status, response_headers)
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return [b"Hello world!\n"]
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async def main():
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container = tornado.wsgi.WSGIContainer(simple_app)
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http_server = tornado.httpserver.HTTPServer(container)
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http_server.listen(8888)
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await asyncio.Event().wait()
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asyncio.run(main())
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The recommended pattern is to use the `tornado.routing` module to set up routing
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rules between your WSGI application and, typically, a `tornado.web.Application`.
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Alternatively, `tornado.web.Application` can be used as the top-level router
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and `tornado.web.FallbackHandler` can embed a `WSGIContainer` within it.
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If the ``executor`` argument is provided, the WSGI application will be executed
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on that executor. This must be an instance of `concurrent.futures.Executor`,
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typically a ``ThreadPoolExecutor`` (``ProcessPoolExecutor`` is not supported).
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If no ``executor`` is given, the application will run on the event loop thread in
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Tornado 6.3; this will change to use an internal thread pool by default in
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Tornado 7.0.
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.. warning::
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By default, the WSGI application is executed on the event loop's thread. This
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limits the server to one request at a time (per process), making it less scalable
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than most other WSGI servers. It is therefore highly recommended that you pass
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a ``ThreadPoolExecutor`` when constructing the `WSGIContainer`, after verifying
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that your application is thread-safe. The default will change to use a
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``ThreadPoolExecutor`` in Tornado 7.0.
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.. versionadded:: 6.3
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The ``executor`` parameter.
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.. deprecated:: 6.3
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The default behavior of running the WSGI application on the event loop thread
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is deprecated and will change in Tornado 7.0 to use a thread pool by default.
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"""
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def __init__(
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self,
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wsgi_application: "WSGIAppType",
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executor: Optional[concurrent.futures.Executor] = None,
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) -> None:
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self.wsgi_application = wsgi_application
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self.executor = dummy_executor if executor is None else executor
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def __call__(self, request: httputil.HTTPServerRequest) -> None:
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IOLoop.current().spawn_callback(self.handle_request, request)
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async def handle_request(self, request: httputil.HTTPServerRequest) -> None:
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data = {} # type: Dict[str, Any]
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response = [] # type: List[bytes]
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def start_response(
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status: str,
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headers: List[Tuple[str, str]],
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exc_info: Optional[
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Tuple[
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"Optional[Type[BaseException]]",
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Optional[BaseException],
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Optional[TracebackType],
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]
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] = None,
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) -> Callable[[bytes], Any]:
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data["status"] = status
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data["headers"] = headers
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return response.append
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loop = IOLoop.current()
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app_response = await loop.run_in_executor(
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self.executor,
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self.wsgi_application,
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self.environ(request),
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start_response,
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)
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try:
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app_response_iter = iter(app_response)
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def next_chunk() -> Optional[bytes]:
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try:
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return next(app_response_iter)
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except StopIteration:
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# StopIteration is special and is not allowed to pass through
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# coroutines normally.
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return None
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while True:
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chunk = await loop.run_in_executor(self.executor, next_chunk)
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if chunk is None:
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break
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response.append(chunk)
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finally:
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if hasattr(app_response, "close"):
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app_response.close() # type: ignore
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body = b"".join(response)
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if not data:
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raise Exception("WSGI app did not call start_response")
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status_code_str, reason = data["status"].split(" ", 1)
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status_code = int(status_code_str)
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headers = data["headers"] # type: List[Tuple[str, str]]
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header_set = set(k.lower() for (k, v) in headers)
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body = escape.utf8(body)
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if status_code != 304:
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if "content-length" not in header_set:
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headers.append(("Content-Length", str(len(body))))
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if "content-type" not in header_set:
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headers.append(("Content-Type", "text/html; charset=UTF-8"))
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if "server" not in header_set:
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headers.append(("Server", "TornadoServer/%s" % tornado.version))
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start_line = httputil.ResponseStartLine("HTTP/1.1", status_code, reason)
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header_obj = httputil.HTTPHeaders()
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for key, value in headers:
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header_obj.add(key, value)
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assert request.connection is not None
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request.connection.write_headers(start_line, header_obj, chunk=body)
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request.connection.finish()
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self._log(status_code, request)
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def environ(self, request: httputil.HTTPServerRequest) -> Dict[Text, Any]:
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"""Converts a `tornado.httputil.HTTPServerRequest` to a WSGI environment.
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.. versionchanged:: 6.3
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No longer a static method.
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"""
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hostport = request.host.split(":")
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if len(hostport) == 2:
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host = hostport[0]
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port = int(hostport[1])
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else:
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host = request.host
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port = 443 if request.protocol == "https" else 80
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environ = {
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"REQUEST_METHOD": request.method,
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"SCRIPT_NAME": "",
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"PATH_INFO": to_wsgi_str(
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escape.url_unescape(request.path, encoding=None, plus=False)
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),
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"QUERY_STRING": request.query,
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"REMOTE_ADDR": request.remote_ip,
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"SERVER_NAME": host,
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"SERVER_PORT": str(port),
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"SERVER_PROTOCOL": request.version,
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"wsgi.version": (1, 0),
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"wsgi.url_scheme": request.protocol,
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"wsgi.input": BytesIO(escape.utf8(request.body)),
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"wsgi.errors": sys.stderr,
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"wsgi.multithread": self.executor is not dummy_executor,
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"wsgi.multiprocess": True,
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"wsgi.run_once": False,
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}
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if "Content-Type" in request.headers:
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environ["CONTENT_TYPE"] = request.headers.pop("Content-Type")
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if "Content-Length" in request.headers:
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environ["CONTENT_LENGTH"] = request.headers.pop("Content-Length")
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for key, value in request.headers.items():
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environ["HTTP_" + key.replace("-", "_").upper()] = value
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return environ
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def _log(self, status_code: int, request: httputil.HTTPServerRequest) -> None:
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if status_code < 400:
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log_method = access_log.info
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elif status_code < 500:
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log_method = access_log.warning
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else:
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log_method = access_log.error
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request_time = 1000.0 * request.request_time()
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assert request.method is not None
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assert request.uri is not None
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summary = (
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request.method # type: ignore[operator]
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+ " "
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+ request.uri
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+ " ("
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+ request.remote_ip
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+ ")"
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)
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log_method("%d %s %.2fms", status_code, summary, request_time)
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HTTPRequest = httputil.HTTPServerRequest
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