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708 lines
28 KiB
Python
708 lines
28 KiB
Python
import json
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import mimetypes
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import os
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import re
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import sys
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from copy import copy
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from functools import partial
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from http import HTTPStatus
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from importlib import import_module
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from io import BytesIO
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from urllib.parse import unquote_to_bytes, urljoin, urlparse, urlsplit
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from django.conf import settings
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from django.core.handlers.base import BaseHandler
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from django.core.handlers.wsgi import WSGIRequest
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from django.core.serializers.json import DjangoJSONEncoder
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from django.core.signals import (
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got_request_exception, request_finished, request_started,
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)
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from django.db import close_old_connections
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from django.http import HttpRequest, QueryDict, SimpleCookie
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from django.test import signals
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from django.test.utils import ContextList
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from django.urls import resolve
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from django.utils.encoding import force_bytes
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from django.utils.functional import SimpleLazyObject
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from django.utils.http import urlencode
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from django.utils.itercompat import is_iterable
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__all__ = ('Client', 'RedirectCycleError', 'RequestFactory', 'encode_file', 'encode_multipart')
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BOUNDARY = 'BoUnDaRyStRiNg'
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MULTIPART_CONTENT = 'multipart/form-data; boundary=%s' % BOUNDARY
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CONTENT_TYPE_RE = re.compile(r'.*; charset=([\w\d-]+);?')
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# Structured suffix spec: https://tools.ietf.org/html/rfc6838#section-4.2.8
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JSON_CONTENT_TYPE_RE = re.compile(r'^application\/(.+\+)?json')
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class RedirectCycleError(Exception):
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"""The test client has been asked to follow a redirect loop."""
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def __init__(self, message, last_response):
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super().__init__(message)
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self.last_response = last_response
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self.redirect_chain = last_response.redirect_chain
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class FakePayload:
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"""
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A wrapper around BytesIO that restricts what can be read since data from
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the network can't be sought and cannot be read outside of its content
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length. This makes sure that views can't do anything under the test client
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that wouldn't work in real life.
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"""
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def __init__(self, content=None):
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self.__content = BytesIO()
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self.__len = 0
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self.read_started = False
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if content is not None:
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self.write(content)
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def __len__(self):
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return self.__len
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def read(self, num_bytes=None):
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if not self.read_started:
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self.__content.seek(0)
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self.read_started = True
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if num_bytes is None:
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num_bytes = self.__len or 0
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assert self.__len >= num_bytes, "Cannot read more than the available bytes from the HTTP incoming data."
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content = self.__content.read(num_bytes)
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self.__len -= num_bytes
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return content
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def write(self, content):
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if self.read_started:
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raise ValueError("Unable to write a payload after it's been read")
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content = force_bytes(content)
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self.__content.write(content)
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self.__len += len(content)
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def closing_iterator_wrapper(iterable, close):
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try:
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yield from iterable
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finally:
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request_finished.disconnect(close_old_connections)
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close() # will fire request_finished
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request_finished.connect(close_old_connections)
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def conditional_content_removal(request, response):
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"""
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Simulate the behavior of most Web servers by removing the content of
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responses for HEAD requests, 1xx, 204, and 304 responses. Ensure
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compliance with RFC 7230, section 3.3.3.
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"""
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if 100 <= response.status_code < 200 or response.status_code in (204, 304):
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if response.streaming:
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response.streaming_content = []
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else:
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response.content = b''
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if request.method == 'HEAD':
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if response.streaming:
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response.streaming_content = []
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else:
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response.content = b''
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return response
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class ClientHandler(BaseHandler):
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"""
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A HTTP Handler that can be used for testing purposes. Use the WSGI
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interface to compose requests, but return the raw HttpResponse object with
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the originating WSGIRequest attached to its ``wsgi_request`` attribute.
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"""
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def __init__(self, enforce_csrf_checks=True, *args, **kwargs):
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self.enforce_csrf_checks = enforce_csrf_checks
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super().__init__(*args, **kwargs)
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def __call__(self, environ):
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# Set up middleware if needed. We couldn't do this earlier, because
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# settings weren't available.
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if self._middleware_chain is None:
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self.load_middleware()
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request_started.disconnect(close_old_connections)
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request_started.send(sender=self.__class__, environ=environ)
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request_started.connect(close_old_connections)
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request = WSGIRequest(environ)
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# sneaky little hack so that we can easily get round
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# CsrfViewMiddleware. This makes life easier, and is probably
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# required for backwards compatibility with external tests against
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# admin views.
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request._dont_enforce_csrf_checks = not self.enforce_csrf_checks
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# Request goes through middleware.
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response = self.get_response(request)
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# Simulate behaviors of most Web servers.
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conditional_content_removal(request, response)
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# Attach the originating request to the response so that it could be
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# later retrieved.
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response.wsgi_request = request
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# Emulate a WSGI server by calling the close method on completion.
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if response.streaming:
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response.streaming_content = closing_iterator_wrapper(
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response.streaming_content, response.close)
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else:
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request_finished.disconnect(close_old_connections)
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response.close() # will fire request_finished
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request_finished.connect(close_old_connections)
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return response
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def store_rendered_templates(store, signal, sender, template, context, **kwargs):
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"""
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Store templates and contexts that are rendered.
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The context is copied so that it is an accurate representation at the time
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of rendering.
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"""
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store.setdefault('templates', []).append(template)
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if 'context' not in store:
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store['context'] = ContextList()
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store['context'].append(copy(context))
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def encode_multipart(boundary, data):
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"""
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Encode multipart POST data from a dictionary of form values.
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The key will be used as the form data name; the value will be transmitted
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as content. If the value is a file, the contents of the file will be sent
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as an application/octet-stream; otherwise, str(value) will be sent.
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"""
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lines = []
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def to_bytes(s):
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return force_bytes(s, settings.DEFAULT_CHARSET)
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# Not by any means perfect, but good enough for our purposes.
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def is_file(thing):
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return hasattr(thing, "read") and callable(thing.read)
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# Each bit of the multipart form data could be either a form value or a
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# file, or a *list* of form values and/or files. Remember that HTTP field
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# names can be duplicated!
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for (key, value) in data.items():
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if value is None:
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raise TypeError(
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"Cannot encode None for key '%s' as POST data. Did you mean "
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"to pass an empty string or omit the value?" % key
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)
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elif is_file(value):
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lines.extend(encode_file(boundary, key, value))
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elif not isinstance(value, str) and is_iterable(value):
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for item in value:
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if is_file(item):
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lines.extend(encode_file(boundary, key, item))
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else:
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lines.extend(to_bytes(val) for val in [
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'--%s' % boundary,
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'Content-Disposition: form-data; name="%s"' % key,
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'',
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item
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])
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else:
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lines.extend(to_bytes(val) for val in [
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'--%s' % boundary,
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'Content-Disposition: form-data; name="%s"' % key,
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'',
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value
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])
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lines.extend([
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to_bytes('--%s--' % boundary),
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b'',
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])
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return b'\r\n'.join(lines)
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def encode_file(boundary, key, file):
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def to_bytes(s):
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return force_bytes(s, settings.DEFAULT_CHARSET)
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# file.name might not be a string. For example, it's an int for
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# tempfile.TemporaryFile().
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file_has_string_name = hasattr(file, 'name') and isinstance(file.name, str)
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filename = os.path.basename(file.name) if file_has_string_name else ''
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if hasattr(file, 'content_type'):
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content_type = file.content_type
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elif filename:
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content_type = mimetypes.guess_type(filename)[0]
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else:
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content_type = None
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if content_type is None:
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content_type = 'application/octet-stream'
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filename = filename or key
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return [
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to_bytes('--%s' % boundary),
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to_bytes('Content-Disposition: form-data; name="%s"; filename="%s"'
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% (key, filename)),
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to_bytes('Content-Type: %s' % content_type),
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b'',
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to_bytes(file.read())
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]
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class RequestFactory:
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"""
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Class that lets you create mock Request objects for use in testing.
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Usage:
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rf = RequestFactory()
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get_request = rf.get('/hello/')
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post_request = rf.post('/submit/', {'foo': 'bar'})
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Once you have a request object you can pass it to any view function,
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just as if that view had been hooked up using a URLconf.
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"""
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def __init__(self, *, json_encoder=DjangoJSONEncoder, **defaults):
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self.json_encoder = json_encoder
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self.defaults = defaults
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self.cookies = SimpleCookie()
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self.errors = BytesIO()
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def _base_environ(self, **request):
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"""
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The base environment for a request.
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"""
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# This is a minimal valid WSGI environ dictionary, plus:
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# - HTTP_COOKIE: for cookie support,
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# - REMOTE_ADDR: often useful, see #8551.
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# See https://www.python.org/dev/peps/pep-3333/#environ-variables
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return {
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'HTTP_COOKIE': '; '.join(sorted(
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'%s=%s' % (morsel.key, morsel.coded_value)
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for morsel in self.cookies.values()
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)),
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'PATH_INFO': '/',
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'REMOTE_ADDR': '127.0.0.1',
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'REQUEST_METHOD': 'GET',
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'SCRIPT_NAME': '',
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'SERVER_NAME': 'testserver',
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'SERVER_PORT': '80',
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'SERVER_PROTOCOL': 'HTTP/1.1',
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'wsgi.version': (1, 0),
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'wsgi.url_scheme': 'http',
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'wsgi.input': FakePayload(b''),
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'wsgi.errors': self.errors,
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'wsgi.multiprocess': True,
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'wsgi.multithread': False,
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'wsgi.run_once': False,
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**self.defaults,
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**request,
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}
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def request(self, **request):
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"Construct a generic request object."
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return WSGIRequest(self._base_environ(**request))
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def _encode_data(self, data, content_type):
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if content_type is MULTIPART_CONTENT:
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return encode_multipart(BOUNDARY, data)
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else:
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# Encode the content so that the byte representation is correct.
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match = CONTENT_TYPE_RE.match(content_type)
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if match:
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charset = match.group(1)
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else:
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charset = settings.DEFAULT_CHARSET
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return force_bytes(data, encoding=charset)
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def _encode_json(self, data, content_type):
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"""
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Return encoded JSON if data is a dict, list, or tuple and content_type
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is application/json.
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"""
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should_encode = JSON_CONTENT_TYPE_RE.match(content_type) and isinstance(data, (dict, list, tuple))
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return json.dumps(data, cls=self.json_encoder) if should_encode else data
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def _get_path(self, parsed):
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path = parsed.path
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# If there are parameters, add them
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if parsed.params:
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path += ";" + parsed.params
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path = unquote_to_bytes(path)
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# Replace the behavior where non-ASCII values in the WSGI environ are
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# arbitrarily decoded with ISO-8859-1.
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# Refs comment in `get_bytes_from_wsgi()`.
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return path.decode('iso-8859-1')
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def get(self, path, data=None, secure=False, **extra):
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"""Construct a GET request."""
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data = {} if data is None else data
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return self.generic('GET', path, secure=secure, **{
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'QUERY_STRING': urlencode(data, doseq=True),
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**extra,
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})
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def post(self, path, data=None, content_type=MULTIPART_CONTENT,
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secure=False, **extra):
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"""Construct a POST request."""
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data = self._encode_json({} if data is None else data, content_type)
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post_data = self._encode_data(data, content_type)
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return self.generic('POST', path, post_data, content_type,
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secure=secure, **extra)
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def head(self, path, data=None, secure=False, **extra):
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"""Construct a HEAD request."""
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data = {} if data is None else data
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return self.generic('HEAD', path, secure=secure, **{
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'QUERY_STRING': urlencode(data, doseq=True),
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**extra,
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})
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def trace(self, path, secure=False, **extra):
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"""Construct a TRACE request."""
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return self.generic('TRACE', path, secure=secure, **extra)
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def options(self, path, data='', content_type='application/octet-stream',
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secure=False, **extra):
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"Construct an OPTIONS request."
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return self.generic('OPTIONS', path, data, content_type,
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secure=secure, **extra)
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def put(self, path, data='', content_type='application/octet-stream',
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secure=False, **extra):
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"""Construct a PUT request."""
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data = self._encode_json(data, content_type)
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return self.generic('PUT', path, data, content_type,
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secure=secure, **extra)
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def patch(self, path, data='', content_type='application/octet-stream',
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secure=False, **extra):
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"""Construct a PATCH request."""
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data = self._encode_json(data, content_type)
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return self.generic('PATCH', path, data, content_type,
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secure=secure, **extra)
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def delete(self, path, data='', content_type='application/octet-stream',
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secure=False, **extra):
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"""Construct a DELETE request."""
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data = self._encode_json(data, content_type)
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return self.generic('DELETE', path, data, content_type,
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secure=secure, **extra)
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def generic(self, method, path, data='',
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content_type='application/octet-stream', secure=False,
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**extra):
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"""Construct an arbitrary HTTP request."""
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parsed = urlparse(str(path)) # path can be lazy
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data = force_bytes(data, settings.DEFAULT_CHARSET)
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r = {
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'PATH_INFO': self._get_path(parsed),
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'REQUEST_METHOD': method,
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'SERVER_PORT': '443' if secure else '80',
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'wsgi.url_scheme': 'https' if secure else 'http',
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}
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if data:
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r.update({
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'CONTENT_LENGTH': str(len(data)),
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'CONTENT_TYPE': content_type,
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'wsgi.input': FakePayload(data),
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})
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r.update(extra)
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# If QUERY_STRING is absent or empty, we want to extract it from the URL.
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if not r.get('QUERY_STRING'):
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# WSGI requires latin-1 encoded strings. See get_path_info().
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query_string = parsed[4].encode().decode('iso-8859-1')
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r['QUERY_STRING'] = query_string
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return self.request(**r)
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class Client(RequestFactory):
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"""
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A class that can act as a client for testing purposes.
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It allows the user to compose GET and POST requests, and
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obtain the response that the server gave to those requests.
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The server Response objects are annotated with the details
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of the contexts and templates that were rendered during the
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process of serving the request.
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Client objects are stateful - they will retain cookie (and
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thus session) details for the lifetime of the Client instance.
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This is not intended as a replacement for Twill/Selenium or
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the like - it is here to allow testing against the
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contexts and templates produced by a view, rather than the
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HTML rendered to the end-user.
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"""
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def __init__(self, enforce_csrf_checks=False, raise_request_exception=True, **defaults):
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super().__init__(**defaults)
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self.handler = ClientHandler(enforce_csrf_checks)
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self.raise_request_exception = raise_request_exception
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self.exc_info = None
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def store_exc_info(self, **kwargs):
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"""Store exceptions when they are generated by a view."""
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self.exc_info = sys.exc_info()
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@property
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def session(self):
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"""Return the current session variables."""
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engine = import_module(settings.SESSION_ENGINE)
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cookie = self.cookies.get(settings.SESSION_COOKIE_NAME)
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if cookie:
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return engine.SessionStore(cookie.value)
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session = engine.SessionStore()
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session.save()
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self.cookies[settings.SESSION_COOKIE_NAME] = session.session_key
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return session
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def request(self, **request):
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"""
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The master request method. Compose the environment dictionary and pass
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to the handler, return the result of the handler. Assume defaults for
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the query environment, which can be overridden using the arguments to
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the request.
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"""
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environ = self._base_environ(**request)
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# Curry a data dictionary into an instance of the template renderer
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# callback function.
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data = {}
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on_template_render = partial(store_rendered_templates, data)
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signal_uid = "template-render-%s" % id(request)
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signals.template_rendered.connect(on_template_render, dispatch_uid=signal_uid)
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# Capture exceptions created by the handler.
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exception_uid = "request-exception-%s" % id(request)
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got_request_exception.connect(self.store_exc_info, dispatch_uid=exception_uid)
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try:
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response = self.handler(environ)
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finally:
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signals.template_rendered.disconnect(dispatch_uid=signal_uid)
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got_request_exception.disconnect(dispatch_uid=exception_uid)
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# Look for a signaled exception, clear the current context exception
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# data, then re-raise the signaled exception. Also clear the signaled
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# exception from the local cache.
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response.exc_info = self.exc_info
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if self.exc_info:
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_, exc_value, _ = self.exc_info
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self.exc_info = None
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if self.raise_request_exception:
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raise exc_value
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# Save the client and request that stimulated the response.
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response.client = self
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response.request = request
|
|
# Add any rendered template detail to the response.
|
|
response.templates = data.get('templates', [])
|
|
response.context = data.get('context')
|
|
response.json = partial(self._parse_json, response)
|
|
# Attach the ResolverMatch instance to the response.
|
|
response.resolver_match = SimpleLazyObject(lambda: resolve(request['PATH_INFO']))
|
|
# Flatten a single context. Not really necessary anymore thanks to the
|
|
# __getattr__ flattening in ContextList, but has some edge case
|
|
# backwards compatibility implications.
|
|
if response.context and len(response.context) == 1:
|
|
response.context = response.context[0]
|
|
# Update persistent cookie data.
|
|
if response.cookies:
|
|
self.cookies.update(response.cookies)
|
|
return response
|
|
|
|
def get(self, path, data=None, follow=False, secure=False, **extra):
|
|
"""Request a response from the server using GET."""
|
|
response = super().get(path, data=data, secure=secure, **extra)
|
|
if follow:
|
|
response = self._handle_redirects(response, data=data, **extra)
|
|
return response
|
|
|
|
def post(self, path, data=None, content_type=MULTIPART_CONTENT,
|
|
follow=False, secure=False, **extra):
|
|
"""Request a response from the server using POST."""
|
|
response = super().post(path, data=data, content_type=content_type, secure=secure, **extra)
|
|
if follow:
|
|
response = self._handle_redirects(response, data=data, content_type=content_type, **extra)
|
|
return response
|
|
|
|
def head(self, path, data=None, follow=False, secure=False, **extra):
|
|
"""Request a response from the server using HEAD."""
|
|
response = super().head(path, data=data, secure=secure, **extra)
|
|
if follow:
|
|
response = self._handle_redirects(response, data=data, **extra)
|
|
return response
|
|
|
|
def options(self, path, data='', content_type='application/octet-stream',
|
|
follow=False, secure=False, **extra):
|
|
"""Request a response from the server using OPTIONS."""
|
|
response = super().options(path, data=data, content_type=content_type, secure=secure, **extra)
|
|
if follow:
|
|
response = self._handle_redirects(response, data=data, content_type=content_type, **extra)
|
|
return response
|
|
|
|
def put(self, path, data='', content_type='application/octet-stream',
|
|
follow=False, secure=False, **extra):
|
|
"""Send a resource to the server using PUT."""
|
|
response = super().put(path, data=data, content_type=content_type, secure=secure, **extra)
|
|
if follow:
|
|
response = self._handle_redirects(response, data=data, content_type=content_type, **extra)
|
|
return response
|
|
|
|
def patch(self, path, data='', content_type='application/octet-stream',
|
|
follow=False, secure=False, **extra):
|
|
"""Send a resource to the server using PATCH."""
|
|
response = super().patch(path, data=data, content_type=content_type, secure=secure, **extra)
|
|
if follow:
|
|
response = self._handle_redirects(response, data=data, content_type=content_type, **extra)
|
|
return response
|
|
|
|
def delete(self, path, data='', content_type='application/octet-stream',
|
|
follow=False, secure=False, **extra):
|
|
"""Send a DELETE request to the server."""
|
|
response = super().delete(path, data=data, content_type=content_type, secure=secure, **extra)
|
|
if follow:
|
|
response = self._handle_redirects(response, data=data, content_type=content_type, **extra)
|
|
return response
|
|
|
|
def trace(self, path, data='', follow=False, secure=False, **extra):
|
|
"""Send a TRACE request to the server."""
|
|
response = super().trace(path, data=data, secure=secure, **extra)
|
|
if follow:
|
|
response = self._handle_redirects(response, data=data, **extra)
|
|
return response
|
|
|
|
def login(self, **credentials):
|
|
"""
|
|
Set the Factory to appear as if it has successfully logged into a site.
|
|
|
|
Return True if login is possible; False if the provided credentials
|
|
are incorrect.
|
|
"""
|
|
from django.contrib.auth import authenticate
|
|
user = authenticate(**credentials)
|
|
if user:
|
|
self._login(user)
|
|
return True
|
|
else:
|
|
return False
|
|
|
|
def force_login(self, user, backend=None):
|
|
def get_backend():
|
|
from django.contrib.auth import load_backend
|
|
for backend_path in settings.AUTHENTICATION_BACKENDS:
|
|
backend = load_backend(backend_path)
|
|
if hasattr(backend, 'get_user'):
|
|
return backend_path
|
|
if backend is None:
|
|
backend = get_backend()
|
|
user.backend = backend
|
|
self._login(user, backend)
|
|
|
|
def _login(self, user, backend=None):
|
|
from django.contrib.auth import login
|
|
engine = import_module(settings.SESSION_ENGINE)
|
|
|
|
# Create a fake request to store login details.
|
|
request = HttpRequest()
|
|
|
|
if self.session:
|
|
request.session = self.session
|
|
else:
|
|
request.session = engine.SessionStore()
|
|
login(request, user, backend)
|
|
|
|
# Save the session values.
|
|
request.session.save()
|
|
|
|
# Set the cookie to represent the session.
|
|
session_cookie = settings.SESSION_COOKIE_NAME
|
|
self.cookies[session_cookie] = request.session.session_key
|
|
cookie_data = {
|
|
'max-age': None,
|
|
'path': '/',
|
|
'domain': settings.SESSION_COOKIE_DOMAIN,
|
|
'secure': settings.SESSION_COOKIE_SECURE or None,
|
|
'expires': None,
|
|
}
|
|
self.cookies[session_cookie].update(cookie_data)
|
|
|
|
def logout(self):
|
|
"""Log out the user by removing the cookies and session object."""
|
|
from django.contrib.auth import get_user, logout
|
|
|
|
request = HttpRequest()
|
|
engine = import_module(settings.SESSION_ENGINE)
|
|
if self.session:
|
|
request.session = self.session
|
|
request.user = get_user(request)
|
|
else:
|
|
request.session = engine.SessionStore()
|
|
logout(request)
|
|
self.cookies = SimpleCookie()
|
|
|
|
def _parse_json(self, response, **extra):
|
|
if not hasattr(response, '_json'):
|
|
if not JSON_CONTENT_TYPE_RE.match(response.get('Content-Type')):
|
|
raise ValueError(
|
|
'Content-Type header is "{0}", not "application/json"'
|
|
.format(response.get('Content-Type'))
|
|
)
|
|
response._json = json.loads(response.content.decode(response.charset), **extra)
|
|
return response._json
|
|
|
|
def _handle_redirects(self, response, data='', content_type='', **extra):
|
|
"""
|
|
Follow any redirects by requesting responses from the server using GET.
|
|
"""
|
|
response.redirect_chain = []
|
|
redirect_status_codes = (
|
|
HTTPStatus.MOVED_PERMANENTLY,
|
|
HTTPStatus.FOUND,
|
|
HTTPStatus.SEE_OTHER,
|
|
HTTPStatus.TEMPORARY_REDIRECT,
|
|
HTTPStatus.PERMANENT_REDIRECT,
|
|
)
|
|
while response.status_code in redirect_status_codes:
|
|
response_url = response.url
|
|
redirect_chain = response.redirect_chain
|
|
redirect_chain.append((response_url, response.status_code))
|
|
|
|
url = urlsplit(response_url)
|
|
if url.scheme:
|
|
extra['wsgi.url_scheme'] = url.scheme
|
|
if url.hostname:
|
|
extra['SERVER_NAME'] = url.hostname
|
|
if url.port:
|
|
extra['SERVER_PORT'] = str(url.port)
|
|
|
|
# Prepend the request path to handle relative path redirects
|
|
path = url.path
|
|
if not path.startswith('/'):
|
|
path = urljoin(response.request['PATH_INFO'], path)
|
|
|
|
if response.status_code in (HTTPStatus.TEMPORARY_REDIRECT, HTTPStatus.PERMANENT_REDIRECT):
|
|
# Preserve request method post-redirect for 307/308 responses.
|
|
request_method = getattr(self, response.request['REQUEST_METHOD'].lower())
|
|
else:
|
|
request_method = self.get
|
|
data = QueryDict(url.query)
|
|
content_type = None
|
|
|
|
response = request_method(path, data=data, content_type=content_type, follow=False, **extra)
|
|
response.redirect_chain = redirect_chain
|
|
|
|
if redirect_chain[-1] in redirect_chain[:-1]:
|
|
# Check that we're not redirecting to somewhere we've already
|
|
# been to, to prevent loops.
|
|
raise RedirectCycleError("Redirect loop detected.", last_response=response)
|
|
if len(redirect_chain) > 20:
|
|
# Such a lengthy chain likely also means a loop, but one with
|
|
# a growing path, changing view, or changing query argument;
|
|
# 20 is the value of "network.http.redirection-limit" from Firefox.
|
|
raise RedirectCycleError("Too many redirects.", last_response=response)
|
|
|
|
return response
|