457 lines
16 KiB
Python
457 lines
16 KiB
Python
from __future__ import absolute_import, unicode_literals
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import copy
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import os
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import re
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import sys
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import warnings
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from io import BytesIO
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from pprint import pformat
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try:
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from urllib.parse import parse_qsl, urlencode, quote, urljoin
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except ImportError:
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from urllib import urlencode, quote
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from urlparse import parse_qsl, urljoin
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from django.conf import settings
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from django.core import signing
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from django.core.exceptions import SuspiciousOperation, ImproperlyConfigured
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from django.core.files import uploadhandler
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from django.http.multipartparser import MultiPartParser
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from django.utils import six
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from django.utils.datastructures import MultiValueDict, ImmutableList
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from django.utils.encoding import force_bytes, force_text, force_str, iri_to_uri
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RAISE_ERROR = object()
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absolute_http_url_re = re.compile(r"^https?://", re.I)
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class UnreadablePostError(IOError):
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pass
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class HttpRequest(object):
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"""A basic HTTP request."""
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# The encoding used in GET/POST dicts. None means use default setting.
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_encoding = None
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_upload_handlers = []
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def __init__(self):
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self.GET, self.POST, self.COOKIES, self.META, self.FILES = {}, {}, {}, {}, {}
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self.path = ''
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self.path_info = ''
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self.method = None
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self._post_parse_error = False
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def __repr__(self):
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return build_request_repr(self)
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def get_host(self):
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"""Returns the HTTP host using the environment or request headers."""
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# We try three options, in order of decreasing preference.
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if settings.USE_X_FORWARDED_HOST and (
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'HTTP_X_FORWARDED_HOST' in self.META):
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host = self.META['HTTP_X_FORWARDED_HOST']
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elif 'HTTP_HOST' in self.META:
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host = self.META['HTTP_HOST']
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else:
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# Reconstruct the host using the algorithm from PEP 333.
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host = self.META['SERVER_NAME']
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server_port = str(self.META['SERVER_PORT'])
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if server_port != ('443' if self.is_secure() else '80'):
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host = '%s:%s' % (host, server_port)
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# Disallow potentially poisoned hostnames.
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if set(';/?@&=+$,').intersection(host):
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raise SuspiciousOperation('Invalid HTTP_HOST header: %s' % host)
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return host
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def get_full_path(self):
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# RFC 3986 requires query string arguments to be in the ASCII range.
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# Rather than crash if this doesn't happen, we encode defensively.
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return '%s%s' % (self.path, ('?' + iri_to_uri(self.META.get('QUERY_STRING', ''))) if self.META.get('QUERY_STRING', '') else '')
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def get_signed_cookie(self, key, default=RAISE_ERROR, salt='', max_age=None):
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"""
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Attempts to return a signed cookie. If the signature fails or the
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cookie has expired, raises an exception... unless you provide the
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default argument in which case that value will be returned instead.
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"""
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try:
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cookie_value = self.COOKIES[key]
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except KeyError:
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if default is not RAISE_ERROR:
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return default
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else:
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raise
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try:
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value = signing.get_cookie_signer(salt=key + salt).unsign(
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cookie_value, max_age=max_age)
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except signing.BadSignature:
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if default is not RAISE_ERROR:
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return default
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else:
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raise
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return value
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def build_absolute_uri(self, location=None):
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"""
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Builds an absolute URI from the location and the variables available in
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this request. If no location is specified, the absolute URI is built on
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``request.get_full_path()``.
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"""
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if not location:
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location = self.get_full_path()
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if not absolute_http_url_re.match(location):
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current_uri = '%s://%s%s' % ('https' if self.is_secure() else 'http',
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self.get_host(), self.path)
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location = urljoin(current_uri, location)
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return iri_to_uri(location)
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def _is_secure(self):
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return os.environ.get("HTTPS") == "on"
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def is_secure(self):
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# First, check the SECURE_PROXY_SSL_HEADER setting.
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if settings.SECURE_PROXY_SSL_HEADER:
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try:
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header, value = settings.SECURE_PROXY_SSL_HEADER
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except ValueError:
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raise ImproperlyConfigured('The SECURE_PROXY_SSL_HEADER setting must be a tuple containing two values.')
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if self.META.get(header, None) == value:
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return True
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# Failing that, fall back to _is_secure(), which is a hook for
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# subclasses to implement.
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return self._is_secure()
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def is_ajax(self):
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return self.META.get('HTTP_X_REQUESTED_WITH') == 'XMLHttpRequest'
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@property
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def encoding(self):
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return self._encoding
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@encoding.setter
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def encoding(self, val):
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"""
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Sets the encoding used for GET/POST accesses. If the GET or POST
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dictionary has already been created, it is removed and recreated on the
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next access (so that it is decoded correctly).
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"""
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self._encoding = val
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if hasattr(self, '_get'):
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del self._get
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if hasattr(self, '_post'):
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del self._post
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def _initialize_handlers(self):
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self._upload_handlers = [uploadhandler.load_handler(handler, self)
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for handler in settings.FILE_UPLOAD_HANDLERS]
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@property
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def upload_handlers(self):
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if not self._upload_handlers:
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# If there are no upload handlers defined, initialize them from settings.
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self._initialize_handlers()
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return self._upload_handlers
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@upload_handlers.setter
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def upload_handlers(self, upload_handlers):
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if hasattr(self, '_files'):
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raise AttributeError("You cannot set the upload handlers after the upload has been processed.")
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self._upload_handlers = upload_handlers
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def parse_file_upload(self, META, post_data):
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"""Returns a tuple of (POST QueryDict, FILES MultiValueDict)."""
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self.upload_handlers = ImmutableList(
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self.upload_handlers,
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warning="You cannot alter upload handlers after the upload has been processed."
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)
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parser = MultiPartParser(META, post_data, self.upload_handlers, self.encoding)
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return parser.parse()
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@property
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def body(self):
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if not hasattr(self, '_body'):
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if self._read_started:
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raise Exception("You cannot access body after reading from request's data stream")
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try:
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self._body = self.read()
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except IOError as e:
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six.reraise(UnreadablePostError, UnreadablePostError(*e.args), sys.exc_info()[2])
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self._stream = BytesIO(self._body)
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return self._body
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@property
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def raw_post_data(self):
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warnings.warn('HttpRequest.raw_post_data has been deprecated. Use HttpRequest.body instead.', DeprecationWarning)
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return self.body
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def _mark_post_parse_error(self):
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self._post = QueryDict('')
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self._files = MultiValueDict()
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self._post_parse_error = True
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def _load_post_and_files(self):
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"""Populate self._post and self._files if the content-type is a form type"""
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if self.method != 'POST':
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self._post, self._files = QueryDict('', encoding=self._encoding), MultiValueDict()
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return
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if self._read_started and not hasattr(self, '_body'):
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self._mark_post_parse_error()
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return
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if self.META.get('CONTENT_TYPE', '').startswith('multipart/form-data'):
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if hasattr(self, '_body'):
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# Use already read data
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data = BytesIO(self._body)
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else:
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data = self
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try:
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self._post, self._files = self.parse_file_upload(self.META, data)
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except:
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# An error occured while parsing POST data. Since when
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# formatting the error the request handler might access
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# self.POST, set self._post and self._file to prevent
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# attempts to parse POST data again.
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# Mark that an error occured. This allows self.__repr__ to
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# be explicit about it instead of simply representing an
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# empty POST
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self._mark_post_parse_error()
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raise
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elif self.META.get('CONTENT_TYPE', '').startswith('application/x-www-form-urlencoded'):
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self._post, self._files = QueryDict(self.body, encoding=self._encoding), MultiValueDict()
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else:
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self._post, self._files = QueryDict('', encoding=self._encoding), MultiValueDict()
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## File-like and iterator interface.
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##
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## Expects self._stream to be set to an appropriate source of bytes by
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## a corresponding request subclass (e.g. WSGIRequest).
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## Also when request data has already been read by request.POST or
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## request.body, self._stream points to a BytesIO instance
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## containing that data.
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def read(self, *args, **kwargs):
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self._read_started = True
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return self._stream.read(*args, **kwargs)
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def readline(self, *args, **kwargs):
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self._read_started = True
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return self._stream.readline(*args, **kwargs)
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def xreadlines(self):
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while True:
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buf = self.readline()
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if not buf:
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break
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yield buf
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__iter__ = xreadlines
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def readlines(self):
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return list(iter(self))
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class QueryDict(MultiValueDict):
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"""
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A specialized MultiValueDict that takes a query string when initialized.
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This is immutable unless you create a copy of it.
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Values retrieved from this class are converted from the given encoding
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(DEFAULT_CHARSET by default) to unicode.
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"""
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# These are both reset in __init__, but is specified here at the class
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# level so that unpickling will have valid values
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_mutable = True
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_encoding = None
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def __init__(self, query_string, mutable=False, encoding=None):
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super(QueryDict, self).__init__()
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if not encoding:
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encoding = settings.DEFAULT_CHARSET
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self.encoding = encoding
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if six.PY3:
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if isinstance(query_string, bytes):
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# query_string contains URL-encoded data, a subset of ASCII.
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query_string = query_string.decode()
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for key, value in parse_qsl(query_string or '',
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keep_blank_values=True,
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encoding=encoding):
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self.appendlist(key, value)
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else:
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for key, value in parse_qsl(query_string or '',
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keep_blank_values=True):
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self.appendlist(force_text(key, encoding, errors='replace'),
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force_text(value, encoding, errors='replace'))
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self._mutable = mutable
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@property
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def encoding(self):
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if self._encoding is None:
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self._encoding = settings.DEFAULT_CHARSET
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return self._encoding
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@encoding.setter
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def encoding(self, value):
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self._encoding = value
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def _assert_mutable(self):
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if not self._mutable:
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raise AttributeError("This QueryDict instance is immutable")
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def __setitem__(self, key, value):
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self._assert_mutable()
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key = bytes_to_text(key, self.encoding)
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value = bytes_to_text(value, self.encoding)
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super(QueryDict, self).__setitem__(key, value)
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def __delitem__(self, key):
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self._assert_mutable()
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super(QueryDict, self).__delitem__(key)
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def __copy__(self):
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result = self.__class__('', mutable=True, encoding=self.encoding)
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for key, value in six.iterlists(self):
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result.setlist(key, value)
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return result
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def __deepcopy__(self, memo):
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result = self.__class__('', mutable=True, encoding=self.encoding)
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memo[id(self)] = result
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for key, value in six.iterlists(self):
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result.setlist(copy.deepcopy(key, memo), copy.deepcopy(value, memo))
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return result
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def setlist(self, key, list_):
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self._assert_mutable()
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key = bytes_to_text(key, self.encoding)
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list_ = [bytes_to_text(elt, self.encoding) for elt in list_]
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super(QueryDict, self).setlist(key, list_)
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def setlistdefault(self, key, default_list=None):
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self._assert_mutable()
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return super(QueryDict, self).setlistdefault(key, default_list)
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def appendlist(self, key, value):
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self._assert_mutable()
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key = bytes_to_text(key, self.encoding)
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value = bytes_to_text(value, self.encoding)
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super(QueryDict, self).appendlist(key, value)
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def pop(self, key, *args):
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self._assert_mutable()
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return super(QueryDict, self).pop(key, *args)
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def popitem(self):
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self._assert_mutable()
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return super(QueryDict, self).popitem()
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def clear(self):
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self._assert_mutable()
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super(QueryDict, self).clear()
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def setdefault(self, key, default=None):
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self._assert_mutable()
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key = bytes_to_text(key, self.encoding)
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default = bytes_to_text(default, self.encoding)
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return super(QueryDict, self).setdefault(key, default)
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def copy(self):
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"""Returns a mutable copy of this object."""
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return self.__deepcopy__({})
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def urlencode(self, safe=None):
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"""
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Returns an encoded string of all query string arguments.
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:arg safe: Used to specify characters which do not require quoting, for
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example::
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>>> q = QueryDict('', mutable=True)
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>>> q['next'] = '/a&b/'
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>>> q.urlencode()
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'next=%2Fa%26b%2F'
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>>> q.urlencode(safe='/')
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'next=/a%26b/'
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"""
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output = []
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if safe:
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safe = force_bytes(safe, self.encoding)
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encode = lambda k, v: '%s=%s' % ((quote(k, safe), quote(v, safe)))
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else:
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encode = lambda k, v: urlencode({k: v})
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for k, list_ in self.lists():
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k = force_bytes(k, self.encoding)
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output.extend([encode(k, force_bytes(v, self.encoding))
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for v in list_])
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return '&'.join(output)
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def build_request_repr(request, path_override=None, GET_override=None,
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POST_override=None, COOKIES_override=None,
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META_override=None):
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"""
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Builds and returns the request's representation string. The request's
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attributes may be overridden by pre-processed values.
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"""
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# Since this is called as part of error handling, we need to be very
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# robust against potentially malformed input.
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try:
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get = (pformat(GET_override)
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if GET_override is not None
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else pformat(request.GET))
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except Exception:
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get = '<could not parse>'
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if request._post_parse_error:
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post = '<could not parse>'
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else:
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try:
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post = (pformat(POST_override)
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if POST_override is not None
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else pformat(request.POST))
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except Exception:
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post = '<could not parse>'
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try:
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cookies = (pformat(COOKIES_override)
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if COOKIES_override is not None
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else pformat(request.COOKIES))
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except Exception:
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cookies = '<could not parse>'
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try:
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meta = (pformat(META_override)
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if META_override is not None
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else pformat(request.META))
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except Exception:
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meta = '<could not parse>'
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path = path_override if path_override is not None else request.path
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return force_str('<%s\npath:%s,\nGET:%s,\nPOST:%s,\nCOOKIES:%s,\nMETA:%s>' %
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(request.__class__.__name__,
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path,
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six.text_type(get),
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six.text_type(post),
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six.text_type(cookies),
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six.text_type(meta)))
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# It's neither necessary nor appropriate to use
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# django.utils.encoding.smart_text for parsing URLs and form inputs. Thus,
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# this slightly more restricted function, used by QueryDict.
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def bytes_to_text(s, encoding):
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"""
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Converts basestring objects to unicode, using the given encoding. Illegally
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encoded input characters are replaced with Unicode "unknown" codepoint
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(\ufffd).
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Returns any non-basestring objects without change.
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"""
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if isinstance(s, bytes):
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return six.text_type(s, encoding, 'replace')
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else:
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return s
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