django1/django/contrib/messages/tests/cookie.py

135 lines
5.3 KiB
Python

import json
from django.contrib.messages import constants
from django.contrib.messages.tests.base import BaseTest
from django.contrib.messages.storage.cookie import (CookieStorage,
MessageEncoder, MessageDecoder)
from django.contrib.messages.storage.base import Message
from django.test.utils import override_settings
def set_cookie_data(storage, messages, invalid=False, encode_empty=False):
"""
Sets ``request.COOKIES`` with the encoded data and removes the storage
backend's loaded data cache.
"""
encoded_data = storage._encode(messages, encode_empty=encode_empty)
if invalid:
# Truncate the first character so that the hash is invalid.
encoded_data = encoded_data[1:]
storage.request.COOKIES = {CookieStorage.cookie_name: encoded_data}
if hasattr(storage, '_loaded_data'):
del storage._loaded_data
def stored_cookie_messages_count(storage, response):
"""
Returns an integer containing the number of messages stored.
"""
# Get a list of cookies, excluding ones with a max-age of 0 (because
# they have been marked for deletion).
cookie = response.cookies.get(storage.cookie_name)
if not cookie or cookie['max-age'] == 0:
return 0
data = storage._decode(cookie.value)
if not data:
return 0
if data[-1] == CookieStorage.not_finished:
data.pop()
return len(data)
@override_settings(SESSION_COOKIE_DOMAIN='.example.com')
class CookieTest(BaseTest):
storage_class = CookieStorage
def stored_messages_count(self, storage, response):
return stored_cookie_messages_count(storage, response)
def test_get(self):
storage = self.storage_class(self.get_request())
# Set initial data.
example_messages = ['test', 'me']
set_cookie_data(storage, example_messages)
# Test that the message actually contains what we expect.
self.assertEqual(list(storage), example_messages)
def test_domain(self):
"""
Ensure that CookieStorage honors SESSION_COOKIE_DOMAIN.
Refs #15618.
"""
# Test before the messages have been consumed
storage = self.get_storage()
response = self.get_response()
storage.add(constants.INFO, 'test')
storage.update(response)
self.assertTrue('test' in response.cookies['messages'].value)
self.assertEqual(response.cookies['messages']['domain'], '.example.com')
self.assertEqual(response.cookies['messages']['expires'], '')
# Test after the messages have been consumed
storage = self.get_storage()
response = self.get_response()
storage.add(constants.INFO, 'test')
for m in storage:
pass # Iterate through the storage to simulate consumption of messages.
storage.update(response)
self.assertEqual(response.cookies['messages'].value, '')
self.assertEqual(response.cookies['messages']['domain'], '.example.com')
self.assertEqual(response.cookies['messages']['expires'], 'Thu, 01-Jan-1970 00:00:00 GMT')
def test_get_bad_cookie(self):
request = self.get_request()
storage = self.storage_class(request)
# Set initial (invalid) data.
example_messages = ['test', 'me']
set_cookie_data(storage, example_messages, invalid=True)
# Test that the message actually contains what we expect.
self.assertEqual(list(storage), [])
def test_max_cookie_length(self):
"""
Tests that, if the data exceeds what is allowed in a cookie, older
messages are removed before saving (and returned by the ``update``
method).
"""
storage = self.get_storage()
response = self.get_response()
# When storing as a cookie, the cookie has constant overhead of approx
# 54 chars, and each message has a constant overhead of about 37 chars
# and a variable overhead of zero in the best case. We aim for a message
# size which will fit 4 messages into the cookie, but not 5.
# See also FallbackTest.test_session_fallback
msg_size = int((CookieStorage.max_cookie_size - 54) / 4.5 - 37)
for i in range(5):
storage.add(constants.INFO, str(i) * msg_size)
unstored_messages = storage.update(response)
cookie_storing = self.stored_messages_count(storage, response)
self.assertEqual(cookie_storing, 4)
self.assertEqual(len(unstored_messages), 1)
self.assertTrue(unstored_messages[0].message == '0' * msg_size)
def test_json_encoder_decoder(self):
"""
Tests that a complex nested data structure containing Message
instances is properly encoded/decoded by the custom JSON
encoder/decoder classes.
"""
messages = [
{
'message': Message(constants.INFO, 'Test message'),
'message_list': [Message(constants.INFO, 'message %s') \
for x in range(5)] + [{'another-message': \
Message(constants.ERROR, 'error')}],
},
Message(constants.INFO, 'message %s'),
]
encoder = MessageEncoder(separators=(',', ':'))
value = encoder.encode(messages)
decoded_messages = json.loads(value, cls=MessageDecoder)
self.assertEqual(messages, decoded_messages)