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6089230d3e
Mocking in the `datetime` module can be tricky. In CPython the datetime C module is used, but PyPy uses a pure Python implementation. This caused issues with the prior approach to mocking `datetime.datetime`. See https://docs.python.org/3/library/unittest.mock-examples.html#partial-mocking
521 lines
18 KiB
Python
521 lines
18 KiB
Python
import platform
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import unittest
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from datetime import datetime, timezone
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from unittest import mock
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from django.test import SimpleTestCase
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from django.utils.datastructures import MultiValueDict
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from django.utils.http import (
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base36_to_int,
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content_disposition_header,
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escape_leading_slashes,
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http_date,
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int_to_base36,
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is_same_domain,
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parse_etags,
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parse_header_parameters,
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parse_http_date,
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quote_etag,
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url_has_allowed_host_and_scheme,
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urlencode,
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urlsafe_base64_decode,
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urlsafe_base64_encode,
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)
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class URLEncodeTests(SimpleTestCase):
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cannot_encode_none_msg = (
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"Cannot encode None for key 'a' in a query string. Did you mean to "
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"pass an empty string or omit the value?"
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)
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def test_tuples(self):
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self.assertEqual(urlencode((("a", 1), ("b", 2), ("c", 3))), "a=1&b=2&c=3")
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def test_dict(self):
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result = urlencode({"a": 1, "b": 2, "c": 3})
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self.assertEqual(result, "a=1&b=2&c=3")
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def test_dict_containing_sequence_not_doseq(self):
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self.assertEqual(urlencode({"a": [1, 2]}, doseq=False), "a=%5B1%2C+2%5D")
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def test_dict_containing_tuple_not_doseq(self):
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self.assertEqual(urlencode({"a": (1, 2)}, doseq=False), "a=%281%2C+2%29")
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def test_custom_iterable_not_doseq(self):
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class IterableWithStr:
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def __str__(self):
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return "custom"
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def __iter__(self):
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yield from range(0, 3)
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self.assertEqual(urlencode({"a": IterableWithStr()}, doseq=False), "a=custom")
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def test_dict_containing_sequence_doseq(self):
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self.assertEqual(urlencode({"a": [1, 2]}, doseq=True), "a=1&a=2")
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def test_dict_containing_empty_sequence_doseq(self):
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self.assertEqual(urlencode({"a": []}, doseq=True), "")
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def test_multivaluedict(self):
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result = urlencode(
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MultiValueDict(
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{
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"name": ["Adrian", "Simon"],
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"position": ["Developer"],
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}
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),
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doseq=True,
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)
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self.assertEqual(result, "name=Adrian&name=Simon&position=Developer")
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def test_dict_with_bytes_values(self):
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self.assertEqual(urlencode({"a": b"abc"}, doseq=True), "a=abc")
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def test_dict_with_sequence_of_bytes(self):
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self.assertEqual(
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urlencode({"a": [b"spam", b"eggs", b"bacon"]}, doseq=True),
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"a=spam&a=eggs&a=bacon",
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)
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def test_dict_with_bytearray(self):
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self.assertEqual(urlencode({"a": bytearray(range(2))}, doseq=True), "a=0&a=1")
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def test_generator(self):
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self.assertEqual(urlencode({"a": range(2)}, doseq=True), "a=0&a=1")
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self.assertEqual(urlencode({"a": range(2)}, doseq=False), "a=range%280%2C+2%29")
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def test_none(self):
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with self.assertRaisesMessage(TypeError, self.cannot_encode_none_msg):
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urlencode({"a": None})
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def test_none_in_sequence(self):
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with self.assertRaisesMessage(TypeError, self.cannot_encode_none_msg):
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urlencode({"a": [None]}, doseq=True)
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def test_none_in_generator(self):
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def gen():
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yield None
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with self.assertRaisesMessage(TypeError, self.cannot_encode_none_msg):
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urlencode({"a": gen()}, doseq=True)
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class Base36IntTests(SimpleTestCase):
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def test_roundtrip(self):
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for n in [0, 1, 1000, 1000000]:
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self.assertEqual(n, base36_to_int(int_to_base36(n)))
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def test_negative_input(self):
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with self.assertRaisesMessage(ValueError, "Negative base36 conversion input."):
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int_to_base36(-1)
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def test_to_base36_errors(self):
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for n in ["1", "foo", {1: 2}, (1, 2, 3), 3.141]:
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with self.assertRaises(TypeError):
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int_to_base36(n)
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def test_invalid_literal(self):
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for n in ["#", " "]:
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with self.assertRaisesMessage(
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ValueError, "invalid literal for int() with base 36: '%s'" % n
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):
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base36_to_int(n)
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def test_input_too_large(self):
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with self.assertRaisesMessage(ValueError, "Base36 input too large"):
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base36_to_int("1" * 14)
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def test_to_int_errors(self):
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for n in [123, {1: 2}, (1, 2, 3), 3.141]:
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with self.assertRaises(TypeError):
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base36_to_int(n)
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def test_values(self):
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for n, b36 in [(0, "0"), (1, "1"), (42, "16"), (818469960, "django")]:
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self.assertEqual(int_to_base36(n), b36)
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self.assertEqual(base36_to_int(b36), n)
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class URLHasAllowedHostAndSchemeTests(unittest.TestCase):
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def test_bad_urls(self):
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bad_urls = (
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"http://example.com",
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"http:///example.com",
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"https://example.com",
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"ftp://example.com",
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r"\\example.com",
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r"\\\example.com",
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r"/\\/example.com",
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r"\\\example.com",
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r"\\example.com",
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r"\\//example.com",
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r"/\/example.com",
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r"\/example.com",
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r"/\example.com",
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"http:///example.com",
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r"http:/\//example.com",
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r"http:\/example.com",
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r"http:/\example.com",
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'javascript:alert("XSS")',
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"\njavascript:alert(x)",
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"java\nscript:alert(x)",
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"\x08//example.com",
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r"http://otherserver\@example.com",
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r"http:\\testserver\@example.com",
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r"http://testserver\me:pass@example.com",
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r"http://testserver\@example.com",
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r"http:\\testserver\confirm\me@example.com",
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"http:999999999",
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"ftp:9999999999",
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"\n",
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"http://[2001:cdba:0000:0000:0000:0000:3257:9652/",
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"http://2001:cdba:0000:0000:0000:0000:3257:9652]/",
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)
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for bad_url in bad_urls:
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with self.subTest(url=bad_url):
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self.assertIs(
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url_has_allowed_host_and_scheme(
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bad_url, allowed_hosts={"testserver", "testserver2"}
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),
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False,
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)
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def test_good_urls(self):
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good_urls = (
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"/view/?param=http://example.com",
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"/view/?param=https://example.com",
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"/view?param=ftp://example.com",
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"view/?param=//example.com",
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"https://testserver/",
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"HTTPS://testserver/",
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"//testserver/",
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"http://testserver/confirm?email=me@example.com",
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"/url%20with%20spaces/",
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"path/http:2222222222",
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)
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for good_url in good_urls:
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with self.subTest(url=good_url):
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self.assertIs(
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url_has_allowed_host_and_scheme(
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good_url, allowed_hosts={"otherserver", "testserver"}
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),
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True,
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)
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def test_basic_auth(self):
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# Valid basic auth credentials are allowed.
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self.assertIs(
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url_has_allowed_host_and_scheme(
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r"http://user:pass@testserver/", allowed_hosts={"user:pass@testserver"}
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),
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True,
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)
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def test_no_allowed_hosts(self):
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# A path without host is allowed.
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self.assertIs(
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url_has_allowed_host_and_scheme(
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"/confirm/me@example.com", allowed_hosts=None
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),
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True,
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)
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# Basic auth without host is not allowed.
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self.assertIs(
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url_has_allowed_host_and_scheme(
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r"http://testserver\@example.com", allowed_hosts=None
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),
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False,
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)
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def test_allowed_hosts_str(self):
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self.assertIs(
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url_has_allowed_host_and_scheme(
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"http://good.com/good", allowed_hosts="good.com"
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),
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True,
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)
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self.assertIs(
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url_has_allowed_host_and_scheme(
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"http://good.co/evil", allowed_hosts="good.com"
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),
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False,
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)
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def test_secure_param_https_urls(self):
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secure_urls = (
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"https://example.com/p",
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"HTTPS://example.com/p",
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"/view/?param=http://example.com",
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)
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for url in secure_urls:
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with self.subTest(url=url):
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self.assertIs(
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url_has_allowed_host_and_scheme(
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url, allowed_hosts={"example.com"}, require_https=True
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),
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True,
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)
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def test_secure_param_non_https_urls(self):
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insecure_urls = (
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"http://example.com/p",
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"ftp://example.com/p",
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"//example.com/p",
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)
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for url in insecure_urls:
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with self.subTest(url=url):
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self.assertIs(
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url_has_allowed_host_and_scheme(
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url, allowed_hosts={"example.com"}, require_https=True
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),
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False,
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)
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class URLSafeBase64Tests(unittest.TestCase):
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def test_roundtrip(self):
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bytestring = b"foo"
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encoded = urlsafe_base64_encode(bytestring)
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decoded = urlsafe_base64_decode(encoded)
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self.assertEqual(bytestring, decoded)
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class IsSameDomainTests(unittest.TestCase):
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def test_good(self):
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for pair in (
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("example.com", "example.com"),
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("example.com", ".example.com"),
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("foo.example.com", ".example.com"),
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("example.com:8888", "example.com:8888"),
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("example.com:8888", ".example.com:8888"),
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("foo.example.com:8888", ".example.com:8888"),
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):
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self.assertIs(is_same_domain(*pair), True)
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def test_bad(self):
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for pair in (
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("example2.com", "example.com"),
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("foo.example.com", "example.com"),
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("example.com:9999", "example.com:8888"),
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("foo.example.com:8888", ""),
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):
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self.assertIs(is_same_domain(*pair), False)
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class ETagProcessingTests(unittest.TestCase):
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def test_parsing(self):
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self.assertEqual(
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parse_etags(r'"" , "etag", "e\\tag", W/"weak"'),
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['""', '"etag"', r'"e\\tag"', 'W/"weak"'],
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)
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self.assertEqual(parse_etags("*"), ["*"])
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# Ignore RFC 2616 ETags that are invalid according to RFC 9110.
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self.assertEqual(parse_etags(r'"etag", "e\"t\"ag"'), ['"etag"'])
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def test_quoting(self):
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self.assertEqual(quote_etag("etag"), '"etag"') # unquoted
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self.assertEqual(quote_etag('"etag"'), '"etag"') # quoted
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self.assertEqual(quote_etag('W/"etag"'), 'W/"etag"') # quoted, weak
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class HttpDateProcessingTests(unittest.TestCase):
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def test_http_date(self):
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t = 1167616461.0
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self.assertEqual(http_date(t), "Mon, 01 Jan 2007 01:54:21 GMT")
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def test_parsing_rfc1123(self):
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parsed = parse_http_date("Sun, 06 Nov 1994 08:49:37 GMT")
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self.assertEqual(
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datetime.fromtimestamp(parsed, timezone.utc),
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datetime(1994, 11, 6, 8, 49, 37, tzinfo=timezone.utc),
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)
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@unittest.skipIf(platform.architecture()[0] == "32bit", "The Year 2038 problem.")
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@mock.patch("django.utils.http.datetime")
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def test_parsing_rfc850(self, mocked_datetime):
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mocked_datetime.side_effect = datetime
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now_1 = datetime(2019, 11, 6, 8, 49, 37, tzinfo=timezone.utc)
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now_2 = datetime(2020, 11, 6, 8, 49, 37, tzinfo=timezone.utc)
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now_3 = datetime(2048, 11, 6, 8, 49, 37, tzinfo=timezone.utc)
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tests = (
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(
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now_1,
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"Tuesday, 31-Dec-69 08:49:37 GMT",
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datetime(2069, 12, 31, 8, 49, 37, tzinfo=timezone.utc),
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),
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(
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now_1,
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"Tuesday, 10-Nov-70 08:49:37 GMT",
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datetime(1970, 11, 10, 8, 49, 37, tzinfo=timezone.utc),
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),
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(
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now_1,
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"Sunday, 06-Nov-94 08:49:37 GMT",
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datetime(1994, 11, 6, 8, 49, 37, tzinfo=timezone.utc),
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),
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(
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now_2,
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"Wednesday, 31-Dec-70 08:49:37 GMT",
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datetime(2070, 12, 31, 8, 49, 37, tzinfo=timezone.utc),
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),
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(
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now_2,
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"Friday, 31-Dec-71 08:49:37 GMT",
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datetime(1971, 12, 31, 8, 49, 37, tzinfo=timezone.utc),
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),
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(
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now_3,
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"Sunday, 31-Dec-00 08:49:37 GMT",
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datetime(2000, 12, 31, 8, 49, 37, tzinfo=timezone.utc),
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),
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(
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now_3,
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"Friday, 31-Dec-99 08:49:37 GMT",
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datetime(1999, 12, 31, 8, 49, 37, tzinfo=timezone.utc),
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),
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)
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for now, rfc850str, expected_date in tests:
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with self.subTest(rfc850str=rfc850str):
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mocked_datetime.now.return_value = now
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parsed = parse_http_date(rfc850str)
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mocked_datetime.now.assert_called_once_with(tz=timezone.utc)
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self.assertEqual(
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datetime.fromtimestamp(parsed, timezone.utc),
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expected_date,
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)
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mocked_datetime.reset_mock()
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def test_parsing_asctime(self):
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parsed = parse_http_date("Sun Nov 6 08:49:37 1994")
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self.assertEqual(
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datetime.fromtimestamp(parsed, timezone.utc),
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datetime(1994, 11, 6, 8, 49, 37, tzinfo=timezone.utc),
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)
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def test_parsing_asctime_nonascii_digits(self):
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"""Non-ASCII unicode decimals raise an error."""
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with self.assertRaises(ValueError):
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parse_http_date("Sun Nov 6 08:49:37 1994")
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with self.assertRaises(ValueError):
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parse_http_date("Sun Nov 12 08:49:37 1994")
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def test_parsing_year_less_than_70(self):
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parsed = parse_http_date("Sun Nov 6 08:49:37 0037")
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self.assertEqual(
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datetime.fromtimestamp(parsed, timezone.utc),
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datetime(2037, 11, 6, 8, 49, 37, tzinfo=timezone.utc),
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)
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class EscapeLeadingSlashesTests(unittest.TestCase):
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def test(self):
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tests = (
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("//example.com", "/%2Fexample.com"),
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("//", "/%2F"),
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)
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for url, expected in tests:
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with self.subTest(url=url):
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self.assertEqual(escape_leading_slashes(url), expected)
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class ParseHeaderParameterTests(unittest.TestCase):
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def test_basic(self):
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tests = [
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("text/plain", ("text/plain", {})),
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("text/vnd.just.made.this.up ; ", ("text/vnd.just.made.this.up", {})),
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("text/plain;charset=us-ascii", ("text/plain", {"charset": "us-ascii"})),
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(
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'text/plain ; charset="us-ascii"',
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("text/plain", {"charset": "us-ascii"}),
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),
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(
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'text/plain ; charset="us-ascii"; another=opt',
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("text/plain", {"charset": "us-ascii", "another": "opt"}),
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),
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(
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'attachment; filename="silly.txt"',
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("attachment", {"filename": "silly.txt"}),
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),
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(
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'attachment; filename="strange;name"',
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("attachment", {"filename": "strange;name"}),
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),
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(
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'attachment; filename="strange;name";size=123;',
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("attachment", {"filename": "strange;name", "size": "123"}),
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),
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(
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'form-data; name="files"; filename="fo\\"o;bar"',
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("form-data", {"name": "files", "filename": 'fo"o;bar'}),
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),
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]
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for header, expected in tests:
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with self.subTest(header=header):
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self.assertEqual(parse_header_parameters(header), expected)
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def test_rfc2231_parsing(self):
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test_data = (
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(
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"Content-Type: application/x-stuff; "
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"title*=us-ascii'en-us'This%20is%20%2A%2A%2Afun%2A%2A%2A",
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"This is ***fun***",
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),
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(
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"Content-Type: application/x-stuff; title*=UTF-8''foo-%c3%a4.html",
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"foo-ä.html",
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),
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(
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"Content-Type: application/x-stuff; title*=iso-8859-1''foo-%E4.html",
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"foo-ä.html",
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),
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)
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for raw_line, expected_title in test_data:
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parsed = parse_header_parameters(raw_line)
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self.assertEqual(parsed[1]["title"], expected_title)
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def test_rfc2231_wrong_title(self):
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"""
|
||
Test wrongly formatted RFC 2231 headers (missing double single quotes).
|
||
Parsing should not crash (#24209).
|
||
"""
|
||
test_data = (
|
||
(
|
||
"Content-Type: application/x-stuff; "
|
||
"title*='This%20is%20%2A%2A%2Afun%2A%2A%2A",
|
||
"'This%20is%20%2A%2A%2Afun%2A%2A%2A",
|
||
),
|
||
("Content-Type: application/x-stuff; title*='foo.html", "'foo.html"),
|
||
("Content-Type: application/x-stuff; title*=bar.html", "bar.html"),
|
||
)
|
||
for raw_line, expected_title in test_data:
|
||
parsed = parse_header_parameters(raw_line)
|
||
self.assertEqual(parsed[1]["title"], expected_title)
|
||
|
||
|
||
class ContentDispositionHeaderTests(unittest.TestCase):
|
||
def test_basic(self):
|
||
tests = (
|
||
((False, None), None),
|
||
((False, "example"), 'inline; filename="example"'),
|
||
((True, None), "attachment"),
|
||
((True, "example"), 'attachment; filename="example"'),
|
||
(
|
||
(True, '"example" file\\name'),
|
||
'attachment; filename="\\"example\\" file\\\\name"',
|
||
),
|
||
((True, "espécimen"), "attachment; filename*=utf-8''esp%C3%A9cimen"),
|
||
(
|
||
(True, '"espécimen" filename'),
|
||
"attachment; filename*=utf-8''%22esp%C3%A9cimen%22%20filename",
|
||
),
|
||
)
|
||
|
||
for (is_attachment, filename), expected in tests:
|
||
with self.subTest(is_attachment=is_attachment, filename=filename):
|
||
self.assertEqual(
|
||
content_disposition_header(is_attachment, filename), expected
|
||
)
|