晋太元中,武陵人捕鱼为业。缘溪行,忘路之远近。忽逢桃花林,夹岸数百步,中无杂树,芳草鲜美,落英缤纷。渔人甚异之,复前行,欲穷其林。 林尽水源,便得一山,山有小口,仿佛若有光。便舍船,从口入。初极狭,才通人。复行数十步,豁然开朗。土地平旷,屋舍俨然,有良田、美池、桑竹之属。阡陌交通,鸡犬相闻。其中往来种作,男女衣着,悉如外人。黄发垂髫,并怡然自乐。 见渔人,乃大惊,问所从来。具答之。便要还家,设酒杀鸡作食。村中闻有此人,咸来问讯。自云先世避秦时乱,率妻子邑人来此绝境,不复出焉,遂与外人间隔。问今是何世,乃不知有汉,无论魏晋。此人一一为具言所闻,皆叹惋。余人各复延至其家,皆出酒食。停数日,辞去。此中人语云:“不足为外人道也。”(间隔 一作:隔绝) 既出,得其船,便扶向路,处处志之。及郡下,诣太守,说如此。太守即遣人随其往,寻向所志,遂迷,不复得路。 南阳刘子骥,高尚士也,闻之,欣然规往。未果,寻病终。后遂无问津者。
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# This file is dual licensed under the terms of the Apache License, Version
# 2.0, and the BSD License. See the LICENSE file in the root of this repository
# for complete details.
from __future__ import absolute_import, division, print_function
import binascii
from cryptography.hazmat.backends import default_backend
from cryptography.hazmat.primitives import ciphers
from cryptography.hazmat.primitives.ciphers import algorithms
_RFC6229_KEY_MATERIALS = [
(
True,
8 * "0102030405060708090a0b0c0d0e0f101112131415161718191a1b1c1d1e1f20",
),
(
False,
8 * "1ada31d5cf688221c109163908ebe51debb46227c6cc8b37641910833222772a",
),
]
_RFC6229_OFFSETS = [
0,
16,
240,
256,
496,
512,
752,
768,
1008,
1024,
1520,
1536,
2032,
2048,
3056,
3072,
4080,
4096,
]
_SIZES_TO_GENERATE = [160]
def _key_for_size(size, keyinfo):
msb, key = keyinfo
if msb:
return key[: size // 4]
else:
return key[-size // 4 :]
def _build_vectors():
count = 0
output = []
key = None
plaintext = binascii.unhexlify(32 * "0")
for size in _SIZES_TO_GENERATE:
for keyinfo in _RFC6229_KEY_MATERIALS:
key = _key_for_size(size, keyinfo)
cipher = ciphers.Cipher(
algorithms.ARC4(binascii.unhexlify(key)),
None,
default_backend(),
)
encryptor = cipher.encryptor()
current_offset = 0
for offset in _RFC6229_OFFSETS:
if offset % 16 != 0:
raise ValueError(
"Offset {} is not evenly divisible by 16".format(
offset
)
)
while current_offset < offset:
encryptor.update(plaintext)
current_offset += len(plaintext)
output.append("\nCOUNT = {}".format(count))
count += 1
output.append("KEY = {}".format(key))
output.append("OFFSET = {}".format(offset))
output.append(
"PLAINTEXT = {}".format(binascii.hexlify(plaintext))
)
output.append(
"CIPHERTEXT = {}".format(
binascii.hexlify(encryptor.update(plaintext))
)
)
current_offset += len(plaintext)
assert not encryptor.finalize()
return "\n".join(output)
def _write_file(data, filename):
with open(filename, "w") as f:
f.write(data)
if __name__ == "__main__":
_write_file(_build_vectors(), "arc4.txt")