mirror of
https://github.com/SickGear/SickGear.git
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349 lines
9.3 KiB
Python
349 lines
9.3 KiB
Python
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# The contents of this file are subject to the BitTorrent Open Source License
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# Version 1.1 (the License). You may not copy or use this file, in either
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# source code or executable form, except in compliance with the License. You
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# may obtain a copy of the License at http://www.bittorrent.com/license/.
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#
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# Software distributed under the License is distributed on an AS IS basis,
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# WITHOUT WARRANTY OF ANY KIND, either express or implied. See the License
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# for the specific language governing rights and limitations under the
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# License.
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# Written by Petru Paler
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"""bencode.py - bencode encoder + decoder."""
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from .BTL import BTFailure
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from .exceptions import BencodeDecodeError
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from collections import deque
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import sys
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try:
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from typing import Dict, List, Tuple, Deque, Union, TextIO, BinaryIO, Any
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except ImportError:
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Dict = List = Tuple = Deque = Union = TextIO = BinaryIO = Any = None
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try:
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from collections import OrderedDict
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except ImportError:
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OrderedDict = None
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try:
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import pathlib
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except ImportError:
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pathlib = None
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__all__ = (
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'BTFailure',
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'BencodeDecodeError',
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'bencode',
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'bdecode',
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'bread',
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'bwrite',
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'encode',
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'decode'
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)
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def decode_int(x, f):
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# type: (bytes, int) -> Tuple[int, int]
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f += 1
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newf = x.index(b'e', f)
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n = int(x[f:newf])
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if x[f:f + 1] == b'-':
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if x[f + 1:f + 2] == b'0':
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raise ValueError
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elif x[f:f + 1] == b'0' and newf != f + 1:
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raise ValueError
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return n, newf + 1
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def decode_string(x, f, try_decode_utf8=True, force_decode_utf8=False):
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# type: (bytes, int, bool, bool) -> Tuple[bytes, int]
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"""Decode torrent bencoded 'string' in x starting at f.
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An attempt is made to convert the string to a python string from utf-8.
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However, both string and non-string binary data is intermixed in the
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torrent bencoding standard. So we have to guess whether the byte
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sequence is a string or just binary data. We make this guess by trying
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to decode (from utf-8), and if that fails, assuming it is binary data.
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There are some instances where the data SHOULD be a string though.
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You can check enforce this by setting force_decode_utf8 to True. If the
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decoding from utf-8 fails, an UnidcodeDecodeError is raised. Similarly,
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if you know it should not be a string, you can skip the decoding
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attempt by setting try_decode_utf8=False.
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"""
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colon = x.index(b':', f)
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n = int(x[f:colon])
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if x[f:f + 1] == b'0' and colon != f + 1:
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raise ValueError
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colon += 1
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s = x[colon:colon + n]
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if try_decode_utf8:
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try:
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return s.decode('utf-8'), colon + n
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except UnicodeDecodeError:
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if force_decode_utf8:
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raise
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return bytes(s), colon + n
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def decode_list(x, f):
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# type: (bytes, int) -> Tuple[List, int]
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r, f = [], f + 1
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while x[f:f + 1] != b'e':
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v, f = decode_func[x[f:f + 1]](x, f)
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r.append(v)
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return r, f + 1
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def decode_dict_py26(x, f):
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# type: (bytes, int) -> Tuple[Dict[str, Any], int]
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r, f = {}, f + 1
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while x[f] != 'e':
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k, f = decode_string(x, f)
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r[k], f = decode_func[x[f]](x, f)
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return r, f + 1
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def decode_dict(x, f, force_sort=True):
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# type: (bytes, int, bool) -> Tuple[OrderedDict[str, Any], int]
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"""Decode bencoded data to an OrderedDict.
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The BitTorrent standard states that:
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Keys must be strings and appear in sorted order (sorted as raw
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strings, not alphanumerics)
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- http://www.bittorrent.org/beps/bep_0003.html
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Therefore, this function will force the keys to be strings (decoded
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from utf-8), and by default the keys are (re)sorted after reading.
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Set force_sort to False to keep the order of the dictionary as
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represented in x, as many other encoders and decoders do not force this
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property.
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"""
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r, f = OrderedDict(), f + 1
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while x[f:f + 1] != b'e':
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k, f = decode_string(x, f, force_decode_utf8=True)
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r[k], f = decode_func[x[f:f + 1]](x, f)
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if force_sort:
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r = OrderedDict(sorted(r.items()))
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return r, f + 1
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# noinspection PyDictCreation
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decode_func = {}
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decode_func[b'l'] = decode_list
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decode_func[b'i'] = decode_int
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decode_func[b'0'] = decode_string
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decode_func[b'1'] = decode_string
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decode_func[b'2'] = decode_string
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decode_func[b'3'] = decode_string
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decode_func[b'4'] = decode_string
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decode_func[b'5'] = decode_string
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decode_func[b'6'] = decode_string
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decode_func[b'7'] = decode_string
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decode_func[b'8'] = decode_string
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decode_func[b'9'] = decode_string
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if sys.version_info[0] == 2 and sys.version_info[1] == 6:
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decode_func[b'd'] = decode_dict_py26
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else:
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decode_func[b'd'] = decode_dict
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def bdecode(value):
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# type: (bytes) -> Union[Tuple, List, OrderedDict, bool, int, str, bytes]
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"""
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Decode bencode formatted byte string ``value``.
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:param value: Bencode formatted string
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:type value: bytes
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:return: Decoded value
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:rtype: object
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"""
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try:
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r, l = decode_func[value[0:1]](value, 0)
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except (IndexError, KeyError, TypeError, ValueError):
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raise BencodeDecodeError("not a valid bencoded string")
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if l != len(value):
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raise BencodeDecodeError("invalid bencoded value (data after valid prefix)")
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return r
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class Bencached(object):
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__slots__ = ['bencoded']
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def __init__(self, s):
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self.bencoded = s
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def encode_bencached(x, r):
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# type: (Bencached, Deque[bytes]) -> None
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r.append(x.bencoded)
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def encode_int(x, r):
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# type: (int, Deque[bytes]) -> None
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r.extend((b'i', str(x).encode('utf-8'), b'e'))
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def encode_bool(x, r):
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# type: (bool, Deque[bytes]) -> None
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if x:
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encode_int(1, r)
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else:
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encode_int(0, r)
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def encode_bytes(x, r):
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# type: (bytes, Deque[bytes]) -> None
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r.extend((str(len(x)).encode('utf-8'), b':', x))
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def encode_string(x, r):
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# type: (str, Deque[bytes]) -> None
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try:
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s = x.encode('utf-8')
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except UnicodeDecodeError:
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encode_bytes(x, r)
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return
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r.extend((str(len(s)).encode('utf-8'), b':', s))
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def encode_list(x, r):
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# type: (List, Deque[bytes]) -> None
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r.append(b'l')
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for i in x:
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encode_func[type(i)](i, r)
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r.append(b'e')
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def encode_dict(x, r):
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# type: (Dict, Deque[bytes]) -> None
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r.append(b'd')
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ilist = list(x.items())
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ilist.sort()
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for k, v in ilist:
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k = k.encode('utf-8')
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r.extend((str(len(k)).encode('utf-8'), b':', k))
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encode_func[type(v)](v, r)
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r.append(b'e')
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# noinspection PyDictCreation
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encode_func = {}
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encode_func[Bencached] = encode_bencached
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if sys.version_info[0] == 2:
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from types import DictType, IntType, ListType, LongType, StringType, TupleType, UnicodeType
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encode_func[DictType] = encode_dict
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encode_func[IntType] = encode_int
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encode_func[ListType] = encode_list
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encode_func[LongType] = encode_int
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encode_func[StringType] = encode_string
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encode_func[TupleType] = encode_list
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encode_func[UnicodeType] = encode_string
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if OrderedDict is not None:
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encode_func[OrderedDict] = encode_dict
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try:
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from types import BooleanType
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encode_func[BooleanType] = encode_bool
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except ImportError:
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pass
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else:
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encode_func[OrderedDict] = encode_dict
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encode_func[bool] = encode_bool
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encode_func[dict] = encode_dict
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encode_func[int] = encode_int
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encode_func[list] = encode_list
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encode_func[str] = encode_string
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encode_func[tuple] = encode_list
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encode_func[bytes] = encode_bytes
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def bencode(value):
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# type: (Union[Tuple, List, OrderedDict, Dict, bool, int, str, bytes]) -> bytes
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"""
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Encode ``value`` into the bencode format.
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:param value: Value
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:type value: object
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:return: Bencode formatted string
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:rtype: str
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"""
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r = deque() # makes more sense for something with lots of appends
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# Encode provided value
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encode_func[type(value)](value, r)
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# Join parts
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return b''.join(r)
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# Method proxies (for compatibility with other libraries)
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decode = bdecode
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encode = bencode
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def bread(fd):
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# type: (Union[bytes, str, pathlib.Path, pathlib.PurePath, TextIO, BinaryIO]) -> bytes
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"""Return bdecoded data from filename, file, or file-like object.
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if fd is a bytes/string or pathlib.Path-like object, it is opened and
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read, otherwise .read() is used. if read() not available, exception
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raised.
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"""
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if isinstance(fd, (bytes, str)):
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with open(fd, 'rb') as fd:
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return bdecode(fd.read())
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elif pathlib is not None and isinstance(fd, (pathlib.Path, pathlib.PurePath)):
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with open(str(fd), 'rb') as fd:
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return bdecode(fd.read())
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else:
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return bdecode(fd.read())
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def bwrite(data, fd):
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# type: (Union[Tuple, List, OrderedDict, Dict, bool, int, str, bytes], Union[bytes, str, pathlib.Path, pathlib.PurePath, TextIO, BinaryIO]) -> None
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"""Write data in bencoded form to filename, file, or file-like object.
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if fd is bytes/string or pathlib.Path-like object, it is opened and
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written to, otherwise .write() is used. if write() is not available,
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exception raised.
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"""
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if isinstance(fd, (bytes, str)):
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with open(fd, 'wb') as fd:
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fd.write(bencode(data))
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elif pathlib is not None and isinstance(fd, (pathlib.Path, pathlib.PurePath)):
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with open(str(fd), 'wb') as fd:
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fd.write(bencode(data))
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else:
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fd.write(bencode(data))
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