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# cborutil.py - CBOR extensions
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#
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# Copyright 2018 Gregory Szorc <gregory.szorc@gmail.com>
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#
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# This software may be used and distributed according to the terms of the
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# GNU General Public License version 2 or any later version.
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from __future__ import absolute_import
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import struct
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from ..thirdparty.cbor.cbor2 import (
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decoder as decodermod,
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)
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# Very short very of RFC 7049...
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#
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# Each item begins with a byte. The 3 high bits of that byte denote the
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# "major type." The lower 5 bits denote the "subtype." Each major type
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# has its own encoding mechanism.
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#
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# Most types have lengths. However, bytestring, string, array, and map
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# can be indefinite length. These are denotes by a subtype with value 31.
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# Sub-components of those types then come afterwards and are terminated
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# by a "break" byte.
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MAJOR_TYPE_UINT = 0
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MAJOR_TYPE_NEGINT = 1
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MAJOR_TYPE_BYTESTRING = 2
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MAJOR_TYPE_STRING = 3
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MAJOR_TYPE_ARRAY = 4
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MAJOR_TYPE_MAP = 5
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MAJOR_TYPE_SEMANTIC = 6
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MAJOR_TYPE_SPECIAL = 7
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SUBTYPE_MASK = 0b00011111
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SUBTYPE_HALF_FLOAT = 25
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SUBTYPE_SINGLE_FLOAT = 26
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SUBTYPE_DOUBLE_FLOAT = 27
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SUBTYPE_INDEFINITE = 31
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# Indefinite types begin with their major type ORd with information value 31.
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BEGIN_INDEFINITE_BYTESTRING = struct.pack(
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r'>B', MAJOR_TYPE_BYTESTRING << 5 | SUBTYPE_INDEFINITE)
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BEGIN_INDEFINITE_ARRAY = struct.pack(
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r'>B', MAJOR_TYPE_ARRAY << 5 | SUBTYPE_INDEFINITE)
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BEGIN_INDEFINITE_MAP = struct.pack(
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r'>B', MAJOR_TYPE_MAP << 5 | SUBTYPE_INDEFINITE)
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ENCODED_LENGTH_1 = struct.Struct(r'>B')
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ENCODED_LENGTH_2 = struct.Struct(r'>BB')
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ENCODED_LENGTH_3 = struct.Struct(r'>BH')
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ENCODED_LENGTH_4 = struct.Struct(r'>BL')
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ENCODED_LENGTH_5 = struct.Struct(r'>BQ')
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# The break ends an indefinite length item.
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BREAK = b'\xff'
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BREAK_INT = 255
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def encodelength(majortype, length):
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"""Obtain a value encoding the major type and its length."""
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if length < 24:
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return ENCODED_LENGTH_1.pack(majortype << 5 | length)
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elif length < 256:
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return ENCODED_LENGTH_2.pack(majortype << 5 | 24, length)
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elif length < 65536:
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return ENCODED_LENGTH_3.pack(majortype << 5 | 25, length)
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elif length < 4294967296:
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return ENCODED_LENGTH_4.pack(majortype << 5 | 26, length)
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else:
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return ENCODED_LENGTH_5.pack(majortype << 5 | 27, length)
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def streamencodebytestring(v):
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yield encodelength(MAJOR_TYPE_BYTESTRING, len(v))
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yield v
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def streamencodebytestringfromiter(it):
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"""Convert an iterator of chunks to an indefinite bytestring.
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Given an input that is iterable and each element in the iterator is
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representable as bytes, emit an indefinite length bytestring.
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"""
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yield BEGIN_INDEFINITE_BYTESTRING
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for chunk in it:
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yield encodelength(MAJOR_TYPE_BYTESTRING, len(chunk))
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yield chunk
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yield BREAK
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def streamencodeindefinitebytestring(source, chunksize=65536):
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"""Given a large source buffer, emit as an indefinite length bytestring.
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This is a generator of chunks constituting the encoded CBOR data.
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"""
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yield BEGIN_INDEFINITE_BYTESTRING
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i = 0
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l = len(source)
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while True:
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chunk = source[i:i + chunksize]
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i += len(chunk)
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yield encodelength(MAJOR_TYPE_BYTESTRING, len(chunk))
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yield chunk
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if i >= l:
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break
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yield BREAK
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def streamencodeint(v):
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if v >= 18446744073709551616 or v < -18446744073709551616:
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raise ValueError('big integers not supported')
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if v >= 0:
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yield encodelength(MAJOR_TYPE_UINT, v)
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else:
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yield encodelength(MAJOR_TYPE_NEGINT, abs(v) - 1)
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def streamencodearray(l):
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"""Encode a known size iterable to an array."""
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yield encodelength(MAJOR_TYPE_ARRAY, len(l))
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for i in l:
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for chunk in streamencode(i):
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yield chunk
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def streamencodearrayfromiter(it):
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"""Encode an iterator of items to an indefinite length array."""
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yield BEGIN_INDEFINITE_ARRAY
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for i in it:
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for chunk in streamencode(i):
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yield chunk
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yield BREAK
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def streamencodeset(s):
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# https://www.iana.org/assignments/cbor-tags/cbor-tags.xhtml defines
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# semantic tag 258 for finite sets.
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yield encodelength(MAJOR_TYPE_SEMANTIC, 258)
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for chunk in streamencodearray(sorted(s)):
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yield chunk
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def streamencodemap(d):
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"""Encode dictionary to a generator.
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Does not supporting indefinite length dictionaries.
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"""
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yield encodelength(MAJOR_TYPE_MAP, len(d))
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for key, value in sorted(d.iteritems()):
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for chunk in streamencode(key):
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yield chunk
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for chunk in streamencode(value):
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yield chunk
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def streamencodemapfromiter(it):
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"""Given an iterable of (key, value), encode to an indefinite length map."""
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yield BEGIN_INDEFINITE_MAP
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for key, value in it:
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for chunk in streamencode(key):
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yield chunk
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for chunk in streamencode(value):
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yield chunk
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yield BREAK
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def streamencodebool(b):
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# major type 7, simple value 20 and 21.
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yield b'\xf5' if b else b'\xf4'
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def streamencodenone(v):
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# major type 7, simple value 22.
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yield b'\xf6'
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STREAM_ENCODERS = {
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bytes: streamencodebytestring,
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int: streamencodeint,
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list: streamencodearray,
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tuple: streamencodearray,
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dict: streamencodemap,
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set: streamencodeset,
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bool: streamencodebool,
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type(None): streamencodenone,
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}
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def streamencode(v):
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"""Encode a value in a streaming manner.
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Given an input object, encode it to CBOR recursively.
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Returns a generator of CBOR encoded bytes. There is no guarantee
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that each emitted chunk fully decodes to a value or sub-value.
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Encoding is deterministic - unordered collections are sorted.
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"""
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fn = STREAM_ENCODERS.get(v.__class__)
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if not fn:
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raise ValueError('do not know how to encode %s' % type(v))
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return fn(v)
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def readindefinitebytestringtoiter(fh, expectheader=True):
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"""Read an indefinite bytestring to a generator.
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Receives an object with a ``read(X)`` method to read N bytes.
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If ``expectheader`` is True, it is expected that the first byte read
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will represent an indefinite length bytestring. Otherwise, we
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expect the first byte to be part of the first bytestring chunk.
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"""
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read = fh.read
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decodeuint = decodermod.decode_uint
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byteasinteger = decodermod.byte_as_integer
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if expectheader:
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initial = decodermod.byte_as_integer(read(1))
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majortype = initial >> 5
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subtype = initial & SUBTYPE_MASK
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if majortype != MAJOR_TYPE_BYTESTRING:
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raise decodermod.CBORDecodeError(
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'expected major type %d; got %d' % (MAJOR_TYPE_BYTESTRING,
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majortype))
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if subtype != SUBTYPE_INDEFINITE:
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raise decodermod.CBORDecodeError(
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'expected indefinite subtype; got %d' % subtype)
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# The indefinite bytestring is composed of chunks of normal bytestrings.
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# Read chunks until we hit a BREAK byte.
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while True:
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# We need to sniff for the BREAK byte.
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initial = byteasinteger(read(1))
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if initial == BREAK_INT:
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break
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length = decodeuint(fh, initial & SUBTYPE_MASK)
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chunk = read(length)
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if len(chunk) != length:
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raise decodermod.CBORDecodeError(
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'failed to read bytestring chunk: got %d bytes; expected %d' % (
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len(chunk), length))
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yield chunk
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