Ejemplo n.º 1
0
    def encode(self):
        parts = []
        if self.trusted_packet_sequence_id is not None:
            writer = encoder.UInt32Encoder(10, False, False)
            writer(parts.append, self.trusted_packet_sequence_id)
        if self.track_event is not None:
            tag = encoder.TagBytes(11, wire_format.WIRETYPE_LENGTH_DELIMITED)
            data = self.track_event.encode()
            length = encoder._VarintBytes(len(data))
            parts += [tag, length, data]
        if self.interned_data is not None:
            tag = encoder.TagBytes(12, wire_format.WIRETYPE_LENGTH_DELIMITED)
            data = self.interned_data.encode()
            length = encoder._VarintBytes(len(data))
            parts += [tag, length, data]
        if self.incremental_state_cleared is not None:
            writer = encoder.BoolEncoder(41, False, False)
            writer(parts.append, self.incremental_state_cleared)
        if self.thread_descriptor is not None:
            tag = encoder.TagBytes(44, wire_format.WIRETYPE_LENGTH_DELIMITED)
            data = self.thread_descriptor.encode()
            length = encoder._VarintBytes(len(data))
            parts += [tag, length, data]
        if self.chrome_benchmark_metadata is not None:
            tag = encoder.TagBytes(48, wire_format.WIRETYPE_LENGTH_DELIMITED)
            data = self.chrome_benchmark_metadata.encode()
            length = encoder._VarintBytes(len(data))
            parts += [tag, length, data]

        return b"".join(parts)
Ejemplo n.º 2
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    def encode(self):
        parts = []
        if self.timestamp_delta_us is not None:
            writer = encoder.Int64Encoder(1, False, False)
            writer(parts.append, self.timestamp_delta_us)
        if self.category_iids is not None:
            writer = encoder.UInt32Encoder(3,
                                           is_repeated=True,
                                           is_packed=False)
            writer(parts.append, self.category_iids)
        for annotation in self.debug_annotations:
            tag = encoder.TagBytes(4, wire_format.WIRETYPE_LENGTH_DELIMITED)
            data = annotation.encode()
            length = encoder._VarintBytes(len(data))
            parts += [tag, length, data]
        if self.legacy_event is not None:
            tag = encoder.TagBytes(6, wire_format.WIRETYPE_LENGTH_DELIMITED)
            data = self.legacy_event.encode()
            length = encoder._VarintBytes(len(data))
            parts += [tag, length, data]
        if self.timestamp_absolute_us is not None:
            writer = encoder.Int64Encoder(16, False, False)
            writer(parts.append, self.timestamp_absolute_us)

        return b"".join(parts)
Ejemplo n.º 3
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    def encode(self):
        parts = []
        if self.event_category is not None:
            tag = encoder.TagBytes(1, wire_format.WIRETYPE_LENGTH_DELIMITED)
            data = self.event_category.encode()
            length = encoder._VarintBytes(len(data))
            parts += [tag, length, data]
        if self.legacy_event_name is not None:
            tag = encoder.TagBytes(2, wire_format.WIRETYPE_LENGTH_DELIMITED)
            data = self.legacy_event_name.encode()
            length = encoder._VarintBytes(len(data))
            parts += [tag, length, data]

        return b"".join(parts)
Ejemplo n.º 4
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def GroupDecoder(field_number, is_repeated, is_packed, key, new_default):
    """Returns a decoder for a group field."""

    end_tag_bytes = encoder.TagBytes(field_number,
                                     wire_format.WIRETYPE_END_GROUP)
    end_tag_len = len(end_tag_bytes)

    assert not is_packed
    if is_repeated:
        tag_bytes = encoder.TagBytes(field_number,
                                     wire_format.WIRETYPE_START_GROUP)
        tag_len = len(tag_bytes)

        def DecodeRepeatedField(buffer, pos, end, message, field_dict):
            value = field_dict.get(key)
            if value is None:
                value = field_dict.setdefault(key, new_default(message))
            while 1:
                value = field_dict.get(key)
                if value is None:
                    value = field_dict.setdefault(key, new_default(message))
                # Read sub-message.
                pos = value.add()._InternalParse(buffer, pos, end)
                # Read end tag.
                new_pos = pos + end_tag_len
                if buffer[pos:new_pos] != end_tag_bytes or new_pos > end:
                    raise _DecodeError('Missing group end tag.')
                # Predict that the next tag is another copy of the same repeated field.
                pos = new_pos + tag_len
                if buffer[new_pos:pos] != tag_bytes or new_pos == end:
                    # Prediction failed.  Return.
                    return new_pos

        return DecodeRepeatedField
    else:

        def DecodeField(buffer, pos, end, message, field_dict):
            value = field_dict.get(key)
            if value is None:
                value = field_dict.setdefault(key, new_default(message))
            # Read sub-message.
            pos = value._InternalParse(buffer, pos, end)
            # Read end tag.
            new_pos = pos + end_tag_len
            if buffer[pos:new_pos] != end_tag_bytes or new_pos > end:
                raise _DecodeError('Missing group end tag.')
            return new_pos

        return DecodeField
Ejemplo n.º 5
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 def DecodePackedField(buffer, pos, end, message, field_dict):
     value = field_dict.get(key)
     if value is None:
         value = field_dict.setdefault(key, new_default(message))
     (endpoint, pos) = local_DecodeVarint(buffer, pos)
     endpoint += pos
     if endpoint > end:
         raise _DecodeError('Truncated message.')
     while pos < endpoint:
         value_start_pos = pos
         (element, pos) = _DecodeSignedVarint32(buffer, pos)
         if element in enum_type.values_by_number:
             value.append(element)
         else:
             if not message._unknown_fields:
                 message._unknown_fields = []
             tag_bytes = encoder.TagBytes(field_number,
                                          wire_format.WIRETYPE_VARINT)
             message._unknown_fields.append(
                 (tag_bytes, buffer[value_start_pos:pos]))
     if pos > endpoint:
         if element in enum_type.values_by_number:
             del value[-1]  # Discard corrupt value.
         else:
             del message._unknown_fields[-1]
         raise _DecodeError('Packed element was truncated.')
     return pos
Ejemplo n.º 6
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 def AddDecoder(wiretype, is_packed):
   tag_bytes = encoder.TagBytes(field_descriptor.number, wiretype)
   cls._decoders_by_tag[tag_bytes] = (
       type_checkers.TYPE_TO_DECODER[field_descriptor.type](
           field_descriptor.number, is_repeated, is_packed,
           field_descriptor, field_descriptor._default_constructor),
       field_descriptor if field_descriptor.containing_oneof is not None
       else None)
Ejemplo n.º 7
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    def encode(self):
        parts = []
        for item in self.metadata:
            tag = encoder.TagBytes(2, wire_format.WIRETYPE_LENGTH_DELIMITED)
            data = item.encode()
            length = encoder._VarintBytes(len(data))
            parts += [tag, length, data]

        return b"".join(parts)
Ejemplo n.º 8
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    def SpecificDecoder(field_number, is_repeated, is_packed, key,
                        new_default):

        if is_packed:
            local_DecodeVarint = _DecodeVarint

            def DecodePackedField(buffer, pos, end, message, field_dict):
                value = field_dict.get(key)
                if value is None:
                    value = field_dict.setdefault(key, new_default(message))
                (endpoint, pos) = local_DecodeVarint(buffer, pos)
                endpoint += pos
                if endpoint > end:
                    raise _DecodeError('Truncated message.')
                while pos < endpoint:
                    (element, pos) = decode_value(buffer, pos)
                    value.append(element)
                if pos > endpoint:
                    del value[-1]  # Discard corrupt value.
                    raise _DecodeError('Packed element was truncated.')
                return pos

            return DecodePackedField

        elif is_repeated:
            tag_bytes = encoder.TagBytes(field_number, wire_type)
            tag_len = len(tag_bytes)

            def DecodeRepeatedField(buffer, pos, end, message, field_dict):
                value = field_dict.get(key)
                if value is None:
                    value = field_dict.setdefault(key, new_default(message))
                while 1:
                    (element, new_pos) = decode_value(buffer, pos)
                    value.append(element)
                    # Predict that the next tag is another copy of the same repeated
                    # field.
                    pos = new_pos + tag_len
                    if buffer[new_pos:pos] != tag_bytes or new_pos >= end:
                        # Prediction failed.  Return.
                        if new_pos > end:
                            raise _DecodeError('Truncated message.')
                        return new_pos

            return DecodeRepeatedField

        else:

            def DecodeField(buffer, pos, end, message, field_dict):
                (field_dict[key], pos) = decode_value(buffer, pos)
                if pos > end:
                    del field_dict[key]  # Discard corrupt value.
                    raise _DecodeError('Truncated message.')
                return pos

            return DecodeField
Ejemplo n.º 9
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def MessageDecoder(field_number, is_repeated, is_packed, key, new_default):
    """Returns a decoder for a message field."""

    local_DecodeVarint = _DecodeVarint

    assert not is_packed
    if is_repeated:
        tag_bytes = encoder.TagBytes(field_number,
                                     wire_format.WIRETYPE_LENGTH_DELIMITED)
        tag_len = len(tag_bytes)

        def DecodeRepeatedField(buffer, pos, end, message, field_dict):
            value = field_dict.get(key)
            if value is None:
                value = field_dict.setdefault(key, new_default(message))
            while 1:
                value = field_dict.get(key)
                if value is None:
                    value = field_dict.setdefault(key, new_default(message))
                # Read length.
                (size, pos) = local_DecodeVarint(buffer, pos)
                new_pos = pos + size
                if new_pos > end:
                    raise _DecodeError('Truncated message.')
                # Read sub-message.
                if value.add()._InternalParse(buffer, pos, new_pos) != new_pos:
                    # The only reason _InternalParse would return early is if it
                    # encountered an end-group tag.
                    raise _DecodeError('Unexpected end-group tag.')
                # Predict that the next tag is another copy of the same repeated field.
                pos = new_pos + tag_len
                if buffer[new_pos:pos] != tag_bytes or new_pos == end:
                    # Prediction failed.  Return.
                    return new_pos

        return DecodeRepeatedField
    else:

        def DecodeField(buffer, pos, end, message, field_dict):
            value = field_dict.get(key)
            if value is None:
                value = field_dict.setdefault(key, new_default(message))
            # Read length.
            (size, pos) = local_DecodeVarint(buffer, pos)
            new_pos = pos + size
            if new_pos > end:
                raise _DecodeError('Truncated message.')
            # Read sub-message.
            if value._InternalParse(buffer, pos, new_pos) != new_pos:
                # The only reason _InternalParse would return early is if it encountered
                # an end-group tag.
                raise _DecodeError('Unexpected end-group tag.')
            return new_pos

        return DecodeField
Ejemplo n.º 10
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  def encode(self):
    if len(self.clocks) < 2:
      raise RuntimeError("ClockSnapshot must have at least two clocks.")

    parts = []
    for clock in self.clocks:
      tag = encoder.TagBytes(1, wire_format.WIRETYPE_LENGTH_DELIMITED)
      data = clock.encode()
      length = encoder._VarintBytes(len(data))
      parts += [tag, length, data]

    return b"".join(parts)
Ejemplo n.º 11
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 def DecodeField(buffer, pos, end, message, field_dict):
     value_start_pos = pos
     (enum_value, pos) = _DecodeSignedVarint32(buffer, pos)
     if pos > end:
         raise _DecodeError('Truncated message.')
     if enum_value in enum_type.values_by_number:
         field_dict[key] = enum_value
     else:
         if not message._unknown_fields:
             message._unknown_fields = []
         tag_bytes = encoder.TagBytes(field_number,
                                      wire_format.WIRETYPE_VARINT)
         message._unknown_fields.append(
             (tag_bytes, buffer[value_start_pos:pos]))
     return pos
Ejemplo n.º 12
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def StringDecoder(field_number, is_repeated, is_packed, key, new_default):
    """Returns a decoder for a string field."""

    local_DecodeVarint = _DecodeVarint
    local_unicode = unicode

    def _ConvertToUnicode(byte_str):
        try:
            return local_unicode(byte_str, 'utf-8')
        except UnicodeDecodeError as e:
            # add more information to the error message and re-raise it.
            e.reason = '%s in field: %s' % (e, key.full_name)
            raise

    assert not is_packed
    if is_repeated:
        tag_bytes = encoder.TagBytes(field_number,
                                     wire_format.WIRETYPE_LENGTH_DELIMITED)
        tag_len = len(tag_bytes)

        def DecodeRepeatedField(buffer, pos, end, message, field_dict):
            value = field_dict.get(key)
            if value is None:
                value = field_dict.setdefault(key, new_default(message))
            while 1:
                (size, pos) = local_DecodeVarint(buffer, pos)
                new_pos = pos + size
                if new_pos > end:
                    raise _DecodeError('Truncated string.')
                value.append(_ConvertToUnicode(buffer[pos:new_pos]))
                # Predict that the next tag is another copy of the same repeated field.
                pos = new_pos + tag_len
                if buffer[new_pos:pos] != tag_bytes or new_pos == end:
                    # Prediction failed.  Return.
                    return new_pos

        return DecodeRepeatedField
    else:

        def DecodeField(buffer, pos, end, message, field_dict):
            (size, pos) = local_DecodeVarint(buffer, pos)
            new_pos = pos + size
            if new_pos > end:
                raise _DecodeError('Truncated string.')
            field_dict[key] = _ConvertToUnicode(buffer[pos:new_pos])
            return new_pos

        return DecodeField
Ejemplo n.º 13
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def _MakeDecoders(type_index, decoders_index, type_name):
    """
  When a decoder is requested for a given type, walk the type graph recursively
  and make decoders (INDEPENDENT of any actual values).
  """
    #pprint(self.root)
    message_dict = type_index[type_name]
    # For other types

    decoders = {}  # tag bytes -> decoder function
    fields = message_dict.get('field')
    if not fields:
        print message_dict
        raise Error('No fields for %s' % type_name)

    for f in fields:
        field_type = f['type']  # a string
        wire_type = lookup.FIELD_TYPE_TO_WIRE_TYPE[field_type]  # int
        tag_bytes = encoder.TagBytes(f['number'], wire_type)

        # get a decoder constructor, e.g. MessageDecoder
        decoder = lookup.TYPE_TO_DECODER[field_type]
        is_repeated = (f['label'] == 'LABEL_REPEATED')
        is_packed = False

        #is_packed = (field_descriptor.has_options and
        #             field_descriptor.GetOptions().packed)

        # field_descriptor, field_descriptor._default_constructor))

        # key for field_dict
        key = f['name']
        new_default = _DefaultValueConstructor(f, type_index, decoders_index,
                                               is_repeated)

        # Now create the decoder by calling the constructor
        decoders[tag_bytes] = decoder(f['number'], is_repeated, is_packed, key,
                                      new_default)

        print '---------'
        print 'FIELD name', f['name']
        print 'field type', field_type
        print 'wire type', wire_type

    # Now we need to get decoders.  They can be memoized in this class.
    # self.decoder_root = {}

    return decoders
Ejemplo n.º 14
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def StringDecoder(field_number, is_repeated, is_packed, key, new_default):
    """Returns a decoder for a string field."""

    local_DecodeVarint = _DecodeVarint
    local_unicode = unicode

    assert not is_packed
    if is_repeated:
        tag_bytes = encoder.TagBytes(field_number,
                                     wire_format.WIRETYPE_LENGTH_DELIMITED)
        tag_len = len(tag_bytes)

        def DecodeRepeatedField(buffer, pos, end, message, field_dict):
            value = field_dict.get(key)
            if value is None:
                value = field_dict.setdefault(key, new_default(message))
            while 1:
                (size, pos) = local_DecodeVarint(buffer, pos)
                new_pos = pos + size
                if new_pos > end:
                    raise _DecodeError('Truncated string.')
                value.append(local_unicode(buffer[pos:new_pos], 'utf-8'))
                # Predict that the next tag is another copy of the same repeated field.
                pos = new_pos + tag_len
                if buffer[new_pos:pos] != tag_bytes or new_pos == end:
                    # Prediction failed.  Return.
                    return new_pos

        return DecodeRepeatedField
    else:

        def DecodeField(buffer, pos, end, message, field_dict):
            (size, pos) = local_DecodeVarint(buffer, pos)
            new_pos = pos + size
            if new_pos > end:
                raise _DecodeError('Truncated string.')
            field_dict[key] = local_unicode(buffer[pos:new_pos], 'utf-8')
            return new_pos

        return DecodeField
Ejemplo n.º 15
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            new_pos = pos + size
            if new_pos > end:
                raise _DecodeError('Truncated message.')
            # Read sub-message.
            if value._InternalParse(buffer, pos, new_pos) != new_pos:
                # The only reason _InternalParse would return early is if it encountered
                # an end-group tag.
                raise _DecodeError('Unexpected end-group tag.')
            return new_pos

        return DecodeField


# --------------------------------------------------------------------

MESSAGE_SET_ITEM_TAG = encoder.TagBytes(1, wire_format.WIRETYPE_START_GROUP)


def MessageSetItemDecoder(extensions_by_number):
    """Returns a decoder for a MessageSet item.

  The parameter is the _extensions_by_number map for the message class.

  The message set message looks like this:
    message MessageSet {
      repeated group Item = 1 {
        required int32 type_id = 2;
        required string message = 3;
      }
    }
  """
Ejemplo n.º 16
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    """Returns a decoder for a string field."""

    local_DecodeVarint = _DecodeVarint
    local_unicode = unicode

    def _ConvertToUnicode(byte_str):
        try:
            return local_unicode(byte_str, 'utf-8')
        except UnicodeDecodeError, e:
            # add more information to the error message and re-raise it.
            e.reason = '%s in field: %s' % (e, key.full_name)
            raise

    assert not is_packed
    if is_repeated:
        tag_bytes = encoder.TagBytes(field_number,
                                     wire_format.WIRETYPE_LENGTH_DELIMITED)
        tag_len = len(tag_bytes)

        def DecodeRepeatedField(buffer, pos, end, message, field_dict):
            value = field_dict.get(key)
            if value is None:
                value = field_dict.setdefault(key, new_default(message))
            while 1:
                (size, pos) = local_DecodeVarint(buffer, pos)
                new_pos = pos + size
                if new_pos > end:
                    raise _DecodeError('Truncated string.')
                value.append(_ConvertToUnicode(buffer[pos:new_pos]))
                # Predict that the next tag is another copy of the same repeated field.
                pos = new_pos + tag_len
                if buffer[new_pos:pos] != tag_bytes or new_pos == end:
Ejemplo n.º 17
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def EnumDecoder(field_number, is_repeated, is_packed, key, new_default):
    enum_type = key.enum_type
    if is_packed:
        local_DecodeVarint = _DecodeVarint

        def DecodePackedField(buffer, pos, end, message, field_dict):
            value = field_dict.get(key)
            if value is None:
                value = field_dict.setdefault(key, new_default(message))
            (endpoint, pos) = local_DecodeVarint(buffer, pos)
            endpoint += pos
            if endpoint > end:
                raise _DecodeError('Truncated message.')
            while pos < endpoint:
                value_start_pos = pos
                (element, pos) = _DecodeSignedVarint32(buffer, pos)
                if element in enum_type.values_by_number:
                    value.append(element)
                else:
                    if not message._unknown_fields:
                        message._unknown_fields = []
                    tag_bytes = encoder.TagBytes(field_number,
                                                 wire_format.WIRETYPE_VARINT)
                    message._unknown_fields.append(
                        (tag_bytes, buffer[value_start_pos:pos]))
            if pos > endpoint:
                if element in enum_type.values_by_number:
                    del value[-1]  # Discard corrupt value.
                else:
                    del message._unknown_fields[-1]
                raise _DecodeError('Packed element was truncated.')
            return pos

        return DecodePackedField
    elif is_repeated:
        tag_bytes = encoder.TagBytes(field_number, wire_format.WIRETYPE_VARINT)
        tag_len = len(tag_bytes)

        def DecodeRepeatedField(buffer, pos, end, message, field_dict):
            value = field_dict.get(key)
            if value is None:
                value = field_dict.setdefault(key, new_default(message))
            while 1:
                (element, new_pos) = _DecodeSignedVarint32(buffer, pos)
                if element in enum_type.values_by_number:
                    value.append(element)
                else:
                    if not message._unknown_fields:
                        message._unknown_fields = []
                    message._unknown_fields.append(
                        (tag_bytes, buffer[pos:new_pos]))
                # Predict that the next tag is another copy of the same repeated
                # field.
                pos = new_pos + tag_len
                if buffer[new_pos:pos] != tag_bytes or new_pos >= end:
                    # Prediction failed.  Return.
                    if new_pos > end:
                        raise _DecodeError('Truncated message.')
                    return new_pos

        return DecodeRepeatedField
    else:

        def DecodeField(buffer, pos, end, message, field_dict):
            value_start_pos = pos
            (enum_value, pos) = _DecodeSignedVarint32(buffer, pos)
            if pos > end:
                raise _DecodeError('Truncated message.')
            if enum_value in enum_type.values_by_number:
                field_dict[key] = enum_value
            else:
                if not message._unknown_fields:
                    message._unknown_fields = []
                tag_bytes = encoder.TagBytes(field_number,
                                             wire_format.WIRETYPE_VARINT)
                message._unknown_fields.append(
                    (tag_bytes, buffer[value_start_pos:pos]))
            return pos

        return DecodeField
Ejemplo n.º 18
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def write_trace_packet(output, trace_packet):
    tag = encoder.TagBytes(1, wire_format.WIRETYPE_LENGTH_DELIMITED)
    output.write(tag)
    binary_data = trace_packet.encode()
    encoder._EncodeVarint(output.write, len(binary_data))
    output.write(binary_data)
Ejemplo n.º 19
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def MessageSetItemDecoder(extensions_by_number):
    """Returns a decoder for a MessageSet item.

  The parameter is the _extensions_by_number map for the message class.

  The message set message looks like this:
    message MessageSet {
      repeated group Item = 1 {
        required int32 type_id = 2;
        required string message = 3;
      }
    }
  """

    type_id_tag_bytes = encoder.TagBytes(2, wire_format.WIRETYPE_VARINT)
    message_tag_bytes = encoder.TagBytes(3,
                                         wire_format.WIRETYPE_LENGTH_DELIMITED)
    item_end_tag_bytes = encoder.TagBytes(1, wire_format.WIRETYPE_END_GROUP)

    local_ReadTag = ReadTag
    local_DecodeVarint = _DecodeVarint
    local_SkipField = SkipField

    def DecodeItem(buffer, pos, end, message, field_dict):
        type_id = -1
        message_start = -1
        message_end = -1

        # Technically, type_id and message can appear in any order, so we need
        # a little loop here.
        while 1:
            (tag_bytes, pos) = local_ReadTag(buffer, pos)
            if tag_bytes == type_id_tag_bytes:
                (type_id, pos) = local_DecodeVarint(buffer, pos)
            elif tag_bytes == message_tag_bytes:
                (size, message_start) = local_DecodeVarint(buffer, pos)
                pos = message_end = message_start + size
            elif tag_bytes == item_end_tag_bytes:
                break
            else:
                pos = SkipField(buffer, pos, end, tag_bytes)
                if pos == -1:
                    raise _DecodeError('Missing group end tag.')

        if pos > end:
            raise _DecodeError('Truncated message.')

        if type_id == -1:
            raise _DecodeError('MessageSet item missing type_id.')
        if message_start == -1:
            raise _DecodeError('MessageSet item missing message.')

        extension = extensions_by_number.get(type_id)
        if extension is not None:
            value = field_dict.get(extension)
            if value is None:
                value = field_dict.setdefault(
                    extension, extension.message_type._concrete_class())
            if value._InternalParse(buffer, message_start,
                                    message_end) != message_end:
                # The only reason _InternalParse would return early is if it encountered
                # an end-group tag.
                raise _DecodeError('Unexpected end-group tag.')

        return pos

    return DecodeItem