decorator.py 4.5 KB
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# Copyright (c) 2016 PaddlePaddle Authors. All Rights Reserved
#
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at
#
#     http://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License.

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__all__ = ['buffered', 'compose', 'chain', 'shuffle', 'ComposeNotAligned']
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from Queue import Queue
from threading import Thread
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import itertools
import random
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def shuffle(reader, buf_size):
    """Creates a data reader whose data output is suffled.
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    Output from the iterator that created by original reader will be
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    buffered into shuffle buffer, and then shuffled. The size of shuffle buffer
    is determined by argument buf_size.

    Args:
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        reader: the original reader whose output will be
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            shuffled.
        buf_size: shuffle buffer size.

    Returns:
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        the new reader whose output is shuffled.
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    """

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    def data_reader():
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        buf = []
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        for e in reader():
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            buf.append(e)
            if len(buf) >= buf_size:
                random.shuffle(buf)
                for b in buf:
                    yield b
                buf = []

        if len(buf) > 0:
            random.shuffle(buf)
            for b in buf:
                yield b

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    return data_reader
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def chain(*readers):
    """Creates a data reader whose output is the outputs of input data
       readers chained together.
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    If input readers output following data entries:
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    [0, 0, 0]
    [1, 1, 1]
    [2, 2, 2]
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    The chained reader will output:
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    [0, 0, 0, 1, 1, 1, 2, 2, 2]

    Args:
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        readers: input readers.
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    Returns:
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        the new data reader.
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    """

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    def reader():
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        rs = []
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        for r in readers:
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            rs.append(r())

        for e in itertools.chain(*rs):
            yield e

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    return reader
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class ComposeNotAligned(ValueError):
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    pass


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def compose(*readers, **kwargs):
    """Creates a data reader whose output is the combination of input readers.
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    If input readers output following data entries:
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    (1, 2)    3    (4, 5)
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    The composed reader will output:
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    (1, 2, 3, 4, 5)

    Args:
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        *readers: readers that will be composed together.
        check_alignment: If True, will check if input readers are aligned
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            correctly. If False, will not check alignment and trailing outputs
            will be discarded. Defaults to True.

    Returns:
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        the new data reader.
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    Raises:
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        ComposeNotAligned: outputs of readers are not aligned.
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            Will not raise when check_alignment is set to False.
    """
    check_alignment = kwargs.pop('check_alignment', True)

    def make_tuple(x):
        if isinstance(x, tuple):
            return x
        else:
            return (x, )

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    def reader():
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        rs = []
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        for r in readers:
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            rs.append(r())
        if not check_alignment:
            for outputs in itertools.izip(*rs):
                yield sum(map(make_tuple, outputs), ())
        else:
            for outputs in itertools.izip_longest(*rs):
                for o in outputs:
                    if o is None:
                        # None will be not be present if compose is aligned
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                        raise ComposeNotAligned(
                            "outputs of readers are not aligned.")
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                yield sum(map(make_tuple, outputs), ())

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    return reader
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def buffered(reader, size):
    """Creates a buffered data reader.
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    The buffered data reader will read and save data entries into a
    buffer. Reading from the buffered data reader will proceed as long
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    as the buffer is not empty.
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    Args:
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        reader: the data reader to read from.
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        size: max buffer size.
    
    Returns:
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        The buffered data reader.
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    """

    class EndSignal():
        pass

    end = EndSignal()

    def read_worker(r, q):
        for d in r:
            q.put(d)
        q.put(end)

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    def data_reader():
        r = reader()
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        q = Queue(maxsize=size)
        t = Thread(
            target=read_worker, args=(
                r,
                q, ))
        t.daemon = True
        t.start()
        e = q.get()
        while e != end:
            yield e
            e = q.get()

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    return data_reader