builder.py 4.6 KB
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#   Copyright (c) 2020 PaddlePaddle Authors. All Rights Reserve.
#
# 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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import time
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import paddle
import numbers
import numpy as np
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from multiprocessing import Manager
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from paddle.distributed import ParallelEnv
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from paddle.io import DistributedBatchSampler
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from ..utils.registry import Registry

DATASETS = Registry("DATASETS")


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class DictDataset(paddle.io.Dataset):
    def __init__(self, dataset):
        self.dataset = dataset
        self.tensor_keys_set = set()
        self.non_tensor_keys_set = set()
        self.non_tensor_dict = Manager().dict()

        single_item = dataset[0]
        self.keys = single_item.keys()
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        for k, v in single_item.items():
            if not isinstance(v, (numbers.Number, np.ndarray)):
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                setattr(self, k, Manager().dict())
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                self.non_tensor_keys_set.add(k)
            else:
                self.tensor_keys_set.add(k)

    def __getitem__(self, index):

        ori_map = self.dataset[index]
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        tmp_list = []
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        for k, v in ori_map.items():
            if isinstance(v, (numbers.Number, np.ndarray)):
                tmp_list.append(v)
            else:
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                getattr(self, k).update({index: v})
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        tmp_list.append(index)
        return tuple(tmp_list)
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    def __len__(self):
        return len(self.dataset)

    def reset(self):
        for k in self.non_tensor_keys_set:
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            setattr(self, k, Manager().dict())
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class DictDataLoader():
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    def __init__(self,
                 dataset,
                 batch_size,
                 is_train,
                 num_workers=4,
                 distributed=True):
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        self.dataset = DictDataset(dataset)

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        place = paddle.CUDAPlace(ParallelEnv().dev_id) \
                    if ParallelEnv().nranks > 1 else paddle.CUDAPlace(0)
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        if distributed:
            sampler = DistributedBatchSampler(
                self.dataset,
                batch_size=batch_size,
                shuffle=True if is_train else False,
                drop_last=True if is_train else False)

            self.dataloader = paddle.io.DataLoader(self.dataset,
                                                   batch_sampler=sampler,
                                                   places=place,
                                                   num_workers=num_workers)
        else:
            self.dataloader = paddle.io.DataLoader(
                self.dataset,
                batch_size=batch_size,
                shuffle=True if is_train else False,
                drop_last=True if is_train else False,
                places=place,
                num_workers=num_workers)
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        self.batch_size = batch_size

    def __iter__(self):

        self.dataset.reset()

        for i, data in enumerate(self.dataloader):
            return_dict = {}
            j = 0
            for k in self.dataset.keys:
                if k in self.dataset.tensor_keys_set:
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                    return_dict[k] = data[j] if isinstance(data,
                                                           (list,
                                                            tuple)) else data
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                    j += 1
                else:
                    return_dict[k] = self.get_items_by_indexs(k, data[-1])
            yield return_dict

    def __len__(self):
        return len(self.dataloader)

    def get_items_by_indexs(self, key, indexs):
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        if isinstance(indexs, paddle.Tensor):
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            indexs = indexs.numpy()
        current_items = []
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        items = getattr(self.dataset, key)
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        for index in indexs:
            current_items.append(items[index])

        return current_items


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def build_dataloader(cfg, is_train=True, distributed=True):
    cfg_ = cfg.copy()

    batch_size = cfg_.pop('batch_size', 1)
    num_workers = cfg_.pop('num_workers', 0)

    name = cfg_.pop('name')
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    dataset = DATASETS.get(name)(**cfg_)
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    dataloader = DictDataLoader(dataset,
                                batch_size,
                                is_train,
                                num_workers,
                                distributed=distributed)
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    return dataloader