import numbers from collections import defaultdict import numpy as np import paddle class DictCollator(object): """ data batch """ def __call__(self, batch): # todoļ¼šsupport batch operators data_dict = defaultdict(list) to_tensor_keys = [] for sample in batch: for k, v in sample.items(): if isinstance(v, (np.ndarray, paddle.Tensor, numbers.Number)): if k not in to_tensor_keys: to_tensor_keys.append(k) data_dict[k].append(v) for k in to_tensor_keys: data_dict[k] = paddle.to_tensor(data_dict[k]) return data_dict class ListCollator(object): """ data batch """ def __call__(self, batch): # todoļ¼šsupport batch operators data_dict = defaultdict(list) to_tensor_idxs = [] for sample in batch: for idx, v in enumerate(sample): if isinstance(v, (np.ndarray, paddle.Tensor, numbers.Number)): if idx not in to_tensor_idxs: to_tensor_idxs.append(idx) data_dict[idx].append(v) for idx in to_tensor_idxs: data_dict[idx] = paddle.to_tensor(data_dict[idx]) return list(data_dict.values()) class SSLRotateCollate(object): """ bach: [ [(4*3xH*W), (4,)] [(4*3xH*W), (4,)] ... ] """ def __call__(self, batch): output = [np.concatenate(d, axis=0) for d in zip(*batch)] return output