130 lines
6.2 KiB
Python
Executable File
130 lines
6.2 KiB
Python
Executable File
import string
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import argparse
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import torch
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import torch.backends.cudnn as cudnn
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import torch.utils.data
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import torch.nn.functional as F
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from utils import CTCLabelConverter, AttnLabelConverter
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from dataset import RawDataset, AlignCollate
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from model import Model
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device = torch.device('cuda' if torch.cuda.is_available() else 'cpu')
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def demo(opt):
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""" model configuration """
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if 'CTC' in opt.Prediction:
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converter = CTCLabelConverter(opt.character)
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else:
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converter = AttnLabelConverter(opt.character)
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opt.num_class = len(converter.character)
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if opt.rgb:
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opt.input_channel = 3
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model = Model(opt)
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print('model input parameters', opt.imgH, opt.imgW, opt.num_fiducial, opt.input_channel, opt.output_channel,
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opt.hidden_size, opt.num_class, opt.batch_max_length, opt.Transformation, opt.FeatureExtraction,
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opt.SequenceModeling, opt.Prediction)
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model = torch.nn.DataParallel(model).to(device)
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# load model
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print('loading pretrained model from %s' % opt.saved_model)
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model.load_state_dict(torch.load(opt.saved_model, map_location=device))
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# prepare data. two demo images from https://github.com/bgshih/crnn#run-demo
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AlignCollate_demo = AlignCollate(imgH=opt.imgH, imgW=opt.imgW, keep_ratio_with_pad=opt.PAD)
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demo_data = RawDataset(root=opt.image_folder, opt=opt) # use RawDataset
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demo_loader = torch.utils.data.DataLoader(
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demo_data, batch_size=opt.batch_size,
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shuffle=False,
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num_workers=int(opt.workers),
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collate_fn=AlignCollate_demo, pin_memory=True)
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# predict
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model.eval()
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with torch.no_grad():
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for image_tensors, image_path_list in demo_loader:
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batch_size = image_tensors.size(0)
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image = image_tensors.to(device)
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# For max length prediction
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length_for_pred = torch.IntTensor([opt.batch_max_length] * batch_size).to(device)
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text_for_pred = torch.LongTensor(batch_size, opt.batch_max_length + 1).fill_(0).to(device)
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if 'CTC' in opt.Prediction:
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preds = model(image, text_for_pred)
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# Select max probabilty (greedy decoding) then decode index to character
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preds_size = torch.IntTensor([preds.size(1)] * batch_size)
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_, preds_index = preds.max(2)
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# preds_index = preds_index.view(-1)
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preds_str = converter.decode(preds_index.data, preds_size.data)
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else:
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preds = model(image, text_for_pred, is_train=False)
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# select max probabilty (greedy decoding) then decode index to character
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_, preds_index = preds.max(2)
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preds_str = converter.decode(preds_index, length_for_pred)
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log = open(f'./log_demo_result.txt', 'a')
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dashed_line = '-' * 80
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head = f'{"image_path":25s}\t{"predicted_labels":25s}\tconfidence score'
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print(f'{dashed_line}\n{head}\n{dashed_line}')
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log.write(f'{dashed_line}\n{head}\n{dashed_line}\n')
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preds_prob = F.softmax(preds, dim=2)
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preds_max_prob, _ = preds_prob.max(dim=2)
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for img_name, pred, pred_max_prob in zip(image_path_list, preds_str, preds_max_prob):
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if 'Attn' in opt.Prediction:
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pred_EOS = pred.find('[s]')
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pred = pred[:pred_EOS] # prune after "end of sentence" token ([s])
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pred_max_prob = pred_max_prob[:pred_EOS]
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# calculate confidence score (= multiply of pred_max_prob)
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confidence_score = pred_max_prob.cumprod(dim=0)[-1]
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print(f'{img_name:25s}\t{pred:25s}\t{confidence_score:0.4f}')
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log.write(f'{img_name:25s}\t{pred:25s}\t{confidence_score:0.4f}\n')
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log.close()
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if __name__ == '__main__':
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parser = argparse.ArgumentParser()
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parser.add_argument('--image_folder', required=True, help='path to image_folder which contains text images')
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parser.add_argument('--workers', type=int, help='number of data loading workers', default=4)
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parser.add_argument('--batch_size', type=int, default=192, help='input batch size')
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parser.add_argument('--saved_model', required=True, help="path to saved_model to evaluation")
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""" Data processing """
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parser.add_argument('--batch_max_length', type=int, default=25, help='maximum-label-length')
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parser.add_argument('--imgH', type=int, default=32, help='the height of the input image')
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parser.add_argument('--imgW', type=int, default=100, help='the width of the input image')
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parser.add_argument('--rgb', action='store_true', help='use rgb input')
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parser.add_argument('--character', type=str, default='0123456789abcdefghijklmnopqrstuvwxyz', help='character label')
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parser.add_argument('--sensitive', action='store_true', help='for sensitive character mode')
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parser.add_argument('--PAD', action='store_true', help='whether to keep ratio then pad for image resize')
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""" Model Architecture """
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parser.add_argument('--Transformation', type=str, required=True, help='Transformation stage. None|TPS')
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parser.add_argument('--FeatureExtraction', type=str, required=True, help='FeatureExtraction stage. VGG|RCNN|ResNet')
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parser.add_argument('--SequenceModeling', type=str, required=True, help='SequenceModeling stage. None|BiLSTM')
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parser.add_argument('--Prediction', type=str, required=True, help='Prediction stage. CTC|Attn')
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parser.add_argument('--num_fiducial', type=int, default=20, help='number of fiducial points of TPS-STN')
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parser.add_argument('--input_channel', type=int, default=1, help='the number of input channel of Feature extractor')
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parser.add_argument('--output_channel', type=int, default=512,
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help='the number of output channel of Feature extractor')
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parser.add_argument('--hidden_size', type=int, default=256, help='the size of the LSTM hidden state')
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opt = parser.parse_args()
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""" vocab / character number configuration """
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if opt.sensitive:
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opt.character = string.printable[:-6] # same with ASTER setting (use 94 char).
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cudnn.benchmark = True
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cudnn.deterministic = True
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opt.num_gpu = torch.cuda.device_count()
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demo(opt)
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