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TriTransNet_test.py
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import torch
import torch.nn.functional as F
import sys
sys.path.append('./models')
import numpy as np
import os, argparse
import cv2
from models.TriTransNet import TriTransNet
from data import test_dataset
parser = argparse.ArgumentParser()
parser.add_argument('--testsize', type=int, default=256, help='testing size')
parser.add_argument('--gpu_id', type=str, default='0', help='select gpu id')
parser.add_argument('--test_path',type=str,default='E:/datasets/RGBD_for_test/', help='test dataset path')
opt = parser.parse_args()
dataset_path = opt.test_path
#set device for test
if opt.gpu_id=='0':
os.environ["CUDA_VISIBLE_DEVICES"] = "0"
print('USE GPU 0')
elif opt.gpu_id=='1':
os.environ["CUDA_VISIBLE_DEVICES"] = "1"
print('USE GPU 1')
model = TriTransNet()
model.load_state_dict(torch.load('./TriTransNet_cpts/TriTransNet.pth'))
model.cuda()
model.eval()
test_datasets = ['STERE', 'SIP', 'NJU2K', 'NLPR', 'DES']
for dataset in test_datasets:
save_path = 'E:/testmaps/TriTransNet/' + dataset + '/'
if not os.path.exists(save_path):
os.makedirs(save_path)
image_root = dataset_path + dataset + '/RGB/'
gt_root = dataset_path + dataset + '/GT/'
depth_root=dataset_path +dataset +'/depth/'
test_loader = test_dataset(image_root, gt_root,depth_root, opt.testsize)
for i in range(test_loader.size):
image, gt,depth, name, image_for_post = test_loader.load_data()
gt = np.asarray(gt, np.float32)
gt /= (gt.max() + 1e-8)
image = image.cuda()
depth = depth.cuda()
res,_,_,_ = model(image,depth)
res = F.upsample(res, size=gt.shape, mode='bilinear', align_corners=False)
res = res.sigmoid().data.cpu().numpy().squeeze()
res = (res - res.min()) / (res.max() - res.min() + 1e-8)
print('save img to: ',save_path+name)
cv2.imwrite(save_path+name,res*255)
print('Test Done!')