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# Ultralytics YOLO 🚀, AGPL-3.0 license
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import contextlib
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from copy import copy
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from pathlib import Path
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import cv2
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import numpy as np
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import pytest
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import torch
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from PIL import Image
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from torchvision.transforms import ToTensor
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from ultralytics import RTDETR, YOLO
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from ultralytics.cfg import TASK2DATA
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from ultralytics.data.build import load_inference_source
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from ultralytics.utils import ASSETS, DEFAULT_CFG, LINUX, MACOS, ONLINE, ROOT, SETTINGS, WINDOWS
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from ultralytics.utils.downloads import download
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from ultralytics.utils.torch_utils import TORCH_1_9
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WEIGHTS_DIR = Path(SETTINGS['weights_dir'])
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MODEL = WEIGHTS_DIR / 'path with spaces' / 'yolov8n.pt' # test spaces in path
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CFG = 'yolov8n.yaml'
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SOURCE = ASSETS / 'bus.jpg'
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TMP = (ROOT / '../tests/tmp').resolve() # temp directory for test files
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def test_model_forward():
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model = YOLO(CFG)
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model(source=None, imgsz=32, augment=True) # also test no source and augment
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def test_model_methods():
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model = YOLO(MODEL)
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# Model methods
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model.info(verbose=True, detailed=True)
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model = model.reset_weights()
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model = model.load(MODEL)
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model.to('cpu')
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model.fuse()
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model.clear_callback('on_train_start')
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model._reset_callbacks()
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# Model properties
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_ = model.names
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_ = model.device
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_ = model.transforms
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_ = model.task_map
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def test_model_profile():
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# Test profile=True model argument
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from ultralytics.nn.tasks import DetectionModel
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model = DetectionModel() # build model
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im = torch.randn(1, 3, 64, 64) # requires min imgsz=64
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_ = model.predict(im, profile=True)
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def test_predict_txt():
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# Write a list of sources (file, dir, glob, recursive glob) to a txt file
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txt_file = TMP / 'sources.txt'
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with open(txt_file, 'w') as f:
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for x in [ASSETS / 'bus.jpg', ASSETS, ASSETS / '*', ASSETS / '**/*.jpg']:
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f.write(f'{x}\n')
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_ = YOLO(MODEL)(source=txt_file, imgsz=32)
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def test_predict_img():
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model = YOLO(MODEL)
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seg_model = YOLO(WEIGHTS_DIR / 'yolov8n-seg.pt')
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cls_model = YOLO(WEIGHTS_DIR / 'yolov8n-cls.pt')
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pose_model = YOLO(WEIGHTS_DIR / 'yolov8n-pose.pt')
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im = cv2.imread(str(SOURCE))
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assert len(model(source=Image.open(SOURCE), save=True, verbose=True, imgsz=32)) == 1 # PIL
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assert len(model(source=im, save=True, save_txt=True, imgsz=32)) == 1 # ndarray
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assert len(model(source=[im, im], save=True, save_txt=True, imgsz=32)) == 2 # batch
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assert len(list(model(source=[im, im], save=True, stream=True, imgsz=32))) == 2 # stream
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assert len(model(torch.zeros(320, 640, 3).numpy(), imgsz=32)) == 1 # tensor to numpy
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batch = [
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str(SOURCE), # filename
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Path(SOURCE), # Path
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'https://ultralytics.com/images/zidane.jpg' if ONLINE else SOURCE, # URI
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cv2.imread(str(SOURCE)), # OpenCV
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Image.open(SOURCE), # PIL
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np.zeros((320, 640, 3))] # numpy
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assert len(model(batch, imgsz=32)) == len(batch) # multiple sources in a batch
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# Test tensor inference
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im = cv2.imread(str(SOURCE)) # OpenCV
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t = cv2.resize(im, (32, 32))
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t = ToTensor()(t)
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t = torch.stack([t, t, t, t])
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results = model(t, imgsz=32)
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assert len(results) == t.shape[0]
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results = seg_model(t, imgsz=32)
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assert len(results) == t.shape[0]
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results = cls_model(t, imgsz=32)
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assert len(results) == t.shape[0]
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results = pose_model(t, imgsz=32)
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assert len(results) == t.shape[0]
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def test_predict_grey_and_4ch():
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# Convert SOURCE to greyscale and 4-ch
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im = Image.open(SOURCE)
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directory = TMP / 'im4'
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directory.mkdir(parents=True, exist_ok=True)
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source_greyscale = directory / 'greyscale.jpg'
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source_rgba = directory / '4ch.png'
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source_non_utf = directory / 'non_UTF_测试文件_tést_image.jpg'
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source_spaces = directory / 'image with spaces.jpg'
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im.convert('L').save(source_greyscale) # greyscale
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im.convert('RGBA').save(source_rgba) # 4-ch PNG with alpha
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im.save(source_non_utf) # non-UTF characters in filename
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im.save(source_spaces) # spaces in filename
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# Inference
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model = YOLO(MODEL)
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for f in source_rgba, source_greyscale, source_non_utf, source_spaces:
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for source in Image.open(f), cv2.imread(str(f)), f:
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results = model(source, save=True, verbose=True, imgsz=32)
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assert len(results) == 1 # verify that an image was run
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f.unlink() # cleanup
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@pytest.mark.skipif(not ONLINE, reason='environment is offline')
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def test_track_stream():
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# Test YouTube streaming inference (short 10 frame video) with non-default ByteTrack tracker
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# imgsz=160 required for tracking for higher confidence and better matches
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import yaml
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model = YOLO(MODEL)
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model.predict('https://youtu.be/G17sBkb38XQ', imgsz=96, save=True)
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model.track('https://ultralytics.com/assets/decelera_portrait_min.mov', imgsz=160, tracker='bytetrack.yaml')
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model.track('https://ultralytics.com/assets/decelera_portrait_min.mov', imgsz=160, tracker='botsort.yaml')
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# Test Global Motion Compensation (GMC) methods
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for gmc in 'orb', 'sift', 'ecc':
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with open(ROOT / 'cfg/trackers/botsort.yaml') as f:
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data = yaml.safe_load(f)
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tracker = TMP / f'botsort-{gmc}.yaml'
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data['gmc_method'] = gmc
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with open(tracker, 'w') as f:
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yaml.safe_dump(data, f)
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model.track('https://ultralytics.com/assets/decelera_portrait_min.mov', imgsz=160, tracker=tracker)
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def test_val():
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YOLO(MODEL).val(data='coco8.yaml', imgsz=32, save_hybrid=True)
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def test_train_scratch():
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model = YOLO(CFG)
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model.train(data='coco8.yaml', epochs=2, imgsz=32, cache='disk', batch=-1, close_mosaic=1, name='model')
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model(SOURCE)
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def test_train_pretrained():
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model = YOLO(WEIGHTS_DIR / 'yolov8n-seg.pt')
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model.train(data='coco8-seg.yaml', epochs=1, imgsz=32, cache='ram', copy_paste=0.5, mixup=0.5, name=0)
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model(SOURCE)
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def test_export_torchscript():
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f = YOLO(MODEL).export(format='torchscript', optimize=True)
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YOLO(f)(SOURCE) # exported model inference
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def test_export_onnx():
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f = YOLO(MODEL).export(format='onnx', dynamic=True)
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YOLO(f)(SOURCE) # exported model inference
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def test_export_openvino():
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f = YOLO(MODEL).export(format='openvino')
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YOLO(f)(SOURCE) # exported model inference
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def test_export_coreml():
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if not WINDOWS: # RuntimeError: BlobWriter not loaded with coremltools 7.0 on windows
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if MACOS:
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f = YOLO(MODEL).export(format='coreml')
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YOLO(f)(SOURCE) # model prediction only supported on macOS for nms=False models
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else:
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YOLO(MODEL).export(format='coreml', nms=True)
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def test_export_tflite(enabled=False):
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# TF suffers from install conflicts on Windows and macOS
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if enabled and LINUX:
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model = YOLO(MODEL)
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f = model.export(format='tflite')
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YOLO(f)(SOURCE)
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def test_export_pb(enabled=False):
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# TF suffers from install conflicts on Windows and macOS
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if enabled and LINUX:
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model = YOLO(MODEL)
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f = model.export(format='pb')
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YOLO(f)(SOURCE)
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def test_export_paddle(enabled=False):
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# Paddle protobuf requirements conflicting with onnx protobuf requirements
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if enabled:
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YOLO(MODEL).export(format='paddle')
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def test_export_ncnn():
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f = YOLO(MODEL).export(format='ncnn')
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YOLO(f)(SOURCE) # exported model inference
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def test_all_model_yamls():
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for m in (ROOT / 'cfg' / 'models').rglob('*.yaml'):
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if 'rtdetr' in m.name:
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if TORCH_1_9: # torch<=1.8 issue - TypeError: __init__() got an unexpected keyword argument 'batch_first'
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_ = RTDETR(m.name)(SOURCE, imgsz=640) # must be 640
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else:
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YOLO(m.name)
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def test_workflow():
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model = YOLO(MODEL)
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model.train(data='coco8.yaml', epochs=1, imgsz=32, optimizer='SGD')
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model.val(imgsz=32)
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model.predict(SOURCE, imgsz=32)
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model.export(format='onnx') # export a model to ONNX format
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def test_predict_callback_and_setup():
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# Test callback addition for prediction
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def on_predict_batch_end(predictor): # results -> List[batch_size]
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path, im0s, _, _ = predictor.batch
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im0s = im0s if isinstance(im0s, list) else [im0s]
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bs = [predictor.dataset.bs for _ in range(len(path))]
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predictor.results = zip(predictor.results, im0s, bs)
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model = YOLO(MODEL)
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model.add_callback('on_predict_batch_end', on_predict_batch_end)
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dataset = load_inference_source(source=SOURCE)
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bs = dataset.bs # noqa access predictor properties
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results = model.predict(dataset, stream=True, imgsz=160) # source already setup
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for r, im0, bs in results:
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print('test_callback', im0.shape)
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print('test_callback', bs)
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boxes = r.boxes # Boxes object for bbox outputs
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print(boxes)
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def test_results():
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for m in 'yolov8n-pose.pt', 'yolov8n-seg.pt', 'yolov8n.pt', 'yolov8n-cls.pt':
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results = YOLO(m)([SOURCE, SOURCE], imgsz=160)
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for r in results:
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r = r.cpu().numpy()
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r = r.to(device='cpu', dtype=torch.float32)
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r.save_txt(txt_file='runs/tests/label.txt', save_conf=True)
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r.save_crop(save_dir='runs/tests/crops/')
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r.tojson(normalize=True)
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r.plot(pil=True)
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r.plot(conf=True, boxes=True)
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print(r, len(r), r.path)
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@pytest.mark.skipif(not ONLINE, reason='environment is offline')
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def test_data_utils():
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# Test functions in ultralytics/data/utils.py
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from ultralytics.data.utils import HUBDatasetStats, autosplit
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from ultralytics.utils.downloads import zip_directory
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# from ultralytics.utils.files import WorkingDirectory
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# with WorkingDirectory(ROOT.parent / 'tests'):
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for task in 'detect', 'segment', 'pose', 'classify':
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file = Path(TASK2DATA[task]).with_suffix('.zip') # i.e. coco8.zip
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download(f'https://github.com/ultralytics/hub/raw/main/example_datasets/{file}', unzip=False, dir=TMP)
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stats = HUBDatasetStats(TMP / file, task=task)
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stats.get_json(save=True)
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stats.process_images()
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autosplit(TMP / 'coco8')
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zip_directory(TMP / 'coco8/images/val') # zip
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@pytest.mark.skipif(not ONLINE, reason='environment is offline')
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def test_data_converter():
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# Test dataset converters
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from ultralytics.data.converter import coco80_to_coco91_class, convert_coco
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file = 'instances_val2017.json'
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download(f'https://github.com/ultralytics/yolov5/releases/download/v1.0/{file}', dir=TMP)
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convert_coco(labels_dir=TMP, use_segments=True, use_keypoints=False, cls91to80=True)
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coco80_to_coco91_class()
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def test_data_annotator():
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from ultralytics.data.annotator import auto_annotate
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auto_annotate(ASSETS, det_model='yolov8n.pt', sam_model='mobile_sam.pt', output_dir=TMP / 'auto_annotate_labels')
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def test_events():
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# Test event sending
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from ultralytics.hub.utils import Events
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events = Events()
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events.enabled = True
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cfg = copy(DEFAULT_CFG) # does not require deepcopy
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cfg.mode = 'test'
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events(cfg)
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def test_cfg_init():
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from ultralytics.cfg import check_dict_alignment, copy_default_cfg, smart_value
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with contextlib.suppress(SyntaxError):
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check_dict_alignment({'a': 1}, {'b': 2})
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copy_default_cfg()
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[smart_value(x) for x in ['none', 'true', 'false']]
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def test_utils_init():
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from ultralytics.utils import get_git_branch, get_git_origin_url, get_ubuntu_version, is_github_actions_ci
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get_ubuntu_version()
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is_github_actions_ci()
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get_git_origin_url()
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get_git_branch()
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def test_utils_checks():
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from ultralytics.utils.checks import (check_imgsz, check_imshow, check_requirements, check_yolov5u_filename,
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git_describe, print_args)
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check_yolov5u_filename('yolov5n.pt')
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# check_imshow(warn=True)
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git_describe(ROOT)
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check_requirements() # check requirements.txt
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check_imgsz([600, 600], max_dim=1)
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check_imshow()
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print_args()
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def test_utils_benchmarks():
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from ultralytics.utils.benchmarks import ProfileModels
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ProfileModels(['yolov8n.yaml'], imgsz=32, min_time=1, num_timed_runs=3, num_warmup_runs=1).profile()
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def test_utils_torchutils():
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from ultralytics.nn.modules.conv import Conv
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from ultralytics.utils.torch_utils import get_flops_with_torch_profiler, profile, time_sync
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x = torch.randn(1, 64, 20, 20)
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m = Conv(64, 64, k=1, s=2)
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profile(x, [m], n=3)
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get_flops_with_torch_profiler(m)
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time_sync()
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@pytest.mark.skipif(not ONLINE, reason='environment is offline')
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def test_utils_downloads():
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from ultralytics.utils.downloads import get_google_drive_file_info
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get_google_drive_file_info('https://drive.google.com/file/d/1cqT-cJgANNrhIHCrEufUYhQ4RqiWG_lJ/view?usp=drive_link')
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def test_utils_ops():
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from ultralytics.utils.ops import (ltwh2xywh, ltwh2xyxy, make_divisible, xywh2ltwh, xywh2xyxy, xywhn2xyxy,
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xywhr2xyxyxyxy, xyxy2ltwh, xyxy2xywh, xyxy2xywhn, xyxyxyxy2xywhr)
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make_divisible(17, torch.tensor([8]))
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boxes = torch.rand(10, 4) # xywh
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torch.allclose(boxes, xyxy2xywh(xywh2xyxy(boxes)))
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torch.allclose(boxes, xyxy2xywhn(xywhn2xyxy(boxes)))
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torch.allclose(boxes, ltwh2xywh(xywh2ltwh(boxes)))
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torch.allclose(boxes, xyxy2ltwh(ltwh2xyxy(boxes)))
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boxes = torch.rand(10, 5) # xywhr for OBB
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boxes[:, 4] = torch.randn(10) * 30
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torch.allclose(boxes, xyxyxyxy2xywhr(xywhr2xyxyxyxy(boxes)), rtol=1e-3)
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def test_utils_files():
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from ultralytics.utils.files import file_age, file_date, get_latest_run, spaces_in_path
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file_age(SOURCE)
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file_date(SOURCE)
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get_latest_run(ROOT / 'runs')
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path = TMP / 'path/with spaces'
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path.mkdir(parents=True, exist_ok=True)
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with spaces_in_path(path) as new_path:
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print(new_path)
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def test_nn_modules_conv():
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from ultralytics.nn.modules.conv import CBAM, Conv2, ConvTranspose, DWConvTranspose2d, Focus
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c1, c2 = 8, 16 # input and output channels
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x = torch.zeros(4, c1, 10, 10) # BCHW
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# Run all modules not otherwise covered in tests
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DWConvTranspose2d(c1, c2)(x)
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ConvTranspose(c1, c2)(x)
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Focus(c1, c2)(x)
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CBAM(c1)(x)
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# Fuse ops
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m = Conv2(c1, c2)
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m.fuse_convs()
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m(x)
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def test_nn_modules_block():
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from ultralytics.nn.modules.block import C1, C3TR, BottleneckCSP, C3Ghost, C3x
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c1, c2 = 8, 16 # input and output channels
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x = torch.zeros(4, c1, 10, 10) # BCHW
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# Run all modules not otherwise covered in tests
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C1(c1, c2)(x)
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C3x(c1, c2)(x)
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C3TR(c1, c2)(x)
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C3Ghost(c1, c2)(x)
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BottleneckCSP(c1, c2)(x)
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@pytest.mark.skipif(not ONLINE, reason='environment is offline')
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def test_hub():
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from ultralytics.hub import export_fmts_hub, logout
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from ultralytics.hub.utils import smart_request
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export_fmts_hub()
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|
logout()
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|
smart_request('GET', 'http://github.com', progress=True)
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