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	* improved typing * improved export typing * strict mypy & check export folder * formatting * add formatting checks for export folder * re-added init call
		
			
				
	
	
		
			100 lines
		
	
	
		
			3.1 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
			
		
		
	
	
			100 lines
		
	
	
		
			3.1 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
from pathlib import Path
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from typing import Any
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import cv2
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import numpy as np
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import onnxruntime as ort
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from insightface.model_zoo import ArcFaceONNX, RetinaFace
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from insightface.utils.face_align import norm_crop
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from app.config import clean_name
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from app.schemas import BoundingBox, Face, ModelType, ndarray_f32
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from .base import InferenceModel
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class FaceRecognizer(InferenceModel):
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    _model_type = ModelType.FACIAL_RECOGNITION
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    def __init__(
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        self,
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        model_name: str,
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        min_score: float = 0.7,
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        cache_dir: Path | str | None = None,
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        **model_kwargs: Any,
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    ) -> None:
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        self.min_score = model_kwargs.pop("minScore", min_score)
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        super().__init__(clean_name(model_name), cache_dir, **model_kwargs)
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    def _load(self) -> None:
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        self.det_model = RetinaFace(
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            session=ort.InferenceSession(
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                self.det_file.as_posix(),
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                sess_options=self.sess_options,
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                providers=self.providers,
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                provider_options=self.provider_options,
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            ),
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        )
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        self.rec_model = ArcFaceONNX(
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            self.rec_file.as_posix(),
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            session=ort.InferenceSession(
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                self.rec_file.as_posix(),
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                sess_options=self.sess_options,
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                providers=self.providers,
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                provider_options=self.provider_options,
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            ),
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        )
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        self.det_model.prepare(
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            ctx_id=0,
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            det_thresh=self.min_score,
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            input_size=(640, 640),
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        )
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        self.rec_model.prepare(ctx_id=0)
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    def _predict(self, image: ndarray_f32 | bytes) -> list[Face]:
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        if isinstance(image, bytes):
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            image = cv2.imdecode(np.frombuffer(image, np.uint8), cv2.IMREAD_COLOR)
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        bboxes, kpss = self.det_model.detect(image)
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        if bboxes.size == 0:
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            return []
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        assert isinstance(image, np.ndarray) and isinstance(kpss, np.ndarray)
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        scores = bboxes[:, 4].tolist()
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        bboxes = bboxes[:, :4].round().tolist()
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        results = []
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        height, width, _ = image.shape
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        for (x1, y1, x2, y2), score, kps in zip(bboxes, scores, kpss):
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            cropped_img = norm_crop(image, kps)
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            embedding: ndarray_f32 = self.rec_model.get_feat(cropped_img)[0]
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            face: Face = {
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                "imageWidth": width,
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                "imageHeight": height,
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                "boundingBox": {
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                    "x1": x1,
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                    "y1": y1,
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                    "x2": x2,
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                    "y2": y2,
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                },
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                "score": score,
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                "embedding": embedding,
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            }
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            results.append(face)
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        return results
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    @property
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    def cached(self) -> bool:
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        return self.det_file.is_file() and self.rec_file.is_file()
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    @property
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    def det_file(self) -> Path:
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        return self.cache_dir / "detection" / "model.onnx"
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    @property
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    def rec_file(self) -> Path:
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        return self.cache_dir / "recognition" / "model.onnx"
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    def configure(self, **model_kwargs: Any) -> None:
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        self.det_model.det_thresh = model_kwargs.pop("minScore", self.det_model.det_thresh)
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