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https://github.com/blakeblackshear/frigate.git
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4383b883c0
* Refactor EdgeTPU and CPU model handling to detector submodules. * Fix selecting the correct detection device type from the config * Remove detector type check when creating ObjectDetectProcess * Fixes after rebasing to 0.11 * Add init file to detector folder * Rename to detect_api Co-authored-by: Nicolas Mowen <nickmowen213@gmail.com> * Add unit test for LocalObjectDetector class * Add configuration for model inputs Support transforming detection regions to RGB or BGR. Support specifying the input tensor shape. The tensor shape has a standard format ["BHWC"] when handed to the detector, but can be transformed in the detector to match the model shape using the model input_tensor config. * Add documentation for new model config parameters * Add input tensor transpose to LocalObjectDetector * Change the model input tensor config to use an enumeration * Updates for model config documentation Co-authored-by: Nicolas Mowen <nickmowen213@gmail.com>
64 lines
2.2 KiB
Python
64 lines
2.2 KiB
Python
import logging
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import numpy as np
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from frigate.detectors.detection_api import DetectionApi
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import tflite_runtime.interpreter as tflite
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from tflite_runtime.interpreter import load_delegate
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logger = logging.getLogger(__name__)
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class EdgeTpuTfl(DetectionApi):
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def __init__(self, det_device=None, model_config=None):
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device_config = {"device": "usb"}
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if not det_device is None:
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device_config = {"device": det_device}
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edge_tpu_delegate = None
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try:
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logger.info(f"Attempting to load TPU as {device_config['device']}")
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edge_tpu_delegate = load_delegate("libedgetpu.so.1.0", device_config)
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logger.info("TPU found")
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self.interpreter = tflite.Interpreter(
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model_path=model_config.path or "/edgetpu_model.tflite",
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experimental_delegates=[edge_tpu_delegate],
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)
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except ValueError:
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logger.error(
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"No EdgeTPU was detected. If you do not have a Coral device yet, you must configure CPU detectors."
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)
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raise
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self.interpreter.allocate_tensors()
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self.tensor_input_details = self.interpreter.get_input_details()
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self.tensor_output_details = self.interpreter.get_output_details()
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def detect_raw(self, tensor_input):
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self.interpreter.set_tensor(self.tensor_input_details[0]["index"], tensor_input)
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self.interpreter.invoke()
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boxes = self.interpreter.tensor(self.tensor_output_details[0]["index"])()[0]
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class_ids = self.interpreter.tensor(self.tensor_output_details[1]["index"])()[0]
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scores = self.interpreter.tensor(self.tensor_output_details[2]["index"])()[0]
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count = int(
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self.interpreter.tensor(self.tensor_output_details[3]["index"])()[0]
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)
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detections = np.zeros((20, 6), np.float32)
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for i in range(count):
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if scores[i] < 0.4 or i == 20:
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break
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detections[i] = [
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class_ids[i],
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float(scores[i]),
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boxes[i][0],
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boxes[i][1],
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boxes[i][2],
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boxes[i][3],
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]
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return detections
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