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224 lines
9.3 KiB
Python
224 lines
9.3 KiB
Python
# Openpose
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# Original from CMU https://github.com/CMU-Perceptual-Computing-Lab/openpose
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# 2nd Edited by https://github.com/Hzzone/pytorch-openpose
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# 3rd Edited by ControlNet
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# 4th Edited by ControlNet (added face and correct hands)
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# 5th Edited by ControlNet (Improved JSON serialization/deserialization, and lots of bug fixs)
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# This preprocessor is licensed by CMU for non-commercial use only.
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import os
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os.environ["KMP_DUPLICATE_LIB_OK"] = "TRUE"
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import warnings
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from typing import List, NamedTuple, Tuple, Union
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import cv2
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import numpy as np
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from huggingface_hub import hf_hub_download
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from PIL import Image
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from modules import devices
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from modules.shared import opts
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from modules.control.util import HWC3, resize_image
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from . import util
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from .body import Body, BodyResult, Keypoint
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from .face import Face
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from .hand import Hand
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HandResult = List[Keypoint]
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FaceResult = List[Keypoint]
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class PoseResult(NamedTuple):
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body: BodyResult
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left_hand: Union[HandResult, None]
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right_hand: Union[HandResult, None]
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face: Union[FaceResult, None]
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def draw_poses(poses: List[PoseResult], H, W, draw_body=True, draw_hand=True, draw_face=True):
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"""
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Draw the detected poses on an empty canvas.
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Args:
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poses (List[PoseResult]): A list of PoseResult objects containing the detected poses.
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H (int): The height of the canvas.
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W (int): The width of the canvas.
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draw_body (bool, optional): Whether to draw body keypoints. Defaults to True.
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draw_hand (bool, optional): Whether to draw hand keypoints. Defaults to True.
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draw_face (bool, optional): Whether to draw face keypoints. Defaults to True.
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Returns:
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numpy.ndarray: A 3D numpy array representing the canvas with the drawn poses.
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"""
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canvas = np.zeros(shape=(H, W, 3), dtype=np.uint8)
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for pose in poses:
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if draw_body:
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canvas = util.draw_bodypose(canvas, pose.body.keypoints)
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if draw_hand:
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canvas = util.draw_handpose(canvas, pose.left_hand)
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canvas = util.draw_handpose(canvas, pose.right_hand)
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if draw_face:
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canvas = util.draw_facepose(canvas, pose.face)
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return canvas
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class OpenposeDetector:
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"""
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A class for detecting human poses in images using the Openpose model.
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Attributes:
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model_dir (str): Path to the directory where the pose models are stored.
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"""
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def __init__(self, body_estimation, hand_estimation=None, face_estimation=None):
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self.body_estimation = body_estimation
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self.hand_estimation = hand_estimation
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self.face_estimation = face_estimation
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@classmethod
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def from_pretrained(cls, pretrained_model_or_path, filename=None, hand_filename=None, face_filename=None, cache_dir=None, local_files_only=False):
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if pretrained_model_or_path == "lllyasviel/ControlNet":
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filename = filename or "annotator/ckpts/body_pose_model.pth"
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hand_filename = hand_filename or "annotator/ckpts/hand_pose_model.pth"
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face_filename = face_filename or "facenet.pth"
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face_pretrained_model_or_path = "lllyasviel/Annotators"
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else:
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filename = filename or "body_pose_model.pth"
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hand_filename = hand_filename or "hand_pose_model.pth"
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face_filename = face_filename or "facenet.pth"
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face_pretrained_model_or_path = pretrained_model_or_path
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if os.path.isdir(pretrained_model_or_path):
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body_model_path = os.path.join(pretrained_model_or_path, filename)
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hand_model_path = os.path.join(pretrained_model_or_path, hand_filename)
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face_model_path = os.path.join(face_pretrained_model_or_path, face_filename)
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else:
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body_model_path = hf_hub_download(pretrained_model_or_path, filename, cache_dir=cache_dir, local_files_only=local_files_only)
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hand_model_path = hf_hub_download(pretrained_model_or_path, hand_filename, cache_dir=cache_dir, local_files_only=local_files_only)
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face_model_path = hf_hub_download(face_pretrained_model_or_path, face_filename, cache_dir=cache_dir, local_files_only=local_files_only)
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body_estimation = Body(body_model_path)
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hand_estimation = Hand(hand_model_path)
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face_estimation = Face(face_model_path)
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return cls(body_estimation, hand_estimation, face_estimation)
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def to(self, device):
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self.body_estimation.to(device)
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self.hand_estimation.to(device)
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self.face_estimation.to(device)
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return self
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def detect_hands(self, body: BodyResult, oriImg) -> Tuple[Union[HandResult, None], Union[HandResult, None]]:
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left_hand = None
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right_hand = None
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H, W, _ = oriImg.shape
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for x, y, w, is_left in util.handDetect(body, oriImg):
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peaks = self.hand_estimation(oriImg[y:y+w, x:x+w, :]).astype(np.float32)
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if peaks.ndim == 2 and peaks.shape[1] == 2:
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peaks[:, 0] = np.where(peaks[:, 0] < 1e-6, -1, peaks[:, 0] + x) / float(W)
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peaks[:, 1] = np.where(peaks[:, 1] < 1e-6, -1, peaks[:, 1] + y) / float(H)
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hand_result = [
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Keypoint(x=peak[0], y=peak[1])
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for peak in peaks
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]
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if is_left:
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left_hand = hand_result
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else:
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right_hand = hand_result
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return left_hand, right_hand
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def detect_face(self, body: BodyResult, oriImg) -> Union[FaceResult, None]:
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face = util.faceDetect(body, oriImg)
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if face is None:
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return None
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x, y, w = face
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H, W, _ = oriImg.shape
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heatmaps = self.face_estimation(oriImg[y:y+w, x:x+w, :])
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peaks = self.face_estimation.compute_peaks_from_heatmaps(heatmaps).astype(np.float32)
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if peaks.ndim == 2 and peaks.shape[1] == 2:
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peaks[:, 0] = np.where(peaks[:, 0] < 1e-6, -1, peaks[:, 0] + x) / float(W)
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peaks[:, 1] = np.where(peaks[:, 1] < 1e-6, -1, peaks[:, 1] + y) / float(H)
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return [
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Keypoint(x=peak[0], y=peak[1])
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for peak in peaks
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]
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return None
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def detect_poses(self, oriImg, include_hand=False, include_face=False) -> List[PoseResult]:
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"""
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Detect poses in the given image.
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Args:
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oriImg (numpy.ndarray): The input image for pose detection.
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include_hand (bool, optional): Whether to include hand detection. Defaults to False.
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include_face (bool, optional): Whether to include face detection. Defaults to False.
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Returns:
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List[PoseResult]: A list of PoseResult objects containing the detected poses.
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"""
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oriImg = oriImg[:, :, ::-1].copy()
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H, W, _C = oriImg.shape
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candidate, subset = self.body_estimation(oriImg)
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bodies = self.body_estimation.format_body_result(candidate, subset)
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results = []
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for body in bodies:
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left_hand, right_hand, face = (None,) * 3
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if include_hand:
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left_hand, right_hand = self.detect_hands(body, oriImg)
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if include_face:
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face = self.detect_face(body, oriImg)
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results.append(PoseResult(BodyResult(
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keypoints=[
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Keypoint(
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x=keypoint.x / float(W),
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y=keypoint.y / float(H)
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) if keypoint is not None else None
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for keypoint in body.keypoints
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],
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total_score=body.total_score,
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total_parts=body.total_parts
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), left_hand, right_hand, face))
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return results
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def __call__(self, input_image, detect_resolution=512, image_resolution=512, include_body=True, include_hand=False, include_face=False, hand_and_face=None, output_type="pil", **kwargs):
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self.to(devices.device)
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if hand_and_face is not None:
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warnings.warn("hand_and_face is deprecated. Use include_hand and include_face instead.", DeprecationWarning)
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include_hand = hand_and_face
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include_face = hand_and_face
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if "return_pil" in kwargs:
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warnings.warn("return_pil is deprecated. Use output_type instead.", DeprecationWarning)
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output_type = "pil" if kwargs["return_pil"] else "np"
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if type(output_type) is bool:
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warnings.warn("Passing `True` or `False` to `output_type` is deprecated and will raise an error in future versions")
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if output_type:
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output_type = "pil"
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if not isinstance(input_image, np.ndarray):
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input_image = np.array(input_image, dtype=np.uint8)
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input_image = HWC3(input_image)
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input_image = resize_image(input_image, detect_resolution)
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H, W, _C = input_image.shape
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poses = self.detect_poses(input_image, include_hand, include_face)
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canvas = draw_poses(poses, H, W, draw_body=include_body, draw_hand=include_hand, draw_face=include_face)
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detected_map = canvas
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detected_map = HWC3(detected_map)
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img = resize_image(input_image, image_resolution)
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H, W, _C = img.shape
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detected_map = cv2.resize(detected_map, (W, H), interpolation=cv2.INTER_LINEAR)
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if opts.control_move_processor:
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self.to('cpu')
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if output_type == "pil":
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detected_map = Image.fromarray(detected_map)
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return detected_map
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