mirror of
https://github.com/leigest519/ScreenCoder.git
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133 lines
4.6 KiB
Python
133 lines
4.6 KiB
Python
import cv2
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import numpy as np
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from random import randint as rint
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from config.CONFIG_UIED import Config
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C = Config()
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def draw_bounding_box_class(org, components, color_map=C.COLOR, line=2, show=False, write_path=None, name='board'):
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"""
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Draw bounding box of components with their classes on the original image
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:param org: original image
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:param components: bbox [(column_min, row_min, column_max, row_max)]
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-> top_left: (column_min, row_min)
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-> bottom_right: (column_max, row_max)
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:param color_map: colors mapping to different components
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:param line: line thickness
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:param compo_class: classes matching the corners of components
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:param show: show or not
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:return: labeled image
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"""
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board = org.copy()
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for compo in components:
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bbox = compo.put_bbox()
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board = cv2.rectangle(board, (bbox[0], bbox[1]), (bbox[2], bbox[3]), color_map[compo.category], line)
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# board = cv2.putText(board, compo.category, (bbox[0]+5, bbox[1]+20), cv2.FONT_HERSHEY_SIMPLEX, 0.5, color_map[compo.category], 2)
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if show:
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cv2.imshow(name, board)
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cv2.waitKey(0)
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if write_path is not None:
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cv2.imwrite(write_path, board)
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return board
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def draw_bounding_box(org, components, color=(0, 255, 0), line=2,
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show=False, write_path=None, name='board', is_return=False, wait_key=0):
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"""
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Draw bounding box of components on the original image
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:param org: original image
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:param components: bbox [(column_min, row_min, column_max, row_max)]
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-> top_left: (column_min, row_min)
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-> bottom_right: (column_max, row_max)
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:param color: line color
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:param line: line thickness
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:param show: show or not
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:return: labeled image
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"""
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if not show and write_path is None and not is_return: return
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board = org.copy()
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for compo in components:
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bbox = compo.put_bbox()
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board = cv2.rectangle(board, (bbox[0], bbox[1]), (bbox[2], bbox[3]), color, line)
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if show:
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cv2.imshow(name, board)
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if wait_key is not None:
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cv2.waitKey(wait_key)
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if wait_key == 0:
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cv2.destroyWindow(name)
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if write_path is not None:
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# board = cv2.resize(board, (1080, 1920))
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# board = board[100:-110]
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cv2.imwrite(write_path, board)
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return board
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def draw_line(org, lines, color=(0, 255, 0), show=False):
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"""
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Draw detected lines on the original image
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:param org: original image
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:param lines: [line_h, line_v]
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-> line_h: horizontal {'head':(column_min, row), 'end':(column_max, row), 'thickness':int)
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-> line_v: vertical {'head':(column, row_min), 'end':(column, row_max), 'thickness':int}
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:param color: drawn color
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:param show: show or not
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:return: image with lines drawn
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"""
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board = org.copy()
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line_h, line_v = lines
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for line in line_h:
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cv2.line(board, tuple(line['head']), tuple(line['end']), color, line['thickness'])
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for line in line_v:
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cv2.line(board, tuple(line['head']), tuple(line['end']), color, line['thickness'])
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if show:
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cv2.imshow('img', board)
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cv2.waitKey(0)
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return board
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def draw_boundary(components, shape, show=False):
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"""
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Draw boundary of objects on the black withe
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:param components: boundary: [top, bottom, left, right]
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-> up, bottom: (column_index, min/max row border)
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-> left, right: (row_index, min/max column border) detect range of each row
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:param shape: shape or original image
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:param show: show or not
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:return: drawn board
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"""
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board = np.zeros(shape[:2], dtype=np.uint8) # binary board
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for component in components:
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# up and bottom: (column_index, min/max row border)
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for point in component.boundary[0] + component.boundary[1]:
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board[point[1], point[0]] = 255
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# left, right: (row_index, min/max column border)
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for point in component.boundary[2] + component.boundary[3]:
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board[point[0], point[1]] = 255
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if show:
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cv2.imshow('rec', board)
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cv2.waitKey(0)
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return board
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def draw_region(region, broad, show=False):
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color = (rint(0,255), rint(0,255), rint(0,255))
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for point in region:
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broad[point[0], point[1]] = color
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if show:
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cv2.imshow('region', broad)
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cv2.waitKey()
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return broad
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def draw_region_bin(region, broad, show=False):
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for point in region:
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broad[point[0], point[1]] = 255
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if show:
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cv2.imshow('region', broad)
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cv2.waitKey()
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return broad
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