mirror of
https://github.com/LmeSzinc/StarRailCopilot.git
synced 2024-11-27 10:36:23 +00:00
5b3dc4ec85
- 修复了删除空列时, 边缘仍然存在, 导致网格定位出错的问题 - 修复了在边缘外有错误的内部线时, 会把边缘删除的问题 - 调整了一图的边缘识别参数 - 修复了紧急委托过多时, 会触发同一按钮点击过多停止的问题 委托列表拖动方式从 拖动-点击 改为 拖拽抖动 独立出random_rectangle_vector函数 增加random_line_segments函数 - 更改: 索敌时默认使用地图权重 - 修复了收菜获取物品过多时会卡住的问题 - 写死了1-1的相机移动, 防止因为地图太小导致透视识别错误
101 lines
3.6 KiB
Python
101 lines
3.6 KiB
Python
import numpy as np
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from module.base.utils import area_in_area
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from module.config.config import AzurLaneConfig
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from module.logger import logger
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from module.map.grid import Grid
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from module.map.perspective import Perspective, Lines
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class Grids(Perspective):
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def __init__(self, image, config):
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"""
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Args:
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image:
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config(AzurLaneConfig):
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"""
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self.image = image
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self.config = config
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# try:
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super().__init__(image, config)
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self.grids = {}
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for grid in self._gen():
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self.grids[grid.location] = grid
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# Delete stand alone grid
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keys = np.array(list(self.grids.keys()))
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mask = np.zeros(np.max(keys, axis=0) + 1)
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mask[tuple(keys.T)] = 1
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count = np.sum(mask, axis=1)
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if np.max(count) >= 4:
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leave = np.where(count > 2)[0]
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vertical = self.vertical[leave[0]:leave[-1] + 2]
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diff = len(self.vertical) - len(vertical)
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if diff > 0:
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logger.info(f' Grids offset: {(diff, 0)}')
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if leave[0] > 0:
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self.left_edge = None
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if leave[-1] + 2 < len(self.vertical):
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self.right_edge = None
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self.vertical = vertical
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self.grids = {}
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for grid in self._gen():
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self.grids[grid.location] = grid
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self.center_grid = (
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np.where(self.vertical.distance_to_point(self.config.SCREEN_CENTER) >= 0)[0][0] - 1,
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np.where(self.horizontal.distance_to_point(self.config.SCREEN_CENTER) >= 0)[0][0] - 1
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)
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logger.info(f' Center grid: {self.center_grid}')
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self.center_offset = self.grids[self.center_grid].screen_point_to_grid_location(self.config.SCREEN_CENTER)
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self.shape = np.max(list(self.grids.keys()), axis=0)
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# self.save_error_image()
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# except:
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# logger.warn('Perspective error')
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# pass
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# self.save_error_image()
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# def save(self, folder='../screenshot'):
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# timestamp = str(int(time.time() * 1000))
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# self.image.save(os.path.join(folder, 'z_%s.png' % timestamp))
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# for grid in self.grids.values():
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# file = os.path.join(folder, '%s_%s_%s.png' % (timestamp, grid.location[0], grid.location[1]))
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# grid.image_icon().save(file)
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def __iter__(self):
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return iter(self.grids.values())
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def __getitem__(self, item):
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return self.grids[tuple(item)]
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def __contains__(self, item):
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return tuple(item) in self.grids
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def _gen(self):
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for x, vert in enumerate(zip(self.vertical[:-1], self.vertical[1:])):
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for y, hori in enumerate(zip(self.horizontal[:-1], self.horizontal[1:])):
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vert = Lines(np.vstack(vert), is_horizontal=False, config=self.config)
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hori = Lines(np.vstack(hori), is_horizontal=True, config=self.config)
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cross = hori.cross(vert)
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area = np.append(cross[0], cross[3])
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if area_in_area(area, self.config.DETECTING_AREA):
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grid = Grid(location=(x, y), image=self.image, corner=cross.points)
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yield grid
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def show(self):
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for y in range(self.shape[1] + 1):
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text = ' '.join([self[(x, y)].str if (x, y) in self else ' ' for x in range(self.shape[0] + 1)])
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logger.info(text)
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def predict(self):
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for grid in self:
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grid.predict()
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def update(self, image):
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self.image = image
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for grid in self:
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grid.image = image
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