93 lines
2.5 KiB
Python
93 lines
2.5 KiB
Python
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# Copyright 2018 Mike "KemoNine" Crosson
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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# http://www.apache.org/licenses/LICENSE-2.0
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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# Adapted from https://github.com/mapsforge/mapsforge-creator/blob/master/poly2bb.pl
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import re, os
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BOUND_BUFFER = 0.1
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COORD_MATCHER = re.compile('^\s*([0-9.E+-]+)\s+([0-9.E+-]+)\s*$')
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def calculate_total_bounds(maps_dir, map_lists):
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cached_maps_dir = os.path.abspath(maps_dir)
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x_min = 360.0
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x_max = -360.0
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y_min = 360.0
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y_max = -360.0
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for alist in map_lists:
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with open(alist, 'r') as maps:
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for line in maps:
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current_map = line.strip().split('/')[-1]
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bounds = calculate_bounds(os.path.join(cached_maps_dir, current_map + '.poly'))
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if bounds['bottom'] < y_min:
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y_min = bounds['bottom']
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if bounds['left'] < x_min:
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x_min = bounds['left']
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if bounds['top'] > y_max:
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y_max = bounds['top']
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if bounds['right'] > x_max:
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x_max = bounds['right']
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values = {}
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values['bottom'] = y_min
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values['left'] = x_min
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values['top'] = y_max
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values['right'] = x_max
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return values
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def calculate_bounds(mappoly):
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# Opposite of max possible values so we find the right bounding box later
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x_min = 360.0
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x_max = -360.0
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y_min = 360.0
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y_max = -360.0
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with open(mappoly, 'r') as polyfile:
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for line in polyfile:
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if COORD_MATCHER.match(line.strip()):
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values = line.split()
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x = float(values[0])
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y = float(values[1])
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if x < x_min:
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x_min = x
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if x > x_max:
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x_max = x
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if y < y_min:
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y_min = y
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if y > y_max:
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y_max = y
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# Buffer bounds
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x_min = x_min - BOUND_BUFFER
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x_max = x_max + BOUND_BUFFER
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y_min = y_min - BOUND_BUFFER
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y_max = y_max + BOUND_BUFFER
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# Cleanup bounding (per original script)
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x_min = -180 if x_min < -180 else x_min
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x_max = 180 if x_max > 180 else x_max
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y_min = -90 if y_min < -90 else y_min
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y_max = 90 if y_max > 90 else y_max
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# Dict w/ useful values
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values = {}
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values['bottom'] = y_min
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values['left'] = x_min
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values['top'] = y_max
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values['right'] = x_max
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x_center = (x_min + x_max) / 2.0
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y_center = (y_min + y_max) / 2.0
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values['lat'] = y_center
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values['lon'] = x_center
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return values
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