148 lines
4.9 KiB
Python
148 lines
4.9 KiB
Python
import time
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# low level methods
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def coordinate_in_path(latitude, longitude, p):
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return p.contains_points([(latitude, longitude)])[0]
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class InvalidTrajectoryError(Exception):
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def __init__(self, value): # pragma: no cover
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self.value = value
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def __str__(self): # pragma: no cover
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return repr(self.value)
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def time_in_path(df, p, maxmin='max', getall=False, name='unknown', logfile=None):
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if df.empty: # pragma: no cover
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return 0
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def f(x):
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return coordinate_in_path(x['latitude'], x['longitude'], p)
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inpolygon = df.apply(lambda row:f(row), axis=1).copy()
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if maxmin == 'max':
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b = (~inpolygon).shift(-1)+inpolygon
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else: # pragma: no cover
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b = (~inpolygon).shift(1)+inpolygon
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if len(df[b == 2]):
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if logfile is not None: # pragma: no cover
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t = time.localtime()
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timestamp = bytes('{t}'.format(
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t=time.strftime('%b-%d-%Y_%H%M', t)), 'utf-8')
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with open(logfile, 'ab') as f:
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f.write(b'\n')
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f.write(timestamp)
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f.write(b' ')
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f.write(bytes(name, 'utf-8'))
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f.write(b' ')
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f.write(bytes(maxmin, 'utf-8'))
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f.write(b' ')
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f.write(bytes(str(getall), 'utf-8'))
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f.write(b' ')
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f.write(bytes(str(len(df[b == 2])), 'utf-8'))
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f.write(b' ')
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if len(df[b == 2]) > 1:
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f.write(b' passes found')
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else:
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f.write(b' pass found')
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if getall: # pragma: no cover
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return df[b == 2]['time'], df[b == 2]['cum_dist']
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else:
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return df[b == 2]['time'].min(), df[b == 2]['cum_dist'].min()
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if logfile is not None: # pragma: no cover
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t = time.localtime()
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timestamp = bytes('{t}'.format(
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t=time.strftime('%b-%d-%Y_%H%M', t)), 'utf-8')
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with open(logfile, 'ab') as f:
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f.write(b'\n')
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f.write(timestamp)
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f.write(b' ')
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f.write(bytes(name, 'utf-8'))
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f.write(b' ')
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f.write(bytes(maxmin, 'utf-8'))
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f.write(b' ')
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f.write(bytes(str(getall), 'utf-8'))
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f.write(b' ')
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f.write(bytes(str(len(df[b == 2])), 'utf-8'))
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f.write(b' ')
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f.write(b' pass not found')
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raise InvalidTrajectoryError(
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"Trajectory doesn't go through path") # pragma: no cover
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return 0 # pragma: no cover
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def coursetime_first(data, paths, polygons=[], logfile=None):
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entrytime = data['time'].max()
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entrydistance = data['cum_dist'].max()
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coursecompleted = False
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if len(polygons) == 0:
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polygons = [(0, str(i)) for i in range(len(paths))]
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try:
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entrytime, entrydistance = time_in_path(
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data, paths[0], maxmin='max', name=str(polygons[0]), logfile=logfile)
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coursecompleted = True
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except InvalidTrajectoryError: # pragma: no cover
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entrytime = data['time'].max()
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entrydistance = data['cum_dist'].max()
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coursecompleted = False
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return entrytime, entrydistance, coursecompleted
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def coursetime_paths(data, paths, finalmaxmin='min', polygons=[], logfile=None):
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entrytime = data['time'].max()
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entrydistance = data['cum_dist'].max()
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coursecompleted = False
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if len(polygons) == 0:
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polygons = [(0, str(i)) for i in range(len(paths))]
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# corner case - empty list of paths
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if len(paths) == 0: # pragma: no cover
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return 0, 0, True
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# end - just the Finish polygon
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if len(paths) == 1:
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try:
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(
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entrytime,
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entrydistance
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) = time_in_path(data, paths[0], maxmin=finalmaxmin, name=str(polygons[0]), logfile=logfile)
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coursecompleted = True
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except InvalidTrajectoryError: # pragma: no cover
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entrytime = data['time'].max()
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entrydistance = data['cum_dist'].max()
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coursecompleted = False
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return entrytime, entrydistance, coursecompleted
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if len(paths) > 1:
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try:
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time, dist = time_in_path(
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data, paths[0], name=str(polygons[0]), logfile=logfile)
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data2 = data[data['time'] > time].copy()
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data2['time'] = data2['time'].apply(lambda x: x-time)
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data2['cum_dist'] = data2['cum_dist'].apply(lambda x: x-dist)
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(
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timenext,
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distnext,
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coursecompleted
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) = coursetime_paths(data2, paths[1:], polygons=polygons[1:], logfile=logfile)
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return time+timenext, dist+distnext, coursecompleted
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except InvalidTrajectoryError: # pragma: no cover
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entrytime = data['time'].max()
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entrydistance = data['cum_dist'].max()
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coursecompleted = False
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return entrytime, entrydistance, coursecompleted # pragma: no cover
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