Auto-update: Fri Nov 15 13:09:24 PST 2024
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1 changed files with 16 additions and 23 deletions
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@ -9,6 +9,8 @@ import random
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from pathlib import Path
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from pathlib import Path
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import traceback
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import traceback
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import matplotlib.pyplot as plt
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import matplotlib.pyplot as plt
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import contextily as ctx
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import numpy as np
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from datetime import datetime, timezone
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from datetime import datetime, timezone
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from typing import Union, List
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from typing import Union, List
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import folium
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import folium
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@ -122,6 +124,7 @@ async def get_last_location() -> Optional[Location]:
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return None
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return None
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async def generate_and_save_heatmap(
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async def generate_and_save_heatmap(
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start_date: Union[str, int, datetime],
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start_date: Union[str, int, datetime],
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end_date: Optional[Union[str, int, datetime]] = None,
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end_date: Optional[Union[str, int, datetime]] = None,
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@ -136,10 +139,6 @@ Generate a heatmap for the given date range and save it as a PNG file.
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:return: The path where the PNG file was saved
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:return: The path where the PNG file was saved
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"""
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"""
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try:
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try:
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import matplotlib.pyplot as plt
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import contextily as ctx
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import numpy as np
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from matplotlib.colors import LinearSegmentedColormap
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start_date = await dt(start_date)
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start_date = await dt(start_date)
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if end_date:
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if end_date:
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@ -160,39 +159,33 @@ Generate a heatmap for the given date range and save it as a PNG file.
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buffer = max(lat_range, lon_range) * 0.05
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buffer = max(lat_range, lon_range) * 0.05
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# Enforce minimum zoom
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# Enforce minimum zoom
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MIN_RANGE = 0.05 # roughly 3-4 miles
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MIN_RANGE = 0.05
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lat_range = max(lat_range, MIN_RANGE)
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lat_range = max(lat_range, MIN_RANGE)
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lon_range = max(lon_range, MIN_RANGE)
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lon_range = max(lon_range, MIN_RANGE)
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bounds = [
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min(lons) - buffer,
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max(lons) + buffer,
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min(lats) - buffer,
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max(lats) + buffer
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]
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# Create figure with fixed size
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# Create figure with fixed size
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fig, ax = plt.subplots(figsize=(6.4, 3.6), dpi=100) # 640x360 pixels
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fig, ax = plt.subplots(figsize=(6.4, 3.6), dpi=100)
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# Add dark basemap
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# Set map extent
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ctx.add_basemap(
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ax.set_xlim(min(lons) - buffer, max(lons) + buffer)
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ax,
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ax.set_ylim(min(lats) - buffer, max(lats) + buffer)
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crs='EPSG:4326',
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source=ctx.providers.CartoDB.DarkMatter,
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zoom='auto',
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bbox=bounds
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)
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# Create heatmap overlay
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# Create heatmap overlay
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heatmap = ax.hexbin(
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heatmap = ax.hexbin(
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lons, lats,
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lons, lats,
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extent=bounds,
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gridsize=25,
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gridsize=25,
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cmap='hot',
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cmap='hot',
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alpha=0.6,
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alpha=0.6,
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zorder=2
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zorder=2
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)
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)
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# Add dark basemap
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ctx.add_basemap(
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ax,
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source=ctx.providers.CartoDB.DarkMatter,
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zoom='auto'
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)
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# Remove axes and margins
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# Remove axes and margins
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ax.set_axis_off()
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ax.set_axis_off()
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plt.subplots_adjust(left=0, right=1, top=1, bottom=0)
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plt.subplots_adjust(left=0, right=1, top=1, bottom=0)
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