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"""functions useful to convert to/from latitude-longitude coordinates to pixel image coordinates""" |
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from src import app_logger |
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from src.utilities.constants import TILE_SIZE, EARTH_EQUATORIAL_RADIUS |
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from src.utilities.type_hints import ImagePixelCoordinates, tuple_float, tuple_float_any |
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from src.utilities.type_hints import LatLngDict |
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def _get_latlng2pixel_projection(latlng: LatLngDict) -> ImagePixelCoordinates: |
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from math import log, pi, sin |
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app_logger.debug(f"latlng: {type(latlng)}, value:{latlng}.") |
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app_logger.debug(f'latlng lat: {type(latlng.lat)}, value:{latlng.lat}.') |
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app_logger.debug(f'latlng lng: {type(latlng.lng)}, value:{latlng.lng}.') |
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try: |
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sin_y: float = sin(latlng.lat * pi / 180) |
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app_logger.debug(f"sin_y, #1:{sin_y}.") |
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sin_y = min(max(sin_y, -0.9999), 0.9999) |
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app_logger.debug(f"sin_y, #2:{sin_y}.") |
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x = TILE_SIZE * (0.5 + latlng.lng / 360) |
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app_logger.debug(f"x:{x}.") |
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y = TILE_SIZE * (0.5 - log((1 + sin_y) / (1 - sin_y)) / (4 * pi)) |
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app_logger.debug(f"y:{y}.") |
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return {"x": x, "y": y} |
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except Exception as e_get_latlng2pixel_projection: |
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app_logger.error(f'e_get_latlng2pixel_projection:{e_get_latlng2pixel_projection}.') |
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raise e_get_latlng2pixel_projection |
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def _get_point_latlng_to_pixel_coordinates(latlng: LatLngDict, zoom: int | float) -> ImagePixelCoordinates: |
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from math import floor |
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try: |
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world_coordinate: ImagePixelCoordinates = _get_latlng2pixel_projection(latlng) |
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app_logger.debug(f"world_coordinate:{world_coordinate}.") |
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scale: int = pow(2, zoom) |
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app_logger.debug(f"scale:{scale}.") |
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return ImagePixelCoordinates( |
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x=floor(world_coordinate["x"] * scale), |
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y=floor(world_coordinate["y"] * scale) |
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) |
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except Exception as e_format_latlng_to_pixel_coordinates: |
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app_logger.error(f'format_latlng_to_pixel_coordinates:{e_format_latlng_to_pixel_coordinates}.') |
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raise e_format_latlng_to_pixel_coordinates |
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def get_latlng_to_pixel_coordinates( |
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latlng_origin_ne: LatLngDict, |
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latlng_origin_sw: LatLngDict, |
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latlng_current_point: LatLngDict, |
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zoom: int | float, |
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k: str |
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) -> ImagePixelCoordinates: |
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""" |
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Parse the input request lambda event |
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Args: |
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latlng_origin_ne: NE latitude-longitude origin point |
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latlng_origin_sw: SW latitude-longitude origin point |
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latlng_current_point: latitude-longitude prompt point |
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zoom: Level of detail |
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k: prompt type |
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Returns: |
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ImagePixelCoordinates: pixel image coordinate point |
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""" |
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app_logger.debug(f"latlng_origin - {k}: {type(latlng_origin_ne)}, value:{latlng_origin_ne}.") |
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app_logger.debug(f"latlng_current_point - {k}: {type(latlng_current_point)}, value:{latlng_current_point}.") |
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latlng_map_origin_ne = _get_point_latlng_to_pixel_coordinates(latlng_origin_ne, zoom) |
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latlng_map_origin_sw = _get_point_latlng_to_pixel_coordinates(latlng_origin_sw, zoom) |
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latlng_map_current_point = _get_point_latlng_to_pixel_coordinates(latlng_current_point, zoom) |
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diff_coord_x = abs(latlng_map_origin_sw["x"] - latlng_map_current_point["x"]) |
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diff_coord_y = abs(latlng_map_origin_ne["y"] - latlng_map_current_point["y"]) |
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point = ImagePixelCoordinates(x=diff_coord_x, y=diff_coord_y) |
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app_logger.debug(f"point type - {k}: {point}.") |
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return point |
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def _from4326_to3857(lat: float, lon: float) -> tuple_float or tuple_float_any: |
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from math import radians, log, tan |
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x_tile: float = radians(lon) * EARTH_EQUATORIAL_RADIUS |
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y_tile: float = log(tan(radians(45 + lat / 2.0))) * EARTH_EQUATORIAL_RADIUS |
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return x_tile, y_tile |
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def _deg2num(lat: float, lon: float, zoom: int): |
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from math import radians, pi, asinh, tan |
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n = 2 ** zoom |
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x_tile = ((lon + 180) / 360 * n) |
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y_tile = (1 - asinh(tan(radians(lat))) / pi) * n / 2 |
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return x_tile, y_tile |
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