mirror of
https://github.com/netbymatt/ws4kp.git
synced 2026-04-14 07:39:29 -07:00
@@ -1 +1 @@
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convert radar-stretched.webp --define webp:losless=true -crop 10x11+0+0@ +repage +adjoin -set filename:row "%[fx:floor(t/10)]" -set filename:col "%[fx:t%10]" radar/map-%[filename:row]-%[filename:col].webp
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convert radar-stretched.webp -define webp:losless=true -crop 10x11+0+0@ +repage +adjoin -set filename:row "%[fx:floor(t/10)]" -set filename:col "%[fx:t%10]" radar/map-%[filename:row]-%[filename:col].webp
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6
server/scripts/modules/radar-constants.mjs
Normal file
6
server/scripts/modules/radar-constants.mjs
Normal file
@@ -0,0 +1,6 @@
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export const TILE_SIZE = { x: 680, y: 387 };
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export const TILE_COUNT = { x: 10, y: 11 };
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export const TILE_FULL_SIZE = { x: 6800, y: 4255 };
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export const RADAR_FULL_SIZE = { width: 2550, height: 1600 };
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export const RADAR_FINAL_SIZE = { width: 640, height: 367 };
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export const RADAR_SOURCE_SIZE = { width: 480, height: 276 };
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129
server/scripts/modules/radar-tiles.mjs
Normal file
129
server/scripts/modules/radar-tiles.mjs
Normal file
@@ -0,0 +1,129 @@
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import {
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pixelToFile, modTile,
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} from './radar-utils.mjs';
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import { RADAR_FINAL_SIZE, TILE_SIZE } from './radar-constants.mjs';
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import { elemForEach } from './utils/elem.mjs';
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// creates the radar background map image and overlay transparency
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// which remain fixed on the page as the radar image changes in layered divs
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// it returns 4 ImageBitmaps that represent the base map, and 4 ImageBitmaps that are the overlay
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// the main thread pushes these ImageBitmaps into the image placeholders on the page
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const setTiles = (data) => {
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const {
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sourceXY,
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elemId,
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} = data;
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const elemIdFull = `${elemId}-html`;
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// determine the basemap images needed
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const baseMapTiles = [
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pixelToFile(sourceXY.x, sourceXY.y),
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pixelToFile(sourceXY.x + TILE_SIZE.x, sourceXY.y),
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pixelToFile(sourceXY.x, sourceXY.y + TILE_SIZE.y),
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pixelToFile(sourceXY.x + TILE_SIZE.x, sourceXY.y + TILE_SIZE.y),
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];
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// do some calculations
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// the tiles are arranged as follows, with the horizontal axis as x, and correlating with the second set of digits in the image file number
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// T[0] T[1]
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// T[2] T[3]
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// tile 0 gets special treatment, it's placement is the basis for all downstream calculations
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const t0Source = modTile(sourceXY.x, sourceXY.y);
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const t0Width = TILE_SIZE.x - t0Source.x;
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const t0Height = TILE_SIZE.y - t0Source.y;
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const t0FinalSize = { x: t0Width, y: t0Height };
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// these will all be used again for the overlay, calculate them once here
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const mapCoordinates = [];
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// t[0]
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mapCoordinates.push({
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sx: t0Source.x,
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sw: t0Width,
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dx: 0,
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dw: t0FinalSize.x,
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sy: t0Source.y,
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sh: t0Height,
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dy: 0,
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dh: t0FinalSize.y,
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});
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// t[1]
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mapCoordinates.push({
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sx: 0,
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sw: TILE_SIZE.x - t0Width,
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dx: t0FinalSize.x,
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dw: TILE_SIZE.x - t0Width,
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sy: t0Source.y,
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sh: t0Height,
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dy: 0,
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dh: t0FinalSize.y,
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});
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// t[2]
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mapCoordinates.push({
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sx: t0Source.x,
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sw: t0Width,
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dx: 0,
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dw: t0FinalSize.x,
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sy: 0,
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sh: TILE_SIZE.y - t0Height,
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dy: t0FinalSize.y,
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dh: TILE_SIZE.y - t0Height,
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});
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// t[3]
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mapCoordinates.push({
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sx: 0,
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sw: TILE_SIZE.x - t0Width,
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dx: t0FinalSize.x,
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dw: TILE_SIZE.x - t0Width,
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sy: 0,
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sh: TILE_SIZE.y - t0Height,
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dy: t0FinalSize.y,
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dh: TILE_SIZE.y - t0Height,
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});
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// determine which tiles are used
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const usedTiles = [
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true,
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mapCoordinates[1].dx < RADAR_FINAL_SIZE.width,
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mapCoordinates[2].dy < RADAR_FINAL_SIZE.height,
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mapCoordinates[2].dy < RADAR_FINAL_SIZE.height && mapCoordinates[1].dx < RADAR_FINAL_SIZE.width,
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];
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// helper function for populating tiles
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const populateTile = (tileName) => (elem, index) => {
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// check if the tile is used
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if (!usedTiles[index]) return;
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// set the image source and size
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elem.src = `/images/maps/radar/${tileName}-${baseMapTiles[index]}.webp`;
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elem.width = TILE_SIZE.x;
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elem.height = TILE_SIZE.y;
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};
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// populate the map and overlay tiles
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// fill the tiles with the map
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elemForEach(`#${elemIdFull} .map-tiles img`, populateTile('map'));
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elemForEach(`#${elemIdFull} .overlay-tiles img`, populateTile('overlay'));
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// fill the tiles with the overlay
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// shift the map tile containers
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const tileShift = modTile(sourceXY.x, sourceXY.y);
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const mapTileContainer = document.querySelector(`#${elemIdFull} .map-tiles`);
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mapTileContainer.style.top = `${-tileShift.y}px`;
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mapTileContainer.style.left = `${-tileShift.x}px`;
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const overlayTileContainer = document.querySelector(`#${elemIdFull} .overlay-tiles`);
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overlayTileContainer.style.top = `${-tileShift.y}px`;
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overlayTileContainer.style.left = `${-tileShift.x}px`;
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// return some useful data
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return {
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usedTiles,
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baseMapTiles,
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};
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};
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export default setTiles;
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@@ -1,32 +1,23 @@
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const getXYFromLatitudeLongitudeMap = (pos, offsetX, offsetY) => {
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let y = 0;
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let x = 0;
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const imgHeight = 3200;
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const imgWidth = 5100;
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import {
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RADAR_FINAL_SIZE, RADAR_SOURCE_SIZE, TILE_SIZE, TILE_COUNT, TILE_FULL_SIZE,
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} from './radar-constants.mjs';
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y = (51.75 - pos.latitude) * 55.2;
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// center map
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y -= offsetY;
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// limit a value to within a range
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const coerce = (low, value, high) => Math.max(Math.min(value, high), low);
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// Do not allow the map to exceed the max/min coordinates.
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if (y > (imgHeight - (offsetY * 2))) {
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y = imgHeight - (offsetY * 2);
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} else if (y < 0) {
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y = 0;
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}
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const getXYFromLatitudeLongitudeMap = (pos) => {
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// source values for conversion
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// px py lon lat
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// 589 466 -122.3615246 47.63177832
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// 5288 3638 -80.18297384 25.77018996
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x = ((-130.37 - pos.longitude) * 41.775) * -1;
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// center map
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x -= offsetX;
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// map position is calculated as a regresion from the above values (=/- a manual adjustment factor)
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// then shifted by half of the tile size (to center the map)
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// then they are limited to values between 0 and the width or height of the map
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const y = coerce(0, (-145.095 * pos.latitude + 7377.117) - 27 - (TILE_SIZE.y / 2), TILE_FULL_SIZE.y - (TILE_SIZE.y));
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const x = coerce(0, (111.407 * pos.longitude + 14220.972) + 4 - (TILE_SIZE.x / 2), TILE_FULL_SIZE.x - (TILE_SIZE.x));
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// Do not allow the map to exceed the max/min coordinates.
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if (x > (imgWidth - (offsetX * 2))) {
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x = imgWidth - (offsetX * 2);
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} else if (x < 0) {
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x = 0;
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}
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return { x: x * 2, y: y * 2 };
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return { x, y };
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};
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const getXYFromLatitudeLongitudeDoppler = (pos, offsetX, offsetY) => {
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@@ -177,27 +168,23 @@ const mergeDopplerRadarImage = (mapContext, radarContext) => {
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mapContext.drawImage(radarContext.canvas, 0, 0);
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};
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const tileSize = { x: 510, y: 320 };
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const radarFullSize = { width: 2550, height: 1600 };
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const radarFinalSize = { width: 640, height: 367 };
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const radarSourceSize = { width: 480, height: 276 };
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const scaling = {
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width: radarFinalSize.width / radarSourceSize.width,
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height: radarFinalSize.height / radarSourceSize.height,
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width: RADAR_FINAL_SIZE.width / RADAR_SOURCE_SIZE.width,
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height: RADAR_FINAL_SIZE.height / RADAR_SOURCE_SIZE.height,
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};
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// convert a pixel location to a file/tile combination
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const pixelToFile = (xPixel, yPixel) => {
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const xTile = Math.floor(xPixel / tileSize.x);
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const yTile = Math.floor(yPixel / tileSize.y);
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if (xTile < 0 || xTile > 9 || yTile < 0 || yTile > 9) return false;
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return `${xTile.toFixed(0).padStart(2, '0')}-${yTile.toFixed(0).padStart(2, '0')}`;
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const xTile = Math.floor(xPixel / TILE_SIZE.x);
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const yTile = Math.floor(yPixel / TILE_SIZE.y);
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if (xTile < 0 || xTile > TILE_COUNT.x || yTile < 0 || yTile > TILE_COUNT.y) return false;
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return `${yTile}-${xTile}`;
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};
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// convert a pixel location in the overall map to a pixel location on the tile
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const modTile = (xPixel, yPixel) => {
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const x = Math.round(xPixel) % tileSize.x;
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const y = Math.round(yPixel) % tileSize.y;
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const x = Math.round(xPixel) % TILE_SIZE.x;
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const y = Math.round(yPixel) % TILE_SIZE.y;
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return { x, y };
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};
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@@ -219,8 +206,5 @@ export {
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pixelToFile,
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modTile,
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mapSizeToFinalSize,
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tileSize,
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radarFinalSize,
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radarFullSize,
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fetchAsBlob,
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};
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@@ -1,139 +0,0 @@
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import {
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radarFinalSize, pixelToFile, modTile, tileSize, mapSizeToFinalSize, fetchAsBlob,
|
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} from './radar-utils.mjs';
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|
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// creates the radar background map image and overlay transparency
|
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// which remain fixed on the page as the radar image changes in layered divs
|
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// it returns 4 ImageBitmaps that represent the base map, and 4 ImageBitmaps that are the overlay
|
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// the main thread pushes these ImageBitmaps into the image placeholders on the page
|
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|
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const baseMapImages = (tile) => new Promise((resolve) => {
|
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if (tile === false) resolve(false);
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fetchAsBlob(`/images/maps/radar-tiles/${tile}.webp`).then((blob) => {
|
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createImageBitmap(blob).then((imageBitmap) => {
|
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// extract the black pixels to overlay on to the final image (boundaries)
|
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const canvas = new OffscreenCanvas(imageBitmap.width, imageBitmap.height);
|
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const context = canvas.getContext('2d');
|
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context.drawImage(imageBitmap, 0, 0);
|
||||
const imageData = context.getImageData(0, 0, imageBitmap.width, imageBitmap.height);
|
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|
||||
// go through the image data and preserve the black pixels, making the rest transparent
|
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for (let i = 0; i < imageData.data.length; i += 4) {
|
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if (imageData.data[i + 0] >= 116 || imageData.data[i + 1] >= 116 || imageData.data[i + 2] >= 116) {
|
||||
// make it transparent
|
||||
imageData.data[i + 3] = 0;
|
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}
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}
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||||
// write the image data back
|
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context.putImageData(imageData, 0, 0);
|
||||
|
||||
resolve({
|
||||
base: imageBitmap,
|
||||
overlay: canvas.transferToImageBitmap(),
|
||||
});
|
||||
});
|
||||
});
|
||||
});
|
||||
|
||||
onmessage = async (e) => {
|
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const {
|
||||
sourceXY, offsetX, offsetY,
|
||||
} = e.data;
|
||||
|
||||
// determine the basemap images needed
|
||||
const baseMapTiles = [
|
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pixelToFile(sourceXY.x, sourceXY.y),
|
||||
pixelToFile(sourceXY.x + offsetX * 2, sourceXY.y),
|
||||
pixelToFile(sourceXY.x, sourceXY.y + offsetY * 2),
|
||||
pixelToFile(sourceXY.x + offsetX * 2, sourceXY.y + offsetY * 2),
|
||||
];
|
||||
|
||||
// get the base maps
|
||||
const baseMapsPromise = Promise.allSettled(baseMapTiles.map(baseMapImages));
|
||||
|
||||
// do some more calculations for assembling the tiles
|
||||
// the tiles are arranged as follows, with the horizontal axis as x, and correlating with the second set of digits in the image file number
|
||||
// T[0] T[1]
|
||||
// T[2] T[3]
|
||||
// tile 0 gets special treatment, it's placement is the basis for all downstream calculations
|
||||
const t0Source = modTile(sourceXY.x, sourceXY.y);
|
||||
const t0Width = tileSize.x - t0Source.x;
|
||||
const t0Height = tileSize.y - t0Source.y;
|
||||
const t0FinalSize = mapSizeToFinalSize(t0Width, t0Height);
|
||||
|
||||
// these will all be used again for the overlay, calculate them once here
|
||||
const mapCoordinates = [];
|
||||
// t[0]
|
||||
mapCoordinates.push({
|
||||
sx: t0Source.x,
|
||||
sw: t0Width,
|
||||
dx: 0,
|
||||
dw: t0FinalSize.x,
|
||||
|
||||
sy: t0Source.y,
|
||||
sh: t0Height,
|
||||
dy: 0,
|
||||
dh: t0FinalSize.y,
|
||||
});
|
||||
// t[1]
|
||||
mapCoordinates.push({
|
||||
sx: 0,
|
||||
sw: tileSize.x - t0Width,
|
||||
dx: t0FinalSize.x,
|
||||
dw: mapSizeToFinalSize(tileSize.x - t0Width, 0).x,
|
||||
|
||||
sy: t0Source.y,
|
||||
sh: t0Height,
|
||||
dy: 0,
|
||||
dh: t0FinalSize.y,
|
||||
});
|
||||
// t[2]
|
||||
mapCoordinates.push({
|
||||
sx: t0Source.x,
|
||||
sw: t0Width,
|
||||
dx: 0,
|
||||
dw: t0FinalSize.x,
|
||||
|
||||
sy: 0,
|
||||
sh: tileSize.y - t0Height,
|
||||
dy: t0FinalSize.y,
|
||||
dh: mapSizeToFinalSize(0, tileSize.y - t0Height).y,
|
||||
});
|
||||
// t[3]
|
||||
mapCoordinates.push({
|
||||
sx: 0,
|
||||
sw: tileSize.x - t0Width,
|
||||
dx: t0FinalSize.x,
|
||||
dw: mapSizeToFinalSize(tileSize.x - t0Width, 0).x,
|
||||
|
||||
sy: 0,
|
||||
sh: tileSize.y - t0Height,
|
||||
dy: t0FinalSize.y,
|
||||
dh: mapSizeToFinalSize(0, tileSize.y - t0Height).y,
|
||||
});
|
||||
|
||||
// wait for the basemaps to arrive
|
||||
const baseMaps = (await baseMapsPromise).map((map) => map.value ?? false);
|
||||
|
||||
// build the response
|
||||
const t0Base = baseMaps[0].base;
|
||||
const t0Overlay = baseMaps[0].overlay;
|
||||
let t1Base; let t1Overlay; let t2Base; let t2Overlay; let t3Base; let t3Overlay;
|
||||
if (mapCoordinates[1].dx < radarFinalSize.width && baseMaps[1]) {
|
||||
t1Base = baseMaps[1].base;
|
||||
t1Overlay = baseMaps[1].overlay;
|
||||
}
|
||||
if (mapCoordinates[2].dy < radarFinalSize.height && baseMaps[2]) {
|
||||
t2Base = baseMaps[2].base;
|
||||
t2Overlay = baseMaps[2].overlay;
|
||||
if (mapCoordinates[1].dx < radarFinalSize.width && baseMaps[3]) {
|
||||
t3Base = baseMaps[3].base;
|
||||
t3Overlay = baseMaps[3].overlay;
|
||||
}
|
||||
}
|
||||
// baseContext.drawImage(baseMaps.fullMap, sourceXY.x, sourceXY.y, offsetX * 2, offsetY * 2, 0, 0, radarFinalSize.width, radarFinalSize.height);
|
||||
|
||||
postMessage({
|
||||
t0Base, t0Overlay, t1Base, t1Overlay, t2Base, t2Overlay, t3Base, t3Overlay,
|
||||
}, [t0Base, t0Overlay, t1Base, t1Overlay, t2Base, t2Overlay, t3Base, t3Overlay]);
|
||||
};
|
||||
@@ -1,6 +1,7 @@
|
||||
import {
|
||||
radarFinalSize, radarFullSize, removeDopplerRadarImageNoise,
|
||||
removeDopplerRadarImageNoise,
|
||||
} from './radar-utils.mjs';
|
||||
import { RADAR_FULL_SIZE, RADAR_FINAL_SIZE } from './radar-constants.mjs';
|
||||
|
||||
onmessage = async (e) => {
|
||||
const {
|
||||
@@ -20,7 +21,7 @@ onmessage = async (e) => {
|
||||
};
|
||||
|
||||
// create radar context for manipulation
|
||||
const radarCanvas = new OffscreenCanvas(radarFullSize.width, radarFullSize.height);
|
||||
const radarCanvas = new OffscreenCanvas(RADAR_FULL_SIZE.width, RADAR_FULL_SIZE.height);
|
||||
const radarContext = radarCanvas.getContext('2d');
|
||||
radarContext.imageSmoothingEnabled = false;
|
||||
|
||||
@@ -34,8 +35,8 @@ onmessage = async (e) => {
|
||||
// assign to an html image element
|
||||
const radarImgElement = await createImageBitmap(radarImgBlob);
|
||||
// draw the entire image
|
||||
radarContext.clearRect(0, 0, radarFullSize.width, radarFullSize.height);
|
||||
radarContext.drawImage(radarImgElement, 0, 0, radarFullSize.width, radarFullSize.height);
|
||||
radarContext.clearRect(0, 0, RADAR_FULL_SIZE.width, RADAR_FULL_SIZE.height);
|
||||
radarContext.drawImage(radarImgElement, 0, 0, RADAR_FULL_SIZE.width, RADAR_FULL_SIZE.height);
|
||||
|
||||
// crop the radar image without scaling
|
||||
const croppedRadarCanvas = new OffscreenCanvas(radarSource.width, radarSource.height);
|
||||
@@ -47,10 +48,10 @@ onmessage = async (e) => {
|
||||
removeDopplerRadarImageNoise(croppedRadarContext);
|
||||
|
||||
// stretch the radar image
|
||||
const stretchCanvas = new OffscreenCanvas(radarFinalSize.width, radarFinalSize.height);
|
||||
const stretchCanvas = new OffscreenCanvas(RADAR_FINAL_SIZE.width, RADAR_FINAL_SIZE.height);
|
||||
const stretchContext = stretchCanvas.getContext('2d', { willReadFrequently: true });
|
||||
stretchContext.imageSmoothingEnabled = false;
|
||||
stretchContext.drawImage(croppedRadarCanvas, 0, 0, radarSource.width, radarSource.height, 0, 0, radarFinalSize.width, radarFinalSize.height);
|
||||
stretchContext.drawImage(croppedRadarCanvas, 0, 0, radarSource.width, radarSource.height, 0, 0, RADAR_FINAL_SIZE.width, RADAR_FINAL_SIZE.height);
|
||||
|
||||
const stretchedRadar = stretchCanvas.transferToImageBitmap();
|
||||
|
||||
|
||||
@@ -6,7 +6,7 @@ import WeatherDisplay from './weatherdisplay.mjs';
|
||||
import { registerDisplay, timeZone } from './navigation.mjs';
|
||||
import * as utils from './radar-utils.mjs';
|
||||
import { version } from './progress.mjs';
|
||||
import { elemForEach } from './utils/elem.mjs';
|
||||
import setTiles from './radar-tiles.mjs';
|
||||
|
||||
// TEMPORARY fix to disable radar on ios safari. The same engine (webkit) is
|
||||
// used for all ios browers (chrome, brave, firefox, etc) so it's safe to skip
|
||||
@@ -74,10 +74,6 @@ class Radar extends WeatherDisplay {
|
||||
// get some web workers started
|
||||
this.workers = (new Array(this.dopplerRadarImageMax)).fill(null).map(() => radarWorker());
|
||||
}
|
||||
if (!this.fixedWorker) {
|
||||
// get the fixed background, overlay worker started
|
||||
this.fixedWorker = fixedRadarWorker();
|
||||
}
|
||||
|
||||
const baseUrl = `https://${RADAR_HOST}/archive/data/`;
|
||||
const baseUrlEnd = '/GIS/uscomp/?F=0&P=n0r*.png';
|
||||
@@ -128,13 +124,13 @@ class Radar extends WeatherDisplay {
|
||||
// calculate offsets and sizes
|
||||
const offsetX = 120 * 2;
|
||||
const offsetY = 69 * 2;
|
||||
const sourceXY = utils.getXYFromLatitudeLongitudeMap(this.weatherParameters, offsetX, offsetY);
|
||||
const sourceXY = utils.getXYFromLatitudeLongitudeMap(this.weatherParameters);
|
||||
const radarSourceXY = utils.getXYFromLatitudeLongitudeDoppler(this.weatherParameters, offsetX, offsetY);
|
||||
|
||||
const baseAndOverlayPromise = this.fixedWorker.processAssets({
|
||||
// set up the base map and overlay tiles
|
||||
setTiles({
|
||||
sourceXY,
|
||||
offsetX,
|
||||
offsetY,
|
||||
elemId: this.elemId,
|
||||
});
|
||||
|
||||
// Load the most recent doppler radar images.
|
||||
@@ -172,50 +168,6 @@ class Radar extends WeatherDisplay {
|
||||
elem,
|
||||
};
|
||||
}));
|
||||
// wait for the base and overlay
|
||||
const baseAndOverlay = await baseAndOverlayPromise;
|
||||
|
||||
// calculate final tile size
|
||||
const finalTileSize = utils.mapSizeToFinalSize(utils.tileSize.x, utils.tileSize.y);
|
||||
// fill the tiles with the map
|
||||
elemForEach('.map-tiles img', (elem, index) => {
|
||||
// get the base image
|
||||
const base = baseAndOverlay[`t${index}Base`];
|
||||
// put it on a canvas
|
||||
const canvas = document.createElement('canvas');
|
||||
const context = canvas.getContext('bitmaprenderer');
|
||||
context.transferFromImageBitmap(base);
|
||||
// if it's not there, return (tile not needed)
|
||||
if (!base) return;
|
||||
// assign the bitmap to the image
|
||||
elem.width = finalTileSize.x;
|
||||
elem.height = finalTileSize.y;
|
||||
elem.src = canvas.toDataURL();
|
||||
});
|
||||
elemForEach('.overlay-tiles img', (elem, index) => {
|
||||
// get the base image
|
||||
const base = baseAndOverlay[`t${index}Overlay`];
|
||||
// put it on a canvas
|
||||
const canvas = document.createElement('canvas');
|
||||
const context = canvas.getContext('bitmaprenderer');
|
||||
context.transferFromImageBitmap(base);
|
||||
// if it's not there, return (tile not needed)
|
||||
if (!base) return;
|
||||
// assign the bitmap to the image
|
||||
elem.width = finalTileSize.x;
|
||||
elem.height = finalTileSize.y;
|
||||
elem.src = canvas.toDataURL();
|
||||
});
|
||||
// fill the tiles with the overlay
|
||||
// shift the map tile containers
|
||||
const tileShift = utils.modTile(sourceXY.x, sourceXY.y);
|
||||
const tileShiftStretched = utils.mapSizeToFinalSize(tileShift.x, tileShift.y);
|
||||
const mapTileContainer = this.elem.querySelector('.map-tiles');
|
||||
mapTileContainer.style.top = `${-tileShiftStretched.y}px`;
|
||||
mapTileContainer.style.left = `${-tileShiftStretched.x}px`;
|
||||
const overlayTileContainer = this.elem.querySelector('.overlay-tiles');
|
||||
overlayTileContainer.style.top = `${-tileShiftStretched.y}px`;
|
||||
overlayTileContainer.style.left = `${-tileShiftStretched.x}px`;
|
||||
|
||||
// put the elements in the container
|
||||
const scrollArea = this.elem.querySelector('.scroll-area');
|
||||
@@ -271,31 +223,6 @@ const radarWorker = () => {
|
||||
};
|
||||
};
|
||||
|
||||
// create a radar worker for the fixed background images
|
||||
const fixedRadarWorker = () => {
|
||||
// create the worker
|
||||
const worker = new Worker(`/resources/radar-worker-bg-fg.mjs?_=${version()}`, { type: 'module' });
|
||||
|
||||
const processAssets = (data) => new Promise((resolve, reject) => {
|
||||
// prepare for done message
|
||||
worker.onmessage = (e) => {
|
||||
if (e?.data instanceof Error) {
|
||||
reject(e.data);
|
||||
} else if (e?.data?.t0Base instanceof ImageBitmap) {
|
||||
resolve(e.data);
|
||||
}
|
||||
};
|
||||
|
||||
// start up the worker
|
||||
worker.postMessage(data);
|
||||
});
|
||||
|
||||
// return the object
|
||||
return {
|
||||
processAssets,
|
||||
};
|
||||
};
|
||||
|
||||
// register display
|
||||
// TEMPORARY: except on IOS and bots
|
||||
if (!isIos && !isBot) {
|
||||
|
||||
Reference in New Issue
Block a user