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https://github.com/Azgaar/Fantasy-Map-Generator.git
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Add fantasy world coordinate system to GeoJSON exports
- Implement proper coordinate transformation from pixels to world meters - Add comprehensive metadata to all GeoJSON exports including map settings, scale, and units - Support multiple distance units (km, miles, yards, feet, leagues, meters) - Calculate bounds in meters for proper geospatial reference - Include CRS information as Fantasy Map Cartesian system - Fix marker notes export to correctly reference note IDs - Improve coordinate precision and consistency across all export types
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1 changed files with 198 additions and 12 deletions
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@ -476,9 +476,143 @@ function inlineStyle(clone) {
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emptyG.remove();
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}
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// Helper function to get meters per pixel based on distance unit
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function getMetersPerPixel() {
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const unit = distanceUnitInput.value.toLowerCase();
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switch(unit) {
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case 'km':
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return distanceScale * 1000;
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case 'm':
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case 'meter':
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case 'meters':
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return distanceScale;
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case 'mi':
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case 'mile':
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case 'miles':
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return distanceScale * 1609.344;
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case 'yd':
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case 'yard':
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case 'yards':
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return distanceScale * 0.9144;
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case 'ft':
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case 'foot':
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case 'feet':
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return distanceScale * 0.3048;
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case 'league':
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case 'leagues':
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return distanceScale * 4828.032;
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default:
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console.warn(`Unknown distance unit: ${unit}, defaulting to km`);
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return distanceScale * 1000;
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}
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}
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// Convert from map pixel coordinates to fantasy world coordinates
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// Using the exact same values as prepareMapData
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function getFantasyCoordinates(x, y, decimals = 2) {
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// Convert distanceScale to meters based on the unit
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let pixelScaleInMeters;
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const unit = distanceUnitInput.value.toLowerCase();
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switch(unit) {
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case 'km':
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pixelScaleInMeters = distanceScale * 1000; // km to meters
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break;
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case 'm':
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case 'meter':
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case 'meters':
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pixelScaleInMeters = distanceScale; // already in meters
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break;
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case 'mi':
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case 'mile':
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case 'miles':
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pixelScaleInMeters = distanceScale * 1609.344; // miles to meters
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break;
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case 'yd':
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case 'yard':
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case 'yards':
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pixelScaleInMeters = distanceScale * 0.9144; // yards to meters
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break;
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case 'ft':
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case 'foot':
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case 'feet':
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pixelScaleInMeters = distanceScale * 0.3048; // feet to meters
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break;
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case 'league':
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case 'leagues':
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pixelScaleInMeters = distanceScale * 4828.032; // leagues (3 miles) to meters
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break;
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default:
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// Default to km if unit is not recognized
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console.warn(`Unknown distance unit: ${unit}, defaulting to km`);
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pixelScaleInMeters = distanceScale * 1000;
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}
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// Convert pixel coordinates to world coordinates in meters
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const worldX = x * pixelScaleInMeters;
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const worldY = -y * pixelScaleInMeters; // Negative because Y increases downward in pixels
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// Round to specified decimal places
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const factor = Math.pow(10, decimals);
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return [
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Math.round(worldX * factor) / factor,
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Math.round(worldY * factor) / factor
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];
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}
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function saveGeoJsonCells() {
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const {cells, vertices} = pack;
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const json = {type: "FeatureCollection", features: []};
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// Calculate meters per pixel based on unit
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const metersPerPixel = getMetersPerPixel();
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// Use the same global variables as prepareMapData
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const json = {
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type: "FeatureCollection",
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features: [],
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// Include metadata using the same sources as prepareMapData
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metadata: {
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generator: "Azgaar's Fantasy Map Generator",
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version: VERSION,
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mapName: mapName.value,
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mapId: mapId,
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seed: seed,
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dimensions: {
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width_px: graphWidth,
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height_px: graphHeight
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},
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scale: {
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distance: distanceScale,
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unit: distanceUnitInput.value,
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meters_per_pixel: metersPerPixel
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},
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units: {
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distance: distanceUnitInput.value,
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area: areaUnit.value,
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height: heightUnit.value,
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temperature: temperatureScale.value
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},
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bounds_meters: {
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minX: 0,
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maxX: graphWidth * metersPerPixel,
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minY: -(graphHeight * metersPerPixel),
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maxY: 0
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},
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settings: {
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populationRate: populationRate,
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urbanization: urbanization,
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urbanDensity: urbanDensity,
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growthRate: growthRate.value,
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mapSize: mapSizeOutput.value,
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latitude: latitudeOutput.value,
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longitude: longitudeOutput.value,
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precipitation: precOutput.value
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},
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crs: "Fantasy Map Cartesian (meters)",
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exportedAt: new Date().toISOString()
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}
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};
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const getPopulation = i => {
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const [r, u] = getCellPopulation(i);
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@ -490,7 +624,7 @@ function saveGeoJsonCells() {
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function getCellCoordinates(cellVertices) {
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const coordinates = cellVertices.map(vertex => {
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const [x, y] = vertices.p[vertex];
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return getCoordinates(x, y, 4);
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return getFantasyCoordinates(x, y, 2);
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});
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return [[...coordinates, coordinates[0]]];
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}
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@ -517,50 +651,102 @@ function saveGeoJsonCells() {
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}
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function saveGeoJsonRoutes() {
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const metersPerPixel = getMetersPerPixel();
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const features = pack.routes.map(({i, points, group, name = null}) => {
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const coordinates = points.map(([x, y]) => getCoordinates(x, y, 4));
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const coordinates = points.map(([x, y]) => getFantasyCoordinates(x, y, 2));
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return {
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type: "Feature",
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geometry: {type: "LineString", coordinates},
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properties: {id: i, group, name}
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};
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});
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const json = {type: "FeatureCollection", features};
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const json = {
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type: "FeatureCollection",
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features,
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metadata: {
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crs: "Fantasy Map Cartesian (meters)",
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mapName: mapName.value,
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scale: {
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distance: distanceScale,
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unit: distanceUnitInput.value,
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meters_per_pixel: metersPerPixel
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}
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}
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};
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const fileName = getFileName("Routes") + ".geojson";
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downloadFile(JSON.stringify(json), fileName, "application/json");
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}
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function saveGeoJsonRivers() {
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const metersPerPixel = getMetersPerPixel();
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const features = pack.rivers.map(
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({i, cells, points, source, mouth, parent, basin, widthFactor, sourceWidth, discharge, name, type}) => {
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if (!cells || cells.length < 2) return;
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const meanderedPoints = Rivers.addMeandering(cells, points);
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const coordinates = meanderedPoints.map(([x, y]) => getCoordinates(x, y, 4));
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const coordinates = meanderedPoints.map(([x, y]) => getFantasyCoordinates(x, y, 2));
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return {
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type: "Feature",
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geometry: {type: "LineString", coordinates},
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properties: {id: i, source, mouth, parent, basin, widthFactor, sourceWidth, discharge, name, type}
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};
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}
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);
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const json = {type: "FeatureCollection", features};
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).filter(f => f); // Remove undefined entries
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const json = {
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type: "FeatureCollection",
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features,
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metadata: {
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crs: "Fantasy Map Cartesian (meters)",
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mapName: mapName.value,
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scale: {
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distance: distanceScale,
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unit: distanceUnitInput.value,
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meters_per_pixel: metersPerPixel
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}
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}
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};
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const fileName = getFileName("Rivers") + ".geojson";
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downloadFile(JSON.stringify(json), fileName, "application/json");
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}
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function saveGeoJsonMarkers() {
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const metersPerPixel = getMetersPerPixel();
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const features = pack.markers.map(marker => {
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const {i, type, icon, x, y, size, fill, stroke} = marker;
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const coordinates = getCoordinates(x, y, 4);
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const note = notes.find(note => note.id === id);
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const properties = {id: i, type, icon, x, y, ...note, size, fill, stroke};
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const coordinates = getFantasyCoordinates(x, y, 2);
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// Find the associated note if it exists
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const note = notes.find(note => note.id === `marker${i}`);
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const properties = {
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id: i,
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type,
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icon,
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x_px: x,
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y_px: y,
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size,
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fill,
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stroke,
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...(note && {note: note.legend}) // Add note text if it exists
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};
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return {type: "Feature", geometry: {type: "Point", coordinates}, properties};
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});
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const json = {type: "FeatureCollection", features};
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const json = {
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type: "FeatureCollection",
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features,
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metadata: {
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crs: "Fantasy Map Cartesian (meters)",
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mapName: mapName.value,
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scale: {
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distance: distanceScale,
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unit: distanceUnitInput.value,
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meters_per_pixel: metersPerPixel
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}
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}
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};
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const fileName = getFileName("Markers") + ".geojson";
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downloadFile(JSON.stringify(json), fileName, "application/json");
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}
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}
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