// all function related to the map
import * as dt from './datetime.js'
import * as utils from "./chart_utilities.js"
import { showChart, loadAll } from './showcharts.js'
let map = null
let bounds
let popuptext = ''
let clickedSensor = 0
let clickedcoords = {}
const colorscale = ['#d53e4f', '#fc8d59', '#fee08b', '#e6f598', '#99d594', '#3288bd', '#808080'];
const dba = [100, 80, 60, 40, 20, 0, -999];
const APIURL = '/api/getmapdata?'
export async function showMap(params, sysparams) {
utils.removeTabs()
if(map && map.remove) {
map.off();
map.remove();
}
map = L.map('map', {scrollWheelZoom: false}).setView(params.center, parseInt(params.zoom))
L.tileLayer('https://tile.openstreetmap.org/{z}/{x}/{y}.png', {
maxZoom: 19,
attribution: '© OpenStreetMap'
}).addTo(map)
bounds = map.getBounds();
map.on('moveend', async function () {
bounds = map.getBounds()
await buildMarkers(bounds)
});
let legend = L.control({position: 'bottomright'})
legend.onAdd = function (map) {
let div = L.DomUtil.create('div', 'info legend')
let div_color = L.DomUtil.create('div', 'info legend inner', div)
div_color.innerHTML += 'dbA
';
// loop through our density intervals and generate a label with a colored square for each interval
for (let i = 0; i < dba.length - 1; i++) {
div_color.innerHTML +=
'' +
' ' + dba[i] + (i == 0 ? '+' : '') + '
'
}
div_color.innerHTML += ' offline'
return div
};
legend.addTo(map)
let lastdate = await buildMarkers()
showLastDate(lastdate);
map.on('popupopen', function () {
document.querySelector('.speciallink').addEventListener('click', async function (x) {
console.log(`Event clicked: ${clickedSensor}`)
document.querySelector('#navi').style.display = 'block'
params.sid = clickedSensor
let triggerEl = document.querySelector('#livetab')
bootstrap.Tab.getInstance(triggerEl).show() // Select tab by name
localStorage.setItem('activeTab', 'livetab')
let ok = await showChart(params, 'live', 'dlive')
if (ok) {
await loadAll(params)
}
params.center = [clickedcoords.lat, clickedcoords.lng]
})
})
}
function getColor(d) {
let val = parseInt(d);
for (let i = 0; i < dba.length; i++) {
if (val >= dba[i]) {
return (colorscale[i]);
}
}
}
function calcPolygon(bounds) {
return L.polygon([[bounds.getNorth(), bounds.getWest()], [bounds.getNorth(), bounds.getEast()], [bounds.getSouth(), bounds.getEast()], [bounds.getSouth(), bounds.getWest()]], {
color: 'black',
fillOpacity: 0.5
});
;
}
// With all Markers in cluster (markers) calculate the median
// of the values. With this median fetch the color and return it.
// If there are 'offline' sensors (value == -1) strip then before
// calculating the median. If there are only offline sensor, return
// color of value==-1 (dark gray).
function getMedian(markers) {
markers.sort(function (a, b) { // first sort, the lowest first
let y1 = a.options.value;
let y2 = b.options.value;
if (y1 < y2) {
return -1;
}
if (y2 < y1) {
return 1;
}
return 0;
});
// console.log(markers);
let i = 0; // now find the 'offlines' (value == -1)
for (i = 0; i < markers.length; i++) {
if (markers[i].options.value > 0) {
break;
}
}
markers.splice(0, i); // remove these from array
let lang = markers.length;
if (lang > 1) { //
if ((lang % 2) == 1) { // uneven ->
return getColor(markers[(Math.floor(lang / 2))].options.value); // median is in the middle
} else { // evaen ->
lang = lang / 2; // median is mean of both middle values
// console.log(lang);
let wert = (markers[lang - 1].options.value +
markers[lang].options.value) / 2;
return getColor(wert);
}
} else if (lang == 1) { // only one marker -> return its color
return getColor(markers[0].options.value);
}
return getColor(-1); // only offlines
}
function buildIcon(color, n, indoor) {
let x = 100;
if (n < 10) {
x = 200;
} else if (n < 100) {
x = 150;
}
let txtColor = "black";
if (color == colorscale[5]) {
txtColor = "white"
}
let circIcon = '';
let circIconUrl = encodeURI("data:image/svg+xml," + circIcon).replace(new RegExp('#', 'g'), '%23');
return circIconUrl;
}
export async function buildMarkers() {
// debug_log('buildMarkers(bounds)');
const box = {
west: bounds.getWest(), south: bounds.getSouth(),
east: bounds.getEast(), north: bounds.getNorth()
}
const url = APIURL + `type=noise&box=${bounds.toBBoxString()}`
let ret = await fetch(url)
.catch(e => {
console.log(e)
});
let sensors = await ret.json()
if (!sensors.err) {
let markers = L.markerClusterGroup({
spiderfyOnMaxZoom: true,
showCoverageOnHover: false,
zoomToBoundsOnClick: true,
// disableClusteringAtZoom: 14,
iconCreateFunction: function (cluster) {
let mymarkers = cluster.getAllChildMarkers();
let color = getMedian(mymarkers);
return new L.Icon({
iconUrl: buildIcon(color, cluster.getChildCount(), 0),
iconSize: [35, 35]
});
},
});
for (let x of sensors.values) {
if (x.value <= -4) {
continue
}
let marker = L.marker([x.location[1], x.location[0]], {
icon: new L.Icon({
iconUrl: buildIcon(getColor(parseInt(x.value)), 0, x.indoor),
iconSize: [35, 35],
}),
name: x.id,
value: x.value,
url: '/graph?sid=' + x.id,
lastseen: dt.formatISODate(x.lastseen),
indoor: x.indoor
})
.on('click', e => onMarkerClick(e, true, sensors.popuptxt)) // define click- and
.bindPopup(popuptext); // and bint the popup text
markers.addLayer(marker);
}
map.addLayer(markers);
return sensors.lastdate
} else {
utils.showError(sensors.err)
}
}
async function onMarkerClick(e, click, txts) {
let item = e.target.options;
clickedSensor = item.name;
clickedcoords = e.latlng
let offlinetext = `
| ${item.indoor==1 ? "indoor" : ""} |