| | |
| | | import { map, AMap } from './baseMap'; |
| | | import { toRaw } from 'vue'; |
| | | |
| | | //定义一些常量 |
| | | const PI = 3.1415926535897932384626; |
| | | const a = 6378245.0; //长半轴 |
| | | const ee = 0.00669342162296594323; //扁率/*** GCJ02 转换为 WGS84* @param lng* @param lat* @returns {*[]}*/ |
| | | |
| | | function transformlat(lng, lat) { |
| | | // lat = +lat lng = +lng |
| | | let ret = |
| | | -100.0 + |
| | | 2.0 * lng + |
| | | 3.0 * lat + |
| | | 0.2 * lat * lat + |
| | | 0.1 * lng * lat + |
| | | 0.2 * Math.sqrt(Math.abs(lng)); |
| | | ret += |
| | | ((20.0 * Math.sin(6.0 * lng * PI) + |
| | | 20.0 * Math.sin(2.0 * lng * PI)) * |
| | | 2.0) / |
| | | 3.0; |
| | | ret += |
| | | ((20.0 * Math.sin(lat * PI) + 40.0 * Math.sin((lat / 3.0) * PI)) * |
| | | 2.0) / |
| | | 3.0; |
| | | ret += |
| | | ((160.0 * Math.sin((lat / 12.0) * PI) + |
| | | 320 * Math.sin((lat * PI) / 30.0)) * |
| | | 2.0) / |
| | | 3.0; |
| | | return ret; |
| | | } |
| | | |
| | | function transformlng(lng, lat) { |
| | | // lat = +latlng = +lng |
| | | let ret = |
| | | 300.0 + |
| | | lng + |
| | | 2.0 * lat + |
| | | 0.1 * lng * lng + |
| | | 0.1 * lng * lat + |
| | | 0.1 * Math.sqrt(Math.abs(lng)); |
| | | ret += |
| | | ((20.0 * Math.sin(6.0 * lng * PI) + |
| | | 20.0 * Math.sin(2.0 * lng * PI)) * |
| | | 2.0) / |
| | | 3.0; |
| | | ret += |
| | | ((20.0 * Math.sin(lng * PI) + 40.0 * Math.sin((lng / 3.0) * PI)) * |
| | | 2.0) / |
| | | 3.0; |
| | | ret += |
| | | ((150.0 * Math.sin((lng / 12.0) * PI) + |
| | | 300.0 * Math.sin((lng / 30.0) * PI)) * |
| | | 2.0) / |
| | | 3.0; |
| | | return ret; |
| | | } |
| | | |
| | | /** |
| | | * 判断是否在国内,不在国内则不做偏移 |
| | | * @param lng |
| | | * @param lat |
| | | * @returns {boolean} |
| | | */ |
| | | function out_of_china(lng, lat) { |
| | | // 纬度3.86~53.55,经度73.66~135.05 |
| | | return !(lng > 73.66 && lng < 135.05 && lat > 3.86 && lat < 53.55); |
| | | } |
| | | |
| | | export default { |
| | | /** |
| | | * 将数组表示的坐标点,转换为AMap.LngLat对象 |
| | |
| | | }); |
| | | }, |
| | | |
| | | addMarker(lnglat) { |
| | | const marker = new AMap.Marker({ |
| | | position: lnglat |
| | | }); |
| | | map.add(marker); |
| | | this.setCenter(lnglat); |
| | | return marker; |
| | | }, |
| | | |
| | | setCenter(lnglat) { |
| | | map.setCenter(lnglat); |
| | | }, |
| | | |
| | | /** |
| | | * 缩放地图到合适的视野级别 |
| | | */ |
| | | setFitView(overlays, type = 0) { |
| | | setFitView(...overlays) { |
| | | const _overlays = toRaw(overlays); |
| | | switch (type) { |
| | | case 0: |
| | | map.setFitView([_overlays]); |
| | | break; |
| | | case 1: |
| | | map.setFitView(_overlays); |
| | | break; |
| | | default: |
| | | map.setFitView([_overlays]); |
| | | break; |
| | | map.setFitView(_overlays, true, [60, 60, 500, 60], 14.5); |
| | | }, |
| | | |
| | | addView(overlays) { |
| | | if (overlays) { |
| | | const _overlays = toRaw(overlays); |
| | | map.add(_overlays); |
| | | } |
| | | }, |
| | | |
| | |
| | | * 移除覆盖物 |
| | | */ |
| | | removeView(overlays) { |
| | | const _overlays = toRaw(overlays); |
| | | map.remove(_overlays); |
| | | if (overlays) { |
| | | const _overlays = toRaw(overlays); |
| | | map.remove(_overlays); |
| | | } |
| | | }, |
| | | |
| | | /** |
| | |
| | | if (map == undefined) return; |
| | | map.clearMap(); |
| | | }, |
| | | |
| | | /** |
| | | * 高德地图坐标转GPS坐标算法 |
| | | */ |
| | | gcj02towgs84(lng, lat) { |
| | | // lat = +latlng = +lng |
| | | if (out_of_china(lng, lat)) { |
| | | return [lng, lat]; |
| | | } else { |
| | | let dlat = transformlat(lng - 105.0, lat - 35.0); |
| | | let dlng = transformlng(lng - 105.0, lat - 35.0); |
| | | let radlat = (lat / 180.0) * PI; |
| | | let magic = Math.sin(radlat); |
| | | magic = 1 - ee * magic * magic; |
| | | let sqrtmagic = Math.sqrt(magic); |
| | | dlat = |
| | | (dlat * 180.0) / |
| | | (((a * (1 - ee)) / (magic * sqrtmagic)) * PI); |
| | | dlng = |
| | | (dlng * 180.0) / ((a / sqrtmagic) * Math.cos(radlat) * PI); |
| | | let mglat = |
| | | Math.round((lat * 2 - lat - dlat) * 1000000) / 1000000; |
| | | let mglng = |
| | | Math.round((lng * 2 - lng - dlng) * 1000000) / 1000000; |
| | | return [mglng, mglat]; |
| | | } |
| | | }, |
| | | /** |
| | | * WGS84 转换为 GCJ02 |
| | | * @param lng |
| | | * @param lat |
| | | * @returns {*[]} |
| | | */ |
| | | wgs84togcj02(lng, lat) { |
| | | // lat = +latlng = +lng |
| | | if (out_of_china(lng, lat)) { |
| | | return [lng, lat]; |
| | | } else { |
| | | let dlat = transformlat(lng - 105.0, lat - 35.0); |
| | | let dlng = transformlng(lng - 105.0, lat - 35.0); |
| | | let radlat = (lat / 180.0) * PI; |
| | | let magic = Math.sin(radlat); |
| | | magic = 1 - ee * magic * magic; |
| | | let sqrtmagic = Math.sqrt(magic); |
| | | dlat = |
| | | (dlat * 180.0) / |
| | | (((a * (1 - ee)) / (magic * sqrtmagic)) * PI); |
| | | dlng = |
| | | (dlng * 180.0) / ((a / sqrtmagic) * Math.cos(radlat) * PI); |
| | | let mglat = Math.round((lat + dlat) * 1000000) / 1000000; |
| | | let mglng = Math.round((lng + dlng) * 1000000) / 1000000; |
| | | return [mglng, mglat]; |
| | | } |
| | | }, |
| | | gpsConvert(gps) { |
| | | return new Promise((reject) => { |
| | | // 参数说明:需要转换的坐标,需要转换的坐标类型,转换成功后的回调函数 |
| | | AMap.convertFrom(gps, 'baidu', function (status, result) { |
| | | if (result.info === 'ok') { |
| | | var lnglats = result.locations; // 转换后的高德坐标 Array.<LngLat> |
| | | reject(lnglats[0]); |
| | | } |
| | | }); |
| | | }); |
| | | } |
| | | }; |