2023-05-11 15:47:55 +00:00
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import { HttpService } from '@nestjs/axios';
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import { IGeorouter } from '../../domain/interfaces/georouter.interface';
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import { Injectable } from '@nestjs/common';
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import { catchError, lastValueFrom, map } from 'rxjs';
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import { AxiosError, AxiosResponse } from 'axios';
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2023-08-16 10:28:20 +00:00
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import { IGeodesic } from '../../domain/interfaces/geodesic.interface';
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2023-05-11 15:47:55 +00:00
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import { GeorouterSettings } from '../../domain/types/georouter-settings.type';
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import { Path } from '../../domain/types/path.type';
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import { NamedRoute } from '../../domain/types/named-route';
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import { GeographyException } from '../../exceptions/geography.exception';
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import { ExceptionCode } from '../../../utils/exception-code.enum';
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2023-05-11 15:47:55 +00:00
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import { Route } from '../../domain/entities/route';
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import { SpacetimePoint } from '../../domain/entities/spacetime-point';
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@Injectable()
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export class GraphhopperGeorouter implements IGeorouter {
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private url: string;
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private urlArgs: string[];
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private withTime: boolean;
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private withPoints: boolean;
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private withDistance: boolean;
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private paths: Path[];
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private httpService: HttpService;
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private geodesic: IGeodesic;
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constructor(url: string, httpService: HttpService, geodesic: IGeodesic) {
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this.url = url + '/route?';
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this.httpService = httpService;
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this.geodesic = geodesic;
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}
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route = async (
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paths: Path[],
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settings: GeorouterSettings,
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): Promise<NamedRoute[]> => {
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this.setDefaultUrlArgs();
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this.setWithTime(settings.withTime);
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this.setWithPoints(settings.withPoints);
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this.setWithDistance(settings.withDistance);
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this.paths = paths;
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return await this.getRoutes();
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};
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private setDefaultUrlArgs = (): void => {
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this.urlArgs = ['vehicle=car', 'weighting=fastest', 'points_encoded=false'];
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};
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private setWithTime = (withTime: boolean): void => {
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this.withTime = withTime;
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if (withTime) {
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this.urlArgs.push('details=time');
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}
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};
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private setWithPoints = (withPoints: boolean): void => {
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this.withPoints = withPoints;
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if (!withPoints) {
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this.urlArgs.push('calc_points=false');
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}
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};
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private setWithDistance = (withDistance: boolean): void => {
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this.withDistance = withDistance;
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if (withDistance) {
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this.urlArgs.push('instructions=true');
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} else {
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this.urlArgs.push('instructions=false');
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}
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};
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private getRoutes = async (): Promise<NamedRoute[]> => {
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const routes = Promise.all(
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this.paths.map(async (path) => {
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const url: string = [
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this.getUrl(),
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'&point=',
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path.points
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.map((point) => [point.lat, point.lon].join('%2C'))
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.join('&point='),
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].join('');
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const route = await lastValueFrom(
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this.httpService.get(url).pipe(
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map((res) => (res.data ? this.createRoute(res) : undefined)),
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catchError((error: AxiosError) => {
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if (error.code == AxiosError.ERR_BAD_REQUEST) {
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throw new GeographyException(
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ExceptionCode.OUT_OF_RANGE,
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'No route found for given coordinates',
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);
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}
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throw new GeographyException(
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ExceptionCode.UNAVAILABLE,
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'Georouter unavailable : ' + error.message,
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);
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}),
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),
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);
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return <NamedRoute>{
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key: path.key,
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route,
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};
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}),
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);
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return routes;
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};
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private getUrl = (): string => {
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return [this.url, this.urlArgs.join('&')].join('');
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};
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private createRoute = (
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response: AxiosResponse<GraphhopperResponse>,
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): Route => {
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const route = new Route(this.geodesic);
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if (response.data.paths && response.data.paths[0]) {
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const shortestPath = response.data.paths[0];
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route.distance = shortestPath.distance ?? 0;
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route.duration = shortestPath.time ? shortestPath.time / 1000 : 0;
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if (shortestPath.points && shortestPath.points.coordinates) {
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route.setPoints(
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shortestPath.points.coordinates.map((coordinate) => ({
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lon: coordinate[0],
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lat: coordinate[1],
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})),
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);
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if (
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shortestPath.details &&
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shortestPath.details.time &&
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shortestPath.snapped_waypoints &&
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shortestPath.snapped_waypoints.coordinates
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) {
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let instructions: GraphhopperInstruction[] = [];
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if (shortestPath.instructions)
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instructions = shortestPath.instructions;
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route.setSpacetimePoints(
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this.generateSpacetimePoints(
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shortestPath.points.coordinates,
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shortestPath.snapped_waypoints.coordinates,
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shortestPath.details.time,
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instructions,
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),
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);
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}
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}
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}
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return route;
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};
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private generateSpacetimePoints = (
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points: Array<number[]>,
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snappedWaypoints: Array<number[]>,
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durations: Array<number[]>,
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instructions: GraphhopperInstruction[],
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): SpacetimePoint[] => {
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const indices = this.getIndices(points, snappedWaypoints);
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const times = this.getTimes(durations, indices);
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const distances = this.getDistances(instructions, indices);
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return indices.map(
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(index) =>
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new SpacetimePoint(
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{ lon: points[index][1], lat: points[index][0] },
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times.find((time) => time.index == index)?.duration,
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distances.find((distance) => distance.index == index)?.distance,
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),
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);
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};
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private getIndices = (
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points: Array<number[]>,
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snappedWaypoints: Array<number[]>,
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): number[] => {
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const indices = snappedWaypoints.map((waypoint) =>
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points.findIndex(
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(point) => point[0] == waypoint[0] && point[1] == waypoint[1],
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),
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);
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if (indices.find((index) => index == -1) === undefined) return indices;
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const missedWaypoints = indices
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.map(
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(value, index) =>
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<
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{
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index: number;
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originIndex: number;
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waypoint: number[];
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nearest: number;
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distance: number;
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}
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>{
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index: value,
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originIndex: index,
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waypoint: snappedWaypoints[index],
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nearest: undefined,
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distance: 999999999,
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},
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)
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.filter((element) => element.index == -1);
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for (const index in points) {
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for (const missedWaypoint of missedWaypoints) {
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const inverse = this.geodesic.inverse(
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missedWaypoint.waypoint[0],
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missedWaypoint.waypoint[1],
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points[index][0],
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points[index][1],
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);
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if (inverse.distance < missedWaypoint.distance) {
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missedWaypoint.distance = inverse.distance;
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missedWaypoint.nearest = parseInt(index);
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}
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}
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}
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for (const missedWaypoint of missedWaypoints) {
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indices[missedWaypoint.originIndex] = missedWaypoint.nearest;
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}
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return indices;
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};
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private getTimes = (
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durations: Array<number[]>,
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indices: number[],
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): Array<{ index: number; duration: number }> => {
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const times: Array<{ index: number; duration: number }> = [];
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let duration = 0;
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for (const [origin, destination, stepDuration] of durations) {
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let indexFound = false;
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const indexAsOrigin = indices.find((index) => index == origin);
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if (
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indexAsOrigin !== undefined &&
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times.find((time) => origin == time.index) == undefined
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) {
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times.push({
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index: indexAsOrigin,
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duration: Math.round(stepDuration / 1000),
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});
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indexFound = true;
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}
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if (!indexFound) {
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const indexAsDestination = indices.find(
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(index) => index == destination,
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);
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if (
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indexAsDestination !== undefined &&
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times.find((time) => destination == time.index) == undefined
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) {
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times.push({
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index: indexAsDestination,
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duration: Math.round((duration + stepDuration) / 1000),
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});
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indexFound = true;
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}
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}
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if (!indexFound) {
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const indexInBetween = indices.find(
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(index) => origin < index && index < destination,
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);
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if (indexInBetween !== undefined) {
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times.push({
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index: indexInBetween,
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duration: Math.round((duration + stepDuration / 2) / 1000),
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});
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}
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}
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duration += stepDuration;
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}
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return times;
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};
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private getDistances = (
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instructions: GraphhopperInstruction[],
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indices: number[],
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): Array<{ index: number; distance: number }> => {
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let distance = 0;
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const distances: Array<{ index: number; distance: number }> = [
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{
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index: 0,
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distance,
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},
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];
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for (const instruction of instructions) {
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distance += instruction.distance;
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if (
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(instruction.sign == GraphhopperSign.SIGN_WAYPOINT ||
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instruction.sign == GraphhopperSign.SIGN_FINISH) &&
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indices.find((index) => index == instruction.interval[0]) !== undefined
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) {
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distances.push({
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index: instruction.interval[0],
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distance: Math.round(distance),
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});
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}
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}
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return distances;
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};
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}
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type GraphhopperResponse = {
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paths: [
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{
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distance: number;
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weight: number;
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time: number;
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points_encoded: boolean;
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bbox: number[];
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points: GraphhopperCoordinates;
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snapped_waypoints: GraphhopperCoordinates;
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details: {
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time: Array<number[]>;
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};
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instructions: GraphhopperInstruction[];
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},
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];
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};
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type GraphhopperCoordinates = {
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coordinates: Array<number[]>;
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};
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type GraphhopperInstruction = {
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distance: number;
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heading: number;
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sign: GraphhopperSign;
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interval: number[];
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text: string;
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};
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enum GraphhopperSign {
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SIGN_START = 0,
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SIGN_FINISH = 4,
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SIGN_WAYPOINT = 5,
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}
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