Files
gpx.studio/website/src/lib/engine.ts
T
2026-10-04 08:21:39 +02:00

281 lines
9.5 KiB
TypeScript

import { browser } from '$app/environment';
import { get, writable, type Readable, type Writable } from 'svelte/store';
import type { Feature, FeatureCollection, LineString, Point } from 'geojson';
import type { FileStatistics, FileStructure, Selection } from 'gpx-rs';
export type {
FileStatistics,
FileStructure,
FilesUpdate,
Selection,
TrackNode,
SegmentNode,
WaypointNode,
} from 'gpx-rs';
type Wasm = typeof import('gpx-rs');
export type SegmentProperties = {
fileId: string;
trackId: string;
segmentId: string;
trackIndex: number;
segmentIndex: number;
/** Changes when the trackpoints of the segment change. */
rev: string;
};
export type WaypointProperties = {
fileId: string;
waypointId: string;
index: number;
name?: string;
};
/** Everything the UI knows about one file. */
export type FileState = {
structure: FileStructure;
/** Global statistics of the file. */
statistics: FileStatistics;
/** One LineString feature per track segment, in file order. */
segments: FeatureCollection<LineString, SegmentProperties>;
/** One Point feature per waypoint, in file order. */
waypoints: FeatureCollection<Point, WaypointProperties>;
};
const EMPTY_STATISTICS: FileStatistics = { totalDistance: 0, elevationGain: 0, elevationLoss: 0 };
function toPositions(flat: Float64Array): [number, number][] {
const positions: [number, number][] = new Array(flat.length / 2);
for (let i = 0; i < positions.length; i++) {
positions[i] = [flat[2 * i], flat[2 * i + 1]];
}
return positions;
}
/** Hyphenated UUID strings (as found in the file structures) to the concatenated 16-byte form. */
function idsToBytes(ids: string[]): Uint8Array {
const bytes = new Uint8Array(ids.length * 16);
ids.forEach((id, i) => {
const hex = id.replaceAll('-', '');
for (let j = 0; j < 16; j++) {
bytes[i * 16 + j] = parseInt(hex.slice(2 * j, 2 * j + 2), 16);
}
});
return bytes;
}
/**
* Thin wrapper around the WASM engine.
*
* The engine owns the files; this class mirrors what the UI needs in stores. After each action,
* only what the engine reports as changed is read again: the order of the files, and the state
* of the files that were added or modified. Within a modified file, the GeoJSON features of the
* segments and waypoints that did not change are reused.
*/
class Engine {
private wasm: Wasm | null = null;
/** Resolves once the engine can be used (never on the server). */
readonly ready: Promise<void>;
private _order = writable<string[]>([]);
private _files = writable<Map<string, Writable<FileState>>>(new Map());
private _selection = writable<Selection>({ type: 'empty' });
/** Ids of the files in display order. */
readonly order: Readable<string[]> = { subscribe: this._order.subscribe };
/** What is currently selected. */
readonly selection: Readable<Selection> = { subscribe: this._selection.subscribe };
/**
* The state of each file, in its own store. The map store only notifies when files are added
* or removed; editing a file only notifies the subscribers of that file's store.
*/
readonly files: Readable<Map<string, Readable<FileState>>> = {
subscribe: this._files.subscribe,
};
constructor() {
this.ready = browser
? import('gpx-rs').then((wasm) => {
wasm.start();
this.wasm = wasm;
})
: new Promise(() => {});
}
// Actions. Each one resolves to whether the engine changed something.
newFile(name: string) {
return this.run((w) => w.new_file(name));
}
loadFile(data: Uint8Array) {
return this.run((w) => w.load_file(data));
}
duplicate() {
return this.run((w) => w.duplicate());
}
delete() {
return this.run((w) => w._delete());
}
deleteAll() {
return this.run((w) => w.delete_all());
}
undo() {
return this.run((w) => w.undo());
}
redo() {
return this.run((w) => w.redo());
}
select(fileIds: string[]) {
return this.run((w) => w.select(idsToBytes(fileIds)));
}
addSelect(fileIds: string[]) {
return this.run((w) => w.add_select(idsToBytes(fileIds)));
}
selectAll() {
return this.run((w) => w.select_all());
}
/** Moves the files, in the given order, to `index` among the other files. */
reorder(fileIds: string[], index: number) {
return this.run((w) => w.reorder(idsToBytes(fileIds), index));
}
// Coordinates, as flat [lng, lat, ...] arrays. They are copied out of the WASM memory.
// Refetch them when the `rev` of the segment (or the `waypointsRev` of the file) changed.
segmentCoordinates(segmentId: string): Float64Array {
return this.wasm?.segment_coordinates(segmentId).slice() ?? new Float64Array();
}
waypointCoordinates(fileId: string): Float64Array {
return this.wasm?.waypoint_coordinates(fileId).slice() ?? new Float64Array();
}
private async run(action: (wasm: Wasm) => boolean): Promise<boolean> {
await this.ready;
const wasm = this.wasm!;
const changed = action(wasm);
this.sync(wasm);
return changed;
}
/** Reads what the last action changed. */
private sync(wasm: Wasm) {
const update = wasm.last_update();
if (update.selectionChanged) {
this._selection.set(wasm.selection());
}
if (update.orderChanged) {
this._order.set(wasm.file_order());
}
const added: [string, FileState][] = [];
for (const id of update.added) {
const state = this.readFile(wasm, id);
if (state) {
added.push([id, state]);
}
}
if (added.length > 0 || update.removed.length > 0) {
this._files.update((files) => {
const next = new Map(files);
update.removed.forEach((id) => next.delete(id));
added.forEach(([id, state]) => next.set(id, writable(state)));
return next;
});
}
if (update.modified.length > 0) {
const files = get(this._files);
for (const id of update.modified) {
const store = files.get(id);
const state = store && this.readFile(wasm, id, get(store));
if (store && state) {
store.set(state);
}
}
}
}
/** Reads the state of a file, reusing from `previous` what did not change. */
private readFile(wasm: Wasm, id: string, previous?: FileState): FileState | null {
const structure = wasm.file_structure(id);
if (!structure) {
return null;
}
const previousSegments = new Map(
previous?.segments.features.map((f) => [f.properties.segmentId, f]) ?? []
);
const segments: Feature<LineString, SegmentProperties>[] = [];
structure.tracks.forEach((track, trackIndex) => {
track.segments.forEach((segment, segmentIndex) => {
const old = previousSegments.get(segment.id);
const unchanged =
old?.properties.rev === segment.rev &&
old.properties.trackId === track.id &&
old.properties.trackIndex === trackIndex &&
old.properties.segmentIndex === segmentIndex;
segments.push(
unchanged
? old
: {
type: 'Feature',
geometry: {
type: 'LineString',
coordinates: toPositions(wasm.segment_coordinates(segment.id)),
},
properties: {
fileId: id,
trackId: track.id,
segmentId: segment.id,
trackIndex,
segmentIndex,
rev: segment.rev,
},
}
);
});
});
const previousStructure = previous?.structure;
const waypointsUnchanged =
previousStructure !== undefined &&
previousStructure.waypointsRev === structure.waypointsRev &&
previousStructure.waypoints.length === structure.waypoints.length &&
previousStructure.waypoints.every(
(w, i) =>
w.id === structure.waypoints[i].id && w.name === structure.waypoints[i].name
);
let waypoints = previous?.waypoints;
if (!waypoints || !waypointsUnchanged) {
const coordinates = toPositions(wasm.waypoint_coordinates(id));
waypoints = {
type: 'FeatureCollection',
features: structure.waypoints.map((waypoint, index) => ({
type: 'Feature',
geometry: { type: 'Point', coordinates: coordinates[index] },
properties: { fileId: id, waypointId: waypoint.id, index, name: waypoint.name },
})),
};
}
return {
structure,
statistics: wasm.file_statistics(id) ?? EMPTY_STATISTICS,
segments: { type: 'FeatureCollection', features: segments },
waypoints,
};
}
}
export const engine = new Engine();