f3d16d5187
Build pipeline (scripts/build-hikes.ts) parses per-hike GPX, encodes images via sharp, reverse-geocodes the centroid against Swisstopo and emits a typed manifest under src/lib/data/hikes.generated.ts (gitignored). Track JSON + image binaries live outside /static; served in dev by a small hike-images plugin in vite.config.ts, in prod by nginx (private/ images proxied through Node + X-Accel-Redirect for auth-gating). /hikes overview: full-bleed Swisstopo hero map (HikesOverviewMap) sits under the sticky nav, drawing one polyline per route coloured by SAC tier (T1 yellow Wegweiser, T2/T3 white-red-white, T4-T6 white-blue- white). Click navigates, hover thickens + tooltips. Layer toggle, recenter, GPS controls mirror the detail map (minus images toggle). Cards drop the trail SVG, gain a per-route icon + SAC marker pictogram on the cover, altitude range, season label, and "Neu" badge for recently-published hikes. Filter bar + totals strip recompute over the currently-visible set. /hikes/[slug]: hero map with elevation profile, photo strip with map sync, scroll-position pin, GPX download, SAC marker stats + min/max altitude + season. Route-builder (/hikes/route-builder): client-side draft persisted to localStorage, EXIF-driven image placement, snap-to-route via BRouter (OSRM + linear fallback) and Swisstopo profile.json elevation enrichment that handles degenerate same-coord segments via the height endpoint. Filter init switched from a script-time snapshot of data.hikes (which sporadically returned a one-hike subset during dev hydration and locked the page to that single hike) to a post-mount \$effect. Content under src/content/hikes/ intentionally not included (WIP).
847 lines
30 KiB
TypeScript
847 lines
30 KiB
TypeScript
/**
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* Build script for the /hikes route.
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*
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* For each directory under `src/content/hikes/<slug>/`:
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* 1. Parse `index.svx` frontmatter (lightweight in-house parser, schema is small).
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* 2. Parse `track.gpx` and derive distance / elevation gain / loss / bbox /
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* centroid / duration / preview polyline.
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* 3. Reverse-geocode the centroid via Swisstopo (cached on disk).
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* 4. Process every image in `images/` with sharp into AVIF + WebP at 3 widths
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* and emit srcset strings. Only encode images whose hash is referenced
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* and collect them as `imagePoints` for on-map markers.
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* 5. Write `static/hikes/<slug>/track.<hash>.json` (compact tuple format).
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* Emits `src/lib/data/hikes.generated.ts` containing the typed manifest used
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* by the `/hikes` overview page.
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*/
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import { promises as fs } from 'node:fs';
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import path from 'node:path';
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import crypto from 'node:crypto';
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import os from 'node:os';
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import sharp from 'sharp';
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import {
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parseGpx,
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parseGpxImageRefs,
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trackDistance,
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type GpxImageRef,
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type GpxPoint
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} from '../src/lib/server/gpx.js';
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import { simplifyTrack } from '../src/lib/server/simplifyTrack.js';
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import type {
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Difficulty,
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HikeManifestEntry,
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ImagePoint,
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ImageVariant
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} from '../src/types/hikes.js';
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// ---------------------------------------------------------------------------
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// Constants
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// ---------------------------------------------------------------------------
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const ROOT = path.resolve(process.cwd());
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const CONTENT_DIR = path.join(ROOT, 'src', 'content', 'hikes');
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// Track JSON stays under /static — it's public preview data and SvelteKit
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// serves it directly with the rest of the site. URL: /hikes/<slug>/track.*.json
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const STATIC_DIR = path.join(ROOT, 'static', 'hikes');
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// Image binaries live outside /static so they aren't bundled into the Node
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// build or served by SvelteKit. The deploy step rsyncs this tree to
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// /var/www/static/hikes/ on the server, where nginx serves public images
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// directly and gates `/private/` images through Node + X-Accel-Redirect.
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const HIKES_ASSETS_DIR = path.join(ROOT, 'hikes-assets');
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const CACHE_DIR = path.join(ROOT, 'scripts', '.cache');
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const GEOCODE_CACHE_FILE = path.join(CACHE_DIR, 'hikes-geocode.json');
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const MANIFEST_OUT = path.join(ROOT, 'src', 'lib', 'data', 'hikes.generated.ts');
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const ELEV_SMOOTH_WINDOW = 5; // moving-average window for altitude denoising
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const ELEV_MIN_STEP_M = 3; // discard altitude deltas below this
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const PREVIEW_POLYLINE_MAX_POINTS = 30;
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const IMAGE_WIDTHS = [480, 960, 1600] as const;
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const IMAGE_THUMBNAIL_WIDTH = 240; // popup thumbnail for map markers
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const MANIFEST_WARN_BYTES = 200_000;
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const VALID_DIFFICULTIES: readonly Difficulty[] = ['T1', 'T2', 'T3', 'T4', 'T5', 'T6'];
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// Sharp pipelines are CPU-heavy but release the JS thread while libvips runs,
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// so a small concurrency pool gives a near-linear speed-up. Cap at 4 to avoid
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// thrashing on smaller boxes (a single AVIF encode can saturate one core).
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const IMAGE_CONCURRENCY = Math.max(2, Math.min(os.cpus().length, 4));
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async function pathExists(p: string): Promise<boolean> {
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try {
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await fs.access(p);
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return true;
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} catch {
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return false;
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}
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}
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async function runWithConcurrency<T, R>(
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items: readonly T[],
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limit: number,
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worker: (item: T, index: number) => Promise<R>
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): Promise<R[]> {
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const results = new Array<R>(items.length);
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let next = 0;
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const runners = Array.from({ length: Math.min(limit, items.length) }, async () => {
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while (true) {
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const i = next++;
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if (i >= items.length) return;
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results[i] = await worker(items[i], i);
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}
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});
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await Promise.all(runners);
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return results;
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}
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// ---------------------------------------------------------------------------
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// Tiny frontmatter parser (no deps).
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// Supports: strings, numbers, booleans, ISO dates (kept as string),
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// and bracketed arrays of strings: `[a, b, "c d"]`.
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// ---------------------------------------------------------------------------
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type Frontmatter = Record<string, string | number | boolean | string[]>;
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function parseFrontmatter(source: string): { data: Frontmatter; body: string } {
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const match = source.match(/^---\r?\n([\s\S]*?)\r?\n---\r?\n?([\s\S]*)$/);
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if (!match) return { data: {}, body: source };
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const data: Frontmatter = {};
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for (const rawLine of match[1].split(/\r?\n/)) {
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const line = rawLine.replace(/\s+#.*$/, '').trim();
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if (!line || line.startsWith('#')) continue;
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const sep = line.indexOf(':');
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if (sep < 0) continue;
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const key = line.slice(0, sep).trim();
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const raw = line.slice(sep + 1).trim();
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data[key] = parseScalar(raw);
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}
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return { data, body: match[2] };
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}
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function parseScalar(raw: string): string | number | boolean | string[] {
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if (raw === '') return '';
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if (raw === 'true') return true;
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if (raw === 'false') return false;
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if (raw.startsWith('[') && raw.endsWith(']')) {
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return raw
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.slice(1, -1)
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.split(',')
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.map(s => stripQuotes(s.trim()))
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.filter(s => s.length > 0);
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}
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if (/^-?\d+(\.\d+)?$/.test(raw)) return parseFloat(raw);
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return stripQuotes(raw);
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}
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function stripQuotes(s: string): string {
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if ((s.startsWith('"') && s.endsWith('"')) || (s.startsWith("'") && s.endsWith("'"))) {
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return s.slice(1, -1);
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}
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return s;
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}
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/** Parse a `seasons` frontmatter value into `{ seasonStart, seasonEnd }`.
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* Accepts:
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* - a numeric range string `"4-9"` (April through September)
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* - a 3-letter / full English month range `"apr-sep"` or `"april-september"`
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* - an array of two numbers `[4, 9]`
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* Returns `{ seasonStart: null, seasonEnd: null }` when absent or malformed. */
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function parseSeasonRange(raw: unknown): { seasonStart: number | null; seasonEnd: number | null } {
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const empty = { seasonStart: null, seasonEnd: null };
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if (raw == null || raw === '') return empty;
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const MONTHS: Record<string, number> = {
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jan: 1, january: 1, feb: 2, february: 2, mar: 3, march: 3,
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apr: 4, april: 4, may: 5, jun: 6, june: 6, jul: 7, july: 7,
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aug: 8, august: 8, sep: 9, september: 9, sept: 9, oct: 10, october: 10,
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nov: 11, november: 11, dec: 12, december: 12
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};
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const toMonth = (v: string | number): number | null => {
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if (typeof v === 'number') return v >= 1 && v <= 12 ? v : null;
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const s = String(v).trim().toLowerCase();
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if (/^\d+$/.test(s)) {
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const n = parseInt(s, 10);
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return n >= 1 && n <= 12 ? n : null;
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}
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return MONTHS[s] ?? null;
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};
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let parts: Array<string | number> | null = null;
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if (Array.isArray(raw) && raw.length === 2) {
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parts = raw as Array<string | number>;
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} else if (typeof raw === 'string' && raw.includes('-')) {
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parts = raw.split('-').map((s) => s.trim());
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}
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if (!parts) return empty;
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const a = toMonth(parts[0]);
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const b = toMonth(parts[1]);
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if (a == null || b == null) return empty;
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return { seasonStart: a, seasonEnd: b };
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}
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// ---------------------------------------------------------------------------
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// Elevation helpers
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// ---------------------------------------------------------------------------
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// Returns `null` for indices where no defined altitude exists in the ±half
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// window. The previous behaviour (defaulting to 0) silently turned missing
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// `<ele>` tags into huge synthetic gain spikes against the next real altitude.
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function smoothAltitudes(track: GpxPoint[]): (number | null)[] {
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const n = track.length;
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const out = new Array<number | null>(n);
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const half = Math.floor(ELEV_SMOOTH_WINDOW / 2);
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for (let i = 0; i < n; i++) {
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let sum = 0;
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let count = 0;
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for (let j = Math.max(0, i - half); j <= Math.min(n - 1, i + half); j++) {
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const a = track[j].altitude;
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if (typeof a === 'number') {
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sum += a;
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count++;
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}
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}
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out[i] = count > 0 ? sum / count : null;
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}
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return out;
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}
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function computeElevationStats(track: GpxPoint[]): { gain: number; loss: number } {
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if (track.length < 2) return { gain: 0, loss: 0 };
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const altitudes = smoothAltitudes(track);
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let gain = 0;
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let loss = 0;
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let prev: number | null = null;
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for (const a of altitudes) {
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if (a === null) continue;
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if (prev === null) {
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prev = a;
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continue;
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}
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const diff = a - prev;
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if (diff >= ELEV_MIN_STEP_M) {
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gain += diff;
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prev = a;
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} else if (diff <= -ELEV_MIN_STEP_M) {
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loss += -diff;
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prev = a;
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}
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}
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return { gain: Math.round(gain), loss: Math.round(loss) };
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}
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function computeElevationRange(track: GpxPoint[]): { min: number | null; max: number | null } {
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let min = Infinity;
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let max = -Infinity;
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for (const p of track) {
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if (typeof p.altitude !== 'number') continue;
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if (p.altitude < min) min = p.altitude;
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if (p.altitude > max) max = p.altitude;
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}
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if (!Number.isFinite(min) || !Number.isFinite(max)) return { min: null, max: null };
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return { min: Math.round(min), max: Math.round(max) };
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}
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function computeBboxAndCentroid(track: GpxPoint[]): {
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bbox: [number, number, number, number];
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centroid: [number, number];
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} {
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let minLat = Infinity, maxLat = -Infinity, minLng = Infinity, maxLng = -Infinity;
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let sumLat = 0, sumLng = 0;
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for (const p of track) {
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if (p.lat < minLat) minLat = p.lat;
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if (p.lat > maxLat) maxLat = p.lat;
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if (p.lng < minLng) minLng = p.lng;
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if (p.lng > maxLng) maxLng = p.lng;
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sumLat += p.lat;
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sumLng += p.lng;
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}
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const n = track.length || 1;
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return {
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bbox: [minLat, minLng, maxLat, maxLng],
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centroid: [sumLat / n, sumLng / n]
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};
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}
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// ---------------------------------------------------------------------------
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// Swisstopo reverse-geocode with disk cache
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// ---------------------------------------------------------------------------
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type GeocodeResult = {
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canton: string | null;
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municipality: string | null;
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region: string | null;
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};
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type GeocodeCache = Record<string, GeocodeResult>;
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async function loadGeocodeCache(): Promise<GeocodeCache> {
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try {
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const raw = await fs.readFile(GEOCODE_CACHE_FILE, 'utf-8');
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return JSON.parse(raw);
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} catch {
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return {};
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}
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}
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async function saveGeocodeCache(cache: GeocodeCache): Promise<void> {
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await fs.mkdir(CACHE_DIR, { recursive: true });
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await fs.writeFile(GEOCODE_CACHE_FILE, JSON.stringify(cache, null, 2));
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}
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const SWISSTOPO_UA = 'bocken-homepage build-hikes';
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async function fetchFeatureName(layerBodId: string, featureId: number | string): Promise<string | null> {
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const url = `https://api3.geo.admin.ch/rest/services/api/MapServer/${layerBodId}/${featureId}/htmlPopup?lang=de`;
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try {
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const res = await fetch(url, { headers: { 'User-Agent': SWISSTOPO_UA } });
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if (!res.ok) return null;
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const html = await res.text();
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// htmlPopup label is "Name" for cantons and "Amtlicher Gemeindename" for municipalities.
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const m =
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html.match(/<td[^>]*>(?:Amtlicher\s+Gemeindename|Name)<\/td>\s*<td[^>]*>([^<]+)<\/td>/i);
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return m ? m[1].trim() : null;
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} catch {
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return null;
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}
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}
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async function reverseGeocode(
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lat: number,
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lng: number,
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cache: GeocodeCache
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): Promise<GeocodeResult> {
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const key = `${lat.toFixed(5)},${lng.toFixed(5)}`;
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if (cache[key]) return cache[key];
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const layers =
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'all:ch.swisstopo.swissboundaries3d-kanton-flaeche.fill,' +
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'ch.swisstopo.swissboundaries3d-gemeinde-flaeche.fill';
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// Tight 1000x1000 imageDisplay over a 0.0002 deg mapExtent with 1px tolerance
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// gives ~2 cm of effective tolerance around the centroid — enough to land in
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// the correct kanton/gemeinde without picking up neighbours.
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const eps = 0.0001;
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const url =
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`https://api3.geo.admin.ch/rest/services/api/MapServer/identify` +
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`?geometry=${lng},${lat}` +
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`&geometryType=esriGeometryPoint&geometryFormat=geojson&returnGeometry=false` +
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`&imageDisplay=1000,1000,96` +
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`&mapExtent=${lng - eps},${lat - eps},${lng + eps},${lat + eps}` +
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`&tolerance=1&layers=${layers}&sr=4326`;
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const result: GeocodeResult = { canton: null, municipality: null, region: null };
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try {
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const res = await fetch(url, { headers: { 'User-Agent': SWISSTOPO_UA } });
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if (res.ok) {
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type IdentifyRow = { layerBodId?: string; layerName?: string; featureId?: number | string; id?: number | string };
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const json = (await res.json()) as { results?: IdentifyRow[] };
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// Identify returns historical boundary records too, so we only need the
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// first hit per layer.
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for (const r of json.results ?? []) {
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const layerBodId = r.layerBodId;
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const featureId = r.featureId ?? r.id;
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if (!layerBodId || featureId === undefined) continue;
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if (layerBodId.includes('kanton') && result.canton) continue;
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if (layerBodId.includes('gemeinde') && result.municipality) continue;
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const name = await fetchFeatureName(layerBodId, featureId);
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if (!name) continue;
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if (layerBodId.includes('kanton')) result.canton = name;
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else if (layerBodId.includes('gemeinde')) result.municipality = name;
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}
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result.region = result.municipality ?? result.canton;
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} else {
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console.warn(`[build-hikes] Swisstopo identify failed (${res.status}) for ${key}`);
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}
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} catch (err) {
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console.warn(`[build-hikes] Swisstopo identify error for ${key}:`, err);
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}
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cache[key] = result;
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return result;
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}
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// ---------------------------------------------------------------------------
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// Image processing (sharp -> AVIF + WebP at multiple widths)
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// ---------------------------------------------------------------------------
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function shortHashOfBuffer(buf: Buffer): string {
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return crypto.createHash('sha256').update(buf).digest('hex').slice(0, 8);
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}
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async function processImage(
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srcPath: string,
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slug: string,
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alt: string,
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gpxImageRefs: Record<string, GpxImageRef>
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): Promise<
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| { variant: ImageVariant; thumbnailRelUrl: string; largestRelUrl: string; hash: string; visibility: 'public' | 'private'; cached: boolean; outNames: string[] }
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| { skipped: true; hash: string }
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> {
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const buffer = await fs.readFile(srcPath);
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const hash = shortHashOfBuffer(buffer);
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const ref = gpxImageRefs[hash];
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if (!ref) {
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// Not referenced by any waypoint in track.gpx — drop it entirely (no
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// encode, no manifest entry, no static output). Authors who want an
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// image published must place it on the route via the route-builder
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// (which writes a `<bocken:image hash>` waypoint into track.gpx).
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return { skipped: true, hash };
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}
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const visibility: 'public' | 'private' = ref.visibility === 'private' ? 'private' : 'public';
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// Public images go under `images/` (served directly by nginx).
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// Private images go under `private/` (proxied through Node for auth check;
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// nginx hands them off via X-Accel-Redirect once the session is valid).
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const segment = visibility === 'private' ? 'private' : 'images';
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// Filenames are content-hash only — the source basename (which usually
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// encodes a date + camera ID) is intentionally dropped so it doesn't leak
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// into the published URLs.
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const outDir = path.join(HIKES_ASSETS_DIR, slug, segment);
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await fs.mkdir(outDir, { recursive: true });
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const meta = await sharp(buffer).metadata();
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const intrinsicW = meta.width ?? IMAGE_WIDTHS[IMAGE_WIDTHS.length - 1];
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const intrinsicH = meta.height ?? 0;
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const widths = IMAGE_WIDTHS.filter(w => w <= intrinsicW);
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if (widths.length === 0) widths.push(intrinsicW);
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type EncodeJob = {
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w: number;
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format: 'avif' | 'webp';
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filePath: string;
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quality: number;
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};
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const jobs: EncodeJob[] = [];
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const avifEntries: string[] = [];
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const webpEntries: string[] = [];
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let largestWebp = '';
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|
||
for (const w of widths) {
|
||
const avifName = `${hash}.${w}.avif`;
|
||
const webpName = `${hash}.${w}.webp`;
|
||
jobs.push({ w, format: 'avif', filePath: path.join(outDir, avifName), quality: 55 });
|
||
jobs.push({ w, format: 'webp', filePath: path.join(outDir, webpName), quality: 82 });
|
||
const avifUrl = `/hikes/${slug}/${segment}/${avifName}`;
|
||
const webpUrl = `/hikes/${slug}/${segment}/${webpName}`;
|
||
avifEntries.push(`${avifUrl} ${w}w`);
|
||
webpEntries.push(`${webpUrl} ${w}w`);
|
||
largestWebp = webpUrl;
|
||
}
|
||
|
||
const thumbName = `${hash}.${IMAGE_THUMBNAIL_WIDTH}.webp`;
|
||
const thumbPath = path.join(outDir, thumbName);
|
||
const thumbUrl = `/hikes/${slug}/${segment}/${thumbName}`;
|
||
const thumbJob: EncodeJob = {
|
||
w: IMAGE_THUMBNAIL_WIDTH,
|
||
format: 'webp',
|
||
filePath: thumbPath,
|
||
quality: 78
|
||
};
|
||
|
||
// Filter out jobs whose output already exists — the hash is in the filename,
|
||
// so an existing file is guaranteed to be the same encoded bytes.
|
||
const allJobs = [...jobs, thumbJob];
|
||
const presence = await Promise.all(allJobs.map(j => pathExists(j.filePath)));
|
||
const pending = allJobs.filter((_, i) => !presence[i]);
|
||
const cached = pending.length === 0;
|
||
|
||
await Promise.all(
|
||
pending.map(async (job) => {
|
||
const pipeline = sharp(buffer).rotate().resize({ width: job.w, withoutEnlargement: true });
|
||
if (job.format === 'avif') {
|
||
await pipeline.avif({ quality: job.quality }).toFile(job.filePath);
|
||
} else {
|
||
await pipeline.webp({ quality: job.quality }).toFile(job.filePath);
|
||
}
|
||
})
|
||
);
|
||
|
||
const largestW = widths[widths.length - 1];
|
||
const scale = largestW / intrinsicW;
|
||
const largestH = Math.round((intrinsicH || largestW) * scale);
|
||
|
||
// Names of every output file this image owns — used by the per-hike
|
||
// cleanup pass to drop orphaned encodes from previous builds.
|
||
const outNames = allJobs.map((j) => path.basename(j.filePath));
|
||
|
||
return {
|
||
variant: {
|
||
src: largestWebp,
|
||
srcsetAvif: avifEntries.join(', '),
|
||
srcsetWebp: webpEntries.join(', '),
|
||
width: largestW,
|
||
height: largestH,
|
||
alt
|
||
},
|
||
thumbnailRelUrl: thumbUrl,
|
||
largestRelUrl: largestWebp,
|
||
hash,
|
||
visibility,
|
||
cached,
|
||
outNames
|
||
};
|
||
}
|
||
|
||
// ---------------------------------------------------------------------------
|
||
// Per-hike icon (icon.svg / icon.png / icon.jpg / icon.jpeg / icon.webp).
|
||
// SVG passes through verbatim; raster sources are re-encoded to a single
|
||
// 256-square WebP so /hikes/<slug>/ stays small. Filenames carry the
|
||
// source content hash so the URL changes when the icon does, side-stepping
|
||
// CDN cache concerns.
|
||
// ---------------------------------------------------------------------------
|
||
|
||
const ICON_SOURCES: ReadonlyArray<{ filename: string; isSvg: boolean }> = [
|
||
{ filename: 'icon.svg', isSvg: true },
|
||
{ filename: 'icon.png', isSvg: false },
|
||
{ filename: 'icon.jpg', isSvg: false },
|
||
{ filename: 'icon.jpeg', isSvg: false },
|
||
{ filename: 'icon.webp', isSvg: false }
|
||
];
|
||
|
||
const ICON_RASTER_SIZE = 256;
|
||
|
||
async function processIcon(slug: string, hikeDir: string): Promise<{ url: string; outName: string } | undefined> {
|
||
let srcPath: string | undefined;
|
||
let isSvg = false;
|
||
for (const candidate of ICON_SOURCES) {
|
||
const p = path.join(hikeDir, candidate.filename);
|
||
if (await pathExists(p)) {
|
||
srcPath = p;
|
||
isSvg = candidate.isSvg;
|
||
break;
|
||
}
|
||
}
|
||
if (!srcPath) return undefined;
|
||
|
||
const buf = await fs.readFile(srcPath);
|
||
const hash = shortHashOfBuffer(buf);
|
||
const outExt = isSvg ? 'svg' : 'webp';
|
||
const outName = `icon.${hash}.${outExt}`;
|
||
// Icons live under the `images/` namespace (alongside encoded photos) so
|
||
// they piggy-back on the same dev-server plugin and nginx public-serve
|
||
// rules. The naming prefix `icon.` keeps them clearly distinct from
|
||
// hash-named photo outputs.
|
||
const outDir = path.join(HIKES_ASSETS_DIR, slug, 'images');
|
||
await fs.mkdir(outDir, { recursive: true });
|
||
const outPath = path.join(outDir, outName);
|
||
|
||
if (!(await pathExists(outPath))) {
|
||
if (isSvg) {
|
||
await fs.writeFile(outPath, buf);
|
||
} else {
|
||
await sharp(buf)
|
||
.rotate()
|
||
.resize({ width: ICON_RASTER_SIZE, height: ICON_RASTER_SIZE, fit: 'inside', withoutEnlargement: true })
|
||
.webp({ quality: 88 })
|
||
.toFile(outPath);
|
||
}
|
||
}
|
||
|
||
return { url: `/hikes/${slug}/images/${outName}`, outName };
|
||
}
|
||
|
||
// ---------------------------------------------------------------------------
|
||
// Image EXIF -> ImagePoint
|
||
// ---------------------------------------------------------------------------
|
||
|
||
function extractImagePoint(
|
||
processed: { thumbnailRelUrl: string; largestRelUrl: string; hash: string },
|
||
alt: string,
|
||
gpxImageRef: GpxImageRef
|
||
): ImagePoint {
|
||
// The GPX `<bocken:image hash>` waypoint is the single source of truth
|
||
// for an image's position. Authors place images on the route via the
|
||
// route-builder (or by hand in the GPX); EXIF GPS is no longer trusted
|
||
// as a fallback because phone GPS noise produced visible spikes and
|
||
// because users sometimes want to publish an image at a corrected
|
||
// location.
|
||
return {
|
||
src: processed.largestRelUrl,
|
||
thumbnail: processed.thumbnailRelUrl,
|
||
lat: gpxImageRef.lat,
|
||
lng: gpxImageRef.lng,
|
||
altitude: gpxImageRef.altitude,
|
||
timestamp: gpxImageRef.timestamp,
|
||
alt,
|
||
visibility: gpxImageRef.visibility ?? 'public'
|
||
};
|
||
}
|
||
|
||
// ---------------------------------------------------------------------------
|
||
// Per-hike build
|
||
// ---------------------------------------------------------------------------
|
||
|
||
async function buildHike(slug: string, cache: GeocodeCache): Promise<HikeManifestEntry | null> {
|
||
const hikeStart = Date.now();
|
||
const hikeDir = path.join(CONTENT_DIR, slug);
|
||
const svxPath = path.join(hikeDir, 'index.svx');
|
||
const gpxPath = path.join(hikeDir, 'track.gpx');
|
||
const imagesDir = path.join(hikeDir, 'images');
|
||
|
||
let svxSource: string;
|
||
try {
|
||
svxSource = await fs.readFile(svxPath, 'utf-8');
|
||
} catch {
|
||
console.warn(`[build-hikes] Skipping ${slug}: no index.svx`);
|
||
return null;
|
||
}
|
||
|
||
let gpxSource: string;
|
||
try {
|
||
gpxSource = await fs.readFile(gpxPath, 'utf-8');
|
||
} catch {
|
||
console.warn(`[build-hikes] Skipping ${slug}: no track.gpx`);
|
||
return null;
|
||
}
|
||
|
||
const { data: fm } = parseFrontmatter(svxSource);
|
||
const track = parseGpx(gpxSource);
|
||
if (track.length === 0) {
|
||
console.warn(`[build-hikes] Skipping ${slug}: empty GPX`);
|
||
return null;
|
||
}
|
||
const gpxImageRefs = parseGpxImageRefs(gpxSource);
|
||
const gpxImageCount = Object.keys(gpxImageRefs).length;
|
||
console.log(`[build-hikes:${slug}] parsed GPX (${track.length} track pts, ${gpxImageCount} image refs)`);
|
||
|
||
const distanceKm = trackDistance(track);
|
||
const { gain, loss } = computeElevationStats(track);
|
||
const { min: elevationMinM, max: elevationMaxM } = computeElevationRange(track);
|
||
const { bbox, centroid } = computeBboxAndCentroid(track);
|
||
const previewPolyline = simplifyTrack(track, PREVIEW_POLYLINE_MAX_POINTS) as [number, number][];
|
||
const dtMs = track[track.length - 1].timestamp - track[0].timestamp;
|
||
const durationMin = dtMs > 0 ? Math.round(dtMs / 60000) : null;
|
||
console.log(`[build-hikes:${slug}] metrics: ${distanceKm.toFixed(2)} km · ↑${gain}m / ↓${loss}m · ${elevationMinM ?? '?'}–${elevationMaxM ?? '?'}m · ${durationMin ?? '?'} min`);
|
||
|
||
const geoT0 = Date.now();
|
||
const geo = await reverseGeocode(centroid[0], centroid[1], cache);
|
||
console.log(`[build-hikes:${slug}] geocode: ${geo.municipality ?? '–'}, ${geo.canton ?? '–'} (${Date.now() - geoT0}ms)`);
|
||
|
||
// Process images
|
||
const imageFiles: string[] = [];
|
||
try {
|
||
const entries = await fs.readdir(imagesDir);
|
||
for (const e of entries.sort()) {
|
||
if (/\.(jpe?g|png|webp|heic|heif)$/i.test(e)) imageFiles.push(path.join(imagesDir, e));
|
||
}
|
||
} catch {
|
||
// no images dir is fine
|
||
}
|
||
// Images whose content hash isn't in gpxImageRefs are dropped before
|
||
// encoding (see processImage). Count for the log line below.
|
||
if (imageFiles.length > 0) {
|
||
console.log(
|
||
`[build-hikes:${slug}] processing ${imageFiles.length} image(s) — ${Object.keys(gpxImageRefs).length} referenced in track.gpx (concurrency=${IMAGE_CONCURRENCY})…`
|
||
);
|
||
}
|
||
|
||
let cover: ImageVariant | null = null;
|
||
const imagePoints: ImagePoint[] = [];
|
||
// Filenames produced by this build, keyed by segment dir (`images` /
|
||
// `private`). Used to delete leftover encoded files from previous runs
|
||
// (images that have since been unreferenced or moved between visibilities).
|
||
const keepFiles: Record<'images' | 'private', Set<string>> = {
|
||
images: new Set(),
|
||
private: new Set()
|
||
};
|
||
|
||
type ImageResult = {
|
||
variant: ImageVariant | null;
|
||
point: ImagePoint | null;
|
||
outNames: string[];
|
||
visibility: 'public' | 'private';
|
||
};
|
||
|
||
const results = await runWithConcurrency<string, ImageResult>(
|
||
imageFiles,
|
||
IMAGE_CONCURRENCY,
|
||
async (imgPath, i) => {
|
||
const imgT0 = Date.now();
|
||
// Hero alt only applies to the first image; later ones get a generic
|
||
// label (image basenames usually encode date/camera info that we don't
|
||
// want to leak into alt text or hover tooltips).
|
||
const alt = i === 0 && typeof fm.heroAlt === 'string'
|
||
? fm.heroAlt
|
||
: `Bild ${i + 1}`;
|
||
const processed = await processImage(imgPath, slug, alt, gpxImageRefs);
|
||
if ('skipped' in processed) {
|
||
console.log(
|
||
`[build-hikes:${slug}] [${i + 1}/${imageFiles.length}] ${path.basename(imgPath)} · ${processed.hash} · skipped (not in track.gpx)`
|
||
);
|
||
return { variant: null, point: null, outNames: [], visibility: 'public' as const };
|
||
}
|
||
const point = extractImagePoint(processed, alt, gpxImageRefs[processed.hash]);
|
||
const cacheTag = processed.cached ? ' · cached' : '';
|
||
console.log(
|
||
`[build-hikes:${slug}] [${i + 1}/${imageFiles.length}] ${path.basename(imgPath)} · ${processed.hash} · ${processed.visibility}${cacheTag} (${Date.now() - imgT0}ms)`
|
||
);
|
||
return {
|
||
variant: processed.variant,
|
||
point,
|
||
outNames: processed.outNames,
|
||
visibility: processed.visibility
|
||
};
|
||
}
|
||
);
|
||
|
||
for (const r of results) {
|
||
if (r.variant !== null) {
|
||
// Use the first PUBLIC image as the cover. Private images must not
|
||
// surface on the listing page (which is prerendered and served to
|
||
// anonymous viewers).
|
||
if (cover === null && r.visibility === 'public') cover = r.variant;
|
||
const segment = r.visibility === 'private' ? 'private' : 'images';
|
||
for (const name of r.outNames) keepFiles[segment].add(name);
|
||
}
|
||
if (r.point) imagePoints.push(r.point);
|
||
}
|
||
|
||
// Per-route icon — handled here (before cleanup) so its outName joins
|
||
// `keepFiles.images` and survives the orphan sweep, while previous-build
|
||
// `icon.<oldhash>.*` files (different hash, not in keepFiles) get removed.
|
||
const iconResult = await processIcon(slug, hikeDir);
|
||
if (iconResult) keepFiles.images.add(iconResult.outName);
|
||
|
||
// Cleanup pass: drop any encoded files in either segment dir that don't
|
||
// belong to a current image. Catches both stale hashes (deleted source
|
||
// images) and visibility flips (a hash that's now public still has its
|
||
// old `private/` encodes lying around, and vice versa).
|
||
for (const segment of ['images', 'private'] as const) {
|
||
const dir = path.join(HIKES_ASSETS_DIR, slug, segment);
|
||
try {
|
||
const existing = await fs.readdir(dir);
|
||
const keep = keepFiles[segment];
|
||
const orphans = existing.filter((f) => !keep.has(f));
|
||
if (orphans.length > 0) {
|
||
await Promise.all(
|
||
orphans.map((f) => fs.unlink(path.join(dir, f)).catch(() => {}))
|
||
);
|
||
console.log(
|
||
`[build-hikes:${slug}] removed ${orphans.length} orphaned ${segment}/ file(s) from prior builds`
|
||
);
|
||
}
|
||
} catch {
|
||
// Dir may not exist when a hike has no images of this visibility — nothing to clean.
|
||
}
|
||
}
|
||
|
||
if (!cover) {
|
||
// Synthetic 1x1 placeholder so the manifest type stays satisfied even
|
||
// when a hike directory has no images yet.
|
||
cover = {
|
||
src: '',
|
||
srcsetAvif: '',
|
||
srcsetWebp: '',
|
||
width: 0,
|
||
height: 0,
|
||
alt: ''
|
||
};
|
||
}
|
||
|
||
// Per-hike full track JSON in compact tuple format
|
||
const tuples = track.map(p => [
|
||
Number(p.lng.toFixed(6)),
|
||
Number(p.lat.toFixed(6)),
|
||
typeof p.altitude === 'number' ? Number(p.altitude.toFixed(1)) : null,
|
||
p.timestamp
|
||
]);
|
||
const trackJson = JSON.stringify(tuples);
|
||
const trackHash = crypto.createHash('sha256').update(trackJson).digest('hex').slice(0, 8);
|
||
const trackFile = path.join(STATIC_DIR, slug, `track.${trackHash}.json`);
|
||
await fs.mkdir(path.dirname(trackFile), { recursive: true });
|
||
await fs.writeFile(trackFile, trackJson);
|
||
console.log(`[build-hikes:${slug}] wrote track.${trackHash}.json (${trackJson.length} bytes)`);
|
||
|
||
const difficulty = (typeof fm.difficulty === 'string' && VALID_DIFFICULTIES.includes(fm.difficulty as Difficulty))
|
||
? (fm.difficulty as Difficulty)
|
||
: 'T1';
|
||
|
||
const date = typeof fm.date === 'string'
|
||
? fm.date
|
||
: (typeof fm.date === 'number' ? new Date(fm.date).toISOString().slice(0, 10) : new Date().toISOString().slice(0, 10));
|
||
|
||
const tags = Array.isArray(fm.tags) ? fm.tags : [];
|
||
|
||
const iconUrl = iconResult?.url;
|
||
|
||
const entry: HikeManifestEntry = {
|
||
slug,
|
||
title: typeof fm.title === 'string' ? fm.title : slug,
|
||
date,
|
||
summary: typeof fm.summary === 'string' ? fm.summary : '',
|
||
author: typeof fm.author === 'string' ? fm.author : undefined,
|
||
tags,
|
||
difficulty,
|
||
hidden: fm.hidden === true,
|
||
...parseSeasonRange(fm.seasons),
|
||
distanceKm: Math.round(distanceKm * 100) / 100,
|
||
durationMin,
|
||
elevationGainM: gain,
|
||
elevationLossM: loss,
|
||
elevationMaxM,
|
||
elevationMinM,
|
||
bbox,
|
||
centroid,
|
||
previewPolyline,
|
||
region: geo.region,
|
||
canton: geo.canton,
|
||
municipality: geo.municipality,
|
||
trackUrl: `/hikes/${slug}/track.${trackHash}.json`,
|
||
pointCount: track.length,
|
||
cover,
|
||
icon: iconUrl,
|
||
imagePoints
|
||
};
|
||
|
||
console.log(`[build-hikes:${slug}] done in ${((Date.now() - hikeStart) / 1000).toFixed(1)}s`);
|
||
return entry;
|
||
}
|
||
|
||
// ---------------------------------------------------------------------------
|
||
// Entry point
|
||
// ---------------------------------------------------------------------------
|
||
|
||
async function main() {
|
||
let slugs: string[] = [];
|
||
try {
|
||
const entries = await fs.readdir(CONTENT_DIR, { withFileTypes: true });
|
||
slugs = entries.filter(e => e.isDirectory()).map(e => e.name).sort();
|
||
} catch {
|
||
console.warn(`[build-hikes] No content dir at ${CONTENT_DIR}; emitting empty manifest.`);
|
||
}
|
||
|
||
const cache = await loadGeocodeCache();
|
||
const hikes: HikeManifestEntry[] = [];
|
||
|
||
for (const slug of slugs) {
|
||
console.log(`[build-hikes] Building ${slug}`);
|
||
const entry = await buildHike(slug, cache);
|
||
if (entry) hikes.push(entry);
|
||
}
|
||
|
||
await saveGeocodeCache(cache);
|
||
|
||
hikes.sort((a, b) => (a.date < b.date ? 1 : a.date > b.date ? -1 : 0));
|
||
|
||
await fs.mkdir(path.dirname(MANIFEST_OUT), { recursive: true });
|
||
const banner =
|
||
'// AUTO-GENERATED by scripts/build-hikes.ts — do not edit by hand.\n' +
|
||
"import type { HikeManifestEntry } from '$types/hikes';\n\n";
|
||
const body = `export const HIKES: HikeManifestEntry[] = ${JSON.stringify(hikes, null, 2)} as const;\n`;
|
||
const manifestSrc = banner + body;
|
||
await fs.writeFile(MANIFEST_OUT, manifestSrc);
|
||
|
||
const bytes = Buffer.byteLength(manifestSrc, 'utf-8');
|
||
if (bytes > MANIFEST_WARN_BYTES) {
|
||
console.warn(`[build-hikes] Manifest ${bytes} bytes exceeds soft cap ${MANIFEST_WARN_BYTES} — consider trimming previewPolyline size.`);
|
||
}
|
||
|
||
console.log(`[build-hikes] Wrote ${hikes.length} hikes to ${MANIFEST_OUT} (${bytes} bytes)`);
|
||
}
|
||
|
||
main().catch(err => {
|
||
console.error('[build-hikes] Fatal:', err);
|
||
process.exit(1);
|
||
});
|