785 lines
38 KiB
JavaScript
785 lines
38 KiB
JavaScript
// Compare view: line up several places over one date range and see which best
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// fits a comfort temperature *range*. For each location we pull the same daily
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// record the Calendar uses (api/v2/calendar) and, per day, take a chosen
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// temperature (daytime high / daily mean / overnight low / feels-like) and test it
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// against the comfort range [lo, hi]: inside the range "hits comfort"; below lo is
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// colder, above hi is warmer, and we track by how much.
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//
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// Below the ranked cards a separate climate-distribution section shows how each
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// place's days spread across a metric's Record-Low→Record-High categories (its own
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// metric + share/count toggles), reusing the calendar's totals strip.
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//
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// The comparison — locations, comfort range, judged temperature and date range —
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// lives in the URL hash, so a link reproduces exactly what you see. The range and
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// judged-temperature re-rank instantly (all values are already in hand). Editing
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// the date range or the location set doesn't refetch on its own: it arms the
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// Refresh button, and the load runs when the user taps it.
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import { loadLastLocation, saveLastLocation } from "./nav.js";
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import { getJSON, TTL } from "./cache.js";
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import { initFindButton } from "./mappicker.js";
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import { MONTHS, pad, monthStart, monthEnd, buildChunks,
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clickOpensPicker, metricBuckets, distStrip,
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seasonFilterDropdown, seasonSummaryText, syncSeasonChecks,
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applySeasonMonthChange, initSeasonExpand,
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allMonths, monthsToMask, maskToMonths,
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namePrimary, nameParts } from "./shared.js";
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import { fmtTemp, fmtDelta, onUnitChange } from "./units.js";
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import { uv } from "./account.js"; // header sign-in entry + notification bell, and the API-version resolver
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import { initFilterSheet } from "./filtersheet.js";
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const CMP = {
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lo: "thermograph:cmpLo",
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hi: "thermograph:cmpHi",
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tlo: "thermograph:cmpTlo",
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thi: "thermograph:cmpThi",
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basis: "thermograph:cmpBasis",
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range: "thermograph:cmpRange",
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months: "thermograph:cmpMonths",
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locs: "thermograph:cmpLocs",
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distMetric: "thermograph:cmpDistMetric",
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distCount: "thermograph:cmpDistCount",
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};
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const lsGet = (k) => { try { return localStorage.getItem(k); } catch (e) { return null; } };
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const lsSet = (k, v) => { try { localStorage.setItem(k, v); } catch (e) {} };
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const clamp = (v, lo, hi) => Math.min(hi, Math.max(lo, v));
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const BASES = ["tmax", "tmin", "mean", "feels"];
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const R_MIN = 30, R_MAX = 100; // comfort-range slider bounds (°F)
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// The comfort range [lo, hi] in °F. Restored from the new lo/hi keys, else migrated
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// from the old comfort-point + band (c ± t), else the default 63–73° (was 68 ± 5).
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function loadRange2() {
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let lo = +lsGet(CMP.lo), hi = +lsGet(CMP.hi);
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if (lo >= R_MIN && hi <= R_MAX && lo <= hi) return { lo, hi };
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const c = +lsGet("thermograph:cmpComfort"), t = +lsGet("thermograph:cmpTol");
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if (c >= R_MIN && c <= R_MAX && t >= 0) return { lo: clamp(c - t, R_MIN, R_MAX), hi: clamp(c + t, R_MIN, R_MAX) };
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return { lo: 63, hi: 73 };
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}
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let { lo, hi } = loadRange2();
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// Outer tolerance range [tlo, thi], with tlo ≤ lo ≤ hi ≤ thi. Days outside comfort
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// but inside tolerance still count toward the match score (ramped by how far past
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// comfort they land); days beyond tolerance count as a full miss. Restored from
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// storage, else defaulting to comfort widened by 10° on each side.
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function loadTol() {
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const t = { tlo: +lsGet(CMP.tlo), thi: +lsGet(CMP.thi) };
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if (t.tlo >= R_MIN && t.thi <= R_MAX && t.tlo <= lo && t.thi >= hi) return t;
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return { tlo: clamp(lo - 10, R_MIN, R_MAX), thi: clamp(hi + 10, R_MIN, R_MAX) };
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}
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let { tlo, thi } = loadTol();
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let basis = BASES.includes(lsGet(CMP.basis)) ? lsGet(CMP.basis) : "tmax";
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// Time-of-year filter: only days whose month is checked count toward the ranking and
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// the distribution. Seasons are the primary selector, months the nested suboption;
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// the single source of truth is this Set of month indices (0=Jan … 11=Dec). Restored
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// from a 12-char bitmask, defaulting to all 12 months (no filtering).
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function loadMonths() {
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const m = maskToMonths(lsGet(CMP.months));
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return m && m.size ? m : allMonths();
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}
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let checkedMonths = loadMonths();
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const monthsActive = () => checkedMonths.size < 12;
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const monthOf = (r) => +r.date.slice(5, 7) - 1;
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// A location's days narrowed to the checked months (pass-through when all 12 are on).
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function visibleSeries(loc) {
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if (!loc.series) return null;
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if (!monthsActive()) return loc.series;
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return loc.series.filter((r) => r.date && checkedMonths.has(monthOf(r)));
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}
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// Distribution section (independent of comfort): which metric to bucket by, and
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// whether the strip prints shares or raw day counts.
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const DIST_METRICS = ["tmax", "tmin", "feels", "humid", "wind", "gust", "precip", "dsr"];
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let distMetric = DIST_METRICS.includes(lsGet(CMP.distMetric)) ? lsGet(CMP.distMetric) : "tmax";
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let distCount = lsGet(CMP.distCount) === "1";
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// Locations being compared: {lat, lon, name, series|null, loading, error}.
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// `series` is the array of raw daily records from /api/v2/calendar (each metric an
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// {v, c, …} object) — the comfort ranking reads the values, the distribution the
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// category classes. No series and not loading is "pending" — it needs a Refresh tap.
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let locations = [];
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// Bumped on every (re)load so a superseded in-flight fetch drops its result.
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let loadToken = 0;
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const BASIS_LABEL = { tmax: "daytime high", mean: "daily mean", tmin: "overnight low", feels: "feels-like high" };
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// ---- date range (month granularity) ----
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const isYM = (s) => typeof s === "string" && /^\d{4}-\d{2}$/.test(s);
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function defaultRange() {
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const now = new Date();
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// January six years back → the present month (a broad seasonal sample by default).
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return { start: `${now.getFullYear() - 6}-01`, end: `${now.getFullYear()}-${pad(now.getMonth() + 1)}` };
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}
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function loadRange() {
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try { const o = JSON.parse(lsGet(CMP.range)); if (o && isYM(o.start) && isYM(o.end)) return o; } catch (e) {}
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return defaultRange();
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}
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let range = loadRange(); // the APPLIED range (what loaded data reflects), "YYYY-MM"
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// Pretty "Jul 2025 – Jun 2026" for a YYYY-MM range.
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const monthLabel = (ym) => `${MONTHS[+ym.slice(5, 7) - 1]} ${ym.slice(0, 4)}`;
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// ---- shareable URL state ----
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// The hash carries the comparison: lo/hi=comfort range, b=basis, s/e=range,
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// loc=lat,lon;lat,lon. Written on every state change; read once on load (a link
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// wins over localStorage). Old links used c=comfort + t=band; those still resolve
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// (converted to a range). A plain lat/lon hash from cross-view nav is ignored here
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// and handled by the seed path instead.
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function writeHashState() {
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const p = new URLSearchParams();
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p.set("lo", lo); p.set("hi", hi); p.set("tlo", tlo); p.set("thi", thi); p.set("b", basis);
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p.set("s", range.start); p.set("e", range.end);
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if (monthsActive()) p.set("m", monthsToMask(checkedMonths)); // omit when all 12 (clean links)
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if (locations.length) p.set("loc", locations.map((l) => `${l.lat.toFixed(4)},${l.lon.toFixed(4)}`).join(";"));
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history.replaceState(null, "", "#" + p.toString());
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}
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function readHashState() {
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const p = new URLSearchParams(location.hash.slice(1));
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if (!["lo", "hi", "tlo", "thi", "c", "t", "b", "s", "e", "m", "loc"].some((k) => p.has(k))) return null; // not a compare link
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const st = {};
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if (p.has("lo") || p.has("hi")) {
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const l = clamp(+p.get("lo"), R_MIN, R_MAX), h = clamp(+p.get("hi"), R_MIN, R_MAX);
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if (!isNaN(l) && !isNaN(h)) { st.lo = Math.min(l, h); st.hi = Math.max(l, h); }
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} else if (p.has("c")) { // legacy comfort-point + band link
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const c = clamp(+p.get("c") || 68, R_MIN, R_MAX);
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const t = p.get("t") !== null && p.get("t") !== "" ? clamp(+p.get("t"), 0, 15) : 5;
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st.lo = clamp(c - t, R_MIN, R_MAX); st.hi = clamp(c + t, R_MIN, R_MAX);
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}
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if (p.has("tlo") || p.has("thi")) {
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const a = clamp(+p.get("tlo"), R_MIN, R_MAX), b = clamp(+p.get("thi"), R_MIN, R_MAX);
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if (!isNaN(a)) st.tlo = a;
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if (!isNaN(b)) st.thi = b;
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}
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if (BASES.includes(p.get("b"))) st.basis = p.get("b");
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if (isYM(p.get("s"))) st.start = p.get("s");
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if (isYM(p.get("e"))) st.end = p.get("e");
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if (p.has("m")) { const ms = maskToMonths(p.get("m")); if (ms && ms.size) st.months = ms; }
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if (p.has("loc")) {
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st.locs = p.get("loc").split(";").map((pair) => {
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const [a, b] = pair.split(",").map(Number);
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return { lat: a, lon: b };
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}).filter((l) => !isNaN(l.lat) && !isNaN(l.lon));
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}
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return st;
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}
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// ---- elements ----
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const addBtn = document.getElementById("cmp-add");
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const refreshBtn = document.getElementById("cmp-refresh");
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// A second Load/Refresh lives inside the params sheet's date-range block, so editing
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// the range on mobile (where the panel is a bottom sheet) can reload without closing.
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const refreshBtnSheet = document.getElementById("cmp-refresh-sheet");
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const refreshBtns = [refreshBtn, refreshBtnSheet];
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const locList = document.getElementById("cmp-loc-list");
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const params = document.getElementById("cmp-params");
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const comfortWrap = document.getElementById("cmp-comfort"); // now inline, above the sheet
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const placeholder = document.getElementById("cmp-placeholder");
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const head = document.getElementById("cmp-head");
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const baseline = document.getElementById("cmp-baseline");
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const results = document.getElementById("cmp-results");
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const loInput = document.getElementById("cmp-lo");
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const hiInput = document.getElementById("cmp-hi");
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const tloInput = document.getElementById("cmp-tlo");
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const thiInput = document.getElementById("cmp-thi");
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const comfortValEl = document.getElementById("cmp-comfort-val");
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const tolValEl = document.getElementById("cmp-tol-val");
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const tickEls = {
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tlo: document.getElementById("cmp-tick-tlo"), lo: document.getElementById("cmp-tick-lo"),
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hi: document.getElementById("cmp-tick-hi"), thi: document.getElementById("cmp-tick-thi"),
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};
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const fillEl = document.getElementById("cmp-fill");
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const fillTolEl = document.getElementById("cmp-fill-tol");
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const basisToggle = document.getElementById("cmp-basis");
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const seasonDd = document.getElementById("cmp-season-dd");
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const startInput = document.getElementById("cmp-start");
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const endInput = document.getElementById("cmp-end");
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const distSection = document.getElementById("cmp-dist");
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const distToggle = document.getElementById("cmp-dist-metric");
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const distToggleSheet = document.getElementById("cmp-dist-metric-sheet");
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// The sheet copy mirrors the inline selector's 8 buttons (cloned) and stays in sync.
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distToggleSheet.innerHTML = distToggle.innerHTML;
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const distBody = document.getElementById("cmp-dist-body");
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// ---- data ----
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// Fetch one location's range (chunked), keeping the raw daily records — the comfort
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// ranking reads their values, the distribution their category classes.
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async function fetchSeries(loc, token) {
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const chunks = buildChunks(monthStart(range.start), monthEnd(range.end));
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const days = [];
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let place = null;
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for (const ch of chunks) {
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const url = uv(`calendar?lat=${loc.lat}&lon=${loc.lon}&start=${ch.start}&end=${ch.end}`);
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const d = await getJSON(url, TTL.calendar, true);
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if (token !== loadToken) return null; // superseded
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place = place || d.place || `${d.cell.center_lat.toFixed(2)}, ${d.cell.center_lon.toFixed(2)}`;
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for (const r of d.days) days.push(r);
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}
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return { name: place, series: days };
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}
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function persistLocations() {
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lsSet(CMP.locs, JSON.stringify(locations.map((l) => ({ lat: l.lat, lon: l.lon, name: l.name }))));
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}
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async function loadLocation(loc, token) {
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loc.loading = true; loc.error = null;
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renderAll();
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try {
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const res = await fetchSeries(loc, token);
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if (!res || token !== loadToken) return; // superseded (a newer load owns this loc)
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loc.name = res.name; loc.series = res.series;
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} catch (e) {
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if (token === loadToken) loc.error = e.message || "couldn't load";
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}
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if (token === loadToken) loc.loading = false;
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persistLocations();
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renderAll();
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}
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// Load every location that still needs data under the current range.
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function loadPending(token) {
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for (const loc of locations) if (!loc.series && !loc.loading) loadLocation(loc, token);
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}
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function addLocation(lat, lon) {
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// Ignore a spot already on the list (same grid neighborhood).
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if (locations.some((l) => Math.abs(l.lat - lat) < 0.05 && Math.abs(l.lon - lon) < 0.05)) return;
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const loc = { lat, lon, name: null, series: null, loading: false, error: null };
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locations.push(loc);
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saveLastLocation(lat, lon);
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persistLocations();
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writeHashState();
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renderAll(); // pending → the Refresh button appears; no fetch until it's tapped
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resolveName(loc); // but resolve the neighborhood+city right away (before Refresh)
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}
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// Resolve just the place name for a freshly-added location, independent of its
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// (deferred, heavier) series load, so the chip flips from coordinates to the
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// neighborhood + city immediately on add. Best-effort — the series load resolves
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// the name too, so a failure here is harmless.
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async function resolveName(loc) {
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try {
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const res = await fetch(uv(`place?lat=${loc.lat}&lon=${loc.lon}`), { credentials: "include" });
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if (!res.ok) return;
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const d = await res.json();
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// Skip if the location was removed meanwhile, or already got named by a load.
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if (!locations.includes(loc) || loc.name || !d || !d.place) return;
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loc.name = d.place;
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persistLocations();
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renderAll();
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} catch (e) { /* best-effort — the series load will still resolve the name */ }
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}
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function removeLocation(i) {
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locations.splice(i, 1);
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persistLocations();
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writeHashState();
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renderAll();
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}
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// ---- pending / refresh state ----
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const dateChanged = () => startInput.value !== range.start || endInput.value !== range.end;
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const isPending = (l) => !l.series && !l.loading && !l.error;
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const isDirty = () => locations.length > 0 && (dateChanged() || locations.some(isPending));
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// The Refresh tap: adopt any edited dates (which invalidates every series) and load
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// whatever now needs data.
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function refresh() {
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let s = startInput.value || range.start, e = endInput.value || range.end;
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if (!isYM(s) || !isYM(e)) return;
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if (s > e) { const t = s; s = e; e = t; }
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const rangeChanged = s !== range.start || e !== range.end;
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range = { start: s, end: e };
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startInput.value = s; endInput.value = e;
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lsSet(CMP.range, JSON.stringify(range));
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const token = ++loadToken;
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if (rangeChanged) for (const loc of locations) loc.series = null;
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writeHashState();
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loadPending(token);
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renderAll();
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}
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// ---- stats ----
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// The judged temperature for one raw daily record, per the basis toggle.
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function basisTemp(r) {
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const hi = r.tmax ? r.tmax.v : null, lo = r.tmin ? r.tmin.v : null;
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if (basis === "tmax") return hi;
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if (basis === "tmin") return lo;
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// "Feels" judges the felt daytime high (fmax) — the apparent-temperature peak of
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// the day. The combined `feels` metric instead reports whichever apparent extreme
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// is furthest from 65°F, so in mild climates it flips to the cold overnight low in
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// winter and makes comfortable days vanish; fmax is the like-for-like daytime feel.
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if (basis === "feels") return r.fmax ? r.fmax.v : null;
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return hi != null && lo != null ? (hi + lo) / 2 : null; // mean
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}
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// A quantile (0–1) of an ascending-sorted array, linearly interpolated.
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function quantile(sorted, q) {
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if (!sorted.length) return null;
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const i = (sorted.length - 1) * q, lo = Math.floor(i), hi = Math.ceil(i);
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return lo === hi ? sorted[lo] : sorted[lo] + (sorted[hi] - sorted[lo]) * (i - lo);
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}
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// Score every day 0–1: full credit inside comfort [lo,hi]; inside tolerance it
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// ramps 1→0 by how far past the comfort edge it lands (so a near miss beats a far
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// one); beyond tolerance it's 0. The mean of those credits is the 0–100 match
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// score we rank on — it folds in comfort days, tolerance days, and miss magnitude.
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function computeStats(series) {
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let comf = 0, belowTol = 0, belowOut = 0, aboveTol = 0, aboveOut = 0;
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let sumBelow = 0, sumAbove = 0, sumMiss = 0, sumTemp = 0, sumCredit = 0;
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const temps = []; // every valid basis temp (°F), for the average + spread
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for (const r of series) {
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const t = basisTemp(r);
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if (t == null || isNaN(t)) continue;
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temps.push(t); sumTemp += t;
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if (t >= lo && t <= hi) { comf++; sumCredit += 1; continue; }
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const cold = t < lo;
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const d = cold ? lo - t : t - hi; // degrees past the comfort edge
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const margin = cold ? lo - tlo : thi - hi; // tolerance width on this side
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sumMiss += d;
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if (cold) sumBelow += d; else sumAbove += d;
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if (margin > 0 && d <= margin) { // within tolerance: partial credit
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sumCredit += 1 - d / margin;
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if (cold) belowTol++; else aboveTol++;
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} else { // beyond tolerance: a full miss
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if (cold) belowOut++; else aboveOut++;
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}
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}
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const n = temps.length;
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if (!n) return null;
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temps.sort((a, b) => a - b);
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const below = belowTol + belowOut, above = aboveTol + aboveOut;
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return {
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n, comf, below, above, belowTol, belowOut, aboveTol, aboveOut,
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score: 100 * sumCredit / n, // the match score we rank on
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comfortPct: 100 * comf / n, belowPct: 100 * below / n, abovePct: 100 * above / n,
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belowTolPct: 100 * belowTol / n, belowOutPct: 100 * belowOut / n,
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aboveTolPct: 100 * aboveTol / n, aboveOutPct: 100 * aboveOut / n,
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tolPct: 100 * (belowTol + aboveTol) / n,
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avgBelow: below ? sumBelow / below : 0,
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avgAbove: above ? sumAbove / above : 0,
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mad: sumMiss / n,
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// Baseline strip: the typical temperature (°F) and the middle-80% spread.
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avgTemp: sumTemp / n, p10: quantile(temps, 0.1), p90: quantile(temps, 0.9),
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};
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}
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// ---- render ----
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const pct = (v) => `${v < 10 ? v.toFixed(1) : Math.round(v)}%`;
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// Temperature *differences* (avg miss, typical miss) in the active unit.
|
||
const deg = (v) => fmtDelta(v);
|
||
|
||
function renderLocList() {
|
||
locList.innerHTML = locations.map((l, i) => {
|
||
let label, cls = "cmp-chip", lead = "";
|
||
// Coordinates show until the place name resolves. A spinning ring marks a live
|
||
// load; a "queued" dot marks a location waiting for the next Refresh tap. Once
|
||
// scored, l.name holds the resolved neighborhood + city.
|
||
const coords = `${l.lat.toFixed(2)}, ${l.lon.toFixed(2)}`;
|
||
if (l.loading) { label = l.name || coords; cls += " loading"; lead = `<span class="cmp-spinner cmp-spinner-chip" aria-hidden="true"></span>`; }
|
||
else if (l.error) { label = "Couldn't load"; cls += " error"; }
|
||
else if (!l.series) { label = l.name || coords; cls += " pending"; lead = `<span class="cmp-chip-dot" aria-hidden="true"></span>`; }
|
||
else { label = l.name; }
|
||
// The chip shows just the lead segment (compact, several per row); the full name
|
||
// stays in the title + aria-label and on the ranked card below.
|
||
return `<li class="${cls}">${lead}<span class="cmp-chip-name" title="${label}">${namePrimary(label)}</span>` +
|
||
`<button type="button" class="cmp-chip-x" data-i="${i}" aria-label="Remove ${label}">×</button></li>`;
|
||
}).join("");
|
||
}
|
||
|
||
// The five day-buckets, ordered cold → hot: css color class, plain-language name,
|
||
// and the stat key holding its share of days. Drives both the bar and its key.
|
||
const BUCKETS = [
|
||
["cmp-seg-vcold", "Too cold", "belowOutPct"],
|
||
["cmp-seg-cool", "Cool", "belowTolPct"],
|
||
["cmp-seg-comf", "Comfortable", "comfortPct"],
|
||
["cmp-seg-warm", "Warm", "aboveTolPct"],
|
||
["cmp-seg-vhot", "Too hot", "aboveOutPct"],
|
||
];
|
||
|
||
// A ranked place: the 0–100 match score up top, then one full-width bar showing how
|
||
// the place's days split across the five temperature buckets (cold → hot, in the
|
||
// site's own colors), and directly beneath it a key that names every bucket and its
|
||
// share — so even a 1% sliver on the bar reads clearly. The whole bar is 100% of the
|
||
// days, so more blue = runs cold, more red = runs hot.
|
||
// The place name as a hierarchy: the lead segment bold, the rest (city · region ·
|
||
// country) on a muted line beneath — the one spot that shows the full name.
|
||
function nameHierarchy(name) {
|
||
const { primary, rest } = nameParts(name);
|
||
return `<span class="cmp-name"><b>${primary}</b>${rest ? `<span class="cmp-name-sub">${rest}</span>` : ""}</span>`;
|
||
}
|
||
|
||
function rankCard(loc, s, rank) {
|
||
const win = rank === 1;
|
||
const parts = BUCKETS.map(([cls, label, key]) => ({ cls, label, w: s[key] })).filter((p) => p.w > 0);
|
||
const bar = `<div class="cmp-bar" role="img" aria-label="of all days: ${parts.map((p) => `${pct(p.w)} ${p.label.toLowerCase()}`).join(", ")}">` +
|
||
parts.map((p) => `<span class="cmp-seg ${p.cls}" style="width:${p.w}%" title="${p.label}: ${pct(p.w)}"></span>`).join("") +
|
||
`</div>`;
|
||
// Key under the bar: a color swatch + name + share for every non-empty bucket, in
|
||
// the same cold→hot order as the bar, so small spans are still clearly labeled. On
|
||
// desktop each label wants its segment's midpoint (recorded in data-mid); spreadKeys
|
||
// then de-collides them after layout. On mobile it falls back to a plain wrapping row.
|
||
let acc = 0;
|
||
const key = `<div class="cmp-key">` +
|
||
parts.map((p) => {
|
||
const mid = acc + p.w / 2; acc += p.w;
|
||
return `<span class="cmp-key-item" data-mid="${mid}" style="left:${mid}%"><i class="cmp-sw ${p.cls}"></i>${p.label} <b>${pct(p.w)}</b></span>`;
|
||
}).join("") +
|
||
`</div>`;
|
||
const bands = `<div class="cmp-bands"><b>${pct(s.tolPct)}</b> within tolerance · typically <b>${deg(s.mad)}</b> off comfort</div>`;
|
||
const sub = win ? `<span class="cmp-best">★ Best match</span> · ${s.n} days` : `${s.n} days`;
|
||
return `<div class="cmp-card${win ? " cmp-win" : ""}">` +
|
||
`<div class="cmp-card-top">` +
|
||
`<span class="cmp-rank">${rank}</span>` +
|
||
`<div class="cmp-card-name">${nameHierarchy(loc.name)}<span class="cmp-daycount">${sub}</span></div>` +
|
||
`<div class="cmp-big"><b>${Math.round(s.score)}</b><span>match / 100</span></div>` +
|
||
`</div>` +
|
||
bar + key + bands +
|
||
`</div>`;
|
||
}
|
||
|
||
// A placeholder card shown while a location's data is still streaming in, so the
|
||
// results don't jump when it resolves. Animated by CSS (.cmp-skel).
|
||
const skeletonRow = () => `<div class="cmp-card cmp-skel" aria-hidden="true">` +
|
||
`<div class="cmp-skel-top"><span class="cmp-skel-badge"></span>` +
|
||
`<span class="cmp-skel-name"></span><span class="cmp-skel-big"></span></div>` +
|
||
`<div class="cmp-skel-bar"></div></div>`;
|
||
|
||
// Baseline strip: every place's typical basis temperature on one shared °F axis,
|
||
// with the comfort range shaded, so the places' baselines line up for direct
|
||
// comparison. Each row shows the average (dot) and the middle-80% spread (bar),
|
||
// colored by where the average sits relative to the comfort range.
|
||
function renderBaseline(scored) {
|
||
if (!scored.length) { baseline.hidden = true; baseline.innerHTML = ""; return; }
|
||
let min = Math.min(lo, tlo), max = Math.max(hi, thi);
|
||
for (const { s } of scored) { min = Math.min(min, s.p10); max = Math.max(max, s.p90); }
|
||
const pad = Math.max(3, (max - min) * 0.06); // keep markers off the edges
|
||
min -= pad; max += pad;
|
||
const span = max - min || 1;
|
||
const posF = (v) => clamp((v - min) / span * 100, 0, 100);
|
||
const bandL = posF(lo), bandR = posF(hi), tolL = posF(tlo), tolR = posF(thi);
|
||
const posClass = (t) => (t < lo ? "cmp-below" : t > hi ? "cmp-above" : "cmp-comfort");
|
||
const rows = scored.map(({ loc, s }) => {
|
||
const cls = posClass(s.avgTemp), a = posF(s.avgTemp);
|
||
return `<div class="cmp-bl-row">` +
|
||
`<span class="cmp-bl-name" title="${loc.name}">${namePrimary(loc.name)}</span>` +
|
||
`<div class="cmp-bl-track" role="img" aria-label="${loc.name}: average ${fmtTemp(s.avgTemp)}, typical ${fmtTemp(s.p10)} to ${fmtTemp(s.p90)}">` +
|
||
`<span class="cmp-bl-tol" style="left:${tolL}%;right:${100 - tolR}%"></span>` +
|
||
`<span class="cmp-bl-band" style="left:${bandL}%;right:${100 - bandR}%"></span>` +
|
||
`<span class="cmp-bl-spread ${cls}" style="left:${posF(s.p10)}%;right:${100 - posF(s.p90)}%"></span>` +
|
||
`<span class="cmp-bl-dot ${cls}" style="left:${a}%"></span>` +
|
||
`<span class="cmp-bl-val" style="left:${a}%">${fmtTemp(s.avgTemp)}</span>` +
|
||
`</div></div>`;
|
||
}).join("");
|
||
baseline.hidden = false;
|
||
baseline.innerHTML =
|
||
`<div class="cmp-bl-head">Typical temperature by place ` +
|
||
`<span class="hint">dot = average · bar = middle-80% of days · shaded = comfort, faint = tolerance</span></div>` +
|
||
`<div class="cmp-bl-rows">${rows}</div>` +
|
||
`<div class="cmp-bl-axis"><span>${fmtTemp(min)}</span><span>${fmtTemp((min + max) / 2)}</span><span>${fmtTemp(max)}</span></div>`;
|
||
}
|
||
|
||
function renderResults() {
|
||
const loading = locations.filter((l) => l.loading).length;
|
||
const scored = locations
|
||
.map((l) => ({ loc: l, s: l.series ? computeStats(visibleSeries(l)) : null }))
|
||
.filter((x) => x.s);
|
||
// Best match score first; break ties by the smaller typical miss.
|
||
scored.sort((a, b) => (b.s.score - a.s.score) || (a.s.mad - b.s.mad));
|
||
|
||
renderBaseline(scored);
|
||
|
||
if (!scored.length) {
|
||
head.hidden = true;
|
||
// Loaded places can score empty when the month filter excludes all their days.
|
||
const filteredOut = !loading && monthsActive() && locations.some((l) => l.series && l.series.length);
|
||
results.innerHTML = loading
|
||
? `<p class="cmp-loading"><span class="cmp-spinner"></span>Loading daily weather…</p>` +
|
||
Array.from({ length: Math.min(loading, 3) }, skeletonRow).join("")
|
||
: filteredOut
|
||
? `<p class="muted">No days fall in the selected months. Widen the time-of-year filter.</p>`
|
||
: "";
|
||
return;
|
||
}
|
||
|
||
// Headline: the winner + the parameters it was judged under.
|
||
const win = scored[0];
|
||
const span = `${monthLabel(range.start)} – ${monthLabel(range.end)}`;
|
||
const winName = namePrimary(win.loc.name);
|
||
const lead = scored.length > 1
|
||
? `<b>${winName}</b> is the best match for ${fmtTemp(lo)}–${fmtTemp(hi)}: score ${Math.round(win.s.score)}/100`
|
||
: `<b>${winName}</b>: match score ${Math.round(win.s.score)}/100 for ${fmtTemp(lo)}–${fmtTemp(hi)}`;
|
||
head.hidden = false;
|
||
head.innerHTML = `<h2>${lead}</h2>` +
|
||
`<p class="meta">By ${BASIS_LABEL[basis]} · comfort ${fmtTemp(lo)}–${fmtTemp(hi)}, tolerance ${fmtTemp(tlo)}–${fmtTemp(thi)} · ${span}` +
|
||
`${loading ? ` · <span class="cmp-loading-inline"><span class="cmp-spinner"></span>loading ${loading} more…</span>` : ""}</p>`;
|
||
|
||
results.innerHTML = scored.map((x, i) => rankCard(x.loc, x.s, i + 1)).join("") +
|
||
(loading ? Array.from({ length: loading }, skeletonRow).join("") : "");
|
||
spreadKeys();
|
||
}
|
||
|
||
// The desktop key wants each label centred on its segment's midpoint, but small or
|
||
// adjacent buckets make labels overlap. After layout, de-collide each row with the
|
||
// classic 1-D label placement: keep every label at its ideal midpoint, and only where
|
||
// labels would touch, merge them into a block positioned to minimise the total shift
|
||
// from their ideals — so an isolated label never moves, and a cluster centres on its
|
||
// members rather than sliding to one edge. Finally clamp the run inside the bar.
|
||
// Mobile uses a plain wrapping row, so there we just clear any positions we applied.
|
||
function spreadKeys() {
|
||
const desktop = window.matchMedia("(min-width: 641px)").matches;
|
||
const GAP = 10;
|
||
results.querySelectorAll(".cmp-key").forEach((keyEl) => {
|
||
const items = [...keyEl.children];
|
||
if (!desktop) {
|
||
items.forEach((el) => { el.style.left = el.style.transform = ""; });
|
||
return;
|
||
}
|
||
if (!items.length) return;
|
||
const W = keyEl.clientWidth;
|
||
// Each label's ideal left edge = its segment midpoint minus half its width.
|
||
const labs = items.map((el) => {
|
||
const w = el.offsetWidth;
|
||
return { el, w, ideal: (parseFloat(el.dataset.mid) / 100) * W - w / 2 };
|
||
});
|
||
// Sweep left→right, growing a block whenever the next label would overlap the
|
||
// current one. A block records Σ(idealₖ − offsetₖ) and its count so its left edge
|
||
// = that mean, the least-squares spot for its members.
|
||
const blocks = [];
|
||
for (const it of labs) {
|
||
let b = { items: [it], left: it.ideal, width: it.w, sum: it.ideal, n: 1 };
|
||
blocks.push(b);
|
||
while (blocks.length >= 2) {
|
||
const a = blocks[blocks.length - 2], cur = blocks[blocks.length - 1];
|
||
if (a.left + a.width + GAP <= cur.left) break; // no overlap → settled
|
||
const offset = a.width + GAP; // cur's items shift this far into a
|
||
a.sum += cur.sum - cur.n * offset;
|
||
a.n += cur.n;
|
||
a.width += GAP + cur.width;
|
||
a.items = a.items.concat(cur.items);
|
||
a.left = a.sum / a.n;
|
||
blocks.pop();
|
||
}
|
||
}
|
||
// Clamp the run inside the bar: off the left wall forward, off the right wall back.
|
||
let minLeft = 0;
|
||
for (const b of blocks) { if (b.left < minLeft) b.left = minLeft; minLeft = b.left + b.width + GAP; }
|
||
let maxRight = W;
|
||
for (let i = blocks.length - 1; i >= 0; i--) {
|
||
const b = blocks[i];
|
||
if (b.left + b.width > maxRight) b.left = maxRight - b.width;
|
||
maxRight = b.left - GAP;
|
||
}
|
||
// Lay each block's labels out left→right from the block's left edge.
|
||
for (const b of blocks) {
|
||
let x = b.left;
|
||
for (const it of b.items) {
|
||
it.el.style.left = `${x + it.w / 2}px`;
|
||
it.el.style.transform = "translateX(-50%)";
|
||
x += it.w + GAP;
|
||
}
|
||
}
|
||
});
|
||
}
|
||
|
||
// ---- distribution (independent of the comfort filter) ----
|
||
// One calendar-style Record-Low→Record-High connected bar chart per loaded location
|
||
// for the selected metric; the share/count toggle flips every figure. Category names
|
||
// are percentile tiers, but each bar now shows the tier's average value + range, so it
|
||
// re-renders on the °C/°F toggle (wired below).
|
||
function renderDist() {
|
||
const withData = locations
|
||
.map((l) => ({ l, vis: visibleSeries(l) }))
|
||
.filter((x) => x.vis && x.vis.length);
|
||
if (!withData.length) { distSection.hidden = true; distBody.innerHTML = ""; return; }
|
||
distBody.innerHTML = withData.map(({ l, vis }) => {
|
||
const buckets = metricBuckets(vis, distMetric);
|
||
const total = buckets.reduce((n, b) => n + b.n, 0);
|
||
const name = namePrimary(l.name) || `${l.lat.toFixed(2)}, ${l.lon.toFixed(2)}`;
|
||
const strip = total ? distStrip(buckets, distCount) : `<p class="muted">No data for this metric.</p>`;
|
||
return `<div class="cmp-dist-row">` +
|
||
`<div class="cmp-dist-name" title="${l.name || ""}">${name}<span class="cmp-dist-days">${total.toLocaleString()} days</span></div>` +
|
||
strip + `</div>`;
|
||
}).join("");
|
||
distSection.hidden = false;
|
||
}
|
||
|
||
function renderAll() {
|
||
const has = locations.length > 0;
|
||
params.hidden = !has;
|
||
comfortWrap.hidden = !has;
|
||
placeholder.hidden = has;
|
||
addBtn.querySelector("span").textContent = has ? "Add another location" : "Add location";
|
||
for (const b of refreshBtns) b.hidden = !isDirty();
|
||
renderLocList();
|
||
renderResults();
|
||
renderDist();
|
||
}
|
||
|
||
// ---- events ----
|
||
initFindButton(addBtn, "Add location",
|
||
() => (locations.length ? locations[locations.length - 1] : loadLastLocation()),
|
||
(lat, lon) => addLocation(lat, lon));
|
||
|
||
for (const b of refreshBtns) b.addEventListener("click", refresh);
|
||
|
||
locList.addEventListener("click", (e) => {
|
||
const x = e.target.closest(".cmp-chip-x");
|
||
if (x) removeLocation(+x.dataset.i);
|
||
});
|
||
|
||
// ---- comfort range slicer ----
|
||
// Two range inputs overlaid on a shared track; keep lo ≤ hi and mirror the selection
|
||
// in the label + fill. State stays in °F; the range re-ranks instantly (no refetch).
|
||
const pctPos = (v) => (v - R_MIN) / (R_MAX - R_MIN) * 100;
|
||
function syncSlicer() {
|
||
tloInput.value = tlo; loInput.value = lo; hiInput.value = hi; thiInput.value = thi;
|
||
comfortValEl.textContent = `${fmtTemp(lo)}–${fmtTemp(hi)}`;
|
||
tolValEl.textContent = `${fmtTemp(tlo)}–${fmtTemp(thi)}`;
|
||
fillEl.style.left = `${pctPos(lo)}%`;
|
||
fillEl.style.right = `${100 - pctPos(hi)}%`;
|
||
fillTolEl.style.left = `${pctPos(tlo)}%`;
|
||
fillTolEl.style.right = `${100 - pctPos(thi)}%`;
|
||
// A temperature marker above each handle (the four band borders).
|
||
for (const [k, v] of [["tlo", tlo], ["lo", lo], ["hi", hi], ["thi", thi]]) {
|
||
tickEls[k].style.left = `${pctPos(v)}%`;
|
||
tickEls[k].textContent = fmtTemp(v);
|
||
}
|
||
}
|
||
function slicerChanged() {
|
||
lsSet(CMP.lo, String(lo)); lsSet(CMP.hi, String(hi));
|
||
lsSet(CMP.tlo, String(tlo)); lsSet(CMP.thi, String(thi));
|
||
syncSlicer();
|
||
writeHashState();
|
||
renderResults(); // the distribution is comfort-independent — no need to touch it
|
||
}
|
||
// Comfort thumbs stay inside the tolerance thumbs; tolerance thumbs stay outside
|
||
// comfort — so the four handles can never cross (tlo ≤ lo ≤ hi ≤ thi).
|
||
loInput.addEventListener("input", () => { lo = clamp(+loInput.value, tlo, hi); slicerChanged(); });
|
||
hiInput.addEventListener("input", () => { hi = clamp(+hiInput.value, lo, thi); slicerChanged(); });
|
||
tloInput.addEventListener("input", () => { tlo = Math.min(+tloInput.value, lo); slicerChanged(); });
|
||
thiInput.addEventListener("input", () => { thi = Math.max(+thiInput.value, hi); slicerChanged(); });
|
||
|
||
// The °F/°C toggle only flips what's shown — the range and series stay in °F (the
|
||
// API's unit) — so re-render the range label, the cards, and the distribution chart
|
||
// (its per-category averages + ranges are in the active unit).
|
||
onUnitChange(() => { syncSlicer(); renderResults(); renderDist(); });
|
||
|
||
// Label widths (and the desktop/mobile threshold) move with the viewport, so
|
||
// re-spread the rank-card keys after the layout settles.
|
||
let spreadRaf = 0;
|
||
window.addEventListener("resize", () => {
|
||
cancelAnimationFrame(spreadRaf);
|
||
spreadRaf = requestAnimationFrame(spreadKeys);
|
||
});
|
||
|
||
// Distribution metric: an inline selector (by the chart) plus a synced copy in the
|
||
// filter sheet. Either one drives the shared distMetric; both reflect the active state.
|
||
const syncDistButtons = () =>
|
||
document.querySelectorAll("#cmp-dist-metric button, #cmp-dist-metric-sheet button")
|
||
.forEach((b) => b.classList.toggle("active", b.dataset.metric === distMetric));
|
||
function setDistMetric(m) {
|
||
distMetric = m;
|
||
lsSet(CMP.distMetric, distMetric);
|
||
syncDistButtons();
|
||
renderDist();
|
||
}
|
||
for (const t of [distToggle, distToggleSheet]) {
|
||
t.addEventListener("click", (e) => {
|
||
const btn = e.target.closest("button[data-metric]");
|
||
if (btn) setDistMetric(btn.dataset.metric);
|
||
});
|
||
}
|
||
distSection.addEventListener("change", (e) => {
|
||
if (!e.target.closest("#cmp-dist-count")) return;
|
||
distCount = e.target.checked;
|
||
lsSet(CMP.distCount, distCount ? "1" : "0");
|
||
renderDist();
|
||
});
|
||
|
||
// Basis: instant re-rank over data already in hand — no refetch.
|
||
basisToggle.addEventListener("click", (e) => {
|
||
const btn = e.target.closest("button[data-basis]");
|
||
if (!btn) return;
|
||
basis = btn.dataset.basis;
|
||
lsSet(CMP.basis, basis);
|
||
basisToggle.querySelectorAll("button").forEach((b) => b.classList.toggle("active", b === btn));
|
||
writeHashState();
|
||
renderResults();
|
||
});
|
||
|
||
// ---- time-of-year (season / month) filter ----
|
||
// Seasons are primary, months the nested suboption; both drive the same Set. A toggle
|
||
// re-ranks and re-buckets over data already in hand — no refetch. The dropdown isn't
|
||
// rebuilt on change (that would collapse it): the native checkboxes hold their own
|
||
// state, and we only re-derive the season indeterminate state + the summary text.
|
||
function buildSeasonFilter() {
|
||
seasonDd.innerHTML = seasonFilterDropdown(checkedMonths);
|
||
syncSeasonChecks(seasonDd, checkedMonths);
|
||
}
|
||
initSeasonExpand(seasonDd);
|
||
seasonDd.addEventListener("change", (e) => {
|
||
const cb = e.target.closest("input[type=checkbox]");
|
||
if (!cb || !applySeasonMonthChange(cb, checkedMonths)) return;
|
||
syncSeasonChecks(seasonDd, checkedMonths);
|
||
seasonDd.querySelector(".cal-dd-sum").textContent = seasonSummaryText(checkedMonths);
|
||
lsSet(CMP.months, monthsToMask(checkedMonths));
|
||
writeHashState();
|
||
renderResults();
|
||
renderDist();
|
||
if (fabSheet) fabSheet.setActive(monthsActive());
|
||
});
|
||
|
||
// Mobile: a floating pill slides the whole params panel up as a bottom sheet.
|
||
let fabSheet = null;
|
||
|
||
// Editing the dates doesn't load — it just arms Refresh (re-eval via renderAll).
|
||
startInput.max = endInput.max = `${new Date().getFullYear()}-12`;
|
||
startInput.addEventListener("change", renderAll);
|
||
endInput.addEventListener("change", renderAll);
|
||
clickOpensPicker(startInput, endInput); // whole-field tap opens the month picker
|
||
|
||
// ---- init ----
|
||
(function restore() {
|
||
const hash = readHashState();
|
||
if (hash) {
|
||
if (hash.lo != null) lo = hash.lo;
|
||
if (hash.hi != null) hi = hash.hi;
|
||
if (hash.tlo != null) tlo = hash.tlo;
|
||
if (hash.thi != null) thi = hash.thi;
|
||
if (hash.basis) basis = hash.basis;
|
||
if (hash.start && hash.end) range = { start: hash.start, end: hash.end };
|
||
if (hash.months) checkedMonths = hash.months;
|
||
}
|
||
// Keep comfort ordered and inside tolerance even if a hand-edited link isn't.
|
||
if (lo > hi) { const t = lo; lo = hi; hi = t; }
|
||
tlo = Math.min(tlo, lo); thi = Math.max(thi, hi);
|
||
|
||
syncSlicer();
|
||
basisToggle.querySelectorAll("button").forEach((b) => b.classList.toggle("active", b.dataset.basis === basis));
|
||
syncDistButtons(); // active state on both the inline + sheet distribution selectors
|
||
document.getElementById("cmp-dist-count").checked = distCount;
|
||
startInput.value = range.start; endInput.value = range.end;
|
||
buildSeasonFilter();
|
||
fabSheet = initFilterSheet({ panel: params, label: "Filters" });
|
||
fabSheet.setActive(monthsActive());
|
||
|
||
// A shared link's locations win; else the last-used set; else seed from the spot
|
||
// the other views were on so the page isn't empty. All three auto-load on arrival
|
||
// (the tap-to-refresh rule is for later interactive edits, not the initial view).
|
||
let list = hash && hash.locs;
|
||
if (!list) { try { const saved = JSON.parse(lsGet(CMP.locs)); if (Array.isArray(saved)) list = saved; } catch (e) {} }
|
||
if (!list || !list.length) { const last = loadLastLocation(); list = last ? [{ lat: last.lat, lon: last.lon }] : []; }
|
||
|
||
locations = list
|
||
.filter((l) => l && typeof l.lat === "number" && typeof l.lon === "number")
|
||
.map((l) => ({ lat: l.lat, lon: l.lon, name: l.name || null, series: null, loading: false, error: null }));
|
||
|
||
writeHashState();
|
||
const token = ++loadToken;
|
||
loadPending(token);
|
||
renderAll();
|
||
})();
|