Some checks failed
secrets-guard / encrypted (push) Successful in 6s
shell-lint / shellcheck (push) Successful in 13s
secrets-guard / encrypted (pull_request) Successful in 14s
PR build (required check) / changes (pull_request) Successful in 16s
PR build (required check) / validate-observability (pull_request) Has been skipped
shell-lint / shellcheck (pull_request) Successful in 28s
Build + push backend image (Forgejo registry) / build-push (push) Successful in 1m58s
Deploy frontend to LAN dev server / build (push) Successful in 1m59s
Build + push frontend image (Forgejo registry) / build-push (push) Successful in 2m5s
Deploy backend to LAN dev server / build (push) Successful in 2m20s
PR build (required check) / build-frontend (pull_request) Successful in 1m44s
Deploy frontend to LAN dev server / deploy (push) Successful in 30s
PR build (required check) / build-backend (pull_request) Successful in 2m0s
PR build (required check) / gate (pull_request) Successful in 2s
Deploy backend to LAN dev server / deploy (push) Failing after 1m58s
303 lines
16 KiB
JavaScript
303 lines
16 KiB
JavaScript
// The trend chart: a shared line-series renderer (percentile fan + median +
|
|
// value trace + labeled points) with per-metric wrappers, the site-matched
|
|
// palette, and the pointer-driven hover. Extracted from app.js so any page can
|
|
// plot a metric series; app.js keeps only its page orchestration (buildChart).
|
|
import { fmtTemp, toUnit, toWind, fmtPrecip, fmtWind, fmtHumid,
|
|
windUnit, humidUnit } from "./units.js";
|
|
import { TIER_COLORS, drynessColor, pctOrd } from "./shared.js";
|
|
|
|
// #rrggbb -> rgba() with alpha, so band tints derive from the same site colors.
|
|
const hexA = (hex, a) => {
|
|
let h = (hex || "").trim().replace("#", "");
|
|
if (h.length === 3) h = h.split("").map((c) => c + c).join("");
|
|
const n = parseInt(h || "888888", 16);
|
|
return `rgba(${(n >> 16) & 255}, ${(n >> 8) & 255}, ${n & 255}, ${a})`;
|
|
};
|
|
|
|
export function chartPalette() {
|
|
// Read straight from the site's CSS variables so the chart matches the rest of
|
|
// the UI and follows the light/dark theme automatically. hiBand/loBand are
|
|
// applied once per tier ring (p1-99, p10-90, p25-75, p40-60) and stack, so keep
|
|
// each layer light — the center (Normal) darkens naturally.
|
|
const css = getComputedStyle(document.documentElement);
|
|
const v = (name, f) => (css.getPropertyValue(name).trim() || f);
|
|
const dark = matchMedia("(prefers-color-scheme: dark)").matches;
|
|
const hi = v("--very-hot", "#dd6b52"); // daily-high series = warm tier red
|
|
const lo = v("--cold", "#4393c3"); // daily-low series = cool tier blue
|
|
return {
|
|
surface: v("--surface-2", dark ? "#1e242c" : "#eef1f5"),
|
|
ink: v("--text", dark ? "#e7ecf2" : "#1a2029"),
|
|
muted: v("--muted", dark ? "#9aa6b2" : "#5b6673"),
|
|
grid: v("--border", dark ? "#2a323c" : "#dde3ea"),
|
|
accent: v("--accent", "#f0803c"),
|
|
hi, lo,
|
|
// Distinct line/point accents for the three added series; the graded fan
|
|
// behind them still uses the shared diverging tier colors (same as temps).
|
|
feels: v("--accent", "#f0803c"), // "feels like" = orange accent
|
|
humid: "#2ea9bf", // humidity = cyan
|
|
wind: "#5aa9a3", // wind speed = teal
|
|
gust: "#8f86d8", // wind gust = periwinkle
|
|
precip: v("--wet-6", "#2b8cbe"),
|
|
hiBand: hexA(hi, dark ? 0.15 : 0.11),
|
|
loBand: hexA(lo, dark ? 0.17 : 0.12),
|
|
};
|
|
}
|
|
|
|
// W/PW are recomputed per build from the container width (setChartWidth), so a
|
|
// wide monitor gets a genuinely wider drawing — more room between days — instead
|
|
// of the same 720-unit canvas magnified. Live bindings: importers see updates.
|
|
export let W = 720;
|
|
export const H = 340;
|
|
export const PL = 46, PR = 62, plotTop = 48, plotBot = 288, xLabY = 308;
|
|
export let PW = W - PL - PR;
|
|
|
|
// Drawing width tracks the on-screen box at a steady ~1.5 CSS px per SVG unit,
|
|
// so text renders the same size everywhere while wide monitors gain plot room.
|
|
export function setChartWidth(clientWidth) {
|
|
W = Math.max(720, Math.min(1400, Math.round((clientWidth || 720) / 1.5)));
|
|
PW = W - PL - PR;
|
|
}
|
|
|
|
// Read a percentile from a normals object, falling back to nearby keys so an
|
|
// older/partial API response (missing p1/p30/p70/p99) still renders a chart.
|
|
const PCT_FALLBACK = {
|
|
p1: ["p1", "p10", "min", "p50"], p10: ["p10", "p50"],
|
|
p25: ["p25", "p30", "p50"], p40: ["p40", "p30", "p50"],
|
|
p60: ["p60", "p70", "p50"], p75: ["p75", "p70", "p50"],
|
|
p90: ["p90", "p50"], p95: ["p95", "p90", "p50"], p99: ["p99", "p90", "max", "p50"],
|
|
};
|
|
const pget = (o, k) => {
|
|
for (const kk of (PCT_FALLBACK[k] || [k])) if (o && o[kk] != null) return o[kk];
|
|
return null;
|
|
};
|
|
|
|
|
|
// Per-series display meta for the diverging-scale metrics. `sfx` is the unit
|
|
// appended to axis + point labels ("°"); wind carries its unit in the subtitle
|
|
// instead of on every point to keep the plot uncluttered.
|
|
// `kind` picks the formatter and says whether the value converts; the labels that
|
|
// name a unit are built per render so they follow the active unit system.
|
|
const SERIES = {
|
|
tmax: (C) => ({ color: C.hi, label: "Daily high", sfx: "°", kind: "temp" }),
|
|
tmin: (C) => ({ color: C.lo, label: "Daily low", sfx: "°", kind: "temp" }),
|
|
feels: (C) => ({ color: C.feels, label: "Feels like", sfx: "°", kind: "temp" }),
|
|
humid: (C) => ({ color: C.humid, label: `Absolute humidity (${humidUnit()})`, sfx: "", kind: "humid" }),
|
|
wind: (C) => ({ color: C.wind, label: `Wind speed (${windUnit()})`, sfx: "", kind: "wind" }),
|
|
gust: (C) => ({ color: C.gust, label: `Wind gust (${windUnit()})`, sfx: "", kind: "wind" }),
|
|
};
|
|
|
|
// Percentile "fan" tiers — bands between successive percentile marks, colored to
|
|
// match the calendar. Temperature is diverging (cold→green→hot); precipitation
|
|
// uses the sequential rain-intensity ramp.
|
|
const TEMP_FAN = [
|
|
["p90", "p99", "very-hot"], ["p75", "p90", "hot"], ["p60", "p75", "warm"],
|
|
["p40", "p60", "normal"], ["p25", "p40", "cool"], ["p10", "p25", "cold"], ["p1", "p10", "very-cold"],
|
|
];
|
|
// Eight rain-intensity tiers (post-split): Trace / Light / Brisk / Typical / Heavy
|
|
// (60-90) / Very Heavy (90-95) / Severe (95-99) / Extreme. Each band maps a rain-day
|
|
// percentile range to its calendar tier colour; the p75 vertex inside the single
|
|
// Heavy tier keeps the fan following the p75 contour.
|
|
const RAIN_FAN = [
|
|
["p95", "p99", "wet-8"], ["p90", "p95", "wet-7"], ["p75", "p90", "wet-6"], ["p60", "p75", "wet-6"],
|
|
["p40", "p60", "wet-5"], ["p25", "p40", "wet-4"], ["p10", "p25", "wet-3"], ["p1", "p10", "wet-2"],
|
|
];
|
|
|
|
// Shared line-series chart: an optional shaded percentile fan + dashed median, the
|
|
// value line with dots, and labeled points — so temperature, wind, humidity,
|
|
// precipitation and dry streak all read in one consistent style.
|
|
function lineChart(cfg) {
|
|
const { days, n, xFor, C, key, color, fan, hasNormals, baseZero,
|
|
getVal, getPct, dotColor, fmtAxis, fmtLabel, labelOn,
|
|
subtitle, legend, aria } = cfg;
|
|
|
|
// y-range: the plotted values plus the fan extremes (p1/p99) when present.
|
|
const vals = [];
|
|
days.forEach((d) => {
|
|
const v = getVal(d); if (v != null && !isNaN(v)) vals.push(v);
|
|
if (hasNormals && d.normals && d.normals[key]) {
|
|
const u = pget(d.normals[key], "p99"), l = pget(d.normals[key], "p1");
|
|
if (u != null) vals.push(u); if (l != null) vals.push(l);
|
|
}
|
|
});
|
|
let finite = vals.filter((v) => v != null && !isNaN(v));
|
|
if (!finite.length) finite = [0, 1];
|
|
let lo = Math.min(...finite), hi = Math.max(...finite);
|
|
if (baseZero) lo = Math.min(lo, 0);
|
|
if (hi <= lo) hi = lo + 1;
|
|
const pad = baseZero ? Math.max((hi - lo) * 0.12, 0.01) : Math.max((hi - lo) * 0.08, 3);
|
|
hi += pad; if (!baseZero) lo -= pad;
|
|
const yT = (v) => plotBot - ((v - lo) / (hi - lo)) * (plotBot - plotTop);
|
|
|
|
let grid = "";
|
|
for (let t = 0; t <= 4; t++) {
|
|
const v = lo + ((hi - lo) * t) / 4, y = yT(v).toFixed(1);
|
|
grid += `<line x1="${PL}" y1="${y}" x2="${W - PR}" y2="${y}" stroke="${C.grid}" stroke-width="1"/>`;
|
|
grid += `<text x="${PL - 8}" y="${+y + 4}" text-anchor="end" font-size="11" fill="${C.muted}">${fmtAxis(v)}</text>`;
|
|
}
|
|
|
|
// Shaded fan bands between percentile marks (the "highlights"), same as the calendar tiers.
|
|
const band = (dnKey, upKey, cls) => {
|
|
let top = "", bot = "";
|
|
days.forEach((d, i) => { const u = d.normals && pget(d.normals[key], upKey); if (u == null) return;
|
|
top += (top ? "L" : "M") + xFor(i).toFixed(1) + " " + yT(u).toFixed(1) + " "; });
|
|
for (let i = n - 1; i >= 0; i--) { const dd = days[i].normals && pget(days[i].normals[key], dnKey); if (dd == null) continue;
|
|
bot += "L" + xFor(i).toFixed(1) + " " + yT(dd).toFixed(1) + " "; }
|
|
return top ? `<path d="${top + bot}Z" fill="${hexA(TIER_COLORS[cls], 0.4)}"/>` : "";
|
|
};
|
|
const fanSvg = (hasNormals && fan) ? fan.map((t) => band(t[0], t[1], t[2])).join("") : "";
|
|
|
|
const normTrace = (pctKey) => {
|
|
let p = "", st = false;
|
|
days.forEach((d, i) => { const v = d.normals && pget(d.normals[key], pctKey); if (v == null) return;
|
|
p += (st ? "L" : "M") + xFor(i).toFixed(1) + " " + yT(v).toFixed(1) + " "; st = true; });
|
|
return p;
|
|
};
|
|
const valTrace = () => {
|
|
let p = "", st = false;
|
|
days.forEach((d, i) => { const v = getVal(d); if (v == null || isNaN(v)) { st = false; return; }
|
|
p += (st ? "L" : "M") + xFor(i).toFixed(1) + " " + yT(v).toFixed(1) + " "; st = true; });
|
|
return p;
|
|
};
|
|
const medianSvg = hasNormals
|
|
? `<path d="${normTrace("p50")}" fill="none" stroke="${color}" stroke-width="1.2" stroke-dasharray="4 4" opacity="0.55"/>` : "";
|
|
|
|
const dots = days.map((d, i) => {
|
|
const v = getVal(d); if (v == null || isNaN(v)) return "";
|
|
return `<circle cx="${xFor(i).toFixed(1)}" cy="${yT(v).toFixed(1)}" r="3.4" fill="${dotColor ? dotColor(d) : color}" stroke="${C.surface}" stroke-width="1.6"/>`;
|
|
}).join("");
|
|
const labels = days.map((d, i) => {
|
|
const v = getVal(d); if (v == null || isNaN(v)) return "";
|
|
if (labelOn && !labelOn(v, d)) return "";
|
|
const x = xFor(i).toFixed(1), y = yT(v);
|
|
const vy = (y - plotTop < 26 ? y + 15 : y - 15).toFixed(1); // flip below near the top
|
|
const pv = getPct ? getPct(d) : null;
|
|
const pct = pv == null ? "" :
|
|
`<tspan x="${x}" dy="9" font-size="7.5" font-weight="600" fill="${C.muted}">${pctOrd(pv)}</tspan>`;
|
|
return `<text x="${x}" y="${vy}" text-anchor="middle" font-size="8.5" font-weight="700" fill="${C.ink}" stroke="${C.surface}" stroke-width="2.4" paint-order="stroke" stroke-linejoin="round">${fmtLabel(v)}${pct}</text>`;
|
|
}).join("");
|
|
|
|
const content = grid + fanSvg + medianSvg +
|
|
`<path d="${valTrace()}" fill="none" stroke="${color}" stroke-width="2.2" stroke-linejoin="round" stroke-linecap="round"/>` +
|
|
dots + labels;
|
|
|
|
return { content, legend, color, subtitle, aria };
|
|
}
|
|
|
|
// One temperature-scale series (High/Low/Feels/Wind/Gust).
|
|
export function tempChart(key, days, n, xFor, C) {
|
|
const s = SERIES[key](C);
|
|
// Labels show the active unit; the plot keeps its imperial domain — only the
|
|
// labels convert — so point positions and the fan geometry hold.
|
|
const fmtV = (v) => (s.kind === "temp"
|
|
? `${Math.round(toUnit(v))}${s.sfx}`
|
|
: s.kind === "wind" ? `${Math.round(toWind(v))}` : `${Math.round(v)}`);
|
|
return lineChart({
|
|
days, n, xFor, C, key, color: s.color, fan: TEMP_FAN, hasNormals: true, baseZero: false,
|
|
getVal: (d) => (d[key] ? d[key].value : null),
|
|
getPct: (d) => (d[key] ? d[key].percentile : null),
|
|
fmtAxis: fmtV,
|
|
fmtLabel: fmtV,
|
|
legend:
|
|
`<span><i style="background:${s.color}"></i>${s.label} (dashed = median)</span>` +
|
|
`<span><i class="swatch-band" style="background:${hexA(TIER_COLORS.normal, 0.5)};border-color:${TIER_COLORS.normal}"></i>Band shaded by grade tier</span>` +
|
|
`<span class="legend-note">Points labeled value · percentile; grade from the band tier (scale below)</span>`,
|
|
subtitle: `${s.label}: recent trend vs normal`,
|
|
aria: `Recent ${s.label.toLowerCase()} versus the normal range.`,
|
|
});
|
|
}
|
|
|
|
// Precipitation as a line vs its normal range — same fan/median/labels style as
|
|
// temperature, so the metrics read consistently. Rain days are labeled; dry days
|
|
// sit on the baseline. The fan is the rain-intensity tier ramp.
|
|
export function precipChart(days, n, xFor, C) {
|
|
return lineChart({
|
|
days, n, xFor, C, key: "precip", color: C.precip, fan: RAIN_FAN, hasNormals: true, baseZero: true,
|
|
getVal: (d) => (d.precip ? d.precip.value : null),
|
|
getPct: (d) => (d.precip ? d.precip.percentile : null),
|
|
// Rain days take their intensity-tier color; no-rain days warm with the dry
|
|
// streak (tan→red) so a dry spell reads as dry, matching the Dry chart.
|
|
dotColor: (d) => (d.precip && d.precip.class && d.precip.class !== "dry" ? (TIER_COLORS[d.precip.class] || C.precip) : (drynessColor(d.dsr) || C.precip)),
|
|
fmtAxis: (v) => fmtPrecip(v, false),
|
|
fmtLabel: (v) => fmtPrecip(v, false),
|
|
labelOn: (v) => v > 0, // only label rain days; dry days rest on the baseline
|
|
legend:
|
|
`<span><i style="background:${C.precip}"></i>Precipitation (dashed = median)</span>` +
|
|
`<span><i class="swatch-band" style="background:${hexA(TIER_COLORS["wet-6"], 0.5)};border-color:${TIER_COLORS["wet-6"]}"></i>Band shaded by rain-intensity tier</span>` +
|
|
`<span class="legend-note">Rain days labeled amount · percentile (rain scale below)</span>`,
|
|
subtitle: "Precipitation: daily totals vs normal",
|
|
aria: "Daily precipitation totals versus the normal range.",
|
|
});
|
|
}
|
|
|
|
// Dry streak as a line: days since last rain, dots warming with the streak; a rain
|
|
// day drops the line to 0 with a blue dot. (No climatology fan — it's not graded.)
|
|
export function dryChart(days, n, xFor, C) {
|
|
return lineChart({
|
|
days, n, xFor, C, key: "dry", color: drynessColor(9), fan: null, hasNormals: false, baseZero: true,
|
|
getVal: (d) => (d.dsr == null ? null : d.dsr),
|
|
getPct: () => null,
|
|
dotColor: (d) => drynessColor(d.dsr),
|
|
fmtAxis: (v) => `${Math.round(v)}d`,
|
|
fmtLabel: (v) => `${Math.round(v)}`,
|
|
labelOn: (v) => v > 0, // label the streak length; rain days (0) just show the dot
|
|
legend:
|
|
`<span><i style="background:${drynessColor(9)}"></i>Days since last rain: dry streak</span>` +
|
|
`<span><i style="background:${drynessColor(0)}"></i>Rain that day (streak = 0)</span>`,
|
|
subtitle: "Dry streak: days since last measurable rain",
|
|
aria: "Days since last measurable rain, as a line.",
|
|
});
|
|
}
|
|
|
|
export function attachChartHover(wrap, days) {
|
|
const svg = wrap.querySelector("svg");
|
|
const tip = wrap.querySelector("#chart-tip");
|
|
const cross = wrap.querySelector("#crosshair");
|
|
const C = chartPalette();
|
|
// Every measurable line converts to the active unit system; `kind` picks how.
|
|
const TIP_FMT = {
|
|
temp: (v) => `${Math.round(toUnit(v))}°`,
|
|
humid: (v) => fmtHumid(v),
|
|
wind: (v) => fmtWind(v),
|
|
precip: (v) => fmtPrecip(v),
|
|
};
|
|
const pctLine = (label, g, kind, color) => {
|
|
if (!g) return `<div><b style="color:${color}">${label}</b> —</div>`;
|
|
const pct = g.percentile == null ? "" : ` · ${pctOrd(g.percentile)} pct`;
|
|
const gc = TIER_COLORS[g.class] || "";
|
|
return `<div><b style="color:${color}">${label}</b> ${TIP_FMT[kind](g.value)}${pct} <span class="tt-grade" style="color:${gc}">${g.grade}</span></div>`;
|
|
};
|
|
|
|
// Pointer events cover mouse, touch and pen with one path, so tapping/dragging
|
|
// the chart works on phones (mousemove never fires on touchscreens).
|
|
const showTip = (r, e) => {
|
|
const d = days[+r.dataset.i];
|
|
const x = +r.getAttribute("x") + +r.getAttribute("width") / 2;
|
|
cross.setAttribute("x1", x); cross.setAttribute("x2", x); cross.setAttribute("opacity", "0.7");
|
|
const dt = new Date(d.date + "T00:00:00");
|
|
const nt = d.normals.tmax, ni = d.normals.tmin;
|
|
tip.innerHTML = `<div class="tt-date">${dt.toLocaleDateString(undefined, { weekday: "short", month: "short", day: "numeric" })}</div>
|
|
${pctLine("High", d.tmax, "temp", C.hi)}
|
|
${pctLine("Low", d.tmin, "temp", C.lo)}
|
|
${pctLine("Feels", d.feels, "temp", C.feels)}
|
|
${pctLine("Humidity", d.humid, "humid", C.humid)}
|
|
${pctLine("Wind", d.wind, "wind", C.wind)}
|
|
${pctLine("Gust", d.gust, "wind", C.gust)}
|
|
${pctLine("Precip", d.precip, "precip", C.precip)}
|
|
<div><b>Dry</b> ${d.dsr == null ? "—" : d.dsr === 0 ? "rain today" : `${d.dsr} d since rain`}</div>
|
|
<div class="tt-norm">normal ${nt ? fmtTemp(nt.p50) : "—"} / ${ni ? fmtTemp(ni.p50) : "—"}</div>`;
|
|
tip.hidden = false;
|
|
const box = wrap.getBoundingClientRect();
|
|
let px = e.clientX - box.left + 12;
|
|
if (px > box.width - 160) px = e.clientX - box.left - 160;
|
|
tip.style.left = Math.max(4, px) + "px";
|
|
tip.style.top = Math.max(8, e.clientY - box.top - 10) + "px";
|
|
};
|
|
|
|
wrap.querySelectorAll("rect.hit").forEach((r) => {
|
|
r.addEventListener("pointermove", (e) => showTip(r, e));
|
|
r.addEventListener("pointerdown", (e) => showTip(r, e));
|
|
});
|
|
const hide = () => { tip.hidden = true; cross.setAttribute("opacity", "0"); };
|
|
svg.addEventListener("pointerleave", hide);
|
|
svg.addEventListener("pointerup", hide);
|
|
}
|