feat: adiciona constelações astronômicas opcionais

This commit is contained in:
vini 2026-07-19 13:48:34 -03:00
parent 820f941b4f
commit 740c9b836b
6 changed files with 191 additions and 0 deletions

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@ -14,6 +14,9 @@
<entry name="ChuvaMode" type="Bool">
<default>false</default>
</entry>
<entry name="ShowConstellations" type="Bool">
<default>true</default>
</entry>
<entry name="Latitude" type="Double">
<default>-24.72</default>
</entry>

View file

@ -9,6 +9,7 @@ ColumnLayout {
property alias cfg_ShowSkeleton: skeletonCheck.checked
property alias cfg_BaladaMode: baladaCheck.checked
property alias cfg_ChuvaMode: chuvaCheck.checked
property alias cfg_ShowConstellations: constellationsCheck.checked
property double cfg_Latitude
property double cfg_Longitude
@ -37,6 +38,12 @@ ColumnLayout {
onCheckedChanged: if (checked) baladaCheck.checked = false
}
CheckBox {
id: constellationsCheck
Kirigami.FormData.label: i18n("Constelações:")
text: i18n("Ligar estrelas e mostrar os nomes")
}
Kirigami.Separator { Kirigami.FormData.isSection: true }
// Observador do céu realista (aceita vírgula ou ponto decimal)

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@ -1200,6 +1200,7 @@ body.chuva #sunChuvaFace { opacity: 1; transition: opacity 5s ease; }
</div><!-- .scene -->
<script src="starcatalog.js"></script>
<script src="constellations.js"></script>
<script>
/* ============================================================
CONSTANTS
@ -1217,6 +1218,7 @@ const canvas = document.getElementById('starfield');
const ctx = canvas.getContext('2d');
let obsLat = -24.72, obsLon = -53.74; // Toledo-PR; sobrescrito pela config
let showConstellations = false;
const VIEW_AZ = 90; // centro da tela olha para o LESTE — a tela física do
// usuário está voltada p/ leste, então o wallpaper age
// como janela: estrelas nascem subindo dentro da cena
@ -1398,6 +1400,73 @@ function renderMilkyWay(lstDeg, glareOn) {
return true;
}
/* Figuras convencionais das 88 constelações, ancoradas em RA/Dec J2000.
São desenhadas antes das estrelas para os pontos reais ficarem por cima. */
function drawConstellations(c, lst, W, H, horizonPx) {
if (!showConstellations || typeof CONSTELLATIONS === 'undefined') return;
const rankAlpha = [0, 0.52, 0.38, 0.25];
const rankWidth = [0, 1.35, 1.05, 0.82];
c.save();
c.lineCap = 'round';
c.lineJoin = 'round';
c.shadowColor = 'rgba(60,185,255,0.65)';
c.shadowBlur = 7;
for (const constellation of CONSTELLATIONS) {
const rank = Math.max(1, Math.min(3, constellation.rank || 3));
c.strokeStyle = `rgba(105,205,255,${rankAlpha[rank]})`;
c.lineWidth = rankWidth[rank];
for (const line of constellation.lines) {
c.beginPath();
let previous = null;
for (const point of line) {
const aa = altAz(point[0], point[1], lst);
const sc = skyToScreen(aa.alt, aa.az, W, horizonPx);
if (!sc) {
previous = null;
continue;
}
if (previous && Math.hypot(sc.x - previous.x, sc.y - previous.y) > W * 0.34) {
c.moveTo(sc.x, sc.y);
previous = sc;
continue;
}
if (previous) c.lineTo(sc.x, sc.y);
else c.moveTo(sc.x, sc.y);
previous = sc;
}
c.stroke();
}
}
/* Nomes só nas figuras principais/intermediárias para não lotar a tela. */
c.shadowBlur = 5;
c.font = `${Math.max(10, Math.round(H * 0.0105))}px ui-monospace, monospace`;
c.textAlign = 'center';
c.textBaseline = 'middle';
c.fillStyle = 'rgba(170,225,255,0.66)';
const occupied = [];
for (const constellation of CONSTELLATIONS) {
if (constellation.rank > 2 || !constellation.label) continue;
const aa = altAz(constellation.label[0], constellation.label[1], lst);
const sc = skyToScreen(aa.alt, aa.az, W, horizonPx);
if (!sc || sc.y < 24 || sc.y > horizonPx - 18) continue;
const width = c.measureText(constellation.name).width + 14;
const box = { x1: sc.x - width / 2, y1: sc.y - 9,
x2: sc.x + width / 2, y2: sc.y + 9 };
if (occupied.some(o => box.x1 < o.x2 && box.x2 > o.x1 &&
box.y1 < o.y2 && box.y2 > o.y1)) continue;
occupied.push(box);
c.fillText(constellation.name, sc.x, sc.y);
}
c.restore();
}
function setShowConstellations(on) {
showConstellations = !!on;
projectSky();
}
/* ── Passo de projeção: recalcula posições de tela (a cada 30s o céu gira
~0.125°, imperceptível). Camada estática (Via Láctea + estrelas fracas)
é pré-renderizada em baseCanvas; só as brilhantes cintilam por frame ── */
@ -1431,6 +1500,8 @@ function projectSky() {
bctx.restore();
}
drawConstellations(bctx, lst, W, H, horizonPx);
for (let i = 0; i < STAR_DATA.length; i++) {
const [ra, dec, mag, ci] = STAR_DATA[i];
const aa = altAz(ra, dec, lst);

View file

@ -11,6 +11,7 @@ WallpaperItem {
webView.runJavaScript("setShowSkeleton(" + Plasmoid.configuration.ShowSkeleton + ")")
webView.runJavaScript("setBaladaMode(" + Plasmoid.configuration.BaladaMode + ")")
webView.runJavaScript("setChuvaMode(" + Plasmoid.configuration.ChuvaMode + ")")
webView.runJavaScript("setShowConstellations(" + Plasmoid.configuration.ShowConstellations + ")")
webView.runJavaScript("setObserverLocation(" + Plasmoid.configuration.Latitude + ","
+ Plasmoid.configuration.Longitude + ")")
}
@ -20,6 +21,7 @@ WallpaperItem {
function onShowSkeletonChanged() { applyConfig() }
function onBaladaModeChanged() { applyConfig() }
function onChuvaModeChanged() { applyConfig() }
function onShowConstellationsChanged() { applyConfig() }
function onLatitudeChanged() { applyConfig() }
function onLongitudeChanged() { applyConfig() }
}

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@ -0,0 +1,87 @@
#!/usr/bin/env python3
"""Gera constellations.js com figuras convencionais em coordenadas J2000.
Fonte: d3-celestial, de Olaf Frohn, licença BSD-3-Clause.
Os dados são compactados para uso offline pelo wallpaper.
"""
import json
import urllib.request
from pathlib import Path
BASE = "https://raw.githubusercontent.com/ofrohn/d3-celestial/master/data/"
OUT = Path(__file__).resolve().parent.parent / "plugin/contents/ui/constellations.js"
LICENSE = """Copyright (c) 2015, Olaf Frohn
All rights reserved.
Redistribution and use in source and binary forms, with or without
modification, are permitted provided that the following conditions are met:
1. Redistributions of source code must retain the above copyright notice,
this list of conditions and the following disclaimer.
2. Redistributions in binary form must reproduce the above copyright notice,
this list of conditions and the following disclaimer in the documentation
and/or other materials provided with the distribution.
3. Neither the name of the copyright holder nor contributors may be used to
endorse or promote products derived from this software without permission.
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
AND ANY EXPRESS OR IMPLIED WARRANTIES ARE DISCLAIMED. IN NO EVENT SHALL THE
COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DAMAGES ARISING IN ANY WAY
OUT OF THE USE OF THIS SOFTWARE.
"""
def fetch(name: str) -> dict:
req = urllib.request.Request(BASE + name, headers={"User-Agent": "skeledance-build/1.0"})
return json.loads(urllib.request.urlopen(req, timeout=30).read())
def rounded_point(point: list[float]) -> list[float]:
return [round(float(point[0]), 4), round(float(point[1]), 4)]
def main() -> None:
line_data = fetch("constellations.lines.json")["features"]
name_data = fetch("constellations.json")["features"]
metadata = {
feature["id"]: {
"name": feature["properties"].get("name", feature["id"]),
"label": rounded_point(feature["geometry"]["coordinates"]),
}
for feature in name_data
}
merged: dict[str, dict] = {}
for feature in line_data:
ident = feature["id"]
item = merged.setdefault(
ident,
{
"id": ident,
"name": metadata.get(ident, {}).get("name", ident),
"rank": int(feature["properties"].get("rank", 3)),
"label": metadata.get(ident, {}).get("label"),
"lines": [],
},
)
item["rank"] = min(item["rank"], int(feature["properties"].get("rank", 3)))
item["lines"].extend(
[[rounded_point(point) for point in line]
for line in feature["geometry"]["coordinates"]]
)
payload = json.dumps(list(merged.values()), ensure_ascii=False, separators=(",", ":"))
OUT.write_text(
"/* Gerado por tools/build_constellations.py.\n"
" d3-celestial constellation lines, coordenadas equatoriais J2000.\n\n"
+ "\n".join(" " + line for line in LICENSE.rstrip().splitlines())
+ " */\nconst CONSTELLATIONS=" + payload + ";\n",
encoding="utf-8",
)
print(f"{len(merged)} constelações -> {OUT} ({OUT.stat().st_size / 1024:.0f} KB)")
if __name__ == "__main__":
main()