Files
Trailhead/scripts/generate-icon.js
T
David 704e172da9 Rename project to trailhead-path-bookmarker
- npm name: trailhead-path-bookmarker (package.json + lockfile)
- electron-builder appId: com.dbeuttel.trailhead-path-bookmarker
- AppUserModelId in main.js matches the new appId
- README title updated; userData path now %APPDATA%\Trailhead Path Bookmarker

Icon generator now emits both sizes:
- assets/tray-icon.png (32x32) for the system tray
- assets/app-icon.png (256x256) for electron-builder's win.icon, which
  rejects PNGs smaller than 256
2026-04-29 10:27:25 -04:00

148 lines
4.6 KiB
JavaScript

// Generates two PNGs from the same procedural Trailhead glyph:
// assets/tray-icon.png — 32x32 (Windows tray)
// assets/app-icon.png — 256x256 (electron-builder requires >=256 for the
// win.icon used in the installer + .exe resource)
//
// Glyph: a vertical bookmark ribbon (rectangle with a V-cut bottom — the
// universal "save" mark) carrying a cream mountain peak inside it.
// Geometry is expressed as fractions of the canvas so a single set of rules
// renders cleanly at both sizes.
// No external image deps; raw PNG bytes via zlib.
const fs = require('fs');
const path = require('path');
const zlib = require('zlib');
const ORANGE = [217, 119, 87, 255]; // #d97757 — ribbon fill
const ORANGE_DARK = [165, 82, 56, 255]; // shadow on right edge
const CREAM = [250, 230, 215, 255]; // mountain motif inside the ribbon
const TRANSPARENT = [0, 0, 0, 0];
// Geometry, in 0..1 fractions of canvas.
const G = {
ribbonLeft: 9 / 32,
ribbonRight: 23 / 32, // exclusive
ribbonTop: 3 / 32,
ribbonBottom: 28 / 32, // exclusive
vCutTop: 23 / 32, // V notch starts here, points up into the ribbon
mountainTop: 7 / 32,
mountainBottom: 15 / 32, // exclusive
mountainBaseHalfW: 4.5 / 32,
shadowWidth: 1 / 32,
};
function makeColorAt(size) {
const rL = G.ribbonLeft * size;
const rR = G.ribbonRight * size;
const rT = G.ribbonTop * size;
const rB = G.ribbonBottom * size;
const vT = G.vCutTop * size;
const mT = G.mountainTop * size;
const mB = G.mountainBottom * size;
const sw = G.shadowWidth * size;
const cx = (rL + rR) / 2;
const baseHalf = G.mountainBaseHalfW * size;
return function colorAt(x, y) {
// Sample at pixel center so geometry edges land cleanly.
const px = x + 0.5;
const py = y + 0.5;
if (px < rL || px >= rR) return TRANSPARENT;
if (py < rT || py >= rB) return TRANSPARENT;
// V-cut: triangular notch carved from the bottom of the ribbon.
if (py >= vT) {
const depth = (py - vT) / (rB - vT); // 0..1
const cutHalfW = depth * ((rR - rL) / 2);
if (Math.abs(px - cx) < cutHalfW) return TRANSPARENT;
}
// Mountain peak silhouette inside the upper half of the ribbon.
if (py >= mT && py < mB) {
const t = (py - mT) / (mB - mT); // 0..1 (top..base)
const halfW = t * baseHalf;
if (Math.abs(px - cx) <= halfW) return CREAM;
}
// Right-edge shadow on the ribbon body, stopping before the V-cut so the
// notch edges read clean rather than half-shaded.
if (px >= rR - sw && py < vT) return ORANGE_DARK;
return ORANGE;
};
}
function buildRawImage(size) {
const colorAt = makeColorAt(size);
const rowLen = size * 4 + 1;
const raw = Buffer.alloc(rowLen * size);
for (let y = 0; y < size; y++) {
raw[y * rowLen] = 0;
for (let x = 0; x < size; x++) {
const [r, g, b, a] = colorAt(x, y);
const off = y * rowLen + 1 + x * 4;
raw[off] = r;
raw[off + 1] = g;
raw[off + 2] = b;
raw[off + 3] = a;
}
}
return raw;
}
function crc32(buf) {
let c;
const table = crc32.table || (crc32.table = (() => {
const t = new Uint32Array(256);
for (let n = 0; n < 256; n++) {
let v = n;
for (let k = 0; k < 8; k++) v = (v & 1) ? (0xedb88320 ^ (v >>> 1)) : (v >>> 1);
t[n] = v >>> 0;
}
return t;
})());
c = 0xffffffff;
for (let i = 0; i < buf.length; i++) c = table[(c ^ buf[i]) & 0xff] ^ (c >>> 8);
return (c ^ 0xffffffff) >>> 0;
}
function chunk(type, data) {
const len = Buffer.alloc(4);
len.writeUInt32BE(data.length, 0);
const typeBuf = Buffer.from(type, 'ascii');
const crcBuf = Buffer.alloc(4);
crcBuf.writeUInt32BE(crc32(Buffer.concat([typeBuf, data])), 0);
return Buffer.concat([len, typeBuf, data, crcBuf]);
}
function buildPng(size) {
const sig = Buffer.from([137, 80, 78, 71, 13, 10, 26, 10]);
const ihdr = Buffer.alloc(13);
ihdr.writeUInt32BE(size, 0);
ihdr.writeUInt32BE(size, 4);
ihdr[8] = 8; // bit depth
ihdr[9] = 6; // color type RGBA
ihdr[10] = 0; // compression
ihdr[11] = 0; // filter
ihdr[12] = 0; // interlace
const idat = zlib.deflateSync(buildRawImage(size));
return Buffer.concat([
sig,
chunk('IHDR', ihdr),
chunk('IDAT', idat),
chunk('IEND', Buffer.alloc(0)),
]);
}
const targets = [
{ size: 32, file: path.join(__dirname, '..', 'assets', 'tray-icon.png') },
{ size: 256, file: path.join(__dirname, '..', 'assets', 'app-icon.png') },
];
for (const t of targets) {
fs.mkdirSync(path.dirname(t.file), { recursive: true });
fs.writeFileSync(t.file, buildPng(t.size));
console.log(`Wrote ${t.file} (${t.size}x${t.size})`);
}