destogod/test/png.mjs
type-two 07977624ae DestoGod: replacement for the TP5 bus destination sign software
TP5 is a 2012 Windows application supplied with the Guangzhou-Tongda LED
destination signs fitted to Yutong buses. It has no preview, so building a
destination list is guess-and-check, and it only runs on Windows.

The bus never talks to TP5 — the sign controller reads a .td5 file off an SD
card, and that is the whole interface. So this replaces the software without
touching any hardware or protocol: it just has to write byte-correct .td5.

Formats reverse-engineered from the sample files and TP5(En).exe, then verified
byte-for-byte:

  .td5   the file the bus reads. Fixed-layout binary; each destination block
         carries a CRC-16/ARC over block[3..len] and a rand() block id, which
         together looked like one 4-byte field because RAND_MAX is 0x7fff.
  .tp5   the editable project. Line-based text, UTF-16BE hex strings.
  .font  the sign's own bitmap fonts, each glyph row XORed with its char code.

The app is one self-contained HTML file: live LED preview at the real sign size
with real scrolling, spreadsheet/CSV import, multi-page destinations, undoable
delete, and export to both .td5 and .tp5.

Verified:
  - rebuilds a real 46,080-byte TP5 export byte-for-byte with a recomputed CRC
  - all 36 stored CRCs verify against the implementation
  - driven through its own UI, re-exporting the real file differs in 7 bytes,
    all of them the export timestamp
  - running on a real bus: signs and driver's controller both correct

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-21 13:06:25 +10:00

45 lines
1.3 KiB
JavaScript

/** Minimal PNG writer, just enough for test previews. */
import { deflateSync } from 'node:zlib';
function crc32(buf) {
let c, crc = 0xffffffff;
for (let n = 0; n < buf.length; n++) {
c = (crc ^ buf[n]) & 0xff;
for (let k = 0; k < 8; k++) c = c & 1 ? 0xedb88320 ^ (c >>> 1) : c >>> 1;
crc = c ^ (crc >>> 8);
}
return (crc ^ 0xffffffff) >>> 0;
}
function chunk(type, data) {
const len = Buffer.alloc(4);
len.writeUInt32BE(data.length);
const body = Buffer.concat([Buffer.from(type, 'latin1'), data]);
const crc = Buffer.alloc(4);
crc.writeUInt32BE(crc32(body));
return Buffer.concat([len, body, crc]);
}
/** rgb: (x,y) => [r,g,b] */
export function writePNG(width, height, rgb) {
const raw = Buffer.alloc((width * 3 + 1) * height);
let p = 0;
for (let y = 0; y < height; y++) {
raw[p++] = 0;
for (let x = 0; x < width; x++) {
const [r, g, b] = rgb(x, y);
raw[p++] = r; raw[p++] = g; raw[p++] = b;
}
}
const ihdr = Buffer.alloc(13);
ihdr.writeUInt32BE(width, 0);
ihdr.writeUInt32BE(height, 4);
ihdr[8] = 8; ihdr[9] = 2; ihdr[10] = 0; ihdr[11] = 0; ihdr[12] = 0;
return Buffer.concat([
Buffer.from([0x89, 0x50, 0x4e, 0x47, 0x0d, 0x0a, 0x1a, 0x0a]),
chunk('IHDR', ihdr),
chunk('IDAT', deflateSync(raw)),
chunk('IEND', Buffer.alloc(0)),
]);
}