Files
michaelschiemer/tests/debug/test-rs-correct-algorithm.php
Michael Schiemer 95147ff23e refactor(deployment): Remove WireGuard VPN dependency and restore public service access
Remove WireGuard integration from production deployment to simplify infrastructure:
- Remove docker-compose-direct-access.yml (VPN-bound services)
- Remove VPN-only middlewares from Grafana, Prometheus, Portainer
- Remove WireGuard middleware definitions from Traefik
- Remove WireGuard IPs (10.8.0.0/24) from Traefik forwarded headers

All monitoring services now publicly accessible via subdomains:
- grafana.michaelschiemer.de (with Grafana native auth)
- prometheus.michaelschiemer.de (with Basic Auth)
- portainer.michaelschiemer.de (with Portainer native auth)

All services use Let's Encrypt SSL certificates via Traefik.
2025-11-05 12:48:25 +01:00

107 lines
2.8 KiB
PHP

<?php
declare(strict_types=1);
require_once __DIR__ . '/../../vendor/autoload.php';
echo "=== Correct RS Algorithm Test ===\n\n";
// Initialize GF(256) - same as in ReedSolomonEncoder
$gfLog = array_fill(0, 256, 0);
$gfExp = array_fill(0, 512, 0);
$x = 1;
for ($i = 0; $i < 255; $i++) {
$gfExp[$i] = $x;
$gfLog[$x] = $i;
$x <<= 1;
if ($x & 0x100) {
$x ^= 0x11d;
}
}
for ($i = 255; $i < 512; $i++) {
$gfExp[$i] = $gfExp[$i - 255];
}
function gfMult(array $gfExp, array $gfLog, int $a, int $b): int
{
if ($a === 0 || $b === 0) return 0;
return $gfExp[$gfLog[$a] + $gfLog[$b]];
}
// Correct RS encoding algorithm
function rsEncodeCorrect(array $data, int $ecCodewords, array $gfExp, array $gfLog): array
{
// Generator polynomial from specification
// Format: [0, 251, 67, 46, 61, 118, 70, 64, 94, 32, 45] for 10 EC codewords
// This represents: g(x) = x^10 + 251*x^9 + 67*x^8 + ... + 45
$generators = [
10 => [0, 251, 67, 46, 61, 118, 70, 64, 94, 32, 45],
];
if (!isset($generators[$ecCodewords])) {
throw new Exception("No generator for {$ecCodewords} EC codewords");
}
$generator = $generators[$ecCodewords];
// Message polynomial: [data, 0, 0, ..., 0]
$msg = array_merge($data, array_fill(0, $ecCodewords, 0));
// Polynomial division
// Generator format [0, a1, a2, ...] means leading coefficient is 1
for ($i = 0; $i < count($data); $i++) {
$lead = $msg[$i];
if ($lead !== 0) {
// Clear leading position (division by monic polynomial)
$msg[$i] = 0;
// Apply generator coefficients
// generator[0] = 0 means leading coeff = 1, so we start at j=1
for ($j = 1; $j < count($generator); $j++) {
if ($i + $j < count($msg)) {
$msg[$i + $j] ^= gfMult($gfExp, $gfLog, $generator[$j], $lead);
}
}
}
}
return array_slice($msg, count($data));
}
// Test
$data = [64, 180, 132, 84, 196, 196, 242, 5, 116, 245, 36, 196, 64, 236, 17, 236];
$ecCodewords = 10;
echo "Data: " . implode(', ', $data) . "\n\n";
$ec = rsEncodeCorrect($data, $ecCodewords, $gfExp, $gfLog);
echo "EC codewords: " . implode(', ', $ec) . "\n\n";
// Verify
require_once __DIR__ . '/test-reed-solomon-decoder.php';
$full = array_merge($data, $ec);
$decoder = new SimpleRSDecoder();
$syndromes = $decoder->calculateSyndromes($full, $ecCodewords);
echo "Syndromes: " . implode(', ', $syndromes) . "\n";
$allZero = true;
foreach ($syndromes as $s) {
if ($s !== 0) {
$allZero = false;
break;
}
}
if ($allZero) {
echo "\n✅ ALL SYNDROMES ARE ZERO - Reed-Solomon is CORRECT!\n";
echo "\nThis is the correct algorithm. We need to update our implementation.\n";
} else {
echo "\n❌ Still wrong!\n";
}