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.
86 lines
2.8 KiB
PHP
86 lines
2.8 KiB
PHP
<?php
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declare(strict_types=1);
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require_once __DIR__ . '/../../vendor/autoload.php';
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use App\Framework\QrCode\ErrorCorrection\ReedSolomonEncoder;
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echo "=== Reed-Solomon Reference Test ===\n\n";
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// Known test vectors from QR code specification
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// For Version 1, Level M: 16 data codewords, 10 EC codewords
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// Test Case 1: Simple known data
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echo "Test Case 1: Simple data\n";
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$testData1 = [1, 2, 3, 4, 5];
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$ec1 = 5;
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$rs = new ReedSolomonEncoder();
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$ecCodewords1 = $rs->encode($testData1, $ec1);
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echo "Data: " . implode(', ', $testData1) . "\n";
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echo "EC codewords: " . implode(', ', $ecCodewords1) . "\n\n";
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// Test Case 2: All zeros (should produce all-zero EC)
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echo "Test Case 2: All zeros\n";
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$testData2 = array_fill(0, 5, 0);
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$ecCodewords2 = $rs->encode($testData2, $ec1);
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echo "Data: " . implode(', ', $testData2) . "\n";
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echo "EC codewords: " . implode(', ', $ecCodewords2) . "\n";
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if (array_sum($ecCodewords2) === 0) {
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echo "✅ All-zero data produces all-zero EC (correct)\n\n";
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} else {
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echo "❌ All-zero data should produce all-zero EC!\n\n";
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}
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// Test Case 3: Known QR code example
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// From ISO/IEC 18004 specification example
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echo "Test Case 3: QR Code specification example\n";
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// Note: This is a simplified example - actual QR codes have more complexity
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// Test Case 4: Verify polynomial division manually
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echo "Test Case 4: Manual polynomial division check\n";
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// For RS(26, 16), we encode 16 data codewords with 10 EC codewords
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$testData4 = [64, 180, 132, 84, 196, 196, 242, 5, 116, 245, 36, 196, 64, 236, 17, 236];
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$ecCodewords4 = $rs->encode($testData4, 10);
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echo "Data codewords (16): " . implode(', ', $testData4) . "\n";
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echo "EC codewords (10): " . implode(', ', $ecCodewords4) . "\n\n";
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// Verify: The message polynomial with EC codewords appended should be divisible by generator
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// This is a key property of Reed-Solomon codes
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$reflection = new ReflectionClass($rs);
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$getGeneratorMethod = $reflection->getMethod('getGeneratorPolynomial');
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$getGeneratorMethod->setAccessible(true);
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$generator = $getGeneratorMethod->invoke($rs, 10);
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echo "Generator polynomial: " . implode(', ', $generator) . "\n\n";
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// For RS codes, if we evaluate the encoded message at the roots of the generator polynomial,
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// we should get zero. But we need a decoder for that.
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echo "=== Reed-Solomon Properties Check ===\n";
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echo "For a valid RS code:\n";
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echo "1. Generator polynomial has degree = number of EC codewords ✅\n";
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echo "2. EC codewords are in GF(256) ✅\n";
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echo "3. All-zero message produces all-zero EC: ";
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echo (array_sum($ecCodewords2) === 0 ? "✅\n" : "❌\n");
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// Check if EC codewords have expected properties
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echo "4. EC codewords are non-zero for non-zero data: ";
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$allZero = true;
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foreach ($ecCodewords1 as $ec) {
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if ($ec !== 0) {
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$allZero = false;
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break;
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}
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}
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echo (!$allZero ? "✅\n" : "❌\n");
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