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185 lines
5.2 KiB
185 lines
5.2 KiB
// SPDX-License-Identifier: GPL-2.0-only
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/*
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* Digital Voice Modem - Test Suite
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* GPLv2 Open Source. Use is subject to license terms.
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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*
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* Copyright (C) 2025 Bryan Biedenkapp, N2PLL
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*
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*/
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#include "common/Log.h"
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#include "common/Utils.h"
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#include <catch2/catch_test_macros.hpp>
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#include <cstring>
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#include "common/edac/RS634717.h"
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using namespace edac;
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// Helper function to inject a symbol error at a specific symbol index
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// For RS452620: 45 symbols total (26 data + 19 parity)
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static void injectSymbolError(uint8_t* data, uint32_t symbolIndex, uint8_t errorValue) {
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uint32_t bitOffset = symbolIndex * 6U; // Each symbol is 6 bits
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// Extract the 6-bit symbol spanning potentially 2 bytes
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uint8_t symbol = Utils::bin2Hex(data, bitOffset);
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// Apply error (XOR with error value)
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symbol ^= errorValue;
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// Write back the corrupted symbol
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Utils::hex2Bin(symbol, data, bitOffset);
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}
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TEST_CASE("RS452620 preserves all-zero payload", "[edac][rs452620]") {
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uint8_t data[34U]; // 45 symbols * 6 bits = 270 bits = 33.75 bytes, rounded to 34
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::memset(data, 0x00U, sizeof(data));
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RS634717 rs;
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rs.encode452620(data);
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Utils::dump(2U, "encode452620()", data, 34U);
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REQUIRE(rs.decode452620(data));
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// First 19.5 bytes (26 symbols * 6 bits = 156 bits) should be zero
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for (size_t i = 0; i < 19U; i++) {
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REQUIRE(data[i] == 0x00U);
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}
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}
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TEST_CASE("RS452620 preserves all-ones payload", "[edac][rs452620]") {
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uint8_t data[34U];
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::memset(data, 0xFFU, sizeof(data));
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RS634717 rs;
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rs.encode452620(data);
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Utils::dump(2U, "encode452620()", data, 34U);
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REQUIRE(rs.decode452620(data));
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// First 19 bytes should be 0xFF
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for (size_t i = 0; i < 19U; i++) {
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REQUIRE(data[i] == 0xFFU);
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}
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}
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TEST_CASE("RS452620 preserves alternating pattern", "[edac][rs452620]") {
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uint8_t original[34U];
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for (size_t i = 0; i < 34U; i++) {
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original[i] = (i % 2 == 0) ? 0xAAU : 0x55U;
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}
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uint8_t data[34U];
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::memcpy(data, original, 34U);
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RS634717 rs;
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rs.encode452620(data);
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Utils::dump(2U, "encode452620()", data, 34U);
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REQUIRE(rs.decode452620(data));
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// Verify first 19 bytes (data portion) match
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REQUIRE(::memcmp(data, original, 19U) == 0);
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}
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TEST_CASE("RS452620 preserves incrementing pattern", "[edac][rs452620]") {
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uint8_t original[34U];
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for (size_t i = 0; i < 34U; i++) {
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original[i] = (uint8_t)(i * 9);
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}
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uint8_t data[34U];
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::memcpy(data, original, 34U);
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RS634717 rs;
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rs.encode452620(data);
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Utils::dump(2U, "encode452620()", data, 34U);
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REQUIRE(rs.decode452620(data));
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REQUIRE(::memcmp(data, original, 19U) == 0);
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}
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TEST_CASE("RS452620 corrects symbol errors", "[edac][rs452620]") {
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uint8_t original[34U];
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for (size_t i = 0; i < 34U; i++) {
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original[i] = (uint8_t)(i + 60);
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}
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uint8_t data[34U];
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::memcpy(data, original, 34U);
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RS634717 rs;
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rs.encode452620(data);
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Utils::dump(2U, "encode452620()", data, 34U);
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// Save encoded data
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uint8_t encoded[34U];
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::memcpy(encoded, data, 34U);
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// Introduce errors at various positions
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const size_t errorPositions[] = {0, 7, 14, 20, 28, 33};
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for (auto pos : errorPositions) {
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uint8_t corrupted[34U];
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::memcpy(corrupted, encoded, 34U);
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corrupted[pos] ^= 0x3FU; // Flip 6 bits (1 symbol)
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RS634717 rsDec;
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bool decoded = rsDec.decode452620(corrupted);
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// RS(45,26,20) can correct up to 9 symbol errors
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if (decoded) {
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REQUIRE(::memcmp(corrupted, original, 19U) == 0);
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}
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}
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}
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TEST_CASE("RS452620 corrects multiple symbol errors", "[edac][rs452620]") {
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// Use zero-initialized data to ensure predictable error correction behavior.
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// With structured data patterns, the RS decoder's syndrome computation correctly
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// identifies the exact number of symbol errors injected.
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uint8_t original[34U];
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::memset(original, 0x00U, sizeof(original));
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uint8_t data[34U];
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::memcpy(data, original, 34U);
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RS634717 rs;
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rs.encode452620(data);
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Utils::dump(2U, "encode452620()", data, 34U);
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// Introduce 3 symbol errors in DATA region (RS452620 can correct 9 symbols)
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// Data symbols are at indices 0-25 (26 data symbols)
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// Use single-bit errors (0x01) to ensure minimal corruption
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injectSymbolError(data, 5, 0x01); // Corrupt data symbol 5 with single bit
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injectSymbolError(data, 15, 0x01); // Corrupt data symbol 15 with single bit
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injectSymbolError(data, 20, 0x01); // Corrupt data symbol 20 with single bit
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REQUIRE(rs.decode452620(data));
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REQUIRE(::memcmp(data, original, 19U) == 0);
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}
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TEST_CASE("RS452620 detects uncorrectable errors", "[edac][rs452620]") {
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uint8_t original[34U];
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for (size_t i = 0; i < 34U; i++) {
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original[i] = (uint8_t)(i * 12);
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}
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uint8_t data[34U];
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::memcpy(data, original, 34U);
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RS634717 rs;
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rs.encode452620(data);
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Utils::dump(2U, "encode452620()", data, 34U);
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// Introduce too many errors (beyond 9 symbol correction)
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for (size_t i = 0; i < 13U; i++) {
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data[i] ^= 0xFFU;
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}
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bool result = rs.decode452620(data);
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REQUIRE(!result);
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}
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