2025-02-28 11:37:30 +05:00
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#include <sodium.h>
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#include <iostream>
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#include <sstream>
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#include <fstream>
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#include <iomanip>
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#include <vector>
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#include <array>
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2025-03-01 01:23:03 +05:00
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#include <string>
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2025-02-28 11:37:30 +05:00
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#include <memory.h>
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#include <thread>
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#include <regex>
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2025-03-01 16:38:11 +05:00
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#include <atomic>
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2025-02-28 11:37:30 +05:00
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#include <arpa/inet.h>
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#include <immintrin.h>
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2025-02-28 11:37:30 +05:00
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struct option {
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unsigned int proc = 0;
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bool log = true;
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int high = 20;
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std::string outputfile;
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};
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static option conf;
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int parameters(option& conf, std::string arg) {
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if (arg.find(" ") != std::string::npos) {
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const unsigned long npos = std::string::npos;
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int position = arg.find(" ");
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std::istringstream ss(arg.substr(position + 1));
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if (arg.find("--threads") != npos || arg.find("-t") != npos) {
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ss >> conf.proc;
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if (ss.fail()) return 1;
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return 0;
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}
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if (arg.find("--altitude") != npos || arg.find("-a") != npos) {
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int tmp_high;
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ss >> std::hex >> tmp_high;
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if (ss.fail()) return 1;
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conf.high = tmp_high;
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return 0;
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}
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}
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if (arg == "--threads" || arg == "-t") return 777;
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2025-02-28 11:37:30 +05:00
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else if (arg == "--altitude" || arg == "-a") return 777;
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return 0;
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}
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void displayConfig() {
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2025-02-28 12:53:12 +05:00
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unsigned short processor_count = std::thread::hardware_concurrency();
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if (conf.proc == 0 || conf.proc > static_cast<unsigned int>(processor_count)) {
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conf.proc = static_cast<unsigned int>(processor_count);
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}
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std::cout << " Threads: " << conf.proc << ", " << "high addresses (2" << std::setw(2) << std::setfill('0') << std::hex << conf.high << "+)" << std::dec << std::endl;
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}
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using Address = unsigned char[16];
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using Key = unsigned char[32];
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struct KeysBox {
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Key PublicKey;
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Key PrivateKey;
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};
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std::string getAddress(const Address& rawAddr) {
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char ipStrBuf[46];
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inet_ntop(AF_INET6, rawAddr, ipStrBuf, 46);
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return std::string(ipStrBuf);
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}
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inline std::string keyToString(const unsigned char* key) {
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std::string result;
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result.resize(64);
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const char* hexDigits = "0123456789abcdef";
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for (unsigned char i = 0; i < 32; i++) {
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result[2 * i] = hexDigits[key[i] >> 4];
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result[2 * i + 1] = hexDigits[key[i] & 0x0F];
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}
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return result;
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}
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inline void bitwiseInverse(const unsigned char* key, Key& inverted) noexcept {
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__m256i chunk = _mm256_loadu_si256(reinterpret_cast<const __m256i*>(key));
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chunk = _mm256_xor_si256(chunk, _mm256_set1_epi8(0xFF));
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_mm256_storeu_si256(reinterpret_cast<__m256i*>(inverted), chunk);
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}
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inline unsigned char getOnes(const Key& value) noexcept {
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int leadOnes = 0;
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for (unsigned char i = 0; i < 32; i++) {
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if (value[0] != 0xFF && value[1] != 0xFF) return leadOnes;
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if (value[i] == 0xFF) {
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leadOnes += 8;
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} else {
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for (unsigned char j = 7; j < 8; j--) {
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if (!(value[i] & (1 << j))) {
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return leadOnes;
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}
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leadOnes++;
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}
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}
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}
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return leadOnes;
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}
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void miner_thread() noexcept {
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Key inv;
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KeysBox keys;
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unsigned char ones;
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while (true) {
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crypto_sign_ed25519_keypair(keys.PublicKey, keys.PrivateKey);
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bitwiseInverse(keys.PublicKey, inv);
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ones = getOnes(inv);
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if (ones > conf.high) {
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printf("\nAddr:\t2%x/%d\nPK:\t%s\nSK:\t%s\n", conf.high = ones, ones, keyToString(keys.PublicKey).c_str(), keyToString(keys.PrivateKey).c_str());
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}
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}
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}
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void startThreads() noexcept {
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std::vector<std::thread> threads;
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for (unsigned char i = 0; i < conf.proc; i++) {
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threads.emplace_back(miner_thread);
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}
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for (auto& thread : threads) {
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thread.join();
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}
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}
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int main(int argc, char* argv[]) {
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if (argc >= 2) {
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int res = -1;
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for (int i = 1;; ++i) {
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if (argv[i] == nullptr) break;
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res = parameters(conf, std::string(argv[i]));
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if (res == 777) {
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i++;
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if (argv[i] == nullptr) {
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std::cerr << " Empty value for parameter \"" << argv[i - 1] << "\"" << std::endl;
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return 776;
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}
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int res2 = parameters(conf, std::string(std::string(argv[i - 1]) + " " + std::string(argv[i])));
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if (res2 != 0) {
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std::cerr << " Wrong value \"" << argv[i] << "\" for parameter \"" << argv[i - 1] << "\"" << std::endl;
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return res;
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}
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}
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}
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}
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displayConfig();
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startThreads();
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}
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/*
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void getRawAddress(int lErase, Key& InvertedPublicKey, Address& rawAddr) {
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lErase++;
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const int bitsToShift = lErase % 8;
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const int start = lErase / 8;
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const int invSize = start + 15;
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if (bitsToShift == 0) {
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for (int i = start; i < invSize; ++i)
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InvertedPublicKey[i] = InvertedPublicKey[i];
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} else {
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const int complementary = 8 - bitsToShift;
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for (int i = start; i < start + 15; ++i) {
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InvertedPublicKey[i] = static_cast<unsigned char>((InvertedPublicKey[i] << bitsToShift) | (InvertedPublicKey[i + 1] >> complementary));
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}
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}
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rawAddr[0] = 0x02;
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rawAddr[1] = static_cast<unsigned char>(lErase - 1);
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memcpy(&rawAddr[2], &InvertedPublicKey[start], 14);
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}
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void logKeys(const Address& raw, const KeysBox& keys) {
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std::cout << std::endl;
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std::cout << " Address: " << getAddress(raw) << std::endl;
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std::cout << " PublicKey: " << keyToString(keys.PublicKey) << std::endl;
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std::cout << " PrivateKey: " << keyToString(keys.PrivateKey);
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if (!conf.log || conf.fullkeys) std::cout << keyToString(keys.PublicKey);
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std::cout << std::endl << std::endl;
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if (conf.log) {
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std::ofstream output(conf.outputfile, std::ios::app);
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output << std::endl;
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output << "Address: " << getAddress(raw) << std::endl;
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output << "PublicKey: " << keyToString(keys.PublicKey) << std::endl;
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output << "PrivateKey: " << keyToString(keys.PrivateKey) << keyToString(keys.PublicKey) << std::endl;
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output.close();
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}
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}
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*/
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