187 lines
5.5 KiB
C++
187 lines
5.5 KiB
C++
#include <signal.h>
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#include "ConfigurationManagement/Configurator.hpp"
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#include "Initializer.hpp"
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#include "PacketDissection/PacketContainer.hpp"
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#include "Threads/DefenseThread.hpp"
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void handle_quit(int signum);
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void terminate(DefenseThread** thread_arr, uint16_t nb_worker_threads);
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bool quit = false;
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int main(int argc, char** argv) {
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// ===== INITIALIZE ===== //
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// Register signal and signal handler
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signal(SIGINT, handle_quit);
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Configurator::instance()->read_config("../config.json");
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Initializer* init = new Initializer();
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unsigned int lcore_id;
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uint16_t inside_port = 1;
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uint16_t outside_port = 0;
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uint16_t nb_worker_threads = 0;
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struct rte_mempool* mbuf_pool =
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init->init_dpdk(argc, argv, nb_worker_threads);
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// create thread objects
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DefenseThread* thread_arr[nb_worker_threads];
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MbufContainerReceiving* pkt_containers_from_outside[nb_worker_threads];
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MbufContainerReceiving* pkt_containers_from_inside[nb_worker_threads];
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MbufContainerTransmitting* pkt_containers_to_inside[nb_worker_threads];
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MbufContainerTransmitting* pkt_containers_to_outside[nb_worker_threads];
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for (int i = 0; i < nb_worker_threads; i++) {
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pkt_containers_from_outside[i] =
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new MbufContainerReceiving(mbuf_pool, outside_port, i);
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pkt_containers_from_inside[i] =
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new MbufContainerReceiving(mbuf_pool, inside_port, i);
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pkt_containers_to_inside[i] =
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new MbufContainerTransmitting(mbuf_pool, inside_port, i);
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pkt_containers_to_outside[i] =
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new MbufContainerTransmitting(mbuf_pool, outside_port, i);
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thread_arr[i] = new DefenseThread(
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pkt_containers_from_inside[i], pkt_containers_from_outside[i],
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pkt_containers_to_inside[i], pkt_containers_to_outside[i]);
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}
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// start each thread on an own lcore
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lcore_id = rte_lcore_id();
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for (int i = 0; i < nb_worker_threads; ++i) {
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lcore_id = rte_get_next_lcore(lcore_id, true, true);
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rte_eal_remote_launch(
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static_cast<lcore_function_t*>(DefenseThread::s_run), thread_arr[i],
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lcore_id);
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}
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/*
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uint64_t hz = rte_get_tsc_hz();
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u_int64_t cycles = rte_get_tsc_cycles();
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u_int64_t old_cycles = cycles;
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while (likely(quit == false)) {
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cycles = rte_get_tsc_cycles();
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if (cycles - old_cycles > 64 * hz) {
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Treatment::s_increment_timestamp();
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old_cycles = cycles;
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}
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}
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*/
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// =================== START CLI ==================== //
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std::string input = "";
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const std::string NAME = "aegis";
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enum State { RUNNING, IDLE };
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State state = IDLE;
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while (input != "exit") {
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std::cout << std::endl;
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std::cout << NAME << "> " << std::flush;
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std::cin >> input;
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std::cout << std::endl;
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if (input == "start") {
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if (state == IDLE) {
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for (int i = 0; i < nb_worker_threads; ++i) {
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thread_arr[i]->start_treat();
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}
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state = RUNNING;
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} else { // state == RUNNING
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std::cout << "Cannot start if program is already running."
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<< std::endl;
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}
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} else if (input == "stop") {
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if (state == IDLE) {
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std::cout << "Cannot stop if program is not running."
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<< std::endl;
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} else { // state == RUNNING
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for (int i = 0; i < nb_worker_threads; ++i) {
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thread_arr[i]->stop_treat();
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}
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state = IDLE;
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}
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} else if (input == "exit") {
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// do nothing; while loop stops
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} else if (input == "help" || input == "h") {
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std::cout << "start\tstart " << NAME << std::endl
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<< "stop\tstop " << NAME << std::endl
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<< "help, h\tprint commands " << std::endl
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<< "exit\texit " << NAME << std::endl
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<< std::endl;
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} else {
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std::cout << "Command unknown. Try 'h' or 'help'." << std::endl;
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}
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}
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// ==================== END CLI ==================== //
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// ===== TERMINATE ===== //
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terminate(thread_arr, nb_worker_threads);
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// destruct objects on heap
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for (int i = 0; i < nb_worker_threads; ++i) {
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delete thread_arr[i];
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thread_arr[i] = nullptr;
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delete pkt_containers_from_inside[i];
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pkt_containers_from_inside[i] = nullptr;
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delete pkt_containers_from_outside[i];
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pkt_containers_from_outside[i] = nullptr;
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delete pkt_containers_to_inside[i];
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pkt_containers_to_inside[i] = nullptr;
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delete pkt_containers_to_inside[i];
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pkt_containers_to_inside[i] = nullptr;
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}
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delete init;
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init = nullptr;
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// cleanup eal
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rte_eal_mp_wait_lcore();
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rte_eal_cleanup();
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// YOU ARE TERMINATED
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}
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void handle_quit(int signum) {
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// do nothing
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// quit = true;
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}
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//
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void terminate(DefenseThread** thread_arr, uint16_t nb_worker_threads) {
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std::cout << "\nterminating..." << std::endl;
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for (int i = 0; i < nb_worker_threads; ++i) {
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thread_arr[i]->quit();
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}
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// wait for threads to end
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for (int i = 0; i < nb_worker_threads - 1; ++i) {
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while (thread_arr[i]->is_running()) {
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// wait
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}
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}
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} |