163 lines
4.2 KiB
C
163 lines
4.2 KiB
C
#include "donar_init.h"
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void free_udp_t(void* v) {
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struct udp_target* udp_t = v;
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udp_t->ref_count--;
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if (udp_t->ref_count <= 0) {
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free(udp_t);
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}
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}
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int on_signal(struct evt_core_ctx* evts, struct evt_core_fdinfo* fdinfo) {
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struct signalfd_siginfo fdsi;
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int sig_rd = read(fdinfo->fd, &fdsi, sizeof(struct signalfd_siginfo));
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if (sig_rd == -1 && errno == EAGAIN) return 1;
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if (sig_rd != sizeof(struct signalfd_siginfo)) {
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fprintf(stderr, "read size: %d / %ld\n", sig_rd, sizeof(struct signalfd_siginfo));
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perror("signal read failed");
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exit(EXIT_FAILURE);
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}
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printf("Signal received: %d\n", fdsi.ssi_signo);
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if (fdsi.ssi_signo == SIGINT || fdsi.ssi_signo == SIGQUIT || fdsi.ssi_signo == SIGTERM) {
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printf("Stop main loop and quit\n");
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evts->loop = 0;
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}
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return 0;
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}
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void signal_init(struct evt_core_ctx* evts) {
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sigset_t mask = {0};
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struct evt_core_cat signal_read = {
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.name = "signal-read",
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.flags = EPOLLIN | EPOLLET | EPOLLRDHUP,
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.app_ctx = NULL,
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.free_app_ctx = NULL,
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.cb = on_signal,
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.err_cb = NULL
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};
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evt_core_add_cat(evts, &signal_read);
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sigaddset(&mask, SIGINT);
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sigaddset(&mask, SIGQUIT);
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sigaddset(&mask, SIGTERM);
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sigaddset(&mask, SIGPIPE);
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if (sigprocmask(SIG_BLOCK, &mask, NULL) == -1) {
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perror("sigprocmask");
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exit(EXIT_FAILURE);
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}
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int sigfd = signalfd(-1, &mask, 0);
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if (sigfd == -1) {
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perror("signalfd failed");
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exit(EXIT_FAILURE);
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}
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struct evt_core_fdinfo fdinfo = {0};
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fdinfo.fd = sigfd;
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fdinfo.cat = &signal_read;
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fdinfo.url = "signal:read:int+quit";
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evt_core_add_fd(evts, &fdinfo);
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}
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void init_udp_remote(char* port, struct evt_core_ctx* evts) {
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int sock1, sock2;
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char url[1024];
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struct evt_core_cat cat = {0};
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struct evt_core_fdinfo fdinfo = {0};
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// 1. Init shared parameters for the fdinfo structure
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struct udp_target* udp_t = malloc(sizeof(struct udp_target));
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if (udp_t == NULL) goto socket_failed;
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memset(udp_t, 0, sizeof(struct udp_target));
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udp_t->ref_count = 2;
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fdinfo.cat = &cat;
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fdinfo.url = url;
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fdinfo.free_other = free_udp_t;
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fdinfo.other = udp_t;
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// 2. Duplicate sockets
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sock1 = create_udp_server ("127.13.3.7", port);
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if (sock1 < 0) goto socket_failed;
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sock2 = dup(sock1);
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if (sock2 < 0) goto socket_failed;
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// 3. Register them
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fdinfo.cat->name = "udp-read";
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fdinfo.fd = sock1;
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sprintf(fdinfo.url, "udp:read:127.0.0.1:%s", port);
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evt_core_add_fd (evts, &fdinfo);
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fdinfo.cat->name = "udp-write";
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fdinfo.fd = sock2;
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sprintf(fdinfo.url, "udp:write:127.0.0.1:%s", port);
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evt_core_add_fd (evts, &fdinfo);
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return;
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socket_failed:
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fprintf(stderr, "UDP socket init failed\n");
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exit(EXIT_FAILURE);
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}
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void init_udp_exposed(char* bound_ip, char* port, struct evt_core_ctx* evts) {
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int sock1, sock2;
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char url[1024];
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struct evt_core_cat cat = {0};
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struct evt_core_fdinfo fdinfo = {0};
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// 1. Init shared parameters for the fdinfo structure
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struct udp_target* udp_t = malloc(sizeof(struct udp_target));
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if (udp_t == NULL) goto socket_failed;
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memset(udp_t, 0, sizeof(struct udp_target));
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udp_t->ref_count = 2;
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fdinfo.cat = &cat;
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fdinfo.url = url;
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fdinfo.free_other = free_udp_t;
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fdinfo.other = udp_t;
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sock1 = create_udp_client (bound_ip, port);
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if (sock1 < 0) goto socket_failed;
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sock2 = dup(sock1);
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if (sock2 < 0) goto socket_failed;
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fdinfo.fd = sock1;
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fdinfo.cat->name = "udp-read";
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sprintf(fdinfo.url, "udp:read:127.0.0.1:%s", port);
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evt_core_add_fd (evts, &fdinfo);
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fdinfo.fd = sock2;
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fdinfo.cat->name = "udp-write";
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sprintf(fdinfo.url, "udp:write:127.0.0.1:%s", port);
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evt_core_add_fd (evts, &fdinfo);
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return;
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socket_failed:
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fprintf(stderr, "UDP socket init failed\n");
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exit(EXIT_FAILURE);
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}
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void free_port (void* ptr) {
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free(ptr);
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}
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void donar_init_params(struct donar_params* dp) {
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dp->onion_file = NULL;
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dp->algo = NULL;
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dp->capture_file = NULL;
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dp->bound_ip = NULL;
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dp->is_server = 0;
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dp->is_client = 0;
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dp->algo_specific_params = NULL;
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dp->is_waiting_bootstrap = 0;
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dp->errored = 0;
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dp->links = 8;
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dp->fresh_data = 1;
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dp->redundant_data = 0;
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dp->remote_ports = g_ptr_array_new_with_free_func (free_port);
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dp->exposed_ports = g_ptr_array_new_with_free_func (free_port);
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}
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