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/* Needed by GPGME, specifically gpgme_data_seek() */
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#ifndef _LARGEFILE_SOURCE
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#define _LARGEFILE_SOURCE
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#ifndef _FILE_OFFSET_BITS
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#define _FILE_OFFSET_BITS 64
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#define _GNU_SOURCE /* TEMP_FAILURE_RETRY(), asprintf() */
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INET_ADDRSTRLEN, INET6_ADDRSTRLEN
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#include <unistd.h> /* close(), SEEK_SET, off_t, write(),
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getuid(), getgid(), setuid(),
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getuid(), getgid(), seteuid(),
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#include <arpa/inet.h> /* inet_pton(), htons */
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#include <iso646.h> /* not, or, and */
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argp_parse(), ARGP_KEY_ARG,
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ARGP_KEY_END, ARGP_ERR_UNKNOWN */
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#include <signal.h> /* sigemptyset(), sigaddset(),
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sigaction(), SIGTERM, sigaction,
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sigaction(), SIGTERM, sig_atomic_t,
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#include <sys/klog.h> /* klogctl() */
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gpgme_recipient_t recipient;
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recipient = result->recipients;
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while(recipient != NULL){
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fprintf(stderr, "Public key algorithm: %s\n",
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gpgme_pubkey_algo_name(recipient->pubkey_algo));
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fprintf(stderr, "Key ID: %s\n", recipient->keyid);
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fprintf(stderr, "Secret key available: %s\n",
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recipient->status == GPG_ERR_NO_SECKEY
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recipient = recipient->next;
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while(recipient != NULL){
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fprintf(stderr, "Public key algorithm: %s\n",
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gpgme_pubkey_algo_name(recipient->pubkey_algo));
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fprintf(stderr, "Key ID: %s\n", recipient->keyid);
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fprintf(stderr, "Secret key available: %s\n",
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recipient->status == GPG_ERR_NO_SECKEY
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recipient = recipient->next;
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static int init_gnutls_session(gnutls_session_t *session){
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/* GnuTLS session creation */
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ret = gnutls_init(session, GNUTLS_SERVER);
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ret = gnutls_init(session, GNUTLS_SERVER);
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} while(ret == GNUTLS_E_INTERRUPTED or ret == GNUTLS_E_AGAIN);
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if(ret != GNUTLS_E_SUCCESS){
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fprintf(stderr, "Error in GnuTLS session initialization: %s\n",
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safer_gnutls_strerror(ret));
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ret = gnutls_priority_set_direct(*session, mc.priority, &err);
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ret = gnutls_priority_set_direct(*session, mc.priority, &err);
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} while(ret == GNUTLS_E_INTERRUPTED or ret == GNUTLS_E_AGAIN);
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if(ret != GNUTLS_E_SUCCESS){
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fprintf(stderr, "Syntax error at: %s\n", err);
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fprintf(stderr, "GnuTLS error: %s\n",
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ret = gnutls_credentials_set(*session, GNUTLS_CRD_CERTIFICATE,
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ret = gnutls_credentials_set(*session, GNUTLS_CRD_CERTIFICATE,
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} while(ret == GNUTLS_E_INTERRUPTED or ret == GNUTLS_E_AGAIN);
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if(ret != GNUTLS_E_SUCCESS){
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fprintf(stderr, "Error setting GnuTLS credentials: %s\n",
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safer_gnutls_strerror(ret));
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/* ignore client certificate if any. */
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gnutls_certificate_server_set_request(*session,
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gnutls_certificate_server_set_request(*session, GNUTLS_CERT_IGNORE);
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gnutls_dh_set_prime_bits(*session, mc.dh_bits);
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static void empty_log(__attribute__((unused)) AvahiLogLevel level,
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__attribute__((unused)) const char *txt){}
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sig_atomic_t quit_now = 0;
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int signal_received = 0;
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/* Called when a Mandos server is found */
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static int start_mandos_communication(const char *ip, uint16_t port,
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AvahiIfIndex if_index,
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int ret, tcp_sd = -1;
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struct sockaddr_in in;
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char *decrypted_buffer;
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size_t buffer_length = 0;
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size_t buffer_capacity = 0;
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ssize_t decrypted_buffer_size;
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gnutls_session_t session;
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int pf; /* Protocol family */
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tcp_sd = socket(pf, SOCK_STREAM, 0);
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perror("socket");
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memset(&to, 0, sizeof(to));
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if(af == AF_INET6){
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to.in6.sin6_family = (uint16_t)af;
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to.in6.sin6_family = (sa_family_t)af;
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ret = inet_pton(af, ip, &to.in6.sin6_addr);
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} else { /* IPv4 */
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to.in.sin_family = (sa_family_t)af;
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if(if_index == AVAHI_IF_UNSPEC){
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fprintf(stderr, "An IPv6 link-local address is incomplete"
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" without a network interface\n");
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/* Set the network interface number as scope */
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to.in6.sin6_scope_id = (uint32_t)if_index;
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fprintf(stderr, "Establishing TLS session with %s\n", ip);
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gnutls_transport_set_ptr(session, (gnutls_transport_ptr_t) tcp_sd);
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ret = gnutls_handshake(session);
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} while(ret == GNUTLS_E_AGAIN or ret == GNUTLS_E_INTERRUPTED);
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if(ret != GNUTLS_E_SUCCESS){
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case GNUTLS_E_AGAIN:
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case GNUTLS_E_REHANDSHAKE:
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ret = gnutls_handshake(session);
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} while(ret == GNUTLS_E_AGAIN or ret == GNUTLS_E_INTERRUPTED);
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fprintf(stderr, "*** GnuTLS Re-handshake failed ***\n");
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fprintf(stderr, "Closing TLS session\n");
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gnutls_bye(session, GNUTLS_SHUT_RDWR);
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if(buffer_length > 0){
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ssize_t decrypted_buffer_size;
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decrypted_buffer_size = pgp_packet_decrypt(buffer,
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&decrypted_buffer);
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if(decrypted_buffer_size >= 0){
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while(written < (size_t) decrypted_buffer_size){
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ret = (int)fwrite(decrypted_buffer + written, 1,
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(size_t)decrypted_buffer_size - written,
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sig_atomic_t quit_now = 0;
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/* stop main loop after sigterm has been called */
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static void handle_sigterm(__attribute__((unused)) int sig){
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static void handle_sigterm(int sig){
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signal_received = sig;
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int old_errno = errno;
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if(mc.simple_poll != NULL){
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avahi_simple_poll_quit(mc.simple_poll);
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bool gpgme_initialized = false;
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float delay = 2.5f;
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struct sigaction old_sigterm_action;
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struct sigaction old_sigterm_action = { .sa_handler = SIG_DFL };
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struct sigaction sigterm_action = { .sa_handler = handle_sigterm };
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/* Lower any group privileges we might have, just to be safe */
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/* Lower user privileges (temporarily) */
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struct argp_option options[] = {
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{ .name = "debug", .key = 128,
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exitcode = EXIT_FAILURE;
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ret = sigaction(SIGTERM, &sigterm_action, &old_sigterm_action);
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perror("sigaction");
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exitcode = EXIT_FAILURE;
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/* Need to check if the handler is SIG_IGN before handling:
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| [[info:libc:Initial Signal Actions]] |
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| [[info:libc:Basic Signal Handling]] |
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ret = sigaction(SIGINT, NULL, &old_sigterm_action);
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perror("sigaction");
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return EXIT_FAILURE;
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if(old_sigterm_action.sa_handler != SIG_IGN){
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ret = sigaction(SIGINT, &sigterm_action, NULL);
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perror("sigaction");
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exitcode = EXIT_FAILURE;
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ret = sigaction(SIGHUP, NULL, &old_sigterm_action);
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perror("sigaction");
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return EXIT_FAILURE;
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if(old_sigterm_action.sa_handler != SIG_IGN){
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ret = sigaction(SIGHUP, &sigterm_action, NULL);
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perror("sigaction");
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exitcode = EXIT_FAILURE;
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ret = sigaction(SIGTERM, NULL, &old_sigterm_action);
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perror("sigaction");
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return EXIT_FAILURE;
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if(old_sigterm_action.sa_handler != SIG_IGN){
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ret = sigaction(SIGTERM, &sigterm_action, NULL);
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perror("sigaction");
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exitcode = EXIT_FAILURE;
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/* If the interface is down, bring it up */
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if(interface[0] != '\0'){
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if_index = (AvahiIfIndex) if_nametoindex(interface);
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fprintf(stderr, "No such interface: \"%s\"\n", interface);
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exitcode = EXIT_FAILURE;
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/* Re-raise priviliges */
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#ifdef __linux__
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/* Lower kernel loglevel to KERN_NOTICE to avoid KERN_INFO
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messages to mess up the prompt */
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#endif /* __linux__ */
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exitcode = EXIT_FAILURE;
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/* Lower privileges */
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if((network.ifr_flags & IFF_UP) == 0){
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network.ifr_flags |= IFF_UP;
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take_down_interface = true;
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ret = ioctl(sd, SIOCSIFFLAGS, &network);
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take_down_interface = false;
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perror("ioctl SIOCSIFFLAGS");
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exitcode = EXIT_FAILURE;
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#ifdef __linux__
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gnutls_initialized = true;
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tempdir_created = true;
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if(mkdtemp(tempdir) == NULL){
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tempdir_created = false;
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perror("mkdtemp");
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tempdir_created = true;
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if(not init_gpgme(pubkey, seckey, tempdir)){
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fprintf(stderr, "init_gpgme failed\n");
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gpgme_initialized = true;
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if(interface[0] != '\0'){
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if_index = (AvahiIfIndex) if_nametoindex(interface);
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fprintf(stderr, "No such interface: \"%s\"\n", interface);
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exitcode = EXIT_FAILURE;
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if(connect_to != NULL){
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/* Create the Avahi service browser */
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sb = avahi_s_service_browser_new(mc.server, if_index,
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AVAHI_PROTO_UNSPEC, "_mandos._tcp",
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gpgme_release(mc.ctx);
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/* Take down the network interface */
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if(take_down_interface){
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/* Re-raise priviliges */
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ret = ioctl(sd, SIOCGIFFLAGS, &network);
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perror("ioctl SIOCGIFFLAGS");
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} else if(network.ifr_flags & IFF_UP) {
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network.ifr_flags &= ~IFF_UP; /* clear flag */
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ret = ioctl(sd, SIOCSIFFLAGS, &network);
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perror("ioctl SIOCSIFFLAGS");
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ret = (int)TEMP_FAILURE_RETRY(close(sd));
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/* Lower privileges permanently */
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/* Removes the temp directory used by GPGME */
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if(tempdir_created){