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430 lines
10 KiB
C
430 lines
10 KiB
C
/* source: xio-ipapp.c */
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/* Copyright Gerhard Rieger and contributors (see file CHANGES) */
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/* Published under the GNU General Public License V.2, see file COPYING */
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/* this file contains the source for TCP and UDP related options */
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#include "xiosysincludes.h"
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#if WITH_TCP || WITH_UDP
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#include "xioopen.h"
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#include "xio-socket.h"
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#include "xio-ip.h"
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#include "xio-listen.h"
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#include "xio-ip6.h"
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#include "xio-ipapp.h"
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const struct optdesc opt_sourceport = { "sourceport", "sp", OPT_SOURCEPORT, GROUP_IPAPP, PH_LATE,TYPE_2BYTE, OFUNC_SPEC };
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/*const struct optdesc opt_port = { "port", NULL, OPT_PORT, GROUP_IPAPP, PH_BIND, TYPE_USHORT, OFUNC_SPEC };*/
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const struct optdesc opt_lowport = { "lowport", NULL, OPT_LOWPORT, GROUP_IPAPP, PH_LATE, TYPE_BOOL, OFUNC_SPEC };
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#if WITH_IP4
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/* we expect the form "host:port" */
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int xioopen_ipapp_connect(
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int argc,
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const char *argv[],
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struct opt *opts,
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int xioflags,
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xiofile_t *xxfd,
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const struct addrdesc *addrdesc)
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{
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struct single *sfd = &xxfd->stream;
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struct opt *opts0 = NULL;
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int socktype = addrdesc->arg1;
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int ipproto = addrdesc->arg2;
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int pf = addrdesc->arg3;
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const char *hostname = argv[1], *portname = argv[2];
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bool dofork = false;
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union sockaddr_union us_sa, *us = &us_sa;
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socklen_t uslen = sizeof(us_sa);
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struct addrinfo *themlist, *themp;
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char infobuff[256];
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bool needbind = false;
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bool lowport = false;
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int level;
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struct addrinfo **ai_sorted;
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int i;
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int result;
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if (argc != 3) {
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xio_syntax(argv[0], 2, argc-1, addrdesc->syntax);
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return STAT_NORETRY;
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}
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xioinit_ip(&pf, xioparms.default_ip);
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sfd->howtoend = END_SHUTDOWN;
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if (applyopts_single(sfd, opts, PH_INIT) < 0)
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return -1;
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applyopts(sfd, -1, opts, PH_INIT);
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retropt_bool(opts, OPT_FORK, &dofork);
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if (_xioopen_ipapp_prepare(opts, &opts0, hostname, portname, &pf, ipproto,
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sfd->para.socket.ip.ai_flags,
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&themlist, us, &uslen, &needbind, &lowport,
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socktype) != STAT_OK) {
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return STAT_NORETRY;
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}
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if (dofork) {
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xiosetchilddied(); /* set SIGCHLD handler */
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}
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if (xioparms.logopt == 'm') {
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Info("starting connect loop, switching to syslog");
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diag_set('y', xioparms.syslogfac); xioparms.logopt = 'y';
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} else {
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Info("starting connect loop");
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}
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/* Count addrinfo entries */
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themp = themlist;
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i = 0;
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while (themp != NULL) {
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++i;
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themp = themp->ai_next;
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}
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ai_sorted = Calloc((i+1), sizeof(struct addrinfo *));
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if (ai_sorted == NULL)
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return STAT_RETRYLATER;
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/* Generate a list of addresses sorted by preferred ip version */
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_xio_sort_ip_addresses(themlist, ai_sorted);
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do { /* loop over retries, and forks */
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/* Loop over themlist - no, over ai_sorted */
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result = STAT_RETRYLATER;
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i = 0;
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themp = ai_sorted[i++];
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while (themp != NULL) {
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Notice1("opening connection to %s",
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sockaddr_info(themp->ai_addr, themp->ai_addrlen,
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infobuff, sizeof(infobuff)));
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#if WITH_RETRY
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if (sfd->forever || sfd->retry || ai_sorted[i] != NULL) {
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level = E_INFO;
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} else
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#endif /* WITH_RETRY */
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level = E_ERROR;
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result =
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_xioopen_connect(sfd,
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needbind?us:NULL, uslen,
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themp->ai_addr, themp->ai_addrlen,
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opts, pf?pf:themp->ai_family, socktype, ipproto,
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lowport, level);
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if (result == STAT_OK)
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break;
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themp = ai_sorted[i++];
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if (themp == NULL) {
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result = STAT_RETRYLATER;
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}
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}
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switch (result) {
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case STAT_OK: break;
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#if WITH_RETRY
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case STAT_RETRYLATER:
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case STAT_RETRYNOW:
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if (sfd->forever || sfd->retry) {
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--sfd->retry;
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if (result == STAT_RETRYLATER) {
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Nanosleep(&sfd->intervall, NULL);
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}
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dropopts(opts, PH_ALL); free(opts); opts = copyopts(opts0, GROUP_ALL);
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continue;
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}
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#endif /* WITH_RETRY */
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default:
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free(ai_sorted);
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free(opts0);free(opts);
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return result;
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}
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#if WITH_RETRY
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if (dofork) {
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pid_t pid;
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int level = E_ERROR;
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if (sfd->forever || sfd->retry) {
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level = E_WARN; /* most users won't expect a problem here,
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so Notice is too weak */
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}
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while ((pid = xio_fork(false, level, sfd->shutup)) < 0) {
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if (sfd->forever || --sfd->retry) {
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Nanosleep(&sfd->intervall, NULL); continue;
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}
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free(ai_sorted);
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free(opts0);
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return STAT_RETRYLATER;
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}
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if (pid == 0) { /* child process */
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sfd->forever = false; sfd->retry = 0;
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break;
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}
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/* parent process */
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Close(sfd->fd);
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/* with and without retry */
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Nanosleep(&sfd->intervall, NULL);
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dropopts(opts, PH_ALL); free(opts); opts = copyopts(opts0, GROUP_ALL);
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continue; /* with next socket() bind() connect() */
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} else
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#endif /* WITH_RETRY */
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{
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break;
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}
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} while (true);
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/* only "active" process breaks (master without fork, or child) */
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free(ai_sorted);
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xiofreeaddrinfo(themlist);
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if ((result = _xio_openlate(sfd, opts)) < 0) {
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free(opts0);free(opts);
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return result;
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}
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free(opts0); free(opts);
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return 0;
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}
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/* returns STAT_OK on success or some other value on failure
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applies and consumes the following options:
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PH_EARLY
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OPT_PROTOCOL_FAMILY, OPT_BIND, OPT_SOURCEPORT, OPT_LOWPORT
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*/
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int
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_xioopen_ipapp_prepare(
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struct opt *opts,
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struct opt **opts0,
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const char *hostname,
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const char *portname,
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int *pf,
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int protocol,
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const int ai_flags[2],
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struct addrinfo **themlist,
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union sockaddr_union *us,
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socklen_t *uslen,
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bool *needbind,
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bool *lowport,
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int socktype) {
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uint16_t port;
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int result;
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retropt_socket_pf(opts, pf);
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if (hostname != NULL || portname != NULL) {
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if ((result =
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xiogetaddrinfo(hostname, portname,
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*pf, socktype, protocol,
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themlist, ai_flags))
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!= STAT_OK) {
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return STAT_NORETRY; /*! STAT_RETRYLATER? */
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}
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}
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applyopts(NULL, -1, opts, PH_EARLY);
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/* 3 means: IP address AND port accepted */
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if (retropt_bind(opts, (*pf!=PF_UNSPEC)?*pf:(*themlist)->ai_family,
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socktype, protocol, (struct sockaddr *)us, uslen, 3,
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ai_flags)
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!= STAT_NOACTION) {
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*needbind = true;
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} else {
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switch ((*pf!=PF_UNSPEC)?*pf:(*themlist)->ai_family) {
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#if WITH_IP4
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case PF_INET: socket_in_init(&us->ip4); *uslen = sizeof(us->ip4); break;
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#endif /* WITH_IP4 */
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#if WITH_IP6
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case PF_INET6: socket_in6_init(&us->ip6); *uslen = sizeof(us->ip6); break;
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#endif /* WITH_IP6 */
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default: Error("unsupported protocol family");
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}
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}
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if (retropt_2bytes(opts, OPT_SOURCEPORT, &port) >= 0) {
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switch ((*pf!=PF_UNSPEC)?*pf:(*themlist)->ai_family) {
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#if WITH_IP4
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case PF_INET: us->ip4.sin_port = htons(port); break;
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#endif /* WITH_IP4 */
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#if WITH_IP6
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case PF_INET6: us->ip6.sin6_port = htons(port); break;
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#endif /* WITH_IP6 */
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default: Error("unsupported protocol family");
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}
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*needbind = true;
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}
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retropt_bool(opts, OPT_LOWPORT, lowport);
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*opts0 = copyopts(opts, GROUP_ALL);
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return STAT_OK;
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}
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#endif /* WITH_IP4 */
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#if WITH_TCP && WITH_LISTEN
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/*
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applies and consumes the following options:
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OPT_PROTOCOL_FAMILY, OPT_BIND
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*/
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int _xioopen_ipapp_listen_prepare(
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struct opt *opts,
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struct opt **opts0,
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const char *portname,
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int *pf,
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int ipproto,
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const int ai_flags[2],
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union sockaddr_union *us,
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socklen_t *uslen,
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int socktype)
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{
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char *bindname = NULL;
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int ai_flags2[2];
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int result;
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retropt_socket_pf(opts, pf);
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retropt_string(opts, OPT_BIND, &bindname);
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/* Set AI_PASSIVE, except when it is explicitely disabled */
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ai_flags2[0] = ai_flags[0];
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ai_flags2[1] = ai_flags[1];
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if (!(ai_flags2[1] & AI_PASSIVE))
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ai_flags2[0] |= AI_PASSIVE;
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result =
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xioresolve(bindname, portname, *pf, socktype, ipproto,
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us, uslen, ai_flags2);
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if (result != STAT_OK) {
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/*! STAT_RETRY? */
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return result;
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}
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*opts0 = copyopts(opts, GROUP_ALL);
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return STAT_OK;
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}
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/* we expect the form: port */
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/* currently only used for TCP4 */
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int xioopen_ipapp_listen(
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int argc,
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const char *argv[],
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struct opt *opts,
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int xioflags,
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xiofile_t *xfd,
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const struct addrdesc *addrdesc)
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{
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struct single *sfd = &xfd->stream;
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struct opt *opts0 = NULL;
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int socktype = addrdesc->arg1;
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int ipproto = addrdesc->arg2;
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int pf = addrdesc->arg3;
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union sockaddr_union us_sa, *us = &us_sa;
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socklen_t uslen = sizeof(us_sa);
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int result;
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if (argc != 2) {
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xio_syntax(argv[0], 2, argc-1, addrdesc->syntax);
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return STAT_NORETRY;
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}
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xioinit_ip(&pf, xioparms.default_ip);
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if (pf == PF_UNSPEC) {
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#if WITH_IP4 && WITH_IP6
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switch (xioparms.default_ip) {
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case '4': pf = PF_INET; break;
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case '6': pf = PF_INET6; break;
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default: break; /* includes \0 */
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}
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#elif WITH_IP6
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pf = PF_INET6;
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#else
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pf = PF_INET;
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#endif
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}
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sfd->howtoend = END_SHUTDOWN;
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if (applyopts_single(sfd, opts, PH_INIT) < 0) return -1;
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applyopts(sfd, -1, opts, PH_INIT);
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applyopts(sfd, -1, opts, PH_EARLY);
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if (_xioopen_ipapp_listen_prepare(opts, &opts0, argv[1], &pf, ipproto,
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sfd->para.socket.ip.ai_flags,
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us, &uslen, socktype)
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!= STAT_OK) {
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return STAT_NORETRY;
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}
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if ((result =
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xioopen_listen(sfd, xioflags,
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(struct sockaddr *)us, uslen,
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opts, opts0, pf, socktype, ipproto))
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!= 0)
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return result;
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return 0;
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}
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#endif /* WITH_IP4 && WITH_TCP && WITH_LISTEN */
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/* Sort the records of an addrinfo list themp (as returned by getaddrinfo),
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return the sorted list in the array ai_sorted (takes at most n entries
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including the terminating NULL)
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Returns 0 on success. */
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int _xio_sort_ip_addresses(
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struct addrinfo *themlist,
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struct addrinfo **ai_sorted)
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{
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struct addrinfo *themp;
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int i;
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int ipv[3];
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int ipi = 0;
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/* Make a simple array of IP version preferences */
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switch (xioparms.preferred_ip) {
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case '0':
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ipv[0] = PF_UNSPEC;
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ipv[1] = -1;
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break;
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case '4':
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ipv[0] = PF_INET;
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ipv[1] = PF_INET6;
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ipv[2] = -1;
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break;
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case '6':
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ipv[0] = PF_INET6;
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ipv[1] = PF_INET;
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ipv[2] = -1;
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break;
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default:
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Error("INTERNAL: undefined preferred_ip value");
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return -1;
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}
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/* Create the sorted list */
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ipi = 0;
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i = 0;
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while (ipv[ipi] >= 0) {
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themp = themlist;
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while (themp != NULL) {
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if (ipv[ipi] == PF_UNSPEC) {
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ai_sorted[i] = themp;
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++i;
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} else if (ipv[ipi] == themp->ai_family) {
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ai_sorted[i] = themp;
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++i;
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}
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themp = themp->ai_next;
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}
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++ipi;
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}
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ai_sorted[i] = NULL;
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return 0;
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}
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#endif /* WITH_TCP || WITH_UDP */
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