Initial work on the new implementation
[doldaconnect.git] / daemon / net.c
CommitLineData
d3372da9 1/*
2 * Dolda Connect - Modular multiuser Direct Connect-style client
302a2600 3 * Copyright (C) 2004 Fredrik Tolf <fredrik@dolda2000.com>
d3372da9 4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation; either version 2 of the License, or
8 * (at your option) any later version.
9 *
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
18*/
19/* XXX: Implement SOCKS proxyability */
20
21#ifdef HAVE_CONFIG_H
22#include <config.h>
23#endif
24#include <string.h>
25#include <stdlib.h>
26#include <unistd.h>
27#include <fcntl.h>
28#include <sys/ioctl.h>
29#include <sys/socket.h>
30#include <sys/un.h>
72a7835e 31#include <sys/select.h>
d3372da9 32#include <arpa/inet.h>
33#include <netinet/in.h>
34#include <netdb.h>
35#include <sys/signal.h>
7ab36fbd 36#include <sys/stat.h> /* For rebindunix() */
d3372da9 37#ifdef HAVE_LINUX_SOCKIOS_H
38#include <linux/sockios.h>
39#endif
40#include <errno.h>
41#include <net/if.h>
42
43#include "conf.h"
44#include "net.h"
45#include "module.h"
46#include "log.h"
47#include "utils.h"
48#include "sysevents.h"
49
50static struct configvar myvars[] =
51{
d9f89ef5 52 /** The network mode to use. Currently supported values are 0 for
53 * active mode and 1 for passive mode. In the future, SOCKS5 proxy
54 * support may be added. */
d3372da9 55 {CONF_VAR_INT, "mode", {.num = 0}},
d9f89ef5 56 /** Set the SO_REUSEADDR socket option on listening sockets, so
57 * that dead TCP connections waiting for timeout are ignored. */
347d6d76 58 {CONF_VAR_BOOL, "reuseaddr", {.num = 0}},
d9f89ef5 59 /** Overrides the IPv4 address reported to other clients in active
60 * mode. Useful for servers behind NAT routers. If both this and
61 * net.publicif are unspecified the address of the hub connection
62 * is used. */
d3372da9 63 {CONF_VAR_IPV4, "visibleipv4", {.ipv4 = {0}}},
d9f89ef5 64 /** Specifies an interface name from which to fetch the IPv4
65 * address reported to other clients in active mode. If both this
66 * and net.visibleipv4 are unspecified the address of the hub
67 * connection is used. */
d3372da9 68 {CONF_VAR_STRING, "publicif", {.str = L""}},
b020fb3d 69 /* Diffserv should be supported on IPv4, too, but I don't know the
70 * API to do that. */
d9f89ef5 71 /** The Diffserv value to use on IPv6 connections when the
72 * minimize cost TOS value is used (see the TOS VALUES
73 * section). */
b020fb3d 74 {CONF_VAR_INT, "diffserv-mincost", {.num = 0}},
d9f89ef5 75 /** The Diffserv value to use on IPv6 connections when the
76 * maximize reliability TOS value is used (see the TOS VALUES
77 * section). */
b020fb3d 78 {CONF_VAR_INT, "diffserv-maxrel", {.num = 0}},
d9f89ef5 79 /** The Diffserv value to use on IPv6 connections when the
80 * maximize throughput TOS value is used (see the TOS VALUES
81 * section). */
b020fb3d 82 {CONF_VAR_INT, "diffserv-maxtp", {.num = 0}},
d9f89ef5 83 /** The Diffserv value to use on IPv6 connections when the
84 * minimize delay TOS value is used (see the TOS VALUES
85 * section). */
b020fb3d 86 {CONF_VAR_INT, "diffserv-mindelay", {.num = 0}},
d3372da9 87 {CONF_VAR_END}
88};
89
02a705ad
FT
90#define UFD_SOCK 0
91#define UFD_PIPE 1
92#define UFD_LISTEN 2
93
94struct scons {
95 struct scons *n, *p;
96 struct socket *s;
97};
98
99struct ufd {
100 struct ufd *next, *prev;
101 int fd;
102 int type;
103 int ignread;
104 struct socket *sk;
105 union {
106 struct {
107 int family;
108 int type;
109 struct sockaddr *remote;
110 socklen_t remotelen;
111 struct {
112 uid_t uid;
113 gid_t gid;
114 } ucred;
115 } s;
116 struct {
117 struct lport *lp;
118 int family;
119 } l;
120 } d;
121};
122
123static struct ufd *ufds = NULL;
124static struct scons *rbatch, *wbatch, *cbatch;
d3372da9 125int numsocks = 0;
126
127/* XXX: Get autoconf for all this... */
128int getpublicaddr(int af, struct sockaddr **addr, socklen_t *lenbuf)
129{
130 struct sockaddr_in *ipv4;
131 struct configvar *var;
132 void *bufend;
133 int sock;
134 struct ifconf conf;
135 struct ifreq *ifr, req;
136 char *pif;
137
138 if(af == AF_INET)
139 {
140 var = confgetvar("net", "visibleipv4");
141 if(var->val.ipv4.s_addr != 0)
142 {
143 ipv4 = smalloc(sizeof(*ipv4));
144 ipv4->sin_family = AF_INET;
145 ipv4->sin_addr.s_addr = var->val.ipv4.s_addr;
146 *addr = (struct sockaddr *)ipv4;
147 *lenbuf = sizeof(*ipv4);
148 return(0);
149 }
bcb73bb3 150 if((pif = icswcstombs(confgetstr("net", "publicif"), NULL, NULL)) == NULL)
d3372da9 151 {
152 flog(LOG_ERR, "could not convert net.publicif into local charset: %s", strerror(errno));
153 return(-1);
154 }
6fb0c6ac 155 if(!strcmp(pif, ""))
156 return(1);
d3372da9 157 if((sock = socket(AF_INET, SOCK_DGRAM, 0)) < 0)
158 return(-1);
159 conf.ifc_buf = smalloc(conf.ifc_len = 65536);
160 if(ioctl(sock, SIOCGIFCONF, &conf) < 0)
161 {
162 free(conf.ifc_buf);
163 close(sock);
164 return(-1);
165 }
166 bufend = ((char *)conf.ifc_buf) + conf.ifc_len;
167 ipv4 = NULL;
168 for(ifr = conf.ifc_ifcu.ifcu_req; (void *)ifr < bufend; ifr++)
169 {
1315d02a 170 if(strcmp(ifr->ifr_name, pif))
6fb0c6ac 171 continue;
d3372da9 172 memset(&req, 0, sizeof(req));
173 memcpy(req.ifr_name, ifr->ifr_name, sizeof(ifr->ifr_name));
174 if(ioctl(sock, SIOCGIFFLAGS, &req) < 0)
6fb0c6ac 175 break;
176 if(!(req.ifr_flags & IFF_UP))
d3372da9 177 {
6fb0c6ac 178 flog(LOG_WARNING, "public interface is down");
179 break;
d3372da9 180 }
6fb0c6ac 181 if(ifr->ifr_addr.sa_family != AF_INET)
d3372da9 182 {
6fb0c6ac 183 flog(LOG_WARNING, "address of the public interface is not AF_INET");
184 break;
d3372da9 185 }
6fb0c6ac 186 ipv4 = smalloc(sizeof(*ipv4));
187 memcpy(ipv4, &ifr->ifr_addr, sizeof(ifr->ifr_addr));
188 break;
d3372da9 189 }
bcb73bb3 190 free(conf.ifc_buf);
d3372da9 191 close(sock);
192 if(ipv4 != NULL)
193 {
194 *addr = (struct sockaddr *)ipv4;
195 *lenbuf = sizeof(*ipv4);
196 return(0);
197 }
198 errno = ENETDOWN;
199 return(-1);
200 }
6fb0c6ac 201 return(1);
d3372da9 202}
203
02a705ad 204static struct socket *newsock1(int dgram)
d3372da9 205{
206 struct socket *new;
207
02a705ad
FT
208 new = memset(smalloc(sizeof(*new)), 0, sizeof(*new));
209 new->refcount = 1;
d3372da9 210 new->state = -1;
02a705ad 211 new->dgram = dgram;
d3372da9 212 numsocks++;
213 return(new);
214}
215
02a705ad
FT
216static struct socket *sockpair(int dgram)
217{
218 struct socket *s1, *s2;
219
220 s1 = newsock1(dgram);
221 s2 = newsock1(dgram);
222 s1->back = s2;
223 s2->back = s1;
224 putsock(s2);
225 return(s1);
226}
227
228static void sksetstate(struct socket *sk, int state)
229{
230 sk->state = state;
231 sk->back->state = state;
232}
233
234static void closeufd(struct ufd *ufd)
235{
236 if(ufd->fd != -1)
237 close(ufd->fd);
238 ufd->fd = -1;
239}
240
241static void freeufd(struct ufd *ufd)
242{
243 if(ufd->next != NULL)
244 ufd->next->prev = ufd->prev;
245 if(ufd->prev != NULL)
246 ufd->prev->next = ufd->next;
247 if(ufd == ufds)
248 ufds = ufd->next;
249 closeufd(ufd);
250 putsock(ufd->sk);
251 if(ufd->type == UFD_SOCK) {
252 if(ufd->d.s.remote != NULL)
253 free(ufd->d.s.remote);
254 }
255 free(ufd);
256}
257
258static struct ufd *mkufd(int fd, int type, struct socket *sk)
259{
260 struct ufd *ufd;
261
262 ufd = memset(smalloc(sizeof(*ufd)), 0, sizeof(*ufd));
263 ufd->fd = fd;
264 if(sk != NULL) {
265 getsock(ufd->sk = sk);
266 sk->ufd = ufd;
267 }
268 if(type == UFD_SOCK) {
269 ufd->d.s.ucred.uid = -1;
270 ufd->d.s.ucred.gid = -1;
271 }
272 ufd->next = ufds;
273 if(ufds)
274 ufds->prev = ufd;
275 ufds = ufd;
276 return(ufd);
277}
278
279static struct ufd *dupufd(struct ufd *ufd)
280{
281 struct ufd *nufd;
282 struct socket *nsk;
283
284 if(ufd->sk != NULL)
285 nsk = sockpair(ufd->sk->dgram);
286 else
287 nsk = NULL;
288 nufd = mkufd(ufd->fd, ufd->type, nsk);
289 if(nsk != NULL)
290 putsock(nsk);
291 if((nufd->fd = dup(ufd->fd)) < 0)
292 {
293 flog(LOG_WARNING, "could not dup() fd: %s", strerror(errno));
294 freeufd(nufd);
295 return(NULL);
296 }
297 if(ufd->type == UFD_SOCK) {
298 nufd->d.s.family = ufd->d.s.family;
299 nufd->d.s.type = ufd->d.s.type;
300 nufd->d.s.ucred.uid = ufd->d.s.ucred.uid;
301 nufd->d.s.ucred.gid = ufd->d.s.ucred.gid;
302 if(ufd->d.s.remote != NULL)
303 nufd->d.s.remote = memcpy(smalloc(ufd->d.s.remotelen), ufd->d.s.remote, nufd->d.s.remotelen = ufd->d.s.remotelen);
304 } else if(ufd->type == UFD_LISTEN) {
305 nufd->d.l.family = ufd->d.l.family;
306 }
307 return(nufd);
308}
309
d3372da9 310static struct socket *mksock(int domain, int type)
311{
312 int fd;
02a705ad
FT
313 struct socket *sk;
314 struct ufd *ufd;
d3372da9 315
316 if((fd = socket(domain, type, 0)) < 0)
317 {
318 flog(LOG_CRIT, "could not create socket: %s", strerror(errno));
319 return(NULL);
320 }
02a705ad
FT
321 sk = sockpair(type == SOCK_DGRAM);
322 ufd = mkufd(fd, UFD_SOCK, sk);
323 ufd->d.s.family = domain;
324 ufd->d.s.type = type;
d3372da9 325 fcntl(fd, F_SETFL, fcntl(fd, F_GETFL) | O_NONBLOCK);
02a705ad 326 return(sk);
d3372da9 327}
328
329struct socket *wrapsock(int fd)
330{
02a705ad
FT
331 struct socket *sk;
332 struct ufd *ufd;
d3372da9 333
02a705ad
FT
334 sk = sockpair(0);
335 ufd = mkufd(fd, UFD_PIPE, sk->back);
336 sksetstate(sk, SOCK_EST);
d3372da9 337 fcntl(fd, F_SETFL, fcntl(fd, F_GETFL) | O_NONBLOCK);
02a705ad 338 return(sk);
d3372da9 339}
340
341void getsock(struct socket *sk)
342{
343 sk->refcount++;
344}
345
02a705ad 346static void freesock(struct socket *sk)
d3372da9 347{
348 struct dgrambuf *buf;
349
02a705ad
FT
350 if(sk->dgram) {
351 while((buf = sk->buf.d.f) != NULL) {
352 sk->buf.d.f = buf->next;
353 freedgbuf(buf);
d3372da9 354 }
02a705ad
FT
355 } else {
356 if(sk->buf.s.buf != NULL)
357 free(sk->buf.s.buf);
358 }
359 free(sk);
360 numsocks--;
361}
362
363void putsock(struct socket *sk)
364{
365 if(--(sk->refcount) < 0) {
366 flog(LOG_CRIT, "BUG: socket refcount < 0");
367 abort();
368 }
369 if((sk->refcount == 0) && (sk->back->refcount == 0)) {
370 freesock(sk);
371 freesock(sk->back);
372 }
373}
374
375static void linksock(struct scons **list, struct socket *sk)
376{
377 struct scons *sc;
378
379 for(sc = *list; sc != NULL; sc = sc->n) {
380 if(sc->s == sk)
381 return;
d3372da9 382 }
02a705ad
FT
383 sc = smalloc(sizeof(*sc));
384 getsock(sc->s = sk);
385 sc->n = *list;
386 sc->p = NULL;
387 if(*list)
388 (*list)->p = sc;
389 *list = sc;
d3372da9 390}
391
336539c2 392void sockpushdata(struct socket *sk, void *buf, size_t size)
393{
02a705ad
FT
394 if(size == 0)
395 return;
396 if(sk->dgram) {
336539c2 397 /* XXX */
02a705ad
FT
398 } else {
399 sizebuf(&sk->buf.s.buf, &sk->buf.s.bufsize, sk->buf.s.datasize + size, 1, 1);
400 memmove(sk->buf.s.buf + size, sk->buf.s.buf, sk->buf.s.datasize);
401 memcpy(sk->buf.s.buf, buf, size);
402 sk->buf.s.datasize += size;
403 linksock(&rbatch, sk);
336539c2 404 }
02a705ad
FT
405}
406
407/* Read as the preterite of `read' */
408void sockread(struct socket *sk)
409{
410 linksock(&wbatch, sk->back);
411}
412
413void freedgbuf(struct dgrambuf *dg)
414{
415 if(dg->data != NULL)
416 free(dg->data);
417 if(dg->addr != NULL)
418 free(dg->addr);
419 free(dg);
420}
421
422struct dgrambuf *sockgetdgbuf(struct socket *sk)
423{
424 struct dgrambuf *dbuf;
425
426 if((dbuf = sk->buf.d.f) == NULL)
427 return(NULL);
428 sk->buf.d.f = dbuf->next;
429 if(dbuf->next == NULL)
430 sk->buf.d.l = NULL;
431 dbuf->next = NULL;
432 sockread(sk);
433 return(dbuf);
336539c2 434}
435
d3372da9 436void *sockgetinbuf(struct socket *sk, size_t *size)
437{
438 void *buf;
439 struct dgrambuf *dbuf;
440
02a705ad
FT
441 if(sk->dgram) {
442 dbuf = sockgetdgbuf(sk);
d3372da9 443 buf = dbuf->data;
444 *size = dbuf->size;
445 free(dbuf->addr);
446 free(dbuf);
02a705ad
FT
447 } else {
448 if((sk->buf.s.buf == NULL) || (sk->buf.s.datasize == 0))
449 {
450 *size = 0;
451 return(NULL);
452 }
453 buf = sk->buf.s.buf;
454 *size = sk->buf.s.datasize;
455 sk->buf.s.buf = NULL;
456 sk->buf.s.bufsize = sk->buf.s.datasize = 0;
457 sockread(sk);
d3372da9 458 }
02a705ad
FT
459 return(buf);
460}
461
462void sockqueue(struct socket *sk, void *data, size_t size)
463{
464 struct dgrambuf *new;
465 struct sockaddr *remote;
466 socklen_t remotelen;
467
468 if(size == 0)
469 return;
470 if(sk->state == SOCK_STL)
471 return;
472 if(sk->dgram) {
473 if(sockpeeraddr(sk, &remote, &remotelen))
474 return;
475 new = smalloc(sizeof(*new));
476 new->next = NULL;
477 memcpy(new->data = smalloc(size), data, new->size = size);
478 new->addr = remote;
479 new->addrlen = remotelen;
480 if(sk->back->buf.d.l == NULL)
481 {
482 sk->back->buf.d.l = sk->back->buf.d.f = new;
483 } else {
484 sk->back->buf.d.l->next = new;
485 sk->back->buf.d.l = new;
486 }
487 } else {
488 sizebuf(&(sk->back->buf.s.buf), &(sk->back->buf.s.bufsize), sk->back->buf.s.datasize + size, 1, 1);
489 memcpy(sk->back->buf.s.buf + sk->back->buf.s.datasize, data, size);
490 sk->back->buf.s.datasize += size;
491 }
492 linksock(&rbatch, sk->back);
493}
494
495void sockqueuedg(struct socket *sk, struct dgrambuf *dg)
496{
497 if(sk->state == SOCK_STL) {
498 freedgbuf(dg);
499 return;
500 }
501 if(!sk->dgram) {
502 flog(LOG_ERR, "BUG: sockqueuedg called on non-dgram socket");
503 freedgbuf(dg);
504 return;
505 }
506 dg->next = NULL;
507 if(sk->back->buf.d.l == NULL)
508 {
509 sk->back->buf.d.l = sk->back->buf.d.f = dg;
510 } else {
511 sk->back->buf.d.l->next = dg;
512 sk->back->buf.d.l = dg;
513 }
514 linksock(&rbatch, sk->back);
515}
516
517void sockeos(struct socket *sk)
518{
519 sksetstate(sk, SOCK_STL);
520 if(sk->back->eos == 0)
521 sk->back->eos = 1;
522 linksock(&rbatch, sk->back);
523}
524
525static void sockerror(struct socket *sk, int en)
526{
527 sksetstate(sk, SOCK_STL);
528 if(sk->back->errcb != NULL)
529 sk->back->errcb(sk->back, en, sk->back->data);
d3372da9 530}
531
02a705ad 532static void recvcmsg(struct ufd *ufd, struct msghdr *msg)
9e5f2b29 533{
534 struct cmsghdr *cmsg;
9e5f2b29 535
536 for(cmsg = CMSG_FIRSTHDR(msg); cmsg != NULL; cmsg = CMSG_NXTHDR(msg, cmsg))
537 {
a8c5ada6 538#if UNIX_AUTH_STYLE == 1
9e5f2b29 539 if((cmsg->cmsg_level == SOL_SOCKET) && (cmsg->cmsg_type == SCM_CREDENTIALS))
540 {
a8c5ada6 541 struct ucred *cred;
02a705ad 542 if(ufd->d.s.ucred.uid == -1)
9e5f2b29 543 {
544 cred = (struct ucred *)CMSG_DATA(cmsg);
02a705ad
FT
545 ufd->d.s.ucred.uid = cred->uid;
546 ufd->d.s.ucred.gid = cred->gid;
9e5f2b29 547 }
548 }
a8c5ada6 549#endif
9e5f2b29 550 }
551}
552
02a705ad
FT
553static int ufddgram(struct ufd *ufd)
554{
555 int dgram;
556
557 if(ufd->type == UFD_SOCK) {
558 dgram = ufd->d.s.type == SOCK_DGRAM;
559 } else if(ufd->type == UFD_PIPE) {
560 dgram = 0;
561 } else {
562 flog(LOG_ERR, "BUG: calling ufddgram on ufd of bad type %i", ufd->type);
563 return(-1);
564 }
565 if(ufd->sk == NULL) {
566 flog(LOG_ERR, "BUG: calling ufddgram on socketless ufd (type %i)", ufd->type);
567 return(-1);
568 }
569 if(dgram != ufd->sk->dgram) {
570 flog(LOG_ERR, "BUG: ufd/socket dgram value mismatch");
571 return(-1);
572 }
573 return(dgram);
574}
575
576static void sockrecv(struct ufd *ufd)
d3372da9 577{
578 int ret, inq;
02a705ad 579 int dgram;
d3372da9 580 struct dgrambuf *dbuf;
9e5f2b29 581 struct msghdr msg;
582 char cbuf[65536];
583 struct iovec bufvec;
02a705ad 584 void *buf;
d3372da9 585
9e5f2b29 586 memset(&msg, 0, sizeof(msg));
587 msg.msg_iov = &bufvec;
588 msg.msg_iovlen = 1;
589 msg.msg_control = cbuf;
590 msg.msg_controllen = sizeof(cbuf);
02a705ad
FT
591 if((dgram = ufddgram(ufd)) < 0)
592 return;
593 if(dgram) {
9e5f2b29 594#if defined(HAVE_LINUX_SOCKIOS_H) && defined(SIOCINQ)
02a705ad 595 if(ioctl(ufd->fd, SIOCINQ, &inq))
d3372da9 596 {
597 /* I don't really know what could go wrong here, so let's
598 * assume it's transient. */
02a705ad 599 flog(LOG_WARNING, "SIOCINQ return %s on socket %i", strerror(errno), ufd->fd);
d3372da9 600 return;
601 }
9e5f2b29 602#else
603 inq = 65536;
604#endif
d3372da9 605 dbuf = smalloc(sizeof(*dbuf));
606 dbuf->data = smalloc(inq);
607 dbuf->addr = smalloc(dbuf->addrlen = sizeof(struct sockaddr_storage));
9e5f2b29 608 msg.msg_name = dbuf->addr;
609 msg.msg_namelen = dbuf->addrlen;
610 bufvec.iov_base = dbuf->data;
611 bufvec.iov_len = inq;
02a705ad 612 ret = recvmsg(ufd->fd, &msg, 0);
9e5f2b29 613 dbuf->addrlen = msg.msg_namelen;
d3372da9 614 if(ret < 0)
615 {
02a705ad 616 freedgbuf(dbuf);
d3372da9 617 if((errno == EINTR) || (errno == EAGAIN))
618 return;
02a705ad
FT
619 closeufd(ufd);
620 sockerror(ufd->sk, errno);
d3372da9 621 return;
622 }
9e5f2b29 623 if(msg.msg_flags & MSG_CTRUNC)
624 flog(LOG_DEBUG, "ancillary data was truncated");
625 else
02a705ad 626 recvcmsg(ufd, &msg);
d3372da9 627 /* On UDP/IPv[46], ret == 0 doesn't mean EOF (since UDP can't
628 * have EOF), but rather an empty packet. I don't know if any
629 * other potential DGRAM protocols might have an EOF
630 * condition, so let's play safe. */
631 if(ret == 0)
632 {
02a705ad
FT
633 freedgbuf(dbuf);
634 if((ufd->type != UFD_SOCK) || !((ufd->d.s.family == AF_INET) || (ufd->d.s.family == AF_INET6)))
d3372da9 635 {
02a705ad
FT
636 sockeos(ufd->sk);
637 closeufd(ufd);
d3372da9 638 }
639 return;
640 }
641 dbuf->addr = srealloc(dbuf->addr, dbuf->addrlen);
642 dbuf->data = srealloc(dbuf->data, dbuf->size = ret);
643 dbuf->next = NULL;
02a705ad
FT
644 sockqueuedg(ufd->sk, dbuf);
645 } else {
646#if defined(HAVE_LINUX_SOCKIOS_H) && defined(SIOCINQ)
647 /* SIOCINQ is Linux-specific AFAIK, but I really have no idea
648 * how to read the inqueue size on other OSs */
649 if(ufd->type == UFD_SOCK) {
650 if(ioctl(ufd->fd, SIOCINQ, &inq))
651 {
652 /* I don't really know what could go wrong here, so let's
653 * assume it's transient. */
654 flog(LOG_WARNING, "SIOCINQ return %s on socket %i, falling back to 2048 bytes", strerror(errno), ufd->fd);
655 inq = 2048;
656 }
657 } else {
658 /* There are perils when trying to use SIOCINQ on files >2GiB... */
659 inq = 65536;
660 }
661#else
662 inq = 2048;
663#endif
664 if(inq > 65536)
665 inq = 65536;
666 /* This part could be optimized by telling the kernel to read
667 * directly into ufd->sk->back->buf, but that would be uglier
668 * by not using the socket function interface. */
669 buf = smalloc(inq);
670 if(ufd->type == UFD_SOCK)
671 {
672 bufvec.iov_base = buf;
673 bufvec.iov_len = inq;
674 ret = recvmsg(ufd->fd, &msg, 0);
675 } else {
676 ret = read(ufd->fd, buf, inq);
677 msg.msg_controllen = 0;
678 msg.msg_flags = 0;
679 }
680 if(ret < 0)
681 {
682 free(buf);
683 if((errno == EINTR) || (errno == EAGAIN))
684 return;
685 closeufd(ufd);
686 sockerror(ufd->sk, errno);
687 return;
688 }
689 if(msg.msg_flags & MSG_CTRUNC)
690 flog(LOG_DEBUG, "ancillary data was truncated");
d3372da9 691 else
02a705ad
FT
692 recvcmsg(ufd, &msg);
693 if(ret == 0)
694 {
695 free(buf);
696 closeufd(ufd);
697 sockeos(ufd->sk);
698 return;
699 }
700 sockqueue(ufd->sk, buf, ret);
701 free(buf);
d3372da9 702 }
703}
704
02a705ad 705static void sockflush(struct ufd *ufd)
d3372da9 706{
707 int ret;
708 struct dgrambuf *dbuf;
02a705ad 709 int dgram;
d3372da9 710
02a705ad
FT
711 if((dgram = ufddgram(ufd)) < 0)
712 return;
713 if(dgram) {
714 dbuf = sockgetdgbuf(ufd->sk);
715 sendto(ufd->fd, dbuf->data, dbuf->size, MSG_DONTWAIT | MSG_NOSIGNAL, dbuf->addr, dbuf->addrlen);
716 freedgbuf(dbuf);
717 } else {
718 if(ufd->type == UFD_SOCK)
719 ret = send(ufd->fd, ufd->sk->buf.s.buf, ufd->sk->buf.s.datasize, MSG_DONTWAIT | MSG_NOSIGNAL);
d3372da9 720 else
02a705ad
FT
721 ret = write(ufd->fd, ufd->sk->buf.s.buf, ufd->sk->buf.s.datasize);
722 if(ret < 0) {
d3372da9 723 /* For now, assume transient error, since
724 * the socket is polled for errors */
02a705ad 725 return;
d3372da9 726 }
02a705ad
FT
727 if(ret > 0) {
728 memmove(ufd->sk->buf.s.buf, ((char *)ufd->sk->buf.s.buf) + ret, ufd->sk->buf.s.datasize -= ret);
729 sockread(ufd->sk);
d3372da9 730 }
d3372da9 731 }
732}
733
734void closesock(struct socket *sk)
735{
02a705ad 736/*
b870805e 737 struct sockaddr_un *un;
738
e0cbc756 739 if((sk->family == AF_UNIX) && !sockgetlocalname(sk, (struct sockaddr **)(void *)&un, NULL) && (un->sun_family == PF_UNIX))
b870805e 740 {
7ab36fbd 741 if((sk->state == SOCK_LST) && strchr(un->sun_path, '/'))
b870805e 742 {
743 if(unlink(un->sun_path))
7ab36fbd 744 flog(LOG_WARNING, "could not unlink Unix socket %s: %s", un->sun_path, strerror(errno));
b870805e 745 }
746 }
02a705ad
FT
747*/
748 sksetstate(sk, SOCK_STL);
749 sockeos(sk);
d3372da9 750}
751
752size_t sockgetdatalen(struct socket *sk)
753{
754 struct dgrambuf *b;
755 size_t ret;
756
02a705ad 757 if(sk->dgram) {
d3372da9 758 ret = 0;
02a705ad 759 for(b = sk->buf.d.f; b != NULL; b = b->next)
d3372da9 760 ret += b->size;
02a705ad
FT
761 } else {
762 ret = sk->buf.s.datasize;
d3372da9 763 }
764 return(ret);
765}
766
767size_t sockqueuesize(struct socket *sk)
768{
02a705ad 769 return(sockgetdatalen(sk->back));
d3372da9 770}
771
d3372da9 772/*
7ab36fbd 773 * Seriously, I don't know if it's naughty or not to remove
774 * pre-existing Unix sockets.
775 */
02a705ad 776static int rebindunix(struct ufd *ufd, struct sockaddr *name, socklen_t namelen)
7ab36fbd 777{
778 struct sockaddr_un *un;
779 struct stat sb;
780
02a705ad 781 if((ufd->d.l.family != AF_UNIX) || (name->sa_family != PF_UNIX))
7ab36fbd 782 return(-1);
783 un = (struct sockaddr_un *)name;
784 if(stat(un->sun_path, &sb))
785 return(-1);
786 if(!S_ISSOCK(sb.st_mode))
787 return(-1);
788 if(unlink(un->sun_path))
789 return(-1);
02a705ad 790 if(bind(ufd->fd, name, namelen) < 0)
7ab36fbd 791 return(-1);
792 return(0);
793}
794
795/*
d3372da9 796 * The difference between netcslisten() and netcslistenlocal() is that
797 * netcslistenlocal() always listens on the local host, instead of
798 * following proxy/passive mode directions. It is suitable for eg. the
799 * UI channel, while the file sharing networks should, naturally, use
800 * netcslisten() instead.
801*/
802
02a705ad 803struct lport *netcslistenlocal(int type, struct sockaddr *name, socklen_t namelen, void (*func)(struct lport *, struct socket *, void *), void *data)
d3372da9 804{
02a705ad
FT
805 struct lport *lp;
806 struct ufd *ufd;
807 int fd;
66c517d2 808 int intbuf;
d3372da9 809
810 /* I don't know if this is actually correct (it probably isn't),
811 * but since, at on least Linux systems, PF_* are specifically
812 * #define'd to their AF_* counterparts, it allows for a severely
813 * smoother implementation. If it breaks something on your
814 * platform, please tell me so.
815 */
02a705ad 816 if((fd = socket(name->sa_family, type, 0)) < 0)
d3372da9 817 return(NULL);
02a705ad 818 if(confgetint("net", "reuseaddr")) {
687b2ee2 819 intbuf = 1;
02a705ad 820 setsockopt(fd, SOL_SOCKET, SO_REUSEADDR, &intbuf, sizeof(intbuf));
687b2ee2 821 }
02a705ad
FT
822 ufd = mkufd(fd, UFD_LISTEN, NULL);
823 ufd->d.l.lp = lp;
824 ufd->d.l.family = name->sa_family;
825 if((bind(fd, name, namelen) < 0) && ((errno != EADDRINUSE) || (rebindunix(ufd, name, namelen) < 0))) {
826 freeufd(ufd);
d3372da9 827 return(NULL);
828 }
02a705ad 829 if(listen(fd, 16) < 0)
d3372da9 830 {
02a705ad 831 freeufd(ufd);
d3372da9 832 return(NULL);
833 }
02a705ad
FT
834 lp->acceptcb = func;
835 lp->data = data;
836 return(lp);
d3372da9 837}
838
02a705ad 839struct lport *netcslisten(int type, struct sockaddr *name, socklen_t namelen, void (*func)(struct lport *, struct socket *, void *), void *data)
c23acc61 840{
841 if(confgetint("net", "mode") == 1)
842 {
843 errno = EOPNOTSUPP;
844 return(NULL);
845 }
c23acc61 846 if(confgetint("net", "mode") == 0)
847 return(netcslistenlocal(type, name, namelen, func, data));
848 errno = EOPNOTSUPP;
849 return(NULL);
850}
851
02a705ad 852struct lport *netcstcplisten(int port, int local, void (*func)(struct lport *, struct socket *, void *), void *data)
0a1bc5b1 853{
854 struct sockaddr_in addr;
855#ifdef HAVE_IPV6
856 struct sockaddr_in6 addr6;
857#endif
02a705ad
FT
858 struct lport *(*csfunc)(int, struct sockaddr *, socklen_t, void (*)(struct lport *, struct socket *, void *), void *);
859 struct lport *ret;
0a1bc5b1 860
861 if(local)
862 csfunc = netcslistenlocal;
863 else
864 csfunc = netcslisten;
865#ifdef HAVE_IPV6
866 memset(&addr6, 0, sizeof(addr6));
867 addr6.sin6_family = AF_INET6;
868 addr6.sin6_port = htons(port);
869 addr6.sin6_addr = in6addr_any;
870 if((ret = csfunc(SOCK_STREAM, (struct sockaddr *)&addr6, sizeof(addr6), func, data)) != NULL)
871 return(ret);
872 if((ret == NULL) && (errno != EAFNOSUPPORT))
873 return(NULL);
874#endif
875 memset(&addr, 0, sizeof(addr));
876 addr.sin_family = AF_INET;
877 addr.sin_port = htons(port);
878 return(csfunc(SOCK_STREAM, (struct sockaddr *)&addr, sizeof(addr), func, data));
879}
880
d3372da9 881struct socket *netcsdgram(struct sockaddr *name, socklen_t namelen)
882{
883 struct socket *sk;
884 int mode;
885
886 mode = confgetint("net", "mode");
887 if((mode == 0) || (mode == 1))
888 {
889 if((sk = mksock(name->sa_family, SOCK_DGRAM)) == NULL)
890 return(NULL);
02a705ad 891 if(bind(sk->ufd->fd, name, namelen) < 0)
d3372da9 892 {
893 putsock(sk);
894 return(NULL);
895 }
02a705ad
FT
896 sksetstate(sk, SOCK_EST);
897 return(sk->back);
d3372da9 898 }
899 errno = EOPNOTSUPP;
900 return(NULL);
901}
902
02a705ad 903struct socket *netdgramconn(struct socket *sk, struct sockaddr *addr, socklen_t addrlen)
d3372da9 904{
02a705ad 905 struct ufd *nufd;
d3372da9 906
02a705ad
FT
907 nufd = dupufd(sk->back->ufd);
908 sk = nufd->sk->back;
909 memcpy(nufd->d.s.remote = smalloc(addrlen), addr, nufd->d.s.remotelen = addrlen);
910 nufd->ignread = 1;
911 return(sk);
d3372da9 912}
913
cab0b442 914struct socket *netcsconn(struct sockaddr *addr, socklen_t addrlen, void (*func)(struct socket *, int, void *), void *data)
d3372da9 915{
916 struct socket *sk;
917 int mode;
918
919 mode = confgetint("net", "mode");
920 if((mode == 0) || (mode == 1))
921 {
922 if((sk = mksock(addr->sa_family, SOCK_STREAM)) == NULL)
923 return(NULL);
02a705ad
FT
924 memcpy(sk->ufd->d.s.remote = smalloc(addrlen), addr, sk->ufd->d.s.remotelen = addrlen);
925 sk->back->conncb = func;
926 sk->back->data = data;
927 if(!connect(sk->ufd->fd, addr, addrlen))
d3372da9 928 {
02a705ad
FT
929 sksetstate(sk, SOCK_EST);
930 linksock(&cbatch, sk->back);
931 return(sk->back);
d3372da9 932 }
933 if(errno == EINPROGRESS)
934 {
02a705ad
FT
935 sksetstate(sk, SOCK_SYN);
936 return(sk->back);
d3372da9 937 }
938 putsock(sk);
939 return(NULL);
940 }
941 errno = EOPNOTSUPP;
942 return(NULL);
943}
944
02a705ad 945static void acceptunix(struct ufd *ufd)
9e5f2b29 946{
947 int buf;
948
949 buf = 1;
a8c5ada6 950#if UNIX_AUTH_STYLE == 1
02a705ad
FT
951 if(setsockopt(ufd->fd, SOL_SOCKET, SO_PASSCRED, &buf, sizeof(buf)) < 0)
952 flog(LOG_WARNING, "could not enable SO_PASSCRED on Unix socket %i: %s", ufd->fd, strerror(errno));
a8c5ada6 953#elif UNIX_AUTH_STYLE == 2
02a705ad 954 if(getpeereid(ufd->fd, &ufd->d.s.ucred.uid, &ufd->d.s.ucred.gid) < 0)
a8c5ada6 955 {
02a705ad
FT
956 flog(LOG_WARNING, "could not get peer creds on Unix socket %i: %s", ufd->fd, strerror(errno));
957 ufd->d.s.ucred.uid = -1;
958 ufd->d.s.ucred.gid = -1;
a8c5ada6 959 }
960#endif
9e5f2b29 961}
962
d3372da9 963int pollsocks(int timeout)
964{
02a705ad 965 int ret;
eaa35963 966 socklen_t retlen;
72a7835e
FT
967 int newfd, maxfd;
968 fd_set rfds, wfds, efds;
02a705ad
FT
969 struct ufd *ufd, *nufd, *next;
970 struct socket *nsk;
d3372da9 971 struct sockaddr_storage ss;
972 socklen_t sslen;
72a7835e 973 struct timeval tv;
02a705ad 974 struct scons *sc, *nsc;
d3372da9 975
72a7835e
FT
976 FD_ZERO(&rfds);
977 FD_ZERO(&wfds);
978 FD_ZERO(&efds);
02a705ad
FT
979 for(maxfd = 0, ufd = ufds; ufd != NULL; ufd = ufd->next) {
980 if(ufd->fd < 0)
d3372da9 981 continue;
02a705ad
FT
982 if(!ufd->ignread)
983 FD_SET(ufd->fd, &rfds);
984 if(ufd->sk != NULL) {
985 if(sockgetdatalen(ufd->sk) > 0)
986 FD_SET(ufd->fd, &wfds);
987 else if(ufd->sk->state == SOCK_SYN)
988 FD_SET(ufd->fd, &wfds);
989 }
990 FD_SET(ufd->fd, &efds);
991 if(ufd->fd > maxfd)
992 maxfd = ufd->fd;
d3372da9 993 }
72a7835e
FT
994 tv.tv_sec = timeout / 1000;
995 tv.tv_usec = (timeout % 1000) * 1000;
996 ret = select(maxfd + 1, &rfds, &wfds, &efds, (timeout < 0)?NULL:&tv);
02a705ad
FT
997 if(ret < 0) {
998 if(errno != EINTR) {
72a7835e 999 flog(LOG_CRIT, "pollsocks: select errored out: %s", strerror(errno));
d3372da9 1000 /* To avoid CPU hogging in case it's bad, which it
1001 * probably is. */
1002 sleep(1);
1003 }
d3372da9 1004 return(1);
1005 }
02a705ad 1006 for(ufd = ufds; ufd != NULL; ufd = ufd->next)
d3372da9 1007 {
02a705ad
FT
1008 if(ufd->sk < 0)
1009 continue;
1010 if(ufd->type == UFD_LISTEN) {
1011 if(FD_ISSET(ufd->fd, &rfds)) {
d3372da9 1012 sslen = sizeof(ss);
02a705ad
FT
1013 if((newfd = accept(ufd->fd, (struct sockaddr *)&ss, &sslen)) < 0) {
1014 if(ufd->d.l.lp->errcb != NULL)
1015 ufd->d.l.lp->errcb(ufd->d.l.lp, errno, ufd->d.l.lp->data);
cab0b442 1016 }
02a705ad
FT
1017 nsk = sockpair(0);
1018 nufd = mkufd(newfd, UFD_SOCK, nsk);
1019 nufd->d.s.family = ufd->d.l.family;
1020 sksetstate(nsk, SOCK_EST);
1021 memcpy(nufd->d.s.remote = smalloc(sslen), &ss, sslen);
1022 nufd->d.s.remotelen = sslen;
9e5f2b29 1023 if(ss.ss_family == PF_UNIX)
02a705ad
FT
1024 acceptunix(nufd);
1025 if(ufd->d.l.lp->acceptcb != NULL)
1026 ufd->d.l.lp->acceptcb(ufd->d.l.lp, nsk, ufd->d.l.lp->data);
1027 putsock(nsk);
d3372da9 1028 }
02a705ad 1029 if(FD_ISSET(ufd->fd, &efds)) {
d3372da9 1030 retlen = sizeof(ret);
02a705ad
FT
1031 getsockopt(ufd->fd, SOL_SOCKET, SO_ERROR, &ret, &retlen);
1032 if(ufd->d.l.lp->errcb != NULL)
1033 ufd->d.l.lp->errcb(ufd->d.l.lp, ret, ufd->d.l.lp->data);
d3372da9 1034 continue;
1035 }
02a705ad
FT
1036 } else {
1037 if(ufd->sk->state == SOCK_SYN) {
1038 if(FD_ISSET(ufd->fd, &efds)) {
1039 retlen = sizeof(ret);
1040 getsockopt(ufd->fd, SOL_SOCKET, SO_ERROR, &ret, &retlen);
1041 if(ufd->sk->back->conncb != NULL)
1042 ufd->sk->back->conncb(ufd->sk->back, ret, ufd->sk->back->data);
1043 closeufd(ufd);
1044 continue;
1045 }
1046 if(FD_ISSET(ufd->fd, &rfds) || FD_ISSET(ufd->fd, &wfds)) {
1047 sksetstate(ufd->sk, SOCK_EST);
1048 linksock(&cbatch, ufd->sk->back);
1049 }
1050 } else if(ufd->sk->state == SOCK_EST) {
1051 if(FD_ISSET(ufd->fd, &efds)) {
1052 retlen = sizeof(ret);
1053 getsockopt(ufd->fd, SOL_SOCKET, SO_ERROR, &ret, &retlen);
1054 sockerror(ufd->sk, ret);
1055 closeufd(ufd);
1056 continue;
1057 }
1058 if(FD_ISSET(ufd->fd, &rfds))
1059 sockrecv(ufd);
1060 if(FD_ISSET(ufd->fd, &wfds))
1061 sockflush(ufd);
d3372da9 1062 }
d3372da9 1063 }
d3372da9 1064 }
02a705ad 1065 for(ufd = ufds; ufd != NULL; ufd = next)
d3372da9 1066 {
02a705ad
FT
1067 next = ufd->next;
1068 if(sockgetdatalen(ufd->sk) == 0) {
1069 if(ufd->sk->eos) {
1070 closeufd(ufd);
1071 closesock(ufd->sk);
1072 }
1073 if((ufd->sk->refcount == 1) && (ufd->sk->back->refcount == 0)) {
1074 freeufd(ufd);
1075 continue;
1076 }
d3372da9 1077 }
1078 }
1079 return(1);
1080}
1081
1082int socksettos(struct socket *sk, int tos)
1083{
b020fb3d 1084 int buf;
1085
7ab36fbd 1086 if(sk->family == AF_UNIX)
1087 return(0); /* Unix sockets are always perfect. :) */
d3372da9 1088 if(sk->family == AF_INET)
1089 {
b020fb3d 1090 switch(tos)
1091 {
b198bed6 1092 case 0:
1093 buf = 0;
1094 break;
b020fb3d 1095 case SOCK_TOS_MINCOST:
18c1ae1d 1096 buf = 0x02;
b020fb3d 1097 break;
1098 case SOCK_TOS_MAXREL:
18c1ae1d 1099 buf = 0x04;
b020fb3d 1100 break;
1101 case SOCK_TOS_MAXTP:
18c1ae1d 1102 buf = 0x08;
b020fb3d 1103 break;
1104 case SOCK_TOS_MINDELAY:
18c1ae1d 1105 buf = 0x10;
b020fb3d 1106 break;
1107 default:
1108 flog(LOG_WARNING, "attempted to set unknown TOS value %i to IPv4 sock", tos);
1109 return(-1);
1110 }
e03e1e7c 1111 if(setsockopt(sk->fd, IPPROTO_IP, IP_TOS, &buf, sizeof(buf)) < 0)
d3372da9 1112 {
1113 flog(LOG_WARNING, "could not set sock TOS to %i: %s", tos, strerror(errno));
1114 return(-1);
1115 }
1116 return(0);
1117 }
b020fb3d 1118 if(sk->family == AF_INET6)
1119 {
1120 switch(tos)
1121 {
b198bed6 1122 case 0:
1123 buf = 0;
b020fb3d 1124 case SOCK_TOS_MINCOST:
1125 buf = confgetint("net", "diffserv-mincost");
1126 break;
1127 case SOCK_TOS_MAXREL:
1128 buf = confgetint("net", "diffserv-maxrel");
1129 break;
1130 case SOCK_TOS_MAXTP:
1131 buf = confgetint("net", "diffserv-maxtp");
1132 break;
1133 case SOCK_TOS_MINDELAY:
1134 buf = confgetint("net", "diffserv-mindelay");
1135 break;
1136 default:
1137 flog(LOG_WARNING, "attempted to set unknown TOS value %i to IPv4 sock", tos);
1138 return(-1);
1139 }
1140 /*
1141 On Linux, the API IPv6 flow label management doesn't seem to
1142 be entirely complete, so I guess this will have to wait.
1143
1144 if(setsockopt(...) < 0)
1145 {
1146 flog(LOG_WARNING, "could not set sock traffic class to %i: %s", tos, strerror(errno));
1147 return(-1);
1148 }
1149 */
1150 return(0);
1151 }
d3372da9 1152 flog(LOG_WARNING, "could not set TOS on sock of family %i", sk->family);
1153 return(1);
1154}
1155
1156struct resolvedata
1157{
1158 int fd;
1159 void (*callback)(struct sockaddr *addr, int addrlen, void *data);
1160 void *data;
1161 struct sockaddr_storage addr;
1162 int addrlen;
1163};
1164
1165static void resolvecb(pid_t pid, int status, struct resolvedata *data)
1166{
1167 static char buf[80];
1168 int ret;
1169 struct sockaddr_in *ipv4;
1170
1171 if(!status)
1172 {
1173 if((ret = read(data->fd, buf, sizeof(buf))) != 4)
1174 {
b4d16e90 1175 errno = ENOENT;
d3372da9 1176 data->callback(NULL, 0, data->data);
1177 } else {
1178 ipv4 = (struct sockaddr_in *)&data->addr;
1179 memcpy(&ipv4->sin_addr, buf, 4);
1180 data->callback((struct sockaddr *)ipv4, sizeof(*ipv4), data->data);
1181 }
1182 } else {
b4d16e90 1183 errno = ENOENT;
d3372da9 1184 data->callback(NULL, 0, data->data);
1185 }
1186 close(data->fd);
1187 free(data);
1188}
1189
1190int netresolve(char *addr, void (*callback)(struct sockaddr *addr, int addrlen, void *data), void *data)
1191{
1192 int i;
1193 char *p;
1194 int port;
1195 int pfd[2];
1196 pid_t child;
1197 struct resolvedata *rdata;
1198 struct sockaddr_in ipv4;
1199 struct hostent *he;
1200 sigset_t sigset;
1201
1202 /* IPv4 */
1203 port = -1;
1204 if((p = strchr(addr, ':')) != NULL)
1205 {
1206 *p = 0;
1207 port = atoi(p + 1);
1208 }
1209 ipv4.sin_family = AF_INET;
1210 ipv4.sin_port = htons(port);
1211 if(inet_aton(addr, &ipv4.sin_addr))
1212 {
1213 callback((struct sockaddr *)&ipv4, sizeof(ipv4), data);
1214 } else {
1215 sigemptyset(&sigset);
1216 sigaddset(&sigset, SIGCHLD);
1217 sigprocmask(SIG_BLOCK, &sigset, NULL);
1218 if((pipe(pfd) < 0) || ((child = fork()) < 0))
1219 {
1220 sigprocmask(SIG_UNBLOCK, &sigset, NULL);
1221 return(-1);
1222 }
1223 if(child == 0)
1224 {
1225 sigprocmask(SIG_UNBLOCK, &sigset, NULL);
1226 for(i = 3; i < FD_SETSIZE; i++)
1227 {
1228 if(i != pfd[1])
1229 close(i);
1230 }
1231 signal(SIGALRM, SIG_DFL);
1232 alarm(30);
1233 if((he = gethostbyname(addr)) == NULL)
1234 exit(1);
1235 write(pfd[1], he->h_addr_list[0], 4);
1236 exit(0);
1237 } else {
1238 close(pfd[1]);
1239 fcntl(pfd[0], F_SETFL, fcntl(pfd[0], F_GETFL) | O_NONBLOCK);
1240 rdata = smalloc(sizeof(*rdata));
1241 rdata->fd = pfd[0];
1242 rdata->callback = callback;
1243 rdata->data = data;
1244 memcpy(&rdata->addr, &ipv4, rdata->addrlen = sizeof(ipv4));
1245 childcallback(child, (void (*)(pid_t, int, void *))resolvecb, rdata);
1246 sigprocmask(SIG_UNBLOCK, &sigset, NULL);
1247 return(1);
1248 }
1249 }
1250 return(0);
1251}
1252
1253int sockgetlocalname(struct socket *sk, struct sockaddr **namebuf, socklen_t *lenbuf)
1254{
1255 socklen_t len;
1256 struct sockaddr_storage name;
1257
1258 *namebuf = NULL;
1259 if((sk->state == SOCK_STL) || (sk->fd < 0))
1260 return(-1);
1261 len = sizeof(name);
1262 if(getsockname(sk->fd, (struct sockaddr *)&name, &len) < 0)
1263 {
6fb0c6ac 1264 flog(LOG_ERR, "BUG: alive socket with dead fd in sockgetlocalname (%s)", strerror(errno));
d3372da9 1265 return(-1);
1266 }
1267 *namebuf = memcpy(smalloc(len), &name, len);
b870805e 1268 if(lenbuf != NULL)
1269 *lenbuf = len;
d3372da9 1270 return(0);
1271}
1272
eaa35963 1273static void sethostaddr(struct sockaddr *dst, struct sockaddr *src)
1274{
1275 if(dst->sa_family != src->sa_family)
1276 {
1277 flog(LOG_ERR, "BUG: non-matching socket families in sethostaddr (%i -> %i)", src->sa_family, dst->sa_family);
1278 return;
1279 }
1280 switch(src->sa_family)
1281 {
1282 case AF_INET:
1283 ((struct sockaddr_in *)dst)->sin_addr = ((struct sockaddr_in *)src)->sin_addr;
1284 break;
1285 case AF_INET6:
1286 ((struct sockaddr_in6 *)dst)->sin6_addr = ((struct sockaddr_in6 *)src)->sin6_addr;
1287 break;
1288 default:
1289 flog(LOG_WARNING, "sethostaddr unimplemented for family %i", src->sa_family);
1290 break;
1291 }
1292}
1293
1294static int makepublic(struct sockaddr *addr)
d3372da9 1295{
6fb0c6ac 1296 int ret;
eaa35963 1297 socklen_t plen;
1298 struct sockaddr *pname;
1299
1300 if((ret = getpublicaddr(addr->sa_family, &pname, &plen)) < 0)
1301 {
1302 flog(LOG_ERR, "could not get public address: %s", strerror(errno));
1303 return(-1);
1304 }
1305 if(ret)
1306 return(0);
1307 sethostaddr(addr, pname);
1308 free(pname);
1309 return(0);
1310}
1311
1312int sockgetremotename(struct socket *sk, struct sockaddr **namebuf, socklen_t *lenbuf)
1313{
d3372da9 1314 socklen_t len;
6fb0c6ac 1315 struct sockaddr *name;
d3372da9 1316
1317 switch(confgetint("net", "mode"))
1318 {
1319 case 0:
1320 *namebuf = NULL;
1321 if((sk->state == SOCK_STL) || (sk->fd < 0))
d3372da9 1322 {
eaa35963 1323 errno = EBADF;
d3372da9 1324 return(-1);
1325 }
6fb0c6ac 1326 if(!sockgetlocalname(sk, &name, &len))
1327 {
1328 *namebuf = name;
1329 *lenbuf = len;
eaa35963 1330 makepublic(name);
6fb0c6ac 1331 return(0);
1332 }
1333 flog(LOG_ERR, "could not get remotely accessible name by any means");
1334 return(-1);
d3372da9 1335 case 1:
1336 errno = EOPNOTSUPP;
1337 return(-1);
1338 default:
1339 flog(LOG_CRIT, "unknown net mode %i active", confgetint("net", "mode"));
1340 errno = EOPNOTSUPP;
1341 return(-1);
1342 }
1343}
1344
d29853b1 1345int sockgetremotename2(struct socket *sk, struct socket *sk2, struct sockaddr **namebuf, socklen_t *lenbuf)
1346{
1347 struct sockaddr *name1, *name2;
1348 socklen_t len1, len2;
1349
1350 if(sk->family != sk2->family)
1351 {
1352 flog(LOG_ERR, "using sockgetremotename2 with sockets of differing family: %i %i", sk->family, sk2->family);
1353 return(-1);
1354 }
3804379d 1355 if(sockgetremotename(sk, &name1, &len1))
d29853b1 1356 return(-1);
3804379d 1357 if(sockgetremotename(sk2, &name2, &len2)) {
d29853b1 1358 free(name1);
1359 return(-1);
1360 }
1361 sethostaddr(name1, name2);
1362 free(name2);
1363 *namebuf = name1;
1364 *lenbuf = len1;
1365 return(0);
1366}
1367
02a705ad
FT
1368void sockblock(struct socket *sk, int block)
1369{
1370 sk->block = block;
1371}
1372
1373int sockpeeraddr(struct socket *sk, struct sockaddr **namebuf, socklen_t *lenbuf)
1374{
1375 return(-1);
1376}
1377
1378char *formatsockpeer(struct socket *sk)
1379{
1380 struct sockaddr *name;
1381 socklen_t nlen;
1382 char *ret;
1383
1384 if(sockpeeraddr(sk, &name, &nlen))
1385 return(NULL);
1386 ret = formataddress(name, nlen);
1387 free(name);
1388 return(ret);
1389}
1390
99a28d47 1391int addreq(struct sockaddr *x, struct sockaddr *y)
1392{
1393 struct sockaddr_un *u1, *u2;
1394 struct sockaddr_in *n1, *n2;
1395#ifdef HAVE_IPV6
1396 struct sockaddr_in6 *s1, *s2;
1397#endif
1398
1399 if(x->sa_family != y->sa_family)
1400 return(0);
1401 switch(x->sa_family) {
1402 case AF_UNIX:
1403 u1 = (struct sockaddr_un *)x; u2 = (struct sockaddr_un *)y;
1404 if(strncmp(u1->sun_path, u2->sun_path, sizeof(u1->sun_path)))
1405 return(0);
1406 break;
1407 case AF_INET:
1408 n1 = (struct sockaddr_in *)x; n2 = (struct sockaddr_in *)y;
1409 if(n1->sin_port != n2->sin_port)
1410 return(0);
1411 if(n1->sin_addr.s_addr != n2->sin_addr.s_addr)
1412 return(0);
1413 break;
c8a729d7 1414#ifdef HAVE_IPV6
99a28d47 1415 case AF_INET6:
1416 s1 = (struct sockaddr_in6 *)x; s2 = (struct sockaddr_in6 *)y;
1417 if(s1->sin6_port != s2->sin6_port)
1418 return(0);
1419 if(memcmp(s1->sin6_addr.s6_addr, s2->sin6_addr.s6_addr, sizeof(s1->sin6_addr.s6_addr)))
1420 return(0);
1421 break;
c8a729d7 1422#endif
99a28d47 1423 }
1424 return(1);
1425}
1426
d3372da9 1427char *formataddress(struct sockaddr *arg, socklen_t arglen)
1428{
d3372da9 1429 struct sockaddr_in *ipv4;
1430#ifdef HAVE_IPV6
1431 struct sockaddr_in6 *ipv6;
1432#endif
1433 static char *ret = NULL;
1434 char buf[1024];
1435
1436 if(ret != NULL)
1437 free(ret);
1438 ret = NULL;
1439 switch(arg->sa_family)
1440 {
1441 case AF_UNIX:
6a97462e 1442 ret = sstrdup("Unix socket");
d3372da9 1443 break;
1444 case AF_INET:
1445 ipv4 = (struct sockaddr_in *)arg;
1446 if(inet_ntop(AF_INET, &ipv4->sin_addr, buf, sizeof(buf)) == NULL)
1447 return(NULL);
1448 ret = sprintf2("%s:%i", buf, (int)ntohs(ipv4->sin_port));
1449 break;
1450#ifdef HAVE_IPV6
1451 case AF_INET6:
1452 ipv6 = (struct sockaddr_in6 *)arg;
1453 if(inet_ntop(AF_INET6, &ipv6->sin6_addr, buf, sizeof(buf)) == NULL)
1454 return(NULL);
fc7f7735 1455 ret = sprintf2("[%s]:%i", buf, (int)ntohs(ipv6->sin6_port));
d3372da9 1456 break;
1457#endif
1458 default:
1459 errno = EPFNOSUPPORT;
1460 break;
1461 }
1462 return(ret);
1463}
1464
1465#if 0
1466
1467/*
1468 * It was very nice to use this, but it seems
1469 * to mess things up, so I guess it has to go... :-(
1470 */
1471
1472static int formataddress(FILE *stream, const struct printf_info *info, const void *const *args)
1473{
1474 struct sockaddr *arg;
1475 socklen_t arglen;
1476 struct sockaddr_un *UNIX; /* Some wise guy has #defined unix with
1477 * lowercase letters to 1, so I do this
1478 * instead. */
1479 struct sockaddr_in *ipv4;
1480 int ret;
1481
1482 arg = *(struct sockaddr **)(args[0]);
1483 arglen = *(socklen_t *)(args[1]);
1484 switch(arg->sa_family)
1485 {
1486 case AF_UNIX:
1487 UNIX = (struct sockaddr_un *)arg;
1488 ret = fprintf(stream, "%s", UNIX->sun_path);
1489 break;
1490 case AF_INET:
1491 ipv4 = (struct sockaddr_in *)arg;
1492 ret = fprintf(stream, "%s:%i", inet_ntoa(ipv4->sin_addr), (int)ntohs(ipv4->sin_port));
1493 break;
1494 default:
1495 ret = -1;
1496 errno = EPFNOSUPPORT;
1497 break;
1498 }
1499 return(ret);
1500}
1501
1502static int formataddress_arginfo(const struct printf_info *info, size_t n, int *argtypes)
1503{
1504 if(n > 0)
1505 argtypes[0] = PA_POINTER;
1506 if(n > 1)
1507 argtypes[1] = PA_INT; /* Sources tell me that socklen_t _must_
1508 * be an int, so I guess this should be
1509 * safe. */
1510 return(2);
1511}
1512#endif
1513
1514static int init(int hup)
1515{
1516 if(!hup)
1517 {
1518 /*
1519 if(register_printf_function('N', formataddress, formataddress_arginfo))
1520 {
1521 flog(LOG_CRIT, "could not register printf handler %%N: %s", strerror(errno));
1522 return(1);
1523 }
1524 */
1525 }
1526 return(0);
1527}
1528
1529static void terminate(void)
1530{
1531 while(sockets != NULL)
1532 unlinksock(sockets);
1533}
1534
1535static struct module me =
1536{
1537 .name = "net",
1538 .conf =
1539 {
1540 .vars = myvars
1541 },
1542 .init = init,
1543 .terminate = terminate
1544};
1545
1546MODULE(me)