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1 /*
2 * libnetlink.c RTnetlink service routines.
3 *
4 * This program is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU General Public License
6 * as published by the Free Software Foundation; either version
7 * 2 of the License, or (at your option) any later version.
8 *
9 * Authors: Alexey Kuznetsov, <kuznet@ms2.inr.ac.ru>
10 *
11 */
12
13 #include <stdio.h>
14 #include <stdlib.h>
15 #include <stdbool.h>
16 #include <unistd.h>
17 #include <fcntl.h>
18 #include <net/if_arp.h>
19 #include <sys/socket.h>
20 #include <netinet/in.h>
21 #include <string.h>
22 #include <errno.h>
23 #include <time.h>
24 #include <sys/uio.h>
25 #include <linux/fib_rules.h>
26 #include <linux/if_addrlabel.h>
27 #include <linux/if_bridge.h>
28
29 #include "libnetlink.h"
30
31 #ifndef SOL_NETLINK
32 #define SOL_NETLINK 270
33 #endif
34
35 #ifndef MIN
36 #define MIN(a, b) ((a) < (b) ? (a) : (b))
37 #endif
38
39 int rcvbuf = 1024 * 1024;
40
41 #ifdef HAVE_LIBMNL
42 #include <libmnl/libmnl.h>
43
44 static const enum mnl_attr_data_type extack_policy[NLMSGERR_ATTR_MAX + 1] = {
45 [NLMSGERR_ATTR_MSG] = MNL_TYPE_NUL_STRING,
46 [NLMSGERR_ATTR_OFFS] = MNL_TYPE_U32,
47 };
48
49 static int err_attr_cb(const struct nlattr *attr, void *data)
50 {
51 const struct nlattr **tb = data;
52 uint16_t type;
53
54 if (mnl_attr_type_valid(attr, NLMSGERR_ATTR_MAX) < 0) {
55 fprintf(stderr, "Invalid extack attribute\n");
56 return MNL_CB_ERROR;
57 }
58
59 type = mnl_attr_get_type(attr);
60 if (mnl_attr_validate(attr, extack_policy[type]) < 0) {
61 fprintf(stderr, "extack attribute %d failed validation\n",
62 type);
63 return MNL_CB_ERROR;
64 }
65
66 tb[type] = attr;
67 return MNL_CB_OK;
68 }
69
70 /* dump netlink extended ack error message */
71 int nl_dump_ext_ack(const struct nlmsghdr *nlh, nl_ext_ack_fn_t errfn)
72 {
73 struct nlattr *tb[NLMSGERR_ATTR_MAX + 1] = {};
74 const struct nlmsgerr *err = mnl_nlmsg_get_payload(nlh);
75 const struct nlmsghdr *err_nlh = NULL;
76 unsigned int hlen = sizeof(*err);
77 const char *msg = NULL;
78 uint32_t off = 0;
79
80 /* no TLVs, nothing to do here */
81 if (!(nlh->nlmsg_flags & NLM_F_ACK_TLVS))
82 return 0;
83
84 /* if NLM_F_CAPPED is set then the inner err msg was capped */
85 if (!(nlh->nlmsg_flags & NLM_F_CAPPED))
86 hlen += mnl_nlmsg_get_payload_len(&err->msg);
87
88 if (mnl_attr_parse(nlh, hlen, err_attr_cb, tb) != MNL_CB_OK)
89 return 0;
90
91 if (tb[NLMSGERR_ATTR_MSG])
92 msg = mnl_attr_get_str(tb[NLMSGERR_ATTR_MSG]);
93
94 if (tb[NLMSGERR_ATTR_OFFS]) {
95 off = mnl_attr_get_u32(tb[NLMSGERR_ATTR_OFFS]);
96
97 if (off > nlh->nlmsg_len) {
98 fprintf(stderr,
99 "Invalid offset for NLMSGERR_ATTR_OFFS\n");
100 off = 0;
101 } else if (!(nlh->nlmsg_flags & NLM_F_CAPPED))
102 err_nlh = &err->msg;
103 }
104
105 if (errfn)
106 return errfn(msg, off, err_nlh);
107
108 if (msg && *msg != '\0') {
109 bool is_err = !!err->error;
110
111 fprintf(stderr, "%s: %s",
112 is_err ? "Error" : "Warning", msg);
113 if (msg[strlen(msg) - 1] != '.')
114 fprintf(stderr, ".");
115 fprintf(stderr, "\n");
116
117 return is_err ? 1 : 0;
118 }
119
120 return 0;
121 }
122 #else
123 #warning "libmnl required for error support"
124
125 /* No extended error ack without libmnl */
126 int nl_dump_ext_ack(const struct nlmsghdr *nlh, nl_ext_ack_fn_t errfn)
127 {
128 return 0;
129 }
130 #endif
131
132 void rtnl_close(struct rtnl_handle *rth)
133 {
134 if (rth->fd >= 0) {
135 close(rth->fd);
136 rth->fd = -1;
137 }
138 }
139
140 int rtnl_open_byproto(struct rtnl_handle *rth, unsigned int subscriptions,
141 int protocol)
142 {
143 socklen_t addr_len;
144 int sndbuf = 32768;
145 int one = 1;
146
147 memset(rth, 0, sizeof(*rth));
148
149 rth->proto = protocol;
150 rth->fd = socket(AF_NETLINK, SOCK_RAW | SOCK_CLOEXEC, protocol);
151 if (rth->fd < 0) {
152 perror("Cannot open netlink socket");
153 return -1;
154 }
155
156 if (setsockopt(rth->fd, SOL_SOCKET, SO_SNDBUF,
157 &sndbuf, sizeof(sndbuf)) < 0) {
158 perror("SO_SNDBUF");
159 return -1;
160 }
161
162 if (setsockopt(rth->fd, SOL_SOCKET, SO_RCVBUF,
163 &rcvbuf, sizeof(rcvbuf)) < 0) {
164 perror("SO_RCVBUF");
165 return -1;
166 }
167
168 /* Older kernels may no support extended ACK reporting */
169 setsockopt(rth->fd, SOL_NETLINK, NETLINK_EXT_ACK,
170 &one, sizeof(one));
171
172 memset(&rth->local, 0, sizeof(rth->local));
173 rth->local.nl_family = AF_NETLINK;
174 rth->local.nl_groups = subscriptions;
175
176 if (bind(rth->fd, (struct sockaddr *)&rth->local,
177 sizeof(rth->local)) < 0) {
178 perror("Cannot bind netlink socket");
179 return -1;
180 }
181 addr_len = sizeof(rth->local);
182 if (getsockname(rth->fd, (struct sockaddr *)&rth->local,
183 &addr_len) < 0) {
184 perror("Cannot getsockname");
185 return -1;
186 }
187 if (addr_len != sizeof(rth->local)) {
188 fprintf(stderr, "Wrong address length %d\n", addr_len);
189 return -1;
190 }
191 if (rth->local.nl_family != AF_NETLINK) {
192 fprintf(stderr, "Wrong address family %d\n",
193 rth->local.nl_family);
194 return -1;
195 }
196 rth->seq = time(NULL);
197 return 0;
198 }
199
200 int rtnl_open(struct rtnl_handle *rth, unsigned int subscriptions)
201 {
202 return rtnl_open_byproto(rth, subscriptions, NETLINK_ROUTE);
203 }
204
205 int rtnl_addrdump_req(struct rtnl_handle *rth, int family)
206 {
207 struct {
208 struct nlmsghdr nlh;
209 struct ifaddrmsg ifm;
210 } req = {
211 .nlh.nlmsg_len = sizeof(req),
212 .nlh.nlmsg_type = RTM_GETADDR,
213 .nlh.nlmsg_flags = NLM_F_DUMP | NLM_F_REQUEST,
214 .nlh.nlmsg_seq = rth->dump = ++rth->seq,
215 .ifm.ifa_family = family,
216 };
217
218 return send(rth->fd, &req, sizeof(req), 0);
219 }
220
221 int rtnl_addrlbldump_req(struct rtnl_handle *rth, int family)
222 {
223 struct {
224 struct nlmsghdr nlh;
225 struct ifaddrlblmsg ifal;
226 } req = {
227 .nlh.nlmsg_len = sizeof(req),
228 .nlh.nlmsg_type = RTM_GETADDRLABEL,
229 .nlh.nlmsg_flags = NLM_F_DUMP | NLM_F_REQUEST,
230 .nlh.nlmsg_seq = rth->dump = ++rth->seq,
231 .ifal.ifal_family = family,
232 };
233
234 return send(rth->fd, &req, sizeof(req), 0);
235 }
236
237 int rtnl_routedump_req(struct rtnl_handle *rth, int family)
238 {
239 struct {
240 struct nlmsghdr nlh;
241 struct rtmsg rtm;
242 } req = {
243 .nlh.nlmsg_len = sizeof(req),
244 .nlh.nlmsg_type = RTM_GETROUTE,
245 .nlh.nlmsg_flags = NLM_F_DUMP | NLM_F_REQUEST,
246 .nlh.nlmsg_seq = rth->dump = ++rth->seq,
247 .rtm.rtm_family = family,
248 };
249
250 return send(rth->fd, &req, sizeof(req), 0);
251 }
252
253 int rtnl_ruledump_req(struct rtnl_handle *rth, int family)
254 {
255 struct {
256 struct nlmsghdr nlh;
257 struct fib_rule_hdr frh;
258 } req = {
259 .nlh.nlmsg_len = sizeof(req),
260 .nlh.nlmsg_type = RTM_GETRULE,
261 .nlh.nlmsg_flags = NLM_F_DUMP | NLM_F_REQUEST,
262 .nlh.nlmsg_seq = rth->dump = ++rth->seq,
263 .frh.family = family
264 };
265
266 return send(rth->fd, &req, sizeof(req), 0);
267 }
268
269 int rtnl_neighdump_req(struct rtnl_handle *rth, int family)
270 {
271 struct {
272 struct nlmsghdr nlh;
273 struct ndmsg ndm;
274 } req = {
275 .nlh.nlmsg_len = sizeof(req),
276 .nlh.nlmsg_type = RTM_GETNEIGH,
277 .nlh.nlmsg_flags = NLM_F_DUMP | NLM_F_REQUEST,
278 .nlh.nlmsg_seq = rth->dump = ++rth->seq,
279 .ndm.ndm_family = family,
280 };
281
282 return send(rth->fd, &req, sizeof(req), 0);
283 }
284
285 int rtnl_neightbldump_req(struct rtnl_handle *rth, int family)
286 {
287 struct {
288 struct nlmsghdr nlh;
289 struct ndtmsg ndtmsg;
290 } req = {
291 .nlh.nlmsg_len = sizeof(req),
292 .nlh.nlmsg_type = RTM_GETNEIGHTBL,
293 .nlh.nlmsg_flags = NLM_F_DUMP | NLM_F_REQUEST,
294 .nlh.nlmsg_seq = rth->dump = ++rth->seq,
295 .ndtmsg.ndtm_family = family,
296 };
297
298 return send(rth->fd, &req, sizeof(req), 0);
299 }
300
301 int rtnl_mdbdump_req(struct rtnl_handle *rth, int family)
302 {
303 struct {
304 struct nlmsghdr nlh;
305 struct br_port_msg bpm;
306 } req = {
307 .nlh.nlmsg_len = sizeof(req),
308 .nlh.nlmsg_type = RTM_GETMDB,
309 .nlh.nlmsg_flags = NLM_F_DUMP | NLM_F_REQUEST,
310 .nlh.nlmsg_seq = rth->dump = ++rth->seq,
311 .bpm.family = family,
312 };
313
314 return send(rth->fd, &req, sizeof(req), 0);
315 }
316
317 int rtnl_netconfdump_req(struct rtnl_handle *rth, int family)
318 {
319 struct {
320 struct nlmsghdr nlh;
321 struct netconfmsg ncm;
322 } req = {
323 .nlh.nlmsg_len = sizeof(req),
324 .nlh.nlmsg_type = RTM_GETNETCONF,
325 .nlh.nlmsg_flags = NLM_F_DUMP | NLM_F_REQUEST,
326 .nlh.nlmsg_seq = rth->dump = ++rth->seq,
327 .ncm.ncm_family = family,
328 };
329
330 return send(rth->fd, &req, sizeof(req), 0);
331 }
332
333 int rtnl_nsiddump_req(struct rtnl_handle *rth, int family)
334 {
335 struct {
336 struct nlmsghdr nlh;
337 struct rtgenmsg rtm;
338 } req = {
339 .nlh.nlmsg_len = sizeof(req),
340 .nlh.nlmsg_type = RTM_GETNSID,
341 .nlh.nlmsg_flags = NLM_F_DUMP | NLM_F_REQUEST,
342 .nlh.nlmsg_seq = rth->dump = ++rth->seq,
343 .rtm.rtgen_family = family,
344 };
345
346 return send(rth->fd, &req, sizeof(req), 0);
347 }
348
349 int rtnl_linkdump_req(struct rtnl_handle *rth, int family)
350 {
351 return rtnl_linkdump_req_filter(rth, family, RTEXT_FILTER_VF);
352 }
353
354 int rtnl_linkdump_req_filter(struct rtnl_handle *rth, int family,
355 __u32 filt_mask)
356 {
357 struct {
358 struct nlmsghdr nlh;
359 struct ifinfomsg ifm;
360 /* attribute has to be NLMSG aligned */
361 struct rtattr ext_req __attribute__ ((aligned(NLMSG_ALIGNTO)));
362 __u32 ext_filter_mask;
363 } req = {
364 .nlh.nlmsg_len = sizeof(req),
365 .nlh.nlmsg_type = RTM_GETLINK,
366 .nlh.nlmsg_flags = NLM_F_DUMP | NLM_F_REQUEST,
367 .nlh.nlmsg_seq = rth->dump = ++rth->seq,
368 .ifm.ifi_family = family,
369 .ext_req.rta_type = IFLA_EXT_MASK,
370 .ext_req.rta_len = RTA_LENGTH(sizeof(__u32)),
371 .ext_filter_mask = filt_mask,
372 };
373
374 return send(rth->fd, &req, sizeof(req), 0);
375 }
376
377 int rtnl_linkdump_req_filter_fn(struct rtnl_handle *rth, int family,
378 req_filter_fn_t filter_fn)
379 {
380 struct {
381 struct nlmsghdr nlh;
382 struct ifinfomsg ifm;
383 char buf[1024];
384 } req = {
385 .nlh.nlmsg_len = NLMSG_LENGTH(sizeof(struct ifinfomsg)),
386 .nlh.nlmsg_type = RTM_GETLINK,
387 .nlh.nlmsg_flags = NLM_F_DUMP | NLM_F_REQUEST,
388 .nlh.nlmsg_seq = rth->dump = ++rth->seq,
389 .ifm.ifi_family = family,
390 };
391 int err;
392
393 if (!filter_fn)
394 return -EINVAL;
395
396 err = filter_fn(&req.nlh, sizeof(req));
397 if (err)
398 return err;
399
400 return send(rth->fd, &req, req.nlh.nlmsg_len, 0);
401 }
402
403 int rtnl_statsdump_req_filter(struct rtnl_handle *rth, int fam, __u32 filt_mask)
404 {
405 struct {
406 struct nlmsghdr nlh;
407 struct if_stats_msg ifsm;
408 } req;
409
410 memset(&req, 0, sizeof(req));
411 req.nlh.nlmsg_len = NLMSG_LENGTH(sizeof(struct if_stats_msg));
412 req.nlh.nlmsg_type = RTM_GETSTATS;
413 req.nlh.nlmsg_flags = NLM_F_DUMP|NLM_F_REQUEST;
414 req.nlh.nlmsg_pid = 0;
415 req.nlh.nlmsg_seq = rth->dump = ++rth->seq;
416 req.ifsm.family = fam;
417 req.ifsm.filter_mask = filt_mask;
418
419 return send(rth->fd, &req, sizeof(req), 0);
420 }
421
422 int rtnl_send(struct rtnl_handle *rth, const void *buf, int len)
423 {
424 return send(rth->fd, buf, len, 0);
425 }
426
427 int rtnl_send_check(struct rtnl_handle *rth, const void *buf, int len)
428 {
429 struct nlmsghdr *h;
430 int status;
431 char resp[1024];
432
433 status = send(rth->fd, buf, len, 0);
434 if (status < 0)
435 return status;
436
437 /* Check for immediate errors */
438 status = recv(rth->fd, resp, sizeof(resp), MSG_DONTWAIT|MSG_PEEK);
439 if (status < 0) {
440 if (errno == EAGAIN)
441 return 0;
442 return -1;
443 }
444
445 for (h = (struct nlmsghdr *)resp; NLMSG_OK(h, status);
446 h = NLMSG_NEXT(h, status)) {
447 if (h->nlmsg_type == NLMSG_ERROR) {
448 struct nlmsgerr *err = (struct nlmsgerr *)NLMSG_DATA(h);
449
450 if (h->nlmsg_len < NLMSG_LENGTH(sizeof(struct nlmsgerr)))
451 fprintf(stderr, "ERROR truncated\n");
452 else
453 errno = -err->error;
454 return -1;
455 }
456 }
457
458 return 0;
459 }
460
461 int rtnl_dump_request(struct rtnl_handle *rth, int type, void *req, int len)
462 {
463 struct nlmsghdr nlh = {
464 .nlmsg_len = NLMSG_LENGTH(len),
465 .nlmsg_type = type,
466 .nlmsg_flags = NLM_F_DUMP | NLM_F_REQUEST,
467 .nlmsg_seq = rth->dump = ++rth->seq,
468 };
469 struct sockaddr_nl nladdr = { .nl_family = AF_NETLINK };
470 struct iovec iov[2] = {
471 { .iov_base = &nlh, .iov_len = sizeof(nlh) },
472 { .iov_base = req, .iov_len = len }
473 };
474 struct msghdr msg = {
475 .msg_name = &nladdr,
476 .msg_namelen = sizeof(nladdr),
477 .msg_iov = iov,
478 .msg_iovlen = 2,
479 };
480
481 return sendmsg(rth->fd, &msg, 0);
482 }
483
484 int rtnl_dump_request_n(struct rtnl_handle *rth, struct nlmsghdr *n)
485 {
486 struct sockaddr_nl nladdr = { .nl_family = AF_NETLINK };
487 struct iovec iov = {
488 .iov_base = n,
489 .iov_len = n->nlmsg_len
490 };
491 struct msghdr msg = {
492 .msg_name = &nladdr,
493 .msg_namelen = sizeof(nladdr),
494 .msg_iov = &iov,
495 .msg_iovlen = 1,
496 };
497
498 n->nlmsg_flags = NLM_F_DUMP|NLM_F_REQUEST;
499 n->nlmsg_pid = 0;
500 n->nlmsg_seq = rth->dump = ++rth->seq;
501
502 return sendmsg(rth->fd, &msg, 0);
503 }
504
505 static int rtnl_dump_done(struct nlmsghdr *h)
506 {
507 int len = *(int *)NLMSG_DATA(h);
508
509 if (h->nlmsg_len < NLMSG_LENGTH(sizeof(int))) {
510 fprintf(stderr, "DONE truncated\n");
511 return -1;
512 }
513
514 if (len < 0) {
515 errno = -len;
516 switch (errno) {
517 case ENOENT:
518 case EOPNOTSUPP:
519 return -1;
520 case EMSGSIZE:
521 fprintf(stderr,
522 "Error: Buffer too small for object.\n");
523 break;
524 default:
525 perror("RTNETLINK answers");
526 }
527 return len;
528 }
529
530 /* check for any messages returned from kernel */
531 nl_dump_ext_ack(h, NULL);
532
533 return 0;
534 }
535
536 static void rtnl_dump_error(const struct rtnl_handle *rth,
537 struct nlmsghdr *h)
538 {
539
540 if (h->nlmsg_len < NLMSG_LENGTH(sizeof(struct nlmsgerr))) {
541 fprintf(stderr, "ERROR truncated\n");
542 } else {
543 const struct nlmsgerr *err = (struct nlmsgerr *)NLMSG_DATA(h);
544
545 errno = -err->error;
546 if (rth->proto == NETLINK_SOCK_DIAG &&
547 (errno == ENOENT ||
548 errno == EOPNOTSUPP))
549 return;
550
551 if (!(rth->flags & RTNL_HANDLE_F_SUPPRESS_NLERR))
552 perror("RTNETLINK answers");
553 }
554 }
555
556 static int __rtnl_recvmsg(int fd, struct msghdr *msg, int flags)
557 {
558 int len;
559
560 do {
561 len = recvmsg(fd, msg, flags);
562 } while (len < 0 && (errno == EINTR || errno == EAGAIN));
563
564 if (len < 0) {
565 fprintf(stderr, "netlink receive error %s (%d)\n",
566 strerror(errno), errno);
567 return -errno;
568 }
569
570 if (len == 0) {
571 fprintf(stderr, "EOF on netlink\n");
572 return -ENODATA;
573 }
574
575 return len;
576 }
577
578 static int rtnl_recvmsg(int fd, struct msghdr *msg, char **answer)
579 {
580 struct iovec *iov = msg->msg_iov;
581 char *buf;
582 int len;
583
584 iov->iov_base = NULL;
585 iov->iov_len = 0;
586
587 len = __rtnl_recvmsg(fd, msg, MSG_PEEK | MSG_TRUNC);
588 if (len < 0)
589 return len;
590
591 buf = malloc(len);
592 if (!buf) {
593 fprintf(stderr, "malloc error: not enough buffer\n");
594 return -ENOMEM;
595 }
596
597 iov->iov_base = buf;
598 iov->iov_len = len;
599
600 len = __rtnl_recvmsg(fd, msg, 0);
601 if (len < 0) {
602 free(buf);
603 return len;
604 }
605
606 if (answer)
607 *answer = buf;
608 else
609 free(buf);
610
611 return len;
612 }
613
614 static int rtnl_dump_filter_l(struct rtnl_handle *rth,
615 const struct rtnl_dump_filter_arg *arg)
616 {
617 struct sockaddr_nl nladdr;
618 struct iovec iov;
619 struct msghdr msg = {
620 .msg_name = &nladdr,
621 .msg_namelen = sizeof(nladdr),
622 .msg_iov = &iov,
623 .msg_iovlen = 1,
624 };
625 char *buf;
626 int dump_intr = 0;
627
628 while (1) {
629 int status;
630 const struct rtnl_dump_filter_arg *a;
631 int found_done = 0;
632 int msglen = 0;
633
634 status = rtnl_recvmsg(rth->fd, &msg, &buf);
635 if (status < 0)
636 return status;
637
638 if (rth->dump_fp)
639 fwrite(buf, 1, NLMSG_ALIGN(status), rth->dump_fp);
640
641 for (a = arg; a->filter; a++) {
642 struct nlmsghdr *h = (struct nlmsghdr *)buf;
643
644 msglen = status;
645
646 while (NLMSG_OK(h, msglen)) {
647 int err = 0;
648
649 h->nlmsg_flags &= ~a->nc_flags;
650
651 if (nladdr.nl_pid != 0 ||
652 h->nlmsg_pid != rth->local.nl_pid ||
653 h->nlmsg_seq != rth->dump)
654 goto skip_it;
655
656 if (h->nlmsg_flags & NLM_F_DUMP_INTR)
657 dump_intr = 1;
658
659 if (h->nlmsg_type == NLMSG_DONE) {
660 err = rtnl_dump_done(h);
661 if (err < 0) {
662 free(buf);
663 return -1;
664 }
665
666 found_done = 1;
667 break; /* process next filter */
668 }
669
670 if (h->nlmsg_type == NLMSG_ERROR) {
671 rtnl_dump_error(rth, h);
672 free(buf);
673 return -1;
674 }
675
676 if (!rth->dump_fp) {
677 err = a->filter(h, a->arg1);
678 if (err < 0) {
679 free(buf);
680 return err;
681 }
682 }
683
684 skip_it:
685 h = NLMSG_NEXT(h, msglen);
686 }
687 }
688 free(buf);
689
690 if (found_done) {
691 if (dump_intr)
692 fprintf(stderr,
693 "Dump was interrupted and may be inconsistent.\n");
694 return 0;
695 }
696
697 if (msg.msg_flags & MSG_TRUNC) {
698 fprintf(stderr, "Message truncated\n");
699 continue;
700 }
701 if (msglen) {
702 fprintf(stderr, "!!!Remnant of size %d\n", msglen);
703 exit(1);
704 }
705 }
706 }
707
708 int rtnl_dump_filter_nc(struct rtnl_handle *rth,
709 rtnl_filter_t filter,
710 void *arg1, __u16 nc_flags)
711 {
712 const struct rtnl_dump_filter_arg a[2] = {
713 { .filter = filter, .arg1 = arg1, .nc_flags = nc_flags, },
714 { .filter = NULL, .arg1 = NULL, .nc_flags = 0, },
715 };
716
717 return rtnl_dump_filter_l(rth, a);
718 }
719
720 static void rtnl_talk_error(struct nlmsghdr *h, struct nlmsgerr *err,
721 nl_ext_ack_fn_t errfn)
722 {
723 if (nl_dump_ext_ack(h, errfn))
724 return;
725
726 fprintf(stderr, "RTNETLINK answers: %s\n",
727 strerror(-err->error));
728 }
729
730
731 static int __rtnl_talk_iov(struct rtnl_handle *rtnl, struct iovec *iov,
732 size_t iovlen, struct nlmsghdr **answer,
733 bool show_rtnl_err, nl_ext_ack_fn_t errfn)
734 {
735 struct sockaddr_nl nladdr = { .nl_family = AF_NETLINK };
736 struct iovec riov;
737 struct msghdr msg = {
738 .msg_name = &nladdr,
739 .msg_namelen = sizeof(nladdr),
740 .msg_iov = iov,
741 .msg_iovlen = iovlen,
742 };
743 unsigned int seq = 0;
744 struct nlmsghdr *h;
745 int i, status;
746 char *buf;
747
748 for (i = 0; i < iovlen; i++) {
749 h = iov[i].iov_base;
750 h->nlmsg_seq = seq = ++rtnl->seq;
751 if (answer == NULL)
752 h->nlmsg_flags |= NLM_F_ACK;
753 }
754
755 status = sendmsg(rtnl->fd, &msg, 0);
756 if (status < 0) {
757 perror("Cannot talk to rtnetlink");
758 return -1;
759 }
760
761 /* change msg to use the response iov */
762 msg.msg_iov = &riov;
763 msg.msg_iovlen = 1;
764 i = 0;
765 while (1) {
766 next:
767 status = rtnl_recvmsg(rtnl->fd, &msg, &buf);
768 ++i;
769
770 if (status < 0)
771 return status;
772
773 if (msg.msg_namelen != sizeof(nladdr)) {
774 fprintf(stderr,
775 "sender address length == %d\n",
776 msg.msg_namelen);
777 exit(1);
778 }
779 for (h = (struct nlmsghdr *)buf; status >= sizeof(*h); ) {
780 int len = h->nlmsg_len;
781 int l = len - sizeof(*h);
782
783 if (l < 0 || len > status) {
784 if (msg.msg_flags & MSG_TRUNC) {
785 fprintf(stderr, "Truncated message\n");
786 free(buf);
787 return -1;
788 }
789 fprintf(stderr,
790 "!!!malformed message: len=%d\n",
791 len);
792 exit(1);
793 }
794
795 if (nladdr.nl_pid != 0 ||
796 h->nlmsg_pid != rtnl->local.nl_pid ||
797 h->nlmsg_seq > seq || h->nlmsg_seq < seq - iovlen) {
798 /* Don't forget to skip that message. */
799 status -= NLMSG_ALIGN(len);
800 h = (struct nlmsghdr *)((char *)h + NLMSG_ALIGN(len));
801 continue;
802 }
803
804 if (h->nlmsg_type == NLMSG_ERROR) {
805 struct nlmsgerr *err = (struct nlmsgerr *)NLMSG_DATA(h);
806 int error = err->error;
807
808 if (l < sizeof(struct nlmsgerr)) {
809 fprintf(stderr, "ERROR truncated\n");
810 free(buf);
811 return -1;
812 }
813
814 if (!error) {
815 /* check messages from kernel */
816 nl_dump_ext_ack(h, errfn);
817 } else {
818 errno = -error;
819
820 if (rtnl->proto != NETLINK_SOCK_DIAG &&
821 show_rtnl_err)
822 rtnl_talk_error(h, err, errfn);
823 }
824
825 if (answer)
826 *answer = (struct nlmsghdr *)buf;
827 else
828 free(buf);
829
830 if (i < iovlen)
831 goto next;
832 return error ? -i : 0;
833 }
834
835 if (answer) {
836 *answer = (struct nlmsghdr *)buf;
837 return 0;
838 }
839
840 fprintf(stderr, "Unexpected reply!!!\n");
841
842 status -= NLMSG_ALIGN(len);
843 h = (struct nlmsghdr *)((char *)h + NLMSG_ALIGN(len));
844 }
845 free(buf);
846
847 if (msg.msg_flags & MSG_TRUNC) {
848 fprintf(stderr, "Message truncated\n");
849 continue;
850 }
851
852 if (status) {
853 fprintf(stderr, "!!!Remnant of size %d\n", status);
854 exit(1);
855 }
856 }
857 }
858
859 static int __rtnl_talk(struct rtnl_handle *rtnl, struct nlmsghdr *n,
860 struct nlmsghdr **answer,
861 bool show_rtnl_err, nl_ext_ack_fn_t errfn)
862 {
863 struct iovec iov = {
864 .iov_base = n,
865 .iov_len = n->nlmsg_len
866 };
867
868 return __rtnl_talk_iov(rtnl, &iov, 1, answer, show_rtnl_err, errfn);
869 }
870
871 int rtnl_talk(struct rtnl_handle *rtnl, struct nlmsghdr *n,
872 struct nlmsghdr **answer)
873 {
874 return __rtnl_talk(rtnl, n, answer, true, NULL);
875 }
876
877 int rtnl_talk_iov(struct rtnl_handle *rtnl, struct iovec *iovec, size_t iovlen,
878 struct nlmsghdr **answer)
879 {
880 return __rtnl_talk_iov(rtnl, iovec, iovlen, answer, true, NULL);
881 }
882
883 int rtnl_talk_suppress_rtnl_errmsg(struct rtnl_handle *rtnl, struct nlmsghdr *n,
884 struct nlmsghdr **answer)
885 {
886 return __rtnl_talk(rtnl, n, answer, false, NULL);
887 }
888
889 int rtnl_listen_all_nsid(struct rtnl_handle *rth)
890 {
891 unsigned int on = 1;
892
893 if (setsockopt(rth->fd, SOL_NETLINK, NETLINK_LISTEN_ALL_NSID, &on,
894 sizeof(on)) < 0) {
895 perror("NETLINK_LISTEN_ALL_NSID");
896 return -1;
897 }
898 rth->flags |= RTNL_HANDLE_F_LISTEN_ALL_NSID;
899 return 0;
900 }
901
902 int rtnl_listen(struct rtnl_handle *rtnl,
903 rtnl_listen_filter_t handler,
904 void *jarg)
905 {
906 int status;
907 struct nlmsghdr *h;
908 struct sockaddr_nl nladdr = { .nl_family = AF_NETLINK };
909 struct iovec iov;
910 struct msghdr msg = {
911 .msg_name = &nladdr,
912 .msg_namelen = sizeof(nladdr),
913 .msg_iov = &iov,
914 .msg_iovlen = 1,
915 };
916 char buf[16384];
917 char cmsgbuf[BUFSIZ];
918
919 if (rtnl->flags & RTNL_HANDLE_F_LISTEN_ALL_NSID) {
920 msg.msg_control = &cmsgbuf;
921 msg.msg_controllen = sizeof(cmsgbuf);
922 }
923
924 iov.iov_base = buf;
925 while (1) {
926 struct rtnl_ctrl_data ctrl;
927 struct cmsghdr *cmsg;
928
929 iov.iov_len = sizeof(buf);
930 status = recvmsg(rtnl->fd, &msg, 0);
931
932 if (status < 0) {
933 if (errno == EINTR || errno == EAGAIN)
934 continue;
935 fprintf(stderr, "netlink receive error %s (%d)\n",
936 strerror(errno), errno);
937 if (errno == ENOBUFS)
938 continue;
939 return -1;
940 }
941 if (status == 0) {
942 fprintf(stderr, "EOF on netlink\n");
943 return -1;
944 }
945 if (msg.msg_namelen != sizeof(nladdr)) {
946 fprintf(stderr,
947 "Sender address length == %d\n",
948 msg.msg_namelen);
949 exit(1);
950 }
951
952 if (rtnl->flags & RTNL_HANDLE_F_LISTEN_ALL_NSID) {
953 memset(&ctrl, 0, sizeof(ctrl));
954 ctrl.nsid = -1;
955 for (cmsg = CMSG_FIRSTHDR(&msg); cmsg;
956 cmsg = CMSG_NXTHDR(&msg, cmsg))
957 if (cmsg->cmsg_level == SOL_NETLINK &&
958 cmsg->cmsg_type == NETLINK_LISTEN_ALL_NSID &&
959 cmsg->cmsg_len == CMSG_LEN(sizeof(int))) {
960 int *data = (int *)CMSG_DATA(cmsg);
961
962 ctrl.nsid = *data;
963 }
964 }
965
966 for (h = (struct nlmsghdr *)buf; status >= sizeof(*h); ) {
967 int err;
968 int len = h->nlmsg_len;
969 int l = len - sizeof(*h);
970
971 if (l < 0 || len > status) {
972 if (msg.msg_flags & MSG_TRUNC) {
973 fprintf(stderr, "Truncated message\n");
974 return -1;
975 }
976 fprintf(stderr,
977 "!!!malformed message: len=%d\n",
978 len);
979 exit(1);
980 }
981
982 err = handler(&ctrl, h, jarg);
983 if (err < 0)
984 return err;
985
986 status -= NLMSG_ALIGN(len);
987 h = (struct nlmsghdr *)((char *)h + NLMSG_ALIGN(len));
988 }
989 if (msg.msg_flags & MSG_TRUNC) {
990 fprintf(stderr, "Message truncated\n");
991 continue;
992 }
993 if (status) {
994 fprintf(stderr, "!!!Remnant of size %d\n", status);
995 exit(1);
996 }
997 }
998 }
999
1000 int rtnl_from_file(FILE *rtnl, rtnl_listen_filter_t handler,
1001 void *jarg)
1002 {
1003 int status;
1004 char buf[16384];
1005 struct nlmsghdr *h = (struct nlmsghdr *)buf;
1006
1007 while (1) {
1008 int err, len;
1009 int l;
1010
1011 status = fread(&buf, 1, sizeof(*h), rtnl);
1012
1013 if (status < 0) {
1014 if (errno == EINTR)
1015 continue;
1016 perror("rtnl_from_file: fread");
1017 return -1;
1018 }
1019 if (status == 0)
1020 return 0;
1021
1022 len = h->nlmsg_len;
1023 l = len - sizeof(*h);
1024
1025 if (l < 0 || len > sizeof(buf)) {
1026 fprintf(stderr, "!!!malformed message: len=%d @%lu\n",
1027 len, ftell(rtnl));
1028 return -1;
1029 }
1030
1031 status = fread(NLMSG_DATA(h), 1, NLMSG_ALIGN(l), rtnl);
1032
1033 if (status < 0) {
1034 perror("rtnl_from_file: fread");
1035 return -1;
1036 }
1037 if (status < l) {
1038 fprintf(stderr, "rtnl-from_file: truncated message\n");
1039 return -1;
1040 }
1041
1042 err = handler(NULL, h, jarg);
1043 if (err < 0)
1044 return err;
1045 }
1046 }
1047
1048 int addattr(struct nlmsghdr *n, int maxlen, int type)
1049 {
1050 return addattr_l(n, maxlen, type, NULL, 0);
1051 }
1052
1053 int addattr8(struct nlmsghdr *n, int maxlen, int type, __u8 data)
1054 {
1055 return addattr_l(n, maxlen, type, &data, sizeof(__u8));
1056 }
1057
1058 int addattr16(struct nlmsghdr *n, int maxlen, int type, __u16 data)
1059 {
1060 return addattr_l(n, maxlen, type, &data, sizeof(__u16));
1061 }
1062
1063 int addattr32(struct nlmsghdr *n, int maxlen, int type, __u32 data)
1064 {
1065 return addattr_l(n, maxlen, type, &data, sizeof(__u32));
1066 }
1067
1068 int addattr64(struct nlmsghdr *n, int maxlen, int type, __u64 data)
1069 {
1070 return addattr_l(n, maxlen, type, &data, sizeof(__u64));
1071 }
1072
1073 int addattrstrz(struct nlmsghdr *n, int maxlen, int type, const char *str)
1074 {
1075 return addattr_l(n, maxlen, type, str, strlen(str)+1);
1076 }
1077
1078 int addattr_l(struct nlmsghdr *n, int maxlen, int type, const void *data,
1079 int alen)
1080 {
1081 int len = RTA_LENGTH(alen);
1082 struct rtattr *rta;
1083
1084 if (NLMSG_ALIGN(n->nlmsg_len) + RTA_ALIGN(len) > maxlen) {
1085 fprintf(stderr,
1086 "addattr_l ERROR: message exceeded bound of %d\n",
1087 maxlen);
1088 return -1;
1089 }
1090 rta = NLMSG_TAIL(n);
1091 rta->rta_type = type;
1092 rta->rta_len = len;
1093 if (alen)
1094 memcpy(RTA_DATA(rta), data, alen);
1095 n->nlmsg_len = NLMSG_ALIGN(n->nlmsg_len) + RTA_ALIGN(len);
1096 return 0;
1097 }
1098
1099 int addraw_l(struct nlmsghdr *n, int maxlen, const void *data, int len)
1100 {
1101 if (NLMSG_ALIGN(n->nlmsg_len) + NLMSG_ALIGN(len) > maxlen) {
1102 fprintf(stderr,
1103 "addraw_l ERROR: message exceeded bound of %d\n",
1104 maxlen);
1105 return -1;
1106 }
1107
1108 memcpy(NLMSG_TAIL(n), data, len);
1109 memset((void *) NLMSG_TAIL(n) + len, 0, NLMSG_ALIGN(len) - len);
1110 n->nlmsg_len = NLMSG_ALIGN(n->nlmsg_len) + NLMSG_ALIGN(len);
1111 return 0;
1112 }
1113
1114 struct rtattr *addattr_nest(struct nlmsghdr *n, int maxlen, int type)
1115 {
1116 struct rtattr *nest = NLMSG_TAIL(n);
1117
1118 addattr_l(n, maxlen, type, NULL, 0);
1119 return nest;
1120 }
1121
1122 int addattr_nest_end(struct nlmsghdr *n, struct rtattr *nest)
1123 {
1124 nest->rta_len = (void *)NLMSG_TAIL(n) - (void *)nest;
1125 return n->nlmsg_len;
1126 }
1127
1128 struct rtattr *addattr_nest_compat(struct nlmsghdr *n, int maxlen, int type,
1129 const void *data, int len)
1130 {
1131 struct rtattr *start = NLMSG_TAIL(n);
1132
1133 addattr_l(n, maxlen, type, data, len);
1134 addattr_nest(n, maxlen, type);
1135 return start;
1136 }
1137
1138 int addattr_nest_compat_end(struct nlmsghdr *n, struct rtattr *start)
1139 {
1140 struct rtattr *nest = (void *)start + NLMSG_ALIGN(start->rta_len);
1141
1142 start->rta_len = (void *)NLMSG_TAIL(n) - (void *)start;
1143 addattr_nest_end(n, nest);
1144 return n->nlmsg_len;
1145 }
1146
1147 int rta_addattr32(struct rtattr *rta, int maxlen, int type, __u32 data)
1148 {
1149 int len = RTA_LENGTH(4);
1150 struct rtattr *subrta;
1151
1152 if (RTA_ALIGN(rta->rta_len) + len > maxlen) {
1153 fprintf(stderr,
1154 "rta_addattr32: Error! max allowed bound %d exceeded\n",
1155 maxlen);
1156 return -1;
1157 }
1158 subrta = (struct rtattr *)(((char *)rta) + RTA_ALIGN(rta->rta_len));
1159 subrta->rta_type = type;
1160 subrta->rta_len = len;
1161 memcpy(RTA_DATA(subrta), &data, 4);
1162 rta->rta_len = NLMSG_ALIGN(rta->rta_len) + len;
1163 return 0;
1164 }
1165
1166 int rta_addattr_l(struct rtattr *rta, int maxlen, int type,
1167 const void *data, int alen)
1168 {
1169 struct rtattr *subrta;
1170 int len = RTA_LENGTH(alen);
1171
1172 if (RTA_ALIGN(rta->rta_len) + RTA_ALIGN(len) > maxlen) {
1173 fprintf(stderr,
1174 "rta_addattr_l: Error! max allowed bound %d exceeded\n",
1175 maxlen);
1176 return -1;
1177 }
1178 subrta = (struct rtattr *)(((char *)rta) + RTA_ALIGN(rta->rta_len));
1179 subrta->rta_type = type;
1180 subrta->rta_len = len;
1181 if (alen)
1182 memcpy(RTA_DATA(subrta), data, alen);
1183 rta->rta_len = NLMSG_ALIGN(rta->rta_len) + RTA_ALIGN(len);
1184 return 0;
1185 }
1186
1187 int rta_addattr8(struct rtattr *rta, int maxlen, int type, __u8 data)
1188 {
1189 return rta_addattr_l(rta, maxlen, type, &data, sizeof(__u8));
1190 }
1191
1192 int rta_addattr16(struct rtattr *rta, int maxlen, int type, __u16 data)
1193 {
1194 return rta_addattr_l(rta, maxlen, type, &data, sizeof(__u16));
1195 }
1196
1197 int rta_addattr64(struct rtattr *rta, int maxlen, int type, __u64 data)
1198 {
1199 return rta_addattr_l(rta, maxlen, type, &data, sizeof(__u64));
1200 }
1201
1202 struct rtattr *rta_nest(struct rtattr *rta, int maxlen, int type)
1203 {
1204 struct rtattr *nest = RTA_TAIL(rta);
1205
1206 rta_addattr_l(rta, maxlen, type, NULL, 0);
1207
1208 return nest;
1209 }
1210
1211 int rta_nest_end(struct rtattr *rta, struct rtattr *nest)
1212 {
1213 nest->rta_len = (void *)RTA_TAIL(rta) - (void *)nest;
1214
1215 return rta->rta_len;
1216 }
1217
1218 int parse_rtattr(struct rtattr *tb[], int max, struct rtattr *rta, int len)
1219 {
1220 return parse_rtattr_flags(tb, max, rta, len, 0);
1221 }
1222
1223 int parse_rtattr_flags(struct rtattr *tb[], int max, struct rtattr *rta,
1224 int len, unsigned short flags)
1225 {
1226 unsigned short type;
1227
1228 memset(tb, 0, sizeof(struct rtattr *) * (max + 1));
1229 while (RTA_OK(rta, len)) {
1230 type = rta->rta_type & ~flags;
1231 if ((type <= max) && (!tb[type]))
1232 tb[type] = rta;
1233 rta = RTA_NEXT(rta, len);
1234 }
1235 if (len)
1236 fprintf(stderr, "!!!Deficit %d, rta_len=%d\n",
1237 len, rta->rta_len);
1238 return 0;
1239 }
1240
1241 struct rtattr *parse_rtattr_one(int type, struct rtattr *rta, int len)
1242 {
1243 while (RTA_OK(rta, len)) {
1244 if (rta->rta_type == type)
1245 return rta;
1246 rta = RTA_NEXT(rta, len);
1247 }
1248
1249 if (len)
1250 fprintf(stderr, "!!!Deficit %d, rta_len=%d\n",
1251 len, rta->rta_len);
1252 return NULL;
1253 }
1254
1255 int __parse_rtattr_nested_compat(struct rtattr *tb[], int max,
1256 struct rtattr *rta,
1257 int len)
1258 {
1259 if (RTA_PAYLOAD(rta) < len)
1260 return -1;
1261 if (RTA_PAYLOAD(rta) >= RTA_ALIGN(len) + sizeof(struct rtattr)) {
1262 rta = RTA_DATA(rta) + RTA_ALIGN(len);
1263 return parse_rtattr_nested(tb, max, rta);
1264 }
1265 memset(tb, 0, sizeof(struct rtattr *) * (max + 1));
1266 return 0;
1267 }